2:The load (50 kN) applied on the rigid beam (AB) s supported by the pin (A) and two rods ,one made of steel and the other composite of bronze and aluminum, as shown in (Fig.2). Determine the stress of each material, and final ocation of (B). composite rod (Le 2m) steel rod rigid Steel: AF 600 mm2, E=200 GPa, Bronze: A 300 mm2, E 83 GPa, Aluminum: A = 300 mm, E = 70 GPa 0.6 m SO KN %3! にンal

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
Section: Chapter Questions
Problem 2.2.17P: A hollow, circular, cast-iron pipe (Ec =12,000 ksi) supports a brass rod (Ec= 14,000 ksi} and weight...
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Q2: The load (50 kN) applied on the rigid beam (AB)
Is supported by the pin (A) and two rods ,one made
of steel and the other composite of bronze and
aluminum, as shown in (Fig.2).
Determine the stress of each material , and final
location of (B).
r Composite rod
(L- 2 m)
steel rod
(Letm)
rigid
Steel: AF 600 mm? , E=200 GPa,
Bronze: AF 300 mm , E= 83 GPa,
Aluminum: A = 300 mm , E= 70 GPa
A
0.6 m
0. 8 m
SO KN
(Fig.2)
Transcribed Image Text:Q2: The load (50 kN) applied on the rigid beam (AB) Is supported by the pin (A) and two rods ,one made of steel and the other composite of bronze and aluminum, as shown in (Fig.2). Determine the stress of each material , and final location of (B). r Composite rod (L- 2 m) steel rod (Letm) rigid Steel: AF 600 mm? , E=200 GPa, Bronze: AF 300 mm , E= 83 GPa, Aluminum: A = 300 mm , E= 70 GPa A 0.6 m 0. 8 m SO KN (Fig.2)
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