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Question

A copper and a tungsten plate having a thickness δ = 2mm each are riveted together so that at 0C they form a flat bimetallic plate. Find the average radius of the curvature of this plate at t = 200C. The coefficient of linear expansion for copper and tungsten are αCu = 1.7 × 105/K and αW = 0.4 × 105/K.


A

0.769 m

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B

1 m

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C

0.582 m

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D

1.243 m

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Solution

The correct option is A

0.769 m


The average length of the copper plate at a temperature T = 200C is lC = l0(1+αCuT), where l0 is the length of copper plate at 0C. The length of the tungsten plate is lt = l0(1+αWT).

We shall assume that the edges of plates are not displaced during deformation and that an increase in the plate thickness due to heating can be neglected.

From figure we have:

lC = ϕ(R+δ2)

lt = ϕ(Rδ2).

Consequently, ϕ(R+δ2) = l0(1+αCuT), - - - - - - (1)

ϕ(Rδ2) = l0(1+αWT). - - - - - - (2)

To eliminate the unknown quantities, ϕ and l0, we divide the equation (1) by (2), term wise:

(R+δ2)(Rδ2) = (1+αcuT)(1+αWT)

R = δ[2+(αcu+αW)T][2(αcuαW)T]

R = δ(αcuαW)T

Neglecting (αCu+αW) in the numerator, and substituting the values in the above relation,

we get: R = 0.769 m.


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