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High-Temperature Deformability of a Fe-Cr-Mn-Ni Austenite Stainless Steel with High Nitrogen and High Carbon Contents

机译:具有高氮和高碳含量的Fe-Cr-Mn-Ni奥氏体不锈钢的高温可变形性

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摘要

High temperature deformability and fracture behavior of deformation-processed high nitrogen high carbon Fe-Cr-Mn-Ni stainless steel rods were studied. The effective fracture elongation increased rapidly from 1000 °C, and reached high values (>45%) at 1100–1200 °C, accompanied by strain softening and stress serrations, supporting periodic dynamic recrystallization (DRX). Dynamically recrystallized grains were observed close to the fracture surface, suggesting that active DRX worked until its fracture. Pre-deformation-annealing of Fe-Cr-Mn-Ni stainless steel rods at 1200 °C was found to deteriorate in deformability above 1000 °C, while it enhanced ductility below 950 °C. Pre-deformation annealing had a negative effect on the deformability above 1000 °C due to the reduction of driving forces for DRX, but it exhibited a beneficial effect on the ductility at lower temperatures because of the ease of slip in large-grained structures. The fracture surface at 1250 °C exhibited intergranular fractures due to partial melting at grain boundaries, supported by the thermodynamic calculation of the solidus temperature of Fe-Cr-Mn-Ni austenite stainless steel. In this study, effective fracture elongation, defined based on the assumption that the effective gage length decreases with straining, was found to be an accurate measure of hot deformability.
机译:研究了变形加工高氮高碳Fe-Cr-Mn-Ni不锈钢棒的高温可变形性和断裂行为。有效的骨折伸长率从1000℃的速度迅速增加,并且在1100-1200℃下达到高值(> 45%),伴随着应变软化和应力锯齿,支持周期性的动态再结晶(DRX)。将动态再结晶晶粒靠近裂缝表面观察,表明活性DRX在其骨折之前进行。在1200℃下的Fe-Cr-Mn-Ni不锈钢棒的预变形退火被发现在1000℃以上的可变形性劣化,同时它增强了950℃以下的延展性。由于DRX的驱动力降低,预变形退火对1000℃以上的可变形性具有负面影响,但由于大颗粒结构的易于滑动,它对较低温度的延展性表现出有益的影响。 1250℃下的断裂表面由于晶界的部分熔化而表现出晶间骨折,由Fe-Cr-Mn-Ni奥氏体不锈钢固定温度的热力学计算支持。在该研究中,发现有效的断裂伸长率,基于有效量长度与紧张减少的假设定义,发现是一种准确的热变形性的测量。

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  • 作者

    Byung Lee; Jae Song; Sun Hong;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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