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Laser-Arc Hybrid Welding of 321 Stainless Steel: Structure and Microhardness of Weld Metal

机译:321不锈钢激光弧混合焊接:焊接金属的结构和微硬度

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Laser-arc hybrid welding of 321 stainless steel is performed in order to reveal patterns of weld structure formation. Due to the combined influence of two heat sources during the welding process, it is possible to weld thick sheets in one pass. But when welding thick-walled structures there are difficulties due to the occurrence of defects in the depth of the weld, unstable delivery of additive material to the root of the weld. In this work, 321 stainless steel with a thickness of 10 mm was used, without edge preparation. The additive material corresponded to the chemical composition of the alloy to be welded. Great attention is paid to the uneven distribution of microhardness in the weld metal. It is shown that the microhardness decreases gradually to the root of the weld. Also, the shape of the welded joint obtained by laser-arc hybrid welding was investigated in comparison with microhardness data. An attempt was made to describe the thermal history of the laser-arc hybrid welding process on the basis of microhardness measurements inside the weld.
机译:进行321个不锈钢的激光 - 电弧混合焊接,以揭示焊接结构形成的图案。由于两个热源在焊接过程中的综合影响,可以在一次通道中焊接厚的薄片。但是,当焊接厚壁的结构时,由于焊接深度的缺陷发生,焊接不稳定递送到焊缝根部的缺陷,存在困难。在这项工作中,使用厚度为10mm的321个不锈钢,无边缘制备。添加剂材料对应于待焊接的合金的化学成分。焊接金属中微硬度的不均匀分布支付了极大的关注。结果表明,微硬度逐渐降低到焊缝的根部。而且,与微硬度数据相比,研究了通过激光 - 电弧杂交焊接获得的焊接接头的形状。尝试在焊缝内部的微硬度测量的基础上描述激光 - 电弧混合焊接过程的热历史。

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