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Effect of acoustic field parameters on arc acoustic binding during ultrasonic wave-assisted arc welding

机译:超声辅助电弧焊过程中声场参数对电弧声结合的影响

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摘要

As a newly developed arc welding method, power ultrasound has been successfully introduced into arc and weld pool during ultrasonic wave-assisted arc welding process. The advanced process for molten metals can be realized by utilizing additional ultrasonic field. Under the action of the acoustic wave, the plasma arc as weld heat source is regulated and its characteristics make an obvious change. Compared with the conventional arc, the ultrasonic wave-assisted arc plasma is bound significantly and becomes brighter. To reveal the dependence of the acoustic binding force on acoustic field parameters, a two-dimensional acoustic field model for ultrasonic wave-assisted arc welding device is established. The influences of the radiator height, the central pore radius, the radiator radius, and curvature radius or depth of concave radiator surface are discussed using the boundary element method. Then the authors analyze the resonant mode by this relationship curve between acoustic radiation power and radiator height. Furthermore, the best acoustic binding ability is obtained by optimizing the geometric parameters of acoustic radiator. In addition, three concave radiator surfaces including spherical cap surface, paraboloid of revolution, and rotating single curved surface are investigated systematically. Finally, both the calculation and experiment suggest that, to obtain the best acoustic binding ability, the ultrasonic wave-assisted arc welding setup should be operated under the first resonant mode using a radiator with a spherical cap surface, a small central pore, a large section radius and an appropriate curvature radius. (C) 2015 Elsevier B.V. All rights reserved.
机译:作为一种新开发的电弧焊方法,在超声波辅助电弧焊过程中,功率超声已成功地引入到电弧和焊缝池中。可以通过利用额外的超声场来实现熔融金属的先进工艺。在声波的作用下,作为焊接热源的等离子弧受到调节,其特性发生了明显变化。与常规电弧相比,超声波辅助电弧等离子体束缚得很明显,并且亮度更高。为了揭示声结合力对声场参数的依赖性,建立了超声波辅助电弧焊装置的二维声场模型。使用边界元方法讨论了散热器高度,中心孔半径,散热器半径以及曲率半径或凹面散热器表面深度的影响。然后,作者根据声辐射功率与辐射体高度之间的关系曲线分析共振模式。此外,通过优化声辐射器的几何参数可以获得最佳的声结合能力。另外,系统地研究了三个凹形辐射器表面,包括球形帽表面,旋转抛物面和旋转单个曲面。最后,计算和实验均表明,为了获得最佳的声结合能力,应在第一共振模式下使用带有球形盖表面,中心孔小,直径大的散热器的超声波辅助电弧焊接装置。截面半径和适当的曲率半径。 (C)2015 Elsevier B.V.保留所有权利。

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