










YOM:1992
Diameter of working spindle: 4 in
Travel X-axis: 60 in
Travel Y-axis: 50 in
Spindle speed: 7 - 1120 /min.
Cooling through spindle: NO
Spindle travel - W axis: 0 in












YOM:2008
Control system Heidenhain: TNC 530
Diameter of working spindle: 5.2 in
Travel X-axis: 320 in
Travel Y-axis: 120 in
Spindle speed: 10 - 3000 /min.
Spindle travel - W axis: 29.2 in






















Diameter of working spindle: 4 in
Travel X-axis: 64 in
Travel Y-axis: 44.8 in
Spindle speed: 7 - 1120 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in









YOM:1995
Diameter of working spindle: 4 in
Travel X-axis: 64 in
Travel Y-axis: 44.8 in
Spindle speed: 0 - 1120 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in
















YOM:2004
Diameter of working spindle: 4 in
Travel X-axis: 64 in
Travel Y-axis: 44.8 in
Spindle speed: 0 - 1120 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in

YOM:2018
Control system Fanuc: 0i-MF
Diameter of working spindle: 5.2 in
Travel X-axis: 146.28 in
Travel Y-axis: 121.92 in
Spindle speed: 10 - 3000 /min.
Cooling through spindle: YES














































YOM:1991
Diameter of working spindle: 4 in
Travel X-axis: 64 in
Travel Y-axis: 44.8 in
Spindle speed: 0 - 1200 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in







YOM:2012
Control system Heidenhain: TNC 530
Diameter of working spindle: 5.2 in
Travel X-axis: 200 in
Travel Y-axis: 120 in
Spindle speed: 0 - 3000 /min.
Cooling through spindle: YES


YOM:1982
Control system Mefi: CNC 859
Diameter of working spindle: 3.6 in
Travel X-axis: 50 in
Travel Y-axis: 36 in
Spindle speed: 10 - 1100 /min.
Cooling through spindle: NO





YOM:1963
Diameter of working spindle: 2.52 in
Travel X-axis: 42 in
Travel Y-axis: 24.4 in
Spindle speed: 8 - 1400 /min.
Cooling through spindle: NO
Spindle travel - W axis: 22.4 in




YOM:1991
Control system Tesla: NS 670
Diameter of working spindle: 4 in
Travel X-axis: 50 in
Travel Y-axis: 36 in
Spindle speed: 16 - 1250 /min.
Cooling through spindle: NO












YOM:2015
Control system Heidenhain: TNC 530
Diameter of working spindle: 5.2 in
Travel X-axis: 120 in
Travel Y-axis: 80 in
Spindle speed: 10 - 3000 /min.
Cooling through spindle: YES






YOM:1957
Diameter of working spindle: 4.4 in
Travel X-axis: 48 in
Travel Y-axis: 46 in
Spindle speed: 8 - 1250 /min.
Cooling through spindle: NO
Spindle travel - W axis: 34 in




YOM:1976
Diameter of working spindle: 4 in
Travel X-axis: 40 in
Travel Y-axis: 28 in
Spindle speed: 0 - 1200 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in



YOM:1971
Diameter of working spindle: 3.2 in
Travel X-axis: 50 in
Travel Y-axis: 36 in
Spindle speed: 18 - 1800 /min.
Cooling through spindle: NO
Spindle travel - W axis: 28.4 in



YOM:1990
Diameter of working spindle: 4.08 in
Travel X-axis: 64 in
Travel Y-axis: 50 in
Spindle speed: 8 - 1600 /min.
Cooling through spindle: NO
Spindle travel - W axis: 28.4 in


Diameter of working spindle: 4 in
Travel X-axis: 64 in
Travel Y-axis: 44.8 in
Spindle speed: 7 - 1120 /min.
Cooling through spindle: NO
Spindle travel - W axis: 36 in
YOM:1967
Diameter of working spindle: 4 in
Travel X-axis: 60 in
Travel Y-axis: 48 in
Spindle speed: 15 - 1550 /min.
Cooling through spindle: NO
Spindle travel - W axis: 24 in






YOM:2015
Control system Siemens: Sinumerik 840 D
Diameter of working spindle: 4.2 in
Travel X-axis: 72 in
Travel Y-axis: 64 in
Spindle speed: 0 - 3300 /min.
Cooling through spindle: YES


YOM:1999
Control system Heidenhain: TNC 426
Diameter of working spindle: 4.2 in
Travel X-axis: 72 in
Travel Y-axis: 50 in
Spindle speed: 0 - 3300 /min.
Cooling through spindle: NO






YOM:1967
Diameter of working spindle: 4.4 in
Travel X-axis: 96 in
Travel Y-axis: 70 in
Spindle speed: 10 - 300 /min.
Cooling through spindle: NO
Spindle travel - W axis: 32 in









YOM:1975
Diameter of working spindle: 3.6 in
Travel X-axis: 40 in
Travel Y-axis: 36 in
Spindle speed: 0 - 1400 /min.
Cooling through spindle: NO
Spindle travel - W axis: 28.4 in





YOM:2009
Control system Fanuc: Fanuc 32i
Diameter of working spindle: 7.2 in
Travel X-axis: 365.2 in
Travel Y-axis: 159.2 in
Z axis travel: 76 in/min
Axis W: 48 in



YOM:1987
Diameter of working spindle: 4 in
Travel X-axis: 45.2 in
Travel Y-axis: 50 in
Spindle speed: 16 - 1500 /min.
Cooling through spindle: NO
Spindle travel - W axis: 26 in

















Control system Heidenhain: TNC 620
Diameter of working spindle: 4 in
Travel X-axis: 50 in
Travel Y-axis: 41.2 in
Spindle speed: 16 - 2500 /min.
Cooling through spindle: NO
When selecting a used horizontal boring mill (such as the WFT or WFC series), the primary factors are the static and dynamic rigidity of the spindle headstock and column. The structural design of grey cast iron castings directly influences the machine's ability to damp vibrations generated during heavy-duty milling. For used FERMAT machines, emphasis is placed on the condition of the guideways—utilizing a combination of linear guideways for high dynamic movement or box-ways (sliding guideways) for maximum damping during interrupted cuts.
Spindle performance and torque are determined by the condition of the gearbox and the spindle unit bearing arrangement. Modern control systems, such as Heidenhain iTNC 640 or Fanuc 31i, allow used machines to utilize advanced adaptive feed control functions. This leads to real-time optimization of cutting forces, preventing thermal spindle deformation and extending the service life of bearing sets. Thermal stabilization, ensured by spindle cooling, is essential for horizontal boring mills to maintain dimensional stability during long boring cycles.
Acquiring a used boring mill represents a strategic investment with a significantly faster ROI (Return on Investment) compared to a new machine, thanks to lower depreciation and immediate availability. The key to profitability is minimizing non-productive time. Machines equipped with an Automatic Tool Changer (ATC) and high-capacity rotary tables (e.g., 15–20 tons) allow for complex workpiece machining in a single setup, dramatically reducing refixturing errors and increasing production throughput.
Modernizing drives and implementing digital scales (DRO) on older machine frames allows for positioning accuracy that meets the standards of demanding sectors like power generation and shipbuilding. From a long-term strategy perspective, the availability of spare parts for the kinematic chain and the ability to integrate the machine into an ERP system for OEE (Overall Equipment Effectiveness) tracking are critical.