研究奥氏体化温度和冷却速度对 SAE 9254 弹簧钢马氏体转变动力学的影响

Silvano Leal dos Santos , Felipe Ribeiro Toloczko , Davinson Mariano da Silva , Sydney Ferreira Santos
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引用次数: 0

摘要

研究了奥氏体化温度(850 至 1050 °C)和冷却速率对相变的影响,尤其是在采用两步冷却方案时。结果表明,热处理参数对马氏体转变动力学和贝氏体转变的可能发生起着重要作用。结果表明,由小奥氏体晶粒组成的微观结构和热马氏体转变前贝氏体的形成极大地促进了马氏体转变速率的提高。采用 Koistinen-Marburger 模型分析了非等温动力学,结果表明,由于奥氏体晶粒尺寸增大以及微观结构中贝氏体的存在,KM 和 k 参数都有所增加。本文的结果表明,热处理参数的优化对于正确控制合金微观结构中出现的相以及马氏体的体积分数至关重要。因此,精确控制热处理过程是提高汽车行业广泛使用的 SAE 9254 弹簧钢性能的有效方法。
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Investigating the role of the austenitizing temperature and cooling rate on the martensitic transformation kinetics in a SAE 9254 spring steel

The effect of austenitizing temperature (ranging from 850 to 1050 °C) and cooling rates on the phase transformations were investigated, particularly when a two cooling steps protocol was adopted. It was possible to observe that the heat treatment parameters play a major role on the martensitic transformation kinetics a possible occurrence of bainitic transformation. The results indicate that a microstructure composed by small austenite grains and the formation of bainite prior the athermal martensitic transformation significantly contribute to increase the martensitic transformation rate. The Koistinen-Marburger model was employed to analyze the non-isothermal kinetics, revealing an increase in the KM and k parameters due to an increase in austenite grain size and the presence of bainite in the microstructure. The results herein demonstrate that the optimization of the heat treatment parameters is crucial to the proper control of the phases that will be present in the microstructure of the alloy, as well as the volume fraction of martensite. Thus, the accurate control of the heat treatment process is a promising approach to enhance the properties of SAE 9254 spring steel, which finds extensive use in the automotive industry.

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