Applicaton S olar UV Acrylic Adhesives offer another dimension to our range of products. Solar adhesive offer very fast rates of cure coupled with large gap fill possibilities. They cure by reaction to ultra violet light and have many advantages over traditional adhesives in certain areas. Applications are varied, from simple glass to glass bonds through to electrical wire tacking and potting applications. Solar products cure at UVA 365 N/m via a range of UV curing systems. Please ask our Technical Department for information on application and curing systems.

U.V. Adhesives

Application
Solar 7000
is our fast cure, general purpose glass bonder which bonds metals and plastics, providing medium to high bond strengths.

Solar 7010
wire tacking adhesive needs as little as five seconds to cure, satisfying the ultra fast speed required on electronic assembly lines. It bonds wires to circuit boards and terminal points cleanly and quickly

Solar 7020
is a dual curing potting grade that allows up to 10mm film thickness' to be created. It cures firstly via UV exposure and then anaerobically throughout the remaining volume.

Product Range
Solar 7030
is designed for single surface bonding of components in the resin matrix. 7030 is a dual curing adhesive (UV and anaerobic).

Solar 7040
is similar to 7000 offering even higher levels of optical clarity and increased bond strengths.

Solar 7045
non acid based ultra violet adhesive allows bonding of coloured glass, where UV light can only penetrate one surface. It will also bond glass doors handles and hinges to glass etc. Because of the non acid base, 7045 is low in odour, making it very user friendly. Bond performance can be improved by using our silane adhesion promoter 7045P

Solar 7050
chip bonder is a dual curing adhesive ideal for bonding micro chips to PCB's etc. It can be cured with UV light or heat, or a combination of both. 7050 can be used for bonding SMD's to PCB's and will allow for easy removal without damage to the PCB. 7050 is a thixotropic gel and will not flow out at elevated temperatures.
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