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Place of Origin | China |
Brand Name | FQ |
Certification | IATF16949 |
Model Number | Aerogels 01 |
Battery Thermal Management System Aerogel Insulation Ceramic Fiber Aerogel Felt flame retardancy
Here are additional differentiating factors that set our aerogel insulation mat apart from traditional materials:
1. Extreme Temperature Resistance: Our aerogel insulation mat demonstrates exceptional performance in high-temperature environments. It can withstand extreme heat, making it suitable for applications where intense thermal conditions are present, such as in engine compartments or exhaust systems.
2. Flexibility and Adaptability: Unlike rigid insulation materials, our aerogel mat offers flexibility and adaptability, allowing it to conform to complex shapes and contours. This feature enables seamless integration into various vehicle components, ensuring maximum coverage and insulation effectiveness.
3. Hydrophobic Properties: Our aerogel insulation mat possesses excellent hydrophobic characteristics, repelling water and moisture. This property prevents the absorption of liquids, mitigating the risk of corrosion, mold growth, and insulation degradation. It ensures long-lasting performance and durability in humid or wet environments.
4. Fire Resistance: Safety is paramount, and our aerogel insulation mat meets the highest fire safety standards. It has outstanding flame retardant properties, achieving Class A fire rating. This makes it highly suitable for applications where fire protection is crucial, providing an extra layer of safety and reducing the spread of flames in case of an incident.
5. Acoustic Insulation: In addition to its thermal insulation properties, our aerogel mat offers excellent sound insulation and noise reduction capabilities. It effectively dampens vibrations and reduces noise transmission, contributing to a quieter and more comfortable vehicle interior.
6. Energy Efficiency: Our aerogel insulation mat contributes to overall energy efficiency by reducing heat loss or gain, helping to maintain stable temperatures inside the vehicle. This results in reduced reliance on heating or cooling systems, leading to energy savings and improved fuel efficiency.
7. Environmental Sustainability: We prioritize environmental responsibility in our product development. Our aerogel insulation mat is manufactured using eco-friendly processes and materials, minimizing its carbon footprint. It is recyclable and contributes to energy savings, making it a sustainable choice for insulation needs.
By selecting our aerogel insulation mat, you not only benefit from its superior thermal insulation, lightweight design, corrosion resistance, safety, and ease of installation but also gain advantages in extreme temperature resistance, flexibility, hydrophobicity, fire resistance, acoustic insulation, energy efficiency, and environmental sustainability. Make the smart choice for advanced insulation technology and elevate the performance, efficiency, and comfort of your electric vehicle.
Our aerogel insulation pad is the ultimate solution for keeping your electric vehicle's battery at the ideal temperature. It is made from a nano-insulation material that has very low thermal conductivity, which means it prevents heat loss and maintains optimal performance and lifespan for your EV's battery.
Our insulation pad is lightweight and easy to install. It can fit any shape and size of battery cells, as well as the module to the cooling system. It is also very durable, resisting high temperatures and ensuring long-term reliability.
Boost your electric vehicle with our aerogel insulation pad and enjoy the advantages of improved efficiency and longer lifespan. Get the best thermal insulation for your EV battery with our lightweight and energy-efficient solution.
SN | Performance | performance requirements | |||||||||||||
1 | Quality deviation rate | Should not be greater than 15%. | |||||||||||||
2 | Thermal insulation performance | The shrinkage rate of the length and width of the sample before and after the test should not be greater than 3%, and the test process should be within 5 minutes The temperature of the cold side of the sample should not exceed 180°C. |
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3 | vertical burn | It should meet the V0 requirements specified in GB/T 2408. | |||||||||||||
4 | Compression ratio | It should not be less than 35% under 2Mpa pressure. | |||||||||||||
5 | tensile strength | The length and width direction should not be less than 500Kpa. | |||||||||||||
6 | Insulation properties | Surface thermal resistivity should be greater than 500MΩ; leakage rate should be less than 1mA. | |||||||||||||
7 | Prohibited and restricted substances | Should comply with Directive 2011/65/EU. | |||||||||||||
8 | Aging resistance | After aging, the tensile strength attenuation rate of the airgel heat insulation sheet should not exceed 30%; The dimensional change rate should be less than 1%; the heat insulation performance should meet the requirements in the table. |
The main performance parameters are shown in Table
Product number | Pysheild BP-PAN | ||||||||||||||
thickness | 1~10mm | ||||||||||||||
wide | 1400±60mm(Customized) | ||||||||||||||
color | Black | ||||||||||||||
Maximum operating temperature | 800℃(anaerobic) | ||||||||||||||
density | 200±20kg/m3 | ||||||||||||||
Thermal Conductivity | ≤0.025W/m*K@25℃ | GB/T 10295-2008 | |||||||||||||
≤0.030W/m*K@100℃ | GB/T 10294-2008 | ||||||||||||||
≤0.036W/m*K@300℃ | |||||||||||||||
≤0.072W/m*K@500℃ | |||||||||||||||
Combustion level | A Grade | GB/T 8624-2012 | |||||||||||||
V0 | UL94-2013 | ||||||||||||||
Hydrophobicity | >98% | GB/T10299-2011 | |||||||||||||
biosecurity | Comply with biosafety requirements | RoHs/REACH/ELV | |||||||||||||
Burn-through resistance | >0.3MPa | ASTM C273 | |||||||||||||
Insulation effect | 1mm:Min≥385℃;2mm:Min≥440℃ 3mm:Min≥495℃;4mm:Min≥520℃ |
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Application field | New energy passenger car batteries and modules are used for heat insulation, buffering, flame retardant, thermal runaway protection, etc. |
Typical Applications
The functions of heat insulation, buffering, flame retardancy, thermal runaway protection and other functions of new energy passenger vehicle cells and modules
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