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3L ultrasonic washer for surgical instruments for sweep frequency cleaning machine
Product advantages:
All-pervasive: Because the action of ultrasound occurs in the whole liquid, the surface of all objects that can contact with the liquid is cleaned, and it has a unique effect on objects with complex shapes and many cracks.
No damage in autumn: Traditional manual or chemical cleaning often occurs mechanical wear or chemical corrosion, while ultrasonic cleaning will not cause any damage to the object.
Wash everything, wash everything clean. In addition, when suitable cleaning agents are used for objects of different properties, the effect of osmotic dissolution of cleaning agents is enhanced by ultrasonic wave, which makes them completely new after cleaning.
How to finish cleaning by ultrasonic wave:
Ultrasound cleaning is the direct and indirect effect of the cavitation, acceleration and direct inflow of ultrasound on liquid and dirt, so that the dirt layer is dispersed, emulsified and peeled to achieve the purpose of cleaning. At present, cavitation and direct inflow are more widely used in ultrasonic cleaning machines.
(1) Cavitation: Cavitation is the transmission of ultrasonic waves to liquids by means of high frequency conversion of compression force and pressure reduction interaction more than 20,000 times per second. In the process of pressure reduction, vacuum nucleus bubbles are produced in liquid. In the process of compression, vacuum nucleus bubbles produce strong impact force when crushed under pressure, which peels off the dirt on the surface of the cleaned products, so as to achieve the purpose of precise cleaning.
In the process of ultrasonic cleaning, the bubbles visible to the naked eye are not vacuum nucleus bubbles, but air bubbles, which can inhibit the cavitation and reduce the cleaning efficiency. Only when the air bubbles in the liquid are completely removed, can the vacuum nucleus group bubbles with cavitation achieve the desired effect.
(2) Direct inflow: The phenomenon that ultrasound flows along the direction of sound propagation in liquid is called direct inflow. When the intensity of sound wave is 0.5W/cm2, direct inflow can be seen with naked eyes, and flow is generated perpendicular to the vibration surface. The velocity of flow is about 10cm/s. Through this direct inflow, the micro-oil dirt on the surface of the cleaned object is stirred, and the cleaning liquid on the surface of the dirt also generates convection. The solution of the dissolved dirt is mixed with the new solution, which speeds up the dissolution and plays a great role in the removal of the dirt.
(3) Acceleration: Acceleration caused by liquid particles. For the high frequency ultrasonic cleaning machine, the cavitation effect is not significant. At this time, the cleaning mainly relies on the acceleration impact particles under the action of liquid particle ultrasound to clean the dirt with ultra-precision.
3. Composition of the ultrasonic cleaning machine: The ultrasonic cleaning machine is mainly composed of two parts: the ultrasonic cleaning tank and the ultrasonic generator. The ultrasonic cleaning tank is made of high quality stainless steel with strong elasticity and corrosion resistance. The bottom of the tank is equipped with an ultrasonic transducer oscillator. The ultrasonic generator generates high frequency and high pressure, which is transmitted to the transducer through a cable connection line. The transducer and the vibration plate produce high frequency resonance, so that the solvent in the cleaning tank can be cleaned by ultrasonic wave.
APPLICATION RANGES:
DOMESTIC | |
Jewelry | Necklaces, rings, bracelets, earrings etc |
Watches and glasses | Waterproof wristwatches, watch chains, glasses, sunglasses etc |
Toiletry items | Electric toothbrush heads, electric shaver heads, razor blades, combs, toothbrushes, dentures etc |
Discs | CDs, DVDs, DVDs, CD-R discs, laserdisc etc |
Office equipment | Printed heads, fountain pen nibs, wax or rubber stamps , Calligraphic pens/ nibs etc |
Model | Tank Size | Unit Size | Volume | Power | Ultrasonic Frequency | Heating Power | Timer | Heating |
L x W x H(mm) | L x W x H(mm) | (L) | (W) | (KHz) | (W) | (MIN) | (℃) | |
ARS-XQXJ-103H | 150x140x65 | 190x170x185 | 1.3 | 50 | 40 | 100 | 1-99 | 0-80 |
ARS-XQXJ-002H | 150x140x100 | 190x170x220 | 2 | 50 | 100 | 1-99 | 0-80 | |
ARS-XQXJ-003H | 240x140x100 | 270x170x240 | 3 | 100 | 100 | 1-99 | 0-80 | |
ARS-XQXJ-006H | 300x155x150 | 330x180x310 | 6 | 150 | 300 | 1-99 | 0-80 | |
ARS-XQXJ-010H | 300x240x150 | 330x270x310 | 9 | 200 | 300 | 1-99 | 0-80 | |
ARS-XQXJ-013H | 355x325x150 | 360x330x310 | 13 | 300 | 400 | 1-99 | 0-80 | |
ARS-XQXJ-020H | 530x325x150 | 550x330x310 | 20 | 400 | 500 | 1-99 | 0-80 | |
ARS-XQXJ-027H | 530x325x200 | 550x330x360 | 27 | 500 | 500 | 1-99 | 0-80 |
3L ultrasonic washer for surgical instruments for sweep frequency cleaning machine