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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modelling of the transient thermal field in laser surface treatment test
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Modelling of the transient thermal field in laser surface treatment test

机译:激光表面处理测试中的瞬态热场建模

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摘要

In order to develop adequate predictive models of the laser heat treating process in the recent past, the laser surface treatment (LST) test was proposed to relate the obtained microstructure to the known thermal cycle undergone by the material. One of the flat end surfaces of a cylindrical steel rod is exposed to a laser beam. As a consequence the material undergoes different thermal cycles and different microstructure transformations due to the heating effect of the laser beam that it propagates inside the material. The paper presents a thermal model that can be used in the LST test to predict the thermal field inside the rod exposed to the laser beam. The model describes the thermal field generated by a uniform and time-dependent heat source, and also accounts for the convection losses that are due to gas impinging on the exposed surface. The model was verified by comparing the obtained thermal field to direct measurements by thermocouples placed along the rod and to the thermal field obtained with a numerical simulation. Results were found to be in good agreement with the experimental measurements and the numerical results.
机译:为了建立最近的激光热处理工艺的适当预测模型,提出了激光表面处理(LST)测试,以将获得的微结构与材料经历的已知热循环联系起来。圆柱形钢棒的平坦端面之一暴露于激光束。结果,由于在材料内部传播的激光束的热效应,材料经历了不同的热循环和不同的微观结构转变。本文介绍了一种热模型,该模型可用于LST测试中,以预测暴露于激光束的棒内部的热场。该模型描述了由均匀且随时间变化的热源产生的热场,还说明了由于气体撞击裸露表面而导致的对流损失。通过将获得的热场与沿棒放置的热电偶的直接测量值以及通过数值模拟获得的热场进行比较,验证了模型的正确性。发现结果与实验测量和数值结果非常吻合。

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