Приклади вживання Cavitational Англійська мовою та їх переклад на Українською
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Comparison of the cavitational hot spot distribution.
Cavitational shear forces are very effective to disperse and emulsify.
This feed will be injected into the cavitational area through 48 fine pipes.
The cavitational noise is in the human audible range.
Hielscher ultrasonic reactors add cavitational shear to the mixing process.
Thereby, the cavitational noise of the sonication process can be decreased substantially.
The ultrasonic emulsification technology is based on cavitational shear forces.
The ultrasonic cavitational mixing leads to faster growth of C‑S‑H‑phases.
Thesis on the topic"Development and research of cavitational aggregates for dispersion.
More important, the cavitational forces put a lot of stress onto the particles.
The InsertMPC48 combines fastnarrow injected jets with strong ultrasonic cavitational shear.
The sound protection box SPB-L reduces the cavitational noise of sonication substantially.
Cavitational erosion on particle surfaces generates unpassivated, highly reactive surfaces.
Ultrasonically generated mechanical vibrations and cavitational shear forces remove the contamination.
Cavitational erosion on particle surfaces generates unpassivated, highly reactive surfaces.
In order to generate intense cavitational shear forces, high amplitudes and pressure are crucial.
The imlosion and resulting ressure differentials result in very high shear forces andturbulences in the cavitational hot spot.
The figures below show the uneven distribution of cavitational hot spots in an ultrasonic bath. In Fig.
The high cavitational shear disperses and homogenizes agglomerated particles resulting in a higher specific surface area.
Hielscher ultrasonic reactors are very effective and intense cavitational shear mixers for production use.
The cavitational shear forces disrupt the adipose tissue, so that the stem cells are released from the structure of the fat tissue.
Hielscher Ultrasonic devices allow you to perform cavitational erosion testing at amplitudes from as little as 2 micron to 200 micron or more.
In the cavitational hot-spots, high temperatures of up to 5000K and fast cooling rates can occur, which assist dissolving processes.
The Hielscher ultrasonic mixer,deagglomerates and disperses the particles using cavitational shear. In result, the entire surface of each particle is fully exposed to water.
At these cavitational hot spots, the crystal nucleation and growth, e.g. by Ostwald ripening, is induced and promoted.
Hielscher's special sonotrodes for high amplitudes in combination withpressurizable flow cells generate extreme cavitational shear forces, which disrupt even very sturdy yeast cells.
The extreme conditions of cavitational bubble collapse and interparticular collision grind particles to very fine size material.
Switching from conventional homogenizers,hydrodynamic mixers and agitated mills to ultrasonic cavitational processing adds both cost savings and makes processing environmentally friendly.
In the cavitational“hot-spot”, extreme conditions are prevailed as locally occurring high temperatures and cooling rates, high pressure differentials and liquid jets.
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.