Intertronics launches new Dymax led-curable adhesives

Intertronics launches new Dymax led-curable adhesives

Intertronics, the company that specializes in adhesives for high-tech, high-performance industries such as medical device assembly companies, has launched a complete system of UV adhesives and LED curing from technology partner Dymax, with assembly of medical devices in mind.  Dymax UV adhesives cure upon exposure to light. Their ability to cure in seconds enables faster processing and greater output resulting in lower processing costs.
 
Peter Swanson, managing director of Intertronics commented: ‘The combination of the Dymax LED Prime UVA Spot Curing Lamp and complementary adhesives, which cure quickly, brings all the benefits of LED-based curing lamps to the medical device manufacturer.  This new high-intensity lamp offers many advantages over conventional spot-curing systems, including no consumable bulbs to change, no warm-up, cool cures, and constant intensity for thousands of hours. The new unit produces the highest power of any LED spot-curing lamp on the market today, with an output of >15W/cm².’
 
Intertronics engineers claim two adhesives work particularly well with the BlueWave LED Prime for ultra-fast cures. They are designed for rapid bonding of a wide variety of the plastics typically used in the manufacture of medical devices such as reservoirs, tube sets, port fittings and drug delivery systems. The fast cure and limited heat emitted by the BlueWave LED Prime provides an ideal system for heat-sensitive substrates, where thin walls may be subject to warping or stretching.
 
Dymax 1020-M Ultra Light-Weld adhesive is ultra fast, tack free and visible/UV light curable in less than two seconds. The complementary 1120-M-UR Ultra-Red is not only ultra fast/tack free, but when cured also fluoresces bright red under low-intensity black light. The bright red fluorescence contrasts extremely well on plastics that naturally fluoresce blue in color, and greatly assists with visual inspection on bond-line areas.