Kim Gyuri, Sahu Pranabesh, Oh Jeong Seok
Department of Materials Engineering and Convergence Technology, RIGET, Gyeongsang National University, 501 Jinju-daero, Jinju 52828, Korea.
Polymers (Basel). 2022 May 23;14(10):2121. doi: 10.3390/polym14102121.
High-damping rubber composites were prepared by mixing ethylene propylene diene monomer rubber (EPDM) with slide-ring (SR) materials using a two-roll mill, followed by a compression molding technique. SR material has a novel supramolecular structure with unique softness and slidable crosslink junctions. The mechanical strength, thermal stability, compression set property, and damping performance of the composites were investigated. The use of the high damping SR phase dispersed in the EPDM matrix displayed improved physical properties and damping performance compared to those of virgin rubber. As SR content increases in the composites, the damping factor of SR/EPDM blends becomes higher at room temperature. In addition to this, the SR composites showed excellent improvements in the compression set properties. The composites showed a compression set improvement of 35-38% compared to virgin EPDM. These improvements are due to the "pulley effect" of slide-ring materials. Therefore, these materials present a robust platform for making novel elastomer composites for high-performance damping and sealing applications.
通过使用双辊炼胶机将三元乙丙橡胶(EPDM)与滑环(SR)材料混合,随后采用模压成型技术制备了高阻尼橡胶复合材料。SR材料具有新颖的超分子结构,具有独特的柔软性和可滑动交联点。研究了复合材料的机械强度、热稳定性、压缩永久变形性能和阻尼性能。与未填充橡胶相比,分散在EPDM基体中的高阻尼SR相的使用表现出改善的物理性能和阻尼性能。随着复合材料中SR含量的增加,SR/EPDM共混物在室温下的阻尼因子变得更高。除此之外,SR复合材料在压缩永久变形性能方面表现出优异的改善。与未填充的EPDM相比,复合材料的压缩永久变形改善了35-38%。这些改善归因于滑环材料的“滑轮效应”。因此,这些材料为制造用于高性能阻尼和密封应用的新型弹性体复合材料提供了一个强大的平台。