High-strength carbon-ceramic fiber built for extreme heat and wear

CCCF-B2 Carbon-Ceramic Composite Fiber

High-Performance Reinforcement for Advanced Composites

Alltoparts presents CCCF-B2 Carbon-Ceramic Composite Fiber – a next-generation reinforcing filler engineered for extreme environments. Combining the lightweight strength of carbon with the thermal and chemical resilience of ceramics, this black fiber delivers exceptional performance where traditional reinforcements fail.

Key Features & Benefits

Feature Benefit

High Tensile Strength

Provides structural integrity to composite matrices.

High Thermal Conductivity

Dissipates heat rapidly, reducing hot spots and thermal stress.

Low Wear Rate

Extends service life of moving parts and friction components.

Low Coefficient of Thermal Expansion

Maintains dimensional stability under temperature fluctuations.

Excellent Thermal Shock Resistance

Withstands rapid heating and cooling without cracking.

Acid & Alkali Resistance

Performs reliably in aggressive chemical environments.

Dimensional Stability

Ensures precision parts retain their shape under load and heat.

Applications

CCCF-B2 is the ideal reinforcement for high-performance composites in demanding industries:

  • Aerospace & Defense: Heat shields, rocket nozzles, brake discs, and structural composites.

  • Automotive: High-performance brake pads, clutch facings, and engine bay components requiring heat dissipation.

  • Industrial Manufacturing: Furnace linings, kiln furniture, crucibles, and thermal protection systems.

  • Chemical Processing: Acid-resistant pump housings, valve seals, and reactor vessel linings.

  • Semiconductor & Electronics: Precision fixtures, electrostatic chucks, and heat spreaders.\

  • Wear-Resistant Components: Sliding bearings, mechanical seals, and anti-friction parts.

Gallery

Close-up of black cccf-b2 carbon-ceramic composite fibers showing their fine texture and strength.
Close-up of black cccf-b2 carbon-ceramic composite fibers showing their fine texture and strength.
High-performance brake disc reinforced with cccf-b2 fiber glowing under heat during testing.
High-performance brake disc reinforced with cccf-b2 fiber glowing under heat during testing.
Industrial furnace lining made with cccf-b2 composite material enduring extreme temperatures.
Industrial furnace lining made with cccf-b2 composite material enduring extreme temperatures.
Precision electrostatic chuck featuring cccf-b2 fiber components used in semiconductor manufacturing.
Precision electrostatic chuck featuring cccf-b2 fiber components used in semiconductor manufacturing.
Automotive clutch facing reinforced with cccf-b2 fiber ready for installation in a high-performance vehicle.
Automotive clutch facing reinforced with cccf-b2 fiber ready for installation in a high-performance vehicle.
Laboratory setup showing cccf-b2 fiber powder being prepared for composite mixing.
Laboratory setup showing cccf-b2 fiber powder being prepared for composite mixing.

Visual highlights of cccf-b2 in demanding applications

FAQs

What is CCCF-B2?

It’s a carbon-ceramic composite fiber for tough composite reinforcement.

What are key benefits?

High tensile strength, excellent heat resistance, chemical stability, and dimensional precision.

Where is CCCF-B2 used?

It’s perfect for aerospace heat shields, brake pads, kiln furniture, chemical pump housings, and electronic heat spreaders.

What about packaging details?

Comes in 25 kg composite paper bags, sealed for freshness and durability.

How long is shelf life?

Shelf life is six months when stored sealed and dry.

Get in Touch

Reach out for technical support or inquiries.

Close-up of black carbon-ceramic composite fibers intertwined against a dark background.
Close-up of black carbon-ceramic composite fibers intertwined against a dark background.

The CCCF-B2 fiber transformed our heat shield design with unmatched strength and durability.

J. Lee

Close-up of black carbon-ceramic composite fiber strands glowing under intense heat.
Close-up of black carbon-ceramic composite fiber strands glowing under intense heat.
A high-tech laboratory setup testing the thermal resistance of CCCF-B2 composite fibers.
A high-tech laboratory setup testing the thermal resistance of CCCF-B2 composite fibers.

★★★★★