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首页> 外文期刊>Cellulose >Regenerated cellulose nanofibers fabricated through electrospinning and saponification of cellulose acetate as reinforcement of polylactide composites
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Regenerated cellulose nanofibers fabricated through electrospinning and saponification of cellulose acetate as reinforcement of polylactide composites

机译:通过耐电纺丝和醋酸纤维素皂化制备的再生纤维素纳米纤维作为聚酰胺复合材料的增强

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摘要

Cellulose-acetate nanofibers (CA-NF) and regenerated cellulose nanofibers (RC-NF) were separately compounded as reinforcement materials for enhancement of the mechanical property of polylactide (PLA). PLA has a great potential as an alternative to widely-used plastics such as polystyrene and poly(ethylene terephthalate), which are made from petroleum. PLA is well known for its biodegradability and renewability, but the mechanical property of PLA is not sufficient for industrial applications. In this study, CA-NF were successfully fabricated by electrospinning using 20 wt% cellulose-acetate solution with acetone/N,N-dimethylacetamide (6/4, wt/wt) mixture solvent, and RC-NF were synthesized by subsequent saponification, as reinforcement materials for PLA composites. The Young's modulus of CA-NF/PLA composites increased linearly from 1670 to 1840 MPa with the increase in the nanofiber concentration to 15 wt%. In contrast, the Young's modulus of RC-NF/PLA composites rapidly increased to similar to 1840 MPa at the relatively low nanofiber concentration of 5.0 wt%. Above 5.0 wt%, the Young's modulus became stable and almost constant. RC-NF exhibited better reinforcing efficiency due to the excellent mechanical property of RC-NF, although the interfacial compatibility of RC-NF for PLA matrix was relatively poor as compared with that of CA-NF.
机译:纤维素 - 乙酸盐纳米纤维(CA-NF)和再生纤维素纳米纤维(RC-NF)被分别混合为增强材料,以提高聚丙酯(PLA)的机械性能。 PLA具有巨大的潜力,作为广泛使用的塑料,例如聚苯乙烯和聚(对苯二甲酸乙二醇酯),其由石油制成。 PLA以其生物降解性和可再生性而闻名,但PLA的机械性能不足以用于工业应用。在该研究中,通过使用20wt%纤维素 - 乙酸酯溶液用丙酮/ n,n-二甲基乙酰胺(6/4,wt / wt)混合物溶剂来成功制造Ca-NF,通过随后的皂化来合成RC-NF,作为PLA复合材料的钢筋材料。 Ca-NF / PLA复合材料的杨氏模量从1670到1840MPa线性增加,随着纳米纤维浓度的增加至15wt%。相反,RC-NF / PLA复合材料的杨氏模量在5.0wt%的相对低的纳米纤维浓度下迅速增加至1840MPa。超过5.0重量%,杨氏模量变得稳定,几乎恒定。由于RC-NF的优异机械性能,RC-NF表现出更好的增强效率,尽管与CA-NF的PLA基质的RC-NF的界面相容性相对较差。

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