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CNC MILLING MACHINE

The CNC Milling Machine is a fully automatic 3-axis machining center developed for sanitary ware mould and tooling production. Engineered for resin and plaster moulds as well as aluminium plates and composite panels, it combines Siemens CNC control, servo-driven motion and robust mechanical construction to deliver repeatable machining, flexible product programming and a process built around real mould-shop conditions.

OUR APPROACH

At a Glance

3-axis sanitary ware CNC milling machine for resin and plaster moulds, aluminium and composite tooling, with Siemens-controlled repeatable machining

Why?

More Mould Options, One Machine

Two Silos, Two Plaster Options

Machine plaster and resin moulds, aluminium plates and composite panels on a single CNC platform, giving mould shops greater flexibility across different tooling requirements.

With two separate silos, two different plaster types can be used efficiently, providing greater flexibility for various production requirements.

Why?

Repeat Jobs Without Reprogramming

Two Silos, Two Plaster Options

Product-specific CNC programs can be saved and reused, reducing repetitive programming work when the same mould or component returns to production.

With two separate silos, two different plaster types can be used efficiently, providing greater flexibility for various production requirements.

Why?

Engineered Around Mould-Shop Reality

Two Silos, Two Plaster Options

Developed from UNIMAK’s own sanitary ware mould-making experience, the machine addresses applications where plaster and resin machining creates demanding abrasive and adhesive residues.

With two separate silos, two different plaster types can be used efficiently, providing greater flexibility for various production requirements.

Why?

Consistency Built Into the Process

Two Silos, Two Plaster Options

Program-controlled X-Y-Z movements reproduce the defined machining sequence, supporting consistent processing across repeat moulds and components while reducing dependence on manual execution.

With two separate silos, two different plaster types can be used efficiently, providing greater flexibility for various production requirements.

Why?

Consistency Built Into the Process

Two Silos, Two Plaster Options

A large working table, substantial axis travel and a specified load capacity of 1,500 kg provide the working space required for sizeable sanitary ware moulds and tooling.

With two separate silos, two different plaster types can be used efficiently, providing greater flexibility for various production requirements.

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Servo-Driven 3-Axis Gantry Architecture

The steel-construction machine body and gantry combine servo-driven linear movement on the X and Y axes with precision ball-screw movement on the Z-axis. Linear guide systems across all three axes support controlled spindle positioning and mechanically stable machining.

Programmable CNC Control & Stored G-Code Programs

The CNC control architecture allows operators to create G-code machining programs for individual products and store them for subsequent production runs. Once selected, the X-Y-Z machining unit follows the programmed toolpath automatically.

1500 × 2000 × 1000 mm Axis Travel

The gantry machining center provides 1500 mm X-axis, 2000 mm Y-axis and 1000 mm Z-axis travel, creating a substantial machining envelope for sanitary ware mould and tooling applications.

1500 × 2000 × 1000 mm Axis Travel

A 2000 × 1500 mm T-slot working table provides adaptable workpiece fixing and supports loads up to 1,500 kg, allowing different mould, plate and fixture configurations to be securely positioned.

16 kW Water-Cooled Milling Spindle

The machining head integrates a 16 kW spindle with speeds up to 12,000 rpm and water cooling, providing the cutting capability required across the machine’s specified mould and tooling materials.

Ex-Proof Servo & Machine Safety Design

Ex-proof servo motors support operation in resin-related machining applications, while protective covers for motors and switches and a CE-oriented safety configuration contribute to controlled industrial operation.

//NAVIGATION

Let's Engineer & Build Your Next Factory Together.

© 2026 UNIMAK. ALL RIGHTS RESERVED.
//NAVIGATION

Let's Engineer & Build Your Next Factory Together.

© 2026 UNIMAK. ALL RIGHTS RESERVED.
//NAVIGATION

Let's Engineer & Build Your Next Factory Together.

© 2026 UNIMAK. ALL RIGHTS RESERVED.