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Properties of Montmorillonite-Reinforced Thermoplastic Sago Starch Composites

机译:Montmorillonite加强热塑性Sago淀粉复合材料的性质

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In this work, biodegradable polymer was prepared from thermoplastic sago starch (TPSS) plasticized with glycerol. In order to improve the properties of the TPSS, Montmorillonite (MMT), a kind of reinforced additive was used in the preparation of montmorillonite-reinforced thermoplastic sago starch (MTRSS) composites via hot pressing method. The fabricated samples were investigated through X-ray diffractometry, Fourier transform infrared (FT-IR) as well as thermal and morphological properties. FT-IR patterns show that in the MTRSS composites, the C-O groups of sago starch molecules shifted to higher wave number, while the reactive hydroxyl groups of MMT shifted to the lower wavenumber. On the other hand, X-ray diffraction revealed that MMT restrained the crystallization of MTRSS and intercalated in TPSS. Thermogravimetric analysis (TGA) revealed that thermal stability of MTRSS was better than those of TPSS. In addition, the scanning electron micrograph results show that MMT were uniformly dispersed in the TPSS.
机译:在这项工作中,可生物降解的聚合物由用甘油塑化的热塑性Sago淀粉(TPS)制备。为了改善TPSS的性质,通过热压方法制备蒙脱石加强热塑性塑料Sago淀粉(MTRSS)复合材料的一种增强添加剂。通过X射线衍射测定,傅里叶变换红外(FT-IR)以及热和形态特性来研究制造的样品。 FT-IR模式显示,在MTRSS复合材料,西米淀粉分子的C-O基团转移到更高的波数,而MMT的反应性羟基基团转移到较低的波数。另一方面,X射线衍射揭示了MMT抑制了MTR的结晶并在TPS中插入。热重分析(TGA)揭示了MTRSS的热稳定性优于TPS的热稳定性。此外,扫描电子显微照片结果表明MMT均匀地分散在TPS中。

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