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UV-curable hybrids of hyperbranched and linear polyurethane dispersions

机译:超支化和线性聚氨酯分散体的UV固化杂化物

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摘要

A series of UV-curable hybrids of hyperbranched and linear polyurethane dispersions (HLPUDs) were synthesized by a three-step process. Hybrids of HLPUDs were obtained by mixing acrylated hyperbranched polyurethane (HBPUA) with linear acrylated polyurethanes (LPUAs) and then being dispersed with water. The high density of acrylic groups on the surface of the HBPUA is very useful for the post UV curing. The synthesis of HBPUA and the effects of the HBPUA loading on the particle size (PS) of the HLPUDs as well as the thermal and the mechanical properties of the resulting cured films were characterized by Fourier transform infrared (FTIR) spectroscopy, dynamic light scattering particle analysis, differential scanning calorimetry (DSC), dynamic mechanical analysis, thermal gravimetric analysis, and tensile measurements. The PS of the hybrids of HLPUDs were found to increase slightly from 38 to 76 nm with increase of the HBP content. Compared with the pure LPUA, the mechanical properties of the hybrids were enhanced dramatically, which could be correlated to the microstructure of the hybrids.
机译:通过三步法合成了一系列的高支化和线性聚氨酯分散体(HLPUDs)的可紫外光固化的杂化物。通过将丙烯酸酯化超支化聚氨酯(HBPUA)与线性丙烯酸酯化聚氨酯(LPUAs)混合,然后用水分散,可以得到HLPUD的杂化物。 HBPUA表面上丙烯酸基的高密度对于UV后固化非常有用。通过傅立叶变换红外光谱(FTIR),动态光散射粒子表征了HBPUA的合成以及HBPUA负载量对HLPUDs粒径(PS)以及所得固化膜的热性能和机械性能的影响。分析,差示扫描量热法(DSC),动态力学分析,热重分析和拉伸测量。发现HLPUDs杂种的PS随HBP含量的增加从38nm增加到76nm。与纯LPUA相比,杂种的力学性能显着提高,这可能与杂种的微观结构有关。

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