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首页> 外文期刊>Polymer Testing >Towards understanding the role of peroxide initiators on compatibilization efficiency of thermoplastic elastomers highly filled with reclaimed GTR
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Towards understanding the role of peroxide initiators on compatibilization efficiency of thermoplastic elastomers highly filled with reclaimed GTR

机译:了解过氧化物引发剂对热塑性弹性体的相容效率的作用,高度充满了再生的GTR

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摘要

Thermoplastic elastomers based on recycled high density polyethylene (rHDPE) and styrene-butadiene-styrene (SBS) block copolymer were highly filled with reclaimed ground tire rubber (RR). The impact of various organic peroxides (dicumyl peroxide (DCP), benzoyl peroxide (BP) and di-tert-butyl peroxide (DB)), applied as free-radical initiators, on the processing, structure and performance properties of rHDPE/SBS/RR blends was investigated. It was found that, regardless of peroxide type, their application resulted in decrease of the sol fraction, which indicated increase of cross-link density. This was confirmed by the reduced flowability of material, expressed by noticeable changes in melt flow index that decreased in the order BP > DB > DCP. The most beneficial changes were observed for application of DCP, which led to 80% increase of tensile strength, 40% reduction of permanent set and 25% increase of hardness. Moreover, thermal stability of analyzed thermoplastic elastomers was significantly improved with onset of thermal decomposition shifted by over 40 degrees C. Scanning electron microscope images revealed enhancement of interactions at the interphase due to increased cross-link density, which had direct influence on the mechanical properties of thermoplastic elastomers. The results showed that processing and mechanical performance of obtained thermoplastic elastomers can be easily engineered by suitable selection of organic peroxide.
机译:基于再循环的高密度聚乙烯(RHDPE)和苯乙烯 - 丁二烯 - 苯乙烯(SBS)嵌段共聚物的热塑性弹性体高度填充了再生地轮胎橡胶(RR)。各种有机过氧化物(二甲基过氧化物(DCP),苯甲酰基过氧化氢(BP)和过氧化丁基过氧化物(DB))的影响,作为自由基引发剂,对RHDPE / SBS的加工,结构和性能/ RR混合物被调查了。发现,无论过氧化物类型如何,它们的应用导致溶胶部分的降低,这表明交联密度的增加。这是通过降低的材料流动性来证实,通过熔体流动指数的显着变化表达,所述熔体流动指数下降,称为BP> DB> DCP。对于DCP的应用,观察到最有益的变化,导致拉伸强度的增加80%,永久套件减少40%,硬度增加25%。此外,通过超过40摄氏度的热分解开始显着改善了分析的热塑性弹性体的热稳定性。扫描电子显微镜图像显示由于交联密度增加,对相互作用的相互作用的增强,这对机械性能有直接影响热塑性弹性体。结果表明,通过合适选择有机过氧化物,可以容易地改造所得热塑性弹性体的加工和机械性能。

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