3. A 5/8 in diameter circular rod supports part of a storage shelf in a warehouse. As products are loaded and unloaded, the rod is subjected to a tensile load that varies from 1800 to 150 lb. Draw a sketch of the variation of stress versus time, and compute the maximum stress. minimum stress, mean stress, alternating stress, and stress ratio, R.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter8: Applications Of Plane Stress (pressure Vessels, Beams, And Combined Loadings)
Section: Chapter Questions
Problem 8.3.5P: An inflatable structure used by a traveling circus has the shape of a half-circular cylinder with...
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Hi im studying machine design and faced this problems, please help. Thank you

3. A 5/8 in diameter circular rod supports part of a storage shelf in a warehouse. As products are
loaded and unloaded, the rod is subjected to a tensile load that varies from 1800 to 150 lb.
Draw a sketch of the variation of stress versus time, and compute the maximum stress,
minimum stress, mean stress, alternating stress, and stress ratio, R.
4. A packaging machine mechanism has a link with a square cross section of 0.50 in on a side.
It is subjected to a load that varies from a tensile force of 750 lb to a compressive force of 130
Ib. Draw a sketch of the variation of stress versus time, and compute the maximum stress,
minimum stress, mean stress, alternating stress, and stress ratio, R.
Transcribed Image Text:3. A 5/8 in diameter circular rod supports part of a storage shelf in a warehouse. As products are loaded and unloaded, the rod is subjected to a tensile load that varies from 1800 to 150 lb. Draw a sketch of the variation of stress versus time, and compute the maximum stress, minimum stress, mean stress, alternating stress, and stress ratio, R. 4. A packaging machine mechanism has a link with a square cross section of 0.50 in on a side. It is subjected to a load that varies from a tensile force of 750 lb to a compressive force of 130 Ib. Draw a sketch of the variation of stress versus time, and compute the maximum stress, minimum stress, mean stress, alternating stress, and stress ratio, R.
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