Brief: Discover our premium reinforced graphite gasket sheets designed for space and cryogenic research systems. Engineered with low-outgassing properties and available in 1.0 to 3mm thickness, these gaskets ensure hermetic seals in extreme environments. Perfect for ultra-low temperature applications where gas emission control is critical.
Related Product Features:
Dual-layer pure flexible graphite sheets with a perforated metal insert for unmatched durability.
Available in carbon purity grades of 95%, 97%, 98%, or 99% to meet specific outgassing requirements.
Superior adaptability for hermetic seals in cryogenic setups, eliminating delamination risks.
Engineered to withstand extreme temperatures, including liquid nitrogen (-196°C) and cryogenic helium systems.
Oil-resistant and chemically inert, ensuring reliable performance with cryogenic fluids like liquid oxygen and hydrogen.
Thickness options range from 1.0 - 6.0mm, with specialized 3+2 composite designs for heavy-duty applications.
Stock sizes include 500×500mm, 500×1000mm, 500×1500mm, 1000×1000mm, and 1000×1500mm, with custom dimensions available.
Custom solutions available for space missions, particle accelerators, and deep-space research equipment.
Domande frequenti:
What makes these graphite gasket sheets suitable for space and cryogenic systems?
These gaskets are engineered with low-outgassing properties and can withstand extreme temperatures, making them ideal for maintaining ultra-high vacuum conditions in space-rated equipment and cryogenic research systems.
What thickness options are available for these gasket sheets?
The gasket sheets are available in thicknesses ranging from 1.0 to 6.0mm, with specialized 3+2 composite designs for thicker requirements, ensuring structural integrity in heavy-duty applications.
Can I get custom sizes or modifications for specific applications?
Yes, we offer precision-cut custom dimensions and bespoke solutions, including radiation-resistant modifications or NASA outgassing certification, tailored to your project's unique requirements.