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首页> 外文期刊>Journal of neurosurgical sciences >Simulation-based investigation on the temperature influence in laser transmission welding of thermoplastics
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Simulation-based investigation on the temperature influence in laser transmission welding of thermoplastics

机译:基于模拟的热塑性塑料激光传输焊接温度影响的研究

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摘要

Because of several advantages, e.g., an exact and high energy input, laser transmission welding has become more and more important in the last few years. Due to the contactless energy input, a sufficient process control is a challenge. In industrial production, the process parameters for a good weld seam are qualified by the energy input, which describes the process parameters laser power, laser velocity and irradiation time. These process parameters lead to the welding temperature, which influence the weld seam quality. The question remaining is whether the energy input describes the weld strength sufficiently or whether the welding temperature has a higher influence on the weld quality. In this study, the influence of the energy input on the weld quality is determined for an industrially relevant material combination (PBT ASA-GF20 and PC) in experimental examinations for quasi-simultaneous laser transmission welding. The welding temperature for every design point is calculated and the influence of the temperature on the weld strength is analyzed in an FEM model. In order to compare the influences of the two factors, welding temperature and energy input, a correlation analysis is performed. The correlation analysis shows a higher influence of the welding temperature on the weld strength compared to the energy input. But the energy input is also able to describe the weld strength.
机译:由于几个优点,例如,精确和高能量输入,激光传输焊接在过去几年中变得越来越重要。由于无接触能量输入,足够的过程控制是挑战。在工业生产中,良好焊缝的工艺参数由能量输入限定,描述了过程参数激光功率,激光速度和照射时间。这些工艺参数导致焊接温度,影响焊缝质量。剩余的问题是能量输入是否充分描述了焊接强度,或者焊接温度是否对焊接质量具有更高的影响。在该研究中,在准同声激光传输焊接的实验检查中,确定在工业相关的材料组合(PBT ASA-GF20和PC)中确定能量输入对焊接质量的影响。计算每个设计点的焊接温度,并在FEM模型中分析温度对焊接强度的影响。为了比较两个因素,焊接温度和能量输入的影响,执行相关分析。与能量输入相比,相关性分析显示了焊接温度对焊接强度的较高影响。但能量输入也能够描述焊接强度。

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