30 If the total deformation of the compo site rod in the figure is limited to 0.90 mm, compute the maximum value of "P" that is safe for the composite rod. 3P BRONZE FO P 4P STEEL A = 300 mm² 2P

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter1: Tension, Compression, And Shear
Section: Chapter Questions
Problem 1.6.7P: A wine of length L = 4 ft and diameter d = 0.125 in. is stretched by tensile forces P = 600 lb. The...
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Strength of Materials (Upvote will be given. Please write the complete solutions and FBDs Legibly. No long explanation needed. Solve in 3 decimal places.)                               
30
If the total deformation of the compo
site rod in the figure is limited to 0.90
mm, compute the maximum value of
"P" that is safe for the composite rod.
3P
BRONZE
A = 450 mm²
L = 0.6 m
E = 83 GPa
P
ALUMINUM
A = 600 mm²
L = 1.0 m
E = 70 GPa
4P
STEEL
A = 300 mm²
L = 0.8 m
E = 200 GPa
2P
Transcribed Image Text:30 If the total deformation of the compo site rod in the figure is limited to 0.90 mm, compute the maximum value of "P" that is safe for the composite rod. 3P BRONZE A = 450 mm² L = 0.6 m E = 83 GPa P ALUMINUM A = 600 mm² L = 1.0 m E = 70 GPa 4P STEEL A = 300 mm² L = 0.8 m E = 200 GPa 2P
28
A rigid bar is supported by two coppe
r rods and the gap between the alumi
num rod and the bar is 1 mm. If the te
mperature for all materials is increas
ed by 60 degrees Celsius, will the alu
minum rod touch the rigid bar or not?
Prove and elaborate your answer.
For each copper bar,
A = 400 mm^2, E = 120 GPa, and a =
16.8 μm/(m. C).
For the aluminum bar,
A = 350 mm^2, E = 70 GPa, and a = 2
3.1 μm/(m. C).
Copper
AT
Aluminum
Copper
750 mm
Transcribed Image Text:28 A rigid bar is supported by two coppe r rods and the gap between the alumi num rod and the bar is 1 mm. If the te mperature for all materials is increas ed by 60 degrees Celsius, will the alu minum rod touch the rigid bar or not? Prove and elaborate your answer. For each copper bar, A = 400 mm^2, E = 120 GPa, and a = 16.8 μm/(m. C). For the aluminum bar, A = 350 mm^2, E = 70 GPa, and a = 2 3.1 μm/(m. C). Copper AT Aluminum Copper 750 mm
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