首页> 外文会议>International Symposium on Metastable and Nano-Materials(ISMANAM-2005); 20050703-07; Paris(FR) >Aluminum-graphite composite produced by mechanical milling and hot extrusion
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Aluminum-graphite composite produced by mechanical milling and hot extrusion

机译:机械研磨和热挤压生产的铝-石墨复合材料

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Aluminum-graphite composites were produced by mechanical milling followed by hot extrusion. Graphite content was varied between 0 and 1 wt.%. Al-graphite mixtures were initially mixed in a shaker mill without ball, followed by mechanical milling in a High-energy simoloyer mill for 2 h under argon atmosphere. Milled powders were subsequently pressed at ~950 MPa for 2 min, and next sintered under vacuum for 3 h at 823 K. Finally, sintered products were held for 0.5 h at 823 K and hot extruded using indirect extrusion. Tension and compression tests were carried out to determine the yield stress and maximum stress of the materials. We found that the mechanical resistance increased as the graphite content increased. Microstructural characterization was done by transmission electron microscopy. Al-O-C nanofibers and graphite nanoparticles were observed in extruded samples by transmission electron microscopy. These nanoparticles and nanofibers seemed to be responsible of the reinforcement phenomenon.
机译:铝-石墨复合材料是通过机械研磨然后进行热挤压生产的。石墨含量在0至1重量%之间变化。首先在没有球的振动磨中混合铝-石墨混合物,然后在氩气气氛下在高能模拟磨机中机械研磨2小时。研磨后的粉末随后在约950 MPa的压力下压制2分钟,然后在823 K的真空下烧结3 h。最后,将烧结的产品在823 K的温度下保持0.5 h,然后使用间接挤出进行热挤出。进行拉伸和压缩测试以确定材料的屈服应力和最大应力。我们发现机械阻力随着石墨含量的增加而增加。显微结构表征是通过透射电子显微镜进行的。通过透射电子显微镜在挤出的样品中观察到Al-O-C纳米纤维和石墨纳米颗粒。这些纳米颗粒和纳米纤维似乎是增强现象的原因。

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