首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Mechanical Behavior and Microstructural Change of a High Nitrogen CrMn Austenitic Stainless Steel during Hot Deformation
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Mechanical Behavior and Microstructural Change of a High Nitrogen CrMn Austenitic Stainless Steel during Hot Deformation

机译:高氮CrMn奥氏体不锈钢热变形过程中的力学行为和显微组织变化

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摘要

The hot deformation behavior of a high nitrogen CrMn austenitic stainless steel in the temperature range 1173 to 1473 K (900 to 1200 °C) and strain rate range 0.01 to 10 s~(-1) was investigated using optical microscopy, stress-strain curve analysis, processing maps, etc. The results showed that the work hardening rate and flow stress decreased with increasing defor-mation temperature and decreasing strain rate in 18Mnl8Cr0.5N steel. The dynamic recrys-tallization (DRX) grain size decreased with increasing Z value; however, deformation heating has an effect on the DRX grain size under high strain rate conditions. In the processing maps, flow instability was observed at higher strain rate regions (1 to 10 s~(-1)) and manifested as flow localization near the grain boundary. Early in the deformation, the flow instability region was at higher temperatures, and then the extent of this unstable region decreased with increasing strain and was restricted to lower temperatures. The hot deformation equation as well as the quan-titative dependence of the critical stress for DRX and DRX grain size on Z value was obtained.
机译:利用光学显微镜,应力-应变曲线研究了高氮CrMn奥氏体不锈钢在1173至1473 K(900至1200°C)温度范围和应变率范围0.01至10 s〜(-1)下的热变形行为。结果表明,随着变形温度的升高和应变率的降低,工作硬化率和流动应力均降低。动态重结晶(DRX)晶粒尺寸随着Z值的增加而减小;然而,在高应变速率条件下,变形加热对DRX晶粒尺寸有影响。在加工图中,在较高应变率区域(1至10 s〜(-1))处观察到流动不稳定性,并表现为靠近晶界的流动局部化。在变形的早期,流动不稳定性区域处于较高的温度下,然后该不稳定区域的程度随应变的增加而减小,并被限制在较低的温度下。得到了热变形方程以及DRX和DRX晶粒尺寸对Z值的临界应力的定量关系。

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