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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Analysis of grain size effects on transformation-induced plasticity based on a discrete dislocation-transformation model
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Analysis of grain size effects on transformation-induced plasticity based on a discrete dislocation-transformation model

机译:基于离散位错-转化模型的晶粒尺寸对相变诱发塑性的影响分析

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摘要

There is much interest recently in the possibility of combining two strengthening effects, namely the reduction of grain size (Hall-Petch effect) and the transformation-induced plasticity effect (strengthening due to a martensitic transformation). The present work is concerned with the analysis of the combination of these two effects using a discrete dislocation-transformation model. The transformation-induced plasticity mechanism is studied for aggregates of grains of ferrite and austenite of different sizes. The discrete model allows to simulate the behavior at sub-grain length scales, capturing the complex interaction between pile-ups at grain boundaries and the evolution of the microstructure due to transformation. The simulations indicate that, as the average grain size decreases, the relative strengthening due to the formation of martensite is significantly reduced and that the overall strengthening is mostly due to a Hall-Petch effect. This finding suggests that strengthening by the transformation-induced plasticity mechanism is ineffective in the presence of fine-grained micro-structures.
机译:近来,人们对将两种强化作用结合在一起的可能性产生了很大的兴趣,即减小晶粒尺寸(Hall-Petch效应)和由相变诱发的可塑性效应(由于马氏体相变而强化)。本工作涉及使用离散位错转换模型对这两种效应的组合进行分析。研究了不同尺寸的铁素体和奥氏体晶粒聚集体的相变诱发塑性机制。离散模型可以模拟亚晶粒长度尺度上的行为,捕获晶粒边界处堆积物与由于相变引起的微观结构演变之间的复杂相互作用。模拟表明,随着平均晶粒尺寸的减小,由于马氏体形成而引起的相对强度显着降低,并且总体强度主要归因于霍尔-帕奇效应。该发现表明,在存在细粒度的微结构的情况下,通过转化诱导的可塑性机制进行的强化无效。

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