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The Effect of Localized Vibration during Welding on the Microstructure and Mechanical Behavior of Steel Welds

机译:焊接过程中局部振动对钢焊缝组织和力学行为的影响

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摘要

The use of vibratory welding is treated with some caution in the industry due to inconsistent beneficiary results. Here, a partial explanation is suggested by the differentiation between global vibrational effects (GVEs) and local vibrational effects (LVEs), and the latter is investigated experimentally. Two structural plates of steel are welded at three frequency/amplitude combinations using manual gas metal arc welding in an experimental setup that ensures only LVEs. After welding, tensile tests, microhardness tests, and metallurgical characterization are performed locally in the different welding zones and the results are compared to the non-vibrated welds. Novel use of digital image correlation (DIC) is implemented in tensile testing of welded samples, thus enabling the separate determination of local mechanical properties of the base metal, heat-affected zone and fusion zone of the same weld. LVE is found not to promote any distinct difference in weld properties, at least within the vibrational regimes studied. Nevertheless, depending on geometry and structural response, it is explained how vibratory welding may promote residual stress relief due to GVEs of the welded structure.
机译:由于受益结果不一致,在行业中对振动焊接的使用进行了谨慎处理。在此,通过整体振动效应(GVE)与局部振动效应(LVE)之间的区别提出了部分解释,并通过实验研究了后者。在一个实验装置中,使用手动气体金属电弧焊以两个频率/振幅组合焊接两个钢结构板,以确保仅使用LVE。焊接后,在不同的焊接区域中局部进行拉伸测试,显微硬度测试和冶金表征,并将结果与​​非振动焊接进行比较。在焊接样品的拉伸测试中实现了数字图像相关性(DIC)的新用途,从而能够分别确定同一焊缝的母材,热影响区和熔合区的局部机械性能。发现LVE至少在所研究的振动范围内不会促进焊接性能的任何明显差异。然而,根据几何形状和结构响应,可以解释振动焊接如何由于焊接结构的GVE而促进残余应力的释放。

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