1.) The cylindrical drum is filled with water with unit weight of water 9800 N/m3. The cylinder is Im in diameter and 3m long and is placed between a rigid surface and an inclined platform as shown in the figure. The inclined platform(25mm thick) weighs 20kN is supported by a steel rod(with 12mm in diameter and placed perpendicular to the surface) at point A and a pin support at point B. Assuming no friction force on the contact surfaces, solve for the following: a.) Reaction at points A and B b.) Normal Stress of the rod c.) Maximum Shearing Stress of the pin at B. d.) Maximum Bearing Stress of the platform A 2.5m L=5m 3mm 3mm 16mm 60° diameter B.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Letter "d.) the maximum bearing stress of the platforms" only...

1.) The cylindrical drum is filled with water with unit weight of water 9800 N/m3. The cylinder
is Im in diameter and 3m long and is placed between a rigid surface and an inclined
platform as shown in the figure. The inclined platform(25mm thick) weighs 20kN is
supported by a steel rod(with 12mm in diameter and placed perpendicular to the surface)
at point A and a pin support at point B. Assuming no friction force on the contact surfaces,
solve for the following:
a.) Reaction at points A and B
b.) Normal Stress of the rod
c.) Maximum Shearing Stress of the pin at B.
d.) Maximum Bearing Stress of the platform
A
2.5m
L=5m
3mm
3mm
16mm
60°
diameter
B.
Transcribed Image Text:1.) The cylindrical drum is filled with water with unit weight of water 9800 N/m3. The cylinder is Im in diameter and 3m long and is placed between a rigid surface and an inclined platform as shown in the figure. The inclined platform(25mm thick) weighs 20kN is supported by a steel rod(with 12mm in diameter and placed perpendicular to the surface) at point A and a pin support at point B. Assuming no friction force on the contact surfaces, solve for the following: a.) Reaction at points A and B b.) Normal Stress of the rod c.) Maximum Shearing Stress of the pin at B. d.) Maximum Bearing Stress of the platform A 2.5m L=5m 3mm 3mm 16mm 60° diameter B.
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