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Comparison of Precipitated Calcium Carbonate/Polylactic Acid and Halloysite/Polylactic Acid Nanocomposites

机译:沉淀碳酸钙/聚乳酸和埃洛石/聚乳酸纳米复合材料的比较

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PLA nanocomposites with stearate coated precipitated calcium carbonate (PCC) and halloysite natural nanotubes (HNT) were prepared by melt extrusion. The crystallization behavior, mechanical properties, thermal dynamical mechanical analysis (DMTA), and the morphology of the PCC/PLA, HNT/PLA, and HNT/PCC/PLA composites were discussed. Compared to halloysite nanotubes, PCC nanoparticles showed a better nucleating effect, which decreased both the glass transition and cold crystallization temperatures. The tensile performance of PLA composites showed that the addition of inorganic nanofillers increased Young’s modulus but decreased tensile strength. More interestingly, PLA composites with PCC particles exhibited an effectively increased elongation at break with respect to pure PLA, while HNT/PLA showed a decreased ultimate deformation of composites. DMTA results indicated that PLA composites had a similar storage modulus at temperatures below the glass transition and the addition of nanofillers into PLA causedTgto shift to lower temperatures by about 3°C. The morphological analysis of fractures surface of PLA nanocomposites showed good dispersion of nanofillers, formation of microvoids, and larger plastic deformation of the PLA matrix when the PCC particles were added, while a strong aggregation was noticed in composites with HNT nanofillers, which has been attributed to a nonoptimal surface coating.
机译:通过熔融挤出制备了具有硬脂酸酯涂层的沉淀碳酸钙(PCC)和埃洛石天然纳米管(HNT)的PLA纳米复合材料。讨论了PCC / PLA,HNT / PLA和HNT / PCC / PLA复合材料的结晶行为,力学性能,热力学分析(DMTA)和形态。与埃洛石纳米管相比,PCC纳米颗粒显示出更好的成核效果,从而降低了玻璃化转变温度和冷结晶温度。 PLA复合材料的拉伸性能表明,添加无机纳米填料可提高杨氏模量,但降低拉伸强度。更有趣的是,具有PCC颗粒的PLA复合材料相对于纯PLA表现出有效的断裂伸长率提高,而HNT / PLA显示复合材料的最终变形降低。 DMTA结果表明,PLA复合材料在低于玻璃化转变温度的温度下具有相似的储能模量,向PLA中添加纳米填料会导致Tg向较低温度移动约3°C。当添加PCC颗粒时,PLA纳米复合材料的断裂表面的形态分析表明,纳米填料具有良好的分散性,微孔的形成以及PLA基质的较大塑性变形,而在HNT纳米填料的复合物中则观察到了强聚集作用。到非最佳的表面涂层。

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