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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Laser transmission welding of polycarbonates: experiments, modeling, and sensitivity analysis
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Laser transmission welding of polycarbonates: experiments, modeling, and sensitivity analysis

机译:聚碳酸酯的激光透射焊接:实验,建模和灵敏度分析

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摘要

An experimental investigation on laser transmission welding of polycarbonate is presented in this paper. Instead of concentrating on the well-known effects of process parameters, the present study focuses on the sensitivity analysis of process parameters to identify the critical parameters and to assess their relative impact on the variation in output quality. Curvilinear regression models are developed using the independently controllable design variables like laser power (W), welding speed (mm/s), standoff distance (mm), and clamp pressure (MPa). Selected weld quality characteristics, namely the weld strength (N/mm), which is calculated based on failure load per unit length and weld width (mm), are used to set the objective functions. Parametric sensitivity analyses are performed using the developed models. It is observed from the results of sensitivity analysis that the weld strength is more sensitive to welding speed (sensitivity of 8.4 N/mm per unit welding speed) and laser power (sensitivity of 3.08 N/mm per unit laser power), whereas weld width is more sensitive to welding speed (sensitivity of 0.37 mm per unit welding speed) and standoff distance (sensitivity of 0.11 mm per unit standoff distance), respectively. These are the critical parameters for the respective quality characteristics, and a small variation of these parameters causes relatively higher deviation in weld quality.
机译:本文对聚碳酸酯进行激光透射焊接进行了实验研究。本研究不是专注于过程参数的众所周知的影响,而是着重于过程参数的敏感性分析,以识别关键参数并评估其对输出质量变化的相对影响。使用可独立控制的设计变量(例如激光功率(W),焊接速度(mm / s),支座距离(mm)和夹紧压力(MPa))来开发曲线回归模型。选定的焊接质量特性,即焊接强度(N / mm),是根据每单位长度的失效载荷和焊接宽度(mm)计算的,用于设置目标函数。使用开发的模型进行参数敏感性分析。从灵敏度分析的结果可以看出,焊接强度对焊接速度(每单位焊接速度的灵敏度为8.4 N / mm)和激光功率(每单位激光功率的灵敏度为3.08 N / mm)更敏感。对焊接速度(每单位焊接速度的灵敏度为0.37毫米)和支座距离(每单位支座距离的敏感性为0.11毫米)更敏感。这些是各个质量特性的关键参数,这些参数的较小变化会导致焊接质量相对较高的偏差。

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