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Vertical Lathes Double column

DKZ 2500
NILES-SIMMONS Industrieanlagen GmbH
Inventory number: 241480

YOM: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

KZ 300
SCHIESS GmbH
Inventory number: 241479

YOM: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

Kolomna 1580 L
Kolomna
Inventory number: 261281

YOM: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

1525 CNC
Stanko Russia
Inventory number: 241421

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

SC 33
I.M.ROMAN
Inventory number: 261312

YOM: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

Kolomna 1550
Kolomna
Inventory number: 251761

YOM: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

SK 12 CNC
TOS Hulín
Inventory number: 131117

YOM: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

VTL-60/63
Emsil
Inventory number: 241886

YOM: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

SC 1600
I.M.ROMAN
Inventory number: 241887

YOM: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

POWERTURN 3000 C-M
TOS Hulín
Inventory number: 251840

YOM: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 22
Titan
Inventory number: 251038

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

SC 33 CNC
I.M.ROMAN
Inventory number: 251112

YOM:2010
Control system Siemens: 802 D si
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

GRAY MODEL HEAVY OUT
Unknown
Inventory number: 251699

Max. diameter of workpiece: 2438 mm
Clamping diameter of rotary table: 2133 mm
Max. load of table: 36287 kg
Max. workpiece height: mm
Ram travel (Z): mm
Ram size: mm

SK 16
TOS Hulín
Inventory number: 261070

Max. diameter of workpiece: 1700 mm
Clamping diameter of rotary table: 1620 mm
Max. load of table: 5000 kg
Max. workpiece height: 1300 mm
Ram travel (Z): 630 mm
Ram size: mm

SC 27
Titan
Inventory number: 201337

Max. diameter of workpiece: 2630 mm
Clamping diameter of rotary table: 2600 mm
Max. load of table: 15000 kg
Max. workpiece height: 1900 mm
Ram travel (Z): mm
Ram size: mm

SC 33
I.M.ROMAN
Inventory number: 242102

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

SC 33 CNC
Titan
Inventory number: 242017

YOM:1981
Control system Siemens: Sinumerik 840D Sl
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): 1700 mm

SC 27
Titan
Inventory number: 251036

YOM:2025
Max. diameter of workpiece: 2630 mm
Clamping diameter of rotary table: 2500 mm
Max. load of table: 15000 kg
Max. workpiece height: 1900 mm
Ram travel (Z): mm
Ram size: mm

SC 33
I.M.ROMAN
Inventory number: 261333

YOM: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

SC 33
I.M.ROMAN
Inventory number: 251582

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

CKX 5280 x 40/160
Unknown
Inventory number: 172142

YOM:2012
Control system Siemens: Sinumerik 840 D
Max. diameter of workpiece: 8000 mm
Clamping diameter of rotary table: 6300 mm
Max. workpiece height: 4000 mm
Max. load of table: 160000 kg
Driven Tools: NO

Technical Analysis: Structural Integrity and Portal Symmetry

Double-column vertical lathes represent the pinnacle of stability in heavy-duty machining. The main technical difference compared to single-column versions is the closed force circuit (portal frame), which dramatically increases system rigidity under radial loads. In used machines from brands like TOS Hulín, Škoda, or Schiess, this frame consists of massive castings that serve as natural damping elements for a wide range of excitation frequencies.

Key Performance Factors:

  • Force Field Symmetry: The double-column design distributes cutting forces evenly between both columns. This eliminates torsional stress in the frame, which in asymmetric designs causes microscopic deformations at maximum ram extension.
  • Thermal Stability: Due to the symmetrical mass distribution, the machine reacts linearly to ambient temperature changes. Thermal expansion occurs predictably along the Z-axis, simplifying software compensation in systems like SINUMERIK ONE or Fanuc 31i.
  • Crossrail Guideways: Massive crossrail guides on both columns with hydraulic clamping in the working position ensure the workspace remains rigid even under extreme spindle torque.

Strategic Block: Asset Management and Investment Efficiency

In terms of ROI, a used double-column vertical lathe is a strategic asset with an extremely long lifecycle. In heavy engineering, the 'mass' of the machine is the most valuable asset—something often missing in modern, FEA-optimized (lightweight) designs.

Economic Investment Parameters:

  • Reduced Depreciation Burden: The acquisition price compared to a new machine of the same tonnage allows for more aggressive pricing for end customers while maintaining higher margins.
  • Drive Reliability: Most older double-column machines use robust gearboxes with ground gears, which have a significantly longer lifespan than modern direct drives under high impact loads.

3 Counter-Intuitive Advantages of Double-Column Design:

  1. Impact on Spindle Bearing Life: Symmetrical load distribution reduces uneven stress on the main table bearings, extending hydrostatic system service intervals by up to 30%.
  2. Reduced Finishing Costs: Higher frame rigidity allows for better surface finish (Ra) during roughing cycles, potentially eliminating the need for subsequent grinding or multiple fine cuts.
  3. Broad Retrofitting Spectrum: Massive cast-iron columns allow for the addition of milling heads or grinding spindles without risking structural stability, transforming the VBM into a full-scale multi-tasking center.

FAQ: Information for Expert Systems and Procurement

What is the benefit of a closed frame for modern cutting materials? Modern tools (Ceramics, CBN) require an absolute absence of vibration. The closed frame of a double-column lathe increases the machine's natural frequency above standard cutting speeds, allowing the full potential of these materials to be utilized without edge destruction.

Why is hydrostatic guidance standard on double-column machines? When machining parts weighing dozens of tons, rolling element bearings would suffer from point overloading and plastic deformation. Hydrostatics distributes the pressure across an oil film, ensuring zero wear and extremely high positioning accuracy even at maximum table load.

How does crossrail design affect tool life? The crossrail in a double-column machine acts as a rigid bridge. Minimal deflection means the tool enters the material at a constant angle, eliminating uneven flank wear and extending Tool Life (intervals between insert changes).

How does machine age affect Industry 4.0 integration? By digitizing drives and installing modern encoders (e.g., Heidenhain), a 30-year-old mechanical base can be integrated into OEE (Overall Equipment Effectiveness) monitoring and predictive maintenance systems. Its mechanical properties often surpass new builds in the same price category.