Surface Treatment of Polylactic Acid Fiber by Starch Nanocrystals and Interface Modification of Polylactic Acid Fiber-Reinforced Starch Composites

Xiaodong Zhou, M. Sun, Huihuang Ma, S. Yang, Ying-Ju Chen, Haiyan Liu
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Abstract

The surface of polylactic acid fiber (PLAF) was treated with self - manufactured starch nanocrystals (SNCs) to improve its interfacial adhesion with the starch matrix. Determination of optimum dispersion conditions of SNCs dispersion by transmittance. The effects of direct oscillatory deposition, chemical grafting SNCs modification, and SNCs dispersion concentration on the surface treatment effect of PLAF and its interfacial bonding with starch matrix were investigated. The results showed that the SNCs were successfully introduced into the PLAF surface, moreover, the modifying effect of the chemical grafted SNCs was better than the direct oscillatory deposition, the distribution of SNCs particles was more uniform on the fiber surface, strong chemical bonding to the fiber surface, make up for the surface damage of the fibers caused by aminolysis. At the SNCs dispersion concentration of 10 g/L, the PLAF tensile strength could be maintained at 582 MPa, a large amount of starch was evenly attached to the surface after pulling out. It showed that a strong interface bond with the starch matrix, the highest IFSS value was 2.57 MPa and the increase was by about 63 %. Therefore, the introduction of SNCs for interfacial modification of PLAF is of great significance and deserves further exploration.
淀粉纳米晶对聚乳酸纤维的表面处理及聚乳酸纤维增强淀粉复合材料的界面改性
采用自制的淀粉纳米晶(SNCs)对聚乳酸纤维(PLAF)表面进行处理,以提高其与淀粉基质的界面附着力。透过率法确定SNCs的最佳色散条件。研究了直接振荡沉积、化学接枝SNCs改性和SNCs分散浓度对PLAF表面处理效果及其与淀粉基质界面结合的影响。结果表明,SNCs被成功地引入到PLAF表面,化学接枝SNCs的改性效果优于直接振荡沉积,SNCs颗粒在纤维表面分布更加均匀,与纤维表面化学键结较强,弥补了氨解对纤维表面造成的损伤。在SNCs分散浓度为10 g/L时,PLAF的抗拉强度可维持在582 MPa,抽出后大量淀粉均匀附着在表面。结果表明,与淀粉基体的界面结合较强,IFSS值最高为2.57 MPa,增幅约63%。因此,引入SNCs对PLAF进行界面改性具有重要意义,值得进一步探索。
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