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VC 1200 VC 1200

VC 1200

Technical specifications

Modell V 12 V 15 V 18 VC 0852 VC 1052 VC 1000 VC 1200
Travels
X-Axis (mm) 1.2001.5241.8008601.0601.0671.270
Y-Axis (mm) 660762850520610660
Z-Axis (mm) 610720750610
Table
Table working surface W x D (mm) 1.250 x 6501.600 x 7601.900 x 8501.000 x 5201.160 x 5201.270 x 6101.500 x 660
Load max. (uniform distribution) (kg) 1.2001.5002.0005006501.0001.360
Distance from spindle nose to table (mm) 150 - 760150 - 870200 - 950115 - 725141 - 751150 - 760
T-Slots (DIN 650) 5 x 18mm x 100mm5 x 22mm x 150mm5 x 18mm x 100mm6 x 18mm x 100mm
Spindle
Spindle Taper SK40 / BT40SK50 / BT50SK40 - BigPlus / BBT40
Type RiemenIn-Line
Power S1/S6 (kW) 10 / 1415 / 2510 / 14
Torque S1/S6 (Nm) 63,7 / 8995,5 / 15963,7 / 89,4
Spindle Speed (rpm) 12.0008.00015.000
Feed Rate
Rapid Traverse X/Y/Z-Axis (m/min) 24 / 24 / 2018 / 18 / 1616 / 16 / 1436 / 36 / 24
Cutting Feed Rate X/Y/Z-Axis (mm/min) 8512
ATC & Magazine
ATC Type Doppelgreifer
Magazine Capacity 24304030
Maximum Tool Diameter (mm) full / next pocket empty 801057580
With Empty Pockets (mm) 150220150125
Maximum Tool Length (mm) 300
Maximum Tool Weight (kg) 7157
Space & System Requirements
Maximum Floor Spade (mm) W x L x H 5.418 x 3.786 x 3.0927.000 x 5.600 x 3.2567.500 x 5.600 x 32303.870 x 3.750 x 3.1004.900 x 3.365 x 2.9325.280 x 3.470 x 3.100
Machine Net Weight (kg) 8.10013.00016.0005.2505.5006.7509.000
Electrical Power Consumption (kVA / A) 35 / 7045 / 1003035
Air Requirements (bar) 6
Modell V 12 V 15 V 18 VC 0852 VC 1052 VC 1000 VC 1200

The specified values correspond to the default configuration.
* Other options available

Accessories

Standard Optional
Heidenhain Control TNC 640 Coolant through spindle (CTS 30 bar)
Belt drive spindle 12.000 1 /min. SK40BigPlus Rotary table (4th / 5th axis)
VC 0852/ VC 1052: Direct drive spindle 15.000 1/min. SK40BigPlus Part probe measurement system
Coolant wash-down system Tool probe measurement system
Spindle chiller Programmable airblow through spindle machining
Full enclosure Oil mist device
Programmable airblow machining Oil mist collector
Oil Skimmer Scraper type conveyor instead of chain type conveyor
Wash-down gun and air gun Production package Knoll
Chip conveyor and cart Bypass Filter
Manual pulse generator (MPG) Rotoclear
Ethernet interface

Product Description

Heidenhain Control TNC 640


Precise High performance spindle

  • With the VC-series, Takumi offers the optimal spindle for your demands
  • Spindle speeds 8.000 or 15.000 (rpm) 
  • Output up to 10kW – 25kW
  • Interface: SK40 BigPlus / BBT 40 / BBT 50

Extremely stiff and high-presision mechanical structure

  • The load-bearing mechanical structures such as bed, pillar, bed sledge are made of heat-treated and stress-released Meehanite cast iron. The thereby gained absorption capacity  enables low-vibration machining processes. This ensures high surface quality on the workpiece and increases the tool life.

Mechanical accuracy

  • In order to increase the durability of wear parts, Takumi pursues the philosophy of generating geometric accuracy from mechanics. The greatest effort is put into assembling the machine, for example, contact surfaces are hand scraped. Components are aligned to each other with the highest precision and assembled with the utmost care. Subsequent compensation via the machine control is thus reduced to a necessary minimum.

Thermal stability

  • The enemy of accuracy is temperature growth. In order to eliminate this and to be able to offer you a highly precise production, Takumi equips its machines with the following features:
    • Core-cooled and pre-tensioned ball-screws
    • Jacket-cooled milling spindle 
    • Linear scales

Reliable results

  • In order to be able to offer you a perfect tool for your high-precision production, the following measures have been consistently implemented in the VC-series:
    • In all 3 axes high precision ball linear guides.
    • Pre-tensioned ball screws to absorb thermal deformation and maintain maximum accuracy.
    • 6 guide blocks in the Z axis (VC1052) & 4 blocks in the X / Y axis generate a balanced erformance between dynamics and accuracy.

Dynamics

  • Moving mechanical elements are inherently stiff and reduced in mass.
  • The high-precision 3-axis ball linear guides ensure a quick response when accelerating and decelerating, resulting in high dynamics. Due to the large contact surfaces, they also ensure optimal load distribution on the guideways. The load capacity and torsional stiffness of the individual axes are increased to a maximum.This reduces the wear on the guides and also compensates vibrations during high cutting forces. 
  • The optimal number and positioning of the guide blocks reinforces the rigidity and ensures constant accuracy during long-term operation.

Loading

  • The loading accesses of the Takumi machines are designed extremely generous. Both loading large components by crane and short set up times for smaller components run smoothly based on the interference-free design.

Ergonomics

  • Centralized maintenance units and easy-to-use work and operator interfaces generate a smooth set-up and production process.

Chip Management

  • Measures such as: 
    • specifically positioned coolant flushing systems, steeply inclined inner walls, hinge or optional scraper belt conveyors, wide-open drop holes, tempered screw-conveyors effectively and reliably remove the volume and heat of the chips from the machining area.

Integrated Oil Skimmer

  • The oil skimmer prevents the emulsion quality from tipping over, even when the temperature is high or fluctuates strongly. The life of the coolant is effectively increased.

Reasons for your success with the 3-axis-Machining Centers of the V/VC -Series from Takumi

  1. Takumi has been a successful partner of industry and research for over 30 years.
  2. Product development close to customer and market requirements.
  3. VC series designed for both the die & mold making as well as for parts manufacturing
  4. Service, sales and customer support through the proven HURCO network (PLC supported)
  5. Flexibility through various options: From the optimal spindle to the 4th axis.
  6. Dynamics through mass-reduced (ROI) and inherently rigid construction of the moving elements.
  7. Ergonomics through cross table design for quick changeovers e.g. at large variety of parts with small batches. 
  8. The right machine model for every component size.

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