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Modelling the influence of the process inputs on the removal of surface contaminants from Ti-6Al-4V linear friction welds

机译:模拟工艺输入对去除Ti-6Al-4V线性摩擦焊缝表面污染物的影响

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摘要

The linear friction welding (LFW) process is finding increasing interest from industry for the fabrication of near-net-shape, titanium alloy Ti-6Al-4V, aerospace components. Currently, the removal of surface contaminants, such as oxides and foreign particles, from the weld interface into the flash is not fully understood. To address this problem, two-dimensional (2D) computational models were developed using the finite element analysis (FEA) software DEFORM and validated with experiments. The key findings showed that the welds made with higher applied forces required less bum-off to completely remove the surface contaminants from the interface into the flash; the interface temperature increased as the applied force was decreased or the rubbing velocity increased; and the boundary temperature between the rapid flash formation and negligible material flow was approximately 970 ℃. An understanding of these phenomena is of particular interest for the industrialisation of near-net-shape titanium alloy aerospace components.
机译:线性摩擦焊接(LFW)工艺正日益引起工业界对制造近净形钛合金Ti-6Al-4V航空部件的兴趣。目前,从焊接界面到飞边的表面污染物如氧化物和异物的去除尚不完全清楚。为了解决这个问题,使用有限元分析(FEA)软件DEFORM开发了二维(2D)计算模型,并通过实验进行了验证。关键发现表明,以较高的外加力进行的焊缝只需较少的灼烧即可将界面上的表面污染物完全清除到飞边上。随着施加力的减小或摩擦速度的增加,界面温度升高。快速闪蒸形成与可忽略的物料流动之间的边界温度约为970℃。对这些现象的理解对于近净形钛合金航空航天部件的工业化尤为重要。

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