a) A part for a specialist mining machine is made from solid A992 structural steel with a diameter of 25 mm, what is the maximum bending moment that the part can experjence to avoid yield failure? Include explanations and list any assumptions. b) That same part is now reenforced with a 5 mm square strip of Titanium alloy forming the cross-section seen in the figure. Now what is the maximum bending moment that can be applied to avoid yield failure? Include explanations and list any assumptions. c JUsing the moment you determined in c) calculate the maximum stress in the titanium. Include a diagram to define exactly where the maximum stress is located. (If you could not determine an answer to b) use the algebraic term Min your answer here)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 2
a) A part for a specialist mining machine is made from solid A992 structural steel with
a diameter of 25 mm, what is the maximum bending moment that the part can
experjence to avoid yield failure? Include explanations and list any assumptions.
b) That same part is now reenforced with a 5 mm square strip of Titanium alloy
forming the cross-section seen in the figure. Now what is the maximum bending
moment that can be applied to avoid yield failure? Include explanations and list any
assumptions.
c JUusing the moment you determined in c) calculate the maximum stress in the
titanium. Include a diagram to define exactly where the maximum stress is located.
(If you could not determine an answer to b) use the algebraic term M in your answer
here)
Transcribed Image Text:Question 2 a) A part for a specialist mining machine is made from solid A992 structural steel with a diameter of 25 mm, what is the maximum bending moment that the part can experjence to avoid yield failure? Include explanations and list any assumptions. b) That same part is now reenforced with a 5 mm square strip of Titanium alloy forming the cross-section seen in the figure. Now what is the maximum bending moment that can be applied to avoid yield failure? Include explanations and list any assumptions. c JUusing the moment you determined in c) calculate the maximum stress in the titanium. Include a diagram to define exactly where the maximum stress is located. (If you could not determine an answer to b) use the algebraic term M in your answer here)
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