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TRAP GLAZING MACHINE

The Trap Glazing Machine is designed for controlled glazing of WC bowl, siphon and trap areas that are difficult to cover consistently by conventional spraying. From a mobile semi-automatic station to an automated line-integrated configuration, it manages glaze filling, draining and product movement with adjustable process parameters for repeatable, model-adaptable sanitary ware production.

OUR APPROACH

At a Glance

Controlled WC trap and siphon glazing with adjustable filling and tilting, engineered for consistent internal coverage and flexible production-line integration.

Why?

Glaze Where It Matters Most

Two Silos, Two Plaster Options

Controlled filling and product movement bring glaze into the WC trap, siphon and other internal areas that are difficult to cover consistently with external spraying alone.

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

Why?

Repeat the Process, Not the Operator

Two Silos, Two Plaster Options

Adjustable filling and tilting times turn a judgement-dependent manual operation into a controlled cycle, supporting more consistent glazing from piece to piece.

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

Why?

One Process, More WC Geometries

Two Silos, Two Plaster Options

Compatibility with S- and U-trap designs, together with model-specific control in automated configurations, gives manufacturers greater freedom across changing WC portfolios.

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

Why?

Take the Strain Out of Trap Glazing

Two Silos, Two Plaster Options

Machine-controlled clamping and rotation reduce the need for operators to manually hold and turn WC pieces during the glazing operation.

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

Why?

Close the Automation Gap

Two Silos, Two Plaster Options

For highly automated plants, the automatic configuration is developed to integrate trap glazing with robotic glazing and handling rather than leaving internal glazing as a separate manual process.

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

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Balanced Glaze Feed & Drain Circuit

A stainless-steel glaze tank, diaphragm pumping system and flow balancer manage glaze supply and drainage through a controlled circuit. In the automatic development, glaze is introduced from below for controlled internal filling.

Independent Pneumatic Feed-Pipe Motion

The glaze feeding pipe is pneumatically actuated independently from the WC tilting movement, allowing its insertion and positioning to be controlled separately from product rotation.

Pneumatic Rotation & Product Clamping

The WC is secured by a pneumatic clamping mechanism while pneumatic rotation performs the required tilting movement during glazing, creating a stable mechanical sequence for internal glaze distribution.

Parameterized Cycle Control

Glaze feeding and tilting times are adjustable in the semi-automatic machine. The automatic architecture extends this approach with programmable filling, dwell, tilting angle, tilting duration and product-specific process recipes.

Model-Adaptive Interfaces

In the automatic configuration developed through the R&D project, glaze inlet, outlet adapter and product-support interfaces are designed to reposition according to the WC model, supported by sensor-supervised pneumatic operation and non-marking contact elements.

Standalone or Line-Integrated Architecture

The single-station version is mobile and does not require permanent floor fixing, while the automatic concept is designed as a compact, modular system suitable for integration into existing or robotic sanitary ware glazing lines.

//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.