3D Carbon-Carbon Composite Materials

BZNCarbon offers high-density 3D carbon-carbon composites with exceptional strength and thermal stability. Ideal for aircraft brakes and structural parts exposed to extreme heat.

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Description

BZNCarbon’s 3D carbon-carbon composite (C/C) materials are advanced carbon fiber-reinforced carbon structures built to meet the needs of industries where strength, heat resistance, and longevity are essential. Unlike 2D composites that rely solely on fibers in two planar directions, 3D C/C composites incorporate reinforcement in all three axes (X, Y, Z), enabling them to withstand complex thermal and mechanical stresses.

Available in standard and custom geometries—including disks, plates, and blocks—our 3D C/C composites can also be tailored using various weave architectures such as XYZ woven, axial-radial-hoop (also known as hoop 3D), or as per your proprietary design.

BZNCarbon is one of the few producers capable of achieving a minimum bulk density of 1.90 g/cm³, thanks to specialized HIP equipment, significantly enhancing the strength-to-weight performance.


What Is 3D Carbon-Carbon Composite?

3D C/C composite is a high-strength, high-temperature resistant material composed of carbon fibers embedded in a carbon matrix. The fiber orientation covers all three spatial axes, delivering isotropic mechanical reinforcement and increasing fracture toughness, dimensional stability, and thermal fatigue resistance.

This structural configuration allows for longer service life, improved heat distribution, and better resistance to internal cracking under thermal cycling or impact loads—particularly in aerospace braking systems and industrial high-heat environments.


Applications

  • Aircraft Braking Systems (civil and defense-grade)

  • Rocket Propulsion and Nozzle Components

  • High-Temperature Furnace Fixtures

  • Aerospace Insulation and Structural Linings

  • Heat Shields for Industrial or Space Systems

  • Thermal Protection Panels and Support Blocks

  • Aviation and Motorsport Disc Brakes


Key Technical Specifications

PropertyDirectionRequirementTypical Result
Bulk Density≥ 1.85 g/cm³1.868 g/cm³
Fiber Configuration3D (X, Y, Z)3D (X, Y, Z)
Tensile StrengthX-Y / Z≥130 MPa / ≥70 MPa161 MPa / 76 MPa
Tensile ModulusX-Y / Z≥50 GPa / ≥30 GPa59.1 GPa / 38 GPa
Flexural StrengthX-Y≥120 MPa142 MPa
Compressive StrengthX-Y / Z≥160 MPa / ≥220 MPa162 MPa / 274 MPa
Thermal Conductivity (900°C)X-Y / Z≥40 / ≥20 W/m·K50 / 22 W/m·K
Thermal Expansion (at 1000°C)X-Y / Z0.5–1 / 1–1.5 ×10⁻⁶/K0.55 / 1.16 ×10⁻⁶/K
Porosity3–5%4.3%
Specific Heat Capacity (RT–590°C)X-Y / ZReported Value1.569×10³ / 1.620×10³ J/(kg·K)
X-Ray InspectionNo structural defectsPassed

Custom test reports, X-ray validation, and shape adaptations available upon request.


Advantages

  • True 3D structure for multi-directional load-bearing capacity

  • High thermal conductivity and resistance to thermal shock

  • Ultra-low thermal expansion ensures shape integrity

  • Lightweight yet mechanically superior to traditional metals

  • Extremely low porosity and high purity

  • Stable under vacuum, inert gas, and oxidative conditions

  • Engineered for extended service life in critical systems