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A maximum contact angle of 155.1° was observed on the high-adhesion superhydrophobic surface.
Furthermore, the results indicate that each Reynolds number has a maximum contact angle to wet the whole tube steadily.
The parylene-C films presented in this work show enhanced hydrophobicity resulting from the combination of microstructures and nanostructures, achieving a maximum contact angle of 135°.
The maximum contact angle of 158° could be easily obtained by this simple method and the sliding angle (SA) was near to 0°.
The new model provides reasonable predictions of the critical droplet size for a given inclination angle, advancing contact angle, and maximum contact angle.
When the volume ratio of ethanol and deionized water is 6 4, the hydroxyapatite coating had a maximum contact angle of 152.8° and a sliding angle of < 2°.
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After being chemical etched by AgNO3 and surface modified with stearic acid, the as-prepared surfaces showed super-hydrophobic properties and the maximum contact angles reached 158.2°.
The volume of liquid is increased or decreased until the droplet has a maximum or minimum contact angle without changing the surface area between the liquid and the solid substrate.
The layered soot particle on the glass slide exhibits maximum water contact angle of 168°.
When the grooves are aligned parallel to gravity, the maximum apparent contact angle does not occur at the advancing front but rather along the side of the droplet because of contact-line pinning.
The superhydrophobic PSU-CNTs-FEP nanocomposite (PCFn) coating can be applied to different substrates such as aluminum plate, steel plate, glass plate, and steel pipe, which exhibited a maximum water contact angle all beyond 164 ± 1.5° and low slide angle of less than 5 ± 0.5°.
More suggestions(15)
maximum tilt angle
maximum contact time
maximum descent angle
maximum contact heating
maximum puncture angle
maximum deflection angle
maximum phase angle
maximum contact interface
maximum contact load
maximum contact circle
maximum slope angle
maximum contact area
maximum contact stress
maximum exit angle
maximum incident angle
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