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Preparation of high performance biobased composites from poly(lactic acid) and microcrystalline cellulose

机译:聚(乳酸)和微晶纤维素的高性能生物复合材料的制备

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The high performance biobased composites were prepared from poly (lactic acid) (PLA) and microcrystalline cellulose (MC) fibers by graft modification. The morphology, mechanical and thermodynamic properties of the composites were investigated. Fourier transform infrared spectroscopy (FTIR) showed that a kind of grafted microcrystalline cellulose (g-MC) had been successfully synthesized by lactic acid modification. Compared to neat resin, the tensile strength of the composites is significantly higher, and some of the composites even have a perfect breaking elongation rate. This is due to the cellulose fibers that added to the PLA matrix may act as reinforcements. Furthermore, compared to the PLA/MC composites, the PLA/g-MC composites have a good appearance shape and light transmittance, demonstrated that the g-MC had much better dispersion and homogeneity in the composites. Differential scanning calorimetry(DSC) showed that the glass transition temperature (Tg) and the melting point (Tm) of the PLA/g-MC composites decrease, while the crystallization temperature (Tc) of the PLA matrix increases, which indicated that the presence of g-MC improves the crystallization behaviors of PLA.
机译:通过接枝改性,由聚(乳酸)(PLA)和微晶纤维素(MC)纤维制备高性能生物化复合材料。研究了复合材料的形态,机械和热力学性质。傅里叶变换红外光谱(FTIR)表明,通过乳酸改性成功地合成了一种接枝的微晶纤维素(G-MC)。与纯树脂相比,复合材料的拉伸强度显着升高,并且一些复合材料甚至具有完美的断裂伸长率。这是由于添加到PLA基质中的纤维素纤维可以作为增强件。此外,与PLA / MC复合材料相比,PLA / G-MC复合材料具有良好的外观形状和透光率,证明G-MC在复合材料中具有更好的分散和均匀性。差分扫描量热法(DSC)显示PLA / G-MC复合材料的玻璃化转变温度(Tg)和熔点(Tm)降低,而PLA矩阵的结晶温度(Tc)增加,这表明存在G-MC改善了PLA的结晶行为。

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