The state of stresses at a point in a given engineering component is that shown in the figure below: there is a direct stress of 20 N/mm2 in the x direction, no direct stress in the y direction and no shear stress in the x-y directions. Which of the following statements is correct? 20 N/mm2 20 N/mm2 There is no shear stress in any direction. The maximum shear stress will take place at 45 degrees and will have a value of 10 N/mm2. The direct stress and the shear stress at various angles will always add up to 20 N/mm². There will be shear stress at different directions ranging from 0 to 20 N/mm2 OO O O

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter9: Time, Temperature, And Mechanical Properties
Section: Chapter Questions
Problem 9.3P
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The state of stresses at a point in a given engineering component is that shown in the figure below: there is a direct stress of 20 N/mm2 in the x direction, no direct stress in the y
direction and no shear stress in the x-y directions. Which of the following statements is correct?
20 N/mm?
20 N/mm?
There is no shear stress in any direction.
The maximum shear stress will take place at 45 degrees and will have a value of 10 N/mm2.
The direct stress and the shear stress at various angles will always add up to 20 N/mm2.
There will be shear stress at different directions ranging from 0 to 20 N/mm2
OO O O
Transcribed Image Text:The state of stresses at a point in a given engineering component is that shown in the figure below: there is a direct stress of 20 N/mm2 in the x direction, no direct stress in the y direction and no shear stress in the x-y directions. Which of the following statements is correct? 20 N/mm? 20 N/mm? There is no shear stress in any direction. The maximum shear stress will take place at 45 degrees and will have a value of 10 N/mm2. The direct stress and the shear stress at various angles will always add up to 20 N/mm2. There will be shear stress at different directions ranging from 0 to 20 N/mm2 OO O O
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