produce a M=1000 h of S, = 20,000 000 psi, and a min

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Design of a Melting Procedure for a
Casting
You need to produce a M=1000 kg Cu-Ni alloy having minimum
yield strength of Sy = 20,000 psi, a minimum tensile strength
of Sut = 60, 000 psi, and a minimum % elongation of 20%.
%3D
You have in your inventory
a Cu-20% Ni alloy and pure
1500
1400
1300
1200
nickel.
1100
1000
Design a method for
producing castings having
the required properties.
80,000
80
Tensile strength
Cu strengthens Ni
60,000
60
40,000
40
Ni strengthens Cu
% Elongation
20.000
20
Yield strength
20
40
80
Weight percent nickel
60
Ni
Strength (psi)
Temperature ('C)
&Elongation
Transcribed Image Text:Design of a Melting Procedure for a Casting You need to produce a M=1000 kg Cu-Ni alloy having minimum yield strength of Sy = 20,000 psi, a minimum tensile strength of Sut = 60, 000 psi, and a minimum % elongation of 20%. %3D You have in your inventory a Cu-20% Ni alloy and pure 1500 1400 1300 1200 nickel. 1100 1000 Design a method for producing castings having the required properties. 80,000 80 Tensile strength Cu strengthens Ni 60,000 60 40,000 40 Ni strengthens Cu % Elongation 20.000 20 Yield strength 20 40 80 Weight percent nickel 60 Ni Strength (psi) Temperature ('C) &Elongation
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