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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Optimization study of weld geometry in the tandem submerged arc welding process
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Optimization study of weld geometry in the tandem submerged arc welding process

机译:串联埋弧焊过程中焊缝几何形状的优化研究

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摘要

For any welded component, the weld geometry is a determinative criterion that has a strong influence on the mechanical integrity of the joint. It is therefore important that the weld geometry is adequately considered when establishing the design of the component being welded. Based on the tandem submerged arc welding process, this study reports on an experimental and optimization investigation of the weld geometry characteristics such as bead width, reinforcement form factor and penetration shape factor. The selected process parameters were welding amperage and welding voltage, and these were initially investigated to determine their effect on weld geometry. From this, the results indicated that all developed models for these outputs predicted the behavior of the inputs with high precision. Thus, an optimal condition was established in which the penetration depth was maximized, and hence, a multi-response optimization was determined. Also, the conditions in which the weld reinforcement form factor (W/R) and penetration shape factor (W/P) were minimized are determined and validated.
机译:对于任何焊接部件,焊接几何形状都是决定性的标准,对接头的机械完整性有很大的影响。因此重要的是,在建立被焊接部件的设计时,要充分考虑焊接几何形状。基于串联埋弧焊工艺,本研究报告了对焊缝几何特性(例如焊缝宽度,钢筋形状因数和熔深形状因数)的实验和优化研究。选择的工艺参数是焊接电流强度和焊接电压,并且最初对它们进行了研究,以确定它们对焊接几何形状的影响。据此,结果表明,针对这些输出的所有已开发模型都可以高精度预测输入的行为。因此,建立了使渗透深度最大的最佳条件,从而确定了多响应优化。另外,确定并验证使焊接补强形状因数(W / R)和熔深形状因数(W / P)最小的条件。

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