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HexTow® IM2A 6K

Hexcel ? Intermediate Modulus

Manufacturer page / TDS

Description

The unique properties of HexTow® IM2A fiber, such as higher tensile strength and modulus, as well as good shear strength, allow structural designers to achieve both higher safety margins for both stiffness and strength critical applications. HexTow® IM2A is International Monohull Open Class Association (IMOCA) certified/qualified.

Comparative overview

Carbon fiber — Intermediate-modulus carbon

Strengths: Premium balance of high tensile strength, stiffness and usable strain; a common choice for weight-critical primary structures.

When to use: Select for primary aerospace structures, high-performance pressure vessels, launch/space hardware and demanding sporting structures.

Key tradeoffs: Higher cost than standard-modulus carbon; conductive, galvanically active against metals and less impact-tolerant than aramid/UHMWPE hybrids.

Qualitative ratings (1–10 scale)

Relative cost8/10 — High — aerospace-grade PAN carbon with higher modulus and strength than standard grades.
EM transparency1/10 — Very poor — electrically conductive and therefore poor for RF-transparent structures.
Temperature / fire resistance6/10 — Good — non-melting but oxidation in air and matrix degradation limit practical fire resistance.
Impact / penetration resistance6/10 — Good — balanced strength and strain give moderate-high impact potential; laminate architecture remains decisive. Stored TDS elongation: 1.7%.
Electrical / thermal conductivity7/10 — High — electrically conductive with moderate axial thermal transport.
Specific tensile strength9/10 — 9/10 | 3001.7 kN·m/kg | Product TDS
Atmospheric durability9/10 — Excellent — carbon fiber is intrinsically resistant to UV, moisture and salt exposure; long-term laminate durability is usually governed by sizing, matrix, galvanic coupling and interfaces rather than the fiber.
Sustainability (CO₂e)5/10 — 19.85 kg CO₂e/kg fiber — High emissions — data quality: High

Technical properties

Tensile strength5343.0 MPa
Tensile modulus276.0 GPa
Density1.78 g/cm³
Filament diameter5.2 µm

Applications and processing

IndustrialBraidingFilament WindingPrepreggingPultrusionWeaving

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