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Simulation of laser structuring by three dimensional heat transfer model

机译:三维传热模型模拟激光结构

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摘要

In this study, a three dimensional numerical heat transfer model has been used to simulate the laser structuring of polymer substrate material in the Three-Dimensional Molded Interconnect Device (3D MID) which is used in the advanced multi-functional applications. A finite element method (FEM) transient thermal analysis is performed using APDL (ANSYS Parametric Design Language) provided by ANSYS. In this model, the effect of surface heat source was modeled with Gaussian distribution, also the effect of the mixed boundary conditions which consist of convection and radiation heat transfers have been considered in this analysis. The model provides a full description of the temperature distribution, as well as calculates the depth and the width of the groove upon material removal at different set of laser parameters such as laser power and laser speed. This study also includes the experimental procedure to study the effect of laser parameters on the depth and width of the removal groove metal as verification to the modeled results. Good agreement between the experimental and the model results is achieved for a wide range of laser powers. It is found that the quality of the laser structure process is affected by the laser scan speed and laser power. For a high laser structured quality, it is suggested to use laser with high speed and moderate to high laser power.
机译:在这项研究中,三维数值传热模型已用于模拟三维模制互连设备(3D MID)中聚合物基材材料的激光结构,该器件用于先进的多功能应用程序。使用ANSYS提供的APDL(ANSYS参数设计语言)执行有限元方法(FEM)瞬态热分析。在该模型中,表面热源的影响是用高斯分布建模的,在此分析中还考虑了由对流和辐射传热组成的混合边界条件的影响。该模型提供了温度分布的完整描述,并在不同的激光参数集(例如激光功率和激光速度)下去除材料时计算了凹槽的深度和宽度。这项研究还包括研究激光参数对去除槽金属的深度和宽度的影响的实验程序,以验证建模结果。对于广泛的激光功率,实验结果与模型结果之间取得了良好的一致性。发现激光结构过程的质量受激光扫描速度和激光功率的影响。为了获得较高的激光结构质量,建议使用高速且中等至高激光功率的激光。

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