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首页> 外文期刊>Journal of Manufacturing Processes >Mathematical model of complex weld penetration profile: A case of square AC waveform arc welding
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Mathematical model of complex weld penetration profile: A case of square AC waveform arc welding

机译:复杂焊缝熔深曲线的数学模型:以方波交流波形电弧焊为例

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摘要

A new mathematical model of complex weld bead shape is presented. An 'offsetting bi-elliptical' model is constituted that can capture complex geometric features such as observed in square waveform welds vis-a-vis deeper central core and shallow sides with two visually distinct weld zones. The model elucidates new observations on electrode melting and weld bead formation in alternating current waveform submerged arc welding visualised through in-situ radiography imaging. The geometric attributes of constituent ellipses as function of welding process parameters are obtained with inverse modelling. The model yields high degree of accuracy in predication of bead parameters i.e. bead width, depth of penetration, bay angle and bay length for a wide range of process parameters such as EN ratio (% time an electrode remains negative) and wire-feed speed under different chemical composition of shielding flux. The investigation indicates that electrode melting and weld penetration are integrated outcomes of arc phenomena that is influenced by flux chemistry. The findings of present investigations are accomplished enough to be horizontally deployed to develop or improve existing weld bead models. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种复杂的焊缝形状数学模型。构建了一个“可偏移的双椭圆”模型,该模型可以捕获复杂的几何特征,例如在方波焊缝中观察到的深部中心芯和浅侧以及两个视觉上明显不同的焊接区域。该模型阐明了通过现场射线照相成像可视化的交流波形埋弧焊中电极熔化和焊缝形成的新观察结果。通过逆建模获得了组成椭圆的几何属性作为焊接工艺参数的函数。该模型在各种工艺参数(例如,EN比(电极保持负压的时间百分比)和在以下条件下的送丝速度)的多种工艺参数中,对胎圈参数的预测(即胎圈宽度,穿透深度,间隔角和间隔长度)的预测都具有很高的准确性。化学成分不同的屏蔽助焊剂。研究表明,电极熔化和焊缝熔深是电弧现象的综合结果,而电弧现象受助焊剂化学影响。本次调查的结果足够完成,可以水平部署以开发或改进现有的焊缝模型。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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