首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Surface and mechanical properties of an organic-inorganic super- hydrophobic coating using modified nano-SiO2 and mixing polyurethane emulsion as raw materials
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Surface and mechanical properties of an organic-inorganic super- hydrophobic coating using modified nano-SiO2 and mixing polyurethane emulsion as raw materials

机译:使用改性纳米SiO2和将聚氨酯乳液混合为原料的有机 - 无机超疏水涂层的表面和力学性能

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A series of organic-inorganic super-hydrophobic coatings were prepared using nano-SiO2 particles modified by fluorine and silicone coupling agents, and a mixing polyurethane emulsion as main raw materials. The mixing polyurethane emulsion was consisted of the polyurethane emulsion end-terminated by double bond (WPUD) and polyurethane emulsion modified by silicone (WPUS). The influence of content of modified nano-SiO2 particles and the weight ratio of WPUS to WPUD on microstructure and hydrophobicity of the coating surface were studied. The morphologies of coating surface were examined using SEM and AFM, hydrophobicity of the coating was researched by examining static water contact angle and so on. It was found that modified nano-SiO2 particle was an indispensable factor during the preparation of super-hydrophobic coating. The roughness and hydrophobicity of the coating surface were enhanced obviously with an increase of the content of the modified nano-SiO2 particles. When the content of the modified nano-SiO2 particles increased up to 1.5%, the surface of coating possessed good super-hydrophobicity, and static water contact angle reached 169.1 degrees. It was also noticed that the weight ratio of WPUS to WPUD in the base layer has also an important influence on the hydrophobicity and mechanical property of coating surface. With an increase of the ratio of WPUS to WPUD the hydrophobicity of the coating was enhanced, the tensile strength and peel strength reduced, but the elongation at break increased. When the weight ratio of WPUS to WPUD reaches up to 9/100, the static water contact angle reaches the maximum value of 169.1 degrees.
机译:使用由氟和硅氧烷偶联剂改性的纳米SiO 2颗粒制备一系列有机无机超疏水涂料,以及作为主要原料的混合聚氨酯乳液。混合聚氨酯乳液由由双键(WPUD)的聚氨酯乳液组成,并通过硅氧烷(WPU)改性的聚氨酯乳液组成。研究了改性纳米SiO2颗粒的含量和WPU与WPUD的重量比对涂层表面的微观结构和疏水性的影响。使用SEM和AFM检查涂层表面的形态,通过检查静电接触角等,研究涂层的疏水性。发现改性纳米SiO 2颗粒在制备超疏水涂层期间是一种不可或缺的因子。随着改性纳米SiO 2颗粒的含量的增加,涂层表面的粗糙度和疏水性显着增强。当改性纳米SiO 2颗粒的含量增加至1.5%时,涂层表面具有良好的超疏水性,并且静态水接触角达到169.1度。还注意到基础层中WPU与WPUD的重量比对涂层表面的疏水性和力学性质的重要影响也重要。随着WPU与WPUD比率的增加,涂层的疏水性增强,抗拉强度和剥离强度降低,但断裂伸长率增加。当WPU与WPUD的重量比达到9/100时,静电接触角达到最大值为169.1度。

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