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Ultrasonic Spray Coating Technology: Applications at the Laboratory Scale

Ultrasonic Spray Coating Technology: Applications at the Laboratory Scale

Ultrasonic spray coating is based on the principle of spraying liquid solutions onto surfaces in a controlled manner by breaking them down into homogeneous, fine droplets using high-frequency vibrations. This method ensures:
Reduced material waste
Increased film homogeneity
Repeatable experimental results are obtained
For laboratory researchers, these features mean both reliable data and efficient resource utilization.

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ultrasonic stent coating, dual stent coating system, drug-eluting stent coating device, stent coating technology

Leading Technology in Medical Device Coating Solutions: Ultrasonic Stent Coating with UltraSprayer®

Ultrasonic spray coating is a cutting-edge technique that enables precise, uniform, and reproducible coating of cardiovascular stents. Unlike traditional dip-coating or air-spray methods, ultrasonic atomization produces microdroplets that allow for superior drug distribution, minimal material loss, and enhanced control over coating thickness.

In modern medicine, stent coating technology plays a vital role in the long-term success of cardiovascular implants. Proper coating not only improves biocompatibility but also enhances drug-eluting stent (DES) performance, ensuring controlled therapeutic release and minimizing restenosis risk.

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Affordable Electrospinning System

Electrospinning and Nanofiber Production with the NanoWeaver®-Starter

Electrospinning is an advanced nanotechnology method used to produce ultra-thin nanofibers with diameters ranging from a few nanometers to several micrometers. By applying a high voltage electric field to a polymer solution, electrospinning creates continuous fibers that form nanofiber membranes. These membranes have a high surface-to-volume ratio, tunable porosity, and unique structural properties, making them ideal for applications such as filtration, biomedical applications, drug delivery, tissue engineering, air filtration, and water filtration.

“Electrospinning is an advanced nanotechnology method used to produce ultra-thin nanofibers with diameters ranging from a few nanometers to several micrometers.”

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In recent years, nanofiber technology has revolutionized the cosmetic industry by providing new approaches for skin regeneration, active ingredient delivery, and anti-aging treatments. Through electrospinning, researchers can fabricate ultra-fine polymer fibers with diameters ranging from tens to hundreds of nanometers. These nanofibers exhibit an exceptional surface-area-to-volume ratio, porosity, and biocompatibility, enabling superior absorption and controlled release of cosmetic actives.

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