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The Effect of Silanization Temperature and Time on the Marching Modulus of Silica-Filled Tire Tread Compounds

机译:硅烷化温度和时间对填充硅胶胎面胶料行进模量的影响

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摘要

Marching modulus phenomena are often observed in silica-reinforced solution styrene–butadiene rubber/butadiene rubber (S-SBR/BR) tire tread compounds. When such a situation happens, it is difficult to determine the optimum curing time, and as a consequence the physical properties of the rubber vulcanizates may vary. Previous studies have demonstrated that the curing behavior of silica compounds is related to the degree of silanization. For the present work, the effect of silanization temperature and time on the marching modulus of silica-filled rubber was evaluated. The correlations between these mixing parameters and their effect on the factors that have a strong relation with marching modulus intensity (MMI) were investigated: the amount of bound rubber, the filler flocculation rate (FFR), and the filler–polymer coupling rate (CR). The MMI was monitored by measuring the vulcanization rheograms using a rubber process analyzer (RPA) at small (approximately 7%) and large (approximately 42%) strain in order to discriminate the effects of filler–filler and filler–polymer interactions on the marching modulus of silica-filled rubber compounds. The results were interpreted via the correlation between these factors and their effect on the MMI. A higher temperature and a longer silanization time led to a better degree of silanization, in order of decreasing influence.
机译:在二氧化硅增强的溶液苯乙烯-丁二烯橡胶/丁二烯橡胶(S-SBR / BR)轮胎胎面胶中经常观察到行进模量现象。当发生这种情况时,很难确定最佳固化时间,结果,橡胶硫化橡胶的物理性能可能会发生变化。先前的研究表明,二氧化硅化合物的固化行为与硅烷化程度有关。对于当前的工作,评估了硅烷化温度和时间对二氧化硅填充橡胶的行进模量的影响。研究了这些混合参数之间的相关性以及它们对与行进模量强度(MMI)密切相关的因素的影响:胶结橡胶的量,填料的絮凝率(FFR)和填料-聚合物的偶联率(CR) )。通过使用橡胶过程分析仪(RPA)在小(大约7%)和大(大约42%)应变下测量硫化流变图来监测MMI,以区分填料-填料和填料-聚合物相互作用对行进的影响二氧化硅填充的橡胶混合物的模量。通过这些因素及其对MMI的影响之间的相关性来解释结果。较高的温度和较长的硅烷化时间导致硅烷化程度更好,影响程度依次降低。

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