首页> 外文期刊>Journal of Materials Processing Technology >Laser seal welding of end plug to thin-walled nanostructured high-strength molybdenum alloy cladding with a zirconium interlayer
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Laser seal welding of end plug to thin-walled nanostructured high-strength molybdenum alloy cladding with a zirconium interlayer

机译:端塞的激光密封焊接到薄壁纳米结构的高强度钼合金与锆中间层夹层

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摘要

The effects of micro-alloying method on microstructure and properties of laser-welded molybdenum alloy joints were investigated, and zirconium was selected as the additive material. In the fusion zone of the joint without zirconium addition, the segregation of MoO2 on the grain boundary were observed, leading to the brittle fracture of the joint. When zirconium ring was added into the fusion zone, ZrO2 was preferentially formed in the grain interior which alleviated the segregation of MoO2. The grains at fusion zone were refined under the effect of heterogeneous nucleation particles of ZrO2, thus it changes the fracture mechanism of welded joint from intergranular fracture to cleavage fracture. When zirconium foil was pre-placed at the overlapped interface of cladding tube and the end plug, a parasitic brazing zone was generated due to the high melting point and high thermal conductivity of molybdenum. Tensile strength of the welded joints matched that of the base metal. These results highlight possibilities for achieving high strength joints when joining refractory materials with intrinsic brittleness in complex joint configurations.
机译:上的微结构和激光焊接钼合金接头的性质微合金化方法的效果进行了调查,和锆中选择作为添加剂的材料。在不添加锆接头的熔合区,观察到的MoO2的晶界上偏析,导致关节的脆性断裂。当锆环加入到熔融部,氧化锆是优先形成,其中缓解的MoO2的偏析晶粒内部。在熔融部的晶粒的ZrO2异相成核粒子的作用下精炼,从而它改变从晶间断裂焊接接头的断裂机制,以解理断裂。当锆箔预先放置在包壳管和端塞的重叠接口,寄生钎焊区产生由于高熔点和钼的高导热性。匹配,所述母材的焊接接头的拉伸强度。这些结果凸显了在复杂的连接结构内在的脆性加入耐火材料时获得高强度的接头的可能性。

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