ALTEA

Hochpräzise Zayer EMC CNC-Fräsmaschine in industrieller Fertigung.

Gantry Milling Machines for Versatile Applications

The ZAYER ALTEA is a modern gantry-style milling machine with a fixed table and fixed crossbeam—designed for the demanding machining of medium- to large-sized workpieces. With high dynamic performance, a stable cast-iron construction, and a flexible milling head system, the ALTEA offers the ideal combination of precision, performance, and versatility.

Technical Data

Hochpräzise Zayer EMC CNC-Bearbeitungszentrum für industrielle Fertigung.
CNCHeidenhain TNC 7 | Siemens Sinumerik ONE
Table length4,500 – 20,500 mm
Table width2,000 (2,500 / 3,000 opt.) mm
Distance between the posts2,750 (3,250 / 3,750 optional) mm
Longitudinal travel4,000 – 20,000 mm
Transverse travel3,350 (3,850 – 4,350 optional) mm
Vertical travel1,200 (1,500 optional) mm
Power30 (43 opt.) kW
Rotational speed6,000 (8,000 opt.) min⁻¹ or 18,000 min⁻¹ (with motorized spindle)
Tool magazine30 (40 / 60 optional) tool stations

Applied
s and Design

Scope of Work

Table lengths ranging from 4,500 mm to well over 20,500 mm and table widths up to 3,000 mm—for long, wide, and bulky workpieces of all kinds.

Axle Drives

Longitudinal axis with dual-pinion rack-and-pinion drive and two servo motors; transverse and vertical axes with ball screws—for powerful, precise, and repeatable movements.

Milling Heads

Available with either high-speed milling heads (33 kW at 18,000 min⁻¹) for precision machining or high-torque milling heads (43 kW at 6,000 min⁻¹) for tough materials and high material removal rates.

Stable

The gantry design, featuring a high-quality cast structure, ensures thermal and geometric stability—for consistent precision and high-quality surface finishes, even during long machining cycles.

Milling Head System

From angle milling heads to straight and high-frequency spindles to automatic head-changing systems—flexibly adaptable to both simple and complex machining tasks.

Use

Ideal for machine, mold, and tool manufacturing, as well as plant engineering—anywhere large components with complex geometries place the highest demands on precision and versatility.

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