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Welding of thick austenitic stainless steel using Nd:yttrium-aluminum-garnet laser with filler wire and hybrid process

机译:Nd:钇铝石榴石激光与填充丝焊接厚奥氏体不锈钢及混合工艺

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摘要

Autogenous laser welding has shown many advantages over traditional welding methods in numerous applications. However, there could be even more applications, but due to the power levels of present high power lasers, depth of penetration is limited. One way to overcome this limitation is to use multipass laser welding, in which a narrow gap and a filler wire are applied. By this process thick sections can be welded with a smaller heat input and therefore with smaller distortions, and the process seems to be very effective compared to "traditional" welding methods. Another way to increase penetration and fill the groove is by using the so-called hybrid process, in which laser and GMAW are combined. In this study thick section austenitic stainless steel is welded using a multipass technique with filler wire, and also by utilizing a hybrid process. For narrow gap conditions, groove angles of 8°, 10°, and 12°, are used with a partially grooved V joint. Parameters (e.g, filler wire feeding, placement of wire, and arc) are varied. Results of the experiments are presented and phenomena of the process, as well as reasons for weld defects, are pointed out.
机译:自生激光焊接在许多应用中已显示出优于传统焊接方法的许多优势。但是,可能会有更多的应用,但是由于当前高功率激光器的功率水平,穿透深度受到限制。克服此限制的一种方法是使用多道激光焊接,其中应用了狭窄的缝隙和填充焊丝。通过这种方法,可以以较小的热量输入并因此以较小的变形来焊接较厚的部分,与“传统”焊接方法相比,该方法似乎非常有效。增加穿透力和填充凹槽的另一种方法是使用所谓的混合工艺,其中将激光和GMAW结合在一起。在这项研究中,厚截面奥氏体不锈钢是使用多遍技术和填充焊丝焊接而成的,而且还采用了混合工艺。对于狭窄的间隙条件,带有部分凹槽的V型接头的凹槽角度为8°,10°和12°。参数(例如,填充焊丝进给,焊丝放置和电弧)是变化的。介绍了实验结果,指出了该过程的现象以及焊缝缺陷的原因。

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