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1)  hydrophobic stability
憎水稳定性
1.
The formation of hydrophobic surface was described, and the emphasis was given to the influence of the structure of side chains on the hydrophobic stability of the film.
本文分析了合成丙烯酸氟烷基酯所需的各类单体及其各自在共聚物中所发挥的作用,描述了憎水表面的形成过程,重点分析了侧链结构对聚合物涂膜憎水稳定性的影响。
2)  hydrophobicity
憎水性
1.
Research on improving hydrophobicity of glass surface using multineedle-to-plane electrode dielectric barrier discharge treatment;
多针-平板介质阻挡放电提高玻璃表面憎水性的研究
2.
The preparation and hydrophobicity of fluorinated activated carbon fibers;
氟化活性炭纤维的制备及其憎水性
3.
The wet-flashover performance of composite insulators in different hydrophobicity and pollution class;
复合绝缘子表面憎水性和污秽对其湿闪电压的影响
3)  water repellency
憎水性
1.
The developed flexible waterproof putty is excellent in crack resistance,adhesive strength,breathability and water repellency.
所研制的柔性耐水腻子抗裂性能优异、粘结强度高、具有透气性和憎水性,与外墙涂料配合使用应用于外墙外保温系统可明显提高该系统的耐候性。
4)  hydrophobic [英][,haidrə'fəubik]  [美][,haɪdrə'fobɪk]
憎水性
1.
Algorithm of Distilling Information of Hydrophobic Image of Insulators;
绝缘子憎水性图像水珠/水迹形状提取算法
2.
Preparation and Performance of Hydrophobic Inorganic/Organic Film;
具有憎水性的无机/有机膜层的制备方法与研究进展
3.
Spray image analysis based measurement of hydrophobic of insulator surfaces;
基于表面喷水图像分析的绝缘子表面憎水性检测方法
5)  hydrophobic property
憎水性
1.
Transparent FAS-SiO_2 nano-composite film on the surface of glass of hydrophobic property is prepared with sol-gel processing.
采用溶胶凝胶法在玻璃表面制备出透明的憎水性FASSiO2纳米复合薄膜,研究了各工艺参数对薄膜憎水性能的影响,利用原子力显微镜(AFM)观察了薄膜的表面形貌。
2.
The effects of SiO2 films and its raised speed, FAS films on the hydrophobic property of the film were studied, whose surface morphology was investigated by atom force microscope (AFM).
采用溶胶-凝胶法在玻璃表面涂覆透明的憎水性氟代烷基硅烷(FAS)-SiO2膜,研究了SiO2膜层数、提拉速度、FAS层数对玻璃憎水性能的影响,并利用原子力显微镜观察了FAS-SiO2表面改性玻璃的表面形貌。
3.
Transparent nano composite film on the surface of glass of hydrophobic property is prepared with sol-gel processing.
采用溶胶-凝胶法在玻璃表面制备出透明的憎水性纳米复合薄膜。
6)  Hydrophobic VOCs
憎水性VOCs
补充资料:水浸稳定性试验
分子式:
CAS号:

性质:将被覆电线浸渍在蒸馏水中两个星期,然后对比其浸渍前后电性能(介电常数)变化情况的试验。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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