SlideShare a Scribd company logo
1 of 20
Types of Chip formation, Cutting
Temperature,
Cutting fluids and Tool wear
Actual Chip Formation
• More realistic view of chip
formation, showing shear
zone rather than shear plane
• Also shown is the secondary
shear zone resulting from
tool-chip friction
Types of chip formation
• Discontinuous chip
• Continuous chip
• Continuous chip with Built-up
Edge (BUE)
• Serrated chip or segmented chip
Machining operation
Machining operation. Animation
VIDEO
VIDEO
CHIP FORMATION
Discontinuous chip Continuous chip Continuous chip
with Built-Up Edge
Serrated or
segmented chip
It depends on:
Workpiece material
Tool geometry
Cutting conditions
Chip formation types
Discontinuous Chip
• Brittle work materials
• Low cutting speeds
• Large feed and depth of cut
• High tool-chip friction
Discontinuous Chip
Discontinuous Chip . Animation
Continuous Chip
• Ductile work materials
• High cutting speeds
• Small feeds and depths
• Sharp cutting edge
• Low tool-chip friction
Continuous Chip
Continuous Chip . Animation
• Semicontinuous - saw-tooth
appearance
• Cyclical chip forms with alternating
high shear strain then low shear
strain
• Associated with difficult-to-machine
metals at high cutting speeds
Serrated Chip or segmented chip
Serrated Chip
Serrated Chip. Animation
Continuous with BUE
• Ductile materials
• Low cutting speed
• High feed
• High depth of cut
Continuous with BUE
Cutting Temperature
• Approximately 98% of the
energy in machining is converted
into heat
• This can cause temperatures to
be very high at the tool-chip
• The remaining energy (about
2%) is retained as elastic energy
in the chip
High cutting temperatures result in the following:
• Reduce tool life
• Produce hot chips that pose safety hazards to the machine operator
• Can cause inaccuracies in part dimensions due to thermal expansion of
work material
Cutting Temperature. Animation
Cutting Temperature
Cutting Temperature. Animation
Cutting Temperature
Distribution of Heat
Heat dissipation depends on cutting speed
Cutting Speed, v
% Heat
Tool-work ---10 %
Work-chip----- 10 %
Chip-tool----- 80 % keep cutting
zone temperature
low
Cutting FluidSolution 
Cutting Temperature
• Analytical method derived by Nathan Cook from dimensional analysis
using experimental data for various work materials.
ΔT – Temperature rise at tool-chip interface;
U – Specific energy;
Vc – Cutting speed;
tu – Chip thickness before cut;
C – Volumetric specific heat of work material;
K – Thermal diffusivity of work material;
0.333
0.4 c uv tU
T
C K
 
   
 
Cutting Temperature
• Experimental methods can be used to measure temperatures in
machining
-Most frequently used technique is the tool-chip thermocouple
• Using this method, Ken Trigger determined the speed-temperature
relationship to be of the form:
T – Measured tool-chip interface temperature
Vc – Cutting speed
K, m – Constants
m
cT Kv
Cutting fluid is any liquid or gas that is applied to the chip or cutting tool to improve cutting performance.
Cutting fluids serve 4 principle functions:
1.To remove heat in cutting (COOLING): The energy used in the cutting process is almost exclusively transformed
into heat that goes to the workpiece, tool and chip. The effective cooling action depends on the method of
application, type of fluid, fluid flow rate and pressure.
2.To lubricate the chip-tool interface (LUBRICATION): It reduces friction forces and temperatures.
3.To wash away chips (CHIP REMOVAL): This is only applicable to small and discontinuous chips.
4.To avoid part oxidation (ANTI-CORROSION): The environment humidity in combination with the high
temperatures (500-900ºC) obtained during machining may cause part oxidation. Thus, the cutting fluid must contain
anti-corrosion additives.
Use of cutting fluids contributes to:
• longer tool life.
• Produce workpieces of accurate sizes (reduce thermal expansion).
Achieve proper surface quality of the workpiece.
• Support chip removal.
• Reduce thermal stress on machine tool.
CUTTING FLUIDS
CUTTING FLUIDS
CUTTING FLUIDS
METHODSOFAPPLICATION
LUBRICATION
TYPE
CONTENT
USED
VOLUME
CHARACTERISTICS
Wet machining
(using coolant)
Manual application
10 to 100
l/min
Used for manual tapping. Cutting fluids are used as
lubricants.
Flooding supply
Lubricating system of machine tools need to be cleaned from
time to time to eliminate microorganisms.
Coolant-fed tooling
or internal cooling
Some tools (typically drills) are provided with axial holes so
that cutting fluid can be pumped directly to the
cutting edge. Coolant pressures up to 80 b ars.
Coolant-fed tool
holders
Special tool holders required for milling, turning or
drilling operations. Coolant pressures up to 30 bars.
Reduced
lubrication
Minimum quantity
llubrication (MQL)
50 ml/h up
to 1-2 l/h
Cutting fluid is deposited as drops or air-oil mix. Valid
for not very demanding machining operations.
It can be external or internal.
Without
lubrication
Dry machining without
It shows economic and environmental benefits. Under
research.
Novel cooling methods are under research: high pressure cooling (> 70bar), criogenic cooling (N2, CO2),...
VIDE
O
VIDE
O
CUTTING FLUIDS
Manual application Flooding supply Coolant-fed tooling Coolant-fed tool holder
Cutting oils are based on mineral or fatty oil mixtures. Commonly used for heavy cutting operations.
Soluble oils is the most common (95% of the time), cheap and effective form of cutting fluid. Oil
droplets suspended in water in a typical ratio water to oil 30:1. Emulsifying agents are also added to
promote stability of emulsion, as well as anticorrosive additives.
Chemical fluids (synthetic) consists of chemical diluted in water. They may have harmful effects to the
skin.
TYPES OF CUTTING FLUID
Three Modes of Tool Failure
Fracture failure (Mechanical chipping)
When the cutting force at tool point becomes excessive, it leads to failure by
brittle fracture.
Temperature failure (Thermal cracking and softening)
Cutting temperature is too high for the tool material, which makes the tool
point to soften, and leads to plastic deformation along with a loss of sharp
edge.
Gradual wear
Gradual wearing of the cutting edge causes loss of tool shape, reduction in
cutting efficiency and finally tool failure.
Preferred Mode of Tool Failure:
Gradual Wear
Fracture and temperature failures are
premature failures.
Gradual wear is preferred because it leads to
the longest possible use of the tool.
Gradual wear occurs at two locations on a tool:
• Crater wear – occurs on top rake face
• Flank wear – occurs on flank (side of
tool)
Tool Failures
Flank Wear or wear land
• It occurs on the tool flank as a result of
friction between the machined surface
of the work piece and the tool flank.
• Due to Friction and abrasion.
• Increases as speed is increased.
Crater wear
• It consists of a concave section on the
tool face formed by the action of the
chip sliding on the surface.
• Direct contact of tool and chip.
• Forms cavity
Flank wear & Crater wear
Mechanism of wear
• Adhesion wear: Fragments of the work-piece get welded to the
tool surface at high temperatures; eventually, they break off,
tearing small parts of the tool with them.
• Abrasion: Hard particles, microscopic variations on the bottom
surface of the chips rub against the tool surface and break
away a fraction of tool with them.
• Diffusion wear: At high temperatures, atoms from tool diffuse
across to the chip; the rate of diffusion increases exponentially
with temperature; this reduces the fracture strength of the
crystals.
• Chemical wear: Reaction of cutting fluid to material of tool.
Preferred Mode of Tool Failure: Gradual Wear

More Related Content

What's hot

Theory of-metal-cutting
Theory of-metal-cuttingTheory of-metal-cutting
Theory of-metal-cuttingGaurav Gunjan
 
Rod, wire and tube drawing
Rod, wire and tube drawingRod, wire and tube drawing
Rod, wire and tube drawingNaman Dave
 
Tool wear, tool life & machinability
Tool wear, tool life & machinabilityTool wear, tool life & machinability
Tool wear, tool life & machinabilityDENNY OTTARACKAL
 
Mechanics of Orthogonal Cutting
Mechanics of Orthogonal Cutting Mechanics of Orthogonal Cutting
Mechanics of Orthogonal Cutting Ramdas Bhukya
 
Machining time and costs
Machining time and costsMachining time and costs
Machining time and costsendika55
 
Cutting temperature
Cutting temperatureCutting temperature
Cutting temperaturelijo621
 
Casting and types
Casting and typesCasting and types
Casting and typesKANNANS94
 
Tool wear
Tool wearTool wear
Tool wearcpandiv
 
Single Point Cutting Tools
Single Point Cutting ToolsSingle Point Cutting Tools
Single Point Cutting ToolsGIRISH SURVE
 
Machining process in mechanical engineering
Machining process in mechanical engineeringMachining process in mechanical engineering
Machining process in mechanical engineeringakshay ghanwat
 
signature of single point cutting tool
signature of single point cutting toolsignature of single point cutting tool
signature of single point cutting toolVaibhav Kadu
 
Factors affecting tool life in machining processes
Factors affecting tool life in machining processesFactors affecting tool life in machining processes
Factors affecting tool life in machining processesmohdalaamri
 
Metal cutting and Machining tools
Metal cutting and Machining toolsMetal cutting and Machining tools
Metal cutting and Machining toolsSHIVAM AGRAWAL
 

What's hot (20)

Theory of-metal-cutting
Theory of-metal-cuttingTheory of-metal-cutting
Theory of-metal-cutting
 
Rod, wire and tube drawing
Rod, wire and tube drawingRod, wire and tube drawing
Rod, wire and tube drawing
 
Tool wear, tool life & machinability
Tool wear, tool life & machinabilityTool wear, tool life & machinability
Tool wear, tool life & machinability
 
Mechanics of Orthogonal Cutting
Mechanics of Orthogonal Cutting Mechanics of Orthogonal Cutting
Mechanics of Orthogonal Cutting
 
Grinding
GrindingGrinding
Grinding
 
Forging
ForgingForging
Forging
 
Machining time and costs
Machining time and costsMachining time and costs
Machining time and costs
 
Cutting temperature
Cutting temperatureCutting temperature
Cutting temperature
 
Casting and types
Casting and typesCasting and types
Casting and types
 
Tool geometry
Tool geometryTool geometry
Tool geometry
 
Tool wear
Tool wearTool wear
Tool wear
 
Machine tools
Machine toolsMachine tools
Machine tools
 
Single Point Cutting Tools
Single Point Cutting ToolsSingle Point Cutting Tools
Single Point Cutting Tools
 
Machining process in mechanical engineering
Machining process in mechanical engineeringMachining process in mechanical engineering
Machining process in mechanical engineering
 
signature of single point cutting tool
signature of single point cutting toolsignature of single point cutting tool
signature of single point cutting tool
 
Shaper Machine Ppt
Shaper Machine PptShaper Machine Ppt
Shaper Machine Ppt
 
Factors affecting tool life in machining processes
Factors affecting tool life in machining processesFactors affecting tool life in machining processes
Factors affecting tool life in machining processes
 
Casting process
Casting processCasting process
Casting process
 
Metal cutting and Machining tools
Metal cutting and Machining toolsMetal cutting and Machining tools
Metal cutting and Machining tools
 
METAL CUTTING
METAL CUTTINGMETAL CUTTING
METAL CUTTING
 

Similar to 04 types of chip formation, cutting temperature,etc.,

Thermal aspects in machining
Thermal aspects in machiningThermal aspects in machining
Thermal aspects in machiningProf.Mayur Modi
 
Theory of metal cutting
Theory of metal cuttingTheory of metal cutting
Theory of metal cuttingSIVASHANKAR N
 
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTING
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTINGMANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTING
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTINGSIVASHANKAR N
 
MANUFACTURING PROCESS-II
MANUFACTURING PROCESS-IIMANUFACTURING PROCESS-II
MANUFACTURING PROCESS-IIDr.PERIASAMY K
 
Causes and remedies of source of heat in machining
Causes and remedies of source of heat in machiningCauses and remedies of source of heat in machining
Causes and remedies of source of heat in machiningMd Naiyer Kalam Khan
 
Causes and remedies of source of heat in machining
Causes and remedies of source of heat in machiningCauses and remedies of source of heat in machining
Causes and remedies of source of heat in machiningNaiyer Khan
 
Issues related to machining of hard materials
Issues related to machining of hard materialsIssues related to machining of hard materials
Issues related to machining of hard materialsKishan Savaliya
 
Mechanics of Chip Formation - Unit of MFT
Mechanics of Chip Formation - Unit of MFTMechanics of Chip Formation - Unit of MFT
Mechanics of Chip Formation - Unit of MFThodmech61
 
Unit 1 Theory of metal Cutting
Unit 1  Theory of metal CuttingUnit 1  Theory of metal Cutting
Unit 1 Theory of metal Cuttingsubrabest
 
Thermal Aspects of Metal Machining
Thermal Aspects of Metal MachiningThermal Aspects of Metal Machining
Thermal Aspects of Metal Machiningvishal chaturani
 
Tool Wear and Tool life of single point cutting tool
Tool Wear and Tool life of single point cutting toolTool Wear and Tool life of single point cutting tool
Tool Wear and Tool life of single point cutting toolAkshay Arvind
 
Production engineering
Production engineeringProduction engineering
Production engineeringSTAY CURIOUS
 
Metal cutting basics-min.docx
Metal cutting basics-min.docxMetal cutting basics-min.docx
Metal cutting basics-min.docxssuser72b8e8
 
Fundamentals of Metal Cutting 2.ppt
Fundamentals of Metal Cutting 2.pptFundamentals of Metal Cutting 2.ppt
Fundamentals of Metal Cutting 2.pptRamesh S P Ramesh
 
Metalcutting 140822084807-phpapp01
Metalcutting 140822084807-phpapp01Metalcutting 140822084807-phpapp01
Metalcutting 140822084807-phpapp01manojkumarg1990
 
Unit test 1 - mt-ii -answer key
Unit test 1 - mt-ii -answer keyUnit test 1 - mt-ii -answer key
Unit test 1 - mt-ii -answer keymohanraj r
 

Similar to 04 types of chip formation, cutting temperature,etc., (20)

Thermal aspects in machining
Thermal aspects in machiningThermal aspects in machining
Thermal aspects in machining
 
Theory of metal cutting
Theory of metal cuttingTheory of metal cutting
Theory of metal cutting
 
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTING
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTINGMANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTING
MANUFACTURING PROCESS-II UNIT-1 THEORY OF METAL CUTTING
 
MANUFACTURING PROCESS-II
MANUFACTURING PROCESS-IIMANUFACTURING PROCESS-II
MANUFACTURING PROCESS-II
 
Causes and remedies of source of heat in machining
Causes and remedies of source of heat in machiningCauses and remedies of source of heat in machining
Causes and remedies of source of heat in machining
 
Causes and remedies of source of heat in machining
Causes and remedies of source of heat in machiningCauses and remedies of source of heat in machining
Causes and remedies of source of heat in machining
 
Cutting tool tech
Cutting tool techCutting tool tech
Cutting tool tech
 
today2.pptx
 today2.pptx today2.pptx
today2.pptx
 
Issues related to machining of hard materials
Issues related to machining of hard materialsIssues related to machining of hard materials
Issues related to machining of hard materials
 
Mechanics of Chip Formation - Unit of MFT
Mechanics of Chip Formation - Unit of MFTMechanics of Chip Formation - Unit of MFT
Mechanics of Chip Formation - Unit of MFT
 
Unit 1 Theory of metal Cutting
Unit 1  Theory of metal CuttingUnit 1  Theory of metal Cutting
Unit 1 Theory of metal Cutting
 
Thermal Aspects of Metal Machining
Thermal Aspects of Metal MachiningThermal Aspects of Metal Machining
Thermal Aspects of Metal Machining
 
Tool Wear and Tool life of single point cutting tool
Tool Wear and Tool life of single point cutting toolTool Wear and Tool life of single point cutting tool
Tool Wear and Tool life of single point cutting tool
 
Production engineering
Production engineeringProduction engineering
Production engineering
 
machining.pdf
machining.pdfmachining.pdf
machining.pdf
 
Module. 01.pptx
Module. 01.pptxModule. 01.pptx
Module. 01.pptx
 
Metal cutting basics-min.docx
Metal cutting basics-min.docxMetal cutting basics-min.docx
Metal cutting basics-min.docx
 
Fundamentals of Metal Cutting 2.ppt
Fundamentals of Metal Cutting 2.pptFundamentals of Metal Cutting 2.ppt
Fundamentals of Metal Cutting 2.ppt
 
Metalcutting 140822084807-phpapp01
Metalcutting 140822084807-phpapp01Metalcutting 140822084807-phpapp01
Metalcutting 140822084807-phpapp01
 
Unit test 1 - mt-ii -answer key
Unit test 1 - mt-ii -answer keyUnit test 1 - mt-ii -answer key
Unit test 1 - mt-ii -answer key
 

More from M Siva Kumar

01 introduction to Manufacturing processes
01 introduction to Manufacturing processes01 introduction to Manufacturing processes
01 introduction to Manufacturing processesM Siva Kumar
 
12 cnc & part programming
12 cnc & part programming12 cnc & part programming
12 cnc & part programmingM Siva Kumar
 
10 gear manufacturing process
10  gear manufacturing process10  gear manufacturing process
10 gear manufacturing processM Siva Kumar
 
09 abrasive technologies
09 abrasive technologies09 abrasive technologies
09 abrasive technologiesM Siva Kumar
 
08 linear cutting processes (shaper, planer, slotter, broaching and sawing)
08  linear cutting processes (shaper, planer, slotter, broaching and sawing)08  linear cutting processes (shaper, planer, slotter, broaching and sawing)
08 linear cutting processes (shaper, planer, slotter, broaching and sawing)M Siva Kumar
 
07.1 lathe numerical
07.1 lathe numerical07.1 lathe numerical
07.1 lathe numericalM Siva Kumar
 
03 cutting tool materials
03 cutting tool materials03 cutting tool materials
03 cutting tool materialsM Siva Kumar
 
02 tool terminology
02 tool terminology02 tool terminology
02 tool terminologyM Siva Kumar
 
Plastic forming techniques
Plastic forming techniquesPlastic forming techniques
Plastic forming techniquesM Siva Kumar
 
Special casting Techniques
Special casting TechniquesSpecial casting Techniques
Special casting TechniquesM Siva Kumar
 

More from M Siva Kumar (20)

01 introduction to Manufacturing processes
01 introduction to Manufacturing processes01 introduction to Manufacturing processes
01 introduction to Manufacturing processes
 
12 cnc & part programming
12 cnc & part programming12 cnc & part programming
12 cnc & part programming
 
11 milling
11 milling11 milling
11 milling
 
10 gear manufacturing process
10  gear manufacturing process10  gear manufacturing process
10 gear manufacturing process
 
09 abrasive technologies
09 abrasive technologies09 abrasive technologies
09 abrasive technologies
 
08 linear cutting processes (shaper, planer, slotter, broaching and sawing)
08  linear cutting processes (shaper, planer, slotter, broaching and sawing)08  linear cutting processes (shaper, planer, slotter, broaching and sawing)
08 linear cutting processes (shaper, planer, slotter, broaching and sawing)
 
08 drilling
08   drilling08   drilling
08 drilling
 
07.1 lathe numerical
07.1 lathe numerical07.1 lathe numerical
07.1 lathe numerical
 
07 lathe
07 lathe07 lathe
07 lathe
 
06 tool life
06 tool life06 tool life
06 tool life
 
03 cutting tool materials
03 cutting tool materials03 cutting tool materials
03 cutting tool materials
 
02 tool terminology
02 tool terminology02 tool terminology
02 tool terminology
 
Plastic forming techniques
Plastic forming techniquesPlastic forming techniques
Plastic forming techniques
 
Rolling Process
Rolling ProcessRolling Process
Rolling Process
 
Extrusion Process
Extrusion ProcessExtrusion Process
Extrusion Process
 
Casting defects
Casting defectsCasting defects
Casting defects
 
Welding defects
Welding defectsWelding defects
Welding defects
 
Gas Welding
Gas WeldingGas Welding
Gas Welding
 
Welding Processes
Welding ProcessesWelding Processes
Welding Processes
 
Special casting Techniques
Special casting TechniquesSpecial casting Techniques
Special casting Techniques
 

Recently uploaded

NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...Amil baba
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Servicemeghakumariji156
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaOmar Fathy
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Arindam Chakraborty, Ph.D., P.E. (CA, TX)
 
Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...ppkakm
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdfKamal Acharya
 
Max. shear stress theory-Maximum Shear Stress Theory ​ Maximum Distortional ...
Max. shear stress theory-Maximum Shear Stress Theory ​  Maximum Distortional ...Max. shear stress theory-Maximum Shear Stress Theory ​  Maximum Distortional ...
Max. shear stress theory-Maximum Shear Stress Theory ​ Maximum Distortional ...ronahami
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXssuser89054b
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxSCMS School of Architecture
 
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesLinux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesRashidFaridChishti
 
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...jabtakhaidam7
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationBhangaleSonal
 
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...gragchanchal546
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network DevicesChandrakantDivate1
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayEpec Engineered Technologies
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueBhangaleSonal
 
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptxS1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptxSCMS School of Architecture
 
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...vershagrag
 

Recently uploaded (20)

NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS Lambda
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
 
Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...
 
Signal Processing and Linear System Analysis
Signal Processing and Linear System AnalysisSignal Processing and Linear System Analysis
Signal Processing and Linear System Analysis
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
Max. shear stress theory-Maximum Shear Stress Theory ​ Maximum Distortional ...
Max. shear stress theory-Maximum Shear Stress Theory ​  Maximum Distortional ...Max. shear stress theory-Maximum Shear Stress Theory ​  Maximum Distortional ...
Max. shear stress theory-Maximum Shear Stress Theory ​ Maximum Distortional ...
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesLinux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
 
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
Jaipur ❤CALL GIRL 0000000000❤CALL GIRLS IN Jaipur ESCORT SERVICE❤CALL GIRL IN...
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
 
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
Ghuma $ Russian Call Girls Ahmedabad ₹7.5k Pick Up & Drop With Cash Payment 8...
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptxS1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
 
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...
💚Trustworthy Call Girls Pune Call Girls Service Just Call 🍑👄6378878445 🍑👄 Top...
 

04 types of chip formation, cutting temperature,etc.,

  • 1. Types of Chip formation, Cutting Temperature, Cutting fluids and Tool wear
  • 2. Actual Chip Formation • More realistic view of chip formation, showing shear zone rather than shear plane • Also shown is the secondary shear zone resulting from tool-chip friction Types of chip formation • Discontinuous chip • Continuous chip • Continuous chip with Built-up Edge (BUE) • Serrated chip or segmented chip Machining operation Machining operation. Animation
  • 3. VIDEO VIDEO CHIP FORMATION Discontinuous chip Continuous chip Continuous chip with Built-Up Edge Serrated or segmented chip It depends on: Workpiece material Tool geometry Cutting conditions Chip formation types
  • 4. Discontinuous Chip • Brittle work materials • Low cutting speeds • Large feed and depth of cut • High tool-chip friction Discontinuous Chip Discontinuous Chip . Animation
  • 5. Continuous Chip • Ductile work materials • High cutting speeds • Small feeds and depths • Sharp cutting edge • Low tool-chip friction Continuous Chip Continuous Chip . Animation
  • 6. • Semicontinuous - saw-tooth appearance • Cyclical chip forms with alternating high shear strain then low shear strain • Associated with difficult-to-machine metals at high cutting speeds Serrated Chip or segmented chip Serrated Chip Serrated Chip. Animation
  • 7. Continuous with BUE • Ductile materials • Low cutting speed • High feed • High depth of cut Continuous with BUE
  • 8. Cutting Temperature • Approximately 98% of the energy in machining is converted into heat • This can cause temperatures to be very high at the tool-chip • The remaining energy (about 2%) is retained as elastic energy in the chip High cutting temperatures result in the following: • Reduce tool life • Produce hot chips that pose safety hazards to the machine operator • Can cause inaccuracies in part dimensions due to thermal expansion of work material Cutting Temperature. Animation
  • 9. Cutting Temperature Cutting Temperature. Animation Cutting Temperature
  • 10. Distribution of Heat Heat dissipation depends on cutting speed Cutting Speed, v % Heat Tool-work ---10 % Work-chip----- 10 % Chip-tool----- 80 % keep cutting zone temperature low Cutting FluidSolution 
  • 11. Cutting Temperature • Analytical method derived by Nathan Cook from dimensional analysis using experimental data for various work materials. ΔT – Temperature rise at tool-chip interface; U – Specific energy; Vc – Cutting speed; tu – Chip thickness before cut; C – Volumetric specific heat of work material; K – Thermal diffusivity of work material; 0.333 0.4 c uv tU T C K        
  • 12. Cutting Temperature • Experimental methods can be used to measure temperatures in machining -Most frequently used technique is the tool-chip thermocouple • Using this method, Ken Trigger determined the speed-temperature relationship to be of the form: T – Measured tool-chip interface temperature Vc – Cutting speed K, m – Constants m cT Kv
  • 13. Cutting fluid is any liquid or gas that is applied to the chip or cutting tool to improve cutting performance. Cutting fluids serve 4 principle functions: 1.To remove heat in cutting (COOLING): The energy used in the cutting process is almost exclusively transformed into heat that goes to the workpiece, tool and chip. The effective cooling action depends on the method of application, type of fluid, fluid flow rate and pressure. 2.To lubricate the chip-tool interface (LUBRICATION): It reduces friction forces and temperatures. 3.To wash away chips (CHIP REMOVAL): This is only applicable to small and discontinuous chips. 4.To avoid part oxidation (ANTI-CORROSION): The environment humidity in combination with the high temperatures (500-900ºC) obtained during machining may cause part oxidation. Thus, the cutting fluid must contain anti-corrosion additives. Use of cutting fluids contributes to: • longer tool life. • Produce workpieces of accurate sizes (reduce thermal expansion). Achieve proper surface quality of the workpiece. • Support chip removal. • Reduce thermal stress on machine tool. CUTTING FLUIDS CUTTING FLUIDS
  • 14. CUTTING FLUIDS METHODSOFAPPLICATION LUBRICATION TYPE CONTENT USED VOLUME CHARACTERISTICS Wet machining (using coolant) Manual application 10 to 100 l/min Used for manual tapping. Cutting fluids are used as lubricants. Flooding supply Lubricating system of machine tools need to be cleaned from time to time to eliminate microorganisms. Coolant-fed tooling or internal cooling Some tools (typically drills) are provided with axial holes so that cutting fluid can be pumped directly to the cutting edge. Coolant pressures up to 80 b ars. Coolant-fed tool holders Special tool holders required for milling, turning or drilling operations. Coolant pressures up to 30 bars. Reduced lubrication Minimum quantity llubrication (MQL) 50 ml/h up to 1-2 l/h Cutting fluid is deposited as drops or air-oil mix. Valid for not very demanding machining operations. It can be external or internal. Without lubrication Dry machining without It shows economic and environmental benefits. Under research. Novel cooling methods are under research: high pressure cooling (> 70bar), criogenic cooling (N2, CO2),... VIDE O VIDE O
  • 15. CUTTING FLUIDS Manual application Flooding supply Coolant-fed tooling Coolant-fed tool holder Cutting oils are based on mineral or fatty oil mixtures. Commonly used for heavy cutting operations. Soluble oils is the most common (95% of the time), cheap and effective form of cutting fluid. Oil droplets suspended in water in a typical ratio water to oil 30:1. Emulsifying agents are also added to promote stability of emulsion, as well as anticorrosive additives. Chemical fluids (synthetic) consists of chemical diluted in water. They may have harmful effects to the skin. TYPES OF CUTTING FLUID
  • 16. Three Modes of Tool Failure Fracture failure (Mechanical chipping) When the cutting force at tool point becomes excessive, it leads to failure by brittle fracture. Temperature failure (Thermal cracking and softening) Cutting temperature is too high for the tool material, which makes the tool point to soften, and leads to plastic deformation along with a loss of sharp edge. Gradual wear Gradual wearing of the cutting edge causes loss of tool shape, reduction in cutting efficiency and finally tool failure.
  • 17. Preferred Mode of Tool Failure: Gradual Wear Fracture and temperature failures are premature failures. Gradual wear is preferred because it leads to the longest possible use of the tool. Gradual wear occurs at two locations on a tool: • Crater wear – occurs on top rake face • Flank wear – occurs on flank (side of tool) Tool Failures
  • 18. Flank Wear or wear land • It occurs on the tool flank as a result of friction between the machined surface of the work piece and the tool flank. • Due to Friction and abrasion. • Increases as speed is increased. Crater wear • It consists of a concave section on the tool face formed by the action of the chip sliding on the surface. • Direct contact of tool and chip. • Forms cavity Flank wear & Crater wear
  • 19. Mechanism of wear • Adhesion wear: Fragments of the work-piece get welded to the tool surface at high temperatures; eventually, they break off, tearing small parts of the tool with them. • Abrasion: Hard particles, microscopic variations on the bottom surface of the chips rub against the tool surface and break away a fraction of tool with them. • Diffusion wear: At high temperatures, atoms from tool diffuse across to the chip; the rate of diffusion increases exponentially with temperature; this reduces the fracture strength of the crystals. • Chemical wear: Reaction of cutting fluid to material of tool.
  • 20. Preferred Mode of Tool Failure: Gradual Wear