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Articles

Mechanism of embrittlement in tempered martensite

Pages 1025-1028 | Published online: 18 Jul 2013

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T. Y. Hsu (Xu Zuyao). (2008) Quenching–partitioning–tempering process for ultra-high strength steel. International Heat Treatment and Surface Engineering 2:2, pages 64-67.
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Articles from other publishers (5)

Yongqiang Zhang, Jianfeng Gu, Lizhan Han, Gang Shen & Chuanwei Li. (2021) Thermal decomposition characteristics of retained austenite and its influence on impact toughness of B-containing 9Cr1Mo1Co(FB2) steel during the two-step tempering. Journal of Materials Research and Technology 12, pages 2462-2475.
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B. B. Wu, H. Chen, C. J. Shang, K. Y. Xie & R. D. K. Misra. (2019) Effect of Tempering Mode on the Microstructure and Mechanical Properties of a Lean Alloy Martensitic Steel: Conventional Reheating Versus Induction Reheating. Journal of Materials Engineering and Performance 28:5, pages 2807-2815.
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Zhen Shun Li, Sheng Li Li, Xiang Hai Zhang & Ji Zhi Liu. (2014) Interaction Study of Carbide Precipitation and Impurity Segregation under Temper Embrittlement Conditions in a Coarse-Grained Heat-Affected Zone in Q690 Steel. Advanced Materials Research 1015, pages 189-193.
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T. Y. Hsu & Xuejun Jin. 2011. Advanced Steels. Advanced Steels 67 73 .
F.A. Darwish, L.C. Pereira, C. Gatts & M.L. Graça. (1991) On the tempered martensite embrittlement in AISI 4140 low alloy steel. Materials Science and Engineering: A 132, pages L5-L9.
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