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Branching and rheological behavior after electron irradiation in metallocene ethylene-co-norbornene copolymers

机译:茂金属乙烯-降冰片烯共聚物中电子辐照后的支化和流变行为

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The effect of Electron beam (EB) irradiation on a cycloolefin copolymer based on ethylene and norbornene with intermediate molar content of norbornene has been evaluated. Crosslinking is not observed at any dose analyzed. Scission and branching of the chains simultaneously occur at low and high irradiation doses. Scission prevails for doses up to 167 kGy and, then, branching becomes dominant in the rheological bulk response at the highest dose. These side chains favor the development of reversible physical networks through entanglements and, accordingly, the G_N0 value and the dynamic and zero-shear viscosities increase at high levels of irradiation compared with the same parameters found at smaller EB doses. The resulting structures attained after irradiation at different doses are inactivated to microorganism development and exhibit higher thermal stability and a broader temperature window for its standard applications in comparison with the pristine non-irradiated ethylene-co-norbornene (EN) copolymer.
机译:评估了电子束(EB)辐照对基于乙烯和降冰片烯的摩尔含量为降冰片烯的环烯烃共聚物的影响。在任何分析剂量下均未观察到交联。在低和高辐照剂量下,链同时发生断裂和分支。在最高167 kGy的剂量下会发生分裂,然后,在最高剂量下,分支在流变体响应中占主导地位。这些侧链通过缠结有利于可逆物理网络的发展,因此,与在较小EB剂量下发现的相同参数相比,在高辐射水平下G_N0值以及动态和零剪切粘度会增加。与原始未辐照的乙烯-降冰片烯(EN)共聚物相比,以不同剂量辐照后获得的所得结构被灭活以促进微生物的发育,并表现出更高的热稳定性和更宽的温度窗口(对于标准应用而言)。

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