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Laser beam weld-metal microstructure in a yttrium modified directionally solidified Ni_3Al-base alloy

机译:钇修饰定向凝固Ni_3Al基合金的激光束焊接金属显微组织

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摘要

The microstructure of laser beam weld-metal of an yttrium doped directionally solidified alloy IC 6A, with chemical composition Ni-16Al- 8.5Mo-0.12B-0.05C-0.03Y (at. percent) was studied. The dendritic microsegregation observed within the fusion zone indicated that dendrite cores were slightly depleted in molybdenum and aluminum and the interdendritic regions were also considerably enriched in yttrium. Severe cracking in the weld-metal was observed and was found to be closely associated with interdendritic eutectic-type microconstituents identified as consisting of gamma, gamma' and Ni-Mo phases. An yttrium-rich phase (Ni_3Y) was observed in some interdendritic regions containing the eutectic gamma, gamma' and Ni- Mo products. Their formation was discussed in relation to plausible microsegregation induced alteration of primary solidification path during cooling from welding temperatures.
机译:研究了化学成分为Ni-16Al- 8.5Mo-0.12B-0.05C-0.03Y(原子百分比)的掺钇定向凝固合金IC 6A激光束焊接金属的显微组织。在熔合区内观察到的树枝状微偏析表明,钼和铝中的树枝状晶核略微耗尽,并且钇中的树枝状晶间区域也大量富集。在焊缝金属中观察到严重裂纹,并发现与确定为由γ,γ′和Ni-Mo相组成的枝晶间共晶型微成分密切相关。在一些包含共晶γ,γ'和Ni-Mo产物的树突间区域中观察到富钇相(Ni_3Y)。讨论了它们的形成与可能的微观偏析引起的从焊接温度冷却过程中一次凝固路径的改变。

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