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NICKEL-BASED SUPERALLOYS AND ADDITIVE MANUFACTURING PROCESSES USING NICKEL-BASED SUPERALLOYS

机译:镍基超级合金和使用镍基超级合金的增材制造过程

摘要

Nickel-based superalloys and additive manufacturing processes using nickel-based superalloys are disclosed herein. For example, a nickel-based superalloy includes, on a weight basis of the overall superalloy: about 9.5% to about 10.5% tungsten, about 9.0% to about 11.0% cobalt, about 8.0% to about 8.8% chromium, about 5.3% to about 5.7% aluminum, about 2.8% to about 3.3% tantalum, about 0.3% to about 1.6% hafnium, about 0.5% to about 0.8% molybdenum, about 0.005% to about 0.04% carbon, and a majority of nickel. Exemplary additive manufacturing processes include subjecting such a nickel-based superalloy in powdered build material form to a high energy density beam in an additive manufacturing process to selectively fuse portions of the build material to form a built component and subjecting the built component to a finishing process to precipitate a gamma-prime phase of the nickel-based superalloy.
机译:本文公开了镍基高温合金和使用镍基高温合金的增材制造工艺。例如,基于镍的高温合金,以全部高温合金的重量计,包括:约9.5%至约10.5%的钨,约9.0%至约11.0%的钴,约8.0%至约8.8%的铬,约5.3%至5%的铬。约5.7%的铝,约2.8%至约3.3%的钽,约0.3%至约1.6%的,、约0.5%至约0.8%的钼,约0.005%至约0.04%的碳和大部分镍。示例性的增材制造工艺包括在增材制造工艺中使这种粉末状建筑材料形式的镍基超合金经受高能量密度束,以选择性地融合建筑材料的一部分以形成建筑部件,并使建筑部件经受精加工工艺。沉淀出镍基高温合金的γ′相。

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