• Articulated cage—produced on an EMAG vertical turning center VTC 100-4
    Articulated cage
  • PECM for the machining of blisks
    Blisk
  • Brake disc
  • Cam
  • Composite camshaft for a small engine
    Composite camshaft (joining)
  • Automobile crankshaft machined on the PM 2 series.
    Crankshaft (automobile)
  • Crankshaft (for small engines)
  • CV joints make high demands on the machining technology. Core components: Kingpins, articulated cage, joint ball
    CV Joints
  • Dies
  • Differential pinion—precision machining on VL machines
    Differential pinion
  • Differential housing
  • Distributor flange
  • Feed screw
  • Flange manufactured on VL 2 lathes
    Flange
  • Gears are machined on EMAG VL series machines
    Gear
  • Gear shaft
  • Composite gear shaft manufactured with high precision by the use of EMAG heat shrink assembly technology.
    Gear shaft (joining)
  • Gear shaft (laser welding)
  • Gear with synchronising wheel
  • Gear of an automobile gearbox manufactured on a VLC 200 H
    Hobbing gears
  • Injector body
  • Machines by the EMAG Group for Kingpin production
    Kingpins
  • Master brake cylinder
  • To machine pistons with precision poses a particular challenge for all manufacturing solutions
    Piston
  • Pump ring production on the high-precision SK 204 grinder
    Pump ring
  • Railway wheel manufactured with precision on VLC 1200 turning centers
    Railway wheel
  • Roll rings are precision components
    Roll ring
  • Screw
  • Sprocket
  • Sprocket (Manufacturing System)
  • Steering pinions can be machined with great precision on the EMAG VT machine
    Steering pinions
  • Triple-sector clutch
  • Surface layer hardening an armature shaft on an eldec MIND 750
    Armature shaft
  • Input shaft
  • Balance shaft
  • Induction hardening through precision control
    Hydraulic Valve
  • Camshaft
  • Hardening shifter shafts with induction hardening
    Shifter Shaft
  • Surface layer hardening with the eldec hardening machine
    Wheel Hub
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Wheel Hub

Wheel Hub

The MIND-M 250 hardening machine is the ideal choice for the surface layer hardening wheel hubs. Not only does the machine have a very compact design (all its components, such as the generator, machine controller, cooling system and machining area are on a single machine body), its surface layer hardening precision is also unbeatable.

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Surface layer hardening of wheel hubs on a MIND-M 250 hardening machine

Progressive surface layer hardening makes for a low cost, fast hardening process. That means that the power requirement is very low due to the progressive hardening method used for surface layer hardening. The formula is quite simple – the less power required for hardening, the lower the energy requirement of the generator and therefore the lower the downstream cooling requirement. The MIND-M 250 hardening machine also delivers maximum process reliability for surface layer hardening using the progressive hardening method since its high quality equipment ensures perfect process management. That means that a perfect hardening result is guaranteed every time from the surface layer hardening process. The ideal tailoring of the machine to the customer's requirements is a standard eldec service.

The video shows the process in detail. 

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