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Analysis of size effects associated to the transformation strain in TRIP steels with strain gradient plasticity

机译:具有应变梯度可塑性的TRIP钢中与转变应变相关的尺寸效应分析

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摘要

The size dependent strengthening resulting from the transformation strain in Transformation Induced Plasticity (TRIP) steels is investigated using a two-dimensional embedded cell model of a simplified microstructure composed of small cylindrical metastable austenitic inclusions within a ferritic matrix. Earlier studies have shown that within the framework of classical plasticity or of the single length parameter Fleck-Hutchinson strain gradient plasticity theory, the transformation strain has no significant impact on the overall strengthening. The strengthening is essentially coming from the composite effect with a marked inclusion size effect resulting from the appearance during deformation of new boundaries constraining the plastic flow. The three parameters version of the Fleck-Hutchinson strain gradient plasticity theory is used here in order to better capture the effect of the plastic strain gradients resulting from the transformation strain. The three parameters theory incorporates separately the rotational and extensional gradients in the formulation, which leads to a significant influence of the shear component of the transformation strain, not captured by the single-parameter theory. When the size of the austenitic inclusions decreases, the overall strengthening increases due to a combined size dependent effect of the transformation strain and of the evolving composite structure. A parametric study is proposed and discussed in the light of experimental evidences giving indications on the optimization of the microstructure of TRIP-assisted multi-phase steels. © 2009 Elsevier Masson SAS. All rights reserved.
机译:使用二维嵌入式单元格模型研究了由相变诱导可塑性(TRIP)钢中的相变应变所引起的尺寸依赖性强化,该模型由简化的微结构组成,该结构由铁素体基体中的小圆柱形亚稳态奥氏体夹杂物组成。较早的研究表明,在经典可塑性或单一长度参数Fleck-Hutchinson应变梯度可塑性理论的框架内,相变应变对整体强化没有重大影响。增强作用本质上来自复合效应,而明显的夹杂物尺寸效应则是由新边界的变形过程中出现的外观所产生,从而限制了塑性流动。这里使用Fleck-Hutchinson应变梯度可塑性理论的三个参数版本,以便更好地捕获由转换应变产生的塑性应变梯度的影响。这三个参数理论在公式中分别包含了旋转梯度和拉伸梯度,这导致了转换应变的剪切分量的重大影响,而这是单参数理论无法捕捉到的。当奥氏体夹杂物的尺寸减小时,由于相变应变和不断发展的复合结构的综合尺寸依赖性效应,整体强度增加。根据实验证据提出并讨论了参数研究,为TRIP辅助多相钢的显微组织优化提供了指示。 ©2009 Elsevier Masson SAS。版权所有。

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