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Effect of Cyclic Thermal Process on Ultrafine Grain Formation in AISI 304L Austenitic Stainless Steel

机译:循环热处理对AISI 304L奥氏体不锈钢超细晶粒形成的影响

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摘要

As-received hot-rolled commercial grade AISI 304L austenitic stainless steel plates were solution treated at 1060 °C to achieve chemical homogeneity. Microstructural characterization of the solution-treated material revealed polygonal grains of about 85-μm size along with annealing twins. The solution-treated plates were heavily cold rolled to about 90 pct of reduction in thickness. Cold-rolled specimens were then subjected to thermal cycles at various temperatures between 750 °C and 925 °C. X-ray diffraction showed about 24.2 pct of strain-induced martensite formation due to cold rolling of austenitic stainless steel. Strain-induced martensite formed during cold rolling reverted to austenite by the cyclic thermal process. The microstructural study by transmission electron microscope of the material after the cyclic thermal process showed formation of nanostructure or ultrafine grain austenite. The tensile testing of the ultrafine-grained austenitic stainless steel showed a yield strength 4 to 6 times higher in comparison to its coarse-grained counterpart. However, it demonstrated very poor ductility due to inadequate strain hardenability. The poor strain hardenability was correlated with the formation of strain-induced martensite in this steel grade.
机译:将收到的热轧工业级AISI 304L奥氏体不锈钢板在1060°C下固溶处理,以实现化学均质。固溶处理材料的微观结构表征显示出约85μm大小的多边形晶粒以及退火孪晶。将溶液处理过的板大量冷轧至厚度减少约90 pct。然后将冷轧试样在750°C至925°C之间的不同温度下进行热循环。 X射线衍射显示由于奥氏体不锈钢的冷轧,约24.2 pct的应变诱发马氏体形成。冷轧过程中形成的应变诱发马氏体通过循环热过程转变为奥氏体。循环热过程后通过透射电子显微镜对材料进行的显微组织研究表明,形成了纳米结构或超细晶粒奥氏体。超细晶粒奥氏体不锈钢的拉伸试验表明其屈服强度比其粗晶粒奥氏体不锈钢高4至6倍。但是,由于应变淬透性不足,因此延展性非常差。该钢种中较差的应变淬透性与应变诱发马氏体的形成有关。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第13期|3226-3234|共9页
  • 作者单位

    Materials Science and Technology Division National Metallurgical Laboratory Jamshedpur India;

    Materials Science and Technology Division National Metallurgical Laboratory Jamshedpur India;

    Materials Science and Technology Division National Metallurgical Laboratory Jamshedpur India;

    Materials Science and Technology Division National Metallurgical Laboratory Jamshedpur India;

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