Carbon fiber mesh is a material that consists of carbon fibers woven or knitted together in a mesh-like pattern. It combines the properties of carbon fiber—such as high strength, low weight, and durability—with the added flexibility and versatility of a mesh form. This material is often used in a variety of applications due to its unique properties.
FEATURE
High Strength-to-Weight Ratio:
Carbon fiber mesh offers impressive strength without adding significant weight. This makes it ideal for use in industries where reducing weight is crucial, such as in aerospace, automotive, and sports equipment.
Durability:
Carbon fibers are highly resistant to wear and corrosion, which makes the mesh highly durable and long-lasting, even under extreme conditions.
Flexibility:
The mesh structure allows it to be flexible, which can be advantageous in applications where the material needs to conform to complex shapes or surfaces.
Electrical Conductivity:
Carbon fiber materials, including mesh, can be electrically conductive, which can be useful in certain applications like electromagnetic shielding.
Thermal Resistance:
Carbon fiber mesh can withstand high temperatures, making it suitable for high-heat environments.
APPLICATION
Reinforcement:
Carbon fiber mesh is commonly used as a reinforcement material in composite structures. It can be combined with resins or other materials to improve the strength and stiffness of products like automotive panels, aircraft parts, and sporting goods.
Construction:
In the construction industry, carbon fiber mesh is used for reinforcing concrete structures. It provides additional tensile strength to concrete, helping to prevent cracking and improve the longevity of buildings and infrastructure.
PERFORMANCE PARAMETERS
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Item
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Unidirectional Carbon Fiber Mesh
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Bidirectional Carbon Fiber Mesh
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Grid Spacing
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2cm
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2cm
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End Fiber Bundle
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Longitudinal Carbon Fiber Bundle
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Longitudinal and Transverse Carbon Fiber Bundle
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|
Transverse Carbon Fiber Bundle
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|
Tensile Strength (MPa)
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≥3500
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≥3500
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Tensile Modulus (GPa)
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≥230
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≥230
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Elongation at Break (%)
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≥1.5
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≥1.5
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Alkali Resistance Tensile Retention Strength
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≥70%
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≥70%
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Bond Strength with Concrete under Direct Tension (MPa)
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≥2.5, and concrete cohesive failure
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≥2.5, and concrete cohesive failure
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|
Wet Spraying Polymer Mortar Parameters
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Compressive Strength (MPa)
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Flexural Strength (MPa)
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Splitting Tensile Strength (MPa)
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Bond Strength with Concrete under Direct Tension (MPa)
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|
7d
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28d
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≥12
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≥7
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≥2.5, and concrete cohesive failure
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≥40
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≥55
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*Specific products could be made according to customers’requirements.