MAG XG 692
Double-spindle machining center for turning, milling or grinding operations
The MAG XG 692 vertical multi-technology machining center enables complete milling, turning or grinding of parts for constant-velocity cardan shafts. The XG 692 is especially suitable for machining bearing tracks on joint housings and hubs, with high output meeting the highest quality standards. Its proven machine concept is designed for large quantities – with top machining quality.
Equal to any challenge – not only in these industries
Flexible complete processing of drive shaft parts in work machines
Automotive OEMs and Suppliers
Series production to exacting specifications: Soft and hard machining of all CV joint parts
Truck manufacturers and suppliers
Yield rates and quality based on passenger vehicle and truck applications
HOW TO BENEFFIT FROM MAG XG 692 MULTI-TECHNOLOGY MACHINING CENTERS
Highest yield rates
The double-spindle concept on the MAG XG 692 multi-technology machining center with patented triangular slide doubles its production capacity.
MAG XG 692 multi-technology machining centers enable flexible configurations due to their modular periphery. The machine can be configured both for dry machining operations like hard turning and milling and for wet machining operations like grinding. Workpiece loading is configurable in several versions.
The machining center's very rigid machine assembly ensures a high level of physical and thermal stability. Linear motors offer high long-term precision without any wear on the drive parts.
Ideal energy efficiency
Against the background of increasing demands on the environment and energy management, the MAG XG 692 multi-technology machining center has been designed to be hydraulics-free.
TOP PERFORMANCE FOR MAXIMUM PRECISION
MAG XG 692 multi-technology machining centers enable flexible automation via loading and unloading from the front or rear. Separate loading and unloading from the front and rear can also be easily realized.
MAG XG 692 multi-technology machines have linear motors and enable double-spindle machining of joint housings by soft milling/turning, hard milling/turning or grinding. And with the smallest footprint for a duo machine on the market.
MAG XG 692 multi-technology machines enable the double-spindle machining of cage and ball tracks on joint hubs by soft milling/turning, hard milling/turning or grinding. With the shortest cycle times thanks to linear motors.
MAG XG 692 multi-technology machines can be used for double-spindle machining of the cage diameter and window on ball cages - in the case of cage windows using fly milling tools for hard milling. And with the smallest footprint for a duo machine on the market.
EXPERIENCE TOP PERFORMANCES
MAG XG 692 multi-technology machining centers excel in every production environment in terms of performance, efficiency and product quality. Obtain gripping insights into our machines' work environment here.
IMPORTANT FACTS OF MAG XG 692 MULTI-TECHNOLOGY MACHINING CENTERS
DISCOVER THE ENORMOUS OPPORTUNITIES OF THE FFG WORLD
MAG XK cold forming machines are perfect for forming hollow shafts, keeping grooves clear without subsequent machining, adding chamfers to tooth faces for ideal pre-centering of straight-cut splines and as a mounting aid for angled tooth flanks.
Meccanodora cage grinding machines
Meccanodora cage grinding machines enable virtually all machining operations for producing ball cages in CV joints or ball bearings. External grinding, internal grinding and window grinding can be realized with high efficiency - even using a double-spindle.
Meccanodora tripod grinding machines
Meccanodora tripod grinding machines are specifically developed for grinding the pin diameter on tripod stars in CV joints. This enables targeted, high-precision grinding of hardened diameters to be circular or non-circular.
The Meccanodora 1231/CNC is an internal grinding machine with a conventional 508 mm diameter grinding wheel operating at 63 m/s. This grinding machine is characterized by its ergonomic machine layout and has a built-in loader.
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