首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Fabrication and Upsetting of A16061 Aluminum Metal Matrix Composite with Carbon Nanotube Reinforcement
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Fabrication and Upsetting of A16061 Aluminum Metal Matrix Composite with Carbon Nanotube Reinforcement

机译:碳纳米管增强A16061铝基复合材料的制备与Up锻。

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摘要

This study aims to examine the fabrication and upsetting of A16061 alloy reinforced by carbon nanotubes. The composite material that combines A16061 powder (5-30 μm) and multiwall carbon nanotubes (MWCNTs) after the dispersion process goes through the compaction at room temperature and sintering to fabricate the billet. In addition, the upsetting process is conducted to evaluate the mechanical properties of fabricated composite specimens and improve the relative density. As for the composite, MWCNTs of 1 and 3 % volume fraction are fabricated to compare with A16061 alloy. The billet is fabricated at room temperature at the pressure level of 300,450 and 600 MPa. It also goes through the sintering process (580. 600, 620 °C) in an argon gas atmosphere. CNT-A16061 composite shows a lower level of relative density than that of A16061 alloy in the same condition. To improve the relative density of the complex material, the upsetting process is added. The fabrication and characteristics of CNTs-A16061 composite are developed through the compaction at room temperature and through sintering and upsetting, with the mechanical properties being superior to those of A16061 alloy. As a result, the mechanical properties of the composite increase in proportion to the compaction pressure and sintering temperature. As the amount of MWCNTs increase, however, elongation decreases.
机译:这项研究旨在检查由碳纳米管增强的A16061合金的制造和up粗。在分散过程之后,将A16061粉末(5-30μm)和多壁碳纳米管(MWCNT)结合在一起的复合材料在室温下经历压实并烧结以制造坯料。另外,进行the锻工艺以评估制成的复合材料试样的机械性能并提高相对密度。对于复合材料,制备了体积分数为1%和3%的MWCNT,以与A16061合金进行比较。在室温下以300,450和600 MPa的压力水平制造坯料。它还在氩气气氛中经历了烧结过程(580. 600,620°C)。在相同条件下,CNT-A16061复合材料的相对密度水平低于A16061合金。为了提高复合材料的相对密度,增加了up粗工艺。 CNTs-A16061复合材料的制备和特性是通过在室温下压实,烧结和up锻来开发的,其机械性能优于A16061合金。结果,复合材料的机械性能与压实压力和烧结温度成比例地增加。然而,随着MWCNT的数量增加,伸长率降低。

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