
Laboratory Device Of Ultrasonic Graphene Dispersion
Description
Technical Parameters
High shear forces created by ultrasonic cavitation have the ability to break up particle agglomerates and result in smaller and more uniform particles sizes. The stable and homogenous suspensions produced by ultrasonics are widely used in many industries today. Probe sonication is highly effective for processing nanomaterials (carbon nanotubes, graphene, inks, metal oxides, etc.) and Sonicators have become the industry standard for:
Dispersing
Deagglomerating
Particle size reduction
Particle synthesis and precipitation
Surface functionalization
Special Features
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Pre-selection of the required Amplitude (50 to 100%).
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Fully Automatic Frequency Servo-Control.
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Microprocessor Controlled Timer 0 to 24 Hours.
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Continuous Display of Time, Temperature & Ultrasonic Power.
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Pre-selection of different Time, Temperature & Ultrasonic Power required is possible.
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Stabilization of Amplitude within +/- 1%.
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High specific Ultrasonic Power, direct interaction between processing medium & Ultrasonic Probe.
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Individual & Application specific versions can be made.
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Can be installed for Online Continuous & Batch Processes.
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As per requirement additional SONO PROCESSORS can be added in series.
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Degassing of processing medium is possible.
Description
Type
YPS17B-HB
YPS15B-HB
YPS11B-MB
YPS55B-HB
Power
1000W
500W
500W
1000W
Frequency
20Khz
28Khz 40Khz 20Khz Amplitude/power adjustment range
50-100%
50-100%
Temperature
<100℃
Volume of reactor
0-5L
Standard Spec
Ultrasonic device + Digital Generator
Optional configuration
Stainless steel reactor, Remote communication interface, flow meter, soundproof box
Application Fields
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Particle size reduction
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Homogenization
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Dispersion /Suspension
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Crystallization
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Emulsification /Mixing
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Degassing
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Disruption of Cells
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Agglomeration /De-agglomeration
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Acceleration of various chemical reactions, etc
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Viscosity Reduction
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Improves the Extract Yield and Extraction Efficiency.
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Accelerated processes and therefore increase in production capacity.
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Cost savings due to faster process runs reduced work steps.
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Improved yield and increase in efficiency.
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Reduces quantity of solvent required.
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Suitable for almost all types of Solvents.
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