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Nanostructure Formation in Austenitic Stainless Steel

机译:奥氏体不锈钢的纳米结构形成

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Samples of 316LVM stainless steels were hydrostatically extruded in a multi-step process to a total true strain of 1,84 and subsequently annealed at different temperatures. The structural changes occurring as a result of HE and annealing were observed using a transmission electron microscope. The microhardness of the samples was measured using a load of 200g. The results show that hydrostatic extrusion results in a uniform microstructure characterized by a high density of nano-twins. Subsequent annealing at 600°C produces a partial transformation to a nano structure of average grain size 54 nm. At an annealing temperature of 700°C a fully-recrystallized uniform microstructure consisting of 68 nm diameter nano-grains was formed. It should be noted that 700°C is much lower than that required to recrystallize a micro-grained alloy of the same composition. The microstructural changes which occurred during annealing have a significant effect on the mechanical properties. The microhardness after HE increased following annealing at 500°C. However, annealing at 800°C resulted in a drop in microhardness, indicating the occurrence of grain growth.
机译:316LVM不锈钢样品经过多步骤静液压挤压,总真实应变为1,84,然后在不同温度下退火。使用透射电子显微镜观察到由于HE和退火而发生的结构变化。使用200g的负载测量样品的显微硬度。结果表明,静液压挤出导致均匀的微观结构,其特征在于高密度的纳米孪晶。随后在600℃下退火产生部分转变为平均粒径为54nm的纳米结构。在700℃的退火温度下,形成了由68nm直径的纳米颗粒组成的完全重结晶的均匀微观结构。应当指出,700℃远低于使相同组成的微晶合金再结晶所需的温度。退火过程中发生的微观结构变化对机械性能有重要影响。在500°C退火后,HE后的显微硬度增加。然而,在800℃下退火导致显微硬度下降,表明发生晶粒生长。

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