4 kN 3 kN 375 mm 375 mm B 750 mm As shown in the figure, the shaft is supported by bearings A and B and is subjected to a concentrated load. Material A-36 steel Diameter: 50 mm Find the maximum displacement and maximum stress. 1) Determine the theoretical stress value using the stress formula due to bending load.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter3: Torsion
Section: Chapter Questions
Problem 3.12.4P: The stepped shaft shown in the figure is required to transmit 600 kW of power at 400 rpm. The shaft...
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4 kN
3 kN
375 mm
B
375 mm
750 mm
As shown in the figure, the shaft is supported by bearings A and B and is subjected
to a concentrated load.
Material A-36 steel
Diameter: 50 mm
Find the maximum displacement and maximum stress.
1) Determine the theoretical stress value using the stress formula due to bending load.
2) Model with a solid model to obtain stress values and displacements at
Creosimulate.
3) Model with Beam model to obtain stress values and displacements at Creosimulate.
Transcribed Image Text:4 kN 3 kN 375 mm B 375 mm 750 mm As shown in the figure, the shaft is supported by bearings A and B and is subjected to a concentrated load. Material A-36 steel Diameter: 50 mm Find the maximum displacement and maximum stress. 1) Determine the theoretical stress value using the stress formula due to bending load. 2) Model with a solid model to obtain stress values and displacements at Creosimulate. 3) Model with Beam model to obtain stress values and displacements at Creosimulate.
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