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1. Woven carbon fibre: material and manufacturing of a dial (video)

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2. Table of main properties of woven carbon fibre

Property Typical value Remarks
Density ~1.5–1.7 g/cm³ Very lightweight
Elasticity modulus (E) ~70–300 GPa Depends on orientation
Tensile strength ~500–1500 MPa Very high
Hardness Variable Depends on Die
Thermal conductivity ~5–20 W/m·K Low to moderate
Electrical conductivity Conductive (fibres) Variable
Expansion coefficient Very low Directional
Magnetism No Non-magnetic
Corrosion resistance Excellent Very stable
Machinability Difficult Abrasive

 

Woven carbon materials

3. General description

Woven carbon fibres are composite materials made of carbon fibres organised in a weave (weaving) and bound by a polymer matrix (most often epoxy resin). Relatively recently introduced in watchmaking, they are mainly used for their high mechanical properties, their very low mass and their distinctive technical aesthetics.

Unlike metals, it is not a homogeneous material, but an anisotropic composite whose properties depend on the orientation and type of fibre weaving.

4. Structure and types of weaving

Carbon fibres are organized according to different types of weaving, influencing mechanical properties and aesthetics:

Plain weave
  • Regular checkerboard pattern
  • Good dimensional stability
  • Classic aesthetic appearance

Twill weave
  • Characteristic diagonal pattern
  • Better drapability
  • Widely used in watchmaking

Unidirectional weave (UD)
  • Fibres oriented in a single direction
  • Maximum mechanical properties along this Axis
  • Less used for aesthetic reasons

5. Die and manufacturing

The fibres are impregnated with a polymer resin (the die), forming a composite:

  • Resins polymers: two types of categories exist:
    • Thermosetting resins: an irreversible chemical reaction that transforms the liquid resin into a solid. (Epoxy resin: the most common)
    • Thermoplastic resins: liquefy under heat and harden upon cooling. (Peek resin)

The resin is then integrated with the fibres through various processes:

  • Contact moulding
  • Vacuum moulding
  • Infusion
  • Injection

The material then undergoes a curing cycle to polymerize and harden.

The part can then be machined, by milling, etc.

6. Watchmaking applications

Woven carbon fibre is used for:

7. Advantages and limitations

Advantages
  • Extremely lightweight
  • Very mechanically resistant
  • Non-magnetic
  • Corrosion resistant
  • Modern and technical aesthetic
  • Good vibration absorption

Limitations
  • Anisotropic properties (depend on orientation)
  • Sensitivity to localized impacts (possible delamination)
  • Difficulty of repair
  • Possible aging of the polymer matrix
  • Specific machining (abrasive for tools)

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