Lecture 3-Tool Life, Tools, Machine Parts-F-19!8!14

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    email: [email protected]

    1

    TOOL WEAR, TOOL LIFE, HAND TOOLS AND MACHINE TOOLS

    mailto:[email protected]:[email protected]

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    PROCESS OF CUTTING TOOL FAILURE

    Cutting Tool Failure Mechanisms:1. By Plastic deformation

    2. By chipping due to mechanical breakage

    3. Burning of the tool

    4. By gradual wear

    A tool that no longer performs the desired function can be declared as “failed”

    Fig: e) Create wear & flank wear

    Fig: (f) small & Larger Flank wear

    Typical wear pattern in cutting tool

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    FLANK WEAR AND TIME RELATIONSHIPThree stages o flank wear:

    1. Rapid growth region (Break in region)

    2. Steady state region (Temperature Insensitiveregion)

    3. Catastrophe failure (Temperature sensitive region)

    Flank wear formation depends on* Cutting Conditions (f, d, V, tool angles)

    * Properties of work material and tool material

    Flank wear characterised by wear land (or Height) hf of wear band

    Fig: (a) Three stage flank wear curve, (b) Various elements of flank wear and crater wear, (c) Variation of various crater

    wear with time

    3

    Temperature

    insensitive

    area

    Temperature

    sensitive area

    1

    2

    Break in

    Region

    Time (t) (min.)

       F    l   a   n    k   W   e   a   r    (   m   m    ) ,    h    f   m   m

    l

    C

    l

    e

    Time

    hf 

    lf 

    c

    lf 

    c

    (a)

    (b)(c)

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    Tool wear Index feed marks and surface finish

    Type of wear depends M INLY on cutting speed

    • If cutting speed increases, predominant wear may be  “CRATER” wear else

    “FLANK” wear.• Failure by crater takes place when index hk reaches 0.4 value, before flank

    wear limit of hf =1mm for carbide tools is attained.

    2

    max

    ( / 2),C Depth

      l

      tan

      0.6

    8

    18 3

    4

    ,

     Nose Radius

    CLA

    CLA

    C h

    l f  Where

    Width

     f Dis ce

     for HSS h

     f   R

     R

     R R

    Where f Feed 

     R Tool 

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    Flank WearTool

    Movement

    Amount of

    flank wearDepth of cut

    Generated surface

    Desired

    surface

    Axis

    Effect of tool wear on machined component dimensions (Exaggerated view)

    Effect of tool wear on machined surface

    FLANK WEAR AFFECTS:

    * Dimensional accuracy

    * Process stability* Surface finish

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    TOOL LIFE & MACHINABILITYTool no longer performs desired function failed

    Re-sharpen and use it again.

    TOOL LIFE:

    • Useful life of a tool expressed in terms of time from start of a cutto termination point (defined by failure criterion). Sometimes also

    expressed in terms of no. Of the parts machined.

    • Tool failure criterion depends on

    • 1. The requirements of the component being produced.

    2. Type of Operation:• Roughing: force and power requirement.

    • Finishing : Surface finish & dimensional accuracy.

    ,

    (

     1

    )

     

    n

    T Tool life Minutes

    n Exponent for conditions tested 

    C Taylor s constant 

    C repre

    VT C 

    Where

     sents cutting spee

    V Cutti

    d for minute as tool lif   

    ngSpee

    e

    TAYLOR’S TOOL LIFE EQUATION

    After 12 Years of Experiments

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    Does not account for:

    Feed (f)

    Depth of cut (d)

    Tool geometry (Rake Angle )

    Taking logarithm on both sides

    LogV + nlogT= LogCt

    This becomes a straight line on the log-log scale

       C   u   t   t   i   n   g   S   p   e   e    d    (   m    /   m   i   n .    )

       L   o   g

    Tool life (minutes) Log

    1 Unit

    2.5 Unit

    n= 1/2.5(n100)

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    VARIABLES AFFECTING TOOL LIFE

    • Cutting Conditions (V, d, f)

    • Tool Geometry (all six angles, and nose radius)

    • Workpiece Material

    • Cutting fluid

    • Machine tool and Work piece region

    • Tool Material

     MACHINABILITY 

    . Mainly concerned with workpiece material properties not the tool properties.

    It depends on workpiece material properties and good machinability means:1. Low tool wear 

    2. Good surface finish produced

    3. Low cutting forces

    Machinability is defined as “THE EASE WITH WHICH A GIVEN WORKPIECCE MATERIALCAN BE MACHINED WIT A SPECIFIED CUTTING TOOL.

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    TOOL SPECIFICATION

    • Apart from tool material, one has to give tool angles and tool nose

    radius in the following sequence while going to purchase or asking

    some one to make a tool :

    • Tool specifications (all six angles, and nose radius) :7-8-5-6-9-4-1mm.

    • Back rake angle (70 ),

    • Side rake angle (80),

    • End clearance (relief) angle (50 ),

    • Side clearance (relief) angle (60),

    • End cutting edge angle (90),

    • Side cutting edge angle (40),

    • Nose radius (1 mm)

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    BENCH VICE HAND VICE PIPE VICE

    File

    Hand File

    Flat File

    Half-round File

    Round File

    Square File

    Three Square File

    File Card

    Hack Saw Pitches of Hack Saw  

    Hammer

    FITTING SHOP EQUIPMENT

    http://1.bp.blogspot.com/-q7OjWsyMRvw/URzK5ePbWKI/AAAAAAAABjA/Pg8qXxqYnek/s1600/pipe+vise.JPGhttp://4.bp.blogspot.com/-d92K7RY9D28/URzK2Zxj-QI/AAAAAAAABis/BC9Zza9D1HM/s1600/hand+vise.jpghttp://3.bp.blogspot.com/-LicGUipbTGQ/URzK2M06ARI/AAAAAAAABik/vaWLqqw7k4Y/s1600/bench+vise.JPG

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    Twist Drill Counter bore Drill Countersink Drill

    Hand Reamer

    Machine Reamer

     Adjustable Reamer

    Tap Wrench

    Die

    Die Nut

    Chisels

    Taps

    Fitting Shop Equipment

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     Vernier Caliper

    Outside Micrometer

    Ruler Scale

    Inside Caliper

    Outside Caliper

    Depth Micrometer

    Inside Micrometer

    Dial Gauge

    Measuring Equipment

     Vernier Height Gauge

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    Divider

    Combination Set

    Striking Tools/Hammers

    Surface Plate

     V-Block 

     Angle Plate Center Punch Dot Punch

    Scriber

    Bevel Protector

     Wire Gauge

    Center Square

    Measuring & Marking Equipment

    Universal Marking Surface Gauge

    Engineer’s try Square

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    Measuring, Marking Equipment, tools and cutters

    Universal Marking Surface Gauge

    Drill Chuck & Key Revolving Centre

    Dog Carrier Dog Plate

    Knurling ToolTurning ToolBoring ToolParting ToolThreading Tool

    Cylindrical Cutter Slitting Saw Cutter

    Screw Driver

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    15/20Power Hack Saw 

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    Horizontal

    Milling

    Machine

    Drilling

    Machine

    Vertical

    Milling

    machine

    Lathe Machine

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    THANK YOU

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    SUPPLEMENTARY MATERIAL

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