A cylindrical rod 100 mm long and having a diameter of 10.0 mm is to be deformed using a tensile load of 27,500 N. It must not experience either plastic deformation or a diameter reduction of more than 7.5×10³ mm. Of the materials listed as follows, which are possible candidates? Justify your choice(s). Material Modulus of Elasticity(GPa) Yield Strength (MPa) | Poisson's Ratio Aluminum alloy 70 200 0.33 Brass alloy 101 300 0.34 Steel alloy 207 400 0.30 Titanium alloy 107 650 0.34

Elements Of Electromagnetics
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A cylindrical rod 100 mm long and having a diameter of 10.0 mm is to be deformed using a tensile load of 27,500O N. It must not
experience either plastic deformation or a diameter reduction of more than 7.5x103 mm. Of the materials listed as follows, which
are possible candidates? Justify your choice(s).
Material
Modulus of Elasticity(GPa) Yield Strength (MPa) Poisson's Ratio
Aluminum alloy 70
200
0.33
Brass alloy
101
300
0.34
Steel alloy
207
400
0.30
Titanium alloy
107
650
0.34
Part 1
What is the stress in MPa in the cylindrical rod?
i
MPa
Transcribed Image Text:A cylindrical rod 100 mm long and having a diameter of 10.0 mm is to be deformed using a tensile load of 27,500O N. It must not experience either plastic deformation or a diameter reduction of more than 7.5x103 mm. Of the materials listed as follows, which are possible candidates? Justify your choice(s). Material Modulus of Elasticity(GPa) Yield Strength (MPa) Poisson's Ratio Aluminum alloy 70 200 0.33 Brass alloy 101 300 0.34 Steel alloy 207 400 0.30 Titanium alloy 107 650 0.34 Part 1 What is the stress in MPa in the cylindrical rod? i MPa
Part 2
Which materials would be acceptable for this design based upon the answer to Step One? (Select all materials that are
acceptable.)
O brass alloy
titanium alloy
steel alloy
O aluminum alloy
Transcribed Image Text:Part 2 Which materials would be acceptable for this design based upon the answer to Step One? (Select all materials that are acceptable.) O brass alloy titanium alloy steel alloy O aluminum alloy
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