SlideShare una empresa de Scribd logo
1 de 7
Descargar para leer sin conexión
The International Journal Of Engineering And Science (IJES)
||Volume|| 3 ||Issue|| 2 ||Pages|| 68- 74 || 2014 ||
ISSN (e): 2319 – 1813 ISSN (p): 2319 – 1805

Drillability of Migmatite Gneisses in Lokoja Environs
1

Jethro, Michael Adebola, 2 Shehu, Shaib Abdulazeez
3
Saliu, Muyideen Alade

1&2

3

Department of Mineral Resources Engineering, Kogi State Polytechnic, Lokoja, Nigeria
Department of Mining Engineering, the Federal University Technology, Akure Ondo State, Nigeria

---------------------------------------------------------ABSTRACT------------------------------------------------In this study, correlation analysis was applied to investigate the relationship between some strength properties
(Uniaxial Compressive Strength, Point Load Strength, Schmidt Hammer Value, Equivalent Quartz Content and
Penetration Rate) of Beautiful Rock Quarry along Ajaokuta Road in Kogi State, North Central Nigeria. These
properties were determined and the relationships between them were described by Regression Analysis. The
coefficient of correlation for all the parameters evaluated is more than 0.7. The result indicated that Uniaxial
Compressive Strength (UCS) varies between 239.60MPa and 283.01MPa, Point Load Strength varies between
5.9MPa and 6.01MPa, the Schmidt Hammer Value varies between 42 and 56, Equivalent Quartz Content varies
between 55.3% and 70.2%, and the Penetration Rate Varies Between 1.10m/min and 1.60m/min. This result
shows that the Uniaxial Compressive Strength of the rock tested was extremely high while the Point Load
Strength was high [5]. The Schmidt hammer rebound value is moderate. The study revealed that the Equivalent
Quartz Content is one of the major factors controlling penetration rate in rocks.
Keywords: Drillability, penetration rate, strength properties, correlation and, regression analysis
--------------------------------------------------------------------------------------------------------------------------------------Date of Submission: 02 November 2013
Date of Acceptance: 20 February 2014
---------------------------------------------------------------------------------------------------------------------------------------

I.

INTRODUCTION

Drillability and penetration rate are similar terms. While drillability indicates whether penetration is
easy or hard, penetration rate indicates whether it is fast or slow [1].
Migmatite Gneiss rock is economically useful for construction works and ornamental purposes. It is
imperative to study and determine its drillability or penetration rate in order to have a long term production plan
schedule or to meet up with target production rate. The drillability of the migmatite Gneiss can be studied by
determining various strength properties: Its mechanical properties (uniaxial compressive strength, tensile
strength, point load index) and physical properties (porosity, density, hardness, permeability among others). The
mineralogical compositions and petrography of these rocks have significant effects on their properties and thus
greatly influence the drillability. Drillability is a measure of the resistance of mine rock to disintegration during
drilling. Rock drillability largely depends on hardness of minerals, grain size, degree of cementation of light
minerals and the influence of specific tools that is used which determine the velocity or the speed of rotation.
Rock drilling is performed with a number of techniques depending on operational variables, usage,
hardness and strength characteristics of the rock. The operational variables that are controllable are rotation
speed, thrust, blow frequency and flushing. However, rock properties and geological conditions are
uncontrollable parameters [2] and [3]. Various methods have been used to determine the mechanical properties
of migmatite Gneiss using the standards like ISRM, ASTM among others. The most important mechanical
properties measured are Uniaxial Compressive Strength (UCS), Point Load Test (PLT), mineralogical
compositions and physical properties (hardness).
Factors affecting drillability can be described as changeable and unchangeable. These factors are rock
characteristics, mechanical factors and complementary factors. The hardness of the rock, uniaxial compressive
strength (UCS), tensile strength and point load test are the vital unchangeable factors. Penetration rate is the
progression of the drilling bit into the rock in a certain period of time, which is generally expressed in “m/min”.
The main changeable factors are type and design characteristics, the amount of compression applied and drill
rotational speed. Fast and economical penetration depends on the mineralogical structure of the rock, drilling
machine, geo-mechanic characteristic, and the choice of drilling tools appropriate to the rock [4].
Migmatite gnesis is the commonest rock type in Nigerian Basement Complex. There are two main
types of gneisses: the biotite gneiss and the banded gneiss which is very wide spread. The biotite gneisses are
normally fine grained with strong foliation caused by the parallel arrangement of alternating dark and light
colours.

www.theijes.com

The IJES

Page 68
Drillability of Migmatite Gneisses in Lokoja Environs
The banded gneisses show alternating light – coloured and dark bands and exhibit intricate folding of
their bands. The migmatite gneiss is the oldest rock and is believed to be sedimentary in origin but was later
source altered into metamorphic and granite rouse.
Table 1 shows the coordinates of the study areas and a brief description of the rock samples studied.
Table 1: Location of the Study Areas
Samples No.
Locations
Sizes
Descriptions
N70 421 14.011
A
E060 441 37.811
350MM Medium to coarse grains & Dark in colour.
- 55M ASL
N70 421 15.311
B
E060 441 39.311
350MM Coarse grain & Light in colour.
- 64M ASL
N70 421 12.211
C
E060 441 44.211
350MM Medium to Coarse grain & Grey in colour.
- 52M ASL
N70 421 12.211
D
350MM Fine – medium grain & pinkish in colour
E060 441 44.211
N70 421 1611
E
350MM Medium to Coarse grain & grey colour.
E0060 441 3011

II.

METHODOLOGY

2.1

Uniaxial Compressive Strength
This method is intended to determine the uniaxial compressive strength of rock samples in the form of
specimen of regular geometry and is mainly for strength classification and characterization of fragmented rocks.
The test procedure was in accordance with ISRM [5] as highlighted below:
(i) The test specimen was prepared in cubic shape with dimension 60mm x 60mm.
(ii) The test specimens were cut to shape with the aid of mansonry saw.
(iii) Micrometer screw gauge was used to measure the dimensions
(iv) Fifteen prepared specimens (three per location) were compressed under a uniaxial compression
machine with a constant stress rate of 0.5-1.0 MPa such that failure occurred within 5-10
minutes of loading.
The uniaxial compressive strength is then calculated using Equation 1.
CO

F





A

4F

D

2

.......... .......... .......... .......... .......... .......... .......... .......... .......... ......( 1 )

where Co is the compressive strength in MPa, F is the load at failure kN, and A is the cross- sectional area of the
cylindrical core samples in m2 and D is the sample diameter in m.
2.2
Point Load Strength
The test is intended to measure point load strength of the rock specimen. The rock samples were prepared for
each location to the standard suggested by the international Society of Rock Mechanics [5] and the American
Society for Testing and Materials International (ASTM) [6].
Basic diametrical tests were performed on the specimens. The sample is placed between the conical platen
points in a way to allow at least 0.5D as a free end after the longest axis has been measured. The loading
diameter is read from the scale pointer and recorded. Load is then applied steadily through the platens until
failure occurs and the failure load is taken as recorded by the dial gauge. The tensile strength is measured as the
point load strength index (Is) as shown in Equation (2).
Is 

P
D

2

.......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .( 2 )

Since the samples tested do not have a diameter of 50mm, the point load index has to be corrected to standard
strength indices as shown in Equation (4).
The uncorrected point – load strength index is corrected to the point –load strength as equivalent core diameter
of 50mm, for De  50mm
The corrected point load strength index, Is(50) is calculated as in Equation 3.

www.theijes.com

The IJES

Page 69
Drillability of Migmatite Gneisses in Lokoja Environs

I s ( 50 )  FI
 De 
F  

 50 

                                 (3)

s

0 . 45

.......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... ........( 4 )

where F is the size correction factor, P is the failure load( kN), and De is the equivalent core diameter (m).
2.3

Petrographic Analysis
Modal analysis is the method of determining the detailed petrography of rocks by counting different
minerals, thereby determining the mineralogical composition and the percentage of the minerals crystal
formation of various minerals present in the samples of the different rock types.
The polarizing microscope was used in the determination of these properties in each of the slide by
placing the slide on the stage of polarizing microscope taking records of the first, second and the third counts
respectively. The total number of each mineral were estimated against the ground total and multiplied by 100 to
give the percentage composition of the minerals using Equation (5).
Mathematical formular for percentage composition is
Cm 

Tm

X 100                                 ( 5 )

Ttm

where Cm is the Percentage composition of minerals, Tm is Total number of counts for a mineral and Ttm is
Total number of counts for all minerals.
The point count method as given by Hutchinson [7] was used to determine modal composition.
2.4

Penetration Rate
A drilling rig (SECROC 3”) was used to determined rocks penetration rates. The penetration rates tests
were carried out on five different locations numbered 1 to 5. New drilling bits were used in the penetration
tests. The rotational speed of the bit is between 30 to 40rpm and diameters of the holes varies from 80 to
90mm.The highest penetration rate was observed in location (1).
III.
RESULTS
The results of uniaxial compressive strength, point load test, Schmidt hardness, Equivalent Quartz
contents and penetration rate of migmatite gneiss rock samples in different locations of Beautiful Rock Quarry
were shown in Table 2.
Figures 1, 2, 3 and 4 depict the regression analysis of penetration rate against uniaxial compressive
strength, point load strength, Schmidt hammer value and equivalent quartz content respectively.
Plates A to E are the photomicrographs of the studied samples.
Table 2: Results of Penetration Rate, Equivalent Quartz Content, Schmidt Hammer Value, Compressive
Strength and Point Load Strength Values.
Samples
Penetration rate Equivalent quartz content SHV
CO MPa
IS (50)MPa
(m/min)
(%)
A
1.60
57.8
55
283.07
6.02
B
1.33
59.2
46
251.70
5.25
C
1.43
61.8
48
256.60
5.45
D
1.10
70.2
42
239.60
5.09
E
1.50
55.3
56
281.33
5.98

www.theijes.com

The IJES

Page 70
Drillability of Migmatite Gneisses in Lokoja Environs

Figure 1: Penetration rate versus Uniaxial compressive strength

Figure 2: Penetration rate versus Point load strength

Figure 3: Penetration rate versus Schmidt hammer value

www.theijes.com

The IJES

Page 71
Drillability of Migmatite Gneisses in Lokoja Environs

Figure 4: Penetration rate versus Equivalent quartz content

A

B

C

D

E
Plates A,B,C,D and E: Photomicrograph of Migmatite Gneisses (with crossed Nicols. X 40)

www.theijes.com

The IJES

Page 72
Drillability of Migmatite Gneisses in Lokoja Environs
IV.

DISCUSSION

4.1

Appraisal of Strength Characteristics
Table 2 shows that locations A to E possess extremely high uniaxial compressive strength with A
having the highest value when compared to other locations. The Table also indicates that the point load strength
from location A to E has high strength values according to ISRM [8] while location A still have the highest
strength value. All the locations have moderate Schmidt hammer rebound values. From all the locations, the
percentage composition of Quartz belongs to the “highest” class. It can thus be concluded generally that the rock
type is of high strength.
The highest equivalent quartz content and highest penetration rate were recorded at location D.
Location A has the lowest penetration rate. The different penetration rates were largely due to the heametite
variation in each of the locations.
4.2

Correlation Analysis between Strength Characteristics to Drillability Efficiency of Migmatite Gneiss

From Figure, it was observed that penetration rate exhibits a direct relation with the uniaxial
compressive strength value. This indicates that when penetration rate increases, the uniaxial compressive
strength increases as reflected in Equation 6.
PR  0 . 009 UCS  1 . 035 , R

 0 . 854 .......... .......... .......... ........( 6 )

2

where PR = Penetration rate (m/min), UCS = Uniaxial Compressive Strength (MPa)
In Figure 2, the relationship between Penetration Rate and Point Load Strength follows a linear function as
shown in Equation 7.
PR  0 . 409 PLS  0 . 881 , R

 0 . 824 .......... .......... .......... .......... .( 7 )

2

where PR = Penetration rate (m/min), PLS = Point Load Strength (MPa)
Figure 3 shows that the penetration rate is directly proportional to Schmidt hammer value as shown in Equation
(8).
PR  0 . 0295 SHV  0 . 055 , R

2

 0 . 845 .......... .......... .......... .( 8 )

where PR = Penetration rate (m/min), SHV = Schmidt Hammer Valve (%)
In contrary, [4] and [9] got a negatively correlated values of PR against UCS, PLS and SHV while in this study,
it is positively correlated.
Figure 4 shows that the penetration rate is inversely proportional to Quartz equivalent content as shown in
Equation (9)
PR  0 . 029 EQC  3 . 167 , R

2

 0 . 767 .......... .......... .......... ..... ( 9 )

where PR = Penetration rate (m/min), EQC = Equivalent Quartz Content (%)
From the study, it is evident that the higher the Equivalent Quartz Content (EQC), the higher the uniaxial
strength and point load strength. This implies that the mineralogical composition of migmatite gneiss samples
from Beautiful rock Quarry has a great influence on its mechanical properties, and more so, it is evident that
increase in EQC will lead to decrease in Penetration Rate.
From the thin section analysis, the mineral composition of the rock, shape, size and textural
composition were determined. Texturally, it was observed that locations A,C,D,E are medium to coarse grained
while location B is coarse grained.

IV. CONCLUSION
The relationship between the data obtained from the rock mechanics and drillability tests were evaluated
by using regression and correlation analysis with the aid of EXCEL Program. The equation of the best-fit line
and the correlation coefficient were determined for each regression.
Predicting the penetration rate is very important in rock drilling. The penetration rate is a necessary
value for cost estimation and planning of any drilling programme. One of the most important factors affecting
drillability is rock properties. Among these properties are uniaxial compressive strength, point load strength,
Schmidt hammer rebound value (Hardness) and quartz equivalent content. As a pre planning measure for
drilling programme, an ideal of the likely penetration rate can thus be estimated from the relationships
generated.
www.theijes.com

The IJES

Page 73
Drillability of Migmatite Gneisses in Lokoja Environs
V.

RECOMMENDATIONS

The strength properties of the samples tested from beautiful rock quarry have a very high strength,
therefore, it is recommended for various constructional purposes.
Further study is required to check the validity of the derived equation for the other rock types.

REFERENCES
[1]
[2]
[3]
[4]
[5]
[6]
[7]
[8]
[9]

Bilim, N. (2011): Determination of Drillability of some natural stones and their association with
Mc Gregore K. (1967): The drilling of rock published by: C.R. Books Ltd., London
Beste, U., Jacobsein, S., and Hogmark, S. (2007): Rock penetration into cemented carbide drill button drulling rock drilling wear,
26(4) pp. 1142-1151
Kahraman, S. Bilgin, N. and Feridunoglu, C (2003): Dominant Rock properties affecting the penetration rate of Percussive Drills,
International Journal of Rock Mechanics and Mine Sciences, pp. 711-723
ISRM. (1981). Suggested methods. In. Brown, E.T. (Ed.), Rock characterization testing and monitoring. Pergamon, Oxford,
England, pp 211
ASTM, (1994). Annual Book of ASTM (American Society for Testing Materials) Standards -construction: Soil and Rocks.
ASTM Publication, Vol. 04.08.978, p. 975
Hutchinson, C.S. (1974): Laboratory Handbook of Petrographic techniques, John Wiley and Sons, New York, pp.108.
ISRM. (1985). Suggested methods for determining point load strength, ISRM commission on testing methods, working group on
revision of point load test method. Int. J. Rock Mech. Mining Sci. Geomech. Abstr. 22: pp. 51 – 60.
Yarali, O. and Soyar, E. (2011): The effect of mechanical rock properties and brittleness on drillability, Scientific Research and
Essays, Vol. 6(2) pp. 1077-1088.
rock properties, Scientific Research and Essays, Vol. 6(2) pp 382-387.

www.theijes.com

The IJES

Page 74

Más contenido relacionado

La actualidad más candente

Vibrational Analysis Of Cracked Rod Having Circumferential Crack
Vibrational Analysis Of Cracked Rod Having Circumferential Crack Vibrational Analysis Of Cracked Rod Having Circumferential Crack
Vibrational Analysis Of Cracked Rod Having Circumferential Crack IDES Editor
 
An Experimental Investigation into the Grindability Aspects of Newly Develope...
An Experimental Investigation into the Grindability Aspects of Newly Develope...An Experimental Investigation into the Grindability Aspects of Newly Develope...
An Experimental Investigation into the Grindability Aspects of Newly Develope...IDES Editor
 
Laboratory modelling of rock joints under shear and constant normal loading
Laboratory modelling of rock joints under shear and constant normal loadingLaboratory modelling of rock joints under shear and constant normal loading
Laboratory modelling of rock joints under shear and constant normal loadingeSAT Publishing House
 
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...IDES Editor
 
Experimental investigation on effect of different shaped steel fibers on flex...
Experimental investigation on effect of different shaped steel fibers on flex...Experimental investigation on effect of different shaped steel fibers on flex...
Experimental investigation on effect of different shaped steel fibers on flex...IAEME Publication
 
Profiled Deck Composite Slab Strength Verification: A Review
Profiled Deck Composite Slab Strength Verification: A ReviewProfiled Deck Composite Slab Strength Verification: A Review
Profiled Deck Composite Slab Strength Verification: A ReviewOyeniyi Samuel
 
Studies on reinforced hollow concrete block masonry
Studies on reinforced hollow concrete block masonryStudies on reinforced hollow concrete block masonry
Studies on reinforced hollow concrete block masonryeSAT Journals
 
Size effect of plain concrete beams–an experimental study
Size effect of plain concrete beams–an experimental studySize effect of plain concrete beams–an experimental study
Size effect of plain concrete beams–an experimental studyeSAT Journals
 
Size effect of plain concrete beams–an experimental
Size effect of plain concrete beams–an experimentalSize effect of plain concrete beams–an experimental
Size effect of plain concrete beams–an experimentaleSAT Publishing House
 
Research on Contact Characteristics between Bump End Effector and Wafer
Research on Contact Characteristics between Bump End Effector and WaferResearch on Contact Characteristics between Bump End Effector and Wafer
Research on Contact Characteristics between Bump End Effector and WaferIJRES Journal
 
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...AM Publications
 
Flexural behaviour of interior r.c.beam column joint with and without slab un...
Flexural behaviour of interior r.c.beam column joint with and without slab un...Flexural behaviour of interior r.c.beam column joint with and without slab un...
Flexural behaviour of interior r.c.beam column joint with and without slab un...eSAT Publishing House
 
Dk31518522
Dk31518522Dk31518522
Dk31518522IJMER
 
77 palmstrom on_block_size_and_rqd
77 palmstrom on_block_size_and_rqd77 palmstrom on_block_size_and_rqd
77 palmstrom on_block_size_and_rqdLuis Zambrana
 
A study on the performance of circular footing embedded in geogrid reinforced...
A study on the performance of circular footing embedded in geogrid reinforced...A study on the performance of circular footing embedded in geogrid reinforced...
A study on the performance of circular footing embedded in geogrid reinforced...eSAT Publishing House
 
Design, Strength and Failure of Paleobiology Plaster Jackets
Design, Strength and Failure of Paleobiology Plaster JacketsDesign, Strength and Failure of Paleobiology Plaster Jackets
Design, Strength and Failure of Paleobiology Plaster JacketsKeshav Swarup
 

La actualidad más candente (19)

Vibrational Analysis Of Cracked Rod Having Circumferential Crack
Vibrational Analysis Of Cracked Rod Having Circumferential Crack Vibrational Analysis Of Cracked Rod Having Circumferential Crack
Vibrational Analysis Of Cracked Rod Having Circumferential Crack
 
An Experimental Investigation into the Grindability Aspects of Newly Develope...
An Experimental Investigation into the Grindability Aspects of Newly Develope...An Experimental Investigation into the Grindability Aspects of Newly Develope...
An Experimental Investigation into the Grindability Aspects of Newly Develope...
 
Laboratory modelling of rock joints under shear and constant normal loading
Laboratory modelling of rock joints under shear and constant normal loadingLaboratory modelling of rock joints under shear and constant normal loading
Laboratory modelling of rock joints under shear and constant normal loading
 
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...
Experimental and Numerical Assessment of Crash Behavior of Welded Thin Wall R...
 
Experimental investigation on effect of different shaped steel fibers on flex...
Experimental investigation on effect of different shaped steel fibers on flex...Experimental investigation on effect of different shaped steel fibers on flex...
Experimental investigation on effect of different shaped steel fibers on flex...
 
P01245127138
P01245127138P01245127138
P01245127138
 
Profiled Deck Composite Slab Strength Verification: A Review
Profiled Deck Composite Slab Strength Verification: A ReviewProfiled Deck Composite Slab Strength Verification: A Review
Profiled Deck Composite Slab Strength Verification: A Review
 
Studies on reinforced hollow concrete block masonry
Studies on reinforced hollow concrete block masonryStudies on reinforced hollow concrete block masonry
Studies on reinforced hollow concrete block masonry
 
Size effect of plain concrete beams–an experimental study
Size effect of plain concrete beams–an experimental studySize effect of plain concrete beams–an experimental study
Size effect of plain concrete beams–an experimental study
 
Size effect of plain concrete beams–an experimental
Size effect of plain concrete beams–an experimentalSize effect of plain concrete beams–an experimental
Size effect of plain concrete beams–an experimental
 
Research on Contact Characteristics between Bump End Effector and Wafer
Research on Contact Characteristics between Bump End Effector and WaferResearch on Contact Characteristics between Bump End Effector and Wafer
Research on Contact Characteristics between Bump End Effector and Wafer
 
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...
Fatigue Study of Ijuk-Aren Interaction on Soil Cement Pavement Model for Elas...
 
Flexural behaviour of interior r.c.beam column joint with and without slab un...
Flexural behaviour of interior r.c.beam column joint with and without slab un...Flexural behaviour of interior r.c.beam column joint with and without slab un...
Flexural behaviour of interior r.c.beam column joint with and without slab un...
 
Dk31518522
Dk31518522Dk31518522
Dk31518522
 
Bk32396400
Bk32396400Bk32396400
Bk32396400
 
77 palmstrom on_block_size_and_rqd
77 palmstrom on_block_size_and_rqd77 palmstrom on_block_size_and_rqd
77 palmstrom on_block_size_and_rqd
 
20320140507004
2032014050700420320140507004
20320140507004
 
A study on the performance of circular footing embedded in geogrid reinforced...
A study on the performance of circular footing embedded in geogrid reinforced...A study on the performance of circular footing embedded in geogrid reinforced...
A study on the performance of circular footing embedded in geogrid reinforced...
 
Design, Strength and Failure of Paleobiology Plaster Jackets
Design, Strength and Failure of Paleobiology Plaster JacketsDesign, Strength and Failure of Paleobiology Plaster Jackets
Design, Strength and Failure of Paleobiology Plaster Jackets
 

Destacado

H03401049054
H03401049054H03401049054
H03401049054theijes
 
B03402012020
B03402012020B03402012020
B03402012020theijes
 
L021203080089
L021203080089L021203080089
L021203080089theijes
 
G03406041045
G03406041045G03406041045
G03406041045theijes
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)theijes
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)theijes
 
B03403007011
B03403007011B03403007011
B03403007011theijes
 
K03401065070
K03401065070K03401065070
K03401065070theijes
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)theijes
 
C03405021028
C03405021028C03405021028
C03405021028theijes
 
The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)theijes
 
D03406028031
D03406028031D03406028031
D03406028031theijes
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)theijes
 
D0321019030
D0321019030D0321019030
D0321019030theijes
 
E0321031039
E0321031039E0321031039
E0321031039theijes
 
H03402054058
H03402054058H03402054058
H03402054058theijes
 
I0324053055
I0324053055I0324053055
I0324053055theijes
 
E03404025032
E03404025032E03404025032
E03404025032theijes
 
D03402029035
D03402029035D03402029035
D03402029035theijes
 

Destacado (19)

H03401049054
H03401049054H03401049054
H03401049054
 
B03402012020
B03402012020B03402012020
B03402012020
 
L021203080089
L021203080089L021203080089
L021203080089
 
G03406041045
G03406041045G03406041045
G03406041045
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)
 
B03403007011
B03403007011B03403007011
B03403007011
 
K03401065070
K03401065070K03401065070
K03401065070
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)
 
C03405021028
C03405021028C03405021028
C03405021028
 
The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)
 
D03406028031
D03406028031D03406028031
D03406028031
 
The International Journal of Engineering and Science (The IJES)
 The International Journal of Engineering and Science (The IJES) The International Journal of Engineering and Science (The IJES)
The International Journal of Engineering and Science (The IJES)
 
D0321019030
D0321019030D0321019030
D0321019030
 
E0321031039
E0321031039E0321031039
E0321031039
 
H03402054058
H03402054058H03402054058
H03402054058
 
I0324053055
I0324053055I0324053055
I0324053055
 
E03404025032
E03404025032E03404025032
E03404025032
 
D03402029035
D03402029035D03402029035
D03402029035
 

Similar a H032030068074

I032030075081
I032030075081I032030075081
I032030075081theijes
 
Assessment of powder factor in surface bench blasting using schmidt rebound n...
Assessment of powder factor in surface bench blasting using schmidt rebound n...Assessment of powder factor in surface bench blasting using schmidt rebound n...
Assessment of powder factor in surface bench blasting using schmidt rebound n...eSAT Journals
 
Evaluation of shear strength of model rock joints by experimental study
Evaluation of shear strength of model rock joints by experimental studyEvaluation of shear strength of model rock joints by experimental study
Evaluation of shear strength of model rock joints by experimental studyeSAT Publishing House
 
Comparative Study on Flexural Strength of M-40 Grade with Lapping of Bars
Comparative Study on Flexural Strength of M-40 Grade with Lapping of BarsComparative Study on Flexural Strength of M-40 Grade with Lapping of Bars
Comparative Study on Flexural Strength of M-40 Grade with Lapping of BarsIRJET Journal
 
A Study in Various Techniques, Advances and Issues Used for Rock Masses
A Study in Various Techniques, Advances and Issues Used for Rock MassesA Study in Various Techniques, Advances and Issues Used for Rock Masses
A Study in Various Techniques, Advances and Issues Used for Rock MassesIJRES Journal
 
rock presentation - Copy.pptx
rock presentation - Copy.pptxrock presentation - Copy.pptx
rock presentation - Copy.pptxPushkalMathna
 
30_IJT_5_2_2015-raviprasad gupta BR
30_IJT_5_2_2015-raviprasad gupta BR30_IJT_5_2_2015-raviprasad gupta BR
30_IJT_5_2_2015-raviprasad gupta BRRAVI PRASAD GUPTA
 
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...IRJET Journal
 
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...IRJET Journal
 
Study of effect of cooling rate on mechanical and
Study of effect of cooling rate on mechanical andStudy of effect of cooling rate on mechanical and
Study of effect of cooling rate on mechanical andeSAT Publishing House
 
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...IJERA Editor
 
Study of Tensile Strength of Marble Stone Disc by Ring Test
Study of Tensile Strength of Marble Stone Disc by Ring TestStudy of Tensile Strength of Marble Stone Disc by Ring Test
Study of Tensile Strength of Marble Stone Disc by Ring TestIRJET Journal
 
IRJET - Performance of SFRC Beams under Combined State of Flexure, Direct...
IRJET -  	  Performance of SFRC Beams under Combined State of Flexure, Direct...IRJET -  	  Performance of SFRC Beams under Combined State of Flexure, Direct...
IRJET - Performance of SFRC Beams under Combined State of Flexure, Direct...IRJET Journal
 
Evaluation of fracture toughness of sintered silica nickel nanocomposites
Evaluation of fracture toughness of sintered silica nickel nanocompositesEvaluation of fracture toughness of sintered silica nickel nanocomposites
Evaluation of fracture toughness of sintered silica nickel nanocompositeseSAT Journals
 
EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...
 EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC... EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...
EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...IAEME Publication
 
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...IRJET Journal
 
IRJET- Study of Response of Wall Type Pier for Varying Width of Superstru...
IRJET-  	  Study of Response of Wall Type Pier for Varying Width of Superstru...IRJET-  	  Study of Response of Wall Type Pier for Varying Width of Superstru...
IRJET- Study of Response of Wall Type Pier for Varying Width of Superstru...IRJET Journal
 
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMN
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMNA STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMN
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMNIAEME Publication
 
The effect of disturbance factor on the stability of tunnels (Case study: Tun...
The effect of disturbance factor on the stability of tunnels (Case study: Tun...The effect of disturbance factor on the stability of tunnels (Case study: Tun...
The effect of disturbance factor on the stability of tunnels (Case study: Tun...IJRES Journal
 

Similar a H032030068074 (20)

I032030075081
I032030075081I032030075081
I032030075081
 
Assessment of powder factor in surface bench blasting using schmidt rebound n...
Assessment of powder factor in surface bench blasting using schmidt rebound n...Assessment of powder factor in surface bench blasting using schmidt rebound n...
Assessment of powder factor in surface bench blasting using schmidt rebound n...
 
Evaluation of shear strength of model rock joints by experimental study
Evaluation of shear strength of model rock joints by experimental studyEvaluation of shear strength of model rock joints by experimental study
Evaluation of shear strength of model rock joints by experimental study
 
Comparative Study on Flexural Strength of M-40 Grade with Lapping of Bars
Comparative Study on Flexural Strength of M-40 Grade with Lapping of BarsComparative Study on Flexural Strength of M-40 Grade with Lapping of Bars
Comparative Study on Flexural Strength of M-40 Grade with Lapping of Bars
 
A Study in Various Techniques, Advances and Issues Used for Rock Masses
A Study in Various Techniques, Advances and Issues Used for Rock MassesA Study in Various Techniques, Advances and Issues Used for Rock Masses
A Study in Various Techniques, Advances and Issues Used for Rock Masses
 
rock presentation - Copy.pptx
rock presentation - Copy.pptxrock presentation - Copy.pptx
rock presentation - Copy.pptx
 
30_IJT_5_2_2015-raviprasad gupta BR
30_IJT_5_2_2015-raviprasad gupta BR30_IJT_5_2_2015-raviprasad gupta BR
30_IJT_5_2_2015-raviprasad gupta BR
 
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...
IRJET - Behaviour of Rectangular SFRC Beam Specimens Under Combined State of ...
 
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...
A Study on Behavior of Rocks Under Point load, Uniaxial Compressive and Tensi...
 
Study of effect of cooling rate on mechanical and
Study of effect of cooling rate on mechanical andStudy of effect of cooling rate on mechanical and
Study of effect of cooling rate on mechanical and
 
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...
Effect of Coarse Aggregate Size on the Compressive Strength and the Flexural ...
 
Study of Tensile Strength of Marble Stone Disc by Ring Test
Study of Tensile Strength of Marble Stone Disc by Ring TestStudy of Tensile Strength of Marble Stone Disc by Ring Test
Study of Tensile Strength of Marble Stone Disc by Ring Test
 
IRJET - Performance of SFRC Beams under Combined State of Flexure, Direct...
IRJET -  	  Performance of SFRC Beams under Combined State of Flexure, Direct...IRJET -  	  Performance of SFRC Beams under Combined State of Flexure, Direct...
IRJET - Performance of SFRC Beams under Combined State of Flexure, Direct...
 
Evaluation of fracture toughness of sintered silica nickel nanocomposites
Evaluation of fracture toughness of sintered silica nickel nanocompositesEvaluation of fracture toughness of sintered silica nickel nanocomposites
Evaluation of fracture toughness of sintered silica nickel nanocomposites
 
EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...
 EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC... EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...
EXPERIMENTAL INVESTIGATIONS ON COMPRESSION BEHAVIOR PARAMETERS OF NSC AND SC...
 
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...
IRJET- Determination of Fracture Parameters of Self-Compacting Lightweight Co...
 
IRJET- Study of Response of Wall Type Pier for Varying Width of Superstru...
IRJET-  	  Study of Response of Wall Type Pier for Varying Width of Superstru...IRJET-  	  Study of Response of Wall Type Pier for Varying Width of Superstru...
IRJET- Study of Response of Wall Type Pier for Varying Width of Superstru...
 
Development of Intelligent Systems to Predict Diamond Wire Saw Performance
Development of Intelligent Systems to Predict Diamond Wire Saw PerformanceDevelopment of Intelligent Systems to Predict Diamond Wire Saw Performance
Development of Intelligent Systems to Predict Diamond Wire Saw Performance
 
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMN
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMNA STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMN
A STUDY ON EFFECTS OF GEOSYNTHETIC ENCASEMENT ON FLOATING STONE COLUMN
 
The effect of disturbance factor on the stability of tunnels (Case study: Tun...
The effect of disturbance factor on the stability of tunnels (Case study: Tun...The effect of disturbance factor on the stability of tunnels (Case study: Tun...
The effect of disturbance factor on the stability of tunnels (Case study: Tun...
 

Último

08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking MenDelhi Call girls
 
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUnderstanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUK Journal
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slidevu2urc
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Enterprise Knowledge
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking MenDelhi Call girls
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...apidays
 
Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessPixlogix Infotech
 
08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking MenDelhi Call girls
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...Martijn de Jong
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsJoaquim Jorge
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxMalak Abu Hammad
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityPrincipled Technologies
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationRadu Cotescu
 
Real Time Object Detection Using Open CV
Real Time Object Detection Using Open CVReal Time Object Detection Using Open CV
Real Time Object Detection Using Open CVKhem
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024Rafal Los
 
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking MenDelhi Call girls
 
What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?Antenna Manufacturer Coco
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc
 
[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdfhans926745
 

Último (20)

08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men
 
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUnderstanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slide
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
 
Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your Business
 
08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptx
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivity
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organization
 
Real Time Object Detection Using Open CV
Real Time Object Detection Using Open CVReal Time Object Detection Using Open CV
Real Time Object Detection Using Open CV
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
 
What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
 
[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf
 

H032030068074

  • 1. The International Journal Of Engineering And Science (IJES) ||Volume|| 3 ||Issue|| 2 ||Pages|| 68- 74 || 2014 || ISSN (e): 2319 – 1813 ISSN (p): 2319 – 1805 Drillability of Migmatite Gneisses in Lokoja Environs 1 Jethro, Michael Adebola, 2 Shehu, Shaib Abdulazeez 3 Saliu, Muyideen Alade 1&2 3 Department of Mineral Resources Engineering, Kogi State Polytechnic, Lokoja, Nigeria Department of Mining Engineering, the Federal University Technology, Akure Ondo State, Nigeria ---------------------------------------------------------ABSTRACT------------------------------------------------In this study, correlation analysis was applied to investigate the relationship between some strength properties (Uniaxial Compressive Strength, Point Load Strength, Schmidt Hammer Value, Equivalent Quartz Content and Penetration Rate) of Beautiful Rock Quarry along Ajaokuta Road in Kogi State, North Central Nigeria. These properties were determined and the relationships between them were described by Regression Analysis. The coefficient of correlation for all the parameters evaluated is more than 0.7. The result indicated that Uniaxial Compressive Strength (UCS) varies between 239.60MPa and 283.01MPa, Point Load Strength varies between 5.9MPa and 6.01MPa, the Schmidt Hammer Value varies between 42 and 56, Equivalent Quartz Content varies between 55.3% and 70.2%, and the Penetration Rate Varies Between 1.10m/min and 1.60m/min. This result shows that the Uniaxial Compressive Strength of the rock tested was extremely high while the Point Load Strength was high [5]. The Schmidt hammer rebound value is moderate. The study revealed that the Equivalent Quartz Content is one of the major factors controlling penetration rate in rocks. Keywords: Drillability, penetration rate, strength properties, correlation and, regression analysis --------------------------------------------------------------------------------------------------------------------------------------Date of Submission: 02 November 2013 Date of Acceptance: 20 February 2014 --------------------------------------------------------------------------------------------------------------------------------------- I. INTRODUCTION Drillability and penetration rate are similar terms. While drillability indicates whether penetration is easy or hard, penetration rate indicates whether it is fast or slow [1]. Migmatite Gneiss rock is economically useful for construction works and ornamental purposes. It is imperative to study and determine its drillability or penetration rate in order to have a long term production plan schedule or to meet up with target production rate. The drillability of the migmatite Gneiss can be studied by determining various strength properties: Its mechanical properties (uniaxial compressive strength, tensile strength, point load index) and physical properties (porosity, density, hardness, permeability among others). The mineralogical compositions and petrography of these rocks have significant effects on their properties and thus greatly influence the drillability. Drillability is a measure of the resistance of mine rock to disintegration during drilling. Rock drillability largely depends on hardness of minerals, grain size, degree of cementation of light minerals and the influence of specific tools that is used which determine the velocity or the speed of rotation. Rock drilling is performed with a number of techniques depending on operational variables, usage, hardness and strength characteristics of the rock. The operational variables that are controllable are rotation speed, thrust, blow frequency and flushing. However, rock properties and geological conditions are uncontrollable parameters [2] and [3]. Various methods have been used to determine the mechanical properties of migmatite Gneiss using the standards like ISRM, ASTM among others. The most important mechanical properties measured are Uniaxial Compressive Strength (UCS), Point Load Test (PLT), mineralogical compositions and physical properties (hardness). Factors affecting drillability can be described as changeable and unchangeable. These factors are rock characteristics, mechanical factors and complementary factors. The hardness of the rock, uniaxial compressive strength (UCS), tensile strength and point load test are the vital unchangeable factors. Penetration rate is the progression of the drilling bit into the rock in a certain period of time, which is generally expressed in “m/min”. The main changeable factors are type and design characteristics, the amount of compression applied and drill rotational speed. Fast and economical penetration depends on the mineralogical structure of the rock, drilling machine, geo-mechanic characteristic, and the choice of drilling tools appropriate to the rock [4]. Migmatite gnesis is the commonest rock type in Nigerian Basement Complex. There are two main types of gneisses: the biotite gneiss and the banded gneiss which is very wide spread. The biotite gneisses are normally fine grained with strong foliation caused by the parallel arrangement of alternating dark and light colours. www.theijes.com The IJES Page 68
  • 2. Drillability of Migmatite Gneisses in Lokoja Environs The banded gneisses show alternating light – coloured and dark bands and exhibit intricate folding of their bands. The migmatite gneiss is the oldest rock and is believed to be sedimentary in origin but was later source altered into metamorphic and granite rouse. Table 1 shows the coordinates of the study areas and a brief description of the rock samples studied. Table 1: Location of the Study Areas Samples No. Locations Sizes Descriptions N70 421 14.011 A E060 441 37.811 350MM Medium to coarse grains & Dark in colour. - 55M ASL N70 421 15.311 B E060 441 39.311 350MM Coarse grain & Light in colour. - 64M ASL N70 421 12.211 C E060 441 44.211 350MM Medium to Coarse grain & Grey in colour. - 52M ASL N70 421 12.211 D 350MM Fine – medium grain & pinkish in colour E060 441 44.211 N70 421 1611 E 350MM Medium to Coarse grain & grey colour. E0060 441 3011 II. METHODOLOGY 2.1 Uniaxial Compressive Strength This method is intended to determine the uniaxial compressive strength of rock samples in the form of specimen of regular geometry and is mainly for strength classification and characterization of fragmented rocks. The test procedure was in accordance with ISRM [5] as highlighted below: (i) The test specimen was prepared in cubic shape with dimension 60mm x 60mm. (ii) The test specimens were cut to shape with the aid of mansonry saw. (iii) Micrometer screw gauge was used to measure the dimensions (iv) Fifteen prepared specimens (three per location) were compressed under a uniaxial compression machine with a constant stress rate of 0.5-1.0 MPa such that failure occurred within 5-10 minutes of loading. The uniaxial compressive strength is then calculated using Equation 1. CO F   A 4F D 2 .......... .......... .......... .......... .......... .......... .......... .......... .......... ......( 1 ) where Co is the compressive strength in MPa, F is the load at failure kN, and A is the cross- sectional area of the cylindrical core samples in m2 and D is the sample diameter in m. 2.2 Point Load Strength The test is intended to measure point load strength of the rock specimen. The rock samples were prepared for each location to the standard suggested by the international Society of Rock Mechanics [5] and the American Society for Testing and Materials International (ASTM) [6]. Basic diametrical tests were performed on the specimens. The sample is placed between the conical platen points in a way to allow at least 0.5D as a free end after the longest axis has been measured. The loading diameter is read from the scale pointer and recorded. Load is then applied steadily through the platens until failure occurs and the failure load is taken as recorded by the dial gauge. The tensile strength is measured as the point load strength index (Is) as shown in Equation (2). Is  P D 2 .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .( 2 ) Since the samples tested do not have a diameter of 50mm, the point load index has to be corrected to standard strength indices as shown in Equation (4). The uncorrected point – load strength index is corrected to the point –load strength as equivalent core diameter of 50mm, for De  50mm The corrected point load strength index, Is(50) is calculated as in Equation 3. www.theijes.com The IJES Page 69
  • 3. Drillability of Migmatite Gneisses in Lokoja Environs I s ( 50 )  FI  De  F     50                                   (3) s 0 . 45 .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... .......... ........( 4 ) where F is the size correction factor, P is the failure load( kN), and De is the equivalent core diameter (m). 2.3 Petrographic Analysis Modal analysis is the method of determining the detailed petrography of rocks by counting different minerals, thereby determining the mineralogical composition and the percentage of the minerals crystal formation of various minerals present in the samples of the different rock types. The polarizing microscope was used in the determination of these properties in each of the slide by placing the slide on the stage of polarizing microscope taking records of the first, second and the third counts respectively. The total number of each mineral were estimated against the ground total and multiplied by 100 to give the percentage composition of the minerals using Equation (5). Mathematical formular for percentage composition is Cm  Tm X 100                                 ( 5 ) Ttm where Cm is the Percentage composition of minerals, Tm is Total number of counts for a mineral and Ttm is Total number of counts for all minerals. The point count method as given by Hutchinson [7] was used to determine modal composition. 2.4 Penetration Rate A drilling rig (SECROC 3”) was used to determined rocks penetration rates. The penetration rates tests were carried out on five different locations numbered 1 to 5. New drilling bits were used in the penetration tests. The rotational speed of the bit is between 30 to 40rpm and diameters of the holes varies from 80 to 90mm.The highest penetration rate was observed in location (1). III. RESULTS The results of uniaxial compressive strength, point load test, Schmidt hardness, Equivalent Quartz contents and penetration rate of migmatite gneiss rock samples in different locations of Beautiful Rock Quarry were shown in Table 2. Figures 1, 2, 3 and 4 depict the regression analysis of penetration rate against uniaxial compressive strength, point load strength, Schmidt hammer value and equivalent quartz content respectively. Plates A to E are the photomicrographs of the studied samples. Table 2: Results of Penetration Rate, Equivalent Quartz Content, Schmidt Hammer Value, Compressive Strength and Point Load Strength Values. Samples Penetration rate Equivalent quartz content SHV CO MPa IS (50)MPa (m/min) (%) A 1.60 57.8 55 283.07 6.02 B 1.33 59.2 46 251.70 5.25 C 1.43 61.8 48 256.60 5.45 D 1.10 70.2 42 239.60 5.09 E 1.50 55.3 56 281.33 5.98 www.theijes.com The IJES Page 70
  • 4. Drillability of Migmatite Gneisses in Lokoja Environs Figure 1: Penetration rate versus Uniaxial compressive strength Figure 2: Penetration rate versus Point load strength Figure 3: Penetration rate versus Schmidt hammer value www.theijes.com The IJES Page 71
  • 5. Drillability of Migmatite Gneisses in Lokoja Environs Figure 4: Penetration rate versus Equivalent quartz content A B C D E Plates A,B,C,D and E: Photomicrograph of Migmatite Gneisses (with crossed Nicols. X 40) www.theijes.com The IJES Page 72
  • 6. Drillability of Migmatite Gneisses in Lokoja Environs IV. DISCUSSION 4.1 Appraisal of Strength Characteristics Table 2 shows that locations A to E possess extremely high uniaxial compressive strength with A having the highest value when compared to other locations. The Table also indicates that the point load strength from location A to E has high strength values according to ISRM [8] while location A still have the highest strength value. All the locations have moderate Schmidt hammer rebound values. From all the locations, the percentage composition of Quartz belongs to the “highest” class. It can thus be concluded generally that the rock type is of high strength. The highest equivalent quartz content and highest penetration rate were recorded at location D. Location A has the lowest penetration rate. The different penetration rates were largely due to the heametite variation in each of the locations. 4.2 Correlation Analysis between Strength Characteristics to Drillability Efficiency of Migmatite Gneiss From Figure, it was observed that penetration rate exhibits a direct relation with the uniaxial compressive strength value. This indicates that when penetration rate increases, the uniaxial compressive strength increases as reflected in Equation 6. PR  0 . 009 UCS  1 . 035 , R  0 . 854 .......... .......... .......... ........( 6 ) 2 where PR = Penetration rate (m/min), UCS = Uniaxial Compressive Strength (MPa) In Figure 2, the relationship between Penetration Rate and Point Load Strength follows a linear function as shown in Equation 7. PR  0 . 409 PLS  0 . 881 , R  0 . 824 .......... .......... .......... .......... .( 7 ) 2 where PR = Penetration rate (m/min), PLS = Point Load Strength (MPa) Figure 3 shows that the penetration rate is directly proportional to Schmidt hammer value as shown in Equation (8). PR  0 . 0295 SHV  0 . 055 , R 2  0 . 845 .......... .......... .......... .( 8 ) where PR = Penetration rate (m/min), SHV = Schmidt Hammer Valve (%) In contrary, [4] and [9] got a negatively correlated values of PR against UCS, PLS and SHV while in this study, it is positively correlated. Figure 4 shows that the penetration rate is inversely proportional to Quartz equivalent content as shown in Equation (9) PR  0 . 029 EQC  3 . 167 , R 2  0 . 767 .......... .......... .......... ..... ( 9 ) where PR = Penetration rate (m/min), EQC = Equivalent Quartz Content (%) From the study, it is evident that the higher the Equivalent Quartz Content (EQC), the higher the uniaxial strength and point load strength. This implies that the mineralogical composition of migmatite gneiss samples from Beautiful rock Quarry has a great influence on its mechanical properties, and more so, it is evident that increase in EQC will lead to decrease in Penetration Rate. From the thin section analysis, the mineral composition of the rock, shape, size and textural composition were determined. Texturally, it was observed that locations A,C,D,E are medium to coarse grained while location B is coarse grained. IV. CONCLUSION The relationship between the data obtained from the rock mechanics and drillability tests were evaluated by using regression and correlation analysis with the aid of EXCEL Program. The equation of the best-fit line and the correlation coefficient were determined for each regression. Predicting the penetration rate is very important in rock drilling. The penetration rate is a necessary value for cost estimation and planning of any drilling programme. One of the most important factors affecting drillability is rock properties. Among these properties are uniaxial compressive strength, point load strength, Schmidt hammer rebound value (Hardness) and quartz equivalent content. As a pre planning measure for drilling programme, an ideal of the likely penetration rate can thus be estimated from the relationships generated. www.theijes.com The IJES Page 73
  • 7. Drillability of Migmatite Gneisses in Lokoja Environs V. RECOMMENDATIONS The strength properties of the samples tested from beautiful rock quarry have a very high strength, therefore, it is recommended for various constructional purposes. Further study is required to check the validity of the derived equation for the other rock types. REFERENCES [1] [2] [3] [4] [5] [6] [7] [8] [9] Bilim, N. (2011): Determination of Drillability of some natural stones and their association with Mc Gregore K. (1967): The drilling of rock published by: C.R. Books Ltd., London Beste, U., Jacobsein, S., and Hogmark, S. (2007): Rock penetration into cemented carbide drill button drulling rock drilling wear, 26(4) pp. 1142-1151 Kahraman, S. Bilgin, N. and Feridunoglu, C (2003): Dominant Rock properties affecting the penetration rate of Percussive Drills, International Journal of Rock Mechanics and Mine Sciences, pp. 711-723 ISRM. (1981). Suggested methods. In. Brown, E.T. (Ed.), Rock characterization testing and monitoring. Pergamon, Oxford, England, pp 211 ASTM, (1994). Annual Book of ASTM (American Society for Testing Materials) Standards -construction: Soil and Rocks. ASTM Publication, Vol. 04.08.978, p. 975 Hutchinson, C.S. (1974): Laboratory Handbook of Petrographic techniques, John Wiley and Sons, New York, pp.108. ISRM. (1985). Suggested methods for determining point load strength, ISRM commission on testing methods, working group on revision of point load test method. Int. J. Rock Mech. Mining Sci. Geomech. Abstr. 22: pp. 51 – 60. Yarali, O. and Soyar, E. (2011): The effect of mechanical rock properties and brittleness on drillability, Scientific Research and Essays, Vol. 6(2) pp. 1077-1088. rock properties, Scientific Research and Essays, Vol. 6(2) pp 382-387. www.theijes.com The IJES Page 74