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Modeling and analysis of simultaneous laser transmission welding of polycarbonates using an FEM and RSM combined approach

机译:使用FEM和RSM组合方法对聚碳酸酯同时进行激光透射焊接的建模和分析

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摘要

In this paper, simultaneous laser transmission welding process is systematically investigated via process modeling, using an FEM and RSM combined approach. The objective of the present research is to study the effects of process parameters on the temperature field and weld bead dimensions. The thermal field is simulated by solving a three dimensional transient heat diffusion equation with temperature dependent material properties using the ANSYS? multi-physics. Response surface methodology is then applied for developing mathematical models based on simulation results. The second order equations developed by RSM can predict the values of the responses with significant accuracy. The effect of parameters and their interactions on the responses are studied using the developed response surface models. The mathematical models are further used in search of the optimal process window for obtaining an acceptable weld. The graphical optimization results into a couple of overlay contours plots, which allow quick visual inspection of the area of feasible response values in the factor space to choose the favorable welding parameter combination.
机译:在本文中,同时进行的激光透射焊接工艺是通过有限元法和RSM组合方法通过工艺建模系统研究的。本研究的目的是研究工艺参数对温度场和焊缝尺寸的影响。通过使用ANSYS?求解具有温度相关材料特性的三维瞬态热扩散方程来模拟热场。多物理场。然后将响应面方法应用于基于仿真结果的数学模型开发。 RSM开发的二阶方程可以非常准确地预测响应值。使用已开发的响应面模型研究了参数及其相互作用对响应的影响。数学模型还用于搜索最佳过程窗口以获得可接受的焊接。图形优化生成了两个重叠的等高线图,可以快速直观地检查因素空间中可行响应值的区域,以选择合适的焊接参数组合。

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