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Chemica1 and morphologial modifications of irradiated linear low density polyethylene (LLDPE)

机译:辐照线性低密度聚乙烯(LLDPE)的化学和形态修饰

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Films of linear low density polyethylene (LLDPE) produced with the spherilene technology were exposed to accelerated weath- ering through UV irradiation at 60"C for increasing times. A different series of films were only annealed at 60"C, to differentiate the thermal effects from those due to the UV irradiation. FTIR analysis was used to investigate the change of the chemical structure. It was found that, following the initial production of hydroperoxides, the degradation is dominated by the formation of carbonyl and vinyl species. This process proceeds slowly up to l50 h of irradiation and afterwards it accelerates, completely degrading the material. The samples exposed more than l50 h are mechanically very fragile and soon fail. Structural analysis of the irradiated samples showed that there is a perfection of the elementary cell of polyethylene, principally along the a axis, and a consistent increase of crystallinity. The first effect was found also in thermally treated samples, whereas the second is more consistent in the irradiated samples. Also the dimension of the crystals increase much more for the irradiated samples than for the annealed ones. All the effects are mostly evident for samples after l50 h of irradiation, that is when the degradation is accelerated. The chain scission due to the photo-oxidation makes the amorphous chains more mobile and free for further crystallization, and this happens mainly when the degradation occurs simultaneously in many chains.
机译:通过Spherilene技术生产的线性低密度聚乙烯(LLDPE)薄膜在60“ C的紫外线照射下经受了加速的磨损,增加了时间。不同系列的薄膜仅在60” C的温度下退火,以区别热效应。从那些由于紫外线照射。 FTIR分析用于研究化学结构的变化。发现在最初产生氢过氧化物之后,降解主要由羰基和乙烯基物质的形成决定。该过程缓慢进行直至辐射150小时,然后加速,从而使材料完全降解。暴露超过150小时的样品在机械上非常脆弱,很快就会失效。辐照样品的结构分析表明,主要沿a轴存在聚乙烯基本单元的完善,并且结晶度不断提高。在热处理的样品中也发现了第一种效应,而在辐照的样品中第二种效应更加一致。同样,被辐照样品的晶体尺寸比退火样品增加更多。所有的影响在辐照150小时后(即降解加速时)的样品中最为明显。由于光氧化引起的断链使无定形链更易于移动和自由移动以进一步结晶,这主要是在许多链中同时发生降解时发生的。

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