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Max.  diameter of  workpiece [mm]
Clamping diameter of rotary table [mm]
Max. workpiece height [mm]
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Vertical Lathes Single column

Name of a product Inventory number Producer YOM Parameters  
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
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
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
SKJ 12 CNC

SKJ 12 CNC

181547 TOS Hulín Control system NCT: 204
Max. diameter of workpiece: 1400 mm
Clamping diameter of rotary table: 1250 mm
Max. workpiece height: 1150 mm
Max. load of table: 6000 kg
Driven Tools: NO
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
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
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
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:
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
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
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:
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

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
MCSK 8

MCSK 8

201046 TOS Hulín 1982 Control system Tesla: NS 560
Max. diameter of workpiece: 1000 mm
Clamping diameter of rotary table: 800 mm
Max. load of table: 2500 kg
Max. workpiece height: 720 mm
Ram travel (Z): 630 mm
CONTUMAT 2

CONTUMAT 2

241532 Dörries Scharmann Technologie GmbH Control system Siemens: Sinumerik 840 C
Max. diameter of workpiece: 2400 mm
Clamping diameter of rotary table: 2200 mm
Max. load of table: 17000 kg
Max. workpiece height: 1800 mm
Ram travel (Z): 1500 mm
SKIQ 8 CNC B

SKIQ 8 CNC B

211441 TOS Hulín 1989 Control system Tesla: NS 642 C
Max. diameter of workpiece: 1100 mm
Clamping diameter of rotary table: 800 mm
Max. load of table: 2500 kg
Max. workpiece height: 750 mm
Ram travel (Z): 630 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
WIA LV 800 R

WIA LV 800 R

251548 Hyundai 2017 Control system Fanuc: 32i - B
Max. diameter of workpiece: 890 mm
Clamping diameter of rotary table: mm
Max. load of table: kg
Max. workpiece height: 800 mm
Ram travel (Z): 800 mm
SKIQ 8 CNC

SKIQ 8 CNC

251991 TOS Hulín Control system Siemens: Sinumerik 840 C
Max. diameter of workpiece: 1100 mm
Clamping diameter of rotary table: 800 mm
Max. load of table: 2500 kg
Max. workpiece height: 720 mm
Ram travel (Z): 630 mm
12 DS 100

12 DS 100

261338 SCHIESS GmbH 1985 Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 1000 mm
Clamping diameter of rotary table: 1250 mm
Max. load of table: 1600 kg
Max. workpiece height: 800 mm
Ram travel (Z): 500 mm
SKIQ 20 CNC

SKIQ 20 CNC

261127 TOS Hulín Control system NUM:
Max. diameter of workpiece: 2100 mm
Clamping diameter of rotary table: 2000 mm
Max. load of table: 20000 kg
Max. workpiece height: 1260 mm
Ram travel (Z): mm
1541

1541

231706 Sedin 1972 Max. diameter of workpiece: 1600 mm
Clamping diameter of rotary table: 1400 mm
Max. load of table: 5000 kg
Max. workpiece height: 1000 mm
Ram travel (Z): 700 mm
Ram size: mm

Technical Analysis: Kinematics and Stability of Single-Column Design

Single-column vertical lathes (open-side) represent a specific solution for machining components where the diameter exceeds the table size. Unlike double-column machines, the critical factor here is the moment rigidity of the column-to-crossrail junction. In used machines from brands like TOS or Sedin, this node is dimensioned with a high safety factor, allowing for high cutting forces even at maximum ram extension.

Key Technical Parameters:

  • Dynamic Force Absorption: The massive cast-iron column acts as a mechanical filter for low-frequency vibrations. Higher frame weight correlates directly with the elimination of chatter during roughing with variable depths of cut.
  • Ram Guideways: The use of hardened and ground ways with PTFE-based liners (Turcite-B) ensures a low coefficient of static friction, eliminating stick-slip effects during fine finishing feeds.
  • Table Drive: Asynchronous motors coupled with multi-stage gearboxes allow for high torque at minimum RPM, essential for processing hard-to-machine materials (e.g., heat-resistant steels).

Strategic Block: Operational Economics and Investment Value

From an owner's perspective, purchasing a used single-column VBM optimizes CAPEX while maintaining high process flexibility. The ability to accommodate a workpiece larger than the chuck diameter expands the production portfolio without requiring investment in much more expensive double-column centers.

Cost and Efficiency Analysis:

  • Rapid Payback: Lower acquisition costs compared to new machines mean reaching the break-even point 40–60% faster, freeing up cash flow for modern tooling systems.
  • Retrofit Potential: The mechanical foundation of these machines is virtually indestructible. Equipping them with Siemens SINUMERIK or Heidenhain controls brings digital precision to a robust mechanical platform.

3 Counter-Intuitive Advantages of Open-Side Construction:

  1. Lower OPEX for Cutting Tools: The stable cast-iron base reduces micro-chipping of ceramic and carbide inserts caused by resonance in lighter, welded modern frames.
  2. Energy Efficiency in Job-Shop Production: The massive flywheel effect of heavy faceplates requires less energy to maintain constant RPM during interrupted cuts compared to dynamic but lightweight tables.
  3. Floor Space Optimization: Open access to the workspace allows for easier handling of oversized parts by crane, reducing setup time by up to 15%.

FAQ: Expert Insights for Technical Search

What is the limiting factor for workpiece diameter on a single-column lathe? The limit is not just the distance from the column to the table center, but primarily the load capacity of the table bearings and workpiece balance. Asymmetric parts require counterweights to eliminate centrifugal forces that could damage the hydrostatic system.

Why choose a used single-column machine over a new 'lightweight' center? New entry-level machines often use welded structures. Used cast-iron machines offer better thermal stability and higher internal damping, which are critical parameters in heavy engineering.

How does ram extension affect accuracy during heavy roughing? On single-column machines, a slight bending moment occurs at maximum extension. However, on robust machines, this is predictable and can be compensated for using modern CNC algorithms, maintaining tight tolerances even during deep cuts.