首页> 外文期刊>Archives of Metallurgy and Materials >DOUBLE FILLET WELDING OF CARBON STEEL T-JOINT BY DOUBLE CHANNEL SHIELDING GAS METAL ARC WELDING METHOD USING METAL CORED WIRE
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DOUBLE FILLET WELDING OF CARBON STEEL T-JOINT BY DOUBLE CHANNEL SHIELDING GAS METAL ARC WELDING METHOD USING METAL CORED WIRE

机译:双通道屏蔽气金属电弧焊接方法采用金属芯焊丝双圆角焊接碳钢T关节焊接

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摘要

Low carbon steel material and T-joints are frequently used in ship building and steel constructions. Advantages such as high deposition rates, high quality and smooth weld metals and easy automation make cored wires preferable in these industries. In this study, low carbon steel materials with web and flange thicknesses of 6 mm, 8 mm and 10 mm were welded with conventional GMAW and double channel shielding gas metal arc welding (DMAG) method to form double fillet T-joints using metal cored wire. The difference between these two methods were characterized by measurements of mean welding parameters, Vickers hardness profiles, weld bead and HAZ geometry of the joints and thermal camera temperature measurements. When weld bead and HAZ geometries are focused, it was seen filler metal molten area increased and base metal molten area decreased in DMAG of low carbon steel. When compared with traditional GMAW, finer and acicular structures in weld metal and more homogenous and smaller grains in HAZ are obtained with double channel shielding gas metal arc welding.
机译:低碳材料和T关节经常用于船舶建筑和钢结构。高沉积速率,高质量和光滑的焊接金属和易于自动化等优点使得在这些行业中优选芯片。在本研究中,使用常规的GMAW和双通道屏蔽气体电弧焊接(DMAG)焊接带有6mm,8毫米和10mm的纤维纤维厚度的低碳钢材料,形成使用金属芯线的双圆角T关节形成双圆角T关节。 。这两种方法之间的差异是通过测量平均焊接参数,维氏硬度轮廓,接头和热相机温度测量的焊接珠和HAZ几何形状的测量。当焊接珠和HAZ几何形状聚焦时,可以看到填充金属熔融区域增加,低碳钢的DMAg中的基础金属熔融区域降低。与传统的GMAW相比,使用双通道屏蔽气体电弧焊接获得焊接金属中的更精细的和更均匀且较小的晶粒。

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