Yang Li, Shi Xuanyu, Sun Shihao, Zhong Jun, Yu Xiaofeng, Wang Danling, Song Yihu, Zuo Min, Zheng Qiang
Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310000, China.
Zhongce Rubber Group Co., Ltd., Hangzhou 310000, China.
Gels. 2022 Jul 7;8(7):425. doi: 10.3390/gels8070425.
The evolution of the morphology/structure and the nonlinear viscoelasticity of rubber blends under large amounts of strain are key scientific issues for the design and manufacture of rubber blends. The rheological responses of natural rubber/styrene-butadiene rubber (NR/SBR) blends are traced over a wide range of blend compositions to gain an insight into the effect of blend morphology on their nonlinear viscoelasticity. We also prepare NR + SBR physical blends without melt mixing to distinguish the contributions of composition and blend morphology to the viscoelastic response. The microscopic heterogeneous gel-like structure of NR/SBR blends may remarkably weaken their strain softening and improve their modulus hysteretic recovery under large strain, which may be attributed to the heterogeneous microscopic deformation for the NR and SBR phases. Furthermore, additional elastic contribution resulted from the increasing interfacial energy of domain deformation. This may provide some new insights into the effect of blend morphology on the Payne effect of rubber blends.
橡胶共混物在大应变下的形态/结构演变以及非线性粘弹性是橡胶共混物设计与制造中的关键科学问题。在很宽的共混物组成范围内追踪天然橡胶/丁苯橡胶(NR/SBR)共混物的流变响应,以深入了解共混物形态对其非线性粘弹性的影响。我们还制备了未经熔融共混的NR + SBR物理共混物,以区分组成和共混物形态对粘弹性响应的贡献。NR/SBR共混物的微观非均相凝胶状结构可能会显著减弱其应变软化,并在大应变下改善其模量滞后恢复,这可能归因于NR和SBR相的非均相微观变形。此外,由于畴变形界面能的增加产生了额外的弹性贡献。这可能为共混物形态对橡胶共混物佩恩效应的影响提供一些新的见解。