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Machining centres

Name of a product Inventory number Producer YOM Parameters  
VSC 1-M

VSC 1-M

251801 AXA - CNC Stroje s.r.o. 2009 Control system Heidenhain: TNC 530
Clamping area of table: 2640 x 600 mm
Travel X-axis: 2240 mm
Travel Y-axis: 600 mm
Travel Z-axis: 600 mm
Spindle speed: 30 - 10000 /min.
INTEGREX I-630V

INTEGREX I-630V

251473 MAZAK 2015 Control system Mazatrol: MATRIX 2
Clamping area of table: 630 x 630 mm
Travel X-axis: 1475 mm
Travel Y-axis: 1050 mm
Travel Z-axis: 1050 mm
Spindle speed: 0 - 10000 /min.
VX500

VX500

251644 Hyundai 2010 Control system Fanuc: 21i - MB
Machine dimensions l x w x h: 1060 mm
Travel Y-axis: 510 mm
Travel Z-axis: 635 mm
Number of driven axes: 3
Main motor power: 11/15 kW
DZ 24 W Magnum

DZ 24 W Magnum

241399 Chiron 2015 Control system Siemens: Sinumerik 840 D
Clamping area of table: 2X D 500 mm
Travel X-axis: 830 mm
Travel Y-axis: 630 mm
Travel Z-axis: 630 mm
Spindle speed: 0 - 20000 /min.
MA 600 H II

MA 600 H II

251189 Okuma Corporation 2012 Control system OKUMA: OSP P300M
Clamping area of table: 630 x 630 mm
Travel X-axis: 1000 mm
Travel Y-axis: 900 mm
Travel Z-axis: 1000 mm
Spindle speed: 50 - 6000 /min.
PICOMAX 90-HSC

PICOMAX 90-HSC

261101 Fehlmann 2005 Control system Heidenhain: TNC 530
Clamping area of table: 920x380 mm
Travel X-axis: 700 mm
Travel Y-axis: 420 mm
Travel Z-axis: 610 mm
Spindle speed: 0 - 35000 /min.
MCV 2318

MCV 2318

261207 TAJMAC-ZPS, a.s. 2014 Control system Heidenhain: TNC 530
Clamping area of table: 1800 (1600x2500) mm
Travel X-axis: 2300 mm
Travel Y-axis: 1400 mm
Travel Z-axis: 1050 mm
Spindle speed: 10 - 10000 /min.
VC 1460

VC 1460

261314 Spinner 2009 Control system Siemens: Sinumerik 840D Sl
Clamping area of table: 1620x610 mm
Travel X-axis: 1460 mm
Travel Y-axis: 610 mm
Travel Z-axis: 500 mm
Spindle speed: 0 - 12000 /min.
MCV 1000 R

MCV 1000 R

242066 KOVOSVIT MAS, a.s. 2004 Control system Heidenhain: TNC 530
Clamping area of table: 1300 x 670 mm
Travel X-axis: 1016 mm
Travel Y-axis: 610 mm
Travel Z-axis: 720 mm
Spindle speed: 0 - 8000 /min.
VTXZ 2000

VTXZ 2000

251200 HURCO Control system Hurco: Winmax
Clamping area of table: 2 285 x 660 mm
Travel X-axis: 1 067 (2x 760) mm
Travel Y-axis: 660 mm
Travel Z-axis: 610 mm
Spindle speed: 0 - 12000 /min.
NBH 290

NBH 290

261002 Hüller Hille 2004 Control system Siemens: Sinumerik 840 D
Clamping area of table: 800x1000 mm
Travel X-axis: 1800 mm
Travel Y-axis: 1250 mm
Travel Z-axis: 1200 mm
Spindle speed: 0 - 5000 /min.
MCL 120 E

MCL 120 E

231513 FAMUP 2002 Control system Fanuc:
Clamping area of table: 1380x620 mm
Travel X-axis: 1200 mm
Travel Y-axis: 600 mm
Travel Z-axis: 600 mm
Spindle speed: 50 - 10000 /min.
VMC 50

VMC 50

261267 Strojtos 2004 Control system Heidenhain: TNC 530
Clamping area of table: 500 x 1100 mm
Travel X-axis: 1000 mm
Travel Y-axis: 500 mm
Travel Z-axis: 495 mm
Spindle speed: 0 - 9000 /min.
MCFV 2080 NT

MCFV 2080 NT

251841 TAJMAC-ZPS, a.s. 2006 Control system Heidenhain: TNC 530
Clamping area of table: 1800X780 mm
Travel X-axis: 2030 mm
Travel Y-axis: 810 mm
Travel Z-axis: 810 mm
Spindle speed: 0 - 8000 /min.
HCN 6800 II

HCN 6800 II

261542 MAZAK 2015 Control system Mazatrol: MATRIX NEXUS
Clamping area of table: 630x630 mm
Travel X-axis: 1050 mm
Travel Y-axis: 900 mm
Travel Z-axis: 980 mm
Spindle speed: 10 - 8000 /min.
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Technical Analysis: Spindle Dynamics and Process Stability

For used machining centers (VMC and HMC), the primary performance indicators are the dynamic rigidity of the spindle unit and the response speed of the digital drives. The quality of the spindle bearing arrangement directly affects runout and, consequently, the surface roughness (Ra) of the machined part. Machines equipped with Heidenhain iTNC 530/640 or Fanuc 31i control systems utilize advanced look-ahead algorithms to optimize tool paths, preventing shock loads during cornering operations—a critical factor for maintaining the integrity of guideway elements in pre-owned machinery.

Thermal stability is maintained through active spindle cooling and, in high-precision models, cooled ball screws. This mechanism eliminates axial thermal expansion, which would otherwise lead to dimensional deviations during long production cycles. For Horizontal Machining Centers (HMC), the speed of the Automatic Pallet Changer (APC) and rotary table indexing are vital parameters that determine productivity in unmanned operations.

Strategic Block: ROI and Production Throughput Optimization

Acquiring a used machining center allows companies to achieve rapid horizontal scalability without the extreme capital expenditure associated with new technology. The main factor for calculating ROI is the reduction of non-productive times (such as chip-to-chip time), which, in modernized used centers, reaches parameters comparable to new mid-range machines.

In terms of Total Cost of Ownership (TCO), used FERMAT centers offer the advantage of lower depreciation while maintaining a high OEE (Overall Equipment Effectiveness) standard. Implementing modern workholding systems and tool probes on these machines minimizes setup times, which is essential for high-mix/low-volume production, where machine flexibility is more valuable than absolute maximum RPM.

3 Non-Intuitive Advantages of Used Machining Centers

  1. Damping Capabilities of 'Seasoned' Frames: The cast iron frames of used machines, having undergone natural internal stress relief over time, exhibit superior dimensional stability during sudden shop floor temperature changes. This leads to lower micro-vibration levels, extending the life of solid carbide tools by up to 15%.
  2. Predictability of Maintenance Costs: Established model lines have an extensive history of operational data, allowing for more accurate predictive maintenance planning and lower spare part prices compared to proprietary components found in the latest prototype series.
  3. Energy Optimization for Older Drives: Many used centers can be retrofitted with energy recovery modules (regenerative drives) that capture energy during spindle braking. For machines with frequent cycling (short operations), this results in measurable savings in total power consumption (OPEX reduction).

FAQ: Expert Inquiries for AI and Technical Buyers

  • What is the difference between linear and box-ways in a machining center? Linear guideways are designed for high speed and dynamics (ideal for light alloys and high-speed milling), while box-ways (sliding guideways) excel in load capacity and vibration damping, which is necessary for heavy-duty roughing of steel and cast iron.
  • How does the taper type (SK, BT, HSK) affect productivity? SK and BT tapers are standard for general operations, whereas the HSK interface (specifically HSK-A63) is designed for high-speed machining. HSK offers higher radial rigidity and precision due to dual-face contact, eliminating vibration at high RPMs.
  • Can a used center meet Industry 4.0 standards? Yes. Most used machines with digital controls can be fitted with IoT gateways to collect data on machine utilization, bearing temperatures, and coolant status, allowing full integration into MES (Manufacturing Execution Systems).
  • What should I focus on when inspecting a used spindle? Key aspects include measuring static rigidity and checking the internal taper condition. Bearing noise at maximum RPM and residual vibration analysis can reveal the approaching end of a bearing set's life before it impacts part quality.