Приклади вживання Ultrasonic dispersing Англійська мовою та їх переклад на Українською
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Ultrasonic Dispersing Systems.
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Ultrasonic Dispersing Equipment.
The picture below shows a typical result of ultrasonic dispersing of fumed silica in water.
Ultrasonic Dispersing of Nanodiamonds.
The picture below shows a typical result of ultrasonic dispersing of fumed silica in water.
Ultrasonic Dispersing and Emulsifying.
Power, reliability,precise controllability as well as their robustness make Hielscher's ultrasonic dispersing systems the“work horse” in the production line of micron- and nano-particulated formulations.
Ultrasonic Dispersing and Deagglomeration.
At the same time, a smaller particle size is associated with a high surface energy for more severe aggregation and reactivity,so that the intense ultrasonic dispersing forces are required to disperse the nano particles homogeneously into the formulation.
Ultrasonic dispersing of nanotubes(UP400S).
As coalescence of the droplets after disruption influences the final droplet size distribution, efficiently stabilizing emulsifiers are used to maintain the final droplet size distribution at a level that isequal to the distribution immediately after the droplet disruption in the ultrasonic dispersing zone.
The ultrasonic dispersing technology creates sufficiently high shear energy to….
Ultrasonic dispersing has significant advantages against conventional milling techniques.
Ultrasonic dispersing is the ideal method to obtain fine-size, single-dispersed nanocellulose.
Ultrasonic dispersing helps to use the potential of silica by improving the dispersion quality.
By ultrasonic dispersing and deagglomeration the chemical reaction can proceed much more completely.
Ultrasonic dispersing helps to use the potential of silica by improving the dispersion quality.
Ultrasonic dispersing ensures that agglomerates are broken so that the nanoparticles are well dispersed. .
Ultrasonic dispersing is a highly reliable method to produce highly viscous slurries with large amounts of solid concentration.
The ultrasonic dispersing of graphene resulting in fine and even colloidal slurries has been demonstrated in various other studies.
The ultrasonic dispersing technology creates sufficiently high shear energy to achieve a complete separation of CNTs without damaging them.
Ultrasonic dispersing is the most advanced technology to deagglomerate and disperse micron-size and nano-size materials in liquids.
Ultrasonic dispersing promotes the mass transfer between phases and initiates the nucleation and crystal growth for phosphates(e.g., struvite/ MAP).
Ultrasonic dispersing and dissolving allows to produce high load formulations at high dispersion speed. Ultrasonic formulating….
Ultrasonic dispersing results in a high surface to volume ratio of the particles, which gives them a very high reactivity(e.g. adsorbent, catalytic).
Ultrasonic dispersing equipment creates cavitation and high shear forces to disrupt, deagglomerate, detangle and disperse nano particles and nanotubes.
During ultrasonic dispersing and deagglomeration, the caviational shear forces, which stretch out and break the molecular chains in a non-random process, result in a lowering of the molecular weight and poly-dispersity.
As ultrasonic dispersing technology can be used on lab, bench-top and production level, allowing for throughput rates over 10 tons/hour it is being applied in the R&D stage and in the commercial production.
Ultrasonic Blending& Dispersing.