Custom 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric
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  • 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric
  • 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric

3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric

3K 1000D/1500D plain/twill aramid mixed carbon fiber woven fabric is made of aramid fiber and carbon fiber. Aramid fiber provides impact resistance and toughness, while carbon fiber has good strength and lightweight characteristics. The combination of the two can significantly improve the overall performance of the material. It is widely used in aerospace, automotive industry and high-end sports equipment fields, and is suitable for scenarios requiring high strength, lightweight and impact resistance.

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Parameter

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)

ARAMID + CARBON HYBRID · 3K + 1000D/1500D
3K 1000D/1500D Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric
Hybrid fabric main view
Hybrid woven fabric combining 3K carbon fiber with 1000D or 1500D para-aramid (Kevlar-type) yarns in plain or twill weave configurations. The carbon component delivers tensile modulus of 230-240 GPa, while the aramid component provides impact resistance of 45-65 J/m² and elongation at break of 2.0-3.0 percent. Available in 200-380 gsm areal weight with standard widths of 100-1,500 mm. The contrasting yellow/gold aramid against black carbon creates distinctive visual patterns for cosmetic applications. The hybrid construction offers 35-50 percent higher impact resistance than all-carbon fabric while maintaining 70-85 percent of carbon-only tensile strength.
200-380 gsmAreal weight
45-65 J/m²Impact resistance
2.0-3.0%Elongation at break
Core advantages
Enhanced impact tolerance
Aramid component provides 35-50 percent higher energy absorption compared to all-carbon laminates, reducing damage from impact events.
Structural stiffness
Carbon fiber maintains flexural modulus of 120-140 GPa, ensuring dimensional stability under load-bearing conditions.
Weave versatility
Available in plain weave for stability or twill weave for enhanced drapability over complex curved geometries.
Aramid density options
1000D aramid provides finer yarns for detailed patterns; 1500D offers heavier construction for increased abrasion resistance.
Technical specifications
Carbon component3K carbon fiber
Aramid component1000D or 1500D para-aramid
Weave patternsPlain / Twill (2x2)
Areal weight200-380 gsm
Tensile strength3,500-4,500 MPa
Tensile modulus180-200 GPa
Elongation at break2.0-3.0%
Standard width100-1,500 mm
Mixed fabric detail
Close-up of hybrid weave structure showing yellow aramid and black carbon yarns
Application scenarios
Automotive body panels: Used in hoods, trunk lids, and fender applications requiring impact resistance with weight reduction.
Protective equipment: Incorporated in helmet shells, knee guards, and body armor plates where energy absorption is critical.
Marine structures: Applied in boat hulls, deck components, and hatch covers requiring saltwater corrosion resistance and impact tolerance.
Industrial safety: Used in machine guards, protective shields, and conveyor components subject to impact and abrasion.
Frequently asked questions
1000D vs 1500D aramid selection
1000D aramid produces finer, more detailed weave patterns and is suitable for cosmetic applications requiring visual clarity. 1500D aramid provides heavier construction with higher abrasion resistance and is recommended for structural applications where surface wear is a concern.
Plain vs twill weave selection
Plain weave offers maximum fabric stability and is recommended for flat panel applications where distortion must be minimized. Twill weave provides enhanced drapability for curved mold surfaces and is preferred for complex 3D geometries requiring uniform resin flow.
Curing temperature limitations
Maximum cure temperature is 180°C for standard epoxy systems. Above 180°C, aramid fibers may begin to degrade, reducing mechanical properties. For high-temperature applications above 180°C, specialized high-temperature resin systems with reduced cure cycles are available.
Handling and processing
Cutting: Use diamond-coated or carbide-tipped blades. Aramid fibers are highly abrasive and will rapidly dull standard steel cutting tools.
Resin impregnation: Aramid fibers require thorough wet-out. Use low-viscosity resin (below 500 cps) and apply vacuum pressure of 0.08-0.1 MPa for complete penetration.
Machining: Waterjet or CNC routing recommended. Sanding requires dust extraction systems to prevent aramid fiber dust accumulation.
Storage and shelf life
Store in sealed moisture-proof packaging at 5-25°C, RH below 50 percent.
Shelf life: 18 months from manufacture date in unopened packaging.
After opening, use within 10 days. Reseal with moisture barrier tape and store with desiccant.
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 3k 1000d/1500d Plain/Twill Aramid Carbon Mixed Carbon Fiber Woven Fabric Manufacturers and Custom 3k 1000d/1500d Plain/Twill 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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