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首页> 外文期刊>Materials & design >Influence of 1,2-polybutadiene as coagent in peroxide cured polypropylene/ethylene octene copolymer thermoplastic vulcanizates
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Influence of 1,2-polybutadiene as coagent in peroxide cured polypropylene/ethylene octene copolymer thermoplastic vulcanizates

机译:1,2-聚丁二烯作为助剂对过氧化物硫化聚丙烯/乙烯辛烯共聚物热塑性硫化橡胶的影响

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摘要

The present study investigates the influence of 1,2-polybutadiene (1,2-PB) as a coagent for peroxide cured polypropylene (PP) and ethylene octene copolymer (EOC) thermoplastic vulcanizates (TPVs). Addition of peroxide in PP/EOC blend leads to cause crosslinking in EOC phase and β-chain scission in PP phase. As a result, the final properties are determined primarily by the ratio of those two competing reactions. Coagent assisted peroxide system is always an attractive and effective choice in order to avoid the β-chain scission in PP, to increase the crosslink density in EOC phase and to induce the interfacial reactions. In this paper, mechanical, morphological, thermal and Theological characteristics were studied with special reference to the effect of concentration of 1,2-PB. The best overall balance of mechanical properties was observed at 3 phr concentration of 1,2-PB. However, modulus and crosslink density values increase gradually as a function of concentration of coagent. The changes in the melting and crystallizing behavior of the blends were investigated using differential scanning calorimetry (DSC). Scanning electron micrography (SEM) analyses were performed to understand the particle size of the dispersed phase. Frac-tography was pursued to understand the mode of failure. Rheological properties were studied at different shear modes: oscillatory shear and rate controlled capillary rheometer. A variety of rheological observations such as Payne effect, modulus recovery and comparison of oscillatory and shear mode rheological results were discussed in details.
机译:本研究调查了1,2-聚丁二烯(1,2-PB)作为过氧化物硫化聚丙烯(PP)和乙烯辛烯共聚物(EOC)热塑性硫化橡胶(TPV)的助剂的影响。在PP / EOC共混物中添加过氧化物会导致EOC相发生交联,PP相发生β链断裂。结果,最终性质主要由这两个竞争反应的比率决定。为了避免PP中的β链断裂,增加EOC相中的交联密度并引发界面反应,助剂辅助的过氧化物体系一直是有吸引力且有效的选择。本文研究了机械,形态,热学和神学特性,并特别参考了1,2-PB浓度的影响。在1,2-PB浓度为3 phr时,观察到机械性能的最佳总体平衡。但是,模量和交联密度值随助剂浓度的增加而逐渐增加。使用差示扫描量热法(DSC)研究了共混物的熔融和结晶行为变化。进行扫描电子显微镜(SEM)分析以了解分散相的粒径。追求分形术以了解失败的方式。在不同的剪切模式下研究了流变特性:振荡剪切和速率控制的毛细管流变仪。详细讨论了Payne效应,模量恢复以及振荡和剪切模式流变结果的比较等各种流变学观察结果。

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