Intermediary L brackets conduct heat from abnormal modules to adjacent units, preventing concentration and ignition.
Segmented module carrier with integrated coolant channels secures battery cells.
A hearing aid battery case uses a pre-chamber filled with sealing material to simplify assembly and improve moisture protection.
A welding nut extends upward to fit into bolt fastening grooves on battery modules.
A rechargeable battery module employs a restricting member to constrain unit cells, preventing breakdowns and short circuits under vibration.
Sub vent holes in battery module cases guide high-pressure flames externally to prevent chain reaction explosions between adjacent cells.
Slits in a fixing member accept sealing parts to join laminated batteries, eliminating rigid cell cases that increase pack thickness.
Conducting intermediate walls in the battery module housing provide series electrical connectivity and thermal paths while maintaining gas-tight compartments.
Seal member with venting holes directs gas through pack tray passages, preventing flame diffusion to adjacent modules.
Adhesive injection holes in a peripheral frame enable thermal conduction paths that merge structural support with heat management for pouch-shaped batteries.
Actuators position a skid plate to protect the battery while retracting it to preserve aerodynamic efficiency and all-electric range.
Open channels in the battery tray enable direct coolant contact with cells, eliminating thermal resistance from cold plates and interface materials.
Hydrophobic vent membranes allow gas exchange while blocking water ingress, resolving the trade-off between heat dissipation and moisture protection.