Carbon Fiber Veil, Also Known as Carbon Fiber Mat or Carbon Tissue, Is a Non-woven Material Made from Extremely Fine Carbon Fibers. Unlike Woven Carbon Fiber Fabrics, Where the Fibers Are Interlaced in a Specific Pattern, Carbon Fiber Veil Consists of Randomly Oriented Carbon Fibers That Are Held Together by a Binder or by Entanglement, Without the Regular Pattern Found in Woven Textiles. This Form of Carbon Fiber Material Is Typically Very Thin and Lightweight, Offering a Unique Set of Properties and Applications Distinct from Woven Carbon Fiber Fabrics.
FEATURE
Uniform Thickness and Surface Finish:
Carbon fiber veil provides a smooth and uniform surface finish, making it ideal for applications requiring a high-quality aesthetic appearance or a fine outer layer for composite parts.
Low Weight:
It is extremely lightweight, adding minimal weight when incorporated into composite materials or structures.
Electrical Conductivity:
Like other carbon-based materials, carbon fiber veil has inherent electrical conductivity, which can be beneficial in applications requiring electromagnetic interference (EMI) shielding or electrical conductivity.
Improved Surface Finish in Composites:
When used as a surface layer in composite materials, it can improve the surface finish, providing a better base for painting or coating.
Enhanced Laminate Properties:
Though not as strong as woven fabrics, adding a veil can improve the interlaminar properties of composite materials, such as fracture toughness and impact resistance.
APPLICATION
Aerospace and Automotive:
For surface layers of composite parts, improving the finish and paintability while adding minimal weight.
Wind Energy:
In the manufacture of wind turbine blades, where it can improve the surface quality and contribute to the overall performance of the composite structure.
Sports Equipment:
In high-performance sports gear where a superior surface finish and lightweight are crucial.
Industrial:
In components requiring good surface finish and electrical conductivity, such as casings for electronic devices or parts requiring EMI shielding.
Marine:
For the outer layers of composite boat hulls, improving the surface quality and resistance to water ingress.
SPECIFICATION
|
Code
|
Area Weight
(g/m2)
|
Surface
Resistance(Ω)
|
Binder
Content(%)
|
Moisture
Content(%)
|
Tensil Strength
(N/50mm)
|
Thickness
(mm)
|
L(m)
|
|
KF310/005
|
5
|
/
|
10±2
|
≤0.3
|
/
|
0.05±0.01
|
500
|
|
KF310/006
|
6
|
/
|
≥5
|
0.06±0.01
|
500
|
|
KF310/008
|
8
|
/
|
≥7
|
0.08±0.01
|
200
|
|
KF310/010
|
10
|
≤15
|
≥11
|
0.09±0.01
|
200
|
|
KF310/015
|
15
|
≤8
|
≥16
|
0.15±0.02
|
300
|
|
KF310/020
|
30
|
≤6
|
≥21
|
0.20±0.03
|
300
|
|
KF310/030
|
50
|
≤4
|
≥31
|
0.30±0.03
|
200
|
|
KF310/050
|
60
|
≤3
|
≥40
|
0.50±0.04
|
160
|
*Specific products could be made according to customers’requirements.