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首页> 外文期刊>Journal of Materials Processing Technology >Effects of interlaminar microstructural inhomogeneity on mechanical properties and corrosion resistance of multi-layer fiber laser welded high strength low alloy steel
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Effects of interlaminar microstructural inhomogeneity on mechanical properties and corrosion resistance of multi-layer fiber laser welded high strength low alloy steel

机译:层间微观结构不均匀性对多层光纤焊接高强度低合金钢机械性能和耐腐蚀的影响

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摘要

The T-joints of high strength low alloy steel with 14 mm were made by fiber laser welding. Full penetrated welded joints without visible flaws such as pores, cracks and lack of fusion was obtained. The former weld was remelted and heat treated by the latter weld during multi-layer welding, which resulted in microstructure transformation and performance variation of the welded joint. The heat treatment caused by the latter welding process lead to not only grain growth but also carbide precipitation within the former weld and the heat-affected laser weld with inhomogeneous microstructures was formed in the interlaminar zone. Microhardness of the heat affected laser weld was lower than that of the unaffected laser weld and reduced from the phase transformation line to the re-fusion line. The microstructural inhomogeneity of the interlaminar zone was regarded as the main reason of the microhardness variation and the uneven residual stresses distribution within the heat-affected zone was considered to be a secondary reason of this phenomenon. The corrosion resistance of the welded joint was better than that of the rolled base metal and the inhomogeneous microstructures resulted in the potential difference which exacerbated the electrochemical reaction and weakened the corrosion resistance of the welded joint.
机译:通过纤维激光焊接制造具有14毫米的高强度低合金钢的T关节。没有得到可见缺陷的完全穿透焊接接头,例如毛孔,裂缝和缺乏融合。在多层焊接期间,通过后一焊接进行重熔和热处理前焊接,导致焊接接头的微观结构变换和性能变化。由后一焊接过程引起的热处理不仅导致谷物生长,而且在前焊接内的碳化物沉淀和具有不均匀微观结构的热影响的激光焊接形成。热影响激光焊缝的显微硬度低于未受影响的激光焊接,并从相变线降低到再融合线。 Interlaminar区的微观结构的不均匀性被认为是微硬度变化的主要原因,并且热影响区域内的不均匀残余应力分布被认为是这种现象的二级原因。焊接接头的耐腐蚀性优于轧制基底金属的耐腐蚀性,并且不均匀的微观结构导致潜在的差异,使电化学反应加剧并削弱了焊接接头的耐腐蚀性。

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