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20Khz Continuous production type ultrasonic graphene preparation equipment
|Frequency||20±0.5 KHz||20±0.5 KHz||15±0.5 KHz||20±0.5 KHz|
|Power||1000 W||2000 W||3000 W||3000 W|
|Temperature||300 ℃||300 ℃||300 ℃||300 ℃|
|Pressure||35 MPa||35 MPa||35 MPa||35 MPa|
|Intensity of sound||20 W/cm²||40 W/cm²||60 W/cm²||60 W/cm²|
|Max Capacity||10 L/Min||15 L/Min||20 L/Min||20 L/Min|
Continuous production type ultrasonic graphene production equipment uses ultrasonic waves to convert electrical energy into mechanical energy tens of thousands of times per second. Acoustic cavitation-the formation, vibration, growth, contraction, and collapse of bubbles in the liquid, the physics and chemistry caused by the machine Variety. The physical, mechanical, thermal, biological, and chemical effects caused by cavitation, through the vibration of cavitation, disperse the materials we are processing to the micron or even nanometer level.
Working principle of continuous production type ultrasonic graphene preparation equipment
Ultrasonic dispersion is the use of ultrasonic waves to convert electrical energy into mechanical energy tens of thousands of times per second. Acoustic cavitation-the formation, vibration, growth, contraction, and collapse of cavitations in the liquid, the physical and chemical changes caused by the machine. The physical, mechanical, thermal, biological, and chemical effects caused by cavitation disperse the materials we are processing to the micron or even nanometer level through the vibration of cavitation.
Continuous production type ultrasonic graphene preparation equipment
Ultrasonic dispersion refers to the process of dispersing and de-agglomerating particles in the liquid through the "cavitation" effect of ultrasonic waves in the liquid using liquid as a medium. Ultrasonic technology, as a physical means and tool, can produce various conditions in liquids. This phenomenon is called sonochemical action, and related ultrasonic equipment is called ultrasonic sonochemical equipment (abbreviated as "sonochemical equipment"). Ultrasonic dispersion equipment is an application of sonochemical equipment, which can be used for water treatment, solid-liquid dispersion, de-agglomeration of particles in liquid, and promotion of solid-liquid reaction. Acoustic waves use physical technology to produce a series of conditions close to those in a chemical reaction medium. This energy can not only stimulate or promote many chemical reactions, accelerate the speed of chemical reactions, but can even change the direction of chemical reactions and produce some effects. Sonochemistry can be applied to almost all chemical reactions, such as extraction and separation, synthesis and degradation, biodiesel production, treatment of microorganisms, degradation of toxic organic pollutants, biodegradation treatment, biological cell crushing, dispersion and aggregation, etc.
Ultrasonic dispersion machine function
1. Ultrasonic vibration source (drive power supply): convert 50-60Hz mains power into high-power, high-frequency (15kHz-100kHz) power supply, and provide it to the transducer.
2. Transducer (controller, transducer): converts high-frequency electrical energy into mechanical vibration energy.
3. Amplitude rod: connect and fix the transducer and the tool head, amplify the amplitude of the transducer and transmit it to the tool head.
4. Tool head (introduction rod): transfer mechanical energy and pressure to the work object, and also have the function of amplitude amplification.
5. Connecting bolts: Connect the above components tightly.
Industrial grade ultrasonic crushing and dispersing machine is mainly used for large-scale industrial production. The industrial-grade high-power ultrasonic sonochemical processing equipment produced by our company has high power, high efficiency, and large radiation area. It is suitable for large-scale industrial production. It has real-time monitoring of frequency and power, adjustable power, and overload alarm functions. The length is 930mm. The industrial-grade ultrasonic crushing and dispersing machine has an energy conversion efficiency of 80%-90%. Nano-level ultrasonic dispersion machine can be applied to a series of materials that require ultrasonic dispersion, such as the dispersion of new materials, graphene dispersion, silicon carbide dispersion, resin dispersion, and alumina dispersion.
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