SlideShare una empresa de Scribd logo
1 de 33
Descargar para leer sin conexión
Manufacturing Technology II
(ME-202)
Overview of
Manufacturing
Processes
Dr. Chaitanya Sharma
PhD. IIT Roorkee
Title of slide
Lesson Objectives
In this chapter we shall discuss the following:
Need for gating system
Elements of gating system
Learning Activities
1. Look up
Keywords
2. View Slides;
3. Read Notes,
4. Listen to
lecture
Keywords:
Pouring basin, sprue, runner, riser, gates, in-gate, dross formation
Gating System
• A good gating design should ensure proper distribution
of molten metal without excessive temperature loss,
turbulence, gas entrapping and slags.
• Very slow pouring, require longer filling time and
solidification will start even before filling of mould.
• This can be restricted by using super heated metal, but
in this case gas solubility will be a problem.
• Faster pouring can erode the mould cavity.
• So gating design is important and it depends on the
metal and molten metal composition. For example,
aluminium can get oxidized easily.
Casting Design and Fluidity Test
Figure 10.8 Schematic illustration of a typical riser-
gated casting. Risers serve as reservoirs, supplying
molten metal to the casting as it shrinks during
solidification.
Figure 10.9 A test method for
fluidity using a spiral mold. The
fluidity index is the length of the
solidified metal in the spiral
passage. The greater the length of
the solidified metal, the greater is its
fluidity.
Gating System
۞Gating systems refer to all those elements which are
connected with the flow of molten metal from the
ladle to the mould cavity.
Following are the elements of gating systems:
۞Pouring Basin
۞Sprue
۞Sprue Base Well
۞Runner
۞Runner Extension
۞Gate or Ingate
۞Riser
CHARACTERISTICS OF GATING
SYSTEM
o The purpose of gating system is to deliver the molten metal to mold.
A gating system should be able to do the following:
1. Permit complete filling of the mold cavity
2. Requires minimum time to fill the mold cavity
3. Minimum turbulence so as to minimize gas pickup
4. Regulate rate at which molten metal enters the mold cavity.
5. Prevent unwanted material from entering mould cavity
6. Establish suitable temperature gradients.
7. No mould erosion
8. Simple and economical design
9. Easy to implement and remove after solidification
10. Maximum casting yield
Factor Affecting Performance
Of Gating System
• To achieve sound casting and other objectives following
factors should be controlled properly:
1. The type of ladle and ladle equipment.
2. The size, type, and location of sprue and runner.
3. The size, number & location of gates entering mold cavity.
4. The rate of pouring.
5. The position of the mold during casting.
6. The temperature and fluidity of the metal.
Objective of The Gating
System
The four main points, which enables a proper gating system,
are:
1. Clean molten metal.
2. Smooth filling of the casting cavity.
3. Uniform filling of the casting cavity.
4. Complete filling of the casting cavity.
• The mold cavity must be filled with a clean metal so that
it prevents the entry of slag and inclusions into the mold
cavity, which in turn minimizes the surface instability.
• If the mold has smooth filling then it helps to reduce the
bulk turbulence. If it has a uniform filling it means that
the casting fill is in a controlled manner.
• Complete filling of the cavity makes the metal thin with
minimum resistance at the end sections.
Elements of Gating System
1. Pouring basin : This is otherwise called as bush or cup. It is
circular or rectangular in shape. It collects the molten
metal, which is poured, from the ladle.
2. Sprue : It is circular in cross section. It leads the molten
metal from the pouring basin to the sprue well.
3. Sprue Well : It changes the direction of flow of the
molten metal to right angle and passes it to the runner.
4. Runner : The runner takes the molten metal from sprue to
the casting. Ingate: This is the final stage where the molten
metal moves from the runner to the mold cavity.
5. Slag trap : It filters the slag when the molten metal moves
from the runner and ingate. It is also placed in the runner
Elements of Gating System
Pouring basin
• A reservoir for the molten metal poured from the ladle.
• This is otherwise called as bush or cup.
• It is circular or rectangular in shape.
• It collects the molten metal, which is poured, from ladle.
• It prevent the mould erosion.
• Prevent slag and other impurities from entering the
mould cavity.
Different Shape of Pouring Cup
Pouring Basin Proportions
Elements of Gating System
• Sprue : It is circular in cross section. It leads the
molten metal from the pouring basin to the sprue well.
• Sprue Well : It changes the direction of flow of the
molten metal to right angle and passes it to the runner.
Elements of Gating System
• Slag trap : It filters the slag when the molten metal
moves from the runner and ingate.
• It is also placed in the runner.
Elements Of Gating System
• Runner : The runner takes the molten metal from
sprue to the Ingates of casting.
• This is the final stage where the molten metal moves
from the runner to the mold cavity.
Types of Runners
a) Straight runner
b) Tapered runner
c) Step gate (may also act as feeder)
d) Uniform size runner( may cause uneven distribution)
e) Runner for even distribution of metal (reduction in
size of runner after each gate)
Types of Gating System
Main types of gates are following:
1. Vertical Gating System
2.Bottom Gating System
3.Horizontal Gating System
Types of Gating System
1. Vertical Gating System : Lliquid metal is poured vertically, directly
to fill the mould with atmospheric pressure at the base end. This is
applied in tall castings, where high-pressure sand mold, shell mold
and die-casting processes are used.
2. Bottom Gating System : Molten metal is poured from top, but filled
from bottom to top of in tall castings . This minimizes oxidation
and splashing while pouring.
Bottom GatingVerticalGating
Types of Gating system
4. Horizontal Gating System : Horizontal gating is a modification of
bottom gating, in which some horizontal portions are added for
good distribution of molten metal and to avoid turbulence. This is
used most widely. This type is normally applied in ferrous metal's
sand casting and gravity die-casting of non-ferrous metals. They are
used for flat casting, which are filled under gravity
5. Top Gating System : This is applied in places where the hot metal is
poured form the top of the casting. It helps directional solidification
of the casting from top to bottom. It suits only flat castings to limit
the damage of the metal during the initial filling.
6. Middle Gating System : It has characteristics of both top and
bottom. Horizontal Gating
Top
Analysis of Vertical Gating
Vertical Gating : Use Bernoullis’ equation for energy balance
continued
• As the metal flows into the down side of sprue opening, it
increases in velocity and hence the cross-sectional area of the
channel must be reduced.
• Otherwise, as the velocity of the flowing molten metal
increases toward the base of the sprue, air can be aspirated
into the liquid and taken into the mould cavity.
• To prevent this condition, the sprue is designed with a taper,
so that the volume flow rate, Q = AV remains the same at the
top and bottom of sprue.
• The mould filling time is given by,
• Note: This is the minimum time required to fill the mould
cavity. Since the analysis ignores friction losses and possible
constriction of flow in the gating system; the mould filling
time will be longer than what is given by the above equation.
Analysis of Bottom Gating
Example: 1
• Find the filling time for both the mould types. Area of C.S. of
gate = 5 cm2 (Answer: tf = 21.86 sec; 43.71 sec.)
Aspiration Effect
• Aspiration effect: entering of gases from baking of
organic compounds present in the mould into the molten
metal stream.
• This will produce porous castings.
• Pressure anywhere in the liquid stream should not
become negative.
Free falling liquid,
Metal flow with aspiration effect
A tapered sprue without aspiration effect
Case : straight Vs tapered sprue
Design of Sprue: Vertical Gating
Continued
Formulas Related with Fluid
Flow and Solidification Time
Sprue design

A1
A2

h2
h1
Mass continuity

Q  A1v1  A2v2
Bernoulli’s theorem

h
p
g

v2
2g
 constant
Reynolds number

Re 
vD

Chvorinov’s Rule Solidification time = C
Volume
Surface Area






n
Casting Design
1
2
11
1 F
g
vP
h 

2
2
22
2 F
g
vP
h 

v2A2
v1A1
)( ossc TTAhq 
Fludity
Fludity of metal is determined generally by sprial mold test.
The fludity index is the length of the solidified metal in the
sprial Passage.
Greater the length of the solidified metal, greater is its fludity.
Fluidity of Molten Metal
Fluidity: The capability of a molten metal to fill mold cavities
Viscosity: Higher viscosity decreases fluidity
Surface tension: Decreases fluidity; often caused by oxide
film
Inclusions: Insoluble particles can increase viscosity,
reducing fluidity
Solidification pattern: Fluidity is inversely proportional to
the freezing temperature range
Factor Affecting Fluidity of
Molten Metal
1. Mold design: The design and size of the sprue, runners, and
risers affect fluidity
2. Mold material and surface: Thermal conductivity and
roughness decrease fluidity
3. Superheating: The temperature increment above the
melting point increases fluidity
4. Pouring: Lower pouring rates decrease fluidity because of
faster cooling
5. Heat transfer: Affects the viscosity of the metal
U3 p1 gating system

Más contenido relacionado

La actualidad más candente

La actualidad más candente (20)

POWDER METALLURGY
POWDER METALLURGYPOWDER METALLURGY
POWDER METALLURGY
 
7.moulding machines
7.moulding machines7.moulding machines
7.moulding machines
 
Sheet Metal Forming
Sheet Metal FormingSheet Metal Forming
Sheet Metal Forming
 
casting ppt
casting pptcasting ppt
casting ppt
 
Strengthening mechanism ppt
Strengthening mechanism pptStrengthening mechanism ppt
Strengthening mechanism ppt
 
Shell molding process
Shell molding processShell molding process
Shell molding process
 
Rolling Process
Rolling ProcessRolling Process
Rolling Process
 
Design of gating systems
Design of gating systemsDesign of gating systems
Design of gating systems
 
Pattern allowances in metal casting
Pattern allowances in metal castingPattern allowances in metal casting
Pattern allowances in metal casting
 
GATING SYSTEM IN CASTING
GATING SYSTEM IN CASTINGGATING SYSTEM IN CASTING
GATING SYSTEM IN CASTING
 
Metal spinning
Metal spinningMetal spinning
Metal spinning
 
ppt on Forging process
ppt on Forging processppt on Forging process
ppt on Forging process
 
Continuous casting
Continuous castingContinuous casting
Continuous casting
 
Wire drawing
Wire drawingWire drawing
Wire drawing
 
Casting
CastingCasting
Casting
 
CASTING PPT
CASTING PPTCASTING PPT
CASTING PPT
 
Sand casting of metals - Gating system for sand casting mould
Sand casting of metals - Gating system for sand casting mouldSand casting of metals - Gating system for sand casting mould
Sand casting of metals - Gating system for sand casting mould
 
Hot and cold working
Hot and cold workingHot and cold working
Hot and cold working
 
2 ME casting & solidification
2 ME  casting & solidification 2 ME  casting & solidification
2 ME casting & solidification
 
Centrifugal casting 1
Centrifugal casting 1Centrifugal casting 1
Centrifugal casting 1
 

Similar a U3 p1 gating system

Gating system,characteristics,elementsand types of gating system by polayya c...
Gating system,characteristics,elementsand types of gating system by polayya c...Gating system,characteristics,elementsand types of gating system by polayya c...
Gating system,characteristics,elementsand types of gating system by polayya c...POLAYYA CHINTADA
 
05) Gating System in CAsting of Materials
05) Gating System in CAsting of Materials05) Gating System in CAsting of Materials
05) Gating System in CAsting of Materialsssuser0cd0f1
 
Manufacturing processes
Manufacturing processesManufacturing processes
Manufacturing processesAkhil Varghese
 
Lecture6and7 141216053116-conversion-gate01
Lecture6and7 141216053116-conversion-gate01Lecture6and7 141216053116-conversion-gate01
Lecture6and7 141216053116-conversion-gate01sachinmagrawal
 
SY Lectures Gating designe, Raisers Problems[1].pdf
SY Lectures Gating designe, Raisers Problems[1].pdfSY Lectures Gating designe, Raisers Problems[1].pdf
SY Lectures Gating designe, Raisers Problems[1].pdfAyushLonkar
 
UNIT2-Risersdesigncastingdesignconsider.ppt
UNIT2-Risersdesigncastingdesignconsider.pptUNIT2-Risersdesigncastingdesignconsider.ppt
UNIT2-Risersdesigncastingdesignconsider.pptPraveen Kumar
 
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castings
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castingsIIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castings
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castingsBhaskar Nagarajan
 
Metal Casting processes including pattern making and mold making,Patterns,Cas...
Metal Casting processes including pattern making and mold making,Patterns,Cas...Metal Casting processes including pattern making and mold making,Patterns,Cas...
Metal Casting processes including pattern making and mold making,Patterns,Cas...Azlan
 
Casting Process.ppt
Casting Process.pptCasting Process.ppt
Casting Process.pptAkki7789
 
UNIT3-Special casting processmechanical.ppt
UNIT3-Special casting processmechanical.pptUNIT3-Special casting processmechanical.ppt
UNIT3-Special casting processmechanical.pptPraveen Kumar
 
Details of the Casting process is included in a single PPT
Details of the Casting process is included in a single PPTDetails of the Casting process is included in a single PPT
Details of the Casting process is included in a single PPTAshutoshPattanaik12
 

Similar a U3 p1 gating system (20)

Gating system,characteristics,elementsand types of gating system by polayya c...
Gating system,characteristics,elementsand types of gating system by polayya c...Gating system,characteristics,elementsand types of gating system by polayya c...
Gating system,characteristics,elementsand types of gating system by polayya c...
 
FT-Unit-4.pptx
FT-Unit-4.pptxFT-Unit-4.pptx
FT-Unit-4.pptx
 
05) Gating System in CAsting of Materials
05) Gating System in CAsting of Materials05) Gating System in CAsting of Materials
05) Gating System in CAsting of Materials
 
05) Gating System.ppsx
05) Gating System.ppsx05) Gating System.ppsx
05) Gating System.ppsx
 
Casting Processes and Defects
Casting Processes and DefectsCasting Processes and Defects
Casting Processes and Defects
 
Manufacturing processes
Manufacturing processesManufacturing processes
Manufacturing processes
 
Lecture6and7 141216053116-conversion-gate01
Lecture6and7 141216053116-conversion-gate01Lecture6and7 141216053116-conversion-gate01
Lecture6and7 141216053116-conversion-gate01
 
Casting of the metals
Casting of the metalsCasting of the metals
Casting of the metals
 
Gating system
Gating systemGating system
Gating system
 
Casting
CastingCasting
Casting
 
SY Lectures Gating designe, Raisers Problems[1].pdf
SY Lectures Gating designe, Raisers Problems[1].pdfSY Lectures Gating designe, Raisers Problems[1].pdf
SY Lectures Gating designe, Raisers Problems[1].pdf
 
Casting technique
Casting techniqueCasting technique
Casting technique
 
UNIT2-Risersdesigncastingdesignconsider.ppt
UNIT2-Risersdesigncastingdesignconsider.pptUNIT2-Risersdesigncastingdesignconsider.ppt
UNIT2-Risersdesigncastingdesignconsider.ppt
 
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castings
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castingsIIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castings
IIIE SECTION A MANUFACTURING TECHNOLOGY NOTES 8.die castings
 
Metal Casting processes including pattern making and mold making,Patterns,Cas...
Metal Casting processes including pattern making and mold making,Patterns,Cas...Metal Casting processes including pattern making and mold making,Patterns,Cas...
Metal Casting processes including pattern making and mold making,Patterns,Cas...
 
GATING SYSTEM PPT
GATING SYSTEM PPTGATING SYSTEM PPT
GATING SYSTEM PPT
 
Casting Process.ppt
Casting Process.pptCasting Process.ppt
Casting Process.ppt
 
UNIT3-Special casting processmechanical.ppt
UNIT3-Special casting processmechanical.pptUNIT3-Special casting processmechanical.ppt
UNIT3-Special casting processmechanical.ppt
 
Details of the Casting process is included in a single PPT
Details of the Casting process is included in a single PPTDetails of the Casting process is included in a single PPT
Details of the Casting process is included in a single PPT
 
Manufacturing
ManufacturingManufacturing
Manufacturing
 

Más de gautam buddha university

Más de gautam buddha university (20)

Gptu weblist engg2011
Gptu weblist engg2011Gptu weblist engg2011
Gptu weblist engg2011
 
Ppd
PpdPpd
Ppd
 
Ranjit k. roy a primer on the taguchi method (competitive manufacturing seri
Ranjit k. roy a primer on the taguchi method (competitive manufacturing seriRanjit k. roy a primer on the taguchi method (competitive manufacturing seri
Ranjit k. roy a primer on the taguchi method (competitive manufacturing seri
 
Me 601-gbu
Me 601-gbuMe 601-gbu
Me 601-gbu
 
Pdd notes
Pdd notesPdd notes
Pdd notes
 
Qc
QcQc
Qc
 
Welding metallurgy part i
Welding metallurgy part iWelding metallurgy part i
Welding metallurgy part i
 
U6 p2 ntm processes
U6 p2 ntm processesU6 p2 ntm processes
U6 p2 ntm processes
 
U6 p2 ntm processes
U6 p2 ntm processesU6 p2 ntm processes
U6 p2 ntm processes
 
U5 p1 phase transformation
U5 p1 phase transformationU5 p1 phase transformation
U5 p1 phase transformation
 
U5 p1 ntm processes
U5 p1 ntm processesU5 p1 ntm processes
U5 p1 ntm processes
 
U5 p1 ntm processes
U5 p1 ntm processesU5 p1 ntm processes
U5 p1 ntm processes
 
U4 p4 sheet metal operation
U4 p4 sheet metal operationU4 p4 sheet metal operation
U4 p4 sheet metal operation
 
U4 p1 welding metallurgy
U4 p1 welding metallurgyU4 p1 welding metallurgy
U4 p1 welding metallurgy
 
U4 p1 metal forming processes
U4 p1 metal forming processesU4 p1 metal forming processes
U4 p1 metal forming processes
 
U4 p0 overview of metal forming
U4 p0 overview of metal formingU4 p0 overview of metal forming
U4 p0 overview of metal forming
 
U3 p4 casting defects
U3 p4 casting defectsU3 p4 casting defects
U3 p4 casting defects
 
U3 p3 special casting methods
U3 p3 special casting methodsU3 p3 special casting methods
U3 p3 special casting methods
 
U2 p3 core, core prints and chaplets
U2 p3 core, core prints and chapletsU2 p3 core, core prints and chaplets
U2 p3 core, core prints and chaplets
 
U2 p2 moulds & moulding materials
U2 p2 moulds & moulding materialsU2 p2 moulds & moulding materials
U2 p2 moulds & moulding materials
 

Último

Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfSumit Tiwari
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon AUnboundStockton
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...Marc Dusseiller Dusjagr
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting DataJhengPantaleon
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Science 7 - LAND and SEA BREEZE and its Characteristics
Science 7 - LAND and SEA BREEZE and its CharacteristicsScience 7 - LAND and SEA BREEZE and its Characteristics
Science 7 - LAND and SEA BREEZE and its CharacteristicsKarinaGenton
 
Introduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxIntroduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxpboyjonauth
 
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptx
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptxContemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptx
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptxRoyAbrique
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)eniolaolutunde
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxNirmalaLoungPoorunde1
 
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPT
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPTECONOMIC CONTEXT - LONG FORM TV DRAMA - PPT
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPTiammrhaywood
 
Hybridoma Technology ( Production , Purification , and Application )
Hybridoma Technology  ( Production , Purification , and Application  ) Hybridoma Technology  ( Production , Purification , and Application  )
Hybridoma Technology ( Production , Purification , and Application ) Sakshi Ghasle
 
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
Class 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfClass 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfakmcokerachita
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...EduSkills OECD
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docxPoojaSen20
 
MENTAL STATUS EXAMINATION format.docx
MENTAL     STATUS EXAMINATION format.docxMENTAL     STATUS EXAMINATION format.docx
MENTAL STATUS EXAMINATION format.docxPoojaSen20
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxSayali Powar
 

Último (20)

Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon A
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Science 7 - LAND and SEA BREEZE and its Characteristics
Science 7 - LAND and SEA BREEZE and its CharacteristicsScience 7 - LAND and SEA BREEZE and its Characteristics
Science 7 - LAND and SEA BREEZE and its Characteristics
 
Introduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxIntroduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptx
 
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptx
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptxContemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptx
Contemporary philippine arts from the regions_PPT_Module_12 [Autosaved] (1).pptx
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptx
 
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPT
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPTECONOMIC CONTEXT - LONG FORM TV DRAMA - PPT
ECONOMIC CONTEXT - LONG FORM TV DRAMA - PPT
 
Hybridoma Technology ( Production , Purification , and Application )
Hybridoma Technology  ( Production , Purification , and Application  ) Hybridoma Technology  ( Production , Purification , and Application  )
Hybridoma Technology ( Production , Purification , and Application )
 
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
 
Class 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfClass 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdf
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docx
 
MENTAL STATUS EXAMINATION format.docx
MENTAL     STATUS EXAMINATION format.docxMENTAL     STATUS EXAMINATION format.docx
MENTAL STATUS EXAMINATION format.docx
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
 
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
 
9953330565 Low Rate Call Girls In Rohini Delhi NCR
9953330565 Low Rate Call Girls In Rohini  Delhi NCR9953330565 Low Rate Call Girls In Rohini  Delhi NCR
9953330565 Low Rate Call Girls In Rohini Delhi NCR
 

U3 p1 gating system

  • 1. Manufacturing Technology II (ME-202) Overview of Manufacturing Processes Dr. Chaitanya Sharma PhD. IIT Roorkee
  • 2. Title of slide Lesson Objectives In this chapter we shall discuss the following: Need for gating system Elements of gating system Learning Activities 1. Look up Keywords 2. View Slides; 3. Read Notes, 4. Listen to lecture Keywords: Pouring basin, sprue, runner, riser, gates, in-gate, dross formation
  • 3. Gating System • A good gating design should ensure proper distribution of molten metal without excessive temperature loss, turbulence, gas entrapping and slags. • Very slow pouring, require longer filling time and solidification will start even before filling of mould. • This can be restricted by using super heated metal, but in this case gas solubility will be a problem. • Faster pouring can erode the mould cavity. • So gating design is important and it depends on the metal and molten metal composition. For example, aluminium can get oxidized easily.
  • 4. Casting Design and Fluidity Test Figure 10.8 Schematic illustration of a typical riser- gated casting. Risers serve as reservoirs, supplying molten metal to the casting as it shrinks during solidification. Figure 10.9 A test method for fluidity using a spiral mold. The fluidity index is the length of the solidified metal in the spiral passage. The greater the length of the solidified metal, the greater is its fluidity.
  • 5. Gating System ۞Gating systems refer to all those elements which are connected with the flow of molten metal from the ladle to the mould cavity. Following are the elements of gating systems: ۞Pouring Basin ۞Sprue ۞Sprue Base Well ۞Runner ۞Runner Extension ۞Gate or Ingate ۞Riser
  • 6. CHARACTERISTICS OF GATING SYSTEM o The purpose of gating system is to deliver the molten metal to mold. A gating system should be able to do the following: 1. Permit complete filling of the mold cavity 2. Requires minimum time to fill the mold cavity 3. Minimum turbulence so as to minimize gas pickup 4. Regulate rate at which molten metal enters the mold cavity. 5. Prevent unwanted material from entering mould cavity 6. Establish suitable temperature gradients. 7. No mould erosion 8. Simple and economical design 9. Easy to implement and remove after solidification 10. Maximum casting yield
  • 7. Factor Affecting Performance Of Gating System • To achieve sound casting and other objectives following factors should be controlled properly: 1. The type of ladle and ladle equipment. 2. The size, type, and location of sprue and runner. 3. The size, number & location of gates entering mold cavity. 4. The rate of pouring. 5. The position of the mold during casting. 6. The temperature and fluidity of the metal.
  • 8. Objective of The Gating System The four main points, which enables a proper gating system, are: 1. Clean molten metal. 2. Smooth filling of the casting cavity. 3. Uniform filling of the casting cavity. 4. Complete filling of the casting cavity. • The mold cavity must be filled with a clean metal so that it prevents the entry of slag and inclusions into the mold cavity, which in turn minimizes the surface instability. • If the mold has smooth filling then it helps to reduce the bulk turbulence. If it has a uniform filling it means that the casting fill is in a controlled manner. • Complete filling of the cavity makes the metal thin with minimum resistance at the end sections.
  • 9. Elements of Gating System 1. Pouring basin : This is otherwise called as bush or cup. It is circular or rectangular in shape. It collects the molten metal, which is poured, from the ladle. 2. Sprue : It is circular in cross section. It leads the molten metal from the pouring basin to the sprue well. 3. Sprue Well : It changes the direction of flow of the molten metal to right angle and passes it to the runner. 4. Runner : The runner takes the molten metal from sprue to the casting. Ingate: This is the final stage where the molten metal moves from the runner to the mold cavity. 5. Slag trap : It filters the slag when the molten metal moves from the runner and ingate. It is also placed in the runner
  • 10. Elements of Gating System Pouring basin • A reservoir for the molten metal poured from the ladle. • This is otherwise called as bush or cup. • It is circular or rectangular in shape. • It collects the molten metal, which is poured, from ladle. • It prevent the mould erosion. • Prevent slag and other impurities from entering the mould cavity.
  • 11. Different Shape of Pouring Cup
  • 13. Elements of Gating System • Sprue : It is circular in cross section. It leads the molten metal from the pouring basin to the sprue well. • Sprue Well : It changes the direction of flow of the molten metal to right angle and passes it to the runner.
  • 14.
  • 15. Elements of Gating System • Slag trap : It filters the slag when the molten metal moves from the runner and ingate. • It is also placed in the runner.
  • 16. Elements Of Gating System • Runner : The runner takes the molten metal from sprue to the Ingates of casting. • This is the final stage where the molten metal moves from the runner to the mold cavity.
  • 17. Types of Runners a) Straight runner b) Tapered runner c) Step gate (may also act as feeder) d) Uniform size runner( may cause uneven distribution) e) Runner for even distribution of metal (reduction in size of runner after each gate)
  • 18. Types of Gating System Main types of gates are following: 1. Vertical Gating System 2.Bottom Gating System 3.Horizontal Gating System
  • 19. Types of Gating System 1. Vertical Gating System : Lliquid metal is poured vertically, directly to fill the mould with atmospheric pressure at the base end. This is applied in tall castings, where high-pressure sand mold, shell mold and die-casting processes are used. 2. Bottom Gating System : Molten metal is poured from top, but filled from bottom to top of in tall castings . This minimizes oxidation and splashing while pouring. Bottom GatingVerticalGating
  • 20. Types of Gating system 4. Horizontal Gating System : Horizontal gating is a modification of bottom gating, in which some horizontal portions are added for good distribution of molten metal and to avoid turbulence. This is used most widely. This type is normally applied in ferrous metal's sand casting and gravity die-casting of non-ferrous metals. They are used for flat casting, which are filled under gravity 5. Top Gating System : This is applied in places where the hot metal is poured form the top of the casting. It helps directional solidification of the casting from top to bottom. It suits only flat castings to limit the damage of the metal during the initial filling. 6. Middle Gating System : It has characteristics of both top and bottom. Horizontal Gating Top
  • 21. Analysis of Vertical Gating Vertical Gating : Use Bernoullis’ equation for energy balance
  • 22. continued • As the metal flows into the down side of sprue opening, it increases in velocity and hence the cross-sectional area of the channel must be reduced. • Otherwise, as the velocity of the flowing molten metal increases toward the base of the sprue, air can be aspirated into the liquid and taken into the mould cavity. • To prevent this condition, the sprue is designed with a taper, so that the volume flow rate, Q = AV remains the same at the top and bottom of sprue. • The mould filling time is given by, • Note: This is the minimum time required to fill the mould cavity. Since the analysis ignores friction losses and possible constriction of flow in the gating system; the mould filling time will be longer than what is given by the above equation.
  • 24. Example: 1 • Find the filling time for both the mould types. Area of C.S. of gate = 5 cm2 (Answer: tf = 21.86 sec; 43.71 sec.)
  • 25. Aspiration Effect • Aspiration effect: entering of gases from baking of organic compounds present in the mould into the molten metal stream. • This will produce porous castings. • Pressure anywhere in the liquid stream should not become negative. Free falling liquid, Metal flow with aspiration effect A tapered sprue without aspiration effect Case : straight Vs tapered sprue
  • 26. Design of Sprue: Vertical Gating
  • 28. Formulas Related with Fluid Flow and Solidification Time Sprue design  A1 A2  h2 h1 Mass continuity  Q  A1v1  A2v2 Bernoulli’s theorem  h p g  v2 2g  constant Reynolds number  Re  vD  Chvorinov’s Rule Solidification time = C Volume Surface Area       n
  • 29. Casting Design 1 2 11 1 F g vP h   2 2 22 2 F g vP h   v2A2 v1A1 )( ossc TTAhq 
  • 30. Fludity Fludity of metal is determined generally by sprial mold test. The fludity index is the length of the solidified metal in the sprial Passage. Greater the length of the solidified metal, greater is its fludity.
  • 31. Fluidity of Molten Metal Fluidity: The capability of a molten metal to fill mold cavities Viscosity: Higher viscosity decreases fluidity Surface tension: Decreases fluidity; often caused by oxide film Inclusions: Insoluble particles can increase viscosity, reducing fluidity Solidification pattern: Fluidity is inversely proportional to the freezing temperature range
  • 32. Factor Affecting Fluidity of Molten Metal 1. Mold design: The design and size of the sprue, runners, and risers affect fluidity 2. Mold material and surface: Thermal conductivity and roughness decrease fluidity 3. Superheating: The temperature increment above the melting point increases fluidity 4. Pouring: Lower pouring rates decrease fluidity because of faster cooling 5. Heat transfer: Affects the viscosity of the metal