
Heavy Slant Bed Turning
WEIDA CNC Machine Series•WD-TCK56
TCK56
Ø560 mm Swing, 750 / 1000 mm Length, 10" Chuck, A2-8 Spindle (Ø86 mm Bore) for Heavy Shafts & Flanges
The TCK56 is an ultra-rigid slant bed turning center configured with an A2-8 high-torque spindle, an 86 mm through-spindle bore, and an expansive 750 mm or 1000 mm turning length. Designed for oil & gas connectors, heavy truck axles, and hydraulic cylinder rods, it effortlessly absorbs high cutting forces with wide roller guideways and a reinforced 45-degree bed casting.
Max Swing Over Bed
Ø560 mm
Max Machining Length
750 / 1000 mm
Standard Chuck Size
10-inch 3-Jaw Hydraulic
Spindle Bore / Bar Cap.
Ø86 mm (Bar Cap. Ø75 mm)
CE & ISO Certified100% Laser Tested12-Month Warranty
Design Architecture
Engineering Highlights
A2-8 robust spindle with wide Ø86 mm bore for pipe and large-diameter bar turning
Extra-wide 45° slant bed casting minimizing thermal growth and cutting vibrations
Heavy-duty hydraulic tailstock with programmable quill thrust for long workpieces
High-torque motor system optimized for heavy depth-of-cut roughing
Factory Acceptance Tolerances
Technical Specifications
Factory calibrated metric values. Imperial conversions available upon request.
| Specification Parameter | Standard Value |
|---|---|
| Max Swing Over Bed | Ø560 mm |
| Max Machining Length | 750 / 1000 mm |
| Standard Chuck Size | 10-inch 3-Jaw Hydraulic |
| Spindle Bore / Bar Cap. | Ø86 mm (Bar Cap. Ø75 mm) |
| Spindle Nose & Speed | A2-8 / 3,000 RPM |
| Spindle Motor Power | 15 / 18.5 kW High Torque |
| Turret Capacity | 12 Tools Hydraulic / Servo |
| Machine Net Weight | 5,500 kg |
Standard Configuration
- Fanuc 0i-TF Plus Controller
- 10" Taiwan Hydraulic Chuck
- 12-Station Servo Turret
- Chain Chip Conveyor
- Hydraulic Tailstock
Optional Upgrades
- Manual or Hydraulic Steady Rest
- 12" Chuck Upgrade
- Live Tooling BMT65
- Optical Linear Scales
Procurement & Engineering Inquiry
Submit your machining requirements. Our engineering team provides detailed quotations and toolpath feasibility within 2 hours.