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Effect of Amplitude Oscillation on Spiking in Electron Beam Welding of Copper Plate

机译:振幅振动对铜板电子束焊接的尖峰

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Both electron and laser beam welding are gaining importance and popularity due to their inherent advantages like high heat density, low heat affected area and fewer defects compared to traditional fusion welding. However, spiking defect is the most common in these high-power densities welding, where both melting and evaporation participate in the fusion process. Spiking is an instantaneous non-uniform rise in bead penetration throughout the joint, which can seriously affect the properties and strength of the joint. These defects can lead to premature failure of the welded components. Oscillation of electron beam could be an effective method to improve the welding fusion and solidification, so to eliminate defects in the weld. Here, the electron beam welding of highly conductive ETP-Cu alloy plate was conducted by varying the amplitude of oscillation. Spiking phenomenon was represented as the standard deviation of penetration in the study. Electron beam used without oscillation yielded the minimum spiking and the same was seen to increase with increase of amplitude of oscillation. It was found that spiking is mostly dependent on keyhole stability. It could also be concluded that an optimum combination of oscillation parameters is necessary to minimize the spiking phenomena in copper weld.
机译:由于与传统的熔焊相比,电子和激光束焊接均采用高热密度,低热受影响面积和较少的缺陷,所以具有重要性和普及。然而,尖峰缺陷在这些高功率密度焊接中最常见,其中熔化和蒸发都参与融合过程。尖峰是整个关节整个关节的脱珠渗透的瞬时不均匀的升高,这可能严重影响关节的性质和强度。这些缺陷可能导致焊接部件的过早失效。电子束的振荡可能是改善焊接融合和凝固的有效方法,从而消除焊缝中的缺陷。这里,通过改变振荡的振荡来进行高导电ETP-Cu合金板的电子束焊接。尖峰现象被认为是研究中渗透的标准偏差。在没有振荡的情况下使用的电子束产生最小尖刺,并且随着振荡幅度的增加而增加,相同。发现尖峰主要取决于锁孔稳定性。还可以得出结论,振荡参数的最佳组合是最小化铜焊缝中的尖峰现象所必需的。

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