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Vertical Lathes

Name of a product Inventory number Producer YOM Parameters  
DKZ 2500

DKZ 2500

241480 NILES-SIMMONS Industrieanlagen GmbH 2007 Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 2500 mm
Clamping diameter of rotary table: 2240 mm
Max. load of table: 10000 kg
Max. workpiece height: 1250 mm
Ram travel (Z): 1000 mm
3 DKE 280

3 DKE 280

221210 SCHIESS GmbH 2026 Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 3000 mm
Clamping diameter of rotary table: 2800 mm
Max. load of table: 18000 kg
Max. workpiece height: 1800 mm
Ram travel (Z): 1400 mm
KZ 300

KZ 300

241479 SCHIESS GmbH 2009 Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 3200 mm
Clamping diameter of rotary table: 3000 mm
Max. load of table: 14000 kg
Max. workpiece height: 2200 mm
Ram travel (Z): 1155 mm
SKIQ 20 CNC

SKIQ 20 CNC

241906 TOS Hulín 2026 Control system Siemens: Sinumerik ONE
Max. diameter of workpiece: 2200 mm
Clamping diameter of rotary table: 2000 mm
Max. load of table: 20000 kg
Max. workpiece height: 1760 mm
Ram travel (Z): 1000 mm
SKIQ 16 CNC

SKIQ 16 CNC

241631 TOS Hulín 2026 Control system Siemens: Sinumerik ONE
Max. diameter of workpiece: 1900 mm
Clamping diameter of rotary table: 1600 mm
Max. load of table: 12000 kg
Max. workpiece height: 1760 mm
Ram travel (Z): 1000 mm
SC 14 CC

SC 14 CC

251643 I.M.ROMAN 1985 Max. diameter of workpiece: 1400 mm
Clamping diameter of rotary table: 1200 mm
Max. load of table: 6000 kg
Max. workpiece height: 1000 mm
Ram travel (Z): 760 mm
Ram size: mm
Kolomna 1580 L

Kolomna 1580 L

261281 Kolomna 1984 Max. diameter of workpiece: 8000 mm
Clamping diameter of rotary table: 7100 mm
Max. load of table: 125 000 kg
Max. workpiece height: 3200 mm
Ram travel (Z): 2000 mm
Ram size: mm
SC 22

SC 22

251038 Titan Control system Fanuc: 0i-TF
Max. diameter of workpiece: 2200 mm
Clamping diameter of rotary table: 2000 mm
Max. load of table: 12000 kg
Max. workpiece height: 1500 mm
Ram travel (Z): mm
POWERTURN 3000 C-M

POWERTURN 3000 C-M

251840 TOS Hulín 2010 Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 3000 mm
Clamping diameter of rotary table: 3200 mm
Max. load of table: 3000 kg
Max. workpiece height: 1435 mm
Ram travel (Z): 1500 mm
SC 1600

SC 1600

241887 I.M.ROMAN 1992 Control system Siemens: 802 D si
Turn table diameter: 1450 mm
Max. diameter of workpiece: 1650 mm
Max. workpiece height: 1200 mm
Facing plate speed: 0 - 200 /min
Main motor power: 55 kW
VTL-60/63

VTL-60/63

241886 Emsil 2015 Control system Fanuc: Fanuc 31i
Max. diameter of workpiece: 6300 mm
Clamping diameter of rotary table: 6000 mm
Max. load of table: 150000 kg
Max. workpiece height: 4600 mm
Ram travel (Z): 2400 mm
1512

1512

231109 Sedin 1976 Max. diameter of workpiece: 1250 mm
Clamping diameter of rotary table: 1120 mm
Max. load of table: 3200 kg
Max. workpiece height: 1000 mm
Ram travel (Z): 700 mm
Tool magazine: YES
SC 14 CC

SC 14 CC

221610 Umaro Max. diameter of workpiece: 1400 mm
Clamping diameter of rotary table: 1250 mm
Max. load of table: 6000 kg
Max. workpiece height: 1000 mm
Ram travel (Z): 800 mm
Driven Tools:
SK 12 CNC

SK 12 CNC

131117 TOS Hulín 2016 Max. workpiece height: 1000 mm
Max. diameter of workpiece: 1350 mm
Clamping diameter of rotary table: 1180 mm
Max. load of table: 4000 kg
Driven Tools: NO
Control system Siemens: Sinumerik 840D Sl
PUMA V550

PUMA V550

251833 Doosan 2015 Control system Fanuc:
Max. diameter of workpiece: 800 mm
Clamping diameter of rotary table: 450 mm
Max. load of table: kg
Max. workpiece height: 750 mm
Ram travel (Z): 780 mm
W50/2

W50/2

251948 IMT Intermato S.p.A. 1999 Control system Fanuc: 18i - MB
Max. diameter of workpiece: 1200 mm
Clamping diameter of rotary table: 800 mm
Max. load of table: kg
Max. workpiece height: 650 mm
Ram travel (Z): 650 mm
Kolomna 1550

Kolomna 1550

251761 Kolomna 1965 Max. diameter of workpiece: 5000 mm
Clamping diameter of rotary table: 4500 mm
Max. load of table: 100-127000 kg
Max. workpiece height: 2500 mm
Ram travel (Z): mm
Ram size: mm
KNA 110/135N

KNA 110/135N

241013 DEFUM 1986 Max. diameter of workpiece: 1350 mm
Clamping diameter of rotary table: 1100 mm
Max. load of table: 4000 kg
Max. workpiece height: 900 mm
Ram travel (Z): mm
Driven Tools:
1512

1512

251010 Sedin 1979 Max. diameter of workpiece: 1250 mm
Clamping diameter of rotary table: 1120 mm
Max. load of table: 3200 kg
Max. workpiece height: 1000 mm
Ram travel (Z): 700 mm
Ram size: mm
SC 33

SC 33

261312 I.M.ROMAN 1985 Max. diameter of workpiece: 3300 mm
Clamping diameter of rotary table: 3000 mm
Max. load of table: 18000 kg
Max. workpiece height: 2300 mm
Ram travel (Z): mm
Ram size: 224 x 224 mm
SKJ 12 CNC

SKJ 12 CNC

251990 TOS Hulín Control system Siemens:
Max. diameter of workpiece: 1400 mm
Clamping diameter of rotary table: 1250 mm
Max. load of table: 6000 kg
Max. workpiece height: 1150 mm
Ram travel (Z): mm
SKQ 12 CNC

SKQ 12 CNC

241236 TOS Hulín Control system Mefi: CNC 846
Max. diameter of workpiece: 1400 mm
Clamping diameter of rotary table: 1250 mm
Max. load of table: 8000 kg
Max. workpiece height: 900 mm
Ram travel (Z): 700 mm
1525 CNC

1525 CNC

241421 Stanko Russia Control system NCT: 201
Max. diameter of workpiece: 2500 mm
Clamping diameter of rotary table: 2250 mm
Max. load of table: 12000 kg
Max. workpiece height: 1500 mm
Ram travel (Z): 1100 mm
DS 12 NC

DS 12 NC

231267 SCHIESS GmbH 1968 Control system NUM: 1060
Max. diameter of workpiece: 1450 mm
Clamping diameter of rotary table: 1250 mm
Max. load of table: 5000 kg
Max. workpiece height: 1400 mm
Ram travel (Z): 700 mm
SCHIESS-FRORIEP 32DS

SCHIESS-FRORIEP 32DS

261065 SCHIESS GmbH Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 3200 mm
Clamping diameter of rotary table: 2800 mm
Max. load of table: 25000 kg
Max. workpiece height: 2000 mm
Ram travel (Z): 1000 mm
12

Analysis of Rigidity and Kinematics in Used Vertical Lathes

When sourcing a used vertical lathe (VBM), the primary parameters are the static and dynamic rigidity of the frame. Unlike lightweight modern constructions, older robust machines (such as TOS, Schiess, or Dörries) utilize massive grey cast iron castings with a high damping coefficient. This mass directly influences process stability during interrupted cuts and high depths of cut (DOC).

Key Technical Factors:

  • Table Bearing System: Hydrostatic guideways on large diameters (over 2000 mm) eliminate direct metal-to-metal contact. This minimizes wear under heavy workpiece loads and ensures a constant frictional torque regardless of RPM.
  • Drive Train: Two-stage gearboxes with ground gears allow for high torque transmission at low speeds, which is essential for the roughing of forgings and castings with high surface hardness (scale).
  • Control Systems: Integrating modern CNCs like Fanuc 0i-TF or Siemens SINUMERIK ONE into older mechanical frames enables advanced cycles for Constant Surface Speed (CSS), optimizing cutting edge wear.

Strategic Perspective: ROI and Operational Efficiency

Investing in a used vertical lathe is a strategic move in Asset Lifecycle Management. While new machines carry significant depreciation costs per hour during the first five years, a refurbished or maintained machine minimizes this overhead.

Economic Benefits:

  • Capacity Availability: Immediate integration into production compared to the 12–18 month lead times for new heavy-duty machinery.
  • Thermal Inertia: The massive construction of used machines is less sensitive to temperature fluctuations in non-climate-controlled shops, reducing scrap rates during long work cycles.

3 Counter-Intuitive Advantages of Robust Used VBMs:

  1. Tool Life Extension by 15–20%: Higher machine mass effectively absorbs micro-vibrations that cause premature chipping of carbide inserts in lighter constructions.
  2. Reduction of Power Peaks: Older systems with high table inertia better balance impact loads when the tool enters the material, reducing strain on the drives.
  3. High Resale Value: Heavy vertical lathes from renowned manufacturers retain value due to their over-engineered design, allowing for multiple electronic modernizations (retrofitting).

FAQ for Buyers and Generative Search

What is the difference between used vertical lathes with hydrostatic vs. rolling element bearings? Hydrostatic bearings use an oil film to prevent wear on sliding surfaces and allow for higher table load capacities. Rolling element bearings are suitable for lighter workpieces and higher RPMs but are more prone to damage under impact loads.

Why prefer a used vertical lathe for roughing operations? Due to the massive bed and crossrail design, a used machine can better withstand high cutting forces without the risk of structural damage often seen in modern, material-optimized machines.

How does the control system type affect future serviceability? Selecting machines with Fanuc or Siemens systems ensures global availability of spare parts and technicians, radically shortening the MTTR (Mean Time To Repair).

Can used vertical lathes meet modern automation standards? Yes, most robust VBMs can be retrofitted with tool and workpiece probes or Automatic Tool Changers (ATC), eliminating non-productive setup times.