3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll
3K 240g plain carbon fiber fabric roll

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3K 240g plain carbon fiber fabric roll

  • $17.00

    ≥100 Others

  • $16.80

    ≥300 Others

  • $16.50

    ≥500 Others

Color:

  • black
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Model No. : TJ-093
Brand Name :
Technics : Woven
product type : Carbon Fiber Fabric
Width : 1000mm
Pattern : Solids
Supply Type : Make-To-Order
Material : 100% Carbon Fiber
Feature : Abrasion-Resistant, Anti-Static, Waterproof, Heat-Insulation, light weight, Double Faced, QUICK-DRY, DIMENSIONAL, Workability,flexbility
use : Bag
Model Number : H3K-CP240(1m wide)
Applicable to the Crowd : Women, Men
Yarn Count(10mm) : 6*6
Warp yarn : T300-3000
Welf Yarn : T300-3000
Color : Black
Yarn : China Yarn
Length : Carbon Fiber Fabric Normal 100m/roll
Certification : ISO9001
Style : Plain
Weight : 240g/m2
Thickness : 0.32mm
Place of Origin : Jiangsu, China
Brand Name : PHECDA
place of origin : China
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2yrs

Wuxi, Jiangsu, China

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Product description

3K 240g plain carbon fiber fabric roll

The application of carbon fiber/epoxy composites places more requirements on the selection of fabrics to meet the needs of structural components. Due to the large design space for reinforced fabric patterns, the relationship between the reinforcements and properties is essential to further understand. Four typical fabrics were manufactured in this research, named non-interlaced bidirectional fabrics, plain weave laminated fabrics, angle-interlock fabrics and bidirectional angle-interlock fabrics. The structural features of fabrics were analyzed by using representative geometric unit, and the symmetry properties were discussed based on group theory. Vacuum assistant resin transfer molding was adopted to obtain the corresponding resin matrix composite specimens. Quasi-static tensile and bending tests were conducted on these specimens. The stress-strain curves of specimens were illustrated, and the failure characterizations were also analyzed in mesoscopic scale. The results showed that the high crimp of yarns reduced the stability of composites. Both the tensile and flexural properties were affected by the curvature of yarns. The research results provided a theoretical basis for the selection of fabric structure and the application of carbon fiber/epoxy composites.

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