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首页> 外文期刊>Diamond and Related Materials >The influence of CNTs on the microstructure and strength of Al-CNT composites produced by flake powder metallurgy and hot pressing method
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The influence of CNTs on the microstructure and strength of Al-CNT composites produced by flake powder metallurgy and hot pressing method

机译:CNT对薄片冶金和热压方法产生的Al-CNT复合材料微观结构和强度的影响

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During the mechanical milling of powders for the production of metal matrix composites, the work hardening of metals occurs along with the distribution of reinforcing particles, which reduces the ductility and formability of the powders. The use of milling for a short time, in addition to creating homogeneity for reinforcing particles on the surface of flaky metal particles, causes less work-hardening of powders and allows better densification of composite powders. In this research, aluminum-carbon nanotubes (Al-CNT) nanocomposites were fabricated using flake powder metallurgy and hot pressing method. The homogeneous distribution of carbon nanotubes in the aluminum matrix and density close to the theoretical density were obtained through the manufacturing process. After the addition of carbon nanotubes, the grain size of matrix phase reduced from 106 nm to 56 nm in 4 vol% reinforcement. The increase of carbon nanotubes at 2 and 4 vol% increased the yield strength and compressive strength from 176 MPa and 201 MPa to 241 MPa and 251 MPa and reduced the fracture strain from 20% to 4%, respectively. The increased strength depends on the fine grains of the matrix phase, the proper distribution of carbon nanotubes and their strengthening effect.
机译:在机械研磨的粉末用于生产金属基质复合材料时,金属的工作硬化随着增强颗粒的分布而发生,这降低了粉末的延展性和可成形性。除了为甲基金属颗粒表面上产生加强颗粒的颗粒的均匀性之外,使用铣削的用途,导致粉末的较低工作硬化,并允许更好的复合粉末致密化。在该研究中,使用薄片粉末冶金和热压方法制造铝 - 碳纳米管(Al-CNT)纳米复合材料。通过制造方法获得铝基纳米管中的碳纳米管的均匀分布和靠近理论密度的密度。在添加碳纳米管后,基质相的晶粒尺寸在4体积%的增强中从106nm至56nm降低。在2和4体积%的碳纳米管的增加增加了从176MPa和201 MPa至241MPa和251MPa的屈服强度和压缩强度,并降低了来自&GT的裂缝菌株。分别为20%至4%。增加的强度取决于基质相的细粒,碳纳米管的适当分布及其强化效果。

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