|
T-42 |
T-51 |
T-65 |
Spindle HP |
15 HP (11 kW)(30 min.) |
20 HP (15 kW)(Continuous) |
35 HP (26 kW)(Continuous) |
Spindle Speed |
6,000 RPM |
5,000 RPM |
4,000 RPM |
Chuck Size |
6" (150 mm) |
8" (200 mm) |
10" (250 mm) |
Max. Machining Length |
14.2" (360.7 mm) |
23.6" (599.5 mm) |
23.6" (599.5 mm) |
Max. Machining Diameter |
8.91" (226.3 mm) |
12.35" (313.7 mm) |
12.35" (313.7 mm) |
Bar Size |
1.625" (42 mm) |
2" (51 mm) |
2.5" (65 mm) |
No. Turret Stations |
16 Station (BMT-45) |
12 Station (BMT-55) |
12 Station (BMT-55) |
CNC Control Unit |
FANUC 31i |
FANUC 31i |
FANUC 31i |
Approx. Machine Weight |
13,100 lbs (5,940 kg) |
17,200 lbs (7,800 kg) |
17,200 lbs (7,800 kg) |
Floor Space |
98" x 83.5" x 82.25" (2,489 mm x 2,121 mm x 2,089 mm) |
128.23" x 91.04" x 83.6" (3,257 mm x 2,312 mm x 2,123 mm) |
128.23" x 91.04" x 83.6" (3,257 mm x 2,312 mm x 2,123 mm) |
The Hardinge T-Series turning centers and SUPER-PRECISION® T-Series turning centers set the standard in high-precision and high-performance turning that will take your part quality and manufacturing capabilities to new heights. T-Series machines are designed to exceed your expectations and are ideal for two axis high-precision machining or complex multi- tasking operations that require a high level of precision, delicate part handling and for parts made complete in a single setup. Machine packages are pre-configured with our most popular features allowing you to select the proper machine tool configuration to produce your parts in the most effective and profitable manner.
SUPER-PRECISION® is a combination of best practice, design and manufacturing of hardware and software integrated into a machine tool that provides the highest level of precision for production turning centers that require the least amount of human intervention in the marketplace today.
Key differentiators
- High degree of machine stiffness qualified by Finite Element Analysis
- High surface finish capability of eight micro-inch or better
- Ball bar testing for superior geometric accuracy
- Dynamic balancing of spindle and drive motor
- Integral wrap around spindle motor technology to eliminate belts
- Matched high precision spindle bearings
- Ability to maintain 0.00012” 3 micron total deviation in diameter after a brief warm-up
- High repeatability accuracy – 30 millionths (.00003”)
- Robust control/motor/drive package with 10 millionths (.00001”) control resolution
- High accuracy X-axis digital glass scales
Collet-Ready Spindle Advantages
- Collet seats directly in the Hardinge spindle
- Maximum rigidity and gripping power is transferred to the part
- Maximum utilization of RPM
- Minimum weight on spindle
- Minimum overhang from the spindle bearings that assures spindle accuracy is transferred directly to the workpiece
- Optimum T.I.R.
- Gripping force directly over the workpiece
- Superior tolerances and finishes
- Capable of using maximum machine stroke capacity
- Longer tool life
- Quick changeover
Live Tooling
Live tool holders start at 8,000 RPM and are capable of up to 32,000 RPM when purchased with ratios
of 2:1 or 4:1 when high speeds are required.The Hardinge BMT live tooling holders provide superior run-out within .00012” (3 micron) making it the overall best in class tooling system.
Hardinge T-Style Top Plate (static)
- Optional T-style top plate
- Utilizes T-series tool holders • 12-station static only
- Sq. Shank: T42: 3/4” (20mm) • T51 & T65 1” (25mm)
- Rd. Shank:T42: 1.25” (32mm) • T51 & T65 1.5” (40mm)
Controls Features
- Pendent-mounted Full Control
- 10.4” LCD Display
- Graphic Display
- Embedded Ethernet
- RS-232C Communication Ports
- Program Resolution .00001” (.0001mm)• Tool Offset Capability .00001” (.0001mm)• Tool Offsets with Geom/Wear (99)o Tool Offsets with Geom/Wear (200/400)• Absolute Encoders• Inch/Metric Selection by G-Code• 160 Meters (64Kbyte) Part Program Storage
- Part Program Storage (128/256/512KB, 1/2/4MB
Software Info
Featuring the latest FANUC Series 31i Model B control system, the software is designed to minimize set-up times, which is fundamental in reducing machined component costs whilst maximizing manufacturing output.