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Microstructure and Mechanical Properties of 50SiMnNiNb Steel by a Novel Quenching-Partitioning-Austempering Heat Treatment 被引量:2
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作者 LI Hongyan JIN Xuejun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2009年第5期645-650,共6页
For the purpose of reducing weight of steel parts, save raw materials and keep or even improve safety standards, the development of advanced high strength steels is increasingly demanded in the automotive industry and... For the purpose of reducing weight of steel parts, save raw materials and keep or even improve safety standards, the development of advanced high strength steels is increasingly demanded in the automotive industry and engineering applications. We have proposed a novel heat treatment (quenching-partitioning-austempering treatment, Q-P-A) to obtain steel parts with high strength and good ductility. The Q-P-A process is intended to produce microstructure consisted of carbon-depleted martensite, carbon-enriched retained austenite and nanostructured bainite. Quenching(Q) treatment fabricates mixed microstructure of carbon-supersaturated martensite and certain amounts of untransformed austenite. Partitioning(P) thermal treatment accomplishes fully diffusing of carbon from the supersaturated martensite phase to the untransformed austenite phase and enriching the amount of carbon in untransformed austenite. Further low-temperature austempering(A) process induces incredible thin bainite from the carbon-enriched untransformed austenite. A study of the microstructure and mechanical properties of 50SiMnNiNb steel subjected to the novel Q-P-A treatment is presented. Microstructure is assessed by optical microscope(OM), field emission scanning electron microscope(FESEM) and transmission electron microscope(TEM), and the corresponding mechanical properties are measured. The experimental results indicate that attractive mechanical properties of steels during the Q-P-A process are attributed to the complex multi-phase structure. Slender plates of bainite with 20-40 nm thick are generated in the medium carbon steel. Meanwhile, with increasing of the volume fraction of nanostructured bainite, yield strength of steel parts is increased with little degradation of ultimate tensile strength. In this paper, a novel quenching-partitioning-austempering heat treatment is proposed, and the attractive mechanical properties of steels are obtained during the Q-P-A process. 展开更多
关键词 heat treatment quenching-partitioning-austempering martensite retained austenite nanostructured bainite
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纳米贝氏体钢残奥细化及其力学性能调控研究进展 被引量:1
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作者 尹朝朝 胡锋 +2 位作者 郑花 周雯 吴开明 《材料热处理学报》 EI CAS CSCD 北大核心 2021年第1期1-13,共13页
纳米贝氏体钢作为新型超高强度钢,因其具备良好的强塑性能匹配,吸引着广大专家学者研究其力学性能调控机制。本文介绍了纳米贝氏体钢中残留奥氏体的形态及其TRIP效应,概述了加速贝氏体转变的多种调控手段,如合金元素、等温贝氏体转变温... 纳米贝氏体钢作为新型超高强度钢,因其具备良好的强塑性能匹配,吸引着广大专家学者研究其力学性能调控机制。本文介绍了纳米贝氏体钢中残留奥氏体的形态及其TRIP效应,概述了加速贝氏体转变的多种调控手段,如合金元素、等温贝氏体转变温度、奥氏体化温度以及预马氏体相变等,及其对残留奥氏体的尺寸、形状和体积分数的影响;同时对多步转变和其他一些细化残留奥氏体尺寸的方法做了介绍,力争为高强度纳米贝氏体钢的研发提供理论支持。 展开更多
关键词 合金设计 热处理 多步相变 残留奥氏体 纳米贝氏体
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残留奥氏体对中碳双相钢冲击性能的影响 被引量:11
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作者 史园园 胡锋 《中国冶金》 CAS 2015年第1期21-25,共5页
采用不同的热处理工艺研究了残留奥氏体对中碳双相钢冲击韧性的影响。利用金相显微镜、扫描电镜、透射电镜和摆锤式冲击试验机,对不同试样的显微组织与冲击韧性进行观察、检测和分析。试验结果表明:中碳贝氏体钢的冲击性能显著高于Q/P... 采用不同的热处理工艺研究了残留奥氏体对中碳双相钢冲击韧性的影响。利用金相显微镜、扫描电镜、透射电镜和摆锤式冲击试验机,对不同试样的显微组织与冲击韧性进行观察、检测和分析。试验结果表明:中碳贝氏体钢的冲击性能显著高于Q/P马氏体钢(室温冲击功是57J对应15J,-40℃冲击功是33J对应9J),可能的原因是贝氏体钢中薄膜状残留奥氏体,对裂纹扩展的阻止效应更显著。 展开更多
关键词 等温贝氏体 Q/P马氏体 热处理工艺 残留奥氏体稳定性 冲击性能
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