Citation: | ZHAI Guang-kun, LI Shu-lin, CHEN Su-su, SHANG Bo-lin. Anti-icing performance of superhydrophobic coating prepared by modified fluorinated silicone[J]. Chinese Journal of Engineering, 2018, 40(7): 864-870. doi: 10.13374/j.issn2095-9389.2018.07.013 |
[3] |
Nosonovsky M, Bhushan B. Multiscale Dissipative Mechanisms and Hierarchical Surface:Friction, Superhydrophobicity, and Biomimetics. Springer Science & Business Media, 2008
|
[9] |
Wu J L, Jiao P F, Zhuang W, et al. Modified DIX model for ion-exchange equilibrium of L-phenylalanine on a strong cation-exchange resin. Chin J Chem Eng, 2016, 24(10):1386
|
[11] |
Barthlott W, Neinhuis C. Purity of the sacred lotus, or escape from contamination in biological surfaces. Planta, 1997, 202(1):1
|
[12] |
Wenzel R N. Resistance of solid surfaces to wetting by water. Ind Eng Chem, 1936, 28(8):988
|
[13] |
Cassie A, Baxter S. Wettability of porous surfaces. Trans Faraday Soc, 1944, 40:546
|
[15] |
Nie Q, Ji Z Y, Liu J X, et al. Surface nanostructures orienting self-protection of an orthodontic nickel-titanium shape memory alloys wire. Chin Sci Bull, 2007, 52(21):3020
|
[16] |
Furmidge C G L. Studies at phase interfaces. I. The sliding of liquid drops on solid surfaces and a theory for spray retention. J Colloid Sci, 1962, 17(4):309
|
[17] |
Extrand C W, Kumagai Y. Liquid drops on an inclined plane:the relation between contact angles, drop shape, retentive force. J Colloid Interface Sci, 1995, 170(2):515
|