Question

•Draw free body diagram •Calculate Reaction forces •Calculate Internal forces at section a-a •Determine the stress at point A and point B on the cross section of the post at section a-a. The post is made out of steel. •Determine the stress tensor at point A. • Determine the stress tensor at point B. •Draw 2D and 3D stress element at A and at B. • Find the principal stresses at point A. • Find the principal stresses at Point B. •Calculate the equivalent Von Mises stress at point A. • Calculate the equivalent Von Mises stress at point B.

          •Draw free body diagram
•Calculate Reaction forces
•Calculate Internal forces at section a-a
•Determine the stress at point A and point B on the cross section of the post at section a-a. The post is made out of steel.
•Determine the stress tensor at point A.
• Determine the stress tensor at point B.
•Draw 2D and 3D stress element at A and at B.
• Find the principal stresses at point A.
• Find the principal stresses at Point B.
•Calculate the equivalent
Von Mises stress at point A.
• Calculate the equivalent
Von Mises stress at point B.
        
Show more…
•Draw free body diagram
•Calculate Reaction forces
•Calculate Internal forces at section a-a
•Determine the stress at point A and point B on the cross section of the post at section a-a. The post is made out of steel.
•Determine the stress tensor at point A.
• Determine the stress tensor at point B.
•Draw 2D and 3D stress element at A and at B.
• Find the principal stresses at point A.
• Find the principal stresses at Point B.
•Calculate the equivalent
Von Mises stress at point A.
• Calculate the equivalent
Von Mises stress at point B.

Added by Megan P.

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University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
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I posted this question earlier. I did not achieve much understanding of what the person who answered it earlier. Is it possible to answer the following question by hand and drawing the appropriate diagrams for each part/step required please? Draw free body diagram. Calculate reaction forces. Calculate internal forces at section a-a. Determine the stress tensor at point B. Draw 2D and 3D stress elements at A and at B. Find the principal stresses at point A. Find the principal stresses at point B. Calculate the equivalent Von Mises stress at point A. Calculate the equivalent Von Mises stress at point B. 1.5 m 1800 N 1350 N 50 mm 60 mm
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Transcript

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00:01 Here in this question first we can write down a given data that is the value of sigma x square and the sigma y square is equal to 10 megapascal and the value of shear tau xy is equal to 0 the angle theta between the positive and negative side is equal to negative 45 degree.
00:27 So first we can write the stresses with an angle theta that is sigma x1 is equal to sigma x plus sigma y divided by 2 plus sigma x minus sigma y divided by 2 cos 2 theta plus value of tau xy sine 2 theta...
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