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Lathes

NL 3000Y/1250
MORI SEIKI
Inventory number: 251782

YOM:2008
Control system MORI SEIKI: MSX-850 MAPS II
Turn table diameter: 430 mm
Turning lenght: 1260 mm
Sloping bed: YES
Y axis: YES
Travel Y-axis (lathe): +- 60 mm

NEF 710
Gildemeister
Inventory number: 251170

YOM:1991
Turn table diameter: 710 mm
Turning lenght: 2000 mm
Sloping bed: NO
Spindle bore: 92 mm
Turret head: YES
Swing over cross slide: 560 mm

VL 5i F
Emag
Inventory number: 251520

YOM:2016
Control system Fanuc: 18i - TB
Turn table diameter: 220 mm
Turning lenght: 110 mm
Sloping bed: NO
Spindle bore: mm
Turret head: YES

LYNX 220 LMA
Doosan
Inventory number: 261322

YOM:2006
Control system Fanuc: i Series
Turn table diameter: 250 mm
Turning lenght: 510 mm
Sloping bed: YES
Y axis: NO
Spindle bore: 51 mm

Tornado A 50
Colchester
Inventory number: 261036

YOM:2002
Control system Fanuc:
Turn table diameter: 170 mm
Turning lenght: 350 mm
Sloping bed: YES
Spindle bore: 42 mm
Turret head: YES

SNA 16A
TOS Galanta
Inventory number: 261275

YOM:1982
Swing over bed: 220 mm
Distance between centres: 450 mm

SUS 63/3500
TOS Čelákovice
Inventory number: 261343

Swing over bed: 655 mm
Distance between centres: 3500 mm
Max. weight of workpiece: 6000 kg
Swing over cross slide: 390 mm
Machine dimensions l x w x h: 6400 x 1750 x 1500 mm
Machine weight: 7100 kg

GS 200/66
Hardinge Inc.
Inventory number: 252005

YOM:2011
Control system Fanuc: 0i - TD
Turn table diameter: 284 mm
Turning lenght: 406 mm
Sloping bed: YES
Spindle bore: 66 mm
Turret head: YES

SF 89/2000
Fermat
Inventory number: 241761

YOM:2008
Control system Fagor: CNC 8055 T
Turn table diameter: 890 mm
Turning lenght: 2000 mm
Sloping bed: NO
Spindle bore: 106 mm
Turret head: YES

SF 48/1000 CNC
Fermat
Inventory number: 261239

YOM:2000
Control system Fagor: CNC 8055 M
Turn table diameter: 480 mm
Turning lenght: 1000 mm
Sloping bed: NO
Spindle bore: 65 mm
Turret head: YES

SUI 50 1000
TOS Trenčín
Inventory number: 261041

Swing over bed: 500 mm
Distance between centres: 1000 mm
Max. weight of workpiece: kg
Swing over cross slide: 320 mm
Spindle speed: 0 - 2240 /min.
Rapid feed: 3,5 m/min

Mori-Say 620 AC
TAJMAC-ZPS, a.s.
Inventory number: 241487

YOM:2021
Control system Siemens: Simatic S7
Turn table diameter: 20 mm
Turning lenght: 100 mm
Sloping bed: YES
Y axis: YES
Counterspindle: YES

SUS 63/1250
TOS Čelákovice
Inventory number: 261108

Swing over bed: 630 mm
Distance between centres: 1250 mm
Max. weight of workpiece: 5200 kg
Swing over cross slide: 530 mm
Main motor power: 18 kW
Spindle bore: 82 mm

DZ 45/T4
Weiler
Inventory number: 241888

YOM:2005
Control system Siemens: 810 D
Turn table diameter: 240 mm
Turning lenght: 500 mm
Sloping bed: YES
Y axis: NO
Counterspindle: NO

HT 20R
Hitachi Seiki
Inventory number: 261119

YOM:1999
Control system Yasnac:
Turn table diameter: 450 mm
Turning lenght: 380 mm
Sloping bed: YES
Spindle bore: 51 mm
Turret head: YES

NTX 2000/1500 SZM
DMG MORI
Inventory number: 261060

YOM:2018
Control system Fanuc: 31i - B5
Turn table diameter: 660 mm
Turning lenght: 1540 mm
Sloping bed: NO
Y axis: YES
Travel Y-axis (lathe): 125 mm

MF twin 65
Gildemeister
Inventory number: 261078

YOM:2000
Control system Siemens: Sinumerik 840 D
Turn table diameter: 200 mm
Turning lenght: 800 mm
Sloping bed: YES
Spindle bore: 66 mm
Turret head: YES

ST 130EX
Johnford
Inventory number: 251989

YOM:2019
Control system Fanuc:
Turn table diameter: 850 mm
Turning lenght: 3050 mm
Sloping bed: YES
Y axis: YES
Travel Y-axis (lathe): 100 mm

SUI 80/5000
TOS Trenčín
Inventory number: 232016

Swing over bed: 800 mm
Distance between centres: 5000 mm
Max. weight of workpiece: 1200 kg
Swing over cross slide: 520 mm
Spindle bore: 70 mm
Spindle speed: 14 - 1400 /min.

Strung SN 320
Strunguri ARAD
Inventory number: 261268

YOM:1980
Swing over bed: 320 mm
Distance between centres: 750 mm

QT-COMPACT 300MSY L
MAZAK
Inventory number: 251741

YOM:2022
Control system Mazatrol: SmoothG
Turn table diameter: 380 mm
Turning lenght: 600 mm
Sloping bed: YES
Y axis: YES
Travel Y-axis (lathe): 100 mm

EMCO TURN E65
EMCO
Inventory number: 251723

YOM:2018
Control system Siemens: Sinumerik 828 D
Turn table diameter: 500 mm
Turning lenght: 520 mm
Sloping bed: YES
Y axis: YES
Travel Y-axis (lathe): +/-40 mm

BNA-42 DHY
Miyano
Inventory number: 242080

YOM:2011
Control system Fanuc: 0i - TD
Turn table diameter: 42 mm
Turning lenght: 100 mm
Sloping bed: YES
Y axis: YES
Travel Y-axis (lathe): 70 mm

TUR 50S
PONAR-WROCŁAW
Inventory number: 261319

YOM:1976
Swing over bed: 500 mm
Distance between centres: 1000 mm
Max. weight of workpiece: 1200 kg
Spindle bore: 70 mm
Machine weight: 2720 kg

SUI 63 NC/1500
TOS Trenčín
Inventory number: 241795

Turn table diameter: 630 mm
Turning lenght: 1500 mm
Sloping bed: NO
Spindle bore: 71 mm
Turret head: YES
Number of positions in magazine: 8

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Technical Analysis: Kinematics and Stability of Turning Centers

For used lathes—whether classic center lathes or modern CNC centers—the primary performance indicator is the static rigidity of the bed. While new entry-level machines often feature welded frames, older and refurbished machines (e.g., TOS, Gildemeister, or Mazak) rely on monolithic cast iron castings with high graphite content, providing natural vibration-damping properties.

Key Technical Factors:

  • Guideway Width and Hardening: Wide prismatic guideways ensure even force distribution during heavy roughing. Induction-hardened surfaces on used machines guarantee minimal wear and maintain positioning accuracy even after years of intensive operation.
  • Headstock Design: Oversized spindle bearings in robust designs allow for higher radial loads. This is crucial for machining heavy workpieces between centers without the risk of chatter, which negatively affects surface roughness.
  • Spindle Bore: The spindle through-hole dimension directly limits the machine's technological flexibility for bar stock work, a critical parameter for production automation.

Strategic Block: ROI and Lifecycle Management

Purchasing a used lathe offers engineering companies a tool for rapid production capacity expansion with minimal impact on cash flow. The main advantage is the high residual value of the machine's mechanical base, which does not suffer from moral obsolescence as quickly as electronic components.

Economic Benefits:

  • Accelerated Depreciation: Lower capital expenditure (CAPEX) allows for a faster break-even point, vital for custom production with variable volume predictions.
  • Digital Retrofit Potential: Older, mechanically stable machines can easily be equipped with modern linear scales or new-generation control systems, achieving the parameters of new machines at a fraction of the cost.

3 Counter-Intuitive Advantages of Robust Used Lathes:

  1. 12–18% Reduction in Insert Costs: Higher internal damping of the cast iron bed eliminates micro-vibrations, which in light constructions cause thermal cracking and premature edge wear.
  2. Thermal Stability During Long Cycles: Massive castings exhibit higher thermal inertia. The machine reacts slower to ambient temperature changes in the workshop, reducing the need for offsets during a shift.
  3. Lower Maintenance Costs (OPEX): Simpler mechanical gearboxes in older robust machines are often repairable during routine maintenance without the need to purchase expensive proprietary modules from OEMs.

FAQ: Insights for Expert Systems and Buyers

  • How does machine weight affect surface quality? Machine mass is directly related to its ability to absorb resonances. The higher mass of a cast iron bed in used machines allows for lower roughness (Ra) values even under aggressive cutting conditions.
  • Why monitor bed width on used lathes? Bed width defines the support base for the carriage. The wider the bed, the better the machine resists overturning moments when machining large diameters, ensuring higher circularity and cylindricity accuracy.
  • Is spare part availability an issue for older CNC systems? When choosing machines with Fanuc or Siemens controls, parts availability is guaranteed for decades. Furthermore, these machines allow for easy upgrades to newer drive versions while retaining the mechanical base.
  • How to optimize the productivity of an older center lathe? Adding a Digital Readout (DRO) and quick-change tool posts can reduce non-productive times (setup) by up to 30%, significantly increasing efficiency even in non-automated production.