화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2017년 가을 (10/25 ~ 10/27, 대전컨벤션센터)
권호 23권 2호, p.1419
발표분야 고분자
제목 For the Optimun Structural Stiffness of Rubber: Development of Rubber/Silica Nanocomposite Inks for Structural Stiffness via Direct Ink Writing
초록 Contemporary reinforcing fillers in tire industry have been utilized with carbon black or silica with the purpose of better mechanical properties. Though resistance to traction and rigidity of tire are optimal for reinforcing fillers ranging from 10 to 50 nm in a diameter, it was extremely hard to stabilize the monodispersed particles and restrain aggregation during the manufacturing processes. Here, we treated silica surface via adhesive coating of Fe-tannic acid complex having high mono-dispersity through the π-π Interaction. The surface treated silica suspended to styrene-isoprene-styrene dissolved toluene solution ink, and the ink was 3D printed into soft materials, whose micro-structure could rapidly be fabricated in complex 3D shapes without the need for expensive tooling, dies or lithographic masks. By tailoring their microstructure and geometry, the mechanical strength of printed tires was further improved with finely fabricated microstructures via direct ink writing. This capability represents an important step toward the scalable fabrication of polymers possessing well dispersed particles for versatile applications.
저자 이경문, 최시영
소속 한국과학기술원 (KAIST)
키워드 고분자물성; 고분자복합재료
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