SHIGLEY'S MECH.ENGINEERING DESIGN-EBK>I
SHIGLEY'S MECH.ENGINEERING DESIGN-EBK>I
10th Edition
ISBN: 9781259489563
Author: BUDYNAS
Publisher: INTER MCG
bartleby

Concept explainers

bartleby

Videos

Question
Book Icon
Chapter 2, Problem 10P

(a)

To determine

The yield strength if hot rolled AISI 1212 HR steel undergoes a 20 percent cold-work operation.

The ultimate strength if hot rolled AISI 1212 HR steel undergoes a 20 percent cold-work operation.

The percentage increase in yield strength.

The percentage increase in ultimate strength.

(a)

Expert Solution
Check Mark

Answer to Problem 10P

The yield strength if hot rolled AISI 1212 HR steel undergoes a 20 percent cold-work operation is 77.545kpsi.

The ultimate strength if hot rolled AISI 1212 HR steel undergoes a 20 percent cold-work operation is 76.875kpsi.

The percentage increase in yield strength is 176.94%.

The percentage increase in ultimate strength is 25%.

Explanation of Solution

Write the expression for work load factor and area.

A0Ai=11W (I)

Here, the original area is A0, the area after load is Ai and work load factor is W.

Write the expression for true strain.

εi=lnA0Ai (II)

Here, the true strain is εi.

Calculate the new yield strength after cold work.

Sy=σ0εmi (III)

Here, the yield strength is Sy, the strength coefficient is σ0 and strain strengthening exponent is m.

Calculate the new ultimate strength after cold work.

Su=Su1W (IV)

Here, the new ultimate strength after clod work is Su and the ultimate strength before cold work is Su.

Calculate the percentage increase in yield strength.

dy=((SySy)(Sy))×100%                                              (V)

Here, the percentage increase in yield strength is dy, the yield strength before cold-work is Sy.

Calculate the percentage increase in ultimate strength.

du=((SuSu)(Su))×100% (VI)

Here, the percentage increase in ultimate strength is du.

Conclusion:

Refer to Table A-22 “Results of Tensile Test of Some Metals” for hot rolled AISI 1212 steel.

Obtain the yield strength as 28kpsi, the ultimate strength before cold work as 61.5kpsi, the strength coefficient as 110kpsi and strain strengthening exponent as 0.24. The fracture strength εf is 0.85.

The steel undergoes 20 percent cold work operation therefore the value of work load factor W is 0.20

Substitute 0.20 for W in the Equation (I).

A0Ai=110.20=1.25

Substitute 1.25 for A0Ai in the Equation (II).

εi=ln1.25=0.223

Substitute 0.223 for εi, 0.24 for m and 110kpsi for σ0 in the Equation (III).

Sy=(110kpsi)(0.233)0.24=(110kpsi)(0.70496)77.545kpsi

Thus, the yield strength is 77.545kpsi.

Substitute 28kpsi for Sy and 77.545kpsi for Sy in Equation (V).

dy=((77.545kpsi28kpsi)(28kpsi))×100%=(49.545kpsi28kpsi)×100%176.94%

Thus, the percentage increase in yield strength is 176.94%.

Substitute 61.5kpsi for Su and 0.20 for W in the Equation (IV).

Su=(61.5kpsi)(10.20)=(61.5kpsi)(0.80)=76.875kpsi

Thus, the ultimate strength is 76.875kpsi.

Substitute 61.5kpsi for Su and 76.875kpsi for Su in Equation (VI).

du=((76.875kpsi)(61.5kpsi)(61.5kpsi))×100%=(15.375kpsi61.5kpsi)×100%=25%

Thus, the percentage increase in ultimate strength is 25%.

(b)

To determine

The ratio of ultimate and yield strength before cold-work operation.

The ratio of ultimate and yield strength after cold-work operation and explain the ductility of part with the help of result.

(b)

Expert Solution
Check Mark

Answer to Problem 10P

The ratio of ultimate and yield strength before cold-work operation is 2.20.

The ratio of ultimate and yield strength after cold-work operation is 1.0 and after cold working operation steel lost most of its ductility.

Explanation of Solution

Calculate the ratio of ultimate strength to yield strength before cold work.

r1=SuSy                                                           (VII)

Here, the ratio of ultimate strength to yield strength is r1, the ultimate strength before cold work is Su and yield strength before cold work is Sy.

Calculate the ratio of ultimate strength to yield strength after cold work.

r2=SuSy (VIII)

Here, the ratio of ultimate strength to yield strength after cold work is r2, the ultimate strength after cold work is Su and the yield strength after cold work is Sy.

Conclusion:

Substitute 61.5kpsi for Su and 28kpsi for Sy in the Equation (VII).

r1=(61.5kpsi)(28kpsi)=2.19642.196

Thus, the ratio of ultimate strength to yield strength before cold work is 2.196.

Substitute 76.9kpsi for Su and 76.7kpsi for Sy in the Equation (VIII).

r2=(76.9kpsi)(76.7kpsi)=1.00261.0

Thus, the ratio of ultimate strength to yield strength after cold work is 1.0.

From the calculated value of r1 and r2, it is obtained that r1>r2. So, it can be concluded that the steel loses its difficulty after the cold working.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Consider you have four long, 2 cm diameter rods, one each made of copper, steel, wood, and glass. They are to be cooled from a high temperature for 10 minutes. If you want to describe how the temperature changes with time, what approach is best for each of these rods. Balance solution accuracy against efficiency and justify with rules of thumb given
Example A small solid at temperature of 80oC is to be cooled in a cooling chamber maintained at 5oC.Determine the ?me required for the temperature of the solid to reach 8oC if the propor?onality constant in Equa?on (7.31) α = 0.002/m2-s with a contac?ng surface area A = 0.2 m2
Three tons of fish is to be stored at a temperature of -10°C for 24hrs. The product enters the chiller at a temperature of 8°C. The specific heat below and above freezing is 0.41 kcal/kg-C and 0.76 kcal/kg-C respectively and its latent heat of fusion is 51 kcal/kg. If the freezing temperature of the product is -2.2 °C, determine the product load in kcal/hr.
Knowledge Booster
Background pattern image
Mechanical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Principles of Heat Transfer (Activate Learning wi...
Mechanical Engineering
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Cengage Learning
How to make metal stronger by heat treating, alloying and strain hardening; Author: Billy Wu;https://www.youtube.com/watch?v=7lM-Y4XndsE;License: Standard Youtube License