Breton Evonix
Multiple cutting machine of the latest generation with rotary bridge and ultralight alloy spindles.
Breton Evonix can make right-angle and oblique inclined cuts, plus classic vertical and horizontal cuts. The perfect union of original technology for the sector, high performance, and ease of use. Breton Evonix is the ideal solution for wall coverings, floor coverings, and kitchen worktops. Evonix's versatility is due to its patented technology and generous working capabilities.
Evonix is the multiple cutting machine of the latest generation, with rotary bridge and ultralight alloy spindles. A revolutionary solution down to the last detail. Unlike the other solutions on the market, Evonix stands out for its evolved design, compact dimensions (6,500x6,500x3,220cm), and the use of original technologies.
The rotary system makes it possible to locate the spindles at any point of the bridge: this allows the machine to make right-angle, oblique, vertical, and horizontal cuts.
Thanks to these features, Evonix can square a slab in just two steps.
Also, the use of linear motors and torque motors guarantees rapid spindle travel and a series of valuable benefits in terms of efficiency, sustainability, and safety.
Combining stiffness and low weight, the standard ultralight spindles allow high performance and fast speeds in positioning and cutting.
A patented solution (patent pending), integrable with manual or robotic unloading systems.
The Matik version is equipped with special vacuum cups on the spindle front. This allows slabs and large workpieces to be handled with a reduced degree of flexure.
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Specifications
Specifications
Min. saw blade diameter: 400 mm
Max. saw blade diameter: 500 mm
Min. cutting thickness: 10 mm
Max. cutting thickness: 80 mm
Max. dimensions of the cut material (length): 3800 mm
Max. dimensions of the cut material (width): 2200 mm
"X" axis travel: 3800 mm
"Y" axis travel: 4000 mm
"Z" axis travel: 165 mm
"X" axis max. displacement speed: 80000 mm/min
"Y" axis max. displacement speed: 40000 mm/min
"Z" axis max. displacement speed: 15000 mm/min
Spindle motor power (in S6 duty): 21 kW
Materials
Materials
Compound stone Marble Granite Ceramic Quartzite
Step into the world of precision with our Breton CNC Saws & Work Centres
A hallmark of quality in the stone industry. Our product range is designed to meet the needs of both intricate design work and high-volume production, ensuring that no matter the scope of your project, you have the right machinery at your disposal. Breton's reputation for durability and advanced technology is unmatched, offering you the very best build quality in today's market. Explore our selection and find out how these state-of-the-art machines can become the cornerstone of your operation, boosting efficiency and quality in every cut you make.
Take A Closer Look
The rotary bridge imparts design appeal to Evonix and brings several major benefits.
The bridge rotation system allows the spindles to make accurate cuts, without requiring double spindle positioning manoeuvres.
This guarantees an appreciable reduction of cycle times in machining processes.
The spindles are positioned by linear motors. A solution that provides significant benefits:
• High speed positioning and movement of the spindles
• Elimination of drive train components and associated lubrication activities
• Compact dimensions that ensure reduced spindle overhang and tipping movements on the guides
The bridge support geometry in the central areas rather than at the ends allows total elimination of errors connected to flexure deriving from variable positioning of the spindles on the bridge. Rather than resting on the end points, the bridge is supported in the intermediate areas. This results in a logarithmic reduction of flexure caused by the different positions assumed by the spindles on the bridge.
The venturi vacuum generation system assures reliability and durability of the gripping systems, even in the presence of dirty water and water with high debris contents. This solution was developed with the specific aim of avoiding the malfunctions and wear typically associated with conventional bridge systems.

