A material has a strength coefficient of 150,000 psi.  At the onset of plastic deformation, the material had an 18 percent increase over its initial length, and at the beginning of non-uniform deformation, the material experienced an engineering strain of 0.58. Calculate the engineering and true strains at yield. Also, calculate the engineering and true strains at the point where a maximum engineering stress is experienced by the material.  Determine the strain-hardening index. Calculate the ultimate tensile strength. Calculate the modulus of elasticity.   Given: K = 150,000 psi 18% increase in length ey = 0.58

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A material has a strength coefficient of 150,000 psi.  At the onset of plastic deformation, the material had an 18 percent increase over its initial length, and at the beginning of non-uniform deformation, the material experienced an engineering strain of 0.58. Calculate the engineering and true strains at yield. Also, calculate the engineering and true strains at the point where a maximum engineering stress is experienced by the material.  Determine the strain-hardening index. Calculate the ultimate tensile strength. Calculate the modulus of elasticity.

 

Given:

K = 150,000 psi

18% increase in length

ey = 0.58

 

Want:

ey =?          eu =?          n =?          UTS =?          E =?

εy =?          εu =?

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