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Numerical simulation of side heating for controlling angular distortion in multipass MMAW butt welded plates

机译:控制多道MMAW对接焊缝中侧面加热以控制角度变形的数值模拟

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摘要

Distortion is a severe problem in weld products. It depends on various process parameters like plate thickness, current, voltage, type of weld joint and restraints put on. If distortion is not properly dealt during welding then the product may become useless from geometric accuracy point of view. In the present study, a 3-D coupled transient thermal analysis model with auxiliary side heating (parallel heating) is developed to control angular distortion. During analysis, parallel heating flames are placed at several locations from weld line in cross direction. A user defined subroutine is used to apply transient heat source and side heating flames. Element birth and death technique is used to simulate the filler material deposition. One side multipass 'V' butt weld configuration is used for this study. A series of observational tests are done with a special experimental fixture using Manual Metal Arc Welding (MMAW) to validate the proposed FEA model. It is found that the angular distortion has decreased from 2 mm to 0.4 mm with change in side heating distance from 50 to 90 mm from the weld line.
机译:变形是焊接产品中的严重问题。它取决于各种工艺参数,例如板厚,电流,电压,焊接接头的类型和施加的约束。如果在焊接过程中不能正确处理变形,那么从几何精度的角度来看,该产品可能会变得毫无用处。在本研究中,开发了带有辅助侧加热(平行加热)的3-D耦合瞬态热分析模型,以控制角度畸变。在分析过程中,平行的加热火焰沿横向从焊接线放置在多个位置。用户定义的子例程用于施加瞬态热源和侧面加热火焰。元素生死技术用于模拟填充材料的沉积。这项研究使用了一侧多道“ V”形对接焊缝配置。使用手动金属电弧焊(MMAW),使用特殊的实验夹具进行了一系列观察性测试,以验证所提出的FEA模型。发现随着从焊接线到侧面加热距离从50mm改变为90mm,角度变形从2mm减小到0.4mm。

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