Precision CNC Hydraulic Press Brake with Servo Motor Back Gauge and Ball Screw Linear Guideway for ±0.05mm Accuracy
The WC67K-100/3200 SBG is engineered for batch production excellence with its advanced servo-driven back gauge system featuring precision ball screw and linear guideway. This configuration delivers repeatable positioning accuracy of ±0.05mm, making it the ideal choice for manufacturers who demand consistent part quality across thousands of production cycles.
- Ball Screw & Linear Guideway: Unlike conventional chain-driven or manual back gauges, the precision ball screw mechanism paired with linear guideway eliminates backlash and ensures smooth, accurate positioning every cycle.
- ±0.05mm Positioning Accuracy: Servo motor feedback control maintains tight tolerances — critical for parts that must fit precisely into welded assemblies or downstream automated processing lines.
- Batch Consistency: Program once, run thousands. The servo back gauge repeats the exact position automatically, dramatically reducing scrap rates and rework from manual adjustment errors.
- 600mm X-Axis Travel: Extended back gauge range accommodates diverse part sizes without mechanical reconfiguration, expanding the machine's application versatility.
| Parameter | Specification |
|---|---|
| Nominal Press Force | 100 Ton (1000 KN) |
| Length of Table | 3200 mm |
| Distance Between Housings | 2600 mm |
| Throat Depth | 400 mm |
| Ram Stroke | 200 mm |
| Ram Speed | 90 / 8 / 75 mm/s |
| Open Height | 450 mm |
| Main Motor Power | 7.5 KW |
| Machine Weight | 7,500 kg |
This machine excels in electrical panel fabrication, automotive bracket production, shelving and racking manufacturing, furniture components, lighting fixture production, and any application where large quantities of identical bent parts must be produced with minimal dimensional variation.
Compatible with carbon steel, stainless steel, aluminum, and galvanized sheets up to 6mm thickness (material-dependent). The welded steel frame with vibration stress relief ensures long-term stability for continuous multi-shift operation.
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