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NONLINEAR VISCOELASTIC DISSIPATION IN VULCANIZATES CONTAINING CARBON BLACK AND SILANIZED SILICA HYBRID FILLERS

机译:含有炭黑和硅氧烷杂交填料的硫化胶中的非线性粘弹性耗散

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摘要

Different mechanisms of large-strain viscoelastic dissipation in vulcanizates containing carbon black or silanized silica and their synergistic effects in hybrid filler tread vulcanizates were investigated. In addition, the pure effects of fillers were examined while the degree of chemical cross-linking in the rubber matrix was similar in the vulcanizates. The results revealed that nonlinear viscoelastic loss modulus under strain-controlled dynamic tests, as a measure of dissipation mechanism, is high in both carbon black and silanized silica tread vulcanizates. However, a synergistic effect in reducing loss modulus was observed in the hybrid filler vulcanizates. Conversely, storage modulus in the vulcanizates containing more silanized silica is distinguishably higher and results in a lower loss factor representing load-controlled cyclic deformation of vulcanizates, such as in the heat buildup test. Both loss factor and heat build-up reduced nonlinearly as the amount of silanized silica increased in the vulcanizates, verifying the synergistic effect of hybrid carbon black-silanized silica filler in reducing dissipative mechanisms in large-strain dynamic loadings. This feature is highly favorable for the tire industry, where the lowering of viscoelastic dissipation in tread vulcanizates is of great importance.
机译:研究了含有炭黑或硅烷化二氧化硅的硫化酸盐中的大规模粘弹性耗散的不同机制及其在杂交填料胎面硫化橡胶中的协同作用。此外,检查填料的纯效果,而橡胶基质中的化学交联度在硫化胶中相似。结果表明,在应变控制的动态试验下的非线性粘弹性损失模量作为耗散机制的衡量标准,在炭黑和硅烷化的二氧化硅胎面硫化物中具有高。然而,在杂交填料硫化橡胶中观察到降低损失模量的协同效应。相反,含有更多硅烷化二氧化硅的硫化酸盐中的储存模量可区分地更高,并导致代表硫化胶的负载控制的循环变形的较低损耗因子,例如在热累积测试中。随着硅子化二氧化硅的量在硫化酸盐中增加,损失因子和热积聚的两种损失因子和热积聚的均为减少,验证杂交炭黑硅烷化二氧化硅填料在减少大应变动态载荷中的耗散机制方面的协同作用。这一功能对轮胎行业非常有利,在胎面硫化物中的粘弹性耗散的降低具有重要意义。

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