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Exploiting the non-equilibrium phase transformation in a 15Cr-2Ni-2Al-11Mn resource-saving duplex stainless steel

机译:利用15Cr-2Ni-2Al-11Mn资源节约型双相不锈钢的非平衡相变

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摘要

Though most duplex stainless steels are quenched from high temperature, at which the equilibrium phase constitution is close to the desired magnitude, this work explored the non-equilibrium phase transformation in duplex stainless steel and showed that duplex stainless steels of equilibrated primary phase content can be obtained through different thermomechanical processes and exhibit disparate microstructures and mechanical property. Specifically, we studied the effects of annealing temperature, time, cooling method and plastic deformation based on the 15Cr-2Ni-2Al-11Mn DSS and established TTT diagrams of as-cast and cold-rolled duplex stainless steels using the Avrami equation, respectively. A simplified model of diffusion-mediated phase transformation was established to explain the stretched exponent 2.5 used in the Avrami equation. And it is found that plastic deformation not only changes the rate of phase transformation and the grain size of new phase but also changes the equilibrium phase constitution. (C) 2016 Elsevier Ltd. All rights reserved.
机译:尽管大多数双相不锈钢都是从高温淬火开始的,此时平衡相的组成接近所需的大小,但这项工作探索了双相不锈钢的非平衡相变,并表明可以平衡主相含量的双相不锈钢。通过不同的热机械过程获得,并表现出不同的微观结构和机械性能。具体而言,我们研究了基于15Cr-2Ni-2Al-11Mn DSS的退火温度,时间,冷却方法和塑性变形的影响,并分别使用Avrami方程建立了铸态和冷轧双相不锈钢的TTT图。建立了扩散介导的相变的简化模型,以解释Avrami方程中使用的拉伸指数2.5。发现塑性变形不仅改变了相变速率和新相的晶粒尺寸,而且改变了平衡相的组成。 (C)2016 Elsevier Ltd.保留所有权利。

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