Innovative Synthesis of Durable Polylactic Acid-Thermoplastic Polyurethane Elastomer Composites for Three-Dimensional Printing Applications
3D 프린팅 응용을 위한 내구성 있는 Polylactic Acid - 열가소성폴리우레탄 탄성체 복합물의 합성
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초록

The functionalization of polylactic acid (PLA) is examined by grafting cardanol onto its main backbone chain through a dynamic reaction to improve compatibility between PLA and thermoplastic polyurethane (TPU). Cardanol-grafted PLA (PLAC)/TPU blend-based filaments for fused deposition modeling are tested using melt extrusion. Effects of PLAC grafting ratio on the rheological properties and thermal transformation of the PLAC/TPU blends and the mechanical properties of three-dimensional-printed parts are investigated. A decrease in the glass transition temperature and crystallinity from differential scanning calorimetry are observed with increasing cardanol concentration, implying improved miscibility between PLAC and TPU and as a result, PLAC/TPU blends exhibit improved toughness. © 2023 The Polymer Society of Korea. All rights reserved.

키워드

3D printingcardanoldynamic reactionfused deposition modelingpolylactic acidTHERMAL-DEGRADATIONREACTIVE EXTRUSIONNATURAL-RUBBERCARDANOLBLENDSPOLY(LACTIDE)MORPHOLOGYCELLULOSEBEHAVIOR
제목
Innovative Synthesis of Durable Polylactic Acid-Thermoplastic Polyurethane Elastomer Composites for Three-Dimensional Printing Applications
제목 (타언어)
3D 프린팅 응용을 위한 내구성 있는 Polylactic Acid - 열가소성폴리우레탄 탄성체 복합물의 합성
저자
Zhang, XiaojieXiao, JianhuaKim, Jin KukOh, Jeong SeokLee, Jinho
DOI
10.7317/pk.2023.47.6.711
발행일
2023-11
유형
Article
저널명
폴리머
47
6
페이지
711 ~ 719