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Enhanced mechanical and wear properties of Al6061 alloy nanocomposite reinforced by CNT-template-grown core–shell CNT/SiC nanotubes

机译:CNT-模板生长核心壳CNT / SiC纳米管增强Al6061合金纳米复合材料的机械和磨损性能

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Novel one-dimensional template-grown coaxial SiC@carbon nanotubes (SiC@CNTs) were fabricated using a chemical vapor deposition method. To facilitate the formation of SiC on CNT template, a molecular-level mixing process was used to coat the surface of commercial multiwalled carbon nanotubes (MWCNTs) by Fe2O3. These Fe-CNTs were transformed into SiC@CNT nanotubes, which were then mixed with Al6061 alloy and consolidated by spark plasma sintering to obtain Al6061-SiC@CNT nanocomposites. The addition of 5 vol% SiC@CNT resulted in 58% enhancement in Young’s modulus and 46% enhancement in yield strength. Furthermore, the friction coefficient was reduced by 31% and the specific wear rate was reduced by 45%. The enhancement effect of Al6061-SiC@CNT on the mechanical and tribological properties was much greater than those of traditional nanoparticles, nanowires, and whiskers of SiCs. The extraordinary strengthening behavior of SiC@CNT, when compared with that of other SiC analogues, is attributed to the coaxial structure consisting of a SiC shell and CNT core. This coaxial structure enhanced the mechanical and tribological properties beyond that attainable with traditional SiC-derived reinforcements.
机译:使用化学气相沉积方法制造新型一维模板生长的同轴SiC @碳纳米管(SiC @ CNT)。为了促进CNT模板上的SiC的形成,使用分子水平混合过程通过Fe 2 O 3涂覆商业多壁碳纳米管(MWCNT)的表面。将这些FE-CNT转化为SiC @ CNT纳米管,然后将其与Al6061合金混合并通过火花等离子体烧结固结,得到Al6061-SiC @ CNT纳米复合材料。添加5 Vol%SiC @ CNT导致杨氏模量的增强58%,屈服强度的增强46%。此外,摩擦系数减少了31%,比磨损率降低了45%。 Al6061-SiC @ CNT对机械和摩擦学性质的增强效果远大于传统纳米粒子,纳米线和SICS的晶须。与其他SiC类似物的相比,SiC @ CNT的非凡的加强行为归因于由SiC壳和CNT核心组成的同轴结构。这种同轴结构增强了传统SIC衍生增强剂的机械和摩擦学性能。

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