Custom Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
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  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric

Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric

Red/black aramid carbon fiber woven fabric is made of aramid fiber and carbon fiber interwoven in a specific proportion. Aramid fiber is known for its impact resistance, abrasion resistance and good toughness, while carbon fiber is lightweight, high-strength, corrosion-resistant and has stable thermal properties. The combination of the two makes the woven fabric have both mechanical properties and beautiful appearance, often showing a unique texture of red and black interweaving. Widely used in aerospace, automotive, sports equipment and high-end consumer goods fields.

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Product Characteristics

  • Improvement of high-temperature resistance of materials.
  • Improvement of impact resistance of materials.
  • Improves heat decay resistance of materials.
Reinforcement Weave Weight(g/㎡)  Thickness(mm) Width(M) 
3K、1000D Plain 155 0.26 0-2.3
3K、1000D Twill 165 0.28 0-2.3
3K、1000D Plain 185 0.3 0-2.3
3K、1000D Twill 185 0.3 0-2.3
3K、1500D Plain 60 0.2 0-2.3
3K、1500D Twill 220 0.24 0-2.3
3K、1500D Plain 190 0.28 0-2.3
3K、1500D Twill 190 0.28 0-2.3

We can design and produce fabrics according to customers' requirements (the above is only a part of the display)

HYBRID · ARAMID + CARBON · RED/BLACK
Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric
Aramid carbon hybrid fabric
Red/Black aramid carbon hybrid woven fabric combines para-aramid (Kevlar-type) fibers with high-strength carbon fiber in a single weave structure. The red aramid yarns provide impact resistance and toughness, while the black carbon yarns deliver stiffness and tensile strength. Available in 3K carbon + 1000D aramid configurations with areal weight of 200-350 gsm. The hybrid construction achieves tensile strength of 3,200-4,200 MPa with elongation at break of 1.8-2.5 percent. The contrasting red/black visual pattern provides distinctive aesthetic appeal for visible composite applications.
3,200-4,200 MPaTensile strength
1.8-2.5%Elongation at break
200-350 gsmAreal weight
Impact toughness
Aramid component provides energy absorption capacity of 40-60 J/m², enhancing damage tolerance and preventing catastrophic failure under impact loading.
High stiffness
Carbon fiber delivers tensile modulus of 230-240 GPa, maintaining structural rigidity for load-bearing applications requiring dimensional stability.
Visual contrast
Red aramid and black carbon create a distinctive woven pattern that provides aesthetic value for visible composite parts without additional painting or decoration.
Balanced performance
Hybrid construction offers 30-40 percent higher impact resistance than all-carbon fabric while maintaining 70-80 percent of carbon-only tensile properties.
Technical specifications
Fiber typeAramid (red) + Carbon (black)
Tow/Yarn size3K carbon + 1000D aramid
Areal weight200-350 gsm
Weave patternPlain / Twill / Custom
Tensile strength3,200-4,200 MPa
Tensile modulus180-200 GPa
Elongation at break1.8-2.5%
Application scenarios
Automotive interiors: Used in dashboard trim, center console panels, and door inserts where red/black visual contrast adds sporty aesthetic appeal.
Aerospace cabin components: Applied in overhead bins, divider panels, and seat back structures requiring impact resistance with reduced weight.
Sports equipment: Incorporated in helmet shells, protective gear, and high-performance bicycle frames where impact protection is critical.
Marine applications: Used in deck fittings, hatch covers, and hull reinforcements requiring corrosion resistance and impact tolerance.
Frequently asked questions
Comparison to all-carbon fabric
Hybrid fabric offers 30-40 percent higher impact resistance and toughness compared to all-carbon fabric. Tensile strength is reduced by 20-30 percent, but elongation at break increases from 1.2-1.5 percent to 1.8-2.5 percent, providing better damage tolerance in applications subject to impact loading.
Color stability of aramid fibers
The red aramid fibers are solution-dyed, providing color stability against UV exposure. After 500 hours QUV testing per ASTM G154, color change Delta E is less than 2.0. For outdoor applications, a UV-resistant clear coat is recommended to extend color retention.
Resin compatibility and processing
Compatible with epoxy, vinyl ester, and polyester resin systems. The aramid component requires proper wet-out due to lower surface energy. For best results, use low-viscosity resin and apply vacuum pressure of 0.08-0.1 MPa. Cure temperature not to exceed 180°C to prevent aramid degradation.
About Us
Jiangyin Dongli New Materials Technology Co., Ltd.
Founded in 2018, Jiangyin Dongli New Materials Technology Co., Ltd. specializes in the comprehensive development and manufacturing of high-performance fiber composite materials. We are China Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric Manufacturers and Custom Red/Black Aramid Carbon Mixed Carbon Fiber Woven Fabric Factory. Located in a 32,000-square-meter industrial complex, the company features precision-controlled production environments, including climate-regulated workshops and 100,000-grade purification zones.
As a one-stop factory with full process control, we integrate material innovation with engineering expertise to serve industries such as aerospace, automotive and sports equipment development. Our capabilities include the R&D and production of high-performance fiber fabrics through weaving and prepreg processes, as well as composite products utilizing autoclave, RTM, RMCP, PCM, WCM, and spraying technologies.
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