EBK MANUFACTURING PROCESSES FOR ENGINEE
EBK MANUFACTURING PROCESSES FOR ENGINEE
6th Edition
ISBN: 9780134425115
Author: Schmid
Publisher: YUZU
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Chapter 6, Problem 6.125P
To determine

The expression for extrusion pressure.

Expert Solution & Answer
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Explanation of Solution

The figure (1) demonstrate the forces on the specimen in a wire drawing process.

  EBK MANUFACTURING PROCESSES FOR ENGINEE, Chapter 6, Problem 6.125P

Figure (1)

The expression for the equilibrium in x direction can be given as,

  (σx+dσx)π4(D+dD)2σxπ4D2+pπDdxsinα+μpπDdxcosα=0

Here, pressure along the die contact is p , μ is the coefficient of friction, Do is the initial diameter, Df is the final diameter.

After expanding the above equation,

  (σx+dσx)π4(D2+ ( dD )2+2D( dD))σxπ4D2+pπDdxsinα+μpπDdxcosα=0{( π 4 σ x D 2 + π 4 σ x ( dD ) 2 +2 σ x D π 4 ( dD ))+( π 4 d σ x D 2 + π 4 d σ x ( dD ) 2 +2d σ x D π 4 ( dD )) σ x π 4 D 2+pπDdx( sinα+μcosα)}=0π4dσxD2+2dσxDπ4(dD)+pπDdx(sinα+μcosα)=014dσxD2+2dσxD14(dD)+pDdx(sinα+μcosα)=0

Further solving the above equation,

  dσxD+2dσx(dD)+4pdx(sinα+μcosα)=0dσxD+2dσx(dD)+4pdD2sinα(sinα+μcosα)=0dσxD+2dσx(dD)+2pdD(1+μ1 tanα)=0 …… (1)

Expression for pressure p can be given as,

  p=Syσx

Substituting the value of p in the equation (1),

  dσxD+2dσx(dD)+2(Syσx)dD(1+μ1 tanα)=0dσxD+2dσx(dD)+(2SydD( 1+μcotα)2σxdD( 1+μcotα))=0dσxD+(2SydD( 1+μcotα)2σxdD( μcotα))=0( d σ x ( 2 S y ( 1+μcotα )+2 σ x ( μcotα ) ))=dDD …… (2)

Integration of equation (2) for boundary condition D=D0 at σx=σd and D=Df at σx=0 can be given as,

   σ d 0( d σ x ( 2 S y ( 1+μcotα )+2 σ x ( μcotα ) ) )= D o D f dD D( ln( 2 S y ( 1+μcotα )+2 σ x ( μcotα ) ) 2( μcotα ))σd0=ln( D f D o )ln( 2 S y ( 1+μcotα ) ( 2 S y ( 1+μcotα )+2 σ x ( μcotα ) ))=ln( D f D o )2( μcotα)

Simplifying the above equation,

  σd=Sy( 1+μcotα μcotα)(1 ( D f D o ) 2( μcotα ))σd=Sy(1+ tanαμ)(1 ( D f D o ) 2( μcotα )) …… (3)

The expression for the ratio of area,

  ( D f D o )2=(AfAo)

Substituting the above value in the equation (3),

  σd=Sy(1+tanαμ)(1( A f A o )( μcotα))

For, p=σd

  p=Sy(1+tanαμ)(1( A f A o )( μcotα))

Conclusion:

Therefore, the equation is p=Sy(1+tanαμ)(1( A f A o )( μcotα)) .

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Chapter 6 Solutions

EBK MANUFACTURING PROCESSES FOR ENGINEE

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