-
How to buy a satisfactory ultrasonic cleaner? What is the cavitation effect?
Sound is an important medium for our daily communication and information transmission, but can it do more? We study it constantly. Finally, we found the ultrasonic wave and made good use of it, making it play an irreplaceable role. Ultrasonic cleaners are
-
Application of ultrasonic cleaning machines in the electronic and micro-powder industry
Ultrasonic cleaning is mainly caused by ultrasonic cavitation, cavitation effect is the main factor. The high-pressure and high-temperature shock wave produced by bubble blasting reduces the adhesion between dirt and cleaning parts, and results in the dam
-
Which frequency of ultrasonic cleaner is used more? Can you wash the key cap?
The frequency range in which an ultrasonic cleaning machine is used depends on the shape and material of the cleaning. The cavitation effect determines the cleaning effect, and the ultrasonic frequency directly affects the cavitation effect. In general, t
-
Why the hardware ultrasonic cleaning machine oil removal effect is good?
Hardware ultrasonic cleaning machine specialized in cleaning all kinds of equipment including metal objects and small parts. It acts on two-phase or multi-phase systems and can produce many effects, such as cavitation effect, shape effect, interface effec
-
What parts can ultrasonic cleaning equipment effectively clean?
Ultrasonic cleaning equipment can clean various types of workpieces because it utilizes the principle of the ultrasonic cavitation effect. It makes use of ultrasonic and water molecules explosion, so that the dirt on the workpiece dispersed, loose, and th
-
Why Do Ultrasonic Cleaners Need Degassing? The Key to Unlocking Peak Performance
When using an ultrasonic cleaner, many users focus on power settings, cleaning solutions, and cycle duration but overlook a critical step:degassing. This process, which removes dissolved gases from the liquid, might seem minor, but it significantly impact
-
What Should Not Be Cleaned with an Ultrasonic Cleaner: Key Considerations and Restrictions
Ultrasonic cleaning is a powerful and efficient cleaning technique that uses high-frequency sound waves (typically 20-40 kHz) to create microscopic bubbles in a cleaning liquid. These bubbles form and collapse rapidly, a process known as cavitation, which
-
Ultrasonic Cleaning Technology Excellence: Efficient Cleaning of Rubber Products
Ultrasonic cleaning technology has emerged as a pioneering solution for the efficient cleaning of rubber products, offering a comprehensive and damage-free approach. In this discussion, we delve into the intricacies of ultrasonic cleaning, exploring its o
-
Ultrasonic Cleaning for Metal Storage Tanks: Ensuring Hygiene and Quality
Cleaning metal storage tanks is a crucial process to ensure the hygiene and storage quality of the tanks. Over time, metal tanks can accumulate deposits, residues, and various contaminants on their inner walls, which can impact the integrity of the stored
-
Why Can't Ultrasonic Cleaners Use Thin Steel Sheets? - An Engineering Analysis of Resonance Principles and Material Selection
In the field of industrial manufacturing and equipment material selection, a fundamental principle is: "The right material for the right application." For ultrasonic cleaners, the choice of material for their core working component—the tank that
-
Why Ultrasonic Cleaners Must Not Have Low Water? The Critical Role of Water Level Explained
For anyone who owns an ultrasonic cleaner, the instruction to "fill the tank with adequate water" is as fundamental as it gets. Yet, in moments of haste or curiosity, you might wonder what would happen if you ran it with less water than recommen
-
Is Ultrasonic Cleaner Power High? Why? Understanding Power Ratings and Their Impact on Cleaning Performance
Ultrasonic cleaners are widely used in industries ranging from manufacturing to healthcare, but many users wonder about their power consumption and why high power is often emphasized. Understanding the relationship between power and cleaning efficiency is