Product

 

 

Please consult the Safety Data Sheet of this product.RoHS;WEEE

BLUESIL RT GEL 8213 A

BLUESIL RT GEL 8213 A&B is a two component, polyaddition reaction, room temperature curing silicone elastomer. Curing can be accelerated by heat.

After mixing the two components BLUESIL RT GEL 8213 A&B forms a fluid liquid which transforms into a soft and transparent GEL once cured. Curing does not give off any heat.

Chemical Protection;Hydrophobing;Protection;Sealing

2 Part RTV

Gel

RoHS;WEEE

  • EASY PROCESSING, due to the good fluidity of parts A and B and their mixing ratio (A/B = 1).
  • GOOD FLOWABILITY
  • TRANSLUCENT (good optical transmission).
  • QUICK SETTING, accelerated by heat
  • SELF ADHESION to many surfaces
  • OUTSTANDING DIELECTRIC PROPERTIES.
  • GOOD THERMAL RESISTANCE IN CONFINED SPACES (even above 100°C)
  • OUTSTANDING PROTECTION OF COATED EQUIPMENT against mechanical strain due to temperature variations and vibrations

BLUESIL RT GEL 8213 A&B is particularly recommended for applications which not required a self-exuding effect.

  • Protection of electronic units by potting
  • Protection of semi-conductor junctions
  • Anti-vibration systems

 

Asia Pacific;Europe Middle East Africa;Central and South America;North America

For information about Storage and Shelf Life for this product, please download the Technical Data Sheet.

 Characteristics_A

 

 

Viscosity1450PairedCompISO 3219mPa.s
AppearanceLiquidPairedCompASTM D 412

 Characteristics_B

 

 

Viscosity1200PairedCompmPa.s
AppearanceLiquidPairedCompASTM D 412

 

 

 Table_Characteristics_A_And_B

 

 

penetration_a142c699-2b17-4f82-882a-75f6253332edpenetration_a142c699-2b17-4f82-882a-75f6253332edPenetration240PairedMix1/10mm

 

 

 

 

BLUESIL RT GEL 8213 BBLUESIL RT GEL 8213 B/our_offer/Product/90054990/90054989/BLUESIL-RT-GEL-8213-B

 

 

​Remix each of the 2 components (parts A and B) every time before using.

1. Mixing the two components

To 100 parts of BLUESIL RT GEL 8213 A add 100 parts of BLUESIL RT GEL 8213 B.

The two components are thoroughly mixed either manually or using a mechanical mixer, on a low speed setting so as to limit the inclusion of air in the mixture.

2. Degassing

It is recommended to carry out degassing at a vacuum of 30 to 50 mbar possibly releasing the vacuum once or twice in the chamber. Considering the reactivity of the blend, this operation must be carried out at a temperature of 20 to 23°C.

When processing large quantities, it is better to use a machine for processing two-component silicones with a static mixer.

 

Comment: Certain materials that the RT GEL may be in contact with when curing could inhibit the reaction:

- Sulphur-cured natural and synthetic rubber compounds

- RTV's catalysed with metal salts

- PVC stabilized with tin salts

- Epoxydes catalysed with amines

If in doubt, it is recommended to carry out a test beforehand.

​Remix each of the 2 components (parts A and B) every time before using.1. Mixing the two componentsTo 100 parts of BLUESIL RT GEL 8213 A add 100 parts of BLUESIL RT GEL 8213 B.The two components are thoroughly mixed either manually or using a mechanical mixer, on a low speed setting so as to limit the inclusion of air in the mixture.2. DegassingIt is recommended to carry out degassing at a vacuum of 30 to 50 mbar possibly releasing the vacuum once or twice in the chamber. Considering the reactivity of the blend, this operation must be carried out at a temperature of 20 to 23°C.When processing large quantities, it is better to use a machine for processing two-component silicones with a static mixer. Comment Certain materials that the RT GEL may be in contact with when curing could inhibit the reaction- Sulphur-cured natural and synthetic rubber compounds- RTV's catalysed with metal salts- PVC stabilized with tin salts- Epoxydes catalysed with aminesIf in doubt, it is recommended to carry out a test beforehand.

 

 

​Remix each of the 2 components (parts A and B) every time before using.

1. Mixing the two components

To 100 parts of BLUESIL RT GEL 8213 A add 100 parts of BLUESIL RT GEL 8213 B.

The two components are thoroughly mixed either manually or using a mechanical mixer, on a low speed setting so as to limit the inclusion of air in the mixture.

2. Degassing

It is recommended to carry out degassing at a vacuum of 30 to 50 mbar possibly releasing the vacuum once or twice in the chamber. Considering the reactivity of the blend, this operation must be carried out at a temperature of 20 to 23°C.

When processing large quantities, it is better to use a machine for processing two-component silicones with a static mixer.

 

Comment: Certain materials that the RT GEL may be in contact with when curing could inhibit the reaction:

- Sulphur-cured natural and synthetic rubber compounds

- RTV's catalysed with metal salts

- PVC stabilized with tin salts

- Epoxydes catalysed with amines

If in doubt, it is recommended to carry out a test beforehand.

​Remix each of the 2 components (parts A and B) every time before using.1. Mixing the two componentsTo 100 parts of BLUESIL RT GEL 8213 A add 100 parts of BLUESIL RT GEL 8213 B.The two components are thoroughly mixed either manually or using a mechanical mixer, on a low speed setting so as to limit the inclusion of air in the mixture.2. DegassingIt is recommended to carry out degassing at a vacuum of 30 to 50 mbar possibly releasing the vacuum once or twice in the chamber. Considering the reactivity of the blend, this operation must be carried out at a temperature of 20 to 23°C.When processing large quantities, it is better to use a machine for processing two-component silicones with a static mixer. Comment Certain materials that the RT GEL may be in contact with when curing could inhibit the reaction- Sulphur-cured natural and synthetic rubber compounds- RTV's catalysed with metal salts- PVC stabilized with tin salts- Epoxydes catalysed with aminesIf in doubt, it is recommended to carry out a test beforehand.

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