Effect of Cooling Rates on Solidification Microstructures and Tensile Property of a Novel Wrought Superalloy
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s11595-023-2775-4.pdf
Reference30 articles.
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3. KONTIS P, CHAUVET E, PENG Z, et al. Atomic-scale Grain Boundary Engineering to Overcome Hot-cracking in Additively-manufactured Superalloys[J]. Acta Materialia, 2019, 177: 209–221
4. LI P, ZHOU B, ZHOU Y, et al. Effect of Orientation on Low-cycle fatigue Behaviour of Single Crystal Superalloys at 900 °C [J]. Materials Science and Technology, 2019, 35(7): 1–8
5. LI Xinxu, Jia Chonglin, Zhang Yong, et al. Cracking Mechanism in As-cast GH4151 Superalloy Ingot with High γ′ Phase Content[J]. Transactions of Nonferrous Metals Society of China, 2020, 30(10): 2 697–2 708
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1. Remelting Model and Cracking Criterion for Vacuum Arc Remelting of Superalloys: Taking IN718 as an Example;Metallurgical and Materials Transactions B;2024-08-02
2. Outstanding high-temperature strength-ductility combination in inconel 718 alloy by warm rolling and simplified aging treatment;Intermetallics;2023-12
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