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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Thermal Behavior of Poly(lactic acid)-Nanocomposite Studied by Near-Infrared Imaging Based on Roundtrip Temperature Scan
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Thermal Behavior of Poly(lactic acid)-Nanocomposite Studied by Near-Infrared Imaging Based on Roundtrip Temperature Scan

机译:基于往返温度扫描的近红外成像研究聚乳酸-纳米复合材料的热行为

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摘要

The thermal behavior of poly(lactic acid) (PLA) was studied by near-infrared imaging to provide a molecular-level understanding of the physical improvement caused by nanoclay dispersion. A set of PLA samples, each having different nanoclay dispersion, was prepared under varying sonication time. Crystallinity variation of the polymer interacting with the nanoclay particles was analyzed by a roundtrip temperature scan below the melting temperature. Namely, the samples underwent heating and then cooling in the opposite way during the spectral measurement. The discrepancy of the spectral feature between the heating and the cooling indicated the development of the hysteresis associated with the cold crystallization of the PLA lamellae. The generation of the spectral residuals revealed the inner working mechanism of how the polymer structure undergoes variation depending on the presence of the clay particles and their dispersions. The sonication brings substantial dispersion of the nanoclay over the polymer matrix. The nanoclay particles then induce the additional development of the crystalline structure due to the molecular interaction between the PLA and nanoclay arising from the presence of enormous surface area, which in turn induces variation of mechanical strength to the polymer.
机译:通过近红外成像研究了聚乳酸(PLA)的热行为,从而提供了分子水平上对纳米粘土分散引起的物理性能改善的理解。在不同的超声处理时间下制备了一组PLA样品,每个样品具有不同的纳米粘土分散体。通过低于熔融温度的往返温度扫描来分析与纳米粘土颗粒相互作用的聚合物的结晶度变化。即,在光谱测量期间,样品以相反的方式经历加热然后冷却。加热和冷却之间的光谱特征差异表明与PLA薄片的冷结晶有关的磁滞现象的发展。光谱残留的产生揭示了聚合物结构如何根据粘土颗粒及其分散体的存在而发生变化的内部工作机理。超声处理使纳米粘土在聚合物基质上充分分散。然后,由于存在巨大的表面积而引起的PLA和纳米粘土之间的分子相互作用,使得纳米粘土颗粒引起了晶体结构的进一步发展,这反过来又引起了聚合物机械强度的变化。

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