Problem #1: Re-evaluate the beam from the Module 3 homework. Recall that you determine the principal stresses at point A and B on the beam. Note: Assume the yield strength is 248 MPa. Part A: Based on that information, determine if any of the failure criteria (Rankine's theory, Tresca criterion, and Von Mises criterion) predict failure by yielding at either A or B. Present the factor of safety for all three criteria. Part B: Based on the results of Part A and what we know about the failure surfaces of these three criteria, do these computed factors of safety make sense? Where does this data point land on the failure surfaces?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Problem #1: Re-evaluate the beam from the Module 3 homework. Recall that you determine the principal stresses
at point A and B on the beam.
Note: Assume the yield strength is 248 MPa.
Part A: Based on that information, determine if any of the failure criteria (Rankine's theory, Tresca criterion, and
Von Mises criterion) predict failure by yielding at either A or B. Present the factor of safety for all three criteria.
Part B: Based on the results of Part A and what we know about the failure surfaces of these three criteria, do these
computed factors of safety make sense? Where does this data point land on the failure surfaces?
20 kN
100 mm
10 kN
B 100 mm
100 mm
•B
|A
50 mm 50 mm
2 m
2 m
Transcribed Image Text:Problem #1: Re-evaluate the beam from the Module 3 homework. Recall that you determine the principal stresses at point A and B on the beam. Note: Assume the yield strength is 248 MPa. Part A: Based on that information, determine if any of the failure criteria (Rankine's theory, Tresca criterion, and Von Mises criterion) predict failure by yielding at either A or B. Present the factor of safety for all three criteria. Part B: Based on the results of Part A and what we know about the failure surfaces of these three criteria, do these computed factors of safety make sense? Where does this data point land on the failure surfaces? 20 kN 100 mm 10 kN B 100 mm 100 mm •B |A 50 mm 50 mm 2 m 2 m
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