Drop Impact on Superheated Surfaces
β Scribed by Tran, Tuan; Staat, Hendrik J. J.; Prosperetti, Andrea; Sun, Chao; Lohse, Detlef
- Book ID
- 121859969
- Publisher
- The American Physical Society
- Year
- 2012
- Tongue
- English
- Weight
- 609 KB
- Volume
- 108
- Category
- Article
- ISSN
- 0031-9007
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## Abstract Impaction on smooth solid substrates of drops formed by the dropβonβdemand (DOD) method was investigated over a wide range of impaction speeds (U~0~ = 2.21β12.2 m/s), surface contact angles (ΞΈ = 6β107Β°), and drop diameters (D~0~ = 40.8β50.5 ΞΌm). The experimental results were compared wi
We have carried out an experimental study of liquid drop impact on superhydrophobic substrates covered by a carpet of chemically coated nano-wires. The micro-structure of the surface is similar to some biological ones (Lotus leaf for example). In this situation the contact angle can then be consider