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Blue Whale Ultrasonic Cleaning Machine 192L for DPF Filter Engine Parts Mold Rust and Grease Removal
1. What is the working principle of ultrasonic cleaning?
The working principle of ultrasonic cleaning is based on the phenomenon of cavitation, which is the formation and collapse of microscopic bubbles in a liquid medium. Ultrasonic cleaning uses high-frequency sound waves to create cavitation, which can dislodge and remove contaminants from the surface of an object.
Here's how it works:
A cleaning solution is placed in a tank or container, and the object to be cleaned is placed in the solution.
An ultrasonic transducer is immersed in the cleaning solution, and an electrical signal is sent to the transducer, which converts the signal into high-frequency sound waves.
The sound waves produce a rapid alternation of high and low pressure in the cleaning solution, which creates microscopic bubbles.
The bubbles grow in size until they can no longer absorb energy, and then they collapse suddenly, creating a shock wave that dislodges contaminants from the surface of the object.
The dislodged contaminants are then dispersed in the cleaning solution, and the process is repeated until the object is clean.
The high-frequency sound waves used in ultrasonic cleaning typically range from 20 to 400 kHz, depending on the specific application. The frequency and power of the sound waves can be adjusted to optimize the cleaning process for different types of objects and contaminants.
Ultrasonic cleaning is a highly effective method for removing contaminants from the surface of objects, and it is commonly used in industrial and commercial applications for cleaning a wide range of materials, including anilox rollers, metal parts, glass, plastics, and ceramics.
2. What is the advantages of ultrasonic cleaning?
Ultrasonic cleaning offers several advantages over traditional cleaning methods. Here are some of the main advantages:
Increased cleaning efficiency: Ultrasonic cleaning is highly efficient at removing contaminants from surfaces. The microscopic bubbles created by ultrasonic cleaning can penetrate even the smallest crevices and cavities, dislodging and removing contaminants that may be difficult to remove with traditional cleaning methods.
Reduced cleaning time: Ultrasonic cleaning can significantly reduce the cleaning time required for many applications. The intense localized energy produced by ultrasonic cleaning can quickly and effectively remove contaminants, reducing the need for manual scrubbing and reducing the total cleaning time.
Reduced labor costs: Ultrasonic cleaning can reduce the amount of labor required for cleaning many types of objects. This can result in significant cost savings for industrial and commercial applications that require frequent cleaning of multiple objects.
Improved safety: Ultrasonic cleaning is a safe cleaning method that does not require the use of harsh chemicals or solvents, which can be hazardous to workers and the environment. Ultrasonic cleaning can also help to improve workplace safety by reducing the need for manual scrubbing and handling of contaminated objects.
Improved cleaning quality: Ultrasonic cleaning can improve the quality of cleaning by removing contaminants that may affect the performance or appearance of objects. This can result in improved performance, longer lifespan, and better appearance of equipment and components.
Versatile cleaning capabilities: Ultrasonic cleaning can be used for a wide range of applications, including cleaning anilox rollers, removing rust and corrosion from metal parts, cleaning medical and dental instruments, and cleaning jewelry and other delicate objects. This makes it a highly versatile cleaning method that can be used in many industries and applications.
Overall, ultrasonic cleaning offers several advantages over traditional cleaning methods, including increased cleaning efficiency, reduced cleaning time and labor costs, improved safety, improved cleaning quality, versatile cleaning capabilities, and more. These advantages make ultrasonic cleaning a highly effective and efficient cleaning method for many industries and applications.
2. Product Features:
1). Working process: the 1st tank ultrasonic cleaning with heating,
remove the rust, grease and dust from the cleaning items. The 2nd
tank high pressure spraying to provide deep cleaning service. The
alarm buzzes once complete the spraying process.
2). The inner tank material: the use of 304 stainless steel,
thickened to 2mm, manual argon welding, strong and durable;
3). Adjustable time: 1-99 minutes/hour adjustable, can be opened
often;
4). Memory function: the device has an independent memory chip, and
there is no need to reset over and over after the time is set;
5). Equipment power cord: the use of industrial thickened power
cord, safe and durable;
6). Industrial grade transducer: the use of industrial shock head,
strong force and good effect, can work 24 hours uninterrupted;
7). Generator control system: independent generator control system,
flexible control, can be set according to the user's cleaning needs
to adjust the ultrasonic power;
8). Heating automatic constant temperature system: 20-95 degrees
adjustable, equipped with stainless steel heating tube, fast
heating speed.
3. Double Tanks Industrial Ultrasonic Cleaner CHS Series:
Ultrasonic Cleaning, Heating, High Pressure Spraying
5. Customer's Cleaning Feedback:
6. What is the application of ultrasonic cleaning machine?
Ultrasonic cleaning machines are used in a wide range of industries and applications for cleaning various types of objects. Here are some of the most common applications of ultrasonic cleaning machines:
Industrial cleaning: Ultrasonic cleaning machines are commonly used in industrial applications for cleaning metal parts, machinery components, and other types of equipment. Ultrasonic cleaning can effectively remove contaminants such as oil, grease, rust, and other types of debris that can accumulate on industrial equipment.
Medical and dental cleaning: Ultrasonic cleaning is used in medical and dental applications for cleaning instruments such as surgical tools, dental instruments, and prosthetics. Ultrasonic cleaning can effectively remove blood, tissue, and other types of biological debris from medical equipment, which is essential for maintaining a sterile environment.
Electronics cleaning: Ultrasonic cleaning is used in the electronics industry for cleaning electronic components such as circuit boards, sensors, and other types of equipment. Ultrasonic cleaning can effectively remove contaminants such as dust, dirt, and flux residues that can affect the performance of electronic components.
Jewelry and watch cleaning: Ultrasonic cleaning is used in the jewelry and watch industry for cleaning delicate and intricate pieces. Ultrasonic cleaning can effectively remove dirt, oil, and other types of debris from jewelry and watches, restoring their appearance and performance.
Automotive cleaning: Ultrasonic cleaning is used in the automotive industry for cleaning engine parts, carburetors, and other types of equipment. Ultrasonic cleaning can effectively remove contaminants such as oil, grease, and carbon buildup from automotive parts, improving their performance and lifespan.
Anilox roller cleaning: Ultrasonic cleaning is commonly used in the printing industry for cleaning anilox rollers, which are used to apply ink or coating to various substrates. Ultrasonic cleaning can effectively remove ink and other types of contaminants from the microscopic cells on the surface of anilox rollers, improving their performance and lifespan.
Overall, ultrasonic cleaning machines are highly versatile and can be used in many different industries and applications for cleaning various types of objects.