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INFLUENCE OF CRYOGENIC TREATMENT ON MICROSTRUCTURE CHARACTERISTICS AND MECHANICAL PROPERTIES OF AISI D2 TOOL STEEL

机译:低温处理对AISI D2工具钢微观结构特性和力学性能的影响

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Significant improvement in mechanical properties of tool steels may be obtained by cryogenic heat treatment at temperatures as low as 77K. However, the selection of the cryogenic temperature can significantly influence the final properties. In the present study, AISI D2 tool steel was cryogenically treated at 183K and 77K. Microstructural studies using scanning electron microscope (SEM) and image analyzing process revealed higher volume fraction of fine secondary carbides for both cryogenically treated alloys in comparison with conventionally treated one. Higher volume fraction of fine secondary carbides was observed when the cryogenic treatment temperature was reduced to 77K. Also, the volume fraction of large carbides has been reduced after both cryogenic treatments. Tensile test results revealed simultaneous enhancement of ultimate tensile strength, higher elastic modulus (E) and increased ductility for cryogenically treated alloy at 183K. More improvement was observed when the cryogenic temperature reduced to 77K.
机译:工具钢的力学性能的显着改善可以通过低至77K的温度低温热处理获得。然而,低温温度的选择可以显着影响最终性质。在本研究中,AISI D2工具钢在183K和77K处低温处理。使用扫描电子显微镜(SEM)和图像分析过程的微观结构研究揭示了与常规处理的常规处理的低低温处理合金的细次级碳化物的较高体积分数。当低温处理温度降至77K时,观察到较高体积的细副碳化物。而且,在低温处理后,大碳化物的体积分数已经降低。拉伸试验结果揭示了183K在183K时同时提高最终拉伸强度,更高弹性模量(e)和随着低温处理的合金的增加的延展性。当低温温度降至77K时,观察到更多的改进。

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