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Contrastive Studies between Laser Repairing and Plasma Arc Repairing on Single-Crystal Ni-Based Superalloy

机译:单晶镍基高温合金激光修复与等离子弧修复的对比研究

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Laser repairing and plasma arc repairing experiments on the single-crystal Ni-based superalloy DD407(Ni-7.82Cr-5.34Co-2.25Mo-4.88W-6.02Al-1.94Ti-3.49Ta in wt.%) were carried out in this paper, and the differences in microstructures and mechanical properties varying with depth between the two repairing methods were studied. Comparing the two repairing processes, both the fusion zone can maintain single-crystal epitaxial growth with no significant cracks and have similar fine γ′ precipitates. Nevertheless, the columnar-to-equiaxed transition phenomenon occurred on the top of the fusion zone during the laser re-melting process but was not very obvious on the top surface of the fusion zone during the plasma arc re-melting process. In addition, both the DD407 superalloy conducted with the two repairing processes had a large microhardness and a great Young’s modulus in the fusion zone.
机译:在此对单晶镍基高温合金DD407(Ni-7.82Cr-5.34Co-2.25Mo-4.88W-6.02Al-1.94Ti-3.49Ta以重量%计)进行激光修复和等离子弧修复实验。研究了两种修复方法在微观结构和力学性能上随深度变化的差异。比较这两个修复过程,两个融合区都可以保持单晶外延生长,没有明显的裂纹,并且具有相似的细小γ'析出物。尽管如此,在激光重熔过程中,柱状到等轴的过渡现象发生在熔融区的顶部,而在等离子弧重熔过程中,熔融区的顶面却不是很明显。此外,通过两种修复工艺进行的DD407合金都具有很大的显微硬度,并且在熔合区具有很高的杨氏模量。

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