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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Effects of nitrogen and hydrogen in argon shielding gas on bead profile, delta-ferrite and nitrogen contents of the pulsed GTAW welds of AISI 316L stainless steel
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Effects of nitrogen and hydrogen in argon shielding gas on bead profile, delta-ferrite and nitrogen contents of the pulsed GTAW welds of AISI 316L stainless steel

机译:氩气保护气体中的氮气和氢气对AISI 316L不锈钢脉冲GTAW焊缝的焊道轮廓,δ铁素体和氮气含量的影响

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摘要

The general effects of 1, 2, 3 and 4 vol.-% nitrogen and 1, 5 and 10 vol.-% hydrogen in argon shielding gas on weld bead profile (depth/width ratio: D/W) and the delta-ferrite content of AISI 316L pulsed GTAW welds were investigated. The limits for imperfections for the quality levels of welds were based on ISO 5817 B. The plates with a thickness of 6 mm were welded at the flat position and the bead on plate. Increasing hydrogen content in argon shielding gas increases the D/W ratio. Excessive hydrogen addition to argon shielding gas will result in incompletely filled groove and excessive penetration of weld. Increasing welding speed decreases the weld-metal volume and the D/W ratios. Nitrogen addition to argon shielding gas has no effect on the D/W ratio. The addition of a mixture of nitrogen and hydrogen to argon shielding gas on the D/W ratio does not show any interaction between them. An effect on the D/W ratio can be exclusively observed as a function of hydrogen content. Increasing hydrogen content in argon shielding gas increases the d-ferrite content of weld metal. Increasing either nitrogen content in shielding gas or welding speed decreases the d-ferrite content of weld metal. The nitrogen addition increases the weld metal nitrogen content, however, the hydrogen addition leads to a decrease of weld metal nitrogen content.
机译:氩气保护气体中1、2、3和4体积%的氮以及1、5和10体积%的氢对焊缝轮廓(深度/宽度比:D / W)和δ-铁素体的一般影响研究了AISI 316L脉冲GTAW焊缝的含量。焊缝质量等级的缺陷限值基于ISO 5817B。将厚度为6 mm的钢板在平坦位置焊接,并将焊缝焊接在钢板上。氩气保护气体中氢含量的增加会增加D / W比。氩气保护气体中氢的过量添加将导致不完全填充焊缝和焊缝过度熔透。提高焊接速度会降低焊接金属量和D / W比。将氮气添加到氩气保护气体中对D / W比没有影响。以D / W比向氮气保护气体中添加氮气和氢气的混合物不会显示出它们之间的任何相互作用。可以仅观察到对D / W比的影响作为氢含量的函数。氩气保护气体中氢含量的增加会增加焊接金属的d铁素体含量。增加保护气体中的氮含量或增加焊接速度会降低焊接金属的d铁素体含量。氮的添加增加了焊接金属的氮含量,但是氢的添加导致了焊接金属的氮含量的降低。

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