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Microstructure Evolution and Tensile Properties of 304L Stainless Steel Subjected to Surface Mechanical Attrition Treatment

机译:进行表面机械磨损处理的304L不锈钢的组织演变和拉伸性能

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A gradient nanostructured layer (GNsL) was generated on the two sides of bulk sample in 304L stainless steel by means of the surface mechanical attrition treatment. The microstructure of the GNsL was characterized via TEM observation. The prominent microstructural features involve the intersection of multi-system twin operation, subdividing the original grains into blocks, a martensite transformation mainly occurring at the interface of the twins as well, and the randomly orientated nanocrystallites at the top of surface. After annealing at 750℃ for 10 min, recovery had occurred and the dislocation density was much reduced. The vast majority of the grains at the top surface were in the nanocrystalline/ultrafine range, with some recrystallization regions. The uniaxial tensile tests were performed to obtain the mechanical property of bulk samples with GNsL. The yield strength was about 2 times higher than that of the coarse-grained counterpart, but with a decrease in uniform elongation and elongation to failure as well. The relationship between the microstructure and mechanical property was discussed in detail.
机译:通过表面机械磨耗处理,在304L不锈钢的块状样品的两侧生成了梯度纳米结构层(GNsL)。 GNsL的微观结构通过TEM观察来表征。突出的微观结构特征涉及多系统孪晶操作的相交,将原始晶粒细分为块状,马氏体相变也主要发生在孪晶的界面上,以及在表面顶部的随机取向的纳米微晶。在750℃退火10分钟后,发生了恢复,位错密度大大降低。顶表面上的绝大多数晶粒都在纳米晶体/超细范围内,并且具有一些重结晶区域。进行单轴拉伸试验以获得具有GNsL的大块样品的机械性能。屈服强度比粗颗粒的屈服强度高约2倍,但均匀伸长率和断裂伸长率也降低。详细讨论了组织和力学性能之间的关系。

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