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Showing posts from April, 2022

Ultrasonic Liposuction is a less invasive procedure.

 Body contouring is the new credo for staying in shape and looking good. Despite the fact that many non-surgical liposuction methods are not FDA approved, they are gaining popularity because to their quick and long-lasting outcomes. Ultrasonic liposuction is one method that does not require surgery and uses sound waves to remove fat from the body. Unlike traditional surgical liposuction, which use a hollow cannula to extract fat, ultrasonic liposu      ction employs an ultrasound cannula. The ultrasound cannula includes a unique sound-emitting device that uses high-frequency sound waves to release body fat before sucking it out through the cannula.   Regardless matter how low the risk of any procedure is, the first step is to consult with a reputable doctor for vital advice on the patient's suitability. Ultrasonic liposuction is a painless procedure. This procedure is more like a massage than other invasive and non-invasive liposuction techniques. The results are immediat

Transducers for ultrasonic waves

 Flaw identification, thickness gauging, material research & medical diagnostics, biomedical applications, nondestructive application evaluations, and penetration of thick materials are only some of the applications for ultrasonic transducers. The main principle of these devices entails the conversion of sound energy into electrical energy and back. The sound frequency employed in these is typically in the range of one hundred kilohertz to fifty megahertz, which is significantly higher than the average human hearing range of twenty thousand hertz. These frequencies produce sound with a shorter wavelength that can reflect small surfaces and detect faults inside solid materials like metal and plastic. hese devices detect faults by converting the excitation pulse (electrical energy) generated by the flaw detector into ultrasonic energy using Piezo or ferroelectric material as an active element. The performance of the transducer is improved by using materials such as Piez

An Optimized Ultrasonic Cleaner Will Improve Your Cleaning Experience!

 To understand how an ultrasonic cleaner works and how it may do sonification or cleaning, one must first grasp the fundamentals of ultrasound and how it is used in ultrasonic cleaning. The transmission of sound at frequencies above the human hearing range is known as ultrasound. Ultrasound energy causes cavitation, the technical part of ultrasonic cleaning, which is generated at 40,000 times per second by piezoelectric electrical devices. Because the energy is focused at a tiny size, it is safe for parts despite its strength. It is possible to lessen liquid surface tension by adding a surfactant or wetting agent to the bath. The reduction in surface tension improves cavitation strength. The activity of ultrasonography is greatly aided by a medium evaporation. Low evaporation rate causes cavitation bubbles to explode with greater force, however this results in a higher cavitation threshold and fewer bubbles. High pressure of the liquid is ineffective; it produces more bubb

Cleaning Complex Part Designs using Electromagnetic frequencies

 Many of our customers ultrasonically clean items that have a lot of design complexity , like blind holes, threaded areas, metal folds, or other similar features . Despite the fact that many of the impurities being removed are loosely bound to the surface, the outcomes are inconsistent. Some parts have been cleaned completely, while others have only been partially cleaned. The following suggestions will help you get the most out of your ultrasonic cleaner and achieve the most consistent results. When your part is submerged in the ultrasonic cleaning tank or rinse tank, it's extremely likely that an air pocket will be trapped within the hole. If air is trapped, ultrasonic cleaning will not be possible, and parts will not be successfully cleaned. Make every effort to position the part such that the design's blind holes fill and drain when the liquid baths are submerged or removed. The only method to do this in most circumstances is to place the holes horizontally or at a s

The History and Myths of Ultrasonic Liposuction are Dispelled

Since surgeons first employed abrasive curettage procedures to scrape away undesirable subcutaneous fat, liposuction has come a long way. Several important changes have been made in recent decades to aid in the production of better, safer surgical outcomes. Improved instrumentation, better patient selection, and the integration of pre-aspiration wetting solutions are among the advancements. Yves Filous, a French surgeon, is largely responsible for the rise in popularity of the liposuction procedure. Plastic surgeons trained in Europe adopted the method and disseminated it in the United States. Suction has remained one of the most common treatments in plastic surgery for three decades and millions of instances.   Liposuction was first introduced to the Anecdotal reports of catastrophic consequences , including deaths, accompanied the new treatment. These terrible occurrences were all the more serious because the concept of cosmetic, elective surgery was still in its inf

Identifying Ultrasonic Flow Measurement Applications

 Ultrasonic flow measurement is based on the principle of transmission and receipt of sound waves, which have a unique quality of bouncing off most objects - solid, liquid or gaseous . This technology is vastly different from traditional flow measurement technologies that use turbines or thermal sensors to measure the flow rate of fluids. he principle of ultrasonic flow measurement is based on the transmission and reception of sound waves, which have the unusual property of rebounding off most solid, liquid, and gaseous materials. Traditional flow measurement technologies, which use turbines or thermal sensors to determine the flow rate of fluids, are substantially different from this approach. Industry has developed ultrasonic flow measuring technologies that may be employed in a number of applications and processes due to the requirement for greater precision and reduced prices. There are four types of ultrasonic measurement systems on the market today. This classificat

Why Roxtec Cable Entry Systems Are Vital for Safety and Style

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Did you know that good cable management is the best way to complete your project and deliver on a finished job that will leave your clients talking? The cable entry systems made by Roxtec are made for companies who want to have clean cable installations that can stand up to any use case you throw at them. These cable glands are more than tough, they are essential for a safe and future proofed project. Here’s why Roxtec cable glands are changing how we handle our cable management projects. The Importance of Good Cable Management At Excel Automation, we believe in distributing the best industrial parts and components. That’s why we stand behind the cable glands made by Roxtec. Their products deliver on safety, efficiency, and style. Ease of Use The best solutions for cable management are the ones that are easiest to use. The cable glands made by Roxtec  are modular and they can be easily installed without technical training. This creates a system that is just as easy to uti

Surfing for roxtec | Excelautomationinc.com

  Excelautomationinc.com is a prominent place to get roxtec. This technology allows customers to place an order without knowing the exact cable diameter, an attractive feature for applications requiring flexibility. Visit our site for more information. roxtec