(a) In the Ti–Al phase diagram. Figure P8.42, what phases ate available at an overall alloy composition of Ti-63 wt% A1 at temperatures below 1300°C? (b) What is the significance of the vertical line at that alloy composition? (c) Verify the formula next to the vertical line, (d) Compare the melt temperature of this compound to that of Ti and Al. What is your conclusion?
(a)
In the Ti–Al phase diagram, Figure P8.42, what phases are available at an overall alloy composition of Ti–63 wt% Al at temperatures below 1300°C.
Explanation of Solution
Refer Figure P8.42, "Ti–Al phase diagram", is presenting the formation or development of an intermetallic compound between aluminum and titanium as Al–63wt% Al indicates some substitution between them.
The available phase between aluminum and titanium is
(b)
What is the significance of the vertical line at that alloy composition.
Explanation of Solution
The vertical line signifies the formation or development of an intermetallic compound as there are two elements of metals and the intermetallic compound is stoichiometric.
(c)
Verify the formula next to the vertical line.
Answer to Problem 66SEP
The formula is
Explanation of Solution
Express the number of moles in titanium.
Here, number of moles in titanium is
Express the number of moles in aluminum.
Here, number of moles in aluminum is
Express mole percentage of aluminum.
Express mole percentage of titanium.
Conclusion:
To verfify the formula for the compound, let the mass of compound be
Write the atomic mass of titanium and aluminum as below:
Substitute
Substitute
Substitute
Substitute
For each titanium atom, there are 3 atoms of aluminum, hence the formula is
(d)
Compare the melt temperature of this compound to that of Ti and Al. What is your conclusion.
Explanation of Solution
The melting temperature of
Hence, titanium aluminide can substitute all aluminum in applications that require high temperature requirement with appreciably higher strength.
Want to see more full solutions like this?
Chapter 8 Solutions
Foundations of Materials Science and Engineering
- A lead-tin (Pb-Sn) alloy of composition 30 wt % Sn and 70 wt % Pb is slowly heated from a temperature of 140 OC. Refer to the phase diagram provided in Figure 1 and answer the following. (i) At what temperature does the first liquid phase form? (ii) What is the composition of this liquid phase? (iii) At what temperature does complete melting of the alloy occur? (iv) What is the composition of the last solid remaining prior to complete melting?arrow_forwardIn the binary phase diagram for the Cu-Ni system in the Figure provided: 1. Draw the microstructures for each point for the alloy upon cooling (A-E) and label ALL phases! 2. What are the compositions (C's) of EVERY phase and the relative phase amounts (W's) for each microstructure A-E? Show all work! T(°C) (liquid) L 20 (a, solid) 30 A BUD E 40 Co OOOOO w 10 50 wt% Ni CL= Ca= CL= Ca= CL= Ca= C₁= Cu= C₁= Ca= WL= Wa= WL= Wα= W₁= W= W₁= Wa= W₁= Wu= A B Earrow_forwardFor 40 wt% Sn – 60 wt% Pb alloy at 150 oC (at point B) as shown in Figure, i. State the name of phase(s) present. ii. Calculate the composition(s) of the phase(s) present. 600 300 Liquid 500 a+L 200 400 300 100 200 100 20 60 100 (Pb) (Sn) Composition (wt % Sn) Temperature ("C) Temperature ("F)arrow_forward
- 5. For 40 wt% Sn – 60 wt% Pb alloy at 150 oC (at point B) as shown in Figure, ii. Calculate the composition(s) of the phase(s) present. iii. Calculate the amount of each phase present in terms of mass fraction. 600 300 Liquid 500 a+L 200 400 300 100 200 100 20 60 80 100 (Pb) (Sn) Composition (wt% Sn) Temperature ("C) Temperat ure ("F)arrow_forwardAccording to the following graph, two samples of 1080 steel are cooled from the eutectoid temperature, one at a cooling rate of 250°C/s and the other at a cooling rate of 7.27x10-8 °C/s. Specify the phases obtained and explain their formation from thermodynamic and kinetic perspectives. Also, briefly describe their formation. Draw the microstructure of the phases obtained. Sıcaklık (C) 800 700 600 500 400 300 200 100 0 10 1 T M(başlama) M(% 50) M(% 90) 10 M+O -Otektoid Sıcaklık 10² Zaman (s) % 50 10³ 104 105arrow_forwardI need the answer as soon as possiblearrow_forward
- In the binary phase diagram for the Cu-Ni system in the Figure provided: 1. Draw the microstructures for each point for the alloy upon cooling (A-E) and label ALL phases! 2. What are the compositions (C's) of EVERY phase and the relative phase amounts (W's) for each microstructure A-E? Show all work! TOCL (liquid) 20 (a, solid) 30 A BCD E E 40 OOOOO 50 wt% Ni www CL= Ca= CL= Ca= CL= Ca= CL= Cu= C₁= Ca= W₁= Wa= WL= WQ= W₁= Wa= W₁= Wa= W₁= Wa= A B C D Earrow_forwardDraw thermal equilibrium diagram for the binary alloy system (Si-Au), from the following data:- a- Silicon melts at 1414 °C, and gold melts at 1064 °C. b-Eutectic is formed at 360°C containing 20 Wt% Si -80 Wt% Au, and identify all phases are present in the diagram c-Determine the amount of each phase for the alloy which consist of 60 Wt% Si- 40Wt % Au at 1200 °C and 800 °C ,then determine the amount of eutectic at 200 °C?arrow_forwardHOME WORK For a Pb-30% Sn alloy, determine the phases 400 present, their amounts, and their compositions at 300°C, 200°C, and 30°C 300 Liquidus Solidus Liquidus L+B a+L Solidu 200 19 183 61.9 97.5 Eutectic Solvus Solvus- (E) 100 a+B a+E E+B Pb 20 40 60 80 Sn Metallurgy ( Bassim Shaheen Bachy. Weight percent tin Temperature ("C)arrow_forward
- Calculate the amounts and compositions of phases at 726oC in a Fe-0.6% C alloy cooled under equilibrium conditions. Disregard the amounts of proeutectoid phases. A. 77.3% α, 22.7% Fe3C; C in α = 6.7% and C in Fe3C = 0.02% B. 91.3% α, 8.7% Fe3C; C in α = 0.02% and C in Fe3C = 6.7% C. 77.3% α, 22.7% Fe3C; C in α = 0.02% and C in Fe3C = 6.7% D. 91.3% α, 8.7% Fe3C; C in α = 0.05% and C in Fe3C = 8.4% E. None of the mentionedarrow_forwardFor an alloy containing 40% p Sn - 60% p Pb at a temperature of 150°C: (a) Which phases are gifts? (b) What is (are) the composition(s) of this (s) phase(s)? (c) Calculate as quantities relatives of each phase present in terms of the mass fraction. (image attached below)arrow_forward2. The microstructural design of Fe – C alloys has led to the development of a vast range of steels for structural materials applications. The phase diagram provides a means for producing specific microstructure. Using the Fe – C phase diagram, answer the following questions: (a) If a liquid mixture of Fe – 3.0 wt.% C is slowly cooled from 1600 °C to 1200 °C, indicate the phase(s) that are present at 1200 °C and the composition(s) of the phases(s). Sketch the final microstructure that will be obtained. (b) Describe the sequence of all phase transformation that occur if a Fe – 1.5 wt.% C is slowly cooled from 1600 °C to 400 °C. Use diagram to describe the microstructures for each phase transformation. TOF Iron -carbon phase diagram TỘC 2802°F (1539°C) 2912 1600 2719°F (1493°C) L 1400 2552°F (1400°C) 0.16% Y+L L+Fe3C 2192 4.3% 1200 2097°F (1147°C) 2.06% ACM 1832 Аз 1000 Austeņite + cementite+ledeburite Cementite + ledeburite 1670°F (910°C) 1472 800 1333°F(723°C) 0.025% 1112 p.83% A2=…arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY