母材Fe溶入量对CoCrFeMnNi高熵合金填充材料焊缝组织和性能的影响

    Effects of Dissolution Amount of Base Metal Fe on Microstructure and Properties of Welding Seam with CoCrFeMnNi High Entropy Alloy Filler

    • 摘要: 高熵合金由于其优异的组织性能被用于填充材料、过渡层材料和堆焊材料来改善焊缝或熔覆层的组织性能。采用20钢板和CoCrFeMnNi高熵合金焊丝,利用手工氩弧焊进行焊接。通过改变坡口类型和角度控制母材Fe的溶入量,对其物相、组织和性能进行探究。结果表明:焊缝晶粒形态为粗大柱状晶形态。当Fe溶入量低于35.7%时,焊缝相结构保持(FCC)面心立方结构。随着Fe溶入量的进一步增加,焊缝的相结构从FCC向FCC+BCC(体心立方)和BCC转变。焊缝的性能实验表明,具有单一FCC结构的焊缝,其硬度和韧性基本保持不变,但随着焊缝中BCC的出现,焊缝的硬度增加,韧性下降。与填充材料CoCrFeMnNi分析对比发现,硬度主要取决于其相结构,而韧性除了相结构外,还与组织的晶粒形态和大小有关。

       

      Abstract: High entropy alloy is used as filler, transition layer and surfacing material to improve the microstructure and properties of weld or cladding layer because of its excellent microstructure and properties. 20 steel plate was welded by CoCrFeMnNi manual argon arc welding with high entropy alloy welding wire. By changing the groove type and angle, the dissolution amount of base metal Fe was controlled, and its phase, microstructure and properties were explored. The results show that the weld grain morphology is coarse columnar crystal morphology. When the Fe content is less than 35.7%, the phase structure of the weld keeps the FCC face-centered cubic structure. With the further increase of Fe dissolution, the phase structure of the weld changes from FCC to FCC+BCC (body-centered cube) and BCC. The performance test of the weld shows that the hardness and toughness of the weld with a single FCC structure remain basically unchanged, but with the appearance of BCC in the weld, the hardness of the weld increases and the toughness decreases. Compared with the analysis of CoCrFeMnNi, it is found that the hardness mainly depends on its phase structure, while the toughness is related to the grain shape and size of the structure besides the phase structure.

       

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