Pearson eText for Manufacturing Processes for Engineering Materials -- Instant Access (Pearson+)
Pearson eText for Manufacturing Processes for Engineering Materials -- Instant Access (Pearson+)
6th Edition
ISBN: 9780137503520
Author: Serope Kalpakjian, Steven Schmid
Publisher: PEARSON+
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Chapter 6, Problem 6.101P
To determine

The velocity of the strip leaving the rolls.

Expert Solution & Answer
Check Mark

Answer to Problem 6.101P

The velocity of the strip leaving the rolls is 0.202m/s .

Explanation of Solution

Given:

The coefficient of friction is μ=0.3 .

The radius of the roll is R=300mm .

The speed of the roll is N=100rpm .

The initial thickness of the strip is t1=25mm .

The final thickness of the strip is t2=20mm .

The width of the strip is w=225mm .

Formula used:

The expression for length of arc of contact is given as,

  L=R(t1t2)

Here, K is the strength coefficient, ε is the true strain and n is the strain hardening

exponent.

The expression for true strain is given as,

  ε=ln(t1t2)

The expression for average thickness is given as,

  tavg=t1+t22

The expression for average flow stress is given as,

  σf=Kεnn+1

Here, K is the strength coefficient, ε is the strain and n is the strain hardening coefficient.

The expression for roll force is given as,

  F=Lwσf(1+μL2t avg)

The expression for power of roll is given as,

  p=πFLN60

The expression for velocity of strip is given as,

  V=PF

Calculation:

The length of arc of contact can be calculated as,

  L=R( t 1 t 2 )L=300mm( 25mm20mm)L=1500 mm2L=38.73mm

The true strain can be calculated as,

  ε=ln( t 1 t 2 )ε=ln( 25mm 20mm)ε=ln1.25ε=0.223

The average thickness can be calculated as,

  tavg=t1+t22tavg=25mm+20mm2tavg=22.5mm

Refer to table 2.2 “The strength coefficient and strain hardening exponent”is given as,

  K=205MPan=0.2

The average flow stress can be calculated as,

  σf=Kεnn+1σf=205MPa× 0.233 0.20.2+1σf=153.19MPa1.2σf=127MPa

The roll force can be calculated as,

  F=Lwσf(1+ μL 2 t avg )F=38.73mm×225mm×127Mpa(1+ 0.3×38.73mm 2×22.5mm)F=8714.25mm2×1m2 106 mm2×127Mpa×1MN/ m 21MPa(1.2582)F=8.71×103m2×127MN/m2(1.2582)

On further solving as,

  F=1.39MN .

The power of roll can be calculated as,

  p=πFLN60p=π×1.39MN× 10 6 N 1MN×38.73mm× 1m 10 3 mm×100rpm60p=4.3668× 106N×0.03873m×100rpm60p=281.876×103Nm/s×1W1Nm/s

On further solving as,

  p=281.876×103W×1kW 103Wp=281.876kW

The velocity of strip can be calculated as,

  V=PFV=281.876× 103W× 1 Nm/s W1.39MN× 10 6 N 1MNV=281.876× 103Nm/s1.39× 106NV=0.202m/s

Conclusion:

Therefore, the velocity of the strip leaving the rolls is 0.202m/s .

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Chapter 6 Solutions

Pearson eText for Manufacturing Processes for Engineering Materials -- Instant Access (Pearson+)

Ch. 6 - Prob. 6.11QCh. 6 - Prob. 6.12QCh. 6 - Prob. 6.13QCh. 6 - Prob. 6.14QCh. 6 - Prob. 6.15QCh. 6 - Prob. 6.16QCh. 6 - Prob. 6.17QCh. 6 - Prob. 6.18QCh. 6 - Prob. 6.19QCh. 6 - Prob. 6.20QCh. 6 - Prob. 6.21QCh. 6 - Prob. 6.22QCh. 6 - Prob. 6.23QCh. 6 - Prob. 6.24QCh. 6 - Prob. 6.25QCh. 6 - Prob. 6.26QCh. 6 - Prob. 6.27QCh. 6 - Prob. 6.28QCh. 6 - Prob. 6.29QCh. 6 - Prob. 6.30QCh. 6 - Prob. 6.31QCh. 6 - Prob. 6.32QCh. 6 - Prob. 6.33QCh. 6 - Prob. 6.34QCh. 6 - Prob. 6.35QCh. 6 - Prob. 6.36QCh. 6 - Prob. 6.37QCh. 6 - Prob. 6.38QCh. 6 - Prob. 6.39QCh. 6 - Prob. 6.40QCh. 6 - Prob. 6.41QCh. 6 - Prob. 6.42QCh. 6 - Prob. 6.43QCh. 6 - Prob. 6.44QCh. 6 - Prob. 6.45QCh. 6 - Prob. 6.46QCh. 6 - Prob. 6.47QCh. 6 - Prob. 6.48QCh. 6 - Prob. 6.49QCh. 6 - Prob. 6.50QCh. 6 - Prob. 6.51QCh. 6 - Prob. 6.52QCh. 6 - Prob. 6.53QCh. 6 - Prob. 6.54QCh. 6 - Prob. 6.55QCh. 6 - Prob. 6.56QCh. 6 - Prob. 6.57QCh. 6 - Prob. 6.58QCh. 6 - Prob. 6.59QCh. 6 - Prob. 6.60QCh. 6 - Prob. 6.61QCh. 6 - Prob. 6.62QCh. 6 - Prob. 6.63QCh. 6 - Prob. 6.64QCh. 6 - Prob. 6.65QCh. 6 - Prob. 6.66QCh. 6 - Prob. 6.67QCh. 6 - Prob. 6.68QCh. 6 - Prob. 6.69QCh. 6 - Prob. 6.70QCh. 6 - Prob. 6.71QCh. 6 - Prob. 6.72QCh. 6 - Prob. 6.73PCh. 6 - Prob. 6.74PCh. 6 - Prob. 6.75PCh. 6 - Prob. 6.76PCh. 6 - Prob. 6.77PCh. 6 - Prob. 6.78PCh. 6 - Prob. 6.79PCh. 6 - Prob. 6.80PCh. 6 - Prob. 6.81PCh. 6 - Prob. 6.82PCh. 6 - Prob. 6.83PCh. 6 - Prob. 6.84PCh. 6 - Prob. 6.85PCh. 6 - Prob. 6.86PCh. 6 - Prob. 6.87PCh. 6 - Prob. 6.88PCh. 6 - Prob. 6.89PCh. 6 - Prob. 6.90PCh. 6 - Prob. 6.91PCh. 6 - Prob. 6.92PCh. 6 - Prob. 6.93PCh. 6 - Prob. 6.94PCh. 6 - Prob. 6.95PCh. 6 - Prob. 6.96PCh. 6 - Prob. 6.97PCh. 6 - Prob. 6.98PCh. 6 - Prob. 6.99PCh. 6 - Prob. 6.100PCh. 6 - Prob. 6.101PCh. 6 - Prob. 6.102PCh. 6 - Prob. 6.103PCh. 6 - Prob. 6.104PCh. 6 - Prob. 6.105PCh. 6 - Prob. 6.106PCh. 6 - Prob. 6.107PCh. 6 - Prob. 6.108PCh. 6 - Prob. 6.109PCh. 6 - Prob. 6.110PCh. 6 - Prob. 6.111PCh. 6 - Prob. 6.112PCh. 6 - Prob. 6.113PCh. 6 - Prob. 6.114PCh. 6 - Prob. 6.115PCh. 6 - Prob. 6.116PCh. 6 - Prob. 6.117PCh. 6 - Prob. 6.118PCh. 6 - Prob. 6.119PCh. 6 - Prob. 6.120PCh. 6 - Prob. 6.121PCh. 6 - Prob. 6.122PCh. 6 - Prob. 6.123PCh. 6 - Prob. 6.124PCh. 6 - Prob. 6.125PCh. 6 - Prob. 6.126PCh. 6 - Prob. 6.127PCh. 6 - Prob. 6.128PCh. 6 - Prob. 6.129PCh. 6 - Prob. 6.130PCh. 6 - Prob. 6.131PCh. 6 - Prob. 6.132PCh. 6 - Prob. 6.133PCh. 6 - Prob. 6.134PCh. 6 - Prob. 6.135PCh. 6 - Prob. 6.136PCh. 6 - Prob. 6.137PCh. 6 - Prob. 6.138PCh. 6 - Prob. 6.139PCh. 6 - Prob. 6.140PCh. 6 - Prob. 6.142DCh. 6 - Prob. 6.143DCh. 6 - Prob. 6.144DCh. 6 - Prob. 6.145DCh. 6 - Prob. 6.146DCh. 6 - Prob. 6.147DCh. 6 - Prob. 6.149D
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