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Carbon for car

I have found results from200000+products and60000+suppliers aboutCarbon for car

Commonly Used:
US$
Customization Available
Sample Available
Manufacturer First
Product Attributes:
Side Window Shades
Coaly Activated Carbon
Application Area: Chemical Industry
Ash: 5-10%
Surface Area: 800-1000 m�/g
Usage: Air Purification
Particle Size: 2-3 mm
Appearance: Cylindrical
Iodine Value: 600-900 mg/g
Ph Value: 7-9
Specific Surface Area: 800-1200 m�/g
Classification: Other Oxides
Grade Standard: Food Grade
Kind: Acidic Oxide
Quality: First Class
Nominal Voltage: 12V
Electrolyte: Acid
Installation: Fixed
Rechargeable: Chargeable
Carbon Fiber Cloth
Polyacrylonitrile-Based Carbon Fiber
Performance: High-Strength Type
Mechanical Property: High-Performance Type
State: Short Fiber
Waterproof: Waterproof
Scratchproof: Not Scratchproof
Application Fields: Chemical
Certification: CE
Gas Type: Acetylene
Noise Level: Low
Purification Method: Absorption
Activated carbon purifier
Purpose: Gas Purification
Position: Window
Drying Method: Static Drying
Sorbent: Activated Carbon
Desiccant: Physical Desiccant
Material: WPC
Customized: Customized
PH Value: 7-9
Electric Power Industry
Environmental Protection Industry
Application Area: Food Industry
Application Area: Petrochemical Industry
Application Area: Gold Industry
Ash: <3%
Gas Phase Adsorption
Usage: Industrial Decolorization
Usage: Water Treatment
Usage: Bus
Usage: UPS
Usage: Electric Power
Usage: Lighting
Usage: Boat
Water Treatment Chemicals
Rubber Auxiliary Agents
Plastic Auxiliary Agents
Coating Auxiliary Agents
Textile Auxiliary Agents
Usage: Paper Chemicals
Usage: Surfactants
Leather Auxiliary Agents
Usage: Electronics Chemicals
Usage: Indoor
Particle Size: 2-4mm
Appearance: Pellet
Appearance: Granular
Iodine Value: >1100 mg/g
Specific Surface Area: 900-1200 m�/g
Carbon Fiber Tube
Pitch-Based Carbon Fiber
Phenolic-Aldehyde Based Carbon Fiber
Performance: General Type
Mechanical Property: General Type
State: Filament
Application Fields: Electronic
Application Fields: Food
Application Fields: Medical
Application Fields: New Energy
Application Fields: Petroleum
Application Fields: Pharmaceutical
Certification: ISO
Gas Type: Argon
Gas Type: Carbon Dioxide
Gas Type: Helium
Gas Type: Hydrogen
Gas Type: Methane
Gas Type: Nitrogen
Gas Type: Oxygen

Sourcing guidance for Carbon For Car

What are the key technical specifications to consider when sourcing carbon fiber parts for cars?

When evaluating carbon fiber components, you must distinguish between Real Carbon Fiber (Pre-preg or Dry Carbon) and Carbon Overlays (Wet Carbon). For high-performance applications, prioritize 3K Twill Weave patterns for a balance of strength and aesthetics. Ensure the resin used is UV-resistant epoxy to prevent yellowing or cracking over time. For structural parts, verify the tensile strength and flexural modulus to ensure they meet automotive safety standards.

How can I verify the quality and fitment of carbon fiber body kits or interior trims?

Fitment is the most critical factor in B2B sourcing. You should request 3D Scanning (CAD/CAM) data from the supplier to ensure the molds are precise. For mass production, Steel Molds are superior to FRP molds as they ensure consistent dimensions across thousands of units. Always ask for a pre-shipment fitment test video on the specific vehicle model to avoid high return rates due to gaps or misalignment.

What compliance and safety standards are required for international automotive carbon parts?

Depending on the target market, products may need to meet specific regulations. In the EU, look for TÜV certification for aerodynamic parts like spoilers or hoods to ensure pedestrian safety. For interior components, ensure materials meet FMVSS 302 (US) or ISO 3795 standards for flammability resistance. If sourcing for performance upgrades, check if the supplier follows IATF 16949 quality management systems, which is the gold standard for automotive manufacturing.

What are the differences between 'Dry Carbon' and 'Wet Carbon' in terms of procurement value?

Dry Carbon (Autoclave process) is lighter, stronger, and more expensive, making it ideal for high-end racing and luxury tuning markets. Wet Carbon (Vacuum bagged or hand-laid) is more cost-effective and suitable for mass-market aesthetic upgrades. As a buyer, you should choose based on your customers' budget: Dry carbon offers a premium price point but lower volume, while wet carbon allows for higher turnover and competitive retail pricing.

Cross-Border Sourcing & Risk Management for Automotive Carbon Fiber

How can I mitigate the risk of damage during international shipping?

Carbon fiber parts, especially large items like hoods or splitters, are extremely fragile. You must mandate Five-Layer Corrugated Boxes with Custom Foam Inserts or Wooden Crating for LCL (Less than Container Load) shipments. On Made-in-China.com, you can utilize Secured Trading Services to ensure that the supplier adheres to strict packaging protocols before the final payment is released.

What strategies should be used when negotiating with carbon fiber manufacturers?

Focus on Mold Ownership and Exclusivity. If you are developing a custom design, negotiate a Rebate Program where the mold fee is refunded after reaching a certain order volume (e.g., 500 units). Additionally, request a 2-3% defect allowance or spare parts for small items like mirror caps to cover potential minor transit scratches without needing to open formal disputes.

How do I handle Intellectual Property (IP) and Trademark risks in the automotive aftermarket?

Avoid sourcing products that feature unauthorized OEM logos (e.g., BMW M-power or Mercedes AMG badges) to prevent customs seizures. Ensure your supplier has the Right to Export these designs. When sourcing via Made-in-China.com, prioritize Audited Suppliers who have undergone third-party verification of their manufacturing capabilities and legal standing to minimize legal exposure.

What is the best shipping method for large carbon fiber body components to minimize costs?

For large items like bumpers or roofs, Sea Freight (LCL or FCL) is the only economically feasible option due to high Volumetric Weight charges in air express. To optimize costs, use Nested Packaging (placing smaller parts inside larger ones) to reduce the total CBM (Cubic Meters). Ensure the HS Code 8708.29 (Parts and accessories of bodies) is used correctly to align with international trade tariffs.

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