High temperature sealant
Final Advanced Materials can provide you high temperature sealants for application up to 980°C. Those Cotronics® Duraseal® high temperature sealants are used for waterproofing, sealing, impregnating and coating in any high temperature application.
Duraseal High Temperature sealants are based on organic- inorganic formulations and can be used up to 980°C. Duraseal+ will increase dielectric properties, moisture proof and seal ceramics, thermocouples, cartridge heaters, end seals, etc. Commonly used for waterproofing Cotronics' ceramic fiber products, high temp. gaskets, sleeving and tapes.
Duraseal® 1529H - 1529 UHT
Duraseal® 1529 H
Low viscosity liquid sealants that will readily penetrate porous surfaces and cure at 180°C.
Duraseal® 1529 UHT
Now, for the first time, a silicone is combined with glass and a unique synergistic reaction forms a composite that will moisture-proof from room temperature to 980°C. Duraseal® 1529 UHT dries at 120°C and glazes at 590-760°C forming a surface for higher temperature applications.
|
Moisture-proof varnish |
1529H |
1529UHT |
|
|
T° max |
°C |
482 |
980 |
|
Color |
clear |
white |
|
|
Composition |
catalyzed silicone |
silicone / glass |
|
|
Sealing |
Excellent |
Excellent |
|
|
Chemical resistance |
Good |
Excellent |
|
|
Polymerization |
h @ T°C |
4h @ 120°C |
2h @ Tamb. |
|
Post firing |
°C |
1h @ 204-230°C |
2h @ 215°C + enamelling to 600°C |
Duraseal® 1531 - 1533
Duraseal® 1531
Seals pipes, flanges, stacks and high temp. equipment. No special surface pre-treatments are necessary. Adheres to most metals, glass, ceramics, plastics, etc. Fills in voids, forms flexible gaskets and repairs.
Duraseal® 1533
New, unique Duraseal® 1533 flows into the finest cracks and crevices to form stress free bonds, coatings and encapsulations. Easy to use 1 to 1 mix ratio. Difficult degassing procedures are not necessary. Just mix and pour. Casting will be tack free in 5 minutes and completely cured in 15-30 minutes. Duraseal® 1533 can be used up to 260°C and offers flexibility, excellent mechanical properties and resistance to chemicals, solvents and moisture.
|
Moisture-proof sealant |
1531 |
1533 |
|
|
T° max (continuous) |
°C |
420 (340) |
290 (260) |
|
Color |
or |
vert |
|
|
Viscosity |
cps |
mastic |
2 900 |
|
Density |
g/cm3 |
1,28 |
1,18 |
|
Elongation |
% |
250 |
135 |
|
Hardness |
Shore A |
31 |
20 |
|
Tensile strength |
N/mm² |
1,9 |
4 |
|
Specific heat |
W /m² |
1,1 |
1,1 |
|
Thermal conductivity (260°C) |
W/m°C |
0,29 |
0,22 |
|
Résistivity |
Ω.cm |
1011 |
1015 |
|
Dielectric streangth |
kV/mm |
19,5 |
19,5 |
|
Potted storage time |
min. |
30 |
5 |
|
Polymerization |
h @ T°C |
24h @ Tamb |
15 min @ Tamb |
|
Post firing |
°C |
- |
- |
Duraseal® 1533 HT Resin
Duraseal® 1529H Waterproof sealant
FAQs that can help you in this category
Final Advanced Materials' Duralco high-temperature paints provide improved resistance to corrosion and adverse weather. The choice of paint will depend on the usage conditions and the material of the medium requiring protection. When the surface has been descaled, derusted, cleaned and degreased you can apply the paint using a brush or spray gun. Specifically: 2 thin layers are preferable to 1 thick layer.
If you require thermal resistance up to 650°C in a humid and/or saline atmosphere, the aluminium-based paint produced Final Advanced Materials offers would be a great solution. However, if the temperature requirement does not exceed 800°C, the Duralco 230 paint, which is stainless steel-loaded, would be more effective.
The ceramic coatings (BN or graphite) offered by Final Advanced Materials have low surface energy, which limits the adhesion of molten metals (Al, Zn, Cu, etc.). They reduce wetting and facilitate stripping. Their thermal stability and their chemical inertia improve the lifetime of the tools used. They also reduce metal contamination and wear of tools.
The coatings' maximum working temperature will depend on the gaseous environment. Temperature stability is limited to 450°C for graphite and 850°C for boron nitride in air or an oxidising atmosphere, and to over 1,000°C in a vacuum or inert gas.
The BN coatings offered by Final Advanced Materials can be applied with a spray, a brush or by dipping. Surface preparation (degreasing, roughness Ra 1.6–3.2 µm) is essential to provide a better adhesion. Drying is carried out at ambient temperature. The typical thickness is 10 to 50 µm. The thinnest possible layers should be used for application. Let each layer dry fully before applying a new one. If a layer is too thick it will have a lower resistance, and a higher risk of delamination or cracking. BN provides excellent thermal stability (as high as 800/900°C in air and 1,800°C in a vacuum or inert gas).
The anti-adhesion coatings offered by Final Advanced Materials provide very effective results in the glass industry. Applying a boron nitride-based product will result in a very low surface energy, an anti-adherent effect, high chemical inertia for silicate glasses, and high temperature resistance (≈ 900°C in air and up to 1,800°C in a controlled atmosphere). This coating will lead to a reduction in adhesion, decreased material transfer, and minimal surface marking.