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Correlation Between Interlamellar Amorphous Structure and Gas Permeability in Poly(lactic acid) Films

机译:聚乳酸薄膜中层间非晶结构与气体渗透性的相关性

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摘要

We have investigated the relationship between amorphous structure and its gas permeability of poly(lactic acid) (PLA) using differential scanning calorimetry, wide-angle X-ray scattering, and small-angle X-ray scattering measurements. We focused on the hierarchical interlamellar amorphous structure of various gas-permeable PLA films. The films crystallized just above T_g did not have any long-spacing period peaks at the room temperature even with the existence of crystals; conversely, peaks could be observed from long spacing periods with heating. Therefore, the interlamellar amorphous density became as high as crystalline region one at the room temperature. These high-density amorphous regions, the so-called rigid-amorphous phase, reduced the gas diffusion and permeation. In the case of samples crystallized above 90℃, the long spacing period peaks could be observed even at the room temperature. The amorphous region did not develop the rigid-amorphous phase, and the gas permeability depended only on crystallinity.
机译:我们已经使用差示扫描量热法,广角X射线散射和小角X射线散射测量研究了非晶态结构与其在聚乳酸(PLA)中的透气性之间的关系。我们专注于各种透气性PLA薄膜的层间无定形结构。即使在存在晶体的情况下,在T_g上方结晶的薄膜在室温下也没有任何长时间间隔的峰值。相反,在加热的情况下,在较长的间隔时间内可以观察到峰。因此,在室温下,层间非晶态密度与晶体区之一一样高。这些高密度非晶区,即所谓的刚性非晶相,减少了气体的扩散和渗透。在90℃以上结晶的样品中,即使在室温下也可以观察到较长的间隔峰。非晶区没有形成刚性非晶相,而气体渗透率仅取决于结晶度。

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