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Dynamic properties of carbon black filled chlorinated polyethylene/hindered phenol blends

机译:炭黑填充氯化聚乙烯/受阻酚混合物的动态性能

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Aggregates of carbon black (CB) in a polymer matrix have a tendency to form a CB network. The dynamic mechanical properties of binary systems of chlorinated polyethylene (CPE) and CB or 3,9-bis{1,1-dimethyl-2[β-(3-tert-butyl-4-hydroxy-5-methylphenyl)propionyloxy]ethyl}-2,4,8,10-tetraoxaspiro[5,5]-undecane (AO-80) and their ternary systems were investigated. It was found that the dynamic mechanical properties of those systems depend on the colloidal properties, surface oxides, and surface modification of CB. For binary systems of CPE and CB, oxidized CB gives a high modulus at low strain amplitude and a large Payne effect compared with untreated CB. In contrast, the reverse effect was observed for their ternary systems. Consequently, a good microdispersion is obtainable by surface modification due to physical adsorption of AO-80 on oxidized CB particles via hydrogen bonds.
机译:聚合物基质中的炭黑(CB)聚集体倾向于形成CB网络。氯化聚乙烯(CPE)和CB或3,9-双{1,1-二甲基-2 [β-(3-叔丁基-4-羟基-5-甲基苯基)丙酰氧基]乙基的二元体系的动态力学性能}研究了-2,4,8,10-四氧杂螺[5,5]-十一烷(AO-80)及其三元体系。发现这些系统的动态机械性能取决于胶体性能,表面氧化物和CB的表面改性。对于CPE和CB的二元体系,与未处理的CB相比,氧化的CB在低应变幅度下具有高模量,并且具有很大的Payne效应。相反,观察到它们的三元系统的相反作用。因此,由于AO-80经由氢键在氧化的CB颗粒上的物理吸附,通过表面改性可获得良好的微分散性。

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