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Effect of surface treatment of cellulose fiber (CF) on durability of PLA/CF bio-composites

机译:纤维素纤维(CF)表面处理对PLA / CF生物复合材料耐久性的影响

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摘要

Bio-composites made of polylactic acid (PLA) matrix reinforced with cellulose fibers (CF) were prepared using a twin-screw extruder and injection molding. The CFs were coated with epoxy-based surface treatment agents. Accelerated degradation tests were carried out on these PLA/CF composites at high temperatures (60 degrees C) or at constant temperature and constant humidity (60 degrees C/70% RH), and the higher-order structure changes and degradation characteristics of the molded products were evaluated. In the accelerated degradation test at 60 degrees C, the thermal and mechanical properties of PLA/CF composites showed no degradation, whereas at 60 degrees C and 70% RH, the melting point decreased ca. 25 degrees C and the storage modulus with increasing elapsed time decreased more than 50%. However, the thermal and mechanical properties of the PLA/CF composites treated with low-molecular-weight epoxy did not degrade, even at the high humidity of 70% RH. These results strongly suggest that the surface treatment agent not only improves interfacial adhesion between CF and PLA but also plays an important role in inhibiting degradation of the PLA matrix.
机译:使用双螺杆挤出机和注射成型制备由纤维素纤维(CF)加强的聚乳酸(PLA)基质制成的生物复合材料。 CFS涂有环氧基表面处理剂。在高温(60℃)或恒定温度和恒定湿度(60℃/ 70%RH)下进行加速降解试验,并在恒定的温度下(60℃/ 70%RH),并且模制的较高结构变化和劣化特性产品评估。在60℃的加速降解试验中,PLA / CF复合材料的热和机械性能显示出没有降解,而在60℃和70%RH时,熔点降低。 25℃和储存模量随着经过的时间的增加而减少了50%。然而,用低分子量环氧树脂处理的PLA / CF复合材料的热量和机械性能也不会降解,即使在70%RH的高湿度下也不会降低。这些结果强烈表明,表面处理剂不仅改善了CF和PLA之间的界面粘附,而且在抑制PLA基质的降解方面起着重要作用。

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