首页> 外文期刊>Journal of thermal stresses >PREDICTION OF THE INITIAL RESIDUAL STRESSES IN RAILWAY WHEELS INDUCED BY MANUFACTURING
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PREDICTION OF THE INITIAL RESIDUAL STRESSES IN RAILWAY WHEELS INDUCED BY MANUFACTURING

机译:制造引起的铁路车轮初始残余应力的预测

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This article presents a prediction of the residual stresses that are introduced by the heat treatment in the manufacture of railway wheels. It is well known that this treatment induces the formation of a layer of residual circumferential (hoop) compresshe stresses on the tread surface. This stress field may be reversed during service loading, especially tread braking. Tensile stresses at the wheel tread that arise from repeated braking may lead to the initiation of surface cracks. The work presented here defines a methodology for determining the as-manufactured residual stress field prior to service loading. A thermal and mechanical finite element model was used to study the residual stress evolution during the heat treatment. The heat transfer coefficient during quenching was determined by means of a dedicated experimental setup. The results show that the numerically computed residual stresses correlate strongly with the experimental residual stresses determined by ultrasound when the model material includes time-dependent effects such as creep or viscoplasticity.
机译:本文介绍了在车轮制造中通过热处理引入的残余应力的预测。众所周知,这种处理引起在胎面表面上形成一层残余的周向(环向)压缩应力层。该应力场可能会在维修负载(尤其是胎面制动)期间反转。反复制动会导致车轮胎面的拉伸应力可能导致表面裂纹的产生。此处介绍的工作定义了一种在服务加载之前确定已制造的残余应力场的方法。使用热和机械有限元模型来研究热处理期间的残余应力演变。淬火过程中的传热系数是通过专用实验装置确定的。结果表明,当模型材料包括蠕变或粘塑性等随时间变化的影响时,数值计算的残余应力与超声确定的实验残余应力高度相关。

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