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Effects of Long Chain Cellulose Ester on Mechanical Properties of Polylactic Acid Reinforced with Microcrystalline Cellulose

机译:长链纤维素酯对微晶纤维素增强聚乳酸力学性能的影响

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Long chain cellulose ester (LCCE) synthesized by acylation reaction via microwave process was used as a compatibilizer for banana stem microcrystalline cellulose/polylactic acid (BS MCC/PLA) composite. The proper reaction time and power output for LCCE synthesis were 150 second and 160 watt, respectively, which resulted in the highest weight increase (%) of LCCE synthesis. The FT-IR and NMR results confirmed that long chain acyl ester was grafted on cellulose structure. The degree of substitution (DS) of LCCE was 2.41. The BS MCC content was fixed at 40wt% while LCCE content was varied from 0-9 wt%. The Tensile properties properties of BS MCC/PLA composites with or without LCCE were studied by tensile test. The results revealed that the addition of LCCE enhanced the elongation at break of 40wt% BS MCC/PLA composite owing to the improvement of compatibility between PLA and MCC, particularly the addition of 5wt% of LCCE which led to the highest elongation at break. However, when the addition of LCCE was greater than 5wt%, the elongation at break was slightly decreased because of the small aggregation of BS MCC and LCCE in PLA matrix as supported by morphological analysis. Nevertheless, the addition of LCCE contributed to the decrease in tensile strength and Young's modulus of 40wt% BS MCC/PLA composite slightly because of the decreasing of crystallinity in PLA composite.
机译:通过微波法合成的长链纤维素酯(LCCE)通过微波法合成,用作香蕉茎微晶纤维素/聚乳酸(BS MCC / PLA)复合材料的增容剂。用于杆菌合成的适当反应时间和功率输出分别为150秒和160瓦,导致液化合物合成的最高重量增加(%)。 FT-IR和NMR结果证实,在纤维素结构上嫁接了长链酰化物。 LCCE的替代度(DS)为2.41。 BS MCC含量为40wt%,而LCCE含量从0-9wt%变化。通过拉伸试验研究了具有或不含液体的BS MCC / PLA复合材料的拉伸性质。结果表明,由于PLA和MCC之间的相容性提高,增加了LCCE增强了40wt%BS MCC / PLA复合材料的伸长率,特别是加入5wt%的LCCE,其导致断裂的最高伸长率。然而,当添加液体大于5wt%时,由于对形态学分析支持的PS MCC和LCCE的小聚集,断裂的伸长率略微降低。然而,由于PLA复合材料中的结晶度降低,添加了LCCE的增加导致抗拉强度和40wt%的杨氏模量的降低。

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