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Development of a Laser Hardening Simulation Method Including Material Characterization for Rapid Heating Rates

机译:激光淬火模拟方法的发展,包括快速加热速率的材料表征

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The main disadvantage for industrial application of new processes based on laser surface treatments, such as laser hardening, quenching or precipitation hardening, is the prior experimentation needed to determinate the optimum conditions for processes. The presented work is focused on the development of a tool based on a semi-empirical model to predict accurately the thermal field and thickness of the head affected zone in laser surface treatments in order to avoid the previous experimental setups of this processes. The conventional thermal models are focused on solving the differential equation of temperature field, considering the laser as heat source and thermal properties of each material. However, during the rapid heating treatment processes of metal surfaces are some unknown heat sinks such us metallurgical transformations or a changeable material absortivity that must be taken into account. The model has been adjusted and validated with experimental data for AISI 1045.
机译:在工业上应用基于激光表面处理的新工艺(如激光硬化,淬火或沉淀硬化)的主要缺点是,需要事先进行实验以确定最佳工艺条件。提出的工作集中在基于半经验模型的工具的开发上,该工具可以准确预测激光表面处理中头部受影响区域的热场和厚度,从而避免该过程的先前实验设置。常规的热模型专注于求解温度场的微分方程,将激光作为热源和每种材料的热特性。但是,在金属表面的快速热处理过程中,必须考虑一些未知的散热器,例如冶金转变或可变化的材料吸收性。该模型已针对AISI 1045进行了实验数据的调整和验证。

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