A solid 0.6-in.-diameter cold-rolled steel rod is pinned to fixed supports at A and B. The length of the rod is L = 22 in., its elastic modulus is E = 29000 ksi, and its coefficient of thermal expansion is a = 7.7 x 10-in./in./°F. Determine the temperature increase AT that will cause the rod to buckle.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter2: Axially Loaded Members
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Problem 2.5.1P: The rails of a railroad track are welded together at their ends (to form continuous rails and thus...
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A solid 0.6-in-diameter cold-rolled steel rod is pinned to fixed supports at A and B. The length of the rod is L = 22 in., its elastic
modulus is E = 29000 ksi, and its coefficient of thermal expansion is a = 7.7 x 10-6 in./in./°F. Determine the temperature increase
AT that will cause the rod to buckle.
L
B
Answer: AT=
Transcribed Image Text:A solid 0.6-in-diameter cold-rolled steel rod is pinned to fixed supports at A and B. The length of the rod is L = 22 in., its elastic modulus is E = 29000 ksi, and its coefficient of thermal expansion is a = 7.7 x 10-6 in./in./°F. Determine the temperature increase AT that will cause the rod to buckle. L B Answer: AT=
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