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A novel approach to the chemical stabilization of gamma-irradiated ultrahigh molecular weight polyethylene using arc-discharge multi-walled carbon nanotubes

机译:一种利用电弧放电多壁碳纳米管化学稳定γ辐照的超高分子量聚乙烯的新方法

摘要

A complete study was made of the stabilization of gamma-irradiated ultrahigh molecular weight polyethylene (UHMWPE) using arc-discharge multi-walled carbon nanotubes (MWCNTs) as inhibitors of the oxidative process. MWCNTs were efficiently incorporated into the polymer matrix by ball milling and thermo-compression processes at concentrations up to 5 wt% and subsequently gamma irradiated at 90 kGy. Raman spectroscopy demonstrated the generation of radicals on the walls of the MWCNTs and that the G/D ratio was altered by their generation. The same spectra showed interactions between the polymer chains as a series of shifts are observed in the UHMWPE bands. The effect of the MWCNTs as inhibitors for the oxidative process of the UHMWPE was evaluated by means of Electron Spin Resonance (ESR) and Fourier Transformed Infrared Spectroscopy (FTIR). ESR detection of the radiation-induced radicals proved the radical scavenger behaviour of MWCNTs. FTIR measurements were performed to ascertain the influence of the irradiation and of the accelerated ageing protocol in the oxidation index of the polymer and the composites. The results pointed to the positive contribution of the MWCNTs in increasing the oxidative stability of the composite when compared to pure UHMWPE. A comparison is made between composites obtained using MWCNTs produced by the carbon vapour deposition and arc-discharge methods. © 2013 Springer Science+Business Media New York.
机译:使用电弧放电多壁碳纳米管(MWCNT)作为氧化过程的抑制剂,对γ射线辐照的超高分子量聚乙烯(UHMWPE)的稳定性进行了完整的研究。 MWCNT通过球磨和热压工艺以高达5 wt%的浓度有效地掺入到聚合物基体中,随后以90 kGyγ辐射。拉曼光谱证明了在MWCNT壁上自由基的产生,并且G / D比随它们的产生而改变。相同的光谱显示聚合物链之间的相互作用,因为在UHMWPE谱带中观察到一系列位移。通过电子自旋共振(ESR)和傅立叶变换红外光谱(FTIR)评估了MWCNT作为UHMWPE氧化过程抑制剂的作用。 ESR检测辐射诱发的自由基证明了MWCNTs的自由基清除行为。进行FTIR测量以确定辐射和加速老化方案对聚合物和复合材料氧化指数的影响。结果表明,与纯UHMWPE相比,MWCNT在增加复合材料的氧化稳定性方面具有积极作用。比较了使用通过碳气相沉积和电弧放电方法生产的MWCNT获得的复合材料。 ©2013纽约Springer Science + Business Media。

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