• 25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend
  • 25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend
  • 25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend
  • 25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend

25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend

Application: Ultrasonic Cavitation Reactor Biodiesel
Cleaning Media: Wet Cleaning
Automation: Automatic
Cleaning Precision: Ultra-Precision Industrial Cleaning
Control: Ultrasonic Cleaning Generator
Principle: Ultrasonic Cavitation
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Basic Info.

Model NO.
OKS-GZCSB1000
Condition
New
Customized
Customized
Usage
Ultrasonic Dispersion Equipment
Frequency
25K-27K Can Choose
Name
Ultrasonic Extraction Equipment
Type
Pharmaceutical Industry Cleaning Transducer
Transport Package
Carton Box/Foam
Origin
Tianjin, China
HS Code
8543709990
Production Capacity
100set/Month

Product Description

Ultrasonic vibrating rods are also called ultrasonic vibrating rods. Compared with traditional ultrasonic vibrating plates, it has the characteristics of wider application range and longer service life. In industrial applications, the use of ultrasonic vibrating rods for cleaning, extraction, chemical reactions, scale prevention, water treatment, etc., is a very mature and widely used technology.
The ultrasonic vibrating rod uses the alternating period of positive and negative pressure existing in the transmission process of ultrasonic waves. In the positive phase, the medium molecules are squeezed to increase the original density of the medium; in the negative phase, the medium molecules are sparse and discrete, and the medium density Decrease. Ultrasonic vibrating rods can generate ultrasonic waves evenly around 360°, and the energy output is not affected by load changes such as liquid level and temperature difference. Ultrasonic vibrating rods generally include high-power ultrasonic transducers, horns, and tool heads (transmitting heads). ), which is used to generate ultrasonic vibration and emit this vibration energy into the liquid. The transducer converts the input electrical energy into mechanical energy, namely ultrasound. Its manifestation is that the transducer stretches back and forth in the longitudinal direction, and the amplitude is generally several microns. Such amplitude power density is not enough and cannot be used directly. The horn amplifies the amplitude according to the design requirements, isolates the reaction solution and the transducer, and also plays a role in fixing the entire ultrasonic vibration system. The tool head is connected with the horn, and the horn transmits the ultrasonic energy vibration to the tool head, and then the ultrasonic energy is emitted into the chemical reaction liquid by the tool head.

Features:
1. Ultrasonic cavitation is generated around the vibrating rod, and the ultrasonic energy is very evenly distributed around the rod;
2. The power output of the ultrasonic vibrating rod is not affected by load changes such as liquid level, tank capacity and temperature difference, and the power output is stable and uniform;
3. Ultrasonic vibrating rod is more than 1.5 times the service life of traditional ultrasonic vibrating plate;
4. The round tube design of the ultrasonic vibrating rod makes the vibrating rod easy to install and use;
5. The ultrasonic vibrating rod is sealed and waterproof, safe to use.

Application of ultrasonic vibrating rod in cleaning:
Due to the unique round tube design characteristics, the ultrasonic vibrating rod is especially suitable for cleaning all kinds of pipelines. The principle is to convert electrical energy into ultrasonic energy and transfer it to scale, water, and the inner wall of the pipeline according to its own rules, making it very large energy of. The oscillating wave generated by the ultrasonic wave in the transmission process causes the scale, water, and the inner wall of the pipe to resonate. Due to the different oscillation frequencies of the scale, water, and the inner wall of the pipe, the water molecules in the pipe collide violently, generating a strong impact force and impacting the heat exchange surface. The upper scale layer makes it crisp, peeled, peeled off, crushed, and discharged together with the sewage of the equipment, so as to realize the thorough cleaning of the inner wall of the pipeline by the ultrasonic vibrating rod. In addition, the ultrasonic vibrating rod can also be used for the cleaning of the tank, and it can be freely placed in any position of the cleaning tank, which is very flexible and convenient to use, and occupies a small volume space, leaving no dead corners for cleaning.

The application of ultrasonic vibrating rod in accelerating chemical reaction:
The front end of the transmitter head of the ultrasonic vibrating rod tool head is close to the outer wall of the kettle or extends into the kettle cavity of the kettle body. The ultrasonic transducer can send ultrasonic waves to the chemical reactants in the kettle cavity, and the liquid to be processed is due to the ultrasonic wave. Cavitation can cause changes in the activity of the reaction system, destroy the solvent structure of the chemical reactants in the tank cavity, generate instantaneous high temperature and high pressure enough to initiate chemical reactions, form local high-energy centers, and promote the smooth progress of chemical reactions. This is the use of ultrasound The vibrator is the main factor for the catalytic chemical reaction.

The secondary effects of ultrasonic, such as mechanical shock, emulsification, diffusion, crushing, etc., are conducive to the full mixing of the reactants in all directions. The ultrasonic vibrating rod adopts a high-power energy-concentrating transducer, which can make the substance make violent forced motion and accelerate The transfer and diffusion of substances can replace traditional mechanical stirring. Of course, it can be used with an electric stirrer in actual applications to accelerate the reaction better.

Application of ultrasonic vibrating rod in scale prevention:
Let's take the heat exchanger as an example. The ultrasonic vibrating rod is generally installed at the liquid inlet of the heat exchanger, using flange connection and control valve control, so that the ultrasonic equipment can be overhauled and maintained without stopping the production. The main principle is that ultrasonic waves transfer and generate energy due to resonance during the transmission process. Material molecules such as scale, water, and metal heat exchange surfaces obtain energy during the vibration process. The water in the heat exchange tube generates vibration and fierce collision while obtaining energy. , So that the unstable water molecules containing various inorganic salts produce countless cavitation bubbles (cavitation), forming water molecule cavitation cavities. When these bubbles expand rapidly and suddenly close, they produce local impacts of thousands of atmospheres, high-speed jets with a speed of up to 400km/h and high energy above 5000k. These energy destroy the combination of positive and negative ions and acid radicals and destroy the formation of scale. Conditions to achieve anti-scaling.

Application of ultrasonic vibrating rod in water treatment:
Ultrasonic vibrating rod energy-concentrating ultrasonic probe concentrates energy and can obtain strong sound intensity on the end face of ultrasonic radiation. Due to the energy-gathering effect of the horn, the sound energy density is greatly improved; the response can be accurately designed according to the sound energy density The transmitter end face of the probe is generally designed to be detachable, so that a probe with a suitable end face size can be selected at any time according to the required sound intensity. At the same time, when the probe is severely corroded by cavitation, you only need to replace the end instead of the price. Expensive whole vibrator. Ultrasonic vibrating rods can be used to treat a variety of difficult-to-degrade organic wastewater, and have been used to contain monocyclic aromatic compounds, polycyclic aromatic hydrocarbons, phenols, chlorinated hydrocarbons, chlorinated hydrocarbons, organic acids, dyes, alcohols, ketones, etc. Research on wastewater treatment and achieved good results. In the actual industrial wastewater, the equipment has been used to treat papermaking wastewater, printing and dyeing wastewater, tanning wastewater, coking wastewater, pharmaceutical wastewater, landfill leachate, etc., and achieved good results.
Ultrasonic tube  reactor  Frequency
(KHz)
Ultrasound
Output(W)
Total Length
(mm)
Diameter
(mm)
Static Capacity
(pF±10%)
OKS-GZCSB1000
 
 25-27 1000
 
500
 
Φ50-55
 
68000
 
OKS-GZCSB1500
 
25-27
 
1500
 
850 Φ50-55
 
68000
 
OKS-GZCSB2000
 
25-27
 
2000
 
1100 Φ50-55
 
132000

25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend
25K-27K Tube Ultrasonic Reactor Immersible Ultrasonic Mix Transducer Reactor for Biodiesel Blend
 

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