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State-of-the-art protection in all stages of your asset’s lifecycle.
Two component titanium catalyzed inorganic ceramic copolymer. It is resistant to low temperatures down to -196°C and high temperatures up to 1000°C continuously, where substrates allow. On carbon steel substrates it can be used at up to 650°C continuously and 750°C peak.
It can be applied on hot substrates up to 250°C. Suitable for use on both insulated and non-insulated surfaces.
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Jotun Thermosafe brochure
Jotun Thermosafe leaflet
Technical Data Sheet (English)
Application guide (English)
Safety Data Sheet
Jotatemp 1000 Ceramic is a two component titanium catalyzed inorganic ceramic copolymer. Utilizing state-of-the-art binder technology increases the coating’s suitability for service in high temperature operations, both for insulated and non-insulated areas.
Jotatemp 1000 Ceramic can be applied on substrates with temperatures up to 250°C, minimizing the need for costly facility shut-downs during maintenance operations.
Because Jotatemp 1000 Ceramic is a two component product it cures at ambient conditions. This increases the coating's ambient anticorrosive properties. Additionally the ambient curing of the product provides Jotatemp 1000 Ceramic with increased abrasion resistance. This greatly reduces the need for on-site touch-up.
Jotatemp 1000 Ceramic is compatible with both zinc silicate primers and silicone topcoats.
Jotatemp 540 Zinc is Jotun’s new inorganic zinc silicate, specifically developed for high temperature services – above 120°C. Used as the primer in a system with Jotatemp 1000 Ceramic, Jotatemp 540 Zinc can be used under insulation. This can save time and money both in new construction and maintenance situations.
A combination of Jotatemp 1000 Ceramic and Jotun’s Solvalitt as a topcoat will give an attractive cosmetic finish.
PRESS RELEASE: Jotun is setting a new standard in coatings for hydrocarbon processing facilities with the launch of Jotatemp 1000 Ceramic, an innovative coating solution that can be applied to surfaces with temperatures reaching 1000ºC. This increased tolerance (previous advanced coatings offered a maximum endurance of 650ºC) is tailor-made for an industry where a shift to higher temperature operations is helping optimise processing and productivity.