TCK50
High-Rigidity 45° Slant Bed CNC Lathe for Mass Production Turning
The HT Precision TCK50 slant bed CNC lathe features a true 45-degree one-piece monolithic casting bed. Engineered for rapid chip disposal, high thermal stability, and maximum operator ergonomics, it is optimized for high-volume automated turning operations with tight tolerances.
Engineering Highlights
Structural stability, precision drive trains, and high-rigidity components.
True 45° monolithic slant bed casting ensures excellent chip flow and rigidity
High-precision cartridge spindle unit with NSK duplex angular contact bearings
8" hydraulic 3-jaw chuck with programmable hydraulic clamping pressure
12-station heavy-duty hydraulic or servo indexing turret (0.2s index time)
Dual roller guideways for rapid 30 m/min X and Z traverse speeds
Automatic parts catcher and bar feeder interface ready
Complete Technical Specifications
Standard factory configuration measurements and operational limits.
Working Capacity
Standard MetricSpindle
Standard MetricTurret & Tooling
Standard MetricTailstock
Standard MetricPhysical Dimensions
Standard MetricStandard Equipment & Inclusions
- • Fanuc 0i-TF Plus / Siemens 828D / GSK 988T CNC Controller
- • 8" solid or hollow hydraulic chuck with rotary cylinder
- • 12-Station servo turret with precision Curvic coupling
- • Automatic lubrication, high-pressure coolant, chain chip conveyor
Available Options & Automation
- + Short bar feeder (1.2m) or auto magazine bar feeder (3m)
- + Hydraulic programmable tailstock
- + Workpiece collector (automatic parts catcher) & conveyor belt
- + Tool presetter arm (Renishaw manual or auto)
Direct Factory Quotation Request
Direct manufacturer quotation, tooling layout consultation, and 3D CAD footprint drawings within 12 hours.
RFQ Received Successfully
Thank you! Your technical inquiry has been submitted. Our engineering sales team will email you a complete proposal and quotation within 12 hours.
Submission Notice
There was an issue sending your message. Please email us directly at xiuc32860@gmail.com.