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Electron beam crosslinking of non-lead PVC formulations

机译:无铅PVC配方的电子束交联

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PVC samples with lead-free and lead-base stabilizer,containing TMPTMA(trimethylolpropane trimethacrylate)as a crosslinker and DOP(2-ethylhexyl phthalate)as a plasticizer,were electron beam treated at different doses(2-200 kGy)and characterized to evaluate crosslinking and other several properties,as a continuation of our previously reported paper,where these PVC formulations,typical for wire and cable applications,underwent gamma irradiation.The PVC was formulated with two different stabilizing systems:Ca/Zn and dibasic lead phthalate for comparison,to use them as jackets for a 22 wire gage(AWG).Small samples of the jacketed wires were irradiated in an industrial Dynamitron electron accelerator for the corresponding doses,along with two dosimetric systems:radiochromic thin film and alanine pellets dosimeters.The maximum dose applied was decided as the crosslinking increased,until the gel content was stable.The dose of 200 kGy was the condition for the highest crosslinking,so most of the wire was irradiated at such dose.Chemical and mechanical evaluations were carried out to the irradiated wire.The results show that 200 kGy was too high dose for the materials,since an important degradation is observed for the Ca/Zn systems.Unfortunately,such dose affects basically to CaZn formulations,which showed much poorer performance than classical lead-containing compositions.The results also indicate that gel content is not the best way of deciding the optimum condition for irradiation.
机译:含有TMPTMA(三羟甲基丙烷三甲基丙烯酸酯)作为交联剂和DOP(邻苯二甲酸2-乙基己酯)作为增塑剂的无铅和铅基稳定剂的PVC样品以不同剂量(2-200 kGy)进行电子束处理,并进行性能评估交联和其他一些特性,作为我们先前报道的论文的延续,这些PVC配方(通常用于电线和电缆应用)接受了伽马射线辐照。该PVC采用两种不同的稳定体系配制而成:Ca / Zn和邻苯二甲酸二氢铅用于比较,将它们用作22线规(AWG)的护套。在工业Dynamitron电子加速器中以相应的剂量辐照小尺寸的护套电线,并采用两个剂量系统:放射致变色薄膜和丙氨酸颗粒剂量计。交联的增加决定了所用的剂量,直到凝胶含量稳定为止。200 kGy的剂量是最高交联的条件,因此大部分以这种剂量辐照金属丝。对辐照的金属丝进行了化学和机械评估。结果表明,对于该材料,200 kGy的剂量太高,因为观察到Ca / Zn系统会发生重要的降解。剂量基本上会影响CaZn配方,与传统的含铅组合物相比,其性能要差得多。结果还表明,凝胶含量并不是确定最佳辐照条件的最佳方法。

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