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首页> 外文期刊>Journal of Materials Engineering and Performance >Welding of 316L Austenitic Stainless Steel with Activated Tungsten Inert Gas Process
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Welding of 316L Austenitic Stainless Steel with Activated Tungsten Inert Gas Process

机译:活性钨极惰性气体保护工艺焊接316L奥氏体不锈钢

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摘要

The use of activating flux in TIG welding process is one of the most notable techniques which are developed recently. This technique, known as A-TIG welding, increases the penetration depth and improves the productivity of the TIG welding. In the present study, four oxide fluxes (SiO2, TiO2, Cr2O3, and CaO) were used to investigate the effect of activating flux on the depth/width ratio and mechanical property of 316L austenitic stainless steel. The effect of coating density of activating flux on the weld pool shape and oxygen content in the weld after the welding process was studied systematically. Experimental results indicated that the maximum depth/width ratio of stainless steel activated TIG weld was obtained when the coating density was 2.6, 1.3, 2, and 7.8 mg/cm(2) for SiO2, TiO2, Cr2O3, and CaO, respectively. The certain range of oxygen content dissolved in the weld, led to a significant increase in the penetration capability of TIG welds. TIG welding with active fluxes can increase the delta-ferrite content and improves the mechanical strength of the welded joint.
机译:在TIG焊接过程中使用活性焊剂是最近开发的最著名的技术之一。这项技术称为A-TIG焊接,可增加熔深并提高TIG焊接的生产率。在本研究中,使用四种氧化物熔剂(SiO2,TiO2,Cr2O3和CaO)来研究活化剂对316L奥氏体不锈钢的长宽比和力学性能的影响。系统研究了活化剂涂层密度对焊接后焊缝形状和焊缝含氧量的影响。实验结果表明,当SiO2,TiO2,Cr2O3和CaO的涂层密度分别为2.6、1.3、2和7.8 mg / cm(2)时,可以获得不锈钢活化TIG焊的最大深度/宽度比。溶解在焊缝中的氧气含量在一定范围内,导致TIG焊缝的熔深能力显着提高。带有活性焊剂的TIG焊接可以增加铁素体含量,并提高焊接接头的机械强度。

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