Evolution of phase interface microstructure and its effects on stress rupture property of a 4th generation nickel-based single crystal superalloy after thermal exposure
Author:
Funder
National Science and Technology Major Project
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference45 articles.
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5. Microstructural degradation after thermal exposure of a Re-containing single crystal superalloy;Sun;Mater. Char.,2021
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1. Study on the mechanism of γ' phase rafting in a 4th generation nickel-based single crystal superalloy during thermal exposure at high temperatures;Journal of Alloys and Compounds;2024-04
2. Dependence of deformation mechanisms on micro-pores in the fourth-generation single crystal superalloy during out-of-phase thermal-mechanical fatigue;International Journal of Fatigue;2024-03
3. Controlling CuCrZr alloy properties and microstructure rapidly by pulsed electric treatment (PET);Journal of Materials Science;2024-03
4. Nanoscale L12 phase precipitation induced superb ambient and high temperature mechanical properties in Ni–Co–Cr–Al system high-entropy superalloys;Materials Science and Engineering: A;2023-12
5. Effect of Re/Ru on constituents distribution and creep performance of nickel-based single crystal alloys;Materials at High Temperatures;2023-08-14
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