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Analysis of cooling process in arc welding --patch welding with circular plate

机译:圆形板电弧焊接焊接冷却过程分析

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摘要

Arc welding is usually used for bonding structural members and machine parts. When some defects or cracks are detected, however, it sometimes provides practical and effective means for compensating the strength of welded joint as a so-called repair welding. In normal practice, the regions containing defects are removed as a circular hole whose diameter is larger than 8cm. A circular plate with the same diameter is placed to plug the hole; then the repair welding with curved beads is conducted to bring the structure into the original shape. In this paper, a numerical approach using three-dimensional Finite Difference Method (FDM) in the transient temperature field is presented for evaluating the fundamental characteristics of cooling process of patch welding with curved beads. Arc welding is performed to verify the validity of the proposed numerical method by measuring the cooling process at the welding junction. In addition, the numerical results of temperature distributions on plate surface are also compared with those obtained by infrared thermography.
机译:电弧焊接通常用于粘合结构构件和机器部件。然而,当检测到某些缺陷或裂缝时,它有时提供实用且有效的方法,用于补偿焊接接头的强度作为所谓的修复焊接。在正常实践中,将含有缺陷的区域作为圆孔除去,其直径大于8cm。放置具有相同直径的圆形板以堵塞孔;然后进行具有弯曲珠的修复焊接以使结构成为原始形状。本文介绍了一种在瞬态温度场中使用三维有限差分方法(FDM)的数值方法,用于评估弯曲珠子的贴片焊接冷却过程的基本特性。通过测量焊接结的冷却过程来执行电弧焊接以验证所提出的数值方法的有效性。另外,与通过红外热成像获得的那些相比,板表面上温度分布的数值结果。

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