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This section includes 8 Mcqs, each offering curated multiple-choice questions to sharpen your Mechanical Metallurgy knowledge and support exam preparation. Choose a topic below to get started.
1. |
What will be interparticle spacing between the precipitate particles of radius r=2 micron. The volume fraction of particles in the matrix is 10%? |
A. | 10 Micron |
B. | 20 Micron |
C. | 24 Micron |
D. | 4 Micron |
Answer» D. 4 Micron | |
2. |
The over aging of alloy ______________ |
A. | increase the strength of the material |
B. | decrease strength of the material |
C. | increase the life of the component |
D. | decrease the size of the precipitate |
Answer» C. increase the life of the component | |
3. |
A precipitate particle in matrix provide strength to the material if the particle and matrix interface is considered. Which interface will provide maximum strength? |
A. | Coherent interface |
B. | Semi-coherent |
C. | Incoherent |
D. | Hardness does not depend up coherency |
Answer» C. Incoherent | |
4. |
The chemical composition of is _______ |
A. | CuAl<sub>3</sub> |
B. | Cu |
C. | CuAl |
D. | CuAl<sub>2</sub> |
Answer» E. | |
5. |
The most superior hardening technique for high temperature application is ___________ |
A. | precipitation hardening |
B. | dispersion strengthening |
C. | cold working |
D. | thermomechanical treatment |
Answer» C. cold working | |
6. |
The coherency between the parent phase and particle is much better in precipitation-hardened alloys compared to dispersion hardened alloys. |
A. | True |
B. | False |
Answer» B. False | |
7. |
The solubility of second phase particles in dispersion hardened system is _____________ compared to precipitation-hardened system. |
A. | higher |
B. | lower |
C. | equal to |
D. | no relation |
Answer» C. equal to | |
8. |
In precipitation hardening, the second phase must be soluble at a higher temperature and solubility ____________ with decreasing temperature. |
A. | increases |
B. | decreases |
C. | remains constant |
D. | does not follow define the path |
Answer» C. remains constant | |