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Transient, Three-Dimensional Numerical Model of a Laser Cutting Process with Phase Change Consideration

机译:相变考虑激光切削过程的瞬态,三维数值模型

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Phase change problems are encountered in several manufacturing and material processing applications. Such problems are computationally challenging because it is necessary to solve a non-linear heat conduction equation and take into considerations the conditions needed to produce material ablation, varying continuously the heat source position, thermo physical properties and physical shape of the domain. This research presents a numerical simulation of the temperature field and the removed material resulting from the impingement of a moving laser beam on a ceramic surface. A finite volume approach has been developed to predict the temperature field including phase changes generated during the process. The model considers heat losses by convection and radiation due to the high temperatures involved and uses a coordinate system affixed to the workpiece; therefore no quasi-steady conditions are assumed, as in the majority of previous works. Numerical predictions were compared with former three-dimensional numerical models considering a semi-infinite solid and from experimental data found in the literature. This study gives insight into the interactions between the laser beam and a silicon nitride workpiece during the cutting.
机译:在多种制造和材料处理应用中遇到相变问题。这些问题是计算上具有挑战性的,因为有必要解决非线性导热方程并考虑生产材料消融,连续变化的条件,连续地改变域的热源位置,热物理性质和物理形状所需的条件。该研究呈现了温度场的数值模拟和由移动激光束在陶瓷表面上的冲击产生的去除材料。已经开发了有限体积方法来预测在该过程期间产生的包括相变的温度场。由于所涉及的高温,该模型通过对流和辐射进行热损失,并使用固定在工件上的坐标系;因此,假设诸如以前的大多数作品中没有准稳定的条件。将数值预测与前三维数值模型进行比较,考虑到半无限固体和文献中的实验数据。该研究在切割期间介绍激光束和氮化硅工件之间的相互作用。

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