By K. L. Mittal
This booklet is the second one quantity within the sequence "Contact perspective, Wettability and Adhesion." The most advantageous quantity used to be released in 2013.
Even a cursory look on the literature express that during fresh years the curiosity in knowing and controlling wetting habit has grown exponentially. presently, there's great study task in rendering surfaces superhydrophobic, superhydrophilic, superoleophobic, superoleophilic, omniphobic and omniphilic as a result of their purposes in lots of technologically vital fields. additionally the sturdiness or robustness of fabrics with such large" features is intensely major, in addition to the usage of "green" (biobased) fabrics to acquire such surfaces.
This publication containing 19 articles displays newer advancements in sure parts coated in its predecessor quantity in addition to it contains a few themes that have been now not lined earlier than. Concomitantly, this ebook presents a medium to maintain abreast of the newest study job and advancements within the enviornment of touch attitude, wettability and adhesion.
The issues mentioned comprise: realizing of wetting hysteresis; fabrication of superhydrophobic fabrics; plasma remedy to accomplish superhydrophilic surfaces; hugely liquid repellent textiles; amendment of paper surfaces to regulate liquid wetting and adhesion; Cheerios influence and its keep an eye on; engineering fabrics with superwettability; laser ablation to create micro/nano-patterned surfaces; liquid repellent amorphous carbon nanoparticle networks; mechanical toughness of liquid repellent surfaces; wetting of stable partitions and spontaneous capillary circulate; courting among roughness and oleophilicity; superhydrophobic and superoleophobic eco-friendly fabrics; computational research of wetting on hydrophobic surfaces: program to self-cleaning mechanisms; bubble adhesion to superhydrophilic surfaces; floor loose power of superhydrophobic fabrics; and function of floor unfastened strength in pharmaceutical pill tensile strength.
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Extra resources for Advances in Contact Angle, Wettability and Adhesion, Volume Two
Wetting of Solid Walls and Spontaneous Capillary Flow 45 41. V. D. Sobolev, N. V. Churaev, M. G. Velarde, and Z. M. Zorin, Surface tension and dynamic contact angle of water in thin quartz capillaries, J. Colloid Interface Sci 222, 51–54 (2000). 42. A. Hamraoui, K. Thuresson, T. Nylander, and V. Yaminsky, Can a dynamic contact angle be understood in terms of a friction coefficient? J. Colloid Interface Sci. 226, 199–204 (2000). 43. P. Joos, P. Van Remoortere and M. Bracke, The kinetics of wetting in a capillary, J.
It is shown that, for any geometry and composite wall, the square of the capillary velocity is the product of a “physical” velocity and a “geometrical” velocity. Moreover, the coefficient appearing in the formula is the cosine of the generalized Cassie angle. It is also shown that the conventional Lucas-Washburn-Rideal expression is only valid for cylindrical ducts and that the use of an equivalent hydraulic diameter, as is sometimes done in the literature, introduces a systematic bias when the shape of the channel cross section differs notably from a circle.
Han, G. Mondin, N. G. Hegelbach, N. F. de Rooij and U. Staufer, Filling kinetics of liquids in nanochannels as narrow as 27 nm by capillary force, J. Colloid Interface Sci. 293, 151–157 (2006). 40. com (2014). Wetting of Solid Walls and Spontaneous Capillary Flow 45 41. V. D. Sobolev, N. V. Churaev, M. G. Velarde, and Z. M. Zorin, Surface tension and dynamic contact angle of water in thin quartz capillaries, J. Colloid Interface Sci 222, 51–54 (2000). 42. A. Hamraoui, K. Thuresson, T. Nylander, and V.
Advances in Contact Angle, Wettability and Adhesion, Volume Two by K. L. Mittal