Highclean Ultrasonics Table top Ultrasonic cleaner is a compact, stainless steel Table top Ultrasonic cleaner that delivers the power and reliability you’d expect from a more expensive industrial model. Utilizing exclusive piezo ceramic ultrasonic transducers and a heavy gauge, polished stainless steel housing, the compact cleaner offers outstanding performance and value when compared to cheap disposable piezoelectric units. Use of durable stainless steel materials and analog controls provide for minimal maintenance and years of trouble-free service.
The Tabletop cleaner uses Highclean’s environmentally safe, water-based cleaning formulations to remove soils from a wide variety of metal, plastic, ceramic or glass parts — without the use of solvents or harmful chemicals.
Highclean UltrasonicsTable Top Ultrasonic Cleaner is Well known for its higher efficiency and excellent Ultrasonic Cleaning Machines. The company is the well known Manufacturer and Supplier of Table Top Ultrasonic Cleaner in Vasai, Mumbai,India, thus offers it at reasonable prices Designed as per the specific requirements of our clients.. Highclean Ultrasonics Table Top Ultrasonic Cleaner Machine Used For Carbon removal, Highclean Ultrasonics Table Top Ultrasonic Cleaner Machine Used For Lubricant removal, Highclean Ultrasonics Table Top Ultrasonic Cleaner Machine Used For Ultrasonic sieve cleaning, Highclean Ultrasonics Table Top Ultrasonic Cleaner Machine Used For Coolant & metal particle removal Highclean Ultrasonics Table Top Ultrasonic Cleaner Machine Attributes For Excellent performance, Optimum results,Long working life,Easy to use etc.
A tabletop ultrasonic cleaner is a device that uses high-frequency sound waves to clean and remove contaminants from various objects. It is commonly used in industries such as jewelry, electronics, dentistry, and healthcare for cleaning delicate and intricate parts.
Here’s how a tabletop ultrasonic cleaner typically works:
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Tank: The cleaner consists of a tank or basin filled with a cleaning solution. The size of the tank can vary depending on the model and intended use.
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Transducers: The tank contains one or more piezoelectric transducers mounted on its bottom or sides. These transducers convert electrical energy into ultrasonic sound waves.
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Cleaning Solution: A cleaning solution is added to the tank, typically a mixture of water and a specialized cleaning agent. The solution helps to enhance the cleaning process by breaking down contaminants and facilitating their removal.
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Objects to be Cleaned: The objects or parts to be cleaned are placed in a basket or tray and then immersed in the cleaning solution. It is important to ensure that the objects are fully submerged and not overcrowded, allowing the ultrasonic waves to reach all surfaces evenly.
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Ultrasonic Cleaning: When the cleaner is turned on, the transducers generate high-frequency sound waves (typically between 20 to 40 kHz). These sound waves create microscopic bubbles through a phenomenon known as cavitation.
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Cavitation: As the sound waves pass through the cleaning solution, they cause the formation and collapse of tiny bubbles. This process creates a scrubbing effect on the surfaces of the objects, dislodging and removing dirt, grease, oils, and other contaminants.
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Cleaning Time: The duration of the cleaning cycle can vary depending on the type and level of contamination. Typically, the cleaning process lasts anywhere from a few minutes to several cycles, depending on the desired level of cleanliness.
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Rinse and Dry: After the ultrasonic cleaning cycle is complete, the objects are removed from the tank and rinsed with clean water to remove any remaining cleaning solution. They can then be dried using compressed air, a lint-free cloth, or other suitable methods.
Tabletop ultrasonic cleaners are generally compact, portable, and easy to use. They provide an effective and efficient cleaning method for a wide range of objects, particularly those with intricate shapes or hard-to-reach areas. It is important to follow the manufacturer’s instructions and guidelines for optimal performance and safety.