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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >TANFIS Modeling of Human Welder's Response to Three-Dimensional Weld Pool Surface in GTAW
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TANFIS Modeling of Human Welder's Response to Three-Dimensional Weld Pool Surface in GTAW

机译:GTAW中焊工对三维焊池表面的TANFIS建模

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Understanding and modeling of the human welder's response to three-dimensional (3D) weld pool surface may help develop next generation intelligent welding machines and train welders faster. In this paper, human welder's adjustment on the welding current as a response to the 3D weld pool surface characterized by its width, length, and convexity is studied. An innovative vision system is used to real-time measure the specular 3D weld pool surface under strong arc in gas tungsten arc welding (GTAW). Experiments are designed to produce random changes in the welding speed resulting in fluctuations in the weld pool surface. Adaptive neuro-fuzzy inference system (ANFIS) is proposed to correlate the human welder's response to the 3D weld pool surface using three inputs including the weld pool width, length and convexity. The human welder's behavior is not only related to the 3D weld pool geometry but also relies on the welder's previous adjustment. In this sense, a four input ANFIS model adding the previous human welder's response as a model input is developed and compared with the fitted linear model. It is found that the proposed ANFIS model can derive a more accurate correlation between the human welder's responses and the weld pool geometry and help understand the nonlinear response of the human welder to 3D weldpool surfaces.
机译:了解和模拟人体焊工对三维(3D)焊池表面的响应可能有助于开发下一代智能焊机并更快地培训焊工。本文研究了人类焊工对焊接电流的调节,以响应以3D熔池表面的宽度,长度和凸度为特征的响应。创新的视觉系统用于在气体钨极电弧焊(GTAW)中在强电弧下实时测量镜面3D焊池表面。实验旨在产生随机的焊接速度变化,从而导致焊池表面起伏不定。提出了一种自适应神经模糊推理系统(ANFIS),它使用焊接池宽度,长度和凸度这三个输入来关联人类焊工对3D焊接池表面的响应。焊工的行为不仅与3D焊池的几何形状有关,而且还取决于焊工的先前调整。从这个意义上讲,开发了一个四输入ANFIS模型,该模型将以前的焊工的响应添加为模型输入,并与拟合的线性模型进行比较。发现所提出的ANFIS模型可以得出人类焊工的响应与焊池几何形状之间的更准确的相关性,并且有助于理解人类焊工对3D焊池表面的非线性响应。

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