The composite bar shown in the figure is firmly attached to unyielding supports. An Axial force P = 52 kips is applied at 69°F. Compute the stress (ksi) in the Aluminum at 118 °F. Assume a = 6.5 x 10-6/° F for steel and 12.8 x 10-6/° F for aluminum Given: L1 = 17in; L2 = 11in Your final answer should contain two decimal places Aluminum A = 2 in? E = 10 x 10° psi Steel A = 3 in? E = 29 x 106 psi L1 L2
The composite bar shown in the figure is firmly attached to unyielding supports. An Axial force P = 52 kips is applied at 69°F. Compute the stress (ksi) in the Aluminum at 118 °F. Assume a = 6.5 x 10-6/° F for steel and 12.8 x 10-6/° F for aluminum Given: L1 = 17in; L2 = 11in Your final answer should contain two decimal places Aluminum A = 2 in? E = 10 x 10° psi Steel A = 3 in? E = 29 x 106 psi L1 L2
Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
ISBN:9781337094740
Author:Segui, William T.
Publisher:Segui, William T.
Chapter1: Introduction
Section: Chapter Questions
Problem 1.5.5P: The results of a tensile test are shown in Table 1.5.2. The test was performed on a metal specimen...
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The composite bar shown in the figure is firmly attached to unyielding supports. An Axial force P = 52 kips is applied at 69∘F. Compute the stress (ksi) in the Aluminum at 118 ∘F. Assume α= 6.5 x 10-6/∘ F for steel and 12.8 x 10-6/∘F for aluminum
Given: L1 = 17in; L2 = 11in
Your final answer should contain two decimal places
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