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Thermal Modeling and Experimental Investigation for Laser Assisted Milling of Silicon Nitride Ceramics

机译:氮化硅陶瓷激光辅助铣削的热建模和实验研究

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摘要

This study is motivated by the fact that temperature control is very important for the success of laser assisted milling. A transient three-dimensional thermal model is developed using finite element analysis for laser assisted milling (LAMM) of silicon nitride ceramics, and then validated through a series of experiments of laser assisted face milling. This study aims to explore the thermal characteristics in LAMM of silicon nitride ceramics and thus provide guidelines on parameter selection for future operations. In addition, heat generation associated with machining is considered, and the effects of laser power, feed, and cutting speed on temperature are investigated. Simulation results show that heat generation associated with machining can be neglected. Laser power is one critical parameter for successful operation of LAMill. Moreover, both feed and cutting speed can affect the operating temperatures by varying feed rate; however, once feed rate is fixed, they have a little impact on the operating temperatures.
机译:该研究的动机是温度控制对于激光辅助铣削的成功非常重要。使用有限元分析开发了瞬态三维热模型,用于氮化硅陶瓷的激光辅助铣削(LAMM),然后通过一系列激光辅助端面铣削的实验进行了验证。这项研究旨在探讨氮化硅陶瓷在LAMM中的热特性,从而为将来的操作提供参数选择指南。另外,考虑了与加工相关的热量产生,并研究了激光功率,进给和切削速度对温度的影响。仿真结果表明,与加工相关的热量产生可以忽略。激光功率是LAMill成功运行的关键参数。而且,进给速度和切削速度都会通过改变进给速度来影响工作温度。但是,一旦固定进给速度,它们对工作温度的影响就很小。

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