Liquid cooling product including liquid cooling plate and liquid cooling tube, which is widely used for battery cooling for new energy vehicles and energy storage system,it can be made by stamping and brazing process , roll bonded process or aluminum extrusion process etc as per customized requirements.
◆Excellent surface flatness
◆Large thermal transfer area
◆Flexibleflow channel design
◆Easyprocessing and shaping
◆Goodthermaldissipation effect
◆Low leakage risk and high safety
◆Good pressure resist and strength
◆High production efficiency and yield
◆High material utilization
◆Battery side heat dissipation
◆Large thermal dissipation area
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Improve the battery life and performance
◆Large thermal dissipation area
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Low energy for single cylindrical battery
◆Improve the battery life and performance
◆Less pollution and environmental protection
◆Large thermal dissipation area
◆Battery side thermal dissipation
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Low energy for single cylindrical battery
◆Improve the battery life and performance
◆Large thermal dissipation area
◆Battery side thermal dissipation
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery packs
◆Low energy for single cylindrical battery
◆Improve the battery life and performance
◆Good surface flatness
◆Large thermal transfer area
◆Flexible flow channel design
◆Thin thickness to save space
◆Perfect thermal dissipation effect
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Good pressure resistance and strength
◆High material utilization
◆Battery side heat dissipation
◆Large thermal dissipation area
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Improve the battery life and performance
◆Large thermal dissipation area
◆Battery side thermal dissipation
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Low energy for single cylindrical battery
◆Improve the battery life and performance
◆High material utilization
◆Large thermal dissipation area
◆Battery side thermal dissipation
◆High thermal dissipation efficiency
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Reduce the weight of the battery pack
◆Improve the battery life and performance
◆Large thermal transfer area
◆Flexible flow channel design
◆Rapid thermal cooling speed
◆Excellent thermalcooling effect
◆Low leakage risk and high security
◆Stable and high production efficiency
◆Good pressure resistance and strength
◆Improve battery function andperformance
◆Good surface smoothness
◆Large thermal transfer area
◆Optional flow channel design
◆Easy processing and shaping
◆Excellent thermal cooling effect
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Good pressure resistance and strength
◆Good surface flatness
◆Large thermal transfer area
◆Flexible flow channel design
◆Thin thickness to save space
◆Perfect thermal dissipation effect
◆Low leakage risk and high reliability
◆Stable and high production efficiency
◆Good pressure resistance and strength