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Nonlinear Stress Relaxation of Silica Filled Solution- Polymerized Styrene–Butadiene Rubber Compounds

机译:二氧化硅填充溶液中苯乙烯-丁二烯橡胶混合物的非线性应力松弛

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摘要

The stress relaxation of silica (SiO2) filled solution-polymerized styrene–butadiene rubber (SSBR) has been investigated at shear strains located in the nonlinear viscoelastic regions. When the characteristic separability times are exceeded, the nonlinear shear relaxation modulus can be factorized into separate strain- and time-dependent functions. Moreover, the shear strain dependence of the damping function becomes strong with an increase in the SiO2 volume fraction. On the other hand, a strain amplification factor related to nondeformable SiO2 particles can be applied to account for the local strain of the rubbery matrix. Furthermore, it is believed that the damping function is a function of the localized deformation of the rubbery matrix independent of the SiO2 content. The fact that the time– strain separability holds for both the unfilled SSBR and the filled compound indicates that the nonlinear relaxation is dominated by the rubbery matrix, and this implies that the presence of the particles can hardly qualitatively modify the dynamics of the polymer. It is thought that the filler–rubber interaction induces a coexistence of the filler network with the entanglement network of the rubbery phase, both being responsible for the nonlinear relaxation.
机译:已经研究了在非线性粘弹性区域中的剪切应变下,填充了二氧化硅(SiO2)的溶液聚合的丁苯橡胶(SSBR)的应力松弛。当超过特征可分离时间时,非线性剪切松弛模量可以分解为依赖于应变和时间的函数。而且,随着SiO 2体积分数的增加,阻尼函数的剪切应变依赖性变强。另一方面,可以应用与不可变形的SiO 2颗粒有关的应变放大因子来说明橡胶基质的局部应变。此外,据信阻尼功能是橡胶基质的局部变形的函数,与SiO 2含量无关。未填充的SSBR和填充的化合物都具有时间-应变分离性这一事实表明,非线性弛豫主要由橡胶基质控制,这意味着颗粒的存在很难定性地改变聚合物的动力学。据认为,填料与橡胶的相互作用导致填料网络与橡胶相的缠结网络共存,这两者都是非线性松弛的原因。

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