
Liquid Cooling Plate Design: Structures and Trade-offs
Liquid cooling plate design for battery packs: how structure, material, and flow-path choices trade pressure drop against temperature uniformity.

Comprehensive Comparison of Liquid Cooling Plates vs. Traditional Cooling Technologie
Liquid cold plates and traditional air cooling solve the same job of holding cells inside a safe temperature window, but they split apart the…

The Role of Innovative Liquid Cooling Technology in Enhancing EV Range
Liquid cooling extends usable EV range mainly by holding cells inside a narrow temperature band and keeping cell-to-cell differences small. It does not add…

Integration And Optimisation Of Intelligent Cooling Systems
An intelligent cooling system for an EV or ESS battery pack combines three things: a liquid cooling path, the thermal interface between the cells…

Advances in Silicone-Free Thermal Interface Materials
Silicone-free thermal interface materials earn their place in a battery pack wherever silicone bleed or outgassing would put the cell-to-coolant heat path at risk.…

Thermal Interface Materials Battery
Thermal interface materials (TIM) sit in the heat path between battery cells and the cold plate, closing the microscopic air gaps that would otherwise…
