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Improvement of thermal and mechanical properties of composite based on polylactic acid and microfibrillated cellulose through chemical modification

机译:基于聚乳酸和微纤维纤维素通过化学改性改善复合材料的热和力学性能

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Polylactic acid (PLA) is the most representative sustainable and bio-based polymer environmentally friendly that has a great potential to replace petroleum-based plastics. However, brittleness, low heat resistance, and slow crystallization limit the wide application of PLA. One of strategies to improve PLA properties is by reinforcing with microfibrillated cellulose (MFC). Unfortunately, the hydrophilic properties of MFC make it difficult to attain good dispersion in a hydrophobic PLA matrix. Therefore, modification of MFC was needed to increase its compatibility with PLA in the composite formation. In this experiment, MFC was modified with partial acetylation (degree of substitution: 1) and further grafted with lactide monomers through ring-opening polymerization using Sn(0ct)2 catalyst. The result of acetylation and grafting were verified by infrared spectra. Composites were prepared by mixing PLA (molecular weight of 200,000) and the modified MFC at 9:1 ratio through organic solvent method. Followed by 8 min-kneading and hot pressing at 180°C, the resulted composites were evaluated for their mechanical and thermal properties. Thermal characterization carried out using differential scanning calorimetry measurements showed that the presence of modified MFC increased the temperature of glass transition and accelerated the crystallization of PLA. Mechanical properties measurement showed that the presence of modified MFC enhanced the elongation at break (1.1 to 1.8%), tensile strength (14.9 to 25.7 MPa), and modulus of elasticity (1.7 to 2.1 GPa). These results demonstrated that the modified MFC could extend the application of PLA in industry.
机译:聚乳酸(PLA)是最具代表性的可持续和生物基的聚合物环保,具有较大的潜力来取代石油基塑料。但是,脆性,低耐热性和慢速结晶限制了广泛的PLA应用。改善PLA属性的策略之一是用微纤化纤维素(MFC)加强。不幸的是,MFC的亲水性能使得难以在疏水性PLA基质中获得良好的分散体。因此,需要修饰MFC以增加其与复合材料中PLA的相容性。在该实验中,用部分乙酰化(取代度:1)改性MFC,并通过使用Sn(0ct)2催化剂的开环聚合进一步接枝丙交酯单体。通过红外光谱验证乙酰化和接枝的结果。通过在通过有机溶剂方法将PLA(分子量为200,000)和改性的MFC的PLA(分子量为200,000)和改性的MFC制备复合材料。然后在180℃下进行8分钟捏合和热压,评价所得复合材料的机械和热性能。使用差示扫描量热法测量进行的热表征显示,改性MFC的存在增加了玻璃过渡的温度,并加速了PLA的结晶。机械性能测量表明,改性MFC的存在增强了断裂(1.1至1.8%)的伸长率(1.1至1.8%),拉伸强度(14.9至25.7MPa)和弹性模量(1.7至2.1GPa)。这些结果表明,改进的MFC可以扩展PLA在工业中的应用。

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