Danish Graphene: Thermal Solutions For Space
Graphene Solutions For Space & Mission Critical Thermal Management & Battery Performance Applications
Founded in 2020 as a spin-out from Aarhus University, Danish Graphene pioneers sustainable, high-performance graphene solutions through proprietary electrochemical production. Danish Graphene's functionalized graphene transforms industries—from thermal management in space applications (ESA-funded epoxy adhesives) to energy storage, coatings, composites, and construction.
View Danish Graphene Catalogue Here
Ved Group has partnered with the innovative product owner Danish Graphene to bring high-performance, functionalized graphene to the Indian market.
Danish Graphene is chemically modified to bond perfectly with specific materials, including polymers, resins, and water-based systems. We pride ourselves on providing "green" and planet-friendly solutions compared to traditional chemical vapor deposition (CVD) methods. Furthermore, Danish Graphene products are designed to be "drop-in" solutions, meaning they can be seamlessly added to existing manufacturing lines (like epoxy or coatings) without requiring new equipment.
Critical Technical Data (KPIs): Danish Graphene delivers high-end technical parameters where other graphene products fall behind
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- Thermal Management: Delivers 10x better heat dissipation in thin bond lines compared to traditional fillers.
- Mechanical Strength: Provides a significant increase in interlaminar strength for composites used in the aerospace industry.
- Barrier Properties: Offers excellent anti-corrosion and chemical resistance when integrated into industrial paints.
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Danish Graphene Product Categories:
1. Thermal Interface Materials (TIM): Danish Graphene specializes in advanced heat management solutions.
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GET AE Series (GET AE 100 / 200 / 300): This is a Graphene-Enhanced Thermal Adhesive that is completely metal-free. Synergy: Ideal for the Lighting industry for heat management in high-power LEDs, and the Aerospace industry for lightweight thermal bonding in satellite components.

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GET PS Series (GET PS 100 / 200): These are Thermal Pastes engineered for extreme heat dissipation. Synergy: Highly effective for Electronics, as they can be used with connectors to prevent system overheating.
- GET PAD 200: High-performance thermal padding for surface-to-surface heat transfer. Designed for demanding environments, it ensures efficient heat transfer, extended device lifetime, and consistent performance under varying conditions. The flexibility of the pad means it conforms well to any system and can be integrated seamlessly in production to add enhanced performance.

2. Graphene Oxide for Coatings:
GET SF 200: A water-based Graphene Oxide Paste. Synergy: Ideal for Industrial Coatings to add powerful anti-corrosion properties, and it can also be utilized as a highly effective Battery additive.

- GGO Battery Additive: Specialized graphene solutions designed to enhance modern battery performance and longevity.

High-Impact Aerospace Applications:
Thermal Management for Satellites & Avionics:
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- The Problem: Traditional adhesives fail under the extreme temperature cycles of space.
- The Solution: Utilizing the GET AE 100 / 200 products, Danish Graphene adhesives provide a strong mechanical bond and high thermal conductivity without using heavy metal fillers. This allows satellites to run cooler and last longer.
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Lightning Strike & EMI Shielding:
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The Problem: Composite airframes are light but do not conduct electricity well, making them vulnerable to lightning strikes.
- The Solution: Danish Graphene GO PASTE integrates directly into Carbon-fiber resins to create a conductive skin. This dissipates the energy of a lightning strike and provides crucial EMI (Electromagnetic Interference) shielding for sensitive cockpit electronics.
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The Problem: Composite airframes are light but do not conduct electricity well, making them vulnerable to lightning strikes.
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Structural De-Icing Systems:
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- The Problem: Ice buildup on aircraft wings is a major safety risk.
- The Solution: Graphene-enhanced coatings can be used as thermoelectric heaters. By passing a small current through the graphene layer, the entire wing surface heats up evenly to melt ice, replacing heavy and complex bleed-air systems.
- Benefit: Achieves a 20-30% weight reduction compared to traditional mechanical de-icing systems.
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