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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Microstructure, mechanical property and oxidation property in Ni_3Si-Ni_3Ti-Ni_3Nb multi-phase intermetallic alloys
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Microstructure, mechanical property and oxidation property in Ni_3Si-Ni_3Ti-Ni_3Nb multi-phase intermetallic alloys

机译:Ni_3Si-Ni_3Ti-Ni_3Nb多相金属间合金的组织,力学性能和氧化性能

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摘要

Microstructure, high-temperature compressive and tensile deformation, and oxidation property of multi-phase intermetallic alloys, which were based on the Ni_3Si-Ni_3Ti-Ni_3Nb pseudo-ternary alloy system and composed of L1_2, D0_(24) and D0_a phases, were investigated. The microstructures of these multi-phase intermetallic alloys were largely dependent on alloy composition. The Widmansttaten-like Ni_3Ti(D0_(24)) phase was precipitated from L1_2 matrix by a solid-state reaction, accompanied with a certain orientation relationship and habit plane. The tensile stress as well as the tensile elongation of these multi-phase alloys increased with increasing Si content, i.e. the volume fraction of L1_2 phase in the wide range of test temperatures. Fifty parts per million boron addition to these multi-phase intermetallic alloys resulted in increased tensile stress and tensile elongation. It was found that the multi-phase intermetallic alloy with a high Si content had good oxidation resistance, accompanied with a continuous silicate layer. From an overall evaluation of the properties examined, it was shown that the multiphase intermetallic alloy that had a high Si content and was composed of L1_2 matrix dispersed by D0_(24) and D0_a phases had the most favorable properties as high-temperature mechanical and chemical materials.
机译:研究了基于Ni_3Si-Ni_3Ti-Ni_3Nb准三元合金体系并由L1_2,D0_(24)和D0_a相组成的多相金属间合金的显微组织,高温压缩和拉伸变形以及氧化性能。 。这些多相金属间合金的微观结构在很大程度上取决于合金成分。通过固相反应,从L1_2基体中析出了Widmansttaten状的Ni_3Ti(D0_(24))相,并具有一定的取向关系和惯性面。这些多相合金的拉伸应力以及拉伸伸长率随着Si含量(即在宽泛的测试温度范围内L1_2相的体积分数)的增加而增加。这些多相金属间合金中每百万硼中添加50份硼,导致拉伸应力和拉伸伸长率增加。发现具有高Si含量的多相金属间合金具有良好的抗氧化性,并伴随有连续的硅酸盐层。从所检查性能的整体评估中可以看出,Si含量高且由D0_(24)和D0_a相分散的L1_2基体组成的多相金属间合金具有最佳的高温机械和化学性能。材料。

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