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Effect of Heat Treatment Conditions on Retained Austenite and Corrosion Resistance of the X190CrVMo20-4-1 Stainless Steel

机译:热处理条件对X190Crvmo20-4-1不锈钢保留奥氏体和耐腐蚀的影响

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摘要

In the present work the microstructural characterization of the powder-metallurgy X190CrVMo20-4-1 has been performed and correlated with its corrosion properties. The martensitic stainless steel was hardened at different austenitizing and tempering temperatures. Microstructural analyses were carried out using Scanning Electron Microscopy (SEM-EDS) to define the carbide distribution in the steel matrix. Carbides morphology and retained austenite content were evaluated and correlated to the corrosion behaviour of the different heat-treated steels, investigated by means of electrochemical tests. The results show the presence of M23C6 and M7C3 Cr-V based carbides homogenously dispersed in the matrix in annealed and quenching-and-tempering conditions. The carbides dissolution was evaluated by image analysis in every different heat treatment condition. When low tempering temperature was applied, an increasing in retained austenite content was defined by high austenitizing temperature and elevated carbides solubilization. At high tempering temperature, retained austenite content was not up to 5% nor affected by austenitizing temperature. Contrary to the expectations, HRC hardness was not influenced by the heat treatment conditions and retained austenite content. Corrosion resistance of the different heat-treated samples was found to be mainly influenced by retained austenite volume fraction and the tempering temperature. In particular, high austenitizing temperature and low tempering temperatures allowed the best corrosion resistance among the different heat treatment parameters investigated. The results obtained in the experimentation can provide support to the heat treatment optimization of the steel, widely used in tool and mould applications.Graphical Abstract
机译:在本工作中,粉末冶金X190CRVMO20-4-1的微观结构表征已经进行并与其腐蚀性能相关。在不同的奥氏体化和回火温度下硬化马氏体不锈钢。使用扫描电子显微镜(SEM-EDS)进行微观结构分析以在钢基质中定义碳化物分布。碳化物形态和保留奥氏体含量被评价和相关于通过电化学测试研究的不同热处理钢的腐蚀行为。结果表明存在M23C6和M7C3 CR-V基基碳化物在退火和淬火和回火条件下均匀分散在基质中。通过每种不同热处理条件的图像分析评价碳化物溶解。当施加低回火温度时,通过高奥氏体化温度和碳化物溶解的升高来限定保持奥氏体含量的增加。在高回火温度下,保留的奥氏体含量不高达5%,也不受奥氏体温度影响。与期望相反,HRC硬度不受热处理条件和保留奥氏体含量的影响。发现不同热处理样品的耐腐蚀性主要受保留奥氏体体积分数和回火温度的影响。特别地,高奥氏体化温度和低回火温度允许研究的不同热处理参数之间的最佳耐腐蚀性。实验中获得的结果可以为钢的热处理优化提供支持,广泛用于工具和模具应用。图摘要

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