Nanocomposite Foams for Ultra-High Temperature Applications
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Technology Overview
This invention presents a novel method for fabricating phthalonitrile (PN) and its nanocomposites as replacements for metal foams. These materials offer superior thermal management capabilities, making them suitable for applications in equipment and infrastructure that operate in harsh, high temperature environments.
CATEGORY
TECHNOLOGY READINESS LEVEL (TRL)
Novel materials for fire safety
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High-Temperature Resistance:
Withstands sustained exposure up to ~300 °C without significant mechanical degradation, outperforming many conventional polymer foams.
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Controlled Density & Structure:
One-step gas liberation–polymerisation enables precise tuning of foam density and morphology for specific applications.
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Superior Thermal Stability:
Nanocomposite formulation provides enhanced heat resistance compared to typical thermoset foams.
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Mechanical Integrity at Elevated Temperatures:
Retains strength and structural performance after thermal ageing, supporting long-term reliability.
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Lightweight & Versatile:
Low density and tunable porosity suit lightweight composites, high-temperature filtration, and other demanding industrial uses.
Maritime Use Cases

The advanced nanocomposite foam materials could be used to develop high-performance insulation and structural components for maritime applications, such as engine compartments, exhaust systems, and offshore platforms, where exposure to extreme temperatures is a concern.

These materials could enhance the thermal management and safety of maritime equipment, enabling more efficient and reliable operation in harsh maritime environments.

The nanocomposite foams could also find use in the development of fire-resistant and heat shielding materials for maritime vessels, improving the overall safety and resilience of these assets.
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