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Argon-Hydrogen Shielding Gas Mixtures for Activating Flux-Assisted Gas Tungsten Arc Welding

机译:用于激活助焊剂气体钨极氩弧焊的氩氢保护气体混合物

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摘要

Using activating flux for gas tungsten arc welding (GTAW) to improve penetration capability is a well-established technique. Argon is an inert gas and the one most widely used as a shielding gas for GTAW. For the most austenitic stainless steels, pure argon does not provide adequate weld penetration. Argon–hydrogen mixtures give a more even heat input to the workpiece,increasing the arc voltage, which tends to increase the volume of molten material in the weld pool as well as the weld depth-to-width ratio. Great interest has been shown in the interaction between activating flux and the hydrogen concentration in an argon-based shielding gas. In this study, the weld morphology, the arc profile, the retained delta ferrite content, the angular distortion, and the microstructures were examined. The application of an activating flux combining argon and hydrogen for GTAW is important in the industry. The results of this study are presented here.
机译:使用活性焊剂进行气体钨极电弧焊(GTAW)来提高熔深能力是一项公认的技术。氩气是一种惰性气体,是最广泛用作GTAW的保护气体的一种。对于大多数奥氏体不锈钢,纯氩气无法提供足够的焊缝熔深。氩气与氢的混合物向工件提供的热量输入更加均匀,从而增加了电弧电压,这往往会增加焊缝池中熔融材料的量以及焊缝的宽宽比。人们对基于氩气的保护气体中的活化通量和氢浓度之间的相互作用表现出极大的兴趣。在这项研究中,检查了焊缝形态,电弧轮廓,保留的δ铁素体含量,角度畸变和微观结构。在GTAW中应用结合氩气和氢气的活化剂在工业中很重要。这项研究的结果在这里介绍。

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