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Innovative plasticized starch films modified with waterborne polyurethane from renewable resources

机译:可再生资源的水性聚氨酯改性的创新增塑淀粉膜

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摘要

To develop biodegradable materials with high performance,we prepared a novel waterborne polyurethane (PU) from rapeseed oil based polyol,and then used it to modify the glycerol plasticized starch (PS) to overcome the intrinsic drawbacks of the starch materials,such as poor mechanical properties and water sensitivity.The blend films were successfully prepared by casting the aqueous dispersions of gelatinized starch and PU.The effect of PU content on the morphology,miscibility and physical properties of the resulting materials was detailed investigated by scanning electron microscopy,differential scanning calorimetry,dynamic mechanical thermal analysis and measurements of mechanical properties and water sensitivity.The results show that glycerol plasticized starch can mix with rapeseed oil based waterborne polyurethane at molecular level when PU content is lower than 20 wt%,whereas the phase separation occurs when the PU content further increases in the blends.The occurrence of hydrogen bonding interaction between starch and PU plays a key role in improvement of the material performance.Compared with the pure PS films,the PS/PU blends exhibit higher values of the elongation at break (85-^180%),the toughness (1.8-7.1 MPa) and the tensile strength (2.8^.1 MPa).Meanwhile,incorporating PU into the plasticized starch matrix leads to an improvement of surface and bulk-hydrophobation and a better water resistance of the resulting materials.
机译:为了开发高性能的可生物降解材料,我们从菜籽油基多元醇中制备了一种新型的水性聚氨酯(PU),然后将其用于改性甘油增塑淀粉(PS),以克服淀粉材料的固有缺点,如机械性能差。性能和对水的敏感性。通过流延糊化淀粉和聚氨酯的水分散体成功制备了共混膜。通过扫描电子显微镜,差示扫描量热法详细研究了聚氨酯含量对所得材料的形态,相容性和物理性能的影响。结果表明,当PU含量低于20 wt%时,甘油增塑淀粉可以在分子水平上与菜籽油基水性聚氨酯混合,而当PU含量降低时会发生相分离。混合物中的含量进一步增加。淀粉与PU之间的键合相互作用对改善材料性能起着关键作用。与纯PS膜相比,PS / PU共混物具有更高的断裂伸长率(85- ^ 180%),韧性(1.8- 7.1 MPa)和抗拉强度(2.8 ^ .1 MPa)。同时,将PU掺入增塑淀粉基体中可改善表面疏水性和本体疏水性,并获得更好的耐水性。

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