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Properties of Poplar Fiber/PLA Composites: Comparison on the Effect of Maleic Anhydride and KH550 Modification of Poplar Fiber

机译:杨纤维/ PLA复合材料的性能:马来酸酐作用和KH550改性杨纤维的比较

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摘要

To improve the interfacial adhesion and dispersion of a poplar fiber in a polylactic acid (PLA) matrix, maleic anhydride (MA) and a silane coupling agent (KH550) were used to modify the poplar fiber. The poplar fiber/PLA composites were produced with different modifier contents. The mechanical, thermal, rheological, and physical properties of composites were investigated. A comparison of different natural fiber modifications on the properties of composites was also analyzed. The results showed that both MA and KH550 could improve the interfacial adhesion between the poplar fiber and PLA, resulting in the enhanced mechanical properties of the composite, with 17% and 23% increases of tensile strength for 0.5% MA and 2% KH550, respectively. The thermal properties of the composites were improved at 6% KH550 (a 9% enhancement of ) and decreased at 0.5% MA (a 6% decrement of ). The wettability of the composites obtained a 11.3% improvement at 4% KH550 and a 5% reduction at 4% MA. Therefore, factors such as mechanical properties, economic efficiency, and durability should be carefully considered when choosing the modifier to improve the property of the composite.
机译:为了提高杨树纤维在聚乳酸(PLA)基质中的界面粘合力和分散性,使用了马来酸酐(MA)和硅烷偶联剂(KH550)来改性杨树纤维。生产具有不同改性剂含量的杨纤维/ PLA复合材料。研究了复合材料的机械,热,流变和物理性能。还分析了不同天然纤维改性对复合材料性能的比较。结果表明,MA和KH550均可提高杨树纤维与PLA的界面粘合力,从而增强复合材料的机械性能,其中0.5%MA和2%KH550的拉伸强度分别提高17%和23%。 。复合材料的热性能在6%KH550时提高了(提高了9%),在0.5%MA时(降低了6%)降低了热性能。复合材料的润湿性在KH550为4%时提高了11.3%,在MA为4%时降低了5%。因此,当选择改性剂以改善复合材料的性能时,应仔细考虑诸如机械性能,经济效率和耐久性的因素。

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