HI-370 Thermal Insulation Foam

HI-370
HI Series Thermal Insulation Foam is a high-performance material specifically engineered to address thermal runaway issues in new energy vehicles (NEVs). It represents an advanced solution that surpasses traditional aerogel composites, delivering superior thermal insulation and compressibility while ensuring reliability in critical battery safety applications.
Quantity:
Free Sample
Product Description
 
HI Series Thermal Insulation Foam are renowned for their distinctive characteristics, which include: 
◆ VReplaces Traditional Aerogel Composites: Offers enhanced performance and cost-effectiveness compared to conventional aerogel composite materials, with improved adaptability to battery module structures.
Exceptional Thermal Insulation & Compressibility: Maintains effective thermal barrier properties at temperatures up to 650℃, while its compressible nature allows seamless integration with battery modules (accommodating assembly tolerances and structural variations).
Validated by Leading Industry Clients: Recognized and adopted by top-tier customers (including major railway and automotive manufacturers like CRRC), with ongoing mass production and delivery for NEV battery systems.
 

【Applications】

As depicted in the Battery Module Application Schematic, HI Series foam is installed between battery modules using double-sided tape. In a compressed state, it acts as a robust thermal barrier to prevent thermal runaway propagation—shielding adjacent modules from excessive heat during a thermal event. This design ensures battery packs maintain safety and structural integrity under extreme conditions.
 
Properties
 
Characteristic Parameter HI-370
ModelHI-370Test Standard
Density (kg/m3)370ASTM D1056
Compression Rebound Force /kPa (25%)82ASTM D1056
Thermal Conductivity (W·m⁻¹·K⁻¹)0.07ASTM E1461
Thermal Insulation Performance - Temperature Difference(℃)260Internal Test: 500℃, 0.09MPa, 20min
Flame Retardancy RatingV-0UL94
 
 
* Easy Installation: Integrated with double-sided tape for quick, secure bonding to battery modules, reducing assembly complexity and time.
* Durability Under Pressure: Maintains thermal and mechanical properties after repeated compression cycles, ensuring longevity in dynamic battery pack environments.
* Environmental Stability: Resists moisture, chemicals, and thermal aging, performing reliably across NEV operating conditions(from cold climates to high-temperature environments).