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首页> 外文期刊>Intermetallics >Microstructure evolution in Ni and Ni-superalloy based metallic-intermetallic laminate (MIL) composites
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Microstructure evolution in Ni and Ni-superalloy based metallic-intermetallic laminate (MIL) composites

机译:基于Ni和Ni高温合金金属化层压材料(MIL)复合材料的微观结构演化

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摘要

Pure nickel and Nickel Alloy-X based Metallic-Intermetallic Laminate (MIL) composites were fabricated and investigated for their microstructure evolution, growth kinetics and microhardness distribution across the intermetallic/metal interfaces. Multi-phase layer structure with parabolic growth kinetics is shown in the nickel-based MIL composites. A two-phase eutectic layer along with a uniform layer form in the Alloy-X based MIL composites, which shows a mixed growth kinetic mechanism. The microhardness distribution across the intermetallic/metal interface of the two MIL composites was investigate with respect to the effects of texture and microstructure of the intermetallic phases. A simple intermetallic growth model is developed and validated for predicting the phase formation in binary or ternary reactions for synthesis of these MIL composites.
机译:制造纯镍和镍合金-X基于金属化合物 - 金属化层压材料(MIL)复合材料,并研究了整个金属间/金属界面的微观结构演化,生长动力学和显微硬度分布。 具有抛物线生长动力学的多相层结构示于基于镍基MIL复合材料。 两相共晶层以及均匀的层形式在合金-X基米合成材料中,其显示混合生长动力学机构。 两颗耳朵复合材料的金属间/金属界面上的显微硬度分布对于金属间相的纹理和微观结构的影响研究。 开发了简单的金属间生长模型,并验证用于预测二元或三元反应中的相形成,用于合成这些MIL复合材料。

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