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Investigation of the relationships of process parameters, molten pool geometry and shear strength in laser transmission welding of polyethylene terephthalate and polypropylene

机译:聚对苯二甲酸乙二醇酯和聚丙烯激光透射焊接工艺参数,熔池几何形状和剪切强度的关系研究

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摘要

This study concerns the laser transmission welding (LTW) of polyethylene terephthalate (PET) and polypropylene (PP) which are widely used in the automotive, aerospace and medical industries. The relationships of process parameters, molten pool geometry (both width and depth) and shear strength (SS) in LTW process are systematically investigated through finite element method (FEM), response surface methodology (RSM) and experiments. Thereinto, the relationships between the molten pool depths to width (D/W) ratio and SS are firstly investigated. Firstly, a three-dimensional thermal model is developed to simulate the temperature field and molten pool geometry of the LTW process. The simulation results are confirmed by experiments. Then RSM is utilized to design the experiments and establish the mathematical relationships between the process parameters and molten pool geometry based on the simulation results. The interaction effects of the process parameters on the molten pool geometry are analyzed. Finally, the simulation results are further used for searching the relationships between the molten pool D/W ratio and the SS (from tensile experiments). The maximum value of the SS and the corresponding molten pool D/W ratio is found. The result reveals that the molten pool D/W ratio has a significant influence on the SS. Moreover, this finite element model can also play a commendable guiding role in the LTW experiments with acceptable accuracy.
机译:这项研究涉及聚对苯二甲酸乙二醇酯(PET)和聚丙烯(PP)的激光透射焊接(LTW),它们广泛用于汽车,航空航天和医疗行业。通过有限元方法(FEM),响应面法(RSM)和实验系统地研究了LTW工艺中工艺参数,熔池几何形状(宽度和深度)以及剪切强度(SS)之间的关系。其中,首先研究了熔池深度与宽度(D / W)之比与SS之间的关系。首先,建立了三维热模型来模拟LTW工艺的温度场和熔池几何形状。仿真结果通过实验证实。然后利用RSM进行实验设计,并根据仿真结果建立工艺参数与熔池几何形状之间的数学关系。分析了工艺参数对熔池几何形状的相互作用影响。最后,将模拟结果进一步用于搜索熔池D / W比与SS之间的关系(来自拉伸实验)。找到SS的最大值和相应的熔池D / W比。结果表明,熔池的D / W比对不锈钢有重要影响。此外,该有限元模型还可以在LTW实验中以可接受的精度发挥值得称赞的指导作用。

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