As a dentist running a general practice, speed is crucial because reduced chair time means lower costs and better patient comfort. Dr. Christopher Baer, DMD, from Baer Dental in Lone Tree, Colorado, uses 3D printing to create models for retainers, custom whitening trays, wax-ups, temporary and permanent restorations, surgical guides, and occlusal splints. As an early adopter of 3D printing, he has used printers from various manufacturers but was immediately impressed by the Formlabs Form 4B. “It was superfast. We can now print eight models in the same time it took to print one before, and we have excellent quality.” This speed allows for true single-visit dentistry, where appliances are fabricated before the patient leaves. “I started with a Formlabs printer—the Form 2,” says Dr. Baer, so he’s well-versed in the technology. “I saw the benefits early on and embraced it. It helped improve treatment flows and outcomes.” The Form 4B has significantly streamlined his workflow, enabling faster and more accurate results. Dr. Baer also highlights the ease of use and reliability of the Form 4B. “The quality is impressive—there's no sacrifice in quality despite the speed. The models look better and are faster to produce.” He notes that post-processing is minimal, which saves time and effort. For example, a patient who came in with a broken retainer left with a new set after just a short break, which made them very happy. In addition to occlusal splints, Dr. Baer frequently prints models for retainers and whitening trays. Using the fast settings, he can print a model in about 10 minutes and have whitening trays ready within 15 to 20 minutes. The Form 4B's versatility allows him to switch between different resins easily, making it ideal for multiple applications. He also uses the Form 4B for surgical guides and temporary and permanent restorations. With materials like Premium Teeth Resin, he can print full-arch temporaries directly to prepped margins, eliminating the need for adjustments. “You just print and deliver it, typically without any modifications.” Dr. Baer emphasizes that the Form 4B is not only fast and accurate but also cost-effective. “It's a no-brainer if you're looking to implement a high-quality 3D printer for the first time. It's affordable and will save you money in the long run compared to traditional methods.” The durability and ease of maintenance make it a reliable choice, with features like a self-cleaning resin tank that simplifies the process. Overall, the Form 4B has transformed his practice, offering efficiency, accuracy, and convenience. Whether printing models, splints, or restorations, it has helped Dr. Baer provide better care while improving the patient experience. Explore the Form 4B today and see how it can benefit your dental practice.

UHF Induction Heating

Ultra high frequency induction heating system is an advanced heating technology that uses very high frequencies (generally referring to the frequency range above 100kHz) for induction heating. This heating method mainly relies on the principle of electromagnetic induction, which can generate high temperatures in an instant and is suitable for precision heating of metal materials, such as welding, surface hardening, hot assembly, and other processes. Compared to low-frequency and mid frequency induction heating, ultra-high frequency induction heating systems have higher heating rates and more precise heating control capabilities.
working principle
Ultra high frequency induction heating mainly utilizes the high-speed changing magnetic field generated by high-frequency alternating current in the induction coil, which excites strong eddy currents in the target metal. Due to their extremely high frequency, these vortices concentrate in thin layers on the metal surface, causing rapid surface heating while the interior is relatively cold. This phenomenon is called the "skin effect", making ultra-high frequency induction heating very suitable for surface treatment of metal materials.
Characteristics and advantages
Rapid heating: Ultra high frequency means extremely fast heating speed, which can reach the desired temperature in milliseconds.
Precise control: capable of achieving highly precise temperature and depth control, suitable for workpieces with complex shapes and sizes.
Local heating: only heats the surface or specific area of the workpiece, without affecting the overall properties, reducing material waste and thermal stress.
Efficient and energy-saving: Compared to other heating methods, it has high energy conversion efficiency and is energy-saving and environmentally friendly.
Environmental safety: No need for fuel combustion, no smoke or gas emissions, and a cleaner operating environment.
application area
The ultra-high frequency induction heating system is widely used in the following fields due to its unique heating characteristics and advantages:
Metal welding: precision welding of small parts and electronic components.
Surface hardening: By locally quenching, the surface hardness of the workpiece is increased without changing the core properties.
Hot assembly: used for heating assembly of tight fitting parts.
Precision casting: precise control of metal melting and casting processes.
Research experiment: Conduct rapid heating tests in materials science and physics experiments.
Development Status and Trends
With the advancement of technology, ultra-high frequency induction heating systems continue to innovate in technology, developing towards higher frequencies, greater power, and greater intelligence. In addition, the increasing demand for environmental protection and energy efficiency has prompted researchers in this field to explore more green and low-carbon solutions, such as using more efficient cooling systems and intelligent control systems to further enhance the overall performance of equipment.
In the future, ultra-high frequency induction heating systems are expected to play a role in a wider range of industrial fields and become one of the key technologies driving the upgrading and transformation of the manufacturing industry.

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Ningbo Dedao Electronic Technology Co., Ltd , https://www.nbdedao.com