What are the different types of cavitation?
What are the different types of cavitation?
What is the type of cavitation?
Not all cavitations are the same. When buying a cavitation machine, you may ask yourself: what type of cavitation is better? What do these numbers really mean? You’re not alone, so you won’t feel sick. These numbers show how powerful the machine works in cycles per second. However, the higher the number, the better. Many people think 80k machines are better, but the numbers aren’t really from competing services. Some people’s bodies respond better to 40k than to 80k. Some people prefer 80k because the sound waves are not so loud in the inner ear. Both methods provide sufficient ultrasonic effects to break and open fat cells without harming the skin or anything else.
Why does the cavitation system sound different?
The main reason for the different sounds in the inner ear is that one is moving twice as fast as the other. 40k cavitation operates at 40,000 cycles per second. In other words, sound waves process fat cells in that rhythm. 80k is twice that. In other words, it receives twice as much ultrasound. However, fat varies from person to person, and some fat cells may rupture at 40k and not at 80k. It all depends on your body composition. InstaSculpting is designed to meet the needs of each patient and achieve the best results. Your beautician can help you discover which combination of methods will give you the best results for your body shape. Visit site https://lumbuy.com/professional-ultrasonic-lipo-cavitation-machine/
What helps cavitation work well?
This can make your skin less firm than it used to be. To treat this, all machines include high-frequency skin tightening treatments. This works by helping your body produce more and stronger collagen fibers to tighten the skin. How? Radiofrequency is a type of energy that penetrates the layers of the skin painlessly. It feels like warm heat, but deep inside the tissue, the skin is rejuvenated and tightened. After a single treatment, remarkable results are obtained. After a series of treatments, the results are very noticeable and will last for months, if not years.
Types of cavitation
There are five different types of cavitation. It is important to understand these when considering ways to prevent the occurrence of cavitation.
The types of cavitation are:
- Vaporization: Also known as inadequate NPSHa cavitation or “classical cavitation”, this is the most common form. This occurs when centrifugal force speeds the liquid as it passes through the eyes of the impeller. If the impeller is not functioning properly, some of the liquid can boil (vaporize) rapidly, producing the small shock waves described above.
- Turbulence: If some parts of the system (pipes, valves, filters, elbows, etc.) are insufficient for the amount or type of liquid pumped, this can cause vortices in that liquid. I have. In essence, this leads to the liquid becoming turbulent and experiencing pressure differences throughout. These differences can erode solid materials over time, much like rivers erode the ground.
- Vane Syndrome: This type of cavitation, also known as “Vane Passing Syndrome”, occurs when the impeller used is too large in diameter or the housing coating is too thick. Either or both of these will reduce the space on the housing itself. When this happens, a small amount of free space increases the velocity of the liquid, resulting in a decrease in pressure. This low pressure heats the liquid and creates cavitation bubbles.
- Internal recirculation: In this case, the liquid recirculates around the impeller at an appropriate rate. The liquid passes through the low and high-pressure zones, providing heat and high speed. What is the final result? Vaporized foam. A common cause of this is when the drain valve closes during the run.
5. Air suction cavitation: Another common form.
Air can be drawn in from other weaknesses such as valve failure and joint rings. Once inside, the air can’t go anywhere and goes along the vehicle. When the liquid is swung around, the air forms bubbles, and when pressure is applied by the impeller, the bubbles pop out.
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