da Cunha Tiago Vieira, Bohórquez Carlos Enrique Niño
UFSC, CEM - Centro de Engenharias da Mobilidade, Rua Prudente de Morais, 406, 89218-000 Joinville, Santa Catarina, Brazil.
UFSC, EMC - Departamento de Engenharia Mecânica, Caixa Postal 476, Campus Universitário, Trindade, 88040-900 Florianópolis, Santa Catarina, Brazil.
Ultrasonics. 2015 Feb;56:201-9. doi: 10.1016/j.ultras.2014.10.007. Epub 2014 Oct 12.
During the last decade, the introduction of ultrasound techniques in arc welding with the intention of improving the operational performance and technical characteristics of the welding processes have been studied intensively. In this work is presented a broad review of the literature surrounding the utilization of this technique. Firstly, we discuss the use of traditional mechanical transducers to generate ultrasound in arc welding. Furthermore, we describe the various methods and their application in arc-welding processes. After, is presented a recent method of introducing ultrasonic energy in arc welding, which forms a potential alternative to the use of traditional mechanical type transducers. This method was originally developed in the late 1990s and is called arc with ultrasonic excitation of current. Here, the arc acts not only as a thermal source but also as an emission mechanism for ultrasound, acting directly on the weld pool. We presented and discussed various innovative concepts based on this method, which allows the introduction of ultrasonic energy in the arc welding without the need of any auxiliary device of welding. In addition, we also presented the variations of this method reported in the literature. Finally, we have described the respective effects attributed to the use of this method in the welding of different materials using various welding processes.
在过去十年中,为了提高焊接工艺的操作性能和技术特性,人们对将超声技术引入弧焊进行了深入研究。本文对围绕该技术应用的文献进行了广泛综述。首先,我们讨论了在弧焊中使用传统机械换能器来产生超声波的情况。此外,我们描述了各种方法及其在弧焊工艺中的应用。之后,介绍了一种在弧焊中引入超声能量的最新方法,该方法是传统机械型换能器使用的一种潜在替代方案。这种方法最初是在20世纪90年代末开发的,被称为电流超声激发电弧。在这里,电弧不仅作为热源,还作为超声波的发射机制,直接作用于熔池。我们展示并讨论了基于该方法的各种创新概念,这些概念允许在弧焊中引入超声能量而无需任何焊接辅助设备。此外,我们还介绍了文献中报道的该方法的变体。最后,我们描述了在使用各种焊接工艺焊接不同材料时,该方法所产生的各自效果。