Materials Science and Engineering¶
Callister, W. D., & Rethwisch, D. G. (2018). Materials Science and Engineering: An Introduction. Wiley.
Cited by¶
3 citations across 3 artifacts.
Each citation links to the sentence it supports in the citing article.
Primes¶
- Annealing
- Metallurgy and materials science (the canonical case): a cold-worked metal full of dislocations and internal stress is heated above its recrystallisation temperature and cooled slowly, letting grain boundaries migrate and stresses relax into a softer, tougher, defect-reduced material.
This sourceStandard reference for the metallurgical annealing process — heating cold-worked metal above its recrystallization temperature and slow cooling to relieve internal stress and reduce dislocation density.
- Metallurgy and materials science (the canonical case): a cold-worked metal full of dislocations and internal stress is heated above its recrystallisation temperature and cooled slowly, letting grain boundaries migrate and stresses relax into a softer, tougher, defect-reduced material.
- Defect
- And the defect-engineering leverage is the counter-intuitive payoff: you strengthen a metal not by purifying the lattice but by adding more obstacles to dislocation glide (work-hardening, grain refinement, precipitates), which pin the dislocations and raise the stress needed to move them.
This sourceTreats strengthening mechanisms — work-hardening, grain refinement, precipitation — as introducing obstacles that pin dislocation motion, i.e., defect engineering that raises strength.
- And the defect-engineering leverage is the counter-intuitive payoff: you strengthen a metal not by purifying the lattice but by adding more obstacles to dislocation glide (work-hardening, grain refinement, precipitates), which pin the dislocations and raise the stress needed to move them.
- Edge Effect
- Materials science — grain boundaries are sites of preferential corrosion, diffusion, and fracture; surface states in semiconductors have band structure distinct from the bulk.
This sourceDescribes grain boundaries as sites of preferential corrosion, diffusion, and fracture, and surface states distinct from the bulk.
- Materials science — grain boundaries are sites of preferential corrosion, diffusion, and fracture; surface states in semiconductors have band structure distinct from the bulk.
Verification¶
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Links previously used in the corpus¶
Before the registry existed this work was also linked 2 other ways.
- https://books.google.com/books/about/Materials_Science_and_Engineering.html?id=ZdVSDwAAQBAJ ×1
- https://www.worldcat.org/oclc/992004222 ×1
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