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    焊枪摆动幅度对304L不锈钢补强板TIG焊接接头组织和性能的影响

    Influence of Welding Torch Swing Amplitude on Microstructure and Properties of TIG Welded Jiont of 304L Stainless Steel Patch Plate

    • 摘要: 选用ER316L焊丝,采用自动钨极惰性气体保护(TIG)焊结合摆动焊接技术,在焊枪不同摆动幅度(2,3,4 mm)下对304L不锈钢进行补强板焊接试验,研究了摆动幅度对接头焊缝显微组织、物相组成、显微硬度和耐腐蚀性能的影响。结果表明:不同摆动幅度下接头焊缝的组织主要由γ-奥氏体和δ-铁素体组成;随着摆动幅度增加,γ相(111)晶面衍射峰强度降低,δ相(110)晶面衍射峰强度增加,较大摆动幅度(3,4 mm)下δ-铁素体以骨架状沿γ-奥氏体柱状晶/等轴晶的晶界分布。随着摆动幅度增加,由于δ-铁素体含量增加、γ-奥氏体含量减少且晶粒细化,焊缝硬度提高,自腐蚀电位减小,自腐蚀电流密度增大,耐腐蚀性能降低。

       

      Abstract: A patch plate welding test was carried out on 304L stainless steel by acctomatic tungsten inert gas (TIG) welding combined with swing welding under different swing amplitudes (2, 3, 4 mm) with ER316L welding wires. The influence of welding torch swing amplitude on the microstructure, phase composition, microhardness, and corrosion resistance of weld seam of the joint was investigated. The results show that the microstructure of weld seam of the joint under different swing amplitudes was mainly composed of γ-austenite and δ-ferrite. With the increase of swing amplitude, the diffraction peak intensity of (111) crystal plane of γ phase decreased, and the diffraction peak intensity of (110) crystal plane of δ phase increased. Under large swing amplitudes (3, 4 mm), the δ-ferrite was distributed in a skeletal shape along the grain boundaries of the γ-austenite columnar crystal/equiaxed crystal. With the increase of swing amplitude, the content of δ-ferrite increased, the content of γ-austenite decreased and the grains of γ-austenite were refined, resulting in the increase of hardness of weld seam, the decrease of self corrosion potential, the increase of self corrosion current density, and the decrease of corrosion resistance.

       

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