China • Lithium Battery Material Manufacturing
Maintain stable slurry temperature across twelve parallel sand mills, in a hazardous-area production environment, during continuous 24/7 wet grinding.
The full plant layout — thermal generation, hydraulic buffering, parallel distribution, and return — with live flow direction.
Twelve sand mills grinding lithium battery slurry simultaneously convert mechanical energy into heat — in a hazardous area where cooling infrastructure has to meet explosion-proof requirements without ever interrupting 24-hour production.
≈400 kW process cooling demand
Generate stable 7°C chilled water for a centralized 12-mill grinding loop, explosion-proof electrical configuration
Semi-hermetic screw compressor, hazardous-area compliant
Varying production load across 12 mills
Provide hydraulic buffering to stabilize supply temperature
Stable 7°C supply held through load swings
Continuous circulation demand, 12 parallel lines
Maintain constant water circulation through the complete network
Even distribution, no dead legs
12 parallel sand mill circuits
Balance supply flow and consolidate return water across every mill
5 K controlled temperature differential
Temperature, flow & pressure signals
Automatically regulate supply temperature, monitor alarms and protect equipment
Continuous automated control, explosion-proof compliant
PLC · HMI · Sensors
Temperature Regulation · Flow & Pressure Monitoring
Pumps · Headers · Insulated Tank
Explosion-Proof Chiller · Air-Cooled Condenser
Design parameters, not live telemetry — figures reflect engineered targets for this system.
Twelve independent sand mills need consistent thermal performance without duplicated equipment.
One centralized hydraulic system supplies every production line.
Simplifies maintenance and reduces equipment footprint.
Continuous 24/7 grinding demands stable water quality without excessive consumption.
Fully closed-loop chilled water circuit.
Minimizes water consumption while maintaining stable operating conditions.
Production load varies across the twelve mills throughout the day.
Balanced manifold distribution header feeding all lines in parallel.
Every sand mill receives equal chilled water flow regardless of load.
Battery slurry production may involve flammable solvents or combustible dust.
Explosion-proof electrical design across the entire cooling system.
Compliant, safe operation in a hazardous production environment.
Production lines may increase as battery material output scales.
Manifold architecture designed for future integration.
Additional sand mills connect without re-engineering the plant.
Manual monitoring can't reliably track temperature, flow and pressure across 12 mills.
Centralized PLC + HMI with continuous monitoring.
Real-time alarm management and automatic equipment protection.
Ratings below are a qualitative engineering assessment, not a measured benchmark — shown as a segmented meter rather than star icons to keep the framing technical.
Every manufacturing process has a unique thermal profile. Before recommending any equipment, our engineers analyze process heat load, hazard classification, hydraulic requirements, ambient conditions, and future expansion plans to develop the most suitable cooling architecture.