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Studies of the Effect of Heat Treatment on Hardness and Creep Behavior of a Modified 9Cr-1Mo Steel

机译:热处理对9Cr-1Mo改性钢硬度和蠕变行为的影响研究

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In this study, heat treatment was carried out on modified 9Cr-lMo steel specimens to determine the microstructural evolution for various normalizing temperature/time and tempering temperature/time combinations. Normalization was carried out in the temperature range of 1020-1100°C and time range of 2-8 hours, while tempering was performed in the temperature range of 690-790°C and time range of 2-20 hours. Optical microscopy was then used to visualize and chronicle the microstructural characteristics at varying levels of heat treatment. Vickers micro-hardness measurements were performed on each sample to obtain hardness values as a Junction of normalizing and tempering temperature/time. Creep tests have also been performed on as-received and welded specimens of modified 9Cr-lMo steel, in the temperature range of 500-700°C and stress range of 50-200 MPa. Microstructural analysis was carried out on the specimens before and after creep deformation using both scanning and transmission electron microscopy. The microstructural evolution during the heat treatment and creep tests provided useful information to understand and characterize the creep deformation mechanisms of modified 9Cr-lMo steel.
机译:在这项研究中,对改性的9Cr-1Mo钢试样进行了热处理,以确定各种正火温度/时间和回火温度/时间组合的显微组织演变。在1020-1100℃的温度范围和2-8小时的时间范围内进行归一化,而在690-790℃的温度范围和2-20小时的时间范围内进行回火。然后使用光学显微镜观察和记录不同热处理水平下的微观结构特征。对每个样品进行维氏显微硬度测量,以获得硬度值作为正火和回火温度/时间的交界处。还对变形后的9Cr-1Mo钢的接收和焊接试样进行了蠕变测试,其温度范围为500-700°C,应力范围为50-200 MPa。使用扫描和透射电子显微镜对蠕变变形之前和之后的样品进行了微观结构分析。热处理和蠕变测试过程中的微观结构演变为理解和表征改性9Cr-1Mo钢的蠕变变形机理提供了有用的信息。

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