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The sub-zero Celsius treatment of precipitation hardenable semi-austenitic stainless steel

机译:零下摄氏度处理沉淀硬化半奥氏体不锈钢

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摘要

A precipitation hardenable semi-austenitic stainless steel AISI 632 grade was austenitized according to industrial specifications and thereafter subjected to isothermal treatment at sub-zero Celsius temperatures. During treatment, austenite transformed to martensite. The isothermal austenite-to-martensite transformation was monitored in situ by magnetometry and data was used to sketch a TTT diagram for transformation. As an alternative treatment, after austenitization the material was immersed in boiling nitrogen and up-quenched to room temperature by immersion in water prior to be subjected to isothermal treatment. Magnetometry showed that the additional thermal step in boiling nitrogen yields a minor increment of the fraction of martensite, but has a noteworthy accelerating effect on the transformation kinetics, which more pronounced when the isothermal holding is performed at a higher temperature. Data is interpreted in terms of instantaneous nucleation of martensite during cooling followed by time dependent growth during isothermal holding.
机译:根据工业规范对可沉淀硬化的半奥氏体不锈钢AISI 632级进行奥氏体化,然后在低于零摄氏度的温度下进行等温处理。在处理过程中,奥氏体转变为马氏体。等温奥氏体到马氏体的转变是通过磁力计原位监测的,数据被用来绘制TTT图进行转变。作为替代处理,在奥氏体化之后,将材料浸入沸腾的氮气中,然后通过浸入水中将其骤冷至室温,然后再进行等温处理。磁力计表明,沸腾氮中的附加热步骤会产生马氏体分数的小幅增加,但对相变动力学具有显着的加速作用,当在较高温度下进行等温保温时,这种影响更为明显。数据根据冷却过程中马氏体的瞬时成核,然后根据等温保温过程中的时间依赖性生长来解释。

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