奥氏体
材料科学
马氏体
亚稳态
延展性(地球科学)
无扩散变换
韧性
微观结构
热稳定性
灰烬
热力学
冶金
等温过程
猝灭(荧光)
相(物质)
相图
化学
物理
荧光
蠕动
有机化学
量子力学
作者
Yong Li,D. San Martı́n,Jin-Liang Wang,Chenchong Wang,Wei Xu
标识
DOI:10.1016/j.jmst.2021.03.020
摘要
Abstract Metastable austenite plays a critical role in achieving improved combinations of high strength and high ductility/toughness in the design of advanced high-strength steels (AHSS). The thermal stability of metastable austenite determines the transformation characteristics of AHSS and thus primarily determines the microstructure evolution during complex processes, e.g., the quenching and partitioning process, to achieve the desirable microstructure. This study provides a review of the thermal stability of austenite and its influence on martensitic transformation from both experimental and theoretical modeling perspectives. From the experimental perspective, factors affecting the thermal stability are analyzed, the relative sensitivities are compared, and their corresponding mechanisms are discussed. From the theoretical modeling perspective, the most representative kinetic models that describe athermal and isothermal martensitic transformation are reviewed. The advantages, shortcomings, and applicability of each model are discussed. The systematic review of both experimental and theoretical aspects reveals critical factors in tailoring the stability of metastable austenite and, therefore, provides guidance for the design of advanced steels.
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