Приклади вживання Shear forces Англійська мовою та їх переклад на Українською
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Alternatively, these shear forces can be expressed as.
The Kirchhoff-Love constitutive assumptions lead to zero shear forces.
Ultrasonic shear forces enable for the processing of highly….
The ultrasonic emulsification technology is based on cavitational shear forces.
Cavitational shear forces are very effective to disperse and emulsify.
Intense yet precisely controllable cavitation and shear forces result in complete disruption….
Ultrasonic extraction is based on acoustic cavitation and its hydrodynamic shear forces.
Powerful ultrasonic shear forces help to dissolve powders, e. g.
Ultrasonic homogenizers deliver intense cavitation and high shear forces to kill microbes.
Ultrasonic shear forces are a reliable method to disperse shear-thinning materials into slurries.
Ultrasonically generated mechanical vibrations and cavitational shear forces remove the contamination.
Ultrasonic shear forces enable for the processing of highly viscous slurries and composites on industrial scale.
Ultrasonic food processing is based on acoustic cavitation and its hydrodynamic shear forces.
In order to generate intense cavitational shear forces, high amplitudes and pressure are crucial.
The application of high-power ultrasound to liquids andslurries results in intense cavitation and shear forces.
The phenomenon of decreasing viscosity under increasing shear forces is termed shear  thinning or thixotropic.
Ultrasonic shear forces lower the viscosity of the whey solution and allows thereby for a higher protein concentration. Hielscher….
As a result,the equilibrium equations for the plate have to be used to determine the shear forces in thin Kirchhoff-Love plates.
Ultrasonic homogenizers generate high shear forces and are reliable and robust systems to produce stable wax nano-emulsions.
The phenomenon of cavitation leads locally to extreme temperatures, pressures, heating/cooling rates,pressure differentials and high shear forces in the medium.
This results in intense mixing and forceful shear forces that are useful in the creation of many product formulations.
Mechanical shear forces caused by cavitational jet streams and acoustical streaming result in turbulent flow and material transport from and to particle or droplet surfaces.
The imlosion andresulting ressure differentials result in very high shear forces and turbulences in the cavitational hot spot.
Sonication applies intense shear forces and stress to the medium and releases thereby high extract yields in a very short extraction time.
High-performance ultrasound creates cavitation in liquids. Acoustic or ultrasonic cavitation generates locally extreme conditions such as super-high temperature and pressure differentials,liquid jets and shear forces.
Ultrasonic homogenizers generate high shear forces and are reliable and robust systems to produce stable wax nano-emulsions.
The ultrasonic emulsion process is based on intense cavitational shear forces providing micron- and nano sized droplets for highest product quality.
Ultrasonically generated high shear forces deliver the required energy to produce nano-sized wax emulsions, e.g. stable paraffin wax nanoemulsions.
Ultrasonic mixing uses cavitational shear forces that are more effective in the mixing of fine size materials than conventional rotary mixers and rotor‑stator mixers.
Ultrasonically generated cavitational shear forces are powerful enough to overcome the bonding forces,  whilst the ultrasound intensity can be adjusted accurately to avoid the damage of the SWCNTs.