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Effects of Electromagnetic Stirring on the Cast Austenitic Stainless Steel Weldments by Gas Tungsten Arc Welding

机译:电磁搅拌对钨极氩弧焊铸造奥氏体不锈钢焊件的影响

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Cast austenitic stainless steel (CASS) often contains high contents of silicon, phosphorus, and sulfur to prompt low melting phases to form in the welds. As a result, welding defects can be induced to degrade the welds. This study’s purpose was to investigate the effects of electromagnetic stirring (EMS) on the CASS weldments. The results showed that the ferrites in the heat affected zone (HAZ) had tortuous grain boundaries, while those that were close to the fusion lines had transformed austenites. EMS could reduce the influence of the welding heat to make the grain boundaries less tortuous and the transformed austenites smaller. Although their temperature profiles were almost the same, the gas-tungsten-arc-welding (GTAW) weld had smaller grains with massive ferrite colonies and more precipitates, while the GTAW+EMS weld had denser ferrite colonies with multi-orientations, but fewer precipitates. The hardness of the base metals and HAZs were typically higher than that of the welds. For both of the welds, the root was the region with the highest hardness. The hardness decreased from the root to the cap regions along the thickness direction. The GTAW weld had a higher hardness than the GTAW+EMS weld. At room temperature, the GTAW+EMS weld had a higher notched tensile strength and elongation than the GTAW weld. This could be attributed to the observation that the GTAW+EMS weld had dense and intersecting dendrites and that more austenites were deformed during tensile testing.
机译:铸造奥氏体不锈钢(CASS)通常包含高含量的硅,磷和硫,以促使在焊接中形成低熔点。结果,可以引起焊接缺陷以使焊接劣化。这项研究的目的是研究电磁搅拌(EMS)对CASS焊件的影响。结果表明,热影响区(HAZ)中的铁素体具有曲折的晶界,而靠近熔合线的铁素体则转变了奥氏体。 EMS可以减少焊接热的影响,使晶界不那么曲折,相变奥氏体更小。尽管它们的温度曲线几乎相同,但是气钨极氩弧焊(GTAW)焊缝具有较小的晶粒,具有大量铁素体菌落和更多的析出物,而GTAW + EMS焊缝具有较浓密的铁素体菌落,具有多个方向,但析出物较少。贱金属和热影响区的硬度通常高于焊缝。对于这两个焊缝,其根部都是硬度最高的区域。硬度沿厚度方向从根部到帽部区域降低。 GTAW焊缝比GTAW + EMS焊缝具有更高的硬度。在室温下,GTAW + EMS焊缝比GTAW焊缝具有更高的缺口抗拉强度和伸长率。这可能归因于以下观察结果:GTAW + EMS焊缝具有致密且相交的枝晶,并且在拉伸试验过程中有更多的奥氏体变形。

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