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Reinforcement of Natural Rubber by Precipitated Silica: the Influence of Processing Temperature

机译:沉淀二氧化硅对天然橡胶的增强作用:加工温度的影响

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摘要

The thermal history, and in particular the mixing dump temperature, is a parameter of paramount importance in mixing rubber and silica with a silane coupling agent in order to achieve proper silanization of silica and to avoid premature scorch reactions. The influence of the mixing dump temperature on the performance of silica-reinforced natural rubber (NR) is investigated. The investigation also includes the effect of nonrubber constituents, primarily proteins in NR, by using deproteinized natural rubber (DPNR) and synthetic polyisoprene (IR). The vulcanization properties and rubber-to-filler interactions of silica-reinforced NR in the presence and absence of a silane coupling agent are highlighted. With increasing mixing dump temperature, the silanization reaction between silica and silane coupling agent proceeds further. At a sufficiently high dump temperature, filler–filler interactions in the NR–silica compounds are reduced and the silica–rubber interaction improved, as evidenced by a drop in the Payne effect and increment in chemically bound rubber. It is demonstrated that NR and IR compounds mixed until they are above the optimum dump temperature exhibit cure reversion and reduction in tensile properties. On the other hand, DPNR–silica vulcanizates show slightly more constant physical properties.
机译:为了使二氧化硅适当地硅烷化并避免过早的焦烧反应,热历史,特别是混合卸料温度是在将橡胶和二氧化硅与硅烷偶联剂混合中至关重要的参数。研究了混合卸料温度对二氧化硅增强天然橡胶(NR)性能的影响。该研究还包括通过使用脱蛋白天然橡胶(DPNR)和合成聚异戊二烯(IR)来消除非橡胶成分(主要是NR中的蛋白质)的影响。突出了在存在和不存在硅烷偶联剂的情况下,二氧化硅增强的NR的硫化性能和橡胶与填料的相互作用。随着混合料温度的升高,二氧化硅和硅烷偶联剂之间的硅烷化反应进一步进行。在足够高的倾卸温度下,NR-二氧化硅化合物中的填料-填料相互作用降低,而二氧化硅-橡胶相互作用得到改善,如佩恩效应的下降和化学键合橡胶的增加所证明。结果表明,混合的NR和IR化合物直到它们达到最佳卸料温度为止,都会表现出固化回复并降低拉伸性能。另一方面,DPNR-二氧化硅硫化橡胶显示出更稳定的物理性能。

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