Arctic Alumina thermal adhesive, 5 gram

9,05 €

Arctic Alumina Thermal Adhesive is a two part permanent adhesive for thermal joints in minimum bond line applications.

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Characteristics

Arctic Alumina Adhesive uses a layered composite of aluminum oxide and boron nitride.

Temperature range

- 40C to >150C (Bond strength is slightly weakened at temperatures below 0C due to crystallization.)

Pure Electrical Insulator

Arctic Alumina Adhesive is a pure electrical insulator, neither electrically conductive nor capacitive.

Compliancy

RoHS Compliant.

Components

A set of Arctic Alumina Thermal Adhesive consists of two syringes containing a total of 5 grams of adhesive (2.5 grams each of parts A and B) and a plastic reusable mixing wand. Approximately 3cc total adhesive.

Storage

Arctic Alumina Thermal Adhesive should be kept cold and away from UV light (sunlight and florescent lighting). We recommend refrigerating the unused material and allowing it to come to room temperature prior to use.

Precaution

Arctic Alumina Thermal Adhesive is a permanent adhesive. Components you attach with Arctic Alumina Thermal Adhesive will stay attached forever.

How to use

. Mix a small amount of part A and part B, in equal quantities, over a plastic surface with the help of the mixing wand included or any other plastic instrument (for example, a toothpick). Only use as much as you will be able to mix and apply in about three minutes.
. Mix thoroughly for about 10-15 seconds.
. Do not mix the components on the surface that is to be attached, but on a separate one that can later be discarded.
. Use the mixed adhesive within 3 minutes (it is best to prepare a small amount at a time).
. Do not use the mixed adhesive once it begins to harden, as spreading and adhesion properties will be diminished.
. Do not try to soften the mix again by adding new fresh components.
. Place a tiny amount of ready mixed adhesive on one of the surfaces to be attached, then press firmly for a few seconds to allow the mix to spread between both surfaces creating the thinnest layer possible.

080220.1

Specific References

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