SlideShare a Scribd company logo
1 of 23
Download to read offline
Dept. of CE, GCE Kannur Dr.RajeshKN
Design of Two-way Slabs
Dr. Rajesh K. N.
Assistant Professor in Civil Engineering
Govt. College of Engineering, Kannur
Design of Concrete Structures
Dept. of CE, GCE Kannur Dr.RajeshKN
2
(Analysis and design in Module II, III and IV should be based on Limit State
Method. Reinforcement detailing shall conform to SP34)
MODULE III (13 hours)
Slabs : Continuous and two way rectangular slabs (wall-supported)
with different support conditions, analysis using IS 456 moment
coefficients, design for flexure and torsion, reinforcement detailing –
Use of SP 16 charts.
Staircases : Straight flight and dog-legged stairs – waist slab type and
folded plate type, reinforcement detailing.
Dept. of CE, GCE Kannur Dr.RajeshKN
Two-Way Slabs
• Initial proportioning of the slab thickness may be done by
span/effective depth ratios
• The effective span in the short span direction should be considered
for this purpose
• A value of kt ≈ 1.5 ( modification factor to max l/d ratio) may be
considered for preliminary design.
Dept. of CE, GCE Kannur Dr.RajeshKN
4
With mild steel (Fe 250),
0 8 35
0 8 40
for simply supported slabs
for continuous slabs
.
.
x
x
l
D
l
⎧
⎪⎪ ×
≥ ⎨
⎪
⎪ ×⎩
With Fe415 steel,
35
40
for simply supported slabs
for continuous slabs
x
x
l
D
l
⎧
⎪⎪
≥ ⎨
⎪
⎪⎩
•For two-way slabs with spans up to 3.5 m and live loads not
exceeding 3.0 kN/m2, span to overall depth ratio can be taken as
follows, for deflection control (Cl. 24.1, Note 2):
Dept. of CE, GCE Kannur Dr.RajeshKN
5
• According to the Code (Cl. 24.4), two-way slabs may be designed
by any acceptable theory, using the coefficients given in Annex D.
• Code suggests design procedures (in the case of uniformly loaded
two-way rectangular slabs) for:
• simply supported slabs whose corners are not restrained
from lifting up [Cl. D–2].
• ‘torsionally restrained’ slabs, whose corners are restrained
from lifting up and whose edges may be continuous or
discontinuous [Cl. D–1].
• The flexural reinforcements in the two directions are provided to
resist the maximum bending moments Mux = αx wu lx
2 (in the short
span) and Muy = αy wu lx
2 (in the long span).
Dept. of CE, GCE Kannur Dr.RajeshKN
6
• The moment coefficients prescribed in the Code (Cl. D–2) to
estimate the maximum moments (per unit width) in the short span
and long span directions are based on the Rankine-Grashoff theory.
• However, the moment coefficients recommended in the Code
(Cl. D–1) are based on inelastic analysis (yield line analysis rather than
elastic theory.
Dept. of CE, GCE Kannur Dr.RajeshKN
Nine different types of ‘restrained’ rectangular slab panels
lx
continuous (or
fixed) edge
simply supported
edge
ly
Dept. of CE, GCE Kannur Dr.RajeshKN
8
Design a simply supported slab to cover a room with internal
dimensions 4.0 m × 5.0 m and 230 mm thick brick walls all around.
Assume a live load of 3 kN/m2 and a finish load of 1 kN/m2. Use M 20
concrete and Fe 415 steel. Assume that the slab corners are free to lift
up. Assume mild exposure conditions.
Effective short span ≈ 4150 mm
Assume an effective depth d ≈ 4150
20 15× .
= 138 mm
With a clear cover of 20 mm and say, 10 φ bars,
overall thickness of slab D ≈ 138 + 20 + 5 = 163 mm
Provide D = 165 mm
dx = 165 – 20 – 5 = 140 mm
dy = 140– 10 = 130 mm
Design Problem 1
1. Effective span and trial depths
Dept. of CE, GCE Kannur Dr.RajeshKN
9
Effective spans
⎩
⎨
⎧
=+=
=+=
mm
mm
51301305000
41401404000
y
x
l
l
5130
4140
y
x
l
r
l
≡ = = 1.239
self weight @ 25 kN/m3 × 0.165m = 4.13 kN/m2
finishes (given) = 1.0 kN/m2
live loads (given) = 3.0 kN/m2
Total w = 8.13 kN/m2
Factored load wu = 8.13 × 1.5 = 12.20 kN/m2
2. Loads:
Dept. of CE, GCE Kannur Dr.RajeshKN
10
3. Design Moments (for strips at midspan, 1 m wide in each direction)
As the slab corners are torsionally unrestrained, Table 27 gives
moment coefficients:
αx = 0.0878
αy = 0.0571
short span: Mux = αx wulx
2 = 0.0878 × 12.20 × 4.1402 = 18.36 kNm/m
long span: Muy = αy wulx
2 = 0.0571 × 12.20 × 4.1402 = 11.94 kNm/m
Required spacing of 10 φ bars =
385
5.781000× = 204 mm
4. Design of Reinforcement
6
2 3 2
18 36 10
10 140
.ux
x
M
bd
×
=
×
= 0.9367 MPa
(Ast)x, reqd = (0.275 × 10–2) × 1000 × 140 = 385 mm2/m
a. Shorter span
[Table 3, Page 49, SP: 16]0 275,( ) .t x reqdp =
Dept. of CE, GCE Kannur Dr.RajeshKN
11
(Ast)y, reqd = (0.204 × 10–2) × 1000 × 130 = 265.7 mm2/m
Required spacing of 10 φ bars =
7.265
5.781000×
= 295 mm
3 3 140
3 3 130
(short span)
(long span)v
d
s
d
= ×⎧
≤ ⎨
= ×⎩
Maximum spacing (Cl.26.3.3 b)
10 200 392 5
10 290 270 7
2
2
(short span) mm m
(long span) mm m
,
,
@ .
@ .
st x
st y
c c A
c c A
ϕ
ϕ
⎧ ⇒ =⎪
⎨
⇒ =⎪⎩
Provide
6
2 3 2
11 94 10
10 130
.uy
y
M
bd
×
=
×
= 0.7065 MPa
b. Longer span
Dept. of CE, GCE Kannur Dr.RajeshKN
12
5. Check for deflection control
3
392 5
100
10 140
,
.
t xp = ×
×
= 0.280
fs = 0.58 × 415 × 385/392.5 = 236 MPa
Modification factor kt = 1.5 (Fig. 3 of Code)
(l/d)max = 20 × 1.5 = 30
(l/d)provided =
140
4140
= 29.6 < 30 — OK.
Dept. of CE, GCE Kannur Dr.RajeshKN
13
6. Check for shear
Average effective depth d = (140 + 130)/2 = 135 mm
Vu = wu(0.5lxn – d)
u
v
V
bd
τ = = 22.75 × 103/(1000 × 135) = 0.169 MPa
For pt = 0.28 ,
k c vτ τ> — Hence, OK.
= 0.376 MPaτ c
where lxn is the clear span in the short span direction
• The critical section for shear is to be considered d away from
the face of the support.
•An average effective depth d = (dx + dy)/2 may be considered in
the calculations.
= 12.20 (0.5 × 4.0 – 0.135) = 22.75 kN/m
(Table 19, Page 73)
1 3.k = (Cl. 40.2.1.1)
Dept. of CE, GCE Kannur Dr.RajeshKN
4000
230
8 φ bars
165
525
SECTION AA
PLAN OF FLOOR SLAB
A
165mm
thick
A
10 φ@ 200 c/c
10 φ@ 290 c/c
10 φ@ 290 c/c
10 φ @ 200 c/c
5000
230
230 230
525
425
7. Detailing
Dept. of CE, GCE Kannur Dr.RajeshKN
Repeat Design Problem 1, assuming that the slab corners are prevented
from lifting up.
Assume D = 165 mm
dx = 165 – 20 – 5 = 140 mm, dy = 140 – 10 = 130 mm
4000 140 4140
5000 130 5130
mm
mm
x
y
l
l
= + =⎧
⎨
= + =⎩
1 24.y
x
l
l
=
Factored load wu = 12.20 kN/m2
Design Problem 2
1. Effective span and trial depths
2. Loads
Dept. of CE, GCE Kannur Dr.RajeshKN
( )
1 240 1 2
0 072 0 079 0 072
1 3 1 2
. .
. . – .
. .
−
= + ×
−
= 0.0748
Mux = αx wu lx
2
= 0.0748 × 12.20 × 4.142 = 15.61 kNm/m
Short span: αx
= 0.056
Mux = αy wu lx
2 = 0.056 × 12.20 × 4.142 = 11.69 kNm/m
Long span: αy
3. Design Moments
As the slab corners are to be designed as torsionally restrained, from
Table 26 (Cl. D–1), the moment coefficients for ly/lx = 1.240 are:
Dept. of CE, GCE Kannur Dr.RajeshKN
4. Design of reinforcement
[Table 3, Page 49, SP: 16]0 2465,( ) .t x reqdp =
6
2 3 2
15 61 10
10 140
.ux
x
M
bd
×
=
×
= 0.844 MPa
(Ast)x, reqd = (0.246 × 10–2) × 1000 × 140 = 334 mm2/m
Required spacing of 8 φ bars =
334
3.501000×
= 150.7 mm
Maximum spacing permitted = 3 × 140 = 420 mm, but < 300 mm.
a. Shorter span
Dept. of CE, GCE Kannur Dr.RajeshKN
[Table 3, Page 49, SP: 16]0 206,( ) .t x reqdp =
6
2 3 2
11 69 10
10 130
.uy
y
M
bd
×
=
×
= 0.714 MPa
(Ast)x, reqd = (0.206 × 10–2) × 1000 × 130 = 264 mm2/m
Required spacing of 8 φ bars =
1000 50 3
264
.×
= 191 mm
Maximum spacing permitted = 3 × 130 = 375 mm, but < 300 mm.
b. Longer span
⎩
⎨
⎧
span)(long
span)(short
cc
cc
190@8
150@8
φ
φ
Provide
Dept. of CE, GCE Kannur Dr.RajeshKN
5. Check for deflection control
0 2465, .t xp =
fs = 0.58 × 415 × 334/335 = 240 MPa
Modification factor kt = 1.55 (Fig. 3 of Code)
(l/d)max = 20 × 1.55 = 31
(l/d)provided =
4140
140
= 30.4 < 31 — Hence, OK.
Dept. of CE, GCE Kannur Dr.RajeshKN
6. Corner Reinforcement [as per Cl. D–1.8]
As the slab is ‘torsionally restrained’ at the corners, corner
reinforcement has to be provided at top and bottom (four layers),
• over a distance lx/5 = 830 mm in both directions
• each layer comprising 0.75 Ast, x.
spacing of 8 φ bars
Provide 8 φ @ 160 c/c both ways at top and bottom at each corner over
an area 830 mm × 830 mm.
( )2
830 8 4
0 75 334.
π× ×
×
160 c/c≅
Dept. of CE, GCE Kannur Dr.RajeshKN
PLAN
830
830
525
425
5000
AA
B B
230 230
4000
230
230
5 nos 8 φbars
(U–shaped)
both ways (typ)
at each corner
8 φ @ 150 c/c
8 φ @ 190 c /c
Dept. of CE, GCE Kannur Dr.RajeshKN
830
5 nos 8φ
U–shaped
bars
160
SECTION BB
525 8 φ@ 190 c/c
8 φ@ 150 c/c
160
SECTION AA
Dept. of CE, GCE Kannur Dr.RajeshKN
Summary
Slabs : Continuous and two way rectangular slabs (wall-supported)
with different support conditions, analysis using IS 456 moment
coefficients, design for flexure and torsion, reinforcement detailing –
Use of SP 16 charts.
Staircases : Straight flight and dog-legged stairs – waist slab type and
folded plate type, reinforcement detailing.

More Related Content

What's hot

Lecture 12 deflection in beams
Lecture 12 deflection in beamsLecture 12 deflection in beams
Lecture 12 deflection in beamsDeepak Agarwal
 
37467305 torsion-design-of-beam
37467305 torsion-design-of-beam37467305 torsion-design-of-beam
37467305 torsion-design-of-beamSopheak Thap
 
CE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie ModelsCE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie ModelsFawad Najam
 
Unit 3 flexibility-anujajape
Unit 3 flexibility-anujajapeUnit 3 flexibility-anujajape
Unit 3 flexibility-anujajapeanujajape
 
Module1 flexibility-1- rajesh sir
Module1 flexibility-1- rajesh sirModule1 flexibility-1- rajesh sir
Module1 flexibility-1- rajesh sirSHAMJITH KM
 
Aci reinforcement limits
Aci reinforcement limitsAci reinforcement limits
Aci reinforcement limitsMeesum Zaidi
 
Stiffness matrix method for beam , examples ce525
Stiffness  matrix method for beam , examples   ce525Stiffness  matrix method for beam , examples   ce525
Stiffness matrix method for beam , examples ce525KAMARAN SHEKHA
 
Solving statically determinate structures
Solving statically determinate structuresSolving statically determinate structures
Solving statically determinate structuresTameem Samdanee
 
Lec.1 introduction to the theory of structures. types of structures, loads,
Lec.1   introduction to the theory of structures. types of structures, loads,Lec.1   introduction to the theory of structures. types of structures, loads,
Lec.1 introduction to the theory of structures. types of structures, loads,Muthanna Abbu
 
Shear Force And Bending Moment Diagram For Frames
Shear Force And Bending Moment Diagram For FramesShear Force And Bending Moment Diagram For Frames
Shear Force And Bending Moment Diagram For FramesAmr Hamed
 
Structure analysis assignment 7 determinate frame analysis
Structure analysis assignment 7  determinate frame analysisStructure analysis assignment 7  determinate frame analysis
Structure analysis assignment 7 determinate frame analysisThe University of Lahore
 
Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Malika khalil
 
Prestress loss due to friction & anchorage take up
Prestress loss due to friction & anchorage take upPrestress loss due to friction & anchorage take up
Prestress loss due to friction & anchorage take upAyaz Malik
 
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)Hossam Shafiq II
 
Principle of Virtual Work in structural analysis
Principle of Virtual Work in structural analysisPrinciple of Virtual Work in structural analysis
Principle of Virtual Work in structural analysisMahdi Damghani
 

What's hot (20)

Lecture 12 deflection in beams
Lecture 12 deflection in beamsLecture 12 deflection in beams
Lecture 12 deflection in beams
 
37467305 torsion-design-of-beam
37467305 torsion-design-of-beam37467305 torsion-design-of-beam
37467305 torsion-design-of-beam
 
CE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie ModelsCE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie Models
 
Structural engineering i
Structural engineering iStructural engineering i
Structural engineering i
 
Unit 3 flexibility-anujajape
Unit 3 flexibility-anujajapeUnit 3 flexibility-anujajape
Unit 3 flexibility-anujajape
 
Module1 flexibility-1- rajesh sir
Module1 flexibility-1- rajesh sirModule1 flexibility-1- rajesh sir
Module1 flexibility-1- rajesh sir
 
Aci reinforcement limits
Aci reinforcement limitsAci reinforcement limits
Aci reinforcement limits
 
Stiffness matrix method for beam , examples ce525
Stiffness  matrix method for beam , examples   ce525Stiffness  matrix method for beam , examples   ce525
Stiffness matrix method for beam , examples ce525
 
Solving statically determinate structures
Solving statically determinate structuresSolving statically determinate structures
Solving statically determinate structures
 
Lec.1 introduction to the theory of structures. types of structures, loads,
Lec.1   introduction to the theory of structures. types of structures, loads,Lec.1   introduction to the theory of structures. types of structures, loads,
Lec.1 introduction to the theory of structures. types of structures, loads,
 
Shear Force And Bending Moment Diagram For Frames
Shear Force And Bending Moment Diagram For FramesShear Force And Bending Moment Diagram For Frames
Shear Force And Bending Moment Diagram For Frames
 
Doubly reinforced beam analysis
Doubly reinforced beam   analysisDoubly reinforced beam   analysis
Doubly reinforced beam analysis
 
Structure analysis assignment 7 determinate frame analysis
Structure analysis assignment 7  determinate frame analysisStructure analysis assignment 7  determinate frame analysis
Structure analysis assignment 7 determinate frame analysis
 
Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)
 
Prestress loss due to friction & anchorage take up
Prestress loss due to friction & anchorage take upPrestress loss due to friction & anchorage take up
Prestress loss due to friction & anchorage take up
 
Design and analysis of slabs
Design and analysis of slabsDesign and analysis of slabs
Design and analysis of slabs
 
Structural engineering ii
Structural engineering iiStructural engineering ii
Structural engineering ii
 
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)
Lec09 Shear in RC Beams (Reinforced Concrete Design I & Prof. Abdelhamid Charif)
 
Principle of Virtual Work in structural analysis
Principle of Virtual Work in structural analysisPrinciple of Virtual Work in structural analysis
Principle of Virtual Work in structural analysis
 
L20
L20L20
L20
 

Viewers also liked

Aect480 lecture 7
Aect480 lecture 7Aect480 lecture 7
Aect480 lecture 7cloudc123
 
structure drawing
structure  drawing structure  drawing
structure drawing Mark Wagih
 
User guide slab
User guide slabUser guide slab
User guide slabkamthekar
 
Pelat pondasi
Pelat pondasiPelat pondasi
Pelat pondasiBeta Saya
 
Hollow blocks slabs تصميم البلاطات الهوردي - الليثي
Hollow blocks slabs تصميم البلاطات الهوردي - الليثيHollow blocks slabs تصميم البلاطات الهوردي - الليثي
Hollow blocks slabs تصميم البلاطات الهوردي - الليثيMuhamed Elsayed
 
Module2 stiffness- rajesh sir
Module2 stiffness- rajesh sirModule2 stiffness- rajesh sir
Module2 stiffness- rajesh sirSHAMJITH KM
 
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحة
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحةالفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحة
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحةAhmed Gamal Abdel Gawad
 
Sd i-module4- rajesh sir
Sd i-module4- rajesh sirSd i-module4- rajesh sir
Sd i-module4- rajesh sirSHAMJITH KM
 
Module1 flexibility-2-problems- rajesh sir
Module1 flexibility-2-problems- rajesh sirModule1 flexibility-2-problems- rajesh sir
Module1 flexibility-2-problems- rajesh sirSHAMJITH KM
 
Module1 1 introduction-tomatrixms - rajesh sir
Module1 1 introduction-tomatrixms - rajesh sirModule1 1 introduction-tomatrixms - rajesh sir
Module1 1 introduction-tomatrixms - rajesh sirSHAMJITH KM
 
introduction of irrigation
introduction of irrigationintroduction of irrigation
introduction of irrigationashish_11110
 
Flat Grid / Waffle Slab
Flat Grid / Waffle SlabFlat Grid / Waffle Slab
Flat Grid / Waffle SlabAkshay Gawade
 
Formalism presentation
Formalism presentationFormalism presentation
Formalism presentationFariha asghar
 

Viewers also liked (20)

Aect480 lecture 7
Aect480 lecture 7Aect480 lecture 7
Aect480 lecture 7
 
structure drawing
structure  drawing structure  drawing
structure drawing
 
User guide slab
User guide slabUser guide slab
User guide slab
 
Pelat pondasi
Pelat pondasiPelat pondasi
Pelat pondasi
 
Hollow blocks slabs تصميم البلاطات الهوردي - الليثي
Hollow blocks slabs تصميم البلاطات الهوردي - الليثيHollow blocks slabs تصميم البلاطات الهوردي - الليثي
Hollow blocks slabs تصميم البلاطات الهوردي - الليثي
 
Module2 stiffness- rajesh sir
Module2 stiffness- rajesh sirModule2 stiffness- rajesh sir
Module2 stiffness- rajesh sir
 
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحة
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحةالفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحة
الفصل السابع - البلاطات المصمتة - تصميم المنشآت الخرسانية المسلحة
 
Sd i-module4- rajesh sir
Sd i-module4- rajesh sirSd i-module4- rajesh sir
Sd i-module4- rajesh sir
 
Flexibility ppt 1
Flexibility ppt 1Flexibility ppt 1
Flexibility ppt 1
 
flexibility method
flexibility methodflexibility method
flexibility method
 
Module1 flexibility-2-problems- rajesh sir
Module1 flexibility-2-problems- rajesh sirModule1 flexibility-2-problems- rajesh sir
Module1 flexibility-2-problems- rajesh sir
 
Module1 1 introduction-tomatrixms - rajesh sir
Module1 1 introduction-tomatrixms - rajesh sirModule1 1 introduction-tomatrixms - rajesh sir
Module1 1 introduction-tomatrixms - rajesh sir
 
introduction of irrigation
introduction of irrigationintroduction of irrigation
introduction of irrigation
 
Hollow Block
Hollow Block Hollow Block
Hollow Block
 
Flat Grid / Waffle Slab
Flat Grid / Waffle SlabFlat Grid / Waffle Slab
Flat Grid / Waffle Slab
 
Formalism presentation
Formalism presentationFormalism presentation
Formalism presentation
 
Design project
Design projectDesign project
Design project
 
ONE WAY SLAB DESIGN
ONE WAY SLAB DESIGNONE WAY SLAB DESIGN
ONE WAY SLAB DESIGN
 
Grid/ Waffle Slabs
Grid/ Waffle SlabsGrid/ Waffle Slabs
Grid/ Waffle Slabs
 
FOLDED PLATES TYPES
FOLDED PLATES TYPES FOLDED PLATES TYPES
FOLDED PLATES TYPES
 

Similar to Sd i-module3- rajesh sir

Sd i-module2- rajesh sir
Sd i-module2- rajesh sirSd i-module2- rajesh sir
Sd i-module2- rajesh sirSHAMJITH KM
 
INDUSTRIAL BUILDING GANTRY GIRDER
INDUSTRIAL BUILDING  GANTRY GIRDERINDUSTRIAL BUILDING  GANTRY GIRDER
INDUSTRIAL BUILDING GANTRY GIRDERHarsh Shani
 
Worked example extract_flat_slabs
Worked example extract_flat_slabsWorked example extract_flat_slabs
Worked example extract_flat_slabsluantvconst
 
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...Hossam Shafiq II
 
Fire Resistance of Materials & Structures - Analysing the Steel Structure
Fire Resistance of Materials & Structures - Analysing the Steel StructureFire Resistance of Materials & Structures - Analysing the Steel Structure
Fire Resistance of Materials & Structures - Analysing the Steel StructureArshia Mousavi
 
DACS_UNIT-3- RCC Flat slab ARP.pptx
DACS_UNIT-3- RCC Flat slab ARP.pptxDACS_UNIT-3- RCC Flat slab ARP.pptx
DACS_UNIT-3- RCC Flat slab ARP.pptxAbhijeet Pabale
 
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)Hossam Shafiq II
 
Design of concrete structure 2 project-Loay Qabaha &Basel Salame
Design of concrete structure 2 project-Loay Qabaha &Basel SalameDesign of concrete structure 2 project-Loay Qabaha &Basel Salame
Design of concrete structure 2 project-Loay Qabaha &Basel SalameLoay Qabaha
 
Worked example extract_flat_slabs
Worked example extract_flat_slabsWorked example extract_flat_slabs
Worked example extract_flat_slabsLuan Truong Van
 
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERING
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERINGDESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERING
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERINGLiyaWilson4
 
Mechanics of structures module2
Mechanics of structures  module2Mechanics of structures  module2
Mechanics of structures module2SHAMJITH KM
 
Isolated footing design
Isolated footing designIsolated footing design
Isolated footing designsrinu_anduri
 
Design of RCC Column footing
Design of RCC Column footingDesign of RCC Column footing
Design of RCC Column footingArun Kurali
 

Similar to Sd i-module3- rajesh sir (20)

Sd i-module2- rajesh sir
Sd i-module2- rajesh sirSd i-module2- rajesh sir
Sd i-module2- rajesh sir
 
Slender columnn and two-way slabs
Slender columnn and two-way slabsSlender columnn and two-way slabs
Slender columnn and two-way slabs
 
INDUSTRIAL BUILDING GANTRY GIRDER
INDUSTRIAL BUILDING  GANTRY GIRDERINDUSTRIAL BUILDING  GANTRY GIRDER
INDUSTRIAL BUILDING GANTRY GIRDER
 
Worked example extract_flat_slabs
Worked example extract_flat_slabsWorked example extract_flat_slabs
Worked example extract_flat_slabs
 
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...
12-Examples on Compression Members (Steel Structural Design & Prof. Shehab Mo...
 
Fire Resistance of Materials & Structures - Analysing the Steel Structure
Fire Resistance of Materials & Structures - Analysing the Steel StructureFire Resistance of Materials & Structures - Analysing the Steel Structure
Fire Resistance of Materials & Structures - Analysing the Steel Structure
 
presentation1_28.pptx
presentation1_28.pptxpresentation1_28.pptx
presentation1_28.pptx
 
DACS_UNIT-3- RCC Flat slab ARP.pptx
DACS_UNIT-3- RCC Flat slab ARP.pptxDACS_UNIT-3- RCC Flat slab ARP.pptx
DACS_UNIT-3- RCC Flat slab ARP.pptx
 
Footing design
Footing designFooting design
Footing design
 
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)
19-Examples for Beam Column (Steel Structural Design & Prof. Shehab Mourad)
 
Precast driven pile 450 x450
Precast driven pile 450 x450Precast driven pile 450 x450
Precast driven pile 450 x450
 
gantry crane report
gantry crane reportgantry crane report
gantry crane report
 
Design of concrete structure 2 project-Loay Qabaha &Basel Salame
Design of concrete structure 2 project-Loay Qabaha &Basel SalameDesign of concrete structure 2 project-Loay Qabaha &Basel Salame
Design of concrete structure 2 project-Loay Qabaha &Basel Salame
 
Worked example extract_flat_slabs
Worked example extract_flat_slabsWorked example extract_flat_slabs
Worked example extract_flat_slabs
 
unit-3.ppt
unit-3.pptunit-3.ppt
unit-3.ppt
 
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERING
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERINGDESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERING
DESIGN OF DECK SLAB AND GIRDERS- BRIDGE ENGINEERING
 
Mechanics of structures module2
Mechanics of structures  module2Mechanics of structures  module2
Mechanics of structures module2
 
Isolated footing design
Isolated footing designIsolated footing design
Isolated footing design
 
Design of RCC Column footing
Design of RCC Column footingDesign of RCC Column footing
Design of RCC Column footing
 
Project 2b (1) (2)
Project 2b  (1) (2)Project 2b  (1) (2)
Project 2b (1) (2)
 

More from SHAMJITH KM

Salah of the Prophet (ﷺ).pdf
Salah of the Prophet (ﷺ).pdfSalah of the Prophet (ﷺ).pdf
Salah of the Prophet (ﷺ).pdfSHAMJITH KM
 
Construction Materials and Engineering - Module IV - Lecture Notes
Construction Materials and Engineering - Module IV - Lecture NotesConstruction Materials and Engineering - Module IV - Lecture Notes
Construction Materials and Engineering - Module IV - Lecture NotesSHAMJITH KM
 
Construction Materials and Engineering - Module III - Lecture Notes
Construction Materials and Engineering - Module III - Lecture NotesConstruction Materials and Engineering - Module III - Lecture Notes
Construction Materials and Engineering - Module III - Lecture NotesSHAMJITH KM
 
Construction Materials and Engineering - Module II - Lecture Notes
Construction Materials and Engineering - Module II - Lecture NotesConstruction Materials and Engineering - Module II - Lecture Notes
Construction Materials and Engineering - Module II - Lecture NotesSHAMJITH KM
 
Construction Materials and Engineering - Module I - Lecture Notes
Construction Materials and Engineering - Module I - Lecture NotesConstruction Materials and Engineering - Module I - Lecture Notes
Construction Materials and Engineering - Module I - Lecture NotesSHAMJITH KM
 
Computing fundamentals lab record - Polytechnics
Computing fundamentals lab record - PolytechnicsComputing fundamentals lab record - Polytechnics
Computing fundamentals lab record - PolytechnicsSHAMJITH KM
 
Concrete lab manual - Polytechnics
Concrete lab manual - PolytechnicsConcrete lab manual - Polytechnics
Concrete lab manual - PolytechnicsSHAMJITH KM
 
Concrete Technology Study Notes
Concrete Technology Study NotesConcrete Technology Study Notes
Concrete Technology Study NotesSHAMJITH KM
 
നബി(സ)യുടെ നമസ്കാരം - രൂപവും പ്രാര്ത്ഥനകളും
നബി(സ)യുടെ നമസ്കാരം -  രൂപവും പ്രാര്ത്ഥനകളുംനബി(സ)യുടെ നമസ്കാരം -  രൂപവും പ്രാര്ത്ഥനകളും
നബി(സ)യുടെ നമസ്കാരം - രൂപവും പ്രാര്ത്ഥനകളുംSHAMJITH KM
 
Design of simple beam using staad pro - doc file
Design of simple beam using staad pro - doc fileDesign of simple beam using staad pro - doc file
Design of simple beam using staad pro - doc fileSHAMJITH KM
 
Design of simple beam using staad pro
Design of simple beam using staad proDesign of simple beam using staad pro
Design of simple beam using staad proSHAMJITH KM
 
Python programs - PPT file (Polytechnics)
Python programs - PPT file (Polytechnics)Python programs - PPT file (Polytechnics)
Python programs - PPT file (Polytechnics)SHAMJITH KM
 
Python programs - first semester computer lab manual (polytechnics)
Python programs - first semester computer lab manual (polytechnics)Python programs - first semester computer lab manual (polytechnics)
Python programs - first semester computer lab manual (polytechnics)SHAMJITH KM
 
Python programming Workshop SITTTR - Kalamassery
Python programming Workshop SITTTR - KalamasseryPython programming Workshop SITTTR - Kalamassery
Python programming Workshop SITTTR - KalamasserySHAMJITH KM
 
Analysis of simple beam using STAAD Pro (Exp No 1)
Analysis of simple beam using STAAD Pro (Exp No 1)Analysis of simple beam using STAAD Pro (Exp No 1)
Analysis of simple beam using STAAD Pro (Exp No 1)SHAMJITH KM
 
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)SHAMJITH KM
 
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)SHAMJITH KM
 
CAD Lab model viva questions
CAD Lab model viva questions CAD Lab model viva questions
CAD Lab model viva questions SHAMJITH KM
 
Brain Computer Interface (BCI) - seminar PPT
Brain Computer Interface (BCI) -  seminar PPTBrain Computer Interface (BCI) -  seminar PPT
Brain Computer Interface (BCI) - seminar PPTSHAMJITH KM
 
Surveying - Module iii-levelling only note
Surveying - Module  iii-levelling only noteSurveying - Module  iii-levelling only note
Surveying - Module iii-levelling only noteSHAMJITH KM
 

More from SHAMJITH KM (20)

Salah of the Prophet (ﷺ).pdf
Salah of the Prophet (ﷺ).pdfSalah of the Prophet (ﷺ).pdf
Salah of the Prophet (ﷺ).pdf
 
Construction Materials and Engineering - Module IV - Lecture Notes
Construction Materials and Engineering - Module IV - Lecture NotesConstruction Materials and Engineering - Module IV - Lecture Notes
Construction Materials and Engineering - Module IV - Lecture Notes
 
Construction Materials and Engineering - Module III - Lecture Notes
Construction Materials and Engineering - Module III - Lecture NotesConstruction Materials and Engineering - Module III - Lecture Notes
Construction Materials and Engineering - Module III - Lecture Notes
 
Construction Materials and Engineering - Module II - Lecture Notes
Construction Materials and Engineering - Module II - Lecture NotesConstruction Materials and Engineering - Module II - Lecture Notes
Construction Materials and Engineering - Module II - Lecture Notes
 
Construction Materials and Engineering - Module I - Lecture Notes
Construction Materials and Engineering - Module I - Lecture NotesConstruction Materials and Engineering - Module I - Lecture Notes
Construction Materials and Engineering - Module I - Lecture Notes
 
Computing fundamentals lab record - Polytechnics
Computing fundamentals lab record - PolytechnicsComputing fundamentals lab record - Polytechnics
Computing fundamentals lab record - Polytechnics
 
Concrete lab manual - Polytechnics
Concrete lab manual - PolytechnicsConcrete lab manual - Polytechnics
Concrete lab manual - Polytechnics
 
Concrete Technology Study Notes
Concrete Technology Study NotesConcrete Technology Study Notes
Concrete Technology Study Notes
 
നബി(സ)യുടെ നമസ്കാരം - രൂപവും പ്രാര്ത്ഥനകളും
നബി(സ)യുടെ നമസ്കാരം -  രൂപവും പ്രാര്ത്ഥനകളുംനബി(സ)യുടെ നമസ്കാരം -  രൂപവും പ്രാര്ത്ഥനകളും
നബി(സ)യുടെ നമസ്കാരം - രൂപവും പ്രാര്ത്ഥനകളും
 
Design of simple beam using staad pro - doc file
Design of simple beam using staad pro - doc fileDesign of simple beam using staad pro - doc file
Design of simple beam using staad pro - doc file
 
Design of simple beam using staad pro
Design of simple beam using staad proDesign of simple beam using staad pro
Design of simple beam using staad pro
 
Python programs - PPT file (Polytechnics)
Python programs - PPT file (Polytechnics)Python programs - PPT file (Polytechnics)
Python programs - PPT file (Polytechnics)
 
Python programs - first semester computer lab manual (polytechnics)
Python programs - first semester computer lab manual (polytechnics)Python programs - first semester computer lab manual (polytechnics)
Python programs - first semester computer lab manual (polytechnics)
 
Python programming Workshop SITTTR - Kalamassery
Python programming Workshop SITTTR - KalamasseryPython programming Workshop SITTTR - Kalamassery
Python programming Workshop SITTTR - Kalamassery
 
Analysis of simple beam using STAAD Pro (Exp No 1)
Analysis of simple beam using STAAD Pro (Exp No 1)Analysis of simple beam using STAAD Pro (Exp No 1)
Analysis of simple beam using STAAD Pro (Exp No 1)
 
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures I - STUDENT NOTE BOOK (Polytechnics Revision 2015)
 
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)
Theory of structures II - STUDENT NOTE BOOK (Polytechnics Revision 2015)
 
CAD Lab model viva questions
CAD Lab model viva questions CAD Lab model viva questions
CAD Lab model viva questions
 
Brain Computer Interface (BCI) - seminar PPT
Brain Computer Interface (BCI) -  seminar PPTBrain Computer Interface (BCI) -  seminar PPT
Brain Computer Interface (BCI) - seminar PPT
 
Surveying - Module iii-levelling only note
Surveying - Module  iii-levelling only noteSurveying - Module  iii-levelling only note
Surveying - Module iii-levelling only note
 

Recently uploaded

MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSSIVASHANKAR N
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...Call Girls in Nagpur High Profile
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls in Nagpur High Profile
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...ranjana rawat
 
result management system report for college project
result management system report for college projectresult management system report for college project
result management system report for college projectTonystark477637
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Dr.Costas Sachpazis
 
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur Escorts
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur EscortsCall Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur Escorts
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINESIVASHANKAR N
 
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)Suman Mia
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingrakeshbaidya232001
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCall Girls in Nagpur High Profile
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Christo Ananth
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordAsst.prof M.Gokilavani
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSRajkumarAkumalla
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxupamatechverse
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 

Recently uploaded (20)

MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
 
result management system report for college project
result management system report for college projectresult management system report for college project
result management system report for college project
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
 
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINEDJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
 
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur Escorts
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur EscortsCall Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur Escorts
Call Girls Service Nagpur Tanvi Call 7001035870 Meet With Nagpur Escorts
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
 
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writing
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptx
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 

Sd i-module3- rajesh sir

  • 1. Dept. of CE, GCE Kannur Dr.RajeshKN Design of Two-way Slabs Dr. Rajesh K. N. Assistant Professor in Civil Engineering Govt. College of Engineering, Kannur Design of Concrete Structures
  • 2. Dept. of CE, GCE Kannur Dr.RajeshKN 2 (Analysis and design in Module II, III and IV should be based on Limit State Method. Reinforcement detailing shall conform to SP34) MODULE III (13 hours) Slabs : Continuous and two way rectangular slabs (wall-supported) with different support conditions, analysis using IS 456 moment coefficients, design for flexure and torsion, reinforcement detailing – Use of SP 16 charts. Staircases : Straight flight and dog-legged stairs – waist slab type and folded plate type, reinforcement detailing.
  • 3. Dept. of CE, GCE Kannur Dr.RajeshKN Two-Way Slabs • Initial proportioning of the slab thickness may be done by span/effective depth ratios • The effective span in the short span direction should be considered for this purpose • A value of kt ≈ 1.5 ( modification factor to max l/d ratio) may be considered for preliminary design.
  • 4. Dept. of CE, GCE Kannur Dr.RajeshKN 4 With mild steel (Fe 250), 0 8 35 0 8 40 for simply supported slabs for continuous slabs . . x x l D l ⎧ ⎪⎪ × ≥ ⎨ ⎪ ⎪ ×⎩ With Fe415 steel, 35 40 for simply supported slabs for continuous slabs x x l D l ⎧ ⎪⎪ ≥ ⎨ ⎪ ⎪⎩ •For two-way slabs with spans up to 3.5 m and live loads not exceeding 3.0 kN/m2, span to overall depth ratio can be taken as follows, for deflection control (Cl. 24.1, Note 2):
  • 5. Dept. of CE, GCE Kannur Dr.RajeshKN 5 • According to the Code (Cl. 24.4), two-way slabs may be designed by any acceptable theory, using the coefficients given in Annex D. • Code suggests design procedures (in the case of uniformly loaded two-way rectangular slabs) for: • simply supported slabs whose corners are not restrained from lifting up [Cl. D–2]. • ‘torsionally restrained’ slabs, whose corners are restrained from lifting up and whose edges may be continuous or discontinuous [Cl. D–1]. • The flexural reinforcements in the two directions are provided to resist the maximum bending moments Mux = αx wu lx 2 (in the short span) and Muy = αy wu lx 2 (in the long span).
  • 6. Dept. of CE, GCE Kannur Dr.RajeshKN 6 • The moment coefficients prescribed in the Code (Cl. D–2) to estimate the maximum moments (per unit width) in the short span and long span directions are based on the Rankine-Grashoff theory. • However, the moment coefficients recommended in the Code (Cl. D–1) are based on inelastic analysis (yield line analysis rather than elastic theory.
  • 7. Dept. of CE, GCE Kannur Dr.RajeshKN Nine different types of ‘restrained’ rectangular slab panels lx continuous (or fixed) edge simply supported edge ly
  • 8. Dept. of CE, GCE Kannur Dr.RajeshKN 8 Design a simply supported slab to cover a room with internal dimensions 4.0 m × 5.0 m and 230 mm thick brick walls all around. Assume a live load of 3 kN/m2 and a finish load of 1 kN/m2. Use M 20 concrete and Fe 415 steel. Assume that the slab corners are free to lift up. Assume mild exposure conditions. Effective short span ≈ 4150 mm Assume an effective depth d ≈ 4150 20 15× . = 138 mm With a clear cover of 20 mm and say, 10 φ bars, overall thickness of slab D ≈ 138 + 20 + 5 = 163 mm Provide D = 165 mm dx = 165 – 20 – 5 = 140 mm dy = 140– 10 = 130 mm Design Problem 1 1. Effective span and trial depths
  • 9. Dept. of CE, GCE Kannur Dr.RajeshKN 9 Effective spans ⎩ ⎨ ⎧ =+= =+= mm mm 51301305000 41401404000 y x l l 5130 4140 y x l r l ≡ = = 1.239 self weight @ 25 kN/m3 × 0.165m = 4.13 kN/m2 finishes (given) = 1.0 kN/m2 live loads (given) = 3.0 kN/m2 Total w = 8.13 kN/m2 Factored load wu = 8.13 × 1.5 = 12.20 kN/m2 2. Loads:
  • 10. Dept. of CE, GCE Kannur Dr.RajeshKN 10 3. Design Moments (for strips at midspan, 1 m wide in each direction) As the slab corners are torsionally unrestrained, Table 27 gives moment coefficients: αx = 0.0878 αy = 0.0571 short span: Mux = αx wulx 2 = 0.0878 × 12.20 × 4.1402 = 18.36 kNm/m long span: Muy = αy wulx 2 = 0.0571 × 12.20 × 4.1402 = 11.94 kNm/m Required spacing of 10 φ bars = 385 5.781000× = 204 mm 4. Design of Reinforcement 6 2 3 2 18 36 10 10 140 .ux x M bd × = × = 0.9367 MPa (Ast)x, reqd = (0.275 × 10–2) × 1000 × 140 = 385 mm2/m a. Shorter span [Table 3, Page 49, SP: 16]0 275,( ) .t x reqdp =
  • 11. Dept. of CE, GCE Kannur Dr.RajeshKN 11 (Ast)y, reqd = (0.204 × 10–2) × 1000 × 130 = 265.7 mm2/m Required spacing of 10 φ bars = 7.265 5.781000× = 295 mm 3 3 140 3 3 130 (short span) (long span)v d s d = ×⎧ ≤ ⎨ = ×⎩ Maximum spacing (Cl.26.3.3 b) 10 200 392 5 10 290 270 7 2 2 (short span) mm m (long span) mm m , , @ . @ . st x st y c c A c c A ϕ ϕ ⎧ ⇒ =⎪ ⎨ ⇒ =⎪⎩ Provide 6 2 3 2 11 94 10 10 130 .uy y M bd × = × = 0.7065 MPa b. Longer span
  • 12. Dept. of CE, GCE Kannur Dr.RajeshKN 12 5. Check for deflection control 3 392 5 100 10 140 , . t xp = × × = 0.280 fs = 0.58 × 415 × 385/392.5 = 236 MPa Modification factor kt = 1.5 (Fig. 3 of Code) (l/d)max = 20 × 1.5 = 30 (l/d)provided = 140 4140 = 29.6 < 30 — OK.
  • 13. Dept. of CE, GCE Kannur Dr.RajeshKN 13 6. Check for shear Average effective depth d = (140 + 130)/2 = 135 mm Vu = wu(0.5lxn – d) u v V bd τ = = 22.75 × 103/(1000 × 135) = 0.169 MPa For pt = 0.28 , k c vτ τ> — Hence, OK. = 0.376 MPaτ c where lxn is the clear span in the short span direction • The critical section for shear is to be considered d away from the face of the support. •An average effective depth d = (dx + dy)/2 may be considered in the calculations. = 12.20 (0.5 × 4.0 – 0.135) = 22.75 kN/m (Table 19, Page 73) 1 3.k = (Cl. 40.2.1.1)
  • 14. Dept. of CE, GCE Kannur Dr.RajeshKN 4000 230 8 φ bars 165 525 SECTION AA PLAN OF FLOOR SLAB A 165mm thick A 10 φ@ 200 c/c 10 φ@ 290 c/c 10 φ@ 290 c/c 10 φ @ 200 c/c 5000 230 230 230 525 425 7. Detailing
  • 15. Dept. of CE, GCE Kannur Dr.RajeshKN Repeat Design Problem 1, assuming that the slab corners are prevented from lifting up. Assume D = 165 mm dx = 165 – 20 – 5 = 140 mm, dy = 140 – 10 = 130 mm 4000 140 4140 5000 130 5130 mm mm x y l l = + =⎧ ⎨ = + =⎩ 1 24.y x l l = Factored load wu = 12.20 kN/m2 Design Problem 2 1. Effective span and trial depths 2. Loads
  • 16. Dept. of CE, GCE Kannur Dr.RajeshKN ( ) 1 240 1 2 0 072 0 079 0 072 1 3 1 2 . . . . – . . . − = + × − = 0.0748 Mux = αx wu lx 2 = 0.0748 × 12.20 × 4.142 = 15.61 kNm/m Short span: αx = 0.056 Mux = αy wu lx 2 = 0.056 × 12.20 × 4.142 = 11.69 kNm/m Long span: αy 3. Design Moments As the slab corners are to be designed as torsionally restrained, from Table 26 (Cl. D–1), the moment coefficients for ly/lx = 1.240 are:
  • 17. Dept. of CE, GCE Kannur Dr.RajeshKN 4. Design of reinforcement [Table 3, Page 49, SP: 16]0 2465,( ) .t x reqdp = 6 2 3 2 15 61 10 10 140 .ux x M bd × = × = 0.844 MPa (Ast)x, reqd = (0.246 × 10–2) × 1000 × 140 = 334 mm2/m Required spacing of 8 φ bars = 334 3.501000× = 150.7 mm Maximum spacing permitted = 3 × 140 = 420 mm, but < 300 mm. a. Shorter span
  • 18. Dept. of CE, GCE Kannur Dr.RajeshKN [Table 3, Page 49, SP: 16]0 206,( ) .t x reqdp = 6 2 3 2 11 69 10 10 130 .uy y M bd × = × = 0.714 MPa (Ast)x, reqd = (0.206 × 10–2) × 1000 × 130 = 264 mm2/m Required spacing of 8 φ bars = 1000 50 3 264 .× = 191 mm Maximum spacing permitted = 3 × 130 = 375 mm, but < 300 mm. b. Longer span ⎩ ⎨ ⎧ span)(long span)(short cc cc 190@8 150@8 φ φ Provide
  • 19. Dept. of CE, GCE Kannur Dr.RajeshKN 5. Check for deflection control 0 2465, .t xp = fs = 0.58 × 415 × 334/335 = 240 MPa Modification factor kt = 1.55 (Fig. 3 of Code) (l/d)max = 20 × 1.55 = 31 (l/d)provided = 4140 140 = 30.4 < 31 — Hence, OK.
  • 20. Dept. of CE, GCE Kannur Dr.RajeshKN 6. Corner Reinforcement [as per Cl. D–1.8] As the slab is ‘torsionally restrained’ at the corners, corner reinforcement has to be provided at top and bottom (four layers), • over a distance lx/5 = 830 mm in both directions • each layer comprising 0.75 Ast, x. spacing of 8 φ bars Provide 8 φ @ 160 c/c both ways at top and bottom at each corner over an area 830 mm × 830 mm. ( )2 830 8 4 0 75 334. π× × × 160 c/c≅
  • 21. Dept. of CE, GCE Kannur Dr.RajeshKN PLAN 830 830 525 425 5000 AA B B 230 230 4000 230 230 5 nos 8 φbars (U–shaped) both ways (typ) at each corner 8 φ @ 150 c/c 8 φ @ 190 c /c
  • 22. Dept. of CE, GCE Kannur Dr.RajeshKN 830 5 nos 8φ U–shaped bars 160 SECTION BB 525 8 φ@ 190 c/c 8 φ@ 150 c/c 160 SECTION AA
  • 23. Dept. of CE, GCE Kannur Dr.RajeshKN Summary Slabs : Continuous and two way rectangular slabs (wall-supported) with different support conditions, analysis using IS 456 moment coefficients, design for flexure and torsion, reinforcement detailing – Use of SP 16 charts. Staircases : Straight flight and dog-legged stairs – waist slab type and folded plate type, reinforcement detailing.