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EFFECT OF OCTENE CONTENT ON THERMAL AND MECHANICAL PROPERTIES OF CROSSLINKED ETHYLENE-OCTENE COPOLYMERS

机译:辛烯含量对交联乙烯 - 辛烯共聚物热和力学性能的影响

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Two ethylene-octene copolymers (EOC - with octene wt.% of 20 and 35) were crosslinked using dicumyl peroxide (DCP). Crosslinking studies were done using rubber process analyzer (RPA) at 150-200 °C range. Highest s'_(max) (maximum elastic torque) was found for EOC-20 with low octene content, always. High-octene EOC underwent more degradation. From dynamic mechanical analysis (DMA), storage modulus (M') and glass transition temperature (T_g) were found decreasing with increasing octene content. Differential scanning calorimetry (DSC) revealed the inverse effect of octene content on crystallinity and melting point. For high-octene EOC, increased p-scission has resulted in the poorer crosslinking and inferior properties.
机译:使用二甲基过氧化二琥珀酰(DCP)交联两个乙烯 - 辛烯共聚物(EOC - 辛烯WT.%和35)。使用橡胶工艺分析仪(RPA)在150-200°C范围内进行交联研究。最高的S'_(最大)(最大弹性扭矩)是针对辛烯含量低的EOC-20。高辛烯EOC正在进行更多的降解。从动态机械分析(DMA),发现储存模量(M')和玻璃化转变温度(T_G)随着辛烯含量的增加而降低。差分扫描量热法(DSC)揭示了辛烯含量对结晶度和熔点的倒出。对于高辛烯EOC,P-Sconclic升高导致交联和差异较差。

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