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Enhancing crystallization, miscibility, and processability of bio-based polybutylene succinate/polypropylene blended composites via coffee husk reinforcement

Authors
Lule, Zelalem ChernetWondu, EyobKim, Jooheon
Issue Date
Nov-2023
Publisher
WILEY
Keywords
CH; crystallization; PBS; PP; rheology
Citation
POLYMERS FOR ADVANCED TECHNOLOGIES, v.34, no.11, pp 3538 - 3551
Pages
14
Journal Title
POLYMERS FOR ADVANCED TECHNOLOGIES
Volume
34
Number
11
Start Page
3538
End Page
3551
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/67629
DOI
10.1002/pat.6167
ISSN
1042-7147
1099-1581
Abstract
Many studies have suggested that the interfacial compatibility in blends play an important role in determining the overall properties of the corresponding composites. This study investigated the effects of blend miscibility on the rheological, mechanical, and crystallization properties of polybutylene succinate (PBS)-based composites reinforced with coffee husk (CH). The composites were fabricated using surface-treated CH that was treated with a compatibilizer prior to composite fabrication. The results showed that the handling and processability of the composites improved after the surface treatment of CH. The surface treatment helped to achieve miscibility in polymer blends, and the dispersion of the surface-treated CH in the PBS matrix was uniform. Moreover, the tensile strength and modulus of the compatibilized composites showed fourfold and twofold increases compared to neat PBS. The frequency-dependent rheological test revealed increase in viscosity (>1000 times) and storage modulus with compatibilization and filler reinforcement. The degree of crystallinity of the PBS in the compatibilized composites reduced to about 10%. Furthermore, the compatibilized composites also demonstrated superior thermal stability than their corresponding non-compatibilized composites.
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대학원 (지능형에너지산업융합학과)
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