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首页> 外文期刊>Journal of Applied Polymer Science >Mechanically strong waterborne poly(urethane-urea) films and nanocomposite films
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Mechanically strong waterborne poly(urethane-urea) films and nanocomposite films

机译:机械强水载聚(氨基甲酸酯 - 尿素)膜和纳米复合膜

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A series of transparent waterborne poly(urethane-urea) (PUU) films and nanocomposite films were prepared using isocyanate excess (5-50 mol% excess relative to the hydroxyl groups) and omitting the common chain-extension step in the acetone method of the preparation. The surplus isocyanate groups were converted into urea and eventually biuret linkages via the reaction with water during the last phase inversion step. Nanocomposites were prepared by the direct mixing of the PUU nanoparticles in water with aqueous nanosilica or montmorillonite powder followed by slow water evaporation. Variable urea/biuret content is responsible for substantially different tensile properties; the neat organic films show elongation-at-break values of 100%-1120%, tensile strength values of 0.07-22.1 MPa, and energy-to-break of 0.1-85 mJ x mm(-3). All of the materials can be potentially used as soft-to-hard topcoats, depending on the specific demands. The most promising materials are films prepared at 30 and particularly 40 mol% isocyanate excess.
机译:使用过量异氰酸酯(相对于羟基的过量量为5-50 mol%)并在丙酮制备方法中省略常见的扩链步骤,制备了一系列透明的水性聚氨酯-尿素(PUU)膜和纳米复合膜。剩余的异氰酸酯基团在最后的相转化步骤中通过与水的反应转化为尿素,并最终转化为缩二脲键。通过将PUU纳米颗粒在水中与水性纳米二氧化硅或蒙脱土粉末直接混合,然后缓慢水蒸发,制备了纳米复合材料。不同的尿素/缩二脲含量导致拉伸性能显著不同;纯有机薄膜的断裂伸长率为100%-1120%,抗拉强度为0.07-22.1MPa,断裂能为0.1-85MJ×mm(-3)。根据具体要求,所有材料都可能用作软至硬的面漆。最有希望的材料是在异氰酸酯过量量为30,尤其是40 mol%时制备的薄膜。

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