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首页> 外文期刊>Journal of Materials Engineering and Performance >Mechanical Properties of Mechanical Alloyed and Spark Plasma Sintered NiAl-Based Intermetallic Composites
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Mechanical Properties of Mechanical Alloyed and Spark Plasma Sintered NiAl-Based Intermetallic Composites

机译:机械合金和火花等离子体烧结Nial类金属间复合材料的力学性能

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摘要

The mechanical and microstructural properties of NiAl-based intermetallic composites reinforced with graphene nanoplates (GNPs) were investigated. Three different graphene contents, 0.5, 1 and 1.5 wt.%, were considered to investigate its effect on the nanocomposite properties produced by mechanical alloying and spark plasma sintering. The results showed that in the presence of graphene, the bending strength improved by almost 52.7% compared to the pure NiAl due to homogenous distribution of GNPs, the grain refinement and strength of the graphene. Among all the produced samples, NiAl-1 wt.% GNPs exhibit the highest mechanical and microstructural properties such as toughness (6.21 GPa root m), microhardness (6.71 GPa) and bending strength (83.88 +/- 4 MPa). The perovskite phase (Ni3AlC0.5) was formed by increasing the graphene up to 1.5 wt.%, which reduced the mechanical properties compared to the other samples.
机译:研究了石墨烯纳米板(GNP)增强NiAl基金属间化合物复合材料的力学性能和微观结构。研究了三种不同石墨烯含量(0.5、1和1.5 wt.%)对机械合金化和放电等离子烧结制备的纳米复合材料性能的影响。结果表明,在石墨烯存在下,由于GNP的均匀分布、石墨烯的晶粒细化和强度,与纯NiAl相比,弯曲强度提高了近52.7%。在所有生产的样品中,NiAl-1 wt.%GNPs表现出最高的机械和微观结构性能,如韧性(6.21 GPa根m)、显微硬度(6.71 GPa)和弯曲强度(83.88+/-4 MPa)。钙钛矿相(Ni3AlC0.5)是通过将石墨烯增加到1.5 wt.%而形成的,与其他样品相比,这降低了机械性能。

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