Kim Woong, Ahn Byungkyu, Mun Hyunsung, Yu Eunho, Hwang Kiwon, Kim Donghyuk, Ryu Gyeongchan, Kim Wonho
Department of Polymer Science & Chemical Engineering, Pusan National University, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Korea.
Polymers (Basel). 2018 Oct 9;10(10):1116. doi: 10.3390/polym10101116.
When designing rubber compounds for high-performance tires, increasing the silica content can improve the wet traction performance but decreases the fuel efficiency. This trade-off relation makes it difficult to improve the two factors simultaneously. One approach is the development of silica wet masterbatch (WMB) technology for producing compounds containing a high silica content with good dispersion. The technology involves a step to mix surface-modified silica and rubber latex. The technique requires a coagulant to break up the micelles of the rubber latex and cause the surface-modified silica and the rubber molecules to co-coagulate due to van der Waals forces. In this study, the effect of coagulant type on the characteristics of silica surface, and the mechanical properties of the emulsion styrene-butadiene rubber (ESBR)/silica WMB compounds was investigated, as well as the abrasion properties and the viscoelastic properties of the vulcanizates.
在设计高性能轮胎的橡胶配方时,增加二氧化硅含量可提高湿地牵引性能,但会降低燃油效率。这种权衡关系使得难以同时改善这两个因素。一种方法是开发二氧化硅湿法母胶(WMB)技术,以生产具有良好分散性的高二氧化硅含量的胶料。该技术包括将表面改性二氧化硅和橡胶胶乳混合的步骤。该技术需要一种凝聚剂来破坏橡胶胶乳的胶束,并使表面改性二氧化硅和橡胶分子由于范德华力而共同凝聚。在本研究中,研究了凝聚剂类型对二氧化硅表面特性、乳液丁苯橡胶(ESBR)/二氧化硅WMB胶料的力学性能的影响,以及硫化胶的耐磨性能和粘弹性性能。