A 38-mm-diameter solid steel shaft supports loads PA = 1230 N and Pc = 2170 N, as shown. Assume LAB = 82 mm, LBC = 203 mm, and LCD = 152 mm. The bearing at B can be idealized as a roller support and the bearing at D can be idealized as a pin support. Determine the magnitude omax and location x (measured positive to the left from D) of the maximum bending stress in the shaft. Answers: omax = i LAB B LBC MPa, x = i C Pc LCD D mm.

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
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A 38-mm-diameter solid steel shaft supports loads PA = 1230 N and Pc = 2170 N, as shown. Assume LAB = 82 mm, LBc = 203 mm, and
LCD = 152 mm. The bearing at B can be idealized as a roller support and the bearing at D can be idealized as a pin support. Determine
the magnitude omax and location x (measured positive to the left from D) of the maximum bending stress in the shaft.
Answers:
o max
||
PA
LAB
B
LBC
MPa, x =
C
Pc
LCD
D
mm.
Transcribed Image Text:A 38-mm-diameter solid steel shaft supports loads PA = 1230 N and Pc = 2170 N, as shown. Assume LAB = 82 mm, LBc = 203 mm, and LCD = 152 mm. The bearing at B can be idealized as a roller support and the bearing at D can be idealized as a pin support. Determine the magnitude omax and location x (measured positive to the left from D) of the maximum bending stress in the shaft. Answers: o max || PA LAB B LBC MPa, x = C Pc LCD D mm.
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