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Tailoring the microstructure and mechanical properties of AISI 316L austenitic stainless steel via cold rolling and reversion annealing

机译:通过冷轧和逆转退换来剪裁AISI 316L奥氏体不锈钢的微观结构和力学性能

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摘要

Tensile properties of cold rolled AISI 316L stainless steel after full reversion of martensite to austenite, recrystallization of retained austenite, and grain growth were studied at 850, 950, and 1050 degrees C. At higher temperatures, it was found that the kinetics of the reversion and recrystallization processes enhance but coarser grain sizes will be obtained at the end of recrystallization. At 1050 degrees C, appreciable grain growth was observed after the completion of the recrystallization process, which was not the case for a low temperature of 850 degrees C. At the stage of full recrystallization, by decreasing the annealing temperature, the yield stress (YS) and the ultimate tensile strength (UTS) values increased and total elongation decreased, which was related to the grain size strengthening by the Hall-Petch law. However, the Hall-Petch slope for the UTS was found to be much smaller than that of YS, which reveals that YS has greater grain size dependency. The latter was ascribed to the improved work-hardening behavior and enhanced transformation-induced plasticity (TRIP) effect by coarsening of grain size. To obtain high-strength and ductile steel with tensile toughness higher than 300 MJ/m(3) and yield ratio of similar to 0.5, the average grain size of similar to 3 mu m was found to be desirable.
机译:冷轧AISI 316L不锈钢的拉伸性能在马氏体到奥氏体后,在850,950和1050℃下研究了保留奥氏体的重结晶和晶粒生长。在较高温度下,发现逆转的动力学并重结晶方法增强,但在重结晶结束时将获得粗晶粒尺寸。在1050℃下,在结晶过程完成后观察到可明显的晶粒生长,这不是850℃的低温的情况。在全重结晶的阶段,通过降低退火温度,屈服应力(Ys )和最终的拉伸强度(UTS)值增加和总伸长率下降,这与大厅 - Petch法的晶粒尺寸有关。然而,发现UTS的Hall-Petch斜率远小于ys的斜率,这揭示了Ys具有更大的晶粒尺寸依赖性。后者通过粗糙化晶粒粗糙赋予改善的工作硬化行为和增强的转化诱导的可塑性(跳闸)效应。为了获得高于300mJ / m(3)的拉伸韧性的高强度和韧性钢,屈服比与0.5相似,发现相似于3μm的平均晶粒尺寸是理想的。

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