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首页> 外文期刊>Inorganic materials: applied research >Influence of microalloying with rare earth metals and production technology of structural intermetallide alloy based on nickel aluminide on alloy properties
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Influence of microalloying with rare earth metals and production technology of structural intermetallide alloy based on nickel aluminide on alloy properties

机译:稀土金属微合金化及基于铝化镍的结构金属间化合物合金的生产工艺对合金性能的影响

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摘要

The influence of rare earth metals, such as praseodymium, neodymium, and erbium, and the technology of smelting a nickel aluminide alloy based on “clean” raw materials and using 25, 50, and 75 wt % of waste is investigated. It is found that doping with neodymium and/or erbium in the smelting of structural intermetallic nickel-based alloy increases the heat strength at a temperature of 1200°C and heat resistance at the temperatures of 1100 and 1200°C for 100 h at a weight gain from 1 m~2. Introducing a different percentage of waste during the smelting the intermetallic alloy results in a slight decrease in the heat resistance but preserves the same level of values when 25, 50, or 75 wt % of waste is included.
机译:研究了,钕和等稀土金属的影响,以及基于“清洁”原料并使用25、50和75 wt%的废料冶炼铝化镍合金的技术。发现在金属间化合物镍基合金的熔炼中掺入钕和/或会增加重量为1200°C时的热强度以及1100和1200°C时100h的耐热性从1 m〜2增益在熔融金属间合金过程中引入不同百分比的废料会导致耐热性略有下降,但当包含25%,50%或75%(重量)的废料时,仍保持相同的值。

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