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Simulation and Experimental Study on Temperature Fields for Laser Assisted Machining of Silicon Nitride

机译:氮化硅激光辅助加工温度场的模拟与实验研究

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摘要

Laser assisted machining (LAM) is an effective method machining difficult-to-machine materials such as ceramics which uses a high power laser to focally heat a workpiece prior to material removal with a traditional cutting tool. A laser assisted machining experiment system was set up and a transient, three-dimensional heat transfer model was developed for LAM of silicon nitride using Finite Element Method to understand the thermal process of laser heating. The model was based on temperature-dependent thermophysical properties and the heat generated was neglected due to cutting which is assumed to be small compared to the heat generated by laser heating. The experiments were carried out to investigate the effects of operating parameters, such as laser power, laser translational speed, rotational speed, laser beam diameter and preheating time on temperature distribution. An infrared radiation thermometer was used to measure the surface temperature histories and the experimental results were in good agreement with predictions. The laser power and laser translational speed have the greatest influence on the temperature.
机译:激光辅助加工(LAM)是一种加工难加工材料(例如陶瓷)的有效方法,该材料在使用传统切削工具去除材料之前,先使用高功率激光对工件进行聚焦加热。建立了激光辅助加工实验系统,利用有限元方法建立了氮化硅LAM的瞬态三维传热模型,以了解激光加热的热过程。该模型基于与温度相关的热物理特性,并且由于切削而产生的热量被忽略了,与激光加热产生的热量相比,切削被认为是很小的。进行实验以研究诸如激光功率,激光平移速度,旋转速度,激光束直径和预热时间等操作参数对温度分布的影响。使用红外辐射温度计测量表面温度历史,实验结果与预测值吻合良好。激光功率和激光平移速度对温度的影响最大。

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