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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microstructure characterisation of Fe-21Cr-15Ni-Nb-V non-magnetic austenitic stainless steel during hot deformation
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Microstructure characterisation of Fe-21Cr-15Ni-Nb-V non-magnetic austenitic stainless steel during hot deformation

机译:Fe-21Cr-15ni-Nb-V非磁性奥氏体不锈钢在热变形期间的微观结构特征

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摘要

Hot deformation behaviour of Fe-21Cr-15Ni-Nb-V stainless steel was investigated by isothermal compression in the temperature range of 950-1150 degrees C with a strain rate of 0.01-10 s(-1). The results showed that complete recrystallisation occurred beyond 1050 degrees C, resulting from the pinning effect of (Nb, V)(C, N). The nucleation of dynamic recrystallisation (DRX) was performed by the bulging, sub-grain swallowing and twinning mechanism. With increasing strain rate, new twinning was transformed into the Sigma 3 regeneration mechanism in the partial DRX region, while an opposite transformation was observed in the complete DRX region. in the partial recrystallisation region, grain rotation resulted in the formation of 110 orientation. In the complete recrystallisation region, the texture tended to distribute randomly at a high strain rate, and the grain growth was accompanied by the emergence of stable 100 orientation.
机译:通过950-1150℃的温度范围的等温压缩研究了Fe-21Cr-15ni-Nb-V不锈钢不锈钢的热变形行为,其应变率为0.01-10s(-1)。 结果表明,由(Nb,V)(C,N)的钉扎效应产生的完全重结晶发生超过1050℃。 通过凸出,亚粒吞咽和孪晶机制进行动态重结晶(DRX)的成核。 随着应变速率的增加,将新的孪生转化到部分DRX区域中的Sigma 3再生机制中,而在完全DRX区域中观察到相反的转化。 在部分重结晶区域中,晶粒旋转导致形成& 110& 方向。 在完全的重结晶区域中,纹理倾向于以高应变率随机分布,并且晶粒生长伴随着稳定的出现率。 100& 方向。

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