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​Chemical Resistant T300/T700 Carbon Fiber Cloth Fabric for High Performance Composite Reinforcement

    T300/T700 Carbon Fiber Fabric is woven from high-strength carbon fiber yarns,offering excellent tensile strength,high modulus,lightweight performance,fatigue resistance,chemical resistance,and dimensional stability for high-performance composite reinforcement. Compatible with epoxy and other composite resin systems,it is suitable for hand lay-up,vacuum bagging,vacuum infusion,and other composite manufacturing processes. Ideal for aerospace,automotive parts,sports equipment,marine structures,industrial components,and structural reinforcement. Available in T300,T700,and other fiber grades with various weights,weave styles,widths,and customized specifications.


Description

Chemical Resistant T300/T700 Carbon Fiber Cloth Fabric for High Performance Composite Reinforcement



        Our Chemical Resistant Carbon Fiber Cloth Fabric is a high-performance composite reinforcement manufactured from T300 or T700 carbon fiber yarn and engineered for lightweight structural components requiring high strength,low weight,dimensional stability,and chemical resistance. Available in 3K,6K,12K,and 24K configurations with 2×2 twill,4H satin,and 5H satin weave structures,the fabric provides excellent drapability and conformity over complex molds.Standard grades range from approximately 200–620 g/m² with thicknesses from 0.23–0.52 mm. The combination of high-performance carbon fiber and flexible woven architecture makes this carbon fiber fabric suitable for automotive components,UAV structures,marine composites,sports equipment,robotic components,wind energy structures,and other advanced composite applications.T300 and T700 carbon fiber cloth can be supplied according to different weave structures,areal weights,and application requirements for epoxy-based and other compatible composite manufacturing systems.


Carbon Fiber Cloth Fabric Specifications

PropertySpecification
Product NameCarbon Fiber Cloth Fabric
Alternative NameCarbon Fiber Fabric / Woven Carbon Fiber Cloth
MaterialCarbon Fiber
Carbon Fiber GradeT300 / T700
Available Tow3K / 6K / 12K / 24K
Weave Structure2×2 Twill / 4H Satin / 5H Satin
Standard Areal WeightApproximately 200–620 g/m²
Custom Areal WeightAvailable
Thickness RangeApproximately 0.23–0.52 mm for Current Grades
Listed Elongation1.5%
Resin Wet-Out Time≤20s / ≤25s / ≤30s Depending on Grade
Key PropertiesHigh Strength / Lightweight / Chemical Resistance
Main ApplicationsAutomotive / UAV / Marine / Sports / Wind Energy / Industrial Composites
CustomizationGrade / Tow / Weave / Weight / Dimensions


Key Advantages of Carbon Fiber Fabric

1. High Strength-to-Weight Ratio

Carbon fiber fabric provides high mechanical performance while maintaining very low material weight.

The current T300 and T700 grades are designed for structural composite applications where conventional metallic reinforcement may create unnecessary weight.

This makes carbon fiber cloth particularly useful in:

• Automotive lightweighting

• UAV structures

• Sports equipment

• Marine components

• Robotic structures

• Transportation composites

• High-performance industrial components

2. T300 & T700 Carbon Fiber Options

Different carbon fiber grades can be selected according to structural and cost requirements.

T300 is widely used for general high-performance composite structures,while T700 provides higher tensile performance for more demanding lightweight components.

Available constructions include:

• T300-3K

• T300-6K

• T700-12K

• T700-24K

This allows engineers and manufacturers to select a suitable balance between fabric weight,handling,mechanical performance,and cost.

3. Excellent Drapability

Twill and satin weave structures provide better conformity over curved and complex surfaces than many rigid reinforcement architectures.

This is particularly valuable for:

• Automotive body panels

• UAV shells

• Marine components

• Sports equipment

• Molded covers

• Complex composite geometries

Good drapability can help reduce fabric bridging and wrinkles during lay-up.

4. Multiple Weave Structures

The current product range includes:

• 2×2 Twill

• 4H Satin

• 5H Satin

Each weave structure provides a different balance between appearance,drapability,stability,and processing characteristics.

5. Chemical Resistance

Carbon fiber itself provides good resistance to many chemical environments.

When incorporated into a properly designed composite laminate,the reinforcement can be used in applications requiring resistance to selected corrosive or chemically aggressive conditions.

However,the chemical resistance of the finished component depends strongly on the resin matrix,laminate construction,temperature,chemical concentration,and exposure duration.

6. Low Density

The current product information lists carbon fiber density at approximately 1.76–1.80 g/cm³.

This low density contributes to the excellent specific strength of carbon fiber composites and allows significant structural performance without the mass associated with many metallic materials.

7. Good Dimensional Stability

Carbon fiber reinforcement exhibits low thermal expansion along the fiber direction.

This characteristic makes carbon fiber composites useful for structures requiring dimensional stability under changing temperature conditions.

8. Electrical Conductivity

Unlike fiberglass,carbon fiber is electrically conductive.

This characteristic can be useful in selected applications requiring electrical conductivity or static dissipation.

It also means electrical isolation must be considered when carbon fiber is used near conductive metals or electrical systems.

9. Thermal Conductivity

Carbon fibers can conduct heat along the fiber direction.

The current product information lists axial thermal conductivity in the range of approximately 8.5–11.0 W/m·K.

Actual thermal performance of the finished composite depends on fiber orientation,resin system,fiber volume fraction,and laminate construction.

10. Fast Resin Wet-Out

The current product grades list resin wet-out times between approximately ≤20 and ≤30 seconds under the referenced conditions.

Efficient wet-out can support composite manufacturing by allowing resin to penetrate the fabric structure more consistently.

Actual impregnation behavior depends on resin viscosity,temperature,pressure,process,and fabric architecture.

11. Attractive Carbon Fiber Surface

Twill carbon fiber cloth provides the characteristic diagonal woven appearance commonly associated with premium carbon composite components.

This makes it suitable for both structural and visible cosmetic applications.

12. Suitable for Complex Composite Manufacturing

Carbon fiber fabric can be incorporated into different composite manufacturing processes according to the resin system and component design.

Potential processes include:

• Hand lay-up

• Vacuum bagging

• Vacuum infusion

• Prepreg processing

• Compression molding

• Autoclave processing

Process suitability should be confirmed according to the selected fabric,resin,and sizing system.


Primary Carbon Fiber Grades & Applications

GradeWeave StructureTypical ApplicationExample Components
T300-3K2×2 TwillUAV / Sports / Lightweight ComponentsUAV Wings / Rackets / Housings
T300-6K2×2 TwillAutomotive / MarineBody Components / Yacht Parts
T700-12K4H SatinAutomotive / Wind Energy / StructuralBody Panels / Structural Laminates
T700-24K5H SatinIndustrial / Robotic / Large StructuresRobotic Arms / Structural Components


Technical Specifications by Grade

ParameterT300-3KT300-6KT700-12KT700-24K
Weave2×2 Twill2×2 Twill4H Satin5H Satin
Areal Density200±5% g/m²380±5% g/m²410±5% g/m²620±5% g/m²
Thickness0.23±0.02 mm0.32±0.03 mm0.35±0.03 mm0.52±0.05 mm
Listed Tensile Strength3,480 MPa3,520 MPa4,850 MPa4,800 MPa
Listed Flexural Modulus225 GPa228 GPa240 GPa238 GPa
Listed Interlaminar Shear52 MPa54 MPa68 MPa66 MPa
Resin Wet-Out Time≤30s≤30s≤25s≤20s

The mechanical values above should be interpreted according to the referenced test conditions. For engineering design,customers should confirm whether each value represents fiber,fabric,or cured laminate performance before using it in structural calculations.


T300-3K Carbon Fiber Fabric

T300-3K carbon fiber cloth combines relatively fine 3K tow with a 2×2 twill structure.

Areal Density: 200±5% g/m²

Thickness: 0.23±0.02 mm

Weave: 2×2 Twill

Listed Wet-Out Time: ≤30s

Its relatively lightweight construction makes it suitable for thin composite laminates,visible carbon surfaces,UAV components,sports equipment,and lightweight housings.

T300-6K Carbon Fiber Fabric

T300-6K provides a heavier fabric construction while maintaining the drapability and visual characteristics of 2×2 twill.

Areal Density: 380±5% g/m²

Thickness: 0.32±0.03 mm

Weave: 2×2 Twill

Listed Wet-Out Time: ≤30s

Typical applications include automotive components,marine parts,structural covers,and medium-weight composite laminates.

T700-12K Carbon Fiber Fabric

T700-12K uses higher-performance T700 carbon fiber with a 4H satin weave.

Areal Density: 410±5% g/m²

Thickness: 0.35±0.03 mm

Weave: 4H Satin

Listed Wet-Out Time: ≤25s

The satin architecture provides good drapability for larger or more complex structural composite components.

T700-24K Carbon Fiber Fabric

T700-24K is the heaviest of the four current standard grades.

Areal Density: 620±5% g/m²

Thickness: 0.52±0.05 mm

Weave: 5H Satin

Listed Wet-Out Time: ≤20s

The heavier 24K architecture is suitable for applications where greater reinforcement mass per layer is required.


T300 vs. T700 Carbon Fiber Fabric

PropertyT300 Carbon Fiber FabricT700 Carbon Fiber Fabric
Available Current Tow3K / 6K12K / 24K
Current Weave2×2 Twill4H / 5H Satin
Current Weight Range200–380 g/m²410–620 g/m²
Current Thickness Range0.23–0.32 mm0.35–0.52 mm
Relative Strength LevelHighHigher
Fabric HandlingFine / FlexibleSuitable for Heavier Reinforcement
Typical SelectionGeneral High-Performance CompositesHigher-Performance Structural Composites


2×2 Twill Carbon Fiber Fabric

2×2 twill is one of the most recognizable carbon fiber weave patterns.

The diagonal weave provides:

• Good drapability

• Attractive visual appearance

• Balanced fabric stability

• Easy conformity over curved molds

• Suitable handling for hand lay-up and vacuum processes

T300-3K and T300-6K are currently offered in 2×2 twill constructions.


Satin Weave Carbon Fiber Fabric

Satin weaves contain longer fiber floats and fewer interlacing points than conventional plain weave.

This generally improves drapability and helps the fabric conform to complex surfaces.

Current satin options include:

• T700-12K 4H Satin

• T700-24K 5H Satin

Careful handling is recommended because highly drapable fabrics can also distort more easily during cutting and lay-up.


Carbon Fiber Fabric for Automotive Components

Carbon fiber cloth can be used in lightweight automotive composite structures including:

• Body panels

• Interior trim

• Structural covers

• Doors

• Hoods

• Roof components

• Performance vehicle parts

• Cosmetic carbon components

The final laminate design should consider impact performance,crash requirements,resin selection,and manufacturing process.


Carbon Fiber Fabric for UAV & Aerospace-Type Structures

Light weight and high specific strength make carbon fiber fabric attractive for UAV and other weight-sensitive structures.

Potential applications include:

• UAV wings

• Structural skins

• Equipment housings

• Fairings

• Reinforcement panels

• Lightweight frames

Applications requiring formal aerospace qualification should use materials with the required traceability,test documentation,and approved processing specifications.


Carbon Fiber Fabric for Marine Composites

Carbon fiber cloth can be incorporated into marine composite components where high stiffness and low weight are important.

Typical applications include:

• Yacht components

• Deck structures

• Masts

• Interior panels

• Structural reinforcements

• Racing marine components

The chemical and seawater resistance of the finished laminate depends strongly on the selected resin system and laminate protection.


Carbon Fiber Fabric for Sports Equipment

Carbon fiber reinforcement is widely used in high-performance sporting products because of its stiffness-to-weight ratio.

Potential products include:

• Rackets

• Bicycle components

• Paddles

• Boards

• Protective shells

• Performance equipment


Carbon Fiber Fabric for Robotic & Industrial Components

T700 carbon fiber fabrics can be considered for lightweight robotic arms,machine structures,and industrial components where reducing moving mass can improve system efficiency.

Composite design should consider load direction,attachment points,impact conditions,and laminate architecture.


Chemical Resistance of Carbon Fiber Composites

The carbon fiber reinforcement itself provides good chemical stability,but the finished composite should always be evaluated as a complete material system.

Chemical resistance depends on:

• Resin type

• Chemical type

• Chemical concentration

• Operating temperature

• Exposure duration

• Fiber volume fraction

• Laminate quality

• Surface protection

For chemically aggressive applications,resin selection is often as important as the carbon fiber reinforcement itself.


Carbon Fiber vs. Fiberglass Reinforcement

PropertyCarbon FiberFiberglass
DensityLowerHigher
Specific StiffnessHigherLower
Electrical ConductivityConductiveGenerally Insulating
Thermal ExpansionVery Low Along Fiber DirectionHigher
Material CostHigherLower
Visible Cosmetic FinishPremium Carbon AppearanceGlass Fiber Appearance
Typical UseHigh-Performance Lightweight StructuresGeneral Composite Reinforcement


How to Choose Carbon Fiber Fabric

Selection FactorWhat to Consider
Carbon GradeT300 / T700
Tow Size3K / 6K / 12K / 24K
Weave2×2 Twill / 4H Satin / 5H Satin
Areal Weight200–620 g/m² Current Grades
Thickness0.23–0.52 mm Current Grades
Surface RequirementStructural / Cosmetic
Mold GeometryFlat / Curved / Complex
Resin SystemEpoxy / Compatible Composite Resin
Manufacturing ProcessLay-Up / Vacuum / Prepreg / Other
ApplicationAutomotive / UAV / Marine / Sports / Industrial


Custom Carbon Fiber Fabric

Customization ItemAvailable Options
Carbon Fiber GradeT300 / T700
Tow Size3K / 6K / 12K / 24K
Weave StructureTwill / Satin
Areal WeightStandard / Custom
ThicknessAccording to Fabric Construction
Roll DimensionsCustomized
Resin-Specific RequirementCan Be Evaluated
PackagingCustomized
LabelingCustomized
Application SupportAutomotive / Marine / UAV / Industrial / Sports


Quality Control

Consistent carbon fiber fabric quality is important for both composite processing and finished laminate performance.

Key quality control items include:

• Carbon fiber grade

• Tow size

• Areal weight

• Fabric thickness

• Weave structure

• Warp and weft consistency

• Fabric width

• Fiber alignment

• Surface defects

• Broken yarns

• Weave distortion

• Edge quality

• Roll alignment

• Contamination

• Packaging integrity

For structural applications requiring certified mechanical properties,the corresponding batch documentation,test method,and material qualification requirements should be confirmed before ordering.


Packaging & Shipping

Packaging ItemDetails
Standard SupplyRoll
CoreProtective Roll Core
Inner ProtectionMoisture-Protective Packaging
Surface ProtectionFabric Protected Against Contamination & Abrasion
Outer PackagingReinforced Export Packaging
Pallet PackagingAvailable
Custom Roll DimensionsAvailable
Custom LabelingAvailable
Export PackagingAvailable According to Order Requirements

Carbon fiber fabric should be protected from crushing,contamination,moisture,and unnecessary abrasion during transportation.


Storage Guidelines

1. Store in a Clean,Dry Environment

Keep carbon fiber fabric indoors in a clean,dry,and controlled storage area.

2. Recommended Temperature

The current product information specifies approximately 15–25°C for controlled storage.

3. Recommended Humidity

The current product information specifies approximately 35–45% relative humidity.

4. Protect from UV Exposure

Keep rolls away from unnecessary direct sunlight and strong UV exposure.

5. Keep Packaging Sealed

Maintain protective packaging until the fabric is ready for cutting and processing.

6. Prevent Contamination

Carbon fiber surfaces should be protected from oil,dust,release agents,and other contamination that may affect resin bonding.

7. Avoid Fabric Deformation

Store rolls carefully to prevent crushing,folding,wrinkling,or weave distortion.

8. Shelf Life

The current product information lists approximately 24 months for sealed material under its specified storage conditions.

Actual shelf-life requirements should be confirmed according to sizing system,packaging,and customer quality requirements.


Frequently Asked Questions About Carbon Fiber Fabric

1. What is carbon fiber cloth fabric?

Carbon fiber cloth is a woven reinforcement manufactured from continuous carbon fiber yarn.

It is impregnated with a compatible resin during composite manufacturing to produce lightweight,high-strength carbon fiber reinforced polymer components.

2. What carbon fiber grades are available?

The current product range includes T300 and T700 carbon fiber grades.

3. What tow sizes are available?

Current constructions include:

• 3K

• 6K

• 12K

• 24K

4. What weave structures are available?

Current weave options include:

• 2×2 Twill

• 4H Satin

• 5H Satin

5. What is the difference between T300 and T700 carbon fiber?

Both are high-performance carbon fiber grades,but T700 generally provides a higher tensile-performance level.

The correct selection depends on structural requirements,fabric architecture,weight,target performance,and budget.

6. What does 3K,6K,12K,and 24K mean?

The “K” designation refers to the approximate number of individual carbon filaments contained in each tow.

For example,3K represents approximately 3,000 filaments per tow,while 12K represents approximately 12,000 filaments.

7. What is 2×2 twill carbon fiber fabric?

2×2 twill is a woven carbon fiber structure with a characteristic diagonal pattern.

It provides good drapability and is widely used for both structural and cosmetic carbon components.

8. What is satin carbon fiber fabric?

Satin fabric uses fewer interlacing points and longer fiber floats than conventional plain weave.

This can improve drapability over curved and complex mold surfaces.

9. What fabric weights are available?

The current standard grades range from approximately 200–620 g/m².

Customized areal weights can also be evaluated.

10. Is carbon fiber fabric chemical resistant?

Carbon fiber itself provides good resistance to many chemical environments.

However,the chemical resistance of the finished composite depends heavily on the resin system and actual exposure conditions.

11. Is carbon fiber electrically conductive?

Yes.

Unlike fiberglass,carbon fiber is electrically conductive.

Electrical isolation and galvanic interaction should therefore be considered in applications involving metals or electrical equipment.

12. Can carbon fiber fabric be used with epoxy resin?

Yes.

Epoxy is one of the most common resin systems used with carbon fiber fabrics.

The sizing and resin system should be matched for optimum processing and laminate performance.

13. Is T300-3K suitable for cosmetic carbon fiber parts?

Yes.

The relatively fine 3K tow and 2×2 twill appearance make T300-3K suitable for many visible carbon fiber components where both appearance and reinforcement are important.

14. Which carbon fabric is better for complex molds?

Twill and satin weave structures generally provide good drapability.

The best choice depends on mold curvature,component size,fabric weight,and required fiber orientation.

15. Can carbon fiber cloth be used for marine applications?

Yes.

Carbon fiber fabric can be used in yacht components,marine structural reinforcement,and lightweight marine parts.

The resin and protective system should be selected according to water and chemical exposure.

16. Can carbon fiber fabric be customized?

Yes.

Carbon fiber grade,tow size,weave structure,areal weight,roll dimensions,packaging,and other specifications can be customized or evaluated according to application requirements.

17. Is this carbon fiber fabric eco-friendly?

The original product title uses the term “Eco Friendly,”but environmental performance should be supported by a defined criterion,process,certification,or lifecycle data.

For technical B2B marketing,it is more accurate to focus on lightweighting,material efficiency,and long service performance unless a specific environmental certification is available.

18. What information should I provide when requesting a quotation?

For an accurate quotation,please provide:

• T300 or T700 grade

• Tow size

• Weave structure

• Required areal weight

• Required thickness if specified

• Required width

• Roll length

• Resin system

• Manufacturing process

• End-use application

• Required quantity

• Destination country or port

• Special packaging or documentation requirements


Why Choose WGSC Composite?

WGSC Composite supplies carbon fiber fabrics,fiberglass reinforcement,and advanced composite materials for automotive,marine,UAV,sports equipment,industrial machinery,and other lightweight structural applications.

Our carbon fiber fabric range includes T300 and T700 grades with 3K,6K,12K,and 24K constructions and multiple twill and satin weave options.

Different areal weights,weave structures,roll dimensions,and packaging configurations can be supplied according to composite manufacturing requirements.

Whether you are sourcing T300 carbon fiber cloth,T700 carbon fiber fabric,2×2 twill carbon fiber cloth,satin weave carbon fabric,or chemical-resistant carbon fiber reinforcement,we can provide specification and customization support according to your composite application.


Request a Quote

Looking for a reliable carbon fiber fabric supplier?

Please send us your:

Carbon Grade · Tow Size · Weave · Areal Weight · Width · Roll Length · Resin System · Application · Quantity · Destination

Contact WGSC Composite for T300/T700 carbon fiber fabric specifications,custom woven carbon fiber cloth requirements,and quotation support.


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