CF

Pyrofil TR 50S 6L 6K

Mitsubishi Chemical ? Intermediate Modulus

Manufacturer page / TDS

Description

PAN-based fiber with high strength and intermediate modulus. Pros: high tensile strength, good modulus, thermal/electrical conductivity, fatigue and creep resistance, dimensional stability.

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.
Electrical / thermal conductivity7/10 — High — electrically conductive with moderate axial thermal transport.
Specific tensile strength8/10 — 8/10 | 2692.3 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 strength4900.0 MPa
Tensile modulus235.0 GPa
Density1.82 g/cm³

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