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Product Description

Overview of produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

Conductive carbon black is a specialized form of carbon black, engineered specifically to enhance the electrical conductivity of materials it is incorporated into. Unlike regular carbon black, which is primarily used as a reinforcing filler and pigment, conductive carbon black features a unique particle structure and surface chemistry that facilitates electron flow, making it indispensable in applications requiring static dissipation, electrostatic control, or improved performance in electronic and electrical devices.

Features of produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

  1. Enhanced Conductivity: Provides a network for electron movement within a material, turning an insulator into a conductor or semi-conductor.

  2. Low Loading Levels: Effective at low concentrations, minimizing impact on the host material's properties, such as viscosity, weight, and color.

  3. Particle Size and Structure: Specifically engineered with smaller particle sizes and higher structure, optimizing conductivity pathways.

  4. Stability: Resistant to chemical and environmental degradation, ensuring consistent performance over time and in varying conditions.

  5. Versatility: Compatible with a wide range of matrices, including polymers, resins, adhesives, and coatings.

 produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

( produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K)

Parameter of produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

There are several types of carbon fiber thermal pads that meet the specified requirements, including: 1. High-temperature pads: These are made from glass and have a heat resistance of up to 200°C. They are commonly used in power electronics applications, where they provide a high level of thermal conductivity and efficiency. 2. Acrylonitrile-Tungstenurelic (ACNF) pads: These are also made from glass and have a high heat resistance of up to 200°C. They are often used in cooling systems and other applications where high temperatures are required. 3. SiC thermal pads: These are made from silicon and have a high heat resistance of up to 200°C. They are commonly used in electronic devices and aerospace applications where high temperatures are required. 4. Ferroceti thermal pad: This is a high-temperature pad made from ferro and has a high heat resistance of up to 200°C. It is commonly used in power electronics and other applications where high temperatures are required. It's worth noting that the specific materials used in these pads can vary depending on the application, so it's important to choose the right type for your needs. Additionally, the temperature range you're considering using these pads will depend on the specific use case, so it's a good idea to consult with experts before making a decision.

 produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

( produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K)

Applications of produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

  1. Antistatic Materials: In plastics, textiles, and packaging to prevent sparks, protecting sensitive electronic components.

  2. Electromagnetic Interference (EMI) Shielding: In coatings and adhesives to shield electronic devices from external electromagnetic interference.

  3. Fuel Cells and Batteries: As a conductive additive in electrodes, improving ion flow and battery performance.

  4. Rubber and Plastic Compounds: In cable insulation, gaskets, and seals where conductivity is required for safety or functionality.

  5. Ink and Coatings: For conductive printing in RFID tags, smart packaging, and printed electronics.

Company Profile

Graphite-Corp is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality graphite powder and graphene products.

The company has a professional technical department and Quality Supervision Department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.

If you are looking for high-quality graphite powder and relative products, please feel free to contact us or click on the needed products to send an inquiry.

Payment Methods

L/C, T/T, Western Union, Paypal, Credit Card etc.

Shipment

It could be shipped by sea, by air, or by reveal ASAP as soon as repayment receipt.

FAQs of produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

Q: How does produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K differ from regular carbon black? A: produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K is designed with specific properties to enhance electrical conductivity, whereas regular carbon black is mainly used for reinforcement and pigmentation without a primary focus on conductivity.

Q: What factors influence the conductivity of a material when using produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K? A: Particle size, structure, concentration, and dispersion quality significantly impact conductivity. Smaller particles and better dispersion lead to more efficient electron paths and increased conductivity.

Q: Can produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K be used in any polymer? A: While it is versatile, compatibility tests are necessary to ensure it works effectively with each specific polymer type, as certain polymers may require customization for optimal performance.

Q: Is produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K safe to handle? A: Like other carbon blacks, it is generally safe when handled properly. However, appropriate dust control measures should be in place due to its fine particle size, which can become airborne and pose a respiratory risk.

Q: Does adding produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K change the mechanical properties of a material? A: At low loading levels, the impact on mechanical properties is usually minimal. However, at higher concentrations required for certain high-conductivity applications, changes in properties such as stiffness, elongation, and color may occur.

 produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K

( produces carbon fiber thermal pads with a high thermal conductivity of 45W/m-K)

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