[go: up one dir, main page]

Hussain et al., 2020 - Google Patents

Impingement of aqueous film forming foam (AFFF) solution drops on wood: Wetting and splash

Hussain et al., 2020

Document ID
11576660208169140347
Author
Hussain S
Lin S
Publication year
Publication venue
Journal of Industrial and Engineering Chemistry

External Links

Snippet

Drop impact is immensely important in many scientific principles and technological applications. Although the impact of liquid drops has been subjected to extensive experimental and theoretical work, the dynamic wetting behavior and the splash …
Continue reading at www.sciencedirect.com (other versions)

Similar Documents

Publication Publication Date Title
Hussain et al. Impingement of aqueous film forming foam (AFFF) solution drops on wood: Wetting and splash
US8722143B2 (en) Method to prepare superhydrophobic surfaces on solid bodies by rapid expansion solutions
Tong et al. Green and timesaving fabrication of a superhydrophobic surface and its application to anti-icing, self-cleaning and oil-water separation
Prunet-Foch et al. Impacting emulsion drop on a steel plate: Influence of the solid substrate
Rozhkov et al. Impact of drops of polymer solutions on small targets
Guo et al. Oblique droplet impact on superhydrophobic surfaces: Jets and bubbles
Lan et al. Effects of surface tension and wood surface roughness on impact splash of a pure and multi-component water drop
Marston et al. Deformed liquid marbles: Freezing drop oscillations with powders
Liang et al. A study of a single liquid drop impact on inclined wetted surfaces
Bobinski et al. Droplet bouncing on the surface with micro-structure
Shao et al. Experimental characterization of the effect of liquid viscosity on collisions between a multi-component droplet and a heated particle
Kim et al. Anti-splashing properties of sticky superhydrophobic surfaces
Peng et al. In situ fabrication of flower-like ZnO on aluminum alloy surface with superhydrophobicity
Pittoni et al. Bubbles entrapment for drops impinging on polymer surfaces: The roughness effect
Khoufech et al. Influence of liquid formulation and impact conditions on the coating of hydrophobic surfaces
Manzello et al. An experimental investigation of water droplet impingement on a heated wax surface
Raza et al. Droplet impact on hydrophobic surfaces with hierarchical roughness
Zhao et al. Experimental investigation on the dynamics of a single water droplet impacting wood surface
Zhu et al. Hydrodynamics and crystallization of NaCl aqueous solution droplet impact on heated surface
Mo et al. Defect by design: Harnessing the “petal effect” for advanced hydrophobic surface applications
Andrade et al. Development of a new method to predict the maximum spread factor for shear thinning drops
Cao et al. Experimental and molecular dynamic simulation of droplet deposition on superhydrophobic plant leaf surfaces
Huang et al. Experimental study of water drops with additive impact on wood surfaces
Kang Experimental study of the phenomenon of droplet impact upon a liquid surface
Pittoni et al. Occurrence and formation mechanisms of bubbles entrapped into water drops impinging on graphite