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ECM B 9 WT BATTERY HPCM
The ECM B 9 WT Battery High Pressure Casting Machine is developed for high-pressure casting of sanitary ceramic water tanks. Its nine-station battery arrangement integrates robotic demoulding with automatic setter transfer, moving greenware to a defined operator handover point and returning empty setters for reuse to create an organised, repeatable post-casting workflow.
ECM B 9 WT BATTERY HPCM
At a Glance
A nine-station sanitary ware water tank high-pressure casting machine combining battery production with robotic demoulding and automatic closed-loop setter handling.
WHY THIS SOLUTION?
Keep Every Casting Moving
Automatic transfer begins directly after robotic demoulding, keeping greenware moving toward the operator handover point without unnecessary intermediate handling.
WHY THIS SOLUTION?
WHY THIS SOLUTION?
WHY THIS SOLUTION?
WHY THIS SOLUTION?
//TECHNICAL DATA
Products per year
Products per year
Nine-Station Water Tank Battery Configuration
The ECM B 9 WT is configured as a battery-type high-pressure casting solution for sanitary ceramic water tanks, bringing multiple mould positions into one coordinated production system.
Robotic Demoulding Interface
A handling robot places cast products together with their demoulding setters at the dedicated exit station, establishing a direct interface between casting and downstream transfer.
Automatic Closed-Loop Setter Handling
The control system routes loaded setters automatically toward the final station and returns empty setters to the robot pick-up positions for the next demoulding operation.
Timing-Belt Transfer Modules
Motor-driven PVC timing belts on aluminium conveyor frames provide controlled transport of both products and setters throughout the integrated handling line.
Pneumatic 90° Cross-Transfer System
Pneumatic up-down transfer modules redirect setters by 90° where required, while dedicated fixed-height interfaces provide stable robot drop-off and pick-up positions.
PLC-Controlled Cell Automation
PLC-based control with industrial HMI and Ethernet communication coordinates the transfer system, supports manual and automatic operation, and enables remote service access. Guarded critical areas separate moving equipment from operator zones.
