Home> Products> Carbon fiber fabric> Carbon fiber prepreg cloth> 6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg
6k plain woven carbon fiber cloth epoxy prepreg

6k plain woven carbon fiber cloth epoxy prepreg

$22.96300-599 Others

$22.44600-999 Others

$22.23≥1000Others

Payment Type:L/C,Western Union,T/T
Incoterm:FOB,CFR,CIF,EXW,Express Delivery
Transportation:Ocean,Land,Air,Express
Port:All ports in China
Color:
Product Attributes

Model No.TJ-085

TechnicsWoven

Product TypeCarbon Fiber Fabric

Width1000mm

PatternSolids

Supply TypeMake-To-Order

Material100% Carbon Fiber

FeatureAbrasion-Resistant, Waterproof, Heat-Insulation, Double Faced, QUICK-DRY

UseIndustry

Model NumberH-CP6320

Applicable To The CrowdWomen, Men

Dry Weight320

Resin Content40%

Total Weight530gsm

Tensile Modulus≥10Gpa

Compressive Strength≥90Mpa

Tensile Strength≥100

CertificationISO9001

StylePlain

Weight320g/㎡

Thickness0.4mm

Place Of OriginJiangsu, China

Brand Namephecda

Packaging & Delivery
Selling Units : square meter
Package Type : standard or customized carton

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6k plain woven carbon fiber cloth epoxy prepreg1
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Product Description


6k plain woven carbon fiber cloth epoxy prepreg

Epoxy and Bio-Based Epoxy Carbon Fiber Twill Composites: Comparison of the Quasi-Static Properties



In recent years, interest in sustainability has significantly increased in many industrial sectors. Sustainability can be achieved with both lightweight design and eco-friendly manufacturing processes. For example, concerns on the use of thermoset composite materials, with a lightweight design and a high specific strength, have arisen, since thermoset resins are not fully recyclable and are mainly petrol based. A possible solution to this issue is the replacement of the thermoset matrix with a recyclable or renewable matrix, such as bio-based resin. However, the mechanical properties of composites made with bio-based resin should be carefully experimentally assessed to guarantee a safe design and the structural integrity of the components. In this work, the quasi-static mechanical properties of composite specimens (eight layers of carbon fiber fabric) made with commercially available epoxy and a bio-based epoxy resins (31% bio content) are compared.  Tensile tests on the investigated resins and tensile, compression, shear and flexural tests have been carried out on composite laminates manufactured with the two investigated resins. A finite element model has been calibrated in the LS-Dyna environment using the experimentally assessed mechanical properties. The experimental results have proven that the two composites showed similar quasi-static properties, proving that bio-based composite materials can be reliably employed as a substitute for epoxy resins without affecting the structural integrity of the component but lowering their carbon footprint.



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Carbon Fiber Cloth Epoxy Prepreg


6k Plain Woven Carbon Fiber Prepreg

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