Calculate the stress of the cylindrical rod. Compare with data given in Table Q1 which are the likely materials for the cylindrical rod if it does not experience plastic deformation? Justify. What is the likely material if the elongation is less than 0.9 materials? Justify.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Table Q1 consists of 4 (four) materials with their mechanical properties. The length of
a cylindrical rod 380 mm long, having a diameter of 10.0 mm, is to be subjected to a
tensile load of 24,500 N.
(a) Calculate the stress of the cylindrical rod.
(b) Compare with data given in Table Q1 which are the likely materials for the
cylindrical rod if it does not experience plastic deformation? Justify.
(c) What is the likely material if the elongation is less than 0.9 materials? Justify.
Table Q1 Modulus of Elasticity, Yield Strength and Tensile Strength
Material
Modulus of
Yield
Tensile
Strength
Strength
Elasticity
(GPa)
(MPa)
(MPa)
Aluminum
70
255
420
alloy
Brass alloy
100
345
420
Copper
110
250
290
Steel alloy
207
450
550
Transcribed Image Text:Table Q1 consists of 4 (four) materials with their mechanical properties. The length of a cylindrical rod 380 mm long, having a diameter of 10.0 mm, is to be subjected to a tensile load of 24,500 N. (a) Calculate the stress of the cylindrical rod. (b) Compare with data given in Table Q1 which are the likely materials for the cylindrical rod if it does not experience plastic deformation? Justify. (c) What is the likely material if the elongation is less than 0.9 materials? Justify. Table Q1 Modulus of Elasticity, Yield Strength and Tensile Strength Material Modulus of Yield Tensile Strength Strength Elasticity (GPa) (MPa) (MPa) Aluminum 70 255 420 alloy Brass alloy 100 345 420 Copper 110 250 290 Steel alloy 207 450 550
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