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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Improving water resistance of waterborne polyurethane coating with high transparency and good mechanical properties
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Improving water resistance of waterborne polyurethane coating with high transparency and good mechanical properties

机译:具有高透明度和良机械性能的水性聚氨酯涂层的耐水性

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摘要

Polyester based waterborne polyurethane (WPU) dispersions modified with hydroxypropyl-terminated poly-dimethylsiloxane (HPDMS) and sulfonate polyester diol were synthesized. The water resistance of WPU coating improved significantly when 5% HPDMS was used for modification, but it also leads to the decreasing of dispersion stability and damages in the mechanical properties and transparency of WPU coating. It was found that incorporating ionic groups in soft segments (sulfonate polyester diol) of WPU can obtain a coating with good water resistance where only 0.5% HPDMS is needed. In this case, the water swelling of WPU coating decreased to 7.0% while the pure WPU was 15.2%. Meanwhile, the mechanical and optical properties of modified coating change slightly. Its tensile strength was 62.6 MPa, and its light transmittance at 532 nm was 83.8%. Zeta potential test indicated the introduction of sulfonate polyester diol could improve the stability of WPU dispersions. The water resistance improvement of the WPU coating could be ascribe to the decrease of surface free energy and the change of phase separation degree. The water swelling, X-ray photoelectron spectroscopy, and contact angle test results demonstrated the migration of HPDMS and sulfonate polyester diol segments on the coating surface. The phase separation of WPU coatings was measured by dynamic thermomechanical analysis. The modified WPU with excellent water resistance is promising in the application of transparent coatings.
机译:用羟丙基封端的聚二甲基硅氧烷(HPDMS)和磺酸盐聚酯二醇改性的聚酯基水性聚氨酯(WPU)分散体被合成。 WPU涂层的耐水性显着改善,当使用5%HPDMS进行改性时,也导致分散稳定性的降低和WPU涂层的机械性能和透明度损伤。发现在WPU的软段中的离子基团(磺酸盐聚酯二醇)掺入WPU的涂层,含有良好的耐水性,在需要0.5%HPDMS中。在这种情况下,WPU涂层的水膨胀降至7.0%,而纯WPU为15.2%。同时,改性涂层的机械和光学性能略有变化。其拉伸强度为62.6MPa,其532nm的透光率为83.8%。 Zeta电位试验表明磺酸盐聚酯二醇的引入可以提高WPU分散体的稳定性。 WPU涂层的耐水性改善可以归因于表面自由能和相分离程度的变化。水膨胀,X射线光电子能谱和接触角测试结果证明了HPDM和磺酸盐聚酯二醇区段在涂层表面上的迁移。通过动态热机械分析测量WPU涂层的相分离。在透明涂层的应用中具有优异的防水性的改性WPU是有前途的。

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