Hyperion 223

Extreme-Temperature Composite Wrap Pipe Repair Technology: Designed for the Harshest Industrial conditions

Hyperion 223: Engineered for Maximum Performance in Critical High-Temperature Environments

Hyperion 223 is a specialist composite wrap pipe repair solution built for the most extreme thermal environments.

It features a high-performance, two-component epoxy resin system that, once post-cured, achieves a glass transition temperature (Tg) of 223°C. This makes it one of the highest-rated composite repair systems in the industry, capable of withstanding continuous service in aggressive heat-exposed operations.

To reach its full potential, Hyperion 223 requires an initial controlled cure at 50°C, followed by post-curing, making it ideal for environments where long-term temperature resistance is non-negotiable.

Reinforced with the same quad axial E-glass fibre fabric used in other Icarus systems, its 0°/90°/+45°/−45° configuration ensures maximum load transfer and hoop strength, regardless of the repair geometry.

Hyperion 223 is engineered to restore the structural integrity of pipelines, vessels, tanks, and equipment operating under intense thermal and mechanical stress—offering peace of mind where failure is not an option.

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Qualified Composite Repair Systems

At Icarus Composites, we make sure to test our Composite Wrap Materials to the most stringent industrial standards ensuring we deliver the highest quality composite pipe and tank repairs possible.

Our Composite Wrap Systems are qualified to both ISO 24817 & ASME PCC-2 to make sure they meet the requirements of both international standards.

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Applications: Trusted Repairs in Refineries, Petrochemical Plants, and Steam Systems

Hyperion 223 is designed for the repair of critical infrastructure exposed to extreme heat and pressure.

It is the go-to solution for repairs to pipelines, steam lines, pressure vessels, and process equipment in environments such as refineries, petrochemical complexes, and thermal power plants.

With a post-cured Tg of 223°C, it is capable of enduring aggressive thermal cycles and maintaining mechanical performance well beyond the capabilities of standard repair materials.

Hyperion 223 is ideal for ISO 24817 and ASME PCC-2 compliant repairs where high operational temperatures demand the most advanced composite technology.

It is especially suited for areas requiring engineered integrity under prolonged thermal loading—ensuring safe, long-lasting repairs even in the harshest industrial settings.

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Technical Data

Download the Technical Data Sheet in the link below

Hyperion 223 TDS

Properties

Data - Metric (Imperial)

Glass transition temperature (Tg)
223°C (433°F)
Composite ply thickness
1.062mm (0.042")
Coefficient of thermal expansion (Circumferential)
12.15 x 10^-5 mm/mm/°C (6.75 in/in/°F)
Coefficient of thermal expansion (Axial)
9.99 x 10^-5 mm/mm/°C (5.55 in/in/°F)
Circumferential young's modulus (Ec)
17,887 MPa (2,594,290 psi)
Axial young's modulus (Ea)
16,812 MPa (2,438,374 psi)
Combined young's modulus
17,341 MPa (2,515,099 psi)
Shear modulus
4,564 MPa (661,952 psi)
Poisson's ration (Circ. - Ax.)
0.30
Poisson's ration (Ax. - Circ.)
0.31
Toughness parameter
17.08 J/m² (0.00814 ft-lb/in²)
Lap shear strength
6.5 MPa (943 psi)
Circumferential tensile strength
270.9 MPa (39,160 psi)
Axial tensile strength
102.7 MPa (14,895 psi)
Test temperature
20°C (68°F)

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