Essentials Of Materials Science And Engineering
Essentials Of Materials Science And Engineering
4th Edition
ISBN: 9781337670845
Author: ASKELAND
Publisher: Cengage
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Chapter 6, Problem 6.34P
Interpretation Introduction

(a)

Interpretation:

The length and the diameter of the given bar should be determined

A 500-lb load is applied on the bar, after this length and the diameter of the bar are to be determined where the Poisson's ratio is 0.30.

Concept Introduction:

Following formulas will be used for the calculation of new length and the diameter of titanium bar-

δl=PLAE

Stress formula-

σ=PA

Poisson's ratio-

γ=elateralelongitudnal

P= applied force

L= initial length

A= area

E= modulus of elasticity

δl= Change in length

P= applied force

A = area

Interpretation Introduction

(b)

Interpretation:

The applied load should be determined for the given copper bar.

Concept Introduction:

Applied load is calculated by using the following formulas-

Relation between rigidity modulus, modulus of elasticity and Poisson's ratio is-

G=E2(1+v)

Where,

G = modulus of rigidity

E = modulus of elasticity

v = Poisson's ratio

Hooke's law for shear stress (t) and strain (τ) is −

τ=Gγ

Shear stress is −

τ=FA

Shear strain is-

γ=ΔAA

Where,

τ = shear stress

γ = shear strain

G = proportional constant, modulus of rigidity

τ = shear stress

F= applied force

A= area

τ = shear strain

ΔA= deformed area or change in area

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Chapter 6 Solutions

Essentials Of Materials Science And Engineering

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