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The study of cationic waterborne polyurethanes modified by two different forms of polydimethylsiloxane

机译:两种不同形式的聚二甲基硅氧烷改性阳离子水性聚氨酯的研究

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Two kinds of dimethylpolysiloxane, KF-6001 and X-22-176-DX, were used to modify polyurethane. The effects of KF-6001 and X-22-176-DX on the colloidal, physico-chemical and surface properties were studied for polydimethylsiloxane modified cationic waterborne polyurethanes (SiCWPUs). The chemical structures and the surface morphologies of the SiCWPUs are characterized via Fourier transform infrared spectrometry and scanning electron microscopy. The results showed that the addition of siloxane changes the structure and surface morphology of the polyurethane. The element distributions in the polymer films were tested via X-ray photoelectron spectroscopy, and the effect of the hydrophobicity of the surfaces of the polymer films of the cationic waterborne polyurethanes was demonstrated via water contact angle tests on the surfaces of the films. As the amount of siloxane added increases, the silicon content on the surfaces of the SiCPWU1 films increases from 0% to 17.92%, and the actual silicon content on the surfaces of the films was much larger than the theoretical value. Therefore, the hydrophobicity of the membrane surface increases sharply, and the contact angle increases from 63.0° to 105.3°. Dynamic mechanical analysis indicates that the introduction of polydimethylsiloxane into the cationic aqueous polyurethane chain increases microphase separation in the polymer films. Stress–strain data showed that the mechanical properties of SiCPWU1 films were better than those of SiCPWU2 films when the same amounts of PDMS were added.
机译:两种二甲基聚硅氧烷,KF-6001和X-22-176-DX用于改性聚氨酯。研究了KF-6001和X-22-176-DX对胶体,物理化学和表面性质的影响,用于多二甲基硅氧烷改性阳离子水性多硫酸(SiCWPU)。通过傅里叶变换红外光谱和扫描电子显微镜表征SiCWPU的化学结构和表面形态。结果表明,硅氧烷的加入改变聚氨酯的结构和表面形态。通过X射线光电子能谱测试聚合物膜中的元件分布,并通过膜的表面上的水接触角测试来证明阳离子水性聚氨酯的聚合物膜的表面疏水性的效果。随着硅氧烷的量增加,SiCPWU1膜的表面上的硅含量从0%增加到17.92%,并且薄膜表面上的实际硅含量远大于理论值。因此,膜表面的疏水性急剧增加,接触角从63.0°增加到105.3°。动态力学分析表明将聚二甲基硅氧烷引入阳离子水性聚氨酯链中,增加了聚合物膜中的微单分离。应力 - 应变数据显示,当加入相同量的PDMS时,SICPWU1膜的机械性能优于SICPWU2薄膜。

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