The following results were obtained from many experiments to estimate the cooling curves for different alloys of Bismuth (Bi) and Antimony(Sb) 56% 0 20 40 60 80 100 550 600 631 First arrest point("C) 271 400 490 Second arrest poin(C) 271 285 320 370 450 631 Use the data to construct phase diagram for Bi-Sb alloying system, label all phases and temperatures, and answer the following: ) Describe the solidification process of the 50% Sb alloy from 600 "C to room temperature. -) What is the mass fraction of the phases for this alloy at 420 °C? What is the composition of the phi 023

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The following results were obtained from many experiments to estimate the cooling curves for different alloys of
Bismuth (Bi) and Antimony(Sb)
56%
100
0
20 40 60 80
First arrest point(C) 271 400 490 550 600
Second arrest point(C) 271 285 320 370 450 631
631
Use the data to construct phase diagram for Bi-Sb alloying system, label all phases and temperatures, and answer
the following:
a) Describe the solidification process of the 50% Sb alloy from 600 "C to room temperature.
b) What is the mass fraction of the phases for this alloy at 420 °C?
c) What is the composition of the phases in (b)?
Transcribed Image Text:The following results were obtained from many experiments to estimate the cooling curves for different alloys of Bismuth (Bi) and Antimony(Sb) 56% 100 0 20 40 60 80 First arrest point(C) 271 400 490 550 600 Second arrest point(C) 271 285 320 370 450 631 631 Use the data to construct phase diagram for Bi-Sb alloying system, label all phases and temperatures, and answer the following: a) Describe the solidification process of the 50% Sb alloy from 600 "C to room temperature. b) What is the mass fraction of the phases for this alloy at 420 °C? c) What is the composition of the phases in (b)?
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