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Constitutive Analysis of Stress-Strain Curves of a High-Nitrogen Austenitic Stainless Steel

机译:高氮奥氏体不锈钢应力应变曲线的本构分析

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The Ni content in the conventional austenitic stainless steel tends to be lowered by alloying of high amount of N so that the production cost can be significantly reduced. In this paper, the flow stress curves for a high-nitrogen alloyed stainless steel of 1Cr22Mn15N were investigated by the thermo-mechanical simulator, which show typical characteristics of appearance of dynamic recrystallization. Besides, a numerical model based on Zener-Holloman parameter has been established to simulate the flow stress curves with quite good agreement. It was found that the activation energy for 1Cr22Mn15N is much more than that for the other 300 series stainless steels possible, indicating that strengthening resulting from interstitial solution of N atoms is stronger that for substitutional solution of other elements.
机译:常规奥氏体不锈钢中的Ni含量倾向于通过大量N的合金化而降低,从而可以显着降低生产成本。本文通过热机械模拟器研究了1Cr22Mn15N高氮合金不锈钢的流变应力曲线,该曲线表现出动态再结晶的典型特征。此外,建立了基于Zener-Holloman参数的数值模型来模拟流动应力曲线,并且吻合得很好。发现1Cr22Mn15N的活化能比其他300系列不锈钢的活化能大得多,这表明由N原子的间隙溶液引起的强化要强于其他元素的替代溶液。

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