The bar in the figure with a diameter of 25 mm and a length of 1000 mm is made of Ti6Al4V alloy. A to this bar A force of 1000 N is applied with an arm of 800 mm length from the point. this force (a) the highest stress in the bar, (b) the type of stress, (c) the location of this stress (d) calculate how many degrees the rod rotates under the effect of this force. (Module of Elasticity of Ti6Al4V alloy 105 GPa and Poisson's ratio is 0.3).
The bar in the figure with a diameter of 25 mm and a length of 1000 mm is made of Ti6Al4V alloy. A to this bar A force of 1000 N is applied with an arm of 800 mm length from the point. this force (a) the highest stress in the bar, (b) the type of stress, (c) the location of this stress (d) calculate how many degrees the rod rotates under the effect of this force. (Module of Elasticity of Ti6Al4V alloy 105 GPa and Poisson's ratio is 0.3).
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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The bar in the figure with a diameter of 25 mm and a length of 1000 mm is made of Ti6Al4V alloy. A to this bar A force of 1000 N is applied with an arm of 800 mm length from the point. this force (a) the highest stress in the bar, (b) the type of stress, (c) the location of this stress (d) calculate how many degrees the rod rotates under the effect of this force. (Module of Elasticity of Ti6Al4V alloy 105 GPa and Poisson's ratio is 0.3).
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