Hangzhou Jiazhen Ultrasonic Technolgy Co.,Ltd

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Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles

Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles

    • Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles
    • Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles
  • Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles

    Product Details:

    Place of Origin: China
    Brand Name: HC-SONIC
    Model Number: HCS20-2000

    Payment & Shipping Terms:

    Minimum Order Quantity: 1set
    Price: negotiation
    Packaging Details: Foam And Wood Box
    Delivery Time: 3days
    Payment Terms: T/T, Western Union, MoneyGram
    Supply Ability: 200 sets per month
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    Detailed Product Description
    Frequency: 20Khz Power: 2000W
    Weight: 14Kg Horn: Titanium Alloy
    Speed: <300L/HOUR Generator: Digital

    Powerful Ultrasonic Dispersion Equipment Dispersing of Activated Charcoal

     

    Description:

     

    HC-Sonics manufactures the most technologically advanced and reliable ultrasonic processors in the industry for applications such as: dispersion of nanoparticles, nanotubes and Graphene; cell lysing and cell disruption; sample prep; ChIP assay; homogenization; extraction; atomization; and more.The mechanism of the ultrasonic dispersing equipment from ultrasonic cavitation effect. Ultrasonic cavitation is refers to the tiny air bubbles in the liquid formation, growth, collapse and cause of physical and chemical effect. In the process of the collapse of the bubble can release enormous energy, micro jet speed as high as 110 MPS, has strong impact. Cavitation bubbles at the instant of the explosion can produce up to 5000 k or even 10000 k more than more than 100 mpa and local high temperature and high pressure environment, the heating and cooling rate of more than 1010 KPS. These extreme conditions to make coating molecular bond rupture is reunited, promote the dispersing rate of reaction of coating, coating grain size control and distribution.

     

    Ultrasonic Preparation of Nanoscale Devices


    • Particle size uniformity, strong dispersion, crystal type control, simple preparation, high yield
    • Ultrasound nano-fabrication of monodisperse, well-defined nanoparticles and reduced energy consumption
    • Ultrasonic nanoprocessing is easier to achieve mesoscopic mixing than conventional mixing techniques, eliminating local concentration variations, increasing reaction rates, stimulating the formation of new phases, inhibiting reunion

     

    Item Frequence Max power Handing capacity Material
    HC20-S2000 20K±1KHz 2000W ≤ 300 L/h Titanium Sonotrode
    HC28-S200 28K±1KHz 200W ≤ 200 L/h
    HC28-S400 28K±1KHz 400W ≤ 300 L/h
    HC28-S500 28K±1KHz 500W ≤ 300 L/h
    HC28-S600 28K±1KHz 600W ≤ 400 L/h
    HC28-S800 28K±1KHz 800W ≤ 500 L/h
    HC30-S100 30K±1KHz 100W ≤ 200 L/h
    HC30-S200 30K±1KHz 200W ≤ 200 L/h
    HC30-S250 30K±1KHz 250W ≤ 200 L/h
    HC30-S400 30K±1KHz 400W ≤ 300 L/h
    HC30-S500 30K±1KHz 500W ≤ 300 L/h
    HC35-S150 35K±1KHz 150W ≤ 200 L/h
    HC40-S100 40K±1KHz 100W ≤ 200 L/h
    HC40-S50 40K±1KHz 50W ≤ 100 L/h

     

     

    Applications:

     

    Mixing and dispersion of the agglomerates of nanoparticles
    Conventional devices such as high shear or shear mixer, high-pressure homogenizers or colloid and disk mills do not deliver sufficient power to separate nanomaterial into its individual particles. Particularly for substances in the range of a few nanometers to a few micrometers, the use of high power ultrasound (Fig. 1) have been proven as a highly efficient and effective means to destroy the agglomerates, aggregates and even primary particles. During the preparation of highly concentrated batches, through the liquid jets, generated by ultrasonic cavitation, interparticle collision is caused. These particles collide with each other at speeds of up to 400 mph. Due to the high intensity interparticular collision, the van der Waals forces in agglomerates and even in the primary particles becomes broken.

    The effect of ultrasound
    As highly intensive ultrasound waves are inserted into fluids, ultrasound cavitation is generated. By the sound waves, alternating high-pressure phases (compression) and low-pressure phases (rarefaction) are created. During the low-pressure phases vacuum bubbles are generated by the ultrasonic waves, which grow and, once they absorb no more energy, implode in a high-pressure phase. During such an implosion, in the so-called hot spots very high temperatures (4500°C) and very high pressures (approx. 2000 bar) are achieved [5]. Also high-speed liquid jets of up to 1000km/h are achieved in the liquid. This phenomenon is called cavitation (Fig. 2).
    The enormous generated forces turn ultrasound into a powerful technology of mixing and grinding for many applications in research, development and production: This high-energy liquid jets break up droplets and agglomerates and let collide the particles with each other, so they are reduced.
    When mixing of powders into liquids, e.g. in the manufacture of paints, varnishes, coatings, as well as cosmetics, medicines and food, agglomerates are broken up and the particles are dispersed into the liqui

    • Dispersion
    • Cell disruption
    • Sample prep
    • Homogenization
    • Emulsification
    • Nanoparticle dispersion
    • Atomization
    • Graphene dispersion

     

     

    Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles

     

    Innovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of NanoparticlesInnovative Ultrasonic Mixing Equipment , Ultrasonic Dispersion Of Nanoparticles

     

    Contact Details
    Hangzhou Jiazhen Ultrasonic Technolgy Co.,Ltd

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