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Nano Effects of Helium-plasma Treatment Nano-SiO_2 Sol-gel Coating UHMWPE Filaments

机译:氦等离子体处理纳米SiO_2溶胶-凝胶涂层超高分子量聚乙烯纤维的纳米效应

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摘要

The effects of helium-plasma treatment on tensile deformation of nano-SiO_2 sol-gel coating UHMWPE filaments (HONSUHMWPE) were studied and a new concept for the nano-structural interphase between fiber surface and nano-coating was provided. The tensile test results showed that in addition to the enhanced ductility of UHMWPE filaments by nano-SiO_2 sol-gel coating UHMWPE filaments treated by helium-plasma, the activation volumes of UHMWPE filaments untreated and treated with helium-plasma ranging from 1101.875 to 16603.07(nm)~3 by following Eyring's equation were important descriptors for the properties of the nano-structural interphase between fiber surface and nano-coating, From the results of SEM and FTIR, it was observed that the remarkable uniform dispersion of the nano-SiO_2 coating of the UHMWPE filaments modified with helium plasma not only introduced the activated functional groups, but also formed a protective layer on the fiber surfaces.
机译:研究了氦等离子体处理对纳米SiO_2溶胶凝胶涂层超高分子量聚乙烯长丝(HONSUHMWPE)拉伸变形的影响,为纤维表面与纳米涂层之间的纳米结构界面提供了新的概念。拉伸试验结果表明,除了通过氦等离子体处理的纳米SiO_2溶胶-凝胶涂覆的UHMWPE细丝增强了UHMWPE细丝的延展性之外,未经处理和用氦等离子体处理的UHMWPE细丝的活化体积为1101.875至16603.07(遵循Eyring方程的nm)〜3是纤维表面与纳米涂层之间纳米结构界面性质的重要描述,从SEM和FTIR的结果可以看出,纳米SiO_2涂层具有显着的均匀分散性氦等离子体改性的UHMWPE长丝中的一部分不仅引入了活化的官能团,而且还在纤维表面上形成了保护层。

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