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Effects of Inert Nanoparticles of High-Melting-Point Compositions on Grain Structure and Strength of Ni3Al Intermetallic Compounds

机译:高熔点组成惰性纳米粒子对Ni3Al金属间化合物晶粒结构及强度的影响

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The paper represents experimental findings both in the area of effects of nanoparticles of inert high-melting-point TiN compounds on a Ni3Al intermetallic grain structure creation in the conditions of high temperature synthesis under pressure, and in the area of impact of grain structure modification on intermetallic compounds' strength factor temperature dependence. It was demonstrated that appending a stoichiometric composition of nanosized particles of high-melting-point inert chemical compounds (TiN) initiates a many-fold loss of average size of grain of Ni3Al intermetallic compounds, synthesized under pressure, as well as a sufficient intermetallic compounds' strength rise within a wide range of temperatures (up to 1 000 degree C). Electron-microscopic evaluations of a synthesized intermetallic structure with TiN nanoparticles, showed that, during the process of intermetallic polycrystalline structure creation from high temperature synthesis products melts, TiN nanoparticles are mainly spread throughout the boundaries and joints of grain structure, acting as stoppers of grain boundaries migration.
机译:本文代表惰性高熔点锡化合物纳米颗粒在高温合成条件下纳米金属间晶粒结构在压力下的条件下产生的影响的实验结果,以及谷粒结构改性的影响领域金属间化合物的强度因子温度依赖性。据证明,纳米化颗粒的高熔点惰性化合物(TiN)的化学计量组成引发了在压力下合成的Ni3Al金属间化合物的平均粒径的多倍损失,以及足够的金属间化合物'强度升高,温度范围内(高达1 000度C)。用锡纳米粒子的合成金属间结构的电子 - 微观评价显示,在高温合成产物熔体中形成的金属间多晶结构的过程中,锡纳米粒子主要分布在整个晶粒结构的边界和关节,作为晶粒的塞子边界迁移。

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