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首页> 外文期刊>Science and Technology of Welding and Joining >Laser dissimilar weldability of cast and rolled CoCrFeMnNi high-entropy alloys for cryogenic applications
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Laser dissimilar weldability of cast and rolled CoCrFeMnNi high-entropy alloys for cryogenic applications

机译:铸造和轧制COCRFEMNNI高熵合金的激光不同可焊性,用于低温应用

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This study investigates the effects of welding velocity on weldability of dissimilar cast/rolled high-entropy alloys and the applicability of cryogenic temperatures. Cast HEA side of dissimilar weld metal (WM) indicates a larger dendrite packet and dendrite arm spacing (DAS) than rolled WM. Size difference is associated with epitaxial growth from each base metal (BM). As the welding velocity increases (6-10 m min(-1)), shrinkage voids and DASs decreases. Dissimilar welds show tensile properties comparable to cast BM, where there are tensile fractures of dissimilar welds. Cryogenic properties of dissimilar welds are superior to those of room-temperature welds, because deformation twins and dislocation densities are significantly formed at 77 K. Therefore, dissimilar welds can be applied to the production of cryogenic products.
机译:本研究研究了焊接速度对不同铸造/轧制高熵合金的可焊性的影响及低温温度的适用性。 铸造焊接金属(WM)的铸造Hea侧表明较大的树突包和树突式臂间距(DAS)比轧制的WM。 大小差异与来自每个贱金属(BM)的外延生长有关。 随着焊接速度增加(6-10米MIN(-1)),收缩空隙和DAS减小。 不同的焊缝显示与铸造BM相当的拉伸性能,其中存在不同的焊缝的拉伸骨折。 不同焊缝的低温性质优于室温焊缝,因为在77k时显着形成了变形双胞胎和位错密度。因此,可以将不同的焊缝应用于低温产品的生产。

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