Custom EV Battery Liquid Cooling Plate Progressive Stamping CAB Vacuum Brazing Aluminum Cooling Tray With PU Foam Insulation
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Product Overview Engineered by Trumony Aluminum Limited, this Battery Pack Lower Enclosure adopts a multi-process aluminum manufacturing approach that prioritizes production efficiency and consistent quality. Instead of conventional steel welding or expensive full-machining, we utilize high-precision stamping for the main tray structure, followed by a vacuum brazing process to create a leak-proof, integrated liquid cooling plate. Self-piercing riveting (SPR) is employed to assemble multi-layer structural reinforcements without thermal distortion, while a polyurethane (PU) foaming process delivers superior vibration damping and condensation prevention. Finally, an electrostatic powder coating finish delivers excellent insulation and corrosion resistance. This enclosure solution meets the demands of North American commercial and utility-scale energy storage projects, offering an ideal balance of thermal performance, lightweight design, and mass production scalability. Cause – Why Your Battery Pack Needs a Superior Lower Enclosure
· Thermal runaway propagation: Without integrated cooling, heat
builds up between cells, accelerating degradation and creating
safety hazards. Solution – The Trumony Aluminum Integrated Lower Enclosure · Built-in Liquid Cooling Gallery: Serpentine flow channels are
CNC-machined into the thick aluminum baseplate, allowing direct
contact with the module thermal interface. This ensures cell
temperatures stay within a tight ±2°C band. Parameter Details
Application 1. Electric Vehicle Traction Battery Packs 2. Commercial & Utility-Scale Energy Storage (BESS) 3. IGBT & SiC Power Module Cooling 4. Automotive Ancillary Electronics How It Works Stamped aluminum liquid cooling plates operate on a closed-loop liquid circulation principle. Coolant enters through an inlet fitting, flows through the stamped channel network beneath the heat-generating components, absorbs waste heat, and exits through an outlet to an external heat exchanger. The stamping process forms the intricate channel geometry directly into the aluminum sheet — creating raised features like dimples or chevrons that disturb the fluid boundary layer and enhance convective heat transfer. The cover plate is then joined via continuous brazing, where the assembly passes through a furnace with precisely controlled temperature and inert atmosphere. The brazing filler metal (typically a clad layer on the sheet) melts and forms a metallurgical bond along every contact point, creating a single, leak-proof structure. Because every plate undergoes identical automated processing, thermal performance is exceptionally consistent from the first unit to the millionth. How To Choose Your Stamped Cooling Plate 1. Production Scale vs. Geometry: If your pack design is confirmed
and you need over 2,000 units per year, the stamped + brazed route
offers the best unit economics. If you still iterate frequently,
ask about our hybrid aluminum prototyping options. FAQ Q1: Is the brazed cooling plate reliable for a 15-year design life? Q2: Why do you use riveting instead of welding for the structure? **Q3: What is the benefit of PU foam compared to a simple air gap? **Q4: Does Trumony supply a fully bonded floor or just the aluminum
parts? **Q5: How do you support our North American UL certification
process? |
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| Product Tags: custom EV battery liquid cooling plate aluminum cooling tray with PU foam progressive stamping CAB vacuum brazing |
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Custom EV Battery Liquid Cooling Plate Progressive Stamping CAB Vacuum Brazing Aluminum Cooling Tray With PU Foam Insulation |
