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首页> 外文期刊>Journal of Materials Science & Technology >Neural Network Modeling and System Simulating for the Dynamic Process of Varied Gap Pulsed GTAW with Wire Filler
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Neural Network Modeling and System Simulating for the Dynamic Process of Varied Gap Pulsed GTAW with Wire Filler

机译:带填充线的变间隙脉冲GTAW动态过程的神经网络建模和系统仿真

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As the base of the research work on the weld shape control during pulsed gas tungsten arc welding (GTAW) with wire filler, this paper addressed the modeling of the dynamic welding process. Topside length L_t, maximum width W_t and half-length ratio R_(hl) were selected to depict topside weld pool shape, and were measured on-line by vision sensing. A dynamic neural network mode! was constructed to predict the usually unmeasured backside width and topside height of the weld through topside shape parameters and welding parameters. The inputs of the model were the welding parameters (peak current, pulse duty ratio, welding speed, filler rate), the joint gap, the topside poolshape parameters (L_t, W_t, and R_(hl)), and their history values at two former pulse, a total of 24 numbers. The validating experiment results proved that the artificial neural network (ANN) model had high precision and could be used in process control. At last, with the developed dynamic model, steady and dynamic behavior was analyzed by simulation experiments, which discovered the variation rules of weld pool shape parameters under different welding parameters, and further knew well the characteristic of the welding process.
机译:本文是基于填充丝的脉冲式钨极氩弧焊(GTAW)焊接形状控制研究的基础,提出了动态焊接过程的建模方法。选择顶侧长度L_t,最大宽度W_t和半长比R_(hl)来描绘顶侧焊池形状,并通过视觉感测在线测量。动态神经网络模式!通过顶部形状参数和焊接参数来预测通常无法测量的焊缝背面宽度和顶部高度。该模型的输入是焊接参数(峰值电流,脉冲占空比,焊接速度,填充率),接头间隙,顶部池形参数(L_t,W_t和R_(hl))及其在两个位置的历史值前一个脉冲,共有24个数字。验证实验结果表明,人工神经网络模型具有较高的精度,可用于过程控制。最后,利用建立的动力学模型,通过仿真实验对稳态和动态行为进行了分析,发现了不同焊接参数下焊池形状参数的变化规律,进一步了解了焊接过程的特点。

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