Wang Wencai, Zhao Detao, Yang Jingna, Nishi Toshio, Ito Kohzo, Zhao Xiuying, Zhang Liqun
Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, PR China.
Beijing Engineering Research Center of Advanced Elastomer, Beijing, PR China.
Sci Rep. 2016 Mar 7;6:22810. doi: 10.1038/srep22810.
A novel class of polymers called "slide-ring" (SR) materials with slideable junctions were used for high damping composites for the first time. The SR acts as the high damping phase dispersed in the natural rubber (NR) matrix, and epoxidized natural rubber (ENR) acts as the compatibilizer. The morphological, structural, and mechanical properties of the composites were investigated by atomic force microscope (AFM), transmission electron microscope (TEM), dynamic mechanical thermal analyzer (DMTA), rubber processing analyzer (RPA), and tensile tester. AFM and TEM results showed that the SR phase was uniformly dispersed in the composites, in a small size that is a function of ENR. DMTA and RPA results showed that the damping factor of the composites is much higher than that of NR, especially at room temperatures. Stretch hysteresis was used to study the energy dissipation of the composites at large strains. The results showed that SR and ENR can significantly improve the dissipation efficiency at strains lower than 200% strain. Wide-angle X-ray diffraction was used to study the strain-induced crystallization of the composites. The results indicated that the impact of the SR on the crystallization of NR is mitigated by the insulating effect of ENR.
一类名为“滑环”(SR)材料的新型聚合物,其具有可滑动连接,首次被用于制备高阻尼复合材料。SR作为分散在天然橡胶(NR)基体中的高阻尼相,而环氧化天然橡胶(ENR)作为增容剂。通过原子力显微镜(AFM)、透射电子显微镜(TEM)、动态力学热分析仪(DMTA)、橡胶加工分析仪(RPA)和拉伸试验机对复合材料的形态、结构和力学性能进行了研究。AFM和TEM结果表明,SR相均匀分散在复合材料中,其尺寸较小,是ENR的函数。DMTA和RPA结果表明,复合材料的阻尼因子远高于NR,尤其是在室温下。拉伸滞后用于研究复合材料在大应变下的能量耗散。结果表明,SR和ENR在应变低于200%时能显著提高耗散效率。广角X射线衍射用于研究复合材料的应变诱导结晶。结果表明,ENR的绝缘作用减轻了SR对NR结晶的影响。