
Ultrasonic Cleaning Device
Compared with other cleaning methods, professional and reliable industrial ultrasonic cleaning device has a very significant cleaning effect, and that can be completely effective thorough cleaning pieces of each dead corner, so as to really achieve the cleaning requirements of removing complex workpiece dead corner and hidden corner.
Compared with other cleaning methods, professional and reliable industrial ultrasonic cleaning device has a very significant cleaning effect, and that can be completely effective thorough cleaning pieces of each dead corner, so as to really achieve the cleaning requirements of removing complex workpiece dead corner and hidden corner.
Specification of Ultrasonic Cleaning Device | ||||||
Model | Capacity | Ultrasonic | Ultrasonic | Heating | Transducers | Inner tank dimednsion |
JYD-1012SG | 45 | 25/28/40 | 600 | 1500 | 12 | 500*300*300 |
JYD-1018SG | 61 | 25/28/40 | 900 | 2000 | 18 | 500*350*350 |
JYD-1024SG | 88 | 25/28/40 | 1200 | 3000 | 24 | 550*400*400 |
JYD-1030SG | 108 | 25/28/40 | 1500 | 3000 | 30 | 600*450*400 |
JYD-1036SG | 147 | 25/28/40 | 1800 | 6000 | 36 | 650*500*450 |
JYD-1042SG | 163 | 25/28/40 | 2000 | 6000 | 42 | 650*500*500 |
JYD-1048SG | 175 | 25/28/40 | 2400 | 6000 | 48 | 700*500*500 |
JYD-1060SG | 240 | 25/28/40 | 3000 | 9000 | 60 | 800*600*500 |
JYD-1072SG | 300 | 25/28/40 | 3600 | 9000 | 72 | 1000*600*500 |

FAQ
How to choose the suitable ultrasonic frequency in ultrasonic cleaning device machine?
The ultrasonic cavitation threshold is closely related to frequency. The higher the frequency, the higher the cavitation threshold. The lower the frequency and the lower the cavitation threshold, the easier it is to produce cavitation. At low frequencies, the time interval between compression and thinning of the liquid is longer. The bubbles can grow to a larger size, and the cavitation strength is enhanced, which is conducive to the cleaning effect. Therefore, low-frequency ultrasonic cleaning is generally used when the surface of large parts or the adhesion of dirt to the surface of the workpiece is high. But it is easy to damage and corrode the surface of the workpiece. Therefore, parts with higher requirements on the surface of the workpiece are not suitable for lower frequencies. Moreover, the frequency is low, and the noise generated is correspondingly louder. High-frequency ultrasonic waves have strong penetrating power, so it is advisable to clean the parts with higher surface finish requirements or complex surfaces and more blind holes.
On the other hand, the noise of high-frequency ultrasound is also small, which is suitable for cleaning some precision parts, such as some electronic parts, small bearing processing, and magnetic materials. For the cleaning of some special workpieces such as integrated circuit chips and silicon wafer coatings, it is advisable to choose higher frequency ultrasonics for cleaning. For some large workpieces such as automobile engines, valves and other large workpieces, low-frequency ultrasonic waves should be selected for cleaning. On the other hand, the ultrasonic cleaning effect and economy are considered, and the frequency is generally selected in the range of 20~130KHz. The specific selection frequency should be determined by corresponding experiments.
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