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ECM ROTATING WC HIGH PRESSURE CASTING MACHINE / CELL
The ECM Rotating WC High Pressure Casting Cell is a modular sanitary ware casting system developed for complex wall-hung WC production. Independent casting modules, adjustable mould angles and synchronized product handling bring machine motion and ceramic process behaviour into one coordinated architecture—designed to improve mould utilisation, casting consistency and production flexibility while simplifying the equipment behind the process.
ECM ROTATING WC HIGH PRESSURE CASTING MACHINE / CELL
At a Glance
A modular high-pressure casting cell for wall-hung WCs, combining independent mould cycles with adjustable casting angles and synchronized product handling.
WHY THIS SOLUTION?
More Productivity from Every Mould
Independent casting cycles are developed to increase mould utilisation, targeting high production output without relying on a long battery of interconnected moulds.
WHY THIS SOLUTION?
WHY THIS SOLUTION?
WHY THIS SOLUTION?
WHY THIS SOLUTION?
//TECHNICAL DATA
Products per year
Products per year
Adjustable-Angle Rotating Mould Architecture
The mould carrier is engineered to position the mould at controlled casting angles, allowing slip flow direction, filling behaviour and joint-line formation to be influenced according to WC geometry.
Independent Modular Casting Stations
The current cell concept combines two independently operating casting modules with four mould positions in total. Each module manages its own cycle while remaining synchronized with the overall production cell.
Synchronized Multi-Axis Demoulding & Transfer
Mould rotation, mould separation, product take-out and transfer movements are coordinated through multi-axis motion sequences designed for collision-free, time-aligned operation within the cell.
Electric Drive with Pneumatic Support
Servo-driven motion systems and pneumatic mechanisms replace the predominantly hydraulic architecture of conventional reference systems, enabling controlled axis movement while reducing hydraulic-system complexity.
Simplified Process Circuit Architecture
Slip and auxiliary circuits are being engineered with substantially fewer control valves than the reference battery configuration, reducing component count, piping complexity and potential service points.
Sensor-Based Motion & Sequence Control
Position feedback and machine-status sensing support coordinated control of the independent modules, enabling repeatable movement sequences and synchronization between casting, mould opening and product handling operations.
