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Residual stresses generated by repeated local heating events - Modelling of possible mechanisms for crack initiation

机译:重复的局部加热事件产生的残余应力-裂纹萌生的可能机制建模

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The hypothesis of thermal damage mechanisms by short-term local friction heating of rail or wheel steels leading to initiation of cracks, specifically squats (in some works called studs) in rails and crack clusters in wheels has given the inspiration for this study. A Finite Element (FE) model incorporating phase transformation from near pearlitic steel to austenite, and then to martensite was developed to examine developing strength and stress fields. Thermal strains on heating, cooling and phase transformations are naturally included, and the FE model also incorporates shrinkage due to tempering of the martensite during subsequent heat pulses. The material behaviour implemented in the model has been rationalised from experiments done on near pearlitic wheel steels, however the qualitative results are deemed applicable also for local thermal damage on pearlitic rail steels. The material is currently modelled as isotropic, with properties varying with phase, temperature and tempering state. The main contributions of this work is the modelling framework developed, specifically the careful modelling of martensite tempering combined with phase transformation. Different thermal sequences are examined to demonstrate the model's capability. The computed strength and stress fields are used to discuss possible mechanisms of crack initiation. (C) 2016 Elsevier B.V. All rights reserved.
机译:轨道或车轮钢短期局部摩擦加热导致裂纹(特别是轨道中的下蹲(在某些工作中称为双头螺栓)和车轮中的裂纹簇)引起的热损伤机理的假设为这项研究提供了灵感。建立了一种有限元模型,以研究从近珠光体钢到奥氏体再到马氏体的相变,以研究强度和应力场。自然包括加热,冷却和相变时的热应变,并且有限元模型还包含了由于后续热脉冲期间马氏体回火引起的收缩。该模型中实现的材料性能已通过对近珠光体车轮钢的实验进行了合理化,但是定性结果也被认为也适用于珠光体钢轨的局部热损伤。该材料目前被建模为各向同性的,其特性随相,温度和回火状态而变化。这项工作的主要贡献是开发了建模框架,特别是对马氏体回火与相变相结合的仔细建模。检查了不同的热序列,以证明该模型的功能。计算出的强度和应力场用于讨论裂纹萌生的可能机制。 (C)2016 Elsevier B.V.保留所有权利。

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