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首页> 外文期刊>Journal of Applied Polymer Science >Cryogenic mechanical properties and failure mechanism of epoxy nanocomposites modified by multiwalled carbon nanotubes with tunable oxygen-containing groups on surface
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Cryogenic mechanical properties and failure mechanism of epoxy nanocomposites modified by multiwalled carbon nanotubes with tunable oxygen-containing groups on surface

机译:用可调谐碳纳米管改性环氧纳米复合材料的低温力学性能和失效机理,具有可调谐含氧基团的表面

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The surface chemistry and structure of multiwalled carbon nanotube (MWCNT) plays an important role in MWCNT/epoxy nanocomposites. In this contribution, oxidized multiwalled carbon nanotube (OMCNT) with tunable oxygen-containing groups is prepared by finely controlling oxidation time and centrifugal speeds. Effects of oxygen-containing group content on mechanical properties of the OMCNT/E51 epoxy nanocomposites at 77 K are investigated in detail. It reveals that oxygen-containing groups on the OMCNT surface contribute to significant increases in tensile strength and impact resistance of the OMCNT/E51 epoxy nanocomposites compared with those of the pristine MWCNT/E51 nanocomposites. A positive correlation between the oxygen-containing group content and interfacial properties of OMCNT and epoxy matrix is demonstrated by thermogravimetric analysis and fracture morphology, and homogeneous dispersion of the OMCNT in epoxy matrix is obtained with the increase of oxygen-containing groups on surface of the OMCNT. However, proper content of oxygen-containing groups is essential to OMCNT/E51 nanocomposites because excessive oxidation tends to make sever structural defects on the OMCNT and has a side effect on cryogenic mechanical properties of OMCNT/E51 nanocomposites.
机译:多壁碳纳米管(MWCNT)的表面化学和结构在MWCNT /环氧纳米复合材料中起重要作用。在该贡献中,通过细化氧化时间和离心速度来制备具有可调谐含氧基团的氧化多壁碳纳米管(OMCNT)。详细研究了含氧基团含量对OMCNT / E51环氧纳米复合材料的机械性能的影响。它揭示了与原始MWCNT / E51纳米复合材料相比,OMCNT表面上的含氧基团有助于显着增加的抗拉强度和OMCNT / E51环氧纳米复合材料的抗冲击性。通过热量分析和骨折形态证明了含氧基团含量和OMCNT和环氧基质的界面性质之间的阳性相关性,并且通过增加含氧基团的环氧基质中的OMCNT在环氧基质中的均匀分散omcnt。然而,适当的含氧基团的含量对于OMCNT / E51纳米复合材料是必不可少的,因为过量氧化趋于在OMCNT上产生严重的结构缺陷,并且对OMCNT / E51纳米复合材料的低温力学性能具有副作用。

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