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The effects of high energy electron beam irradiation in air on accelerated aging and on the structure property relationships of low density polyethylene

机译:空气中高能电子束辐照对加速老化和低密度聚乙烯结构性能关系的影响

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The response of low density polyethylene (LDPE) to high energy electron beam irradiation in air (10 MeV) between 25 and 400 kGy was examined and compared to non-irradiated polyethylene in terms of the mechanical and structural properties. To quantify the degree of crosslinking, swelling studies were performed and from this it was observed that the crosslink density increased as the irradiation dose increased. Furthermore, a reduction was observed in the numerical data for molar mass between adjacent crosslinks and the number of monomeric units between adjacent crosslinks as the irradiation dose was conducted incrementally. Accelerated aging provided evidence that radicals became trapped in the polymer matrix of LDPE and this in turn initiated further reactions to transpire as time elapsed, leading to additional alteration in the structural properties. Fourier transform infrared spectroscopy (FTIR) was implemented to provide insight into this. This technique established that the aging process had increased the oxidative degradation products due to oxygen permeation into the polymer and double bonds within the material. Mechanical testing revealed an increase in the tensile strength and a decrease in the elongation at break. Accelerated aging caused additional modifications to occur in the mechanical properties which are further elucidated throughout this study. Dynamic frequency sweeps investigated the effects of irradiation on the structural properties of LDPE. The effect of varying the irradiation dose concentration was apparent as this controlled the level of crosslinking within the material. Maxwell and Kelvin or Voigt models were employed in this analytical technique to define the reaction procedure of the frequency sweep test with regards to non-crosslinked and crosslinked LDPE.
机译:研究了低密度聚乙烯(LDPE)对25至400 kGy的空气(10 MeV)中的高能电子束辐照的响应,并将其与未辐照聚乙烯进行了机械和结构性能比较。为了量化交联度,进行了溶胀研究,并据此观察到交联密度随照射剂量的增加而增加。此外,随着辐照剂量的逐步增加,在数值数据中观察到相邻交联键之间的摩尔质量和相邻交联键之间的单体单元数量的减少。加速的老化提供了证据,表明自由基被困在LDPE的聚合物基质中,这又引发了进一步的反应,随着时间的流逝逐渐蒸发,从而导致结构性质的其他变化。实施傅里叶变换红外光谱(FTIR)可以提供对此的见解。这项技术确定,由于氧气渗透到聚合物中以及材料中的双键,老化过程增加了氧化降解产物。机械测试显示出抗张强度的增加和断裂伸长率的降低。加速的老化导致机械性能发生其他变化,在整个研究过程中将进一步阐明。动态扫频研究了辐照对LDPE结构特性的影响。改变辐照剂量浓度的效果是显而易见的,因为这控制了材料内的交联水平。在该分析技术中采用了Maxwell和Kelvin或Voigt模型,以针对非交联和交联的LDPE定义扫频测试的反应过程。

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