Multi-Substrates UV Bonder — Uni-Weld™

UV-curable structural adhesives engineered to bond metals, plastics, and glass in demanding industrial assemblies. Instantly replaces slow thermal-curing epoxies and mechanical fasteners — lock components in place with precision, then move directly to testing and handling.

Glass display cases with metal fittings bonded using Uni-Weld™ UV adhesive for furniture and retail display assembly
Glass Furniture & Display Bonding
Bonds glass panels, shelving, and retail display cases. Non-yellowing, optically clear grades maintain aesthetics under thermal and UV exposure while delivering high impact resistance.
CNC milling machine precision machining an aluminum gear component for Uni-Weld™ UV adhesive metal-to-plastic
Metal-to-Plastic Assembly
Bonds steel housings to plastic covers, metal brackets to polymer frames, and aluminium inserts to composite panels — eliminating screws and rivets for cleaner assemblies.
Circuit board with soldered electronic components for Uni-Weld™ UV adhesive electronics ruggedization and component
Electronics Ruggedization
High-elongation grades absorb vibration and thermal shock to prevent solder fatigue, wire breakage, and component detachment in handheld devices, avionics, and automotive electronics.
Hands assembling circuit board components with precision tool for Uni-Weld™ UV component staking and wire tacking
Component Staking & Wire Tacking
Low-viscosity grades wick into tight gaps to stake components to PCBs, while thixotropic grades hold position on vertical surfaces for wire tacking. Instant cure eliminates fixturing.
Industrial electric motor stator cross-section with copper windings for Uni-Weld™ UV magnet bonding
Magnet Bonding
Bonds permanent magnets to metal and plastic housings in motors, speakers, and sensors. High tensile strength grades maintain integrity under constant pull forces and thermal cycling.
Worker grinding sparks off steel structural beam for Uni-Weld™ UV structural industrial bonding and metal assembly
Structural Industrial Bonding
Drop-in replacement for slow two-part epoxies in general-purpose structural assembly. UV cure reduces cycle times while delivering equivalent bond strength with superior flexibility and impact toughness.
  • Uni-Weld™ bonds metals (steel, aluminium, copper), plastics (PC, ABS, acrylic, polycarbonate), glass, ceramics, and multi-substrate assemblies. It is specifically formulated for applications where two or more dissimilar materials must be bonded with high structural integrity.

  • Uni-Weld™ cures under UV light in the 365–405 nm range. Compatible curing equipment includes Incure UV LED spot lamps (L9000™), UV LED flood lamps (L-Series™), and UV cure chambers (B/C-Series™). Cure time depends on UV intensity, working distance, and adhesive thickness.

  • Uni-Weld™ cures on demand under UV light — typical fixture times range from a few seconds to under one minute depending on UV intensity, adhesive volume, and working distance. Curing only begins when UV is applied, giving operators full control over open time.

  • Match viscosity to joint design. Low viscosity grades (150–1,100 cP) are wicking grades for tight gaps and PCB component staking. Medium viscosity grades suit standard bead dispensing. High viscosity and thixotropic grades (up to 38,000 cP) stay in place on vertical surfaces for wire tacking and staking.

  • Yes. Uni-Weld™ UV structural adhesives are RoHS and REACH compliant and support 2011/65/EU regulations, making them suitable for electronics assembly, medical devices, and products sold in markets requiring chemical substance compliance.

  • Yes. Uni-Weld™ is compatible with manual syringes, pneumatic dispensing systems, and automated time-pressure dispensers. The on-demand UV cure eliminates pot-life limitations — adhesive can be pre-applied without curing until UV light is applied.

Ready to Specify Uni-Weld™ Multi-Substrates UV Bonder?

Share your substrate combination, joint geometry, and throughput requirements —
our engineers will match you to the right Uni-Weld™ viscosity grade.