3-20mm Tapping Diameter Cnc Gnatry Flange Plate Milling Drilling Machine Model PHD1010
3-20mm Tapping Diameter Cnc Gnatry Flange Plate Milling Drilling Machine Model PHD1010
Product Introduction:
This machine is suitable for drilling plate & pipe,baffle and flange in the petrochemical, boiler, refrigeration, wind power flange and other industries. It can also be used in the drilling of connecting plate in the steel structure such as building, bridge, tower and so on.
Product parameters:
| Model | PHD1010 | |
| Workpiece size | LxW (mm) | 1000x1000 |
| T-slot width of Workbench (mm) | 28 | |
| Drilling power head | Qty. | 1 |
| Spindle taper | BT40 | |
| Max. drilling diameter (mm) | Φ50 | |
| Max. thickness (mm) | ≤180 | |
| Tapping diameter | M3-M20 | |
| Spindle speed (r/min) | 30~3000 | |
| Servo spindle motor power (kW) | 11 | |
| Lateral movement of power head (X axis) | Max. horizontal stroke (mm) | 1000 |
| Lateral movement speed (r/min) | 0~8 | |
| Servo motor power for lateral movement (kW) | 2.4 | |
| Gantry longitudinal movement (Y axis) | Max. feed stroke (mm) | 1000 |
| Feed moving speed (m/min) | 0~8 | |
| Feed servo motor power (kW) | 2.4 | |
| Vertical ram feed motion (Z axis) | Max. stroke (mm) | 400 |
| Moving speed (m/min) | 0~8 | |
| Servo motor power (kW) | 2.4 | |
| Three-axis positioning accuracy | X/Y/Z/A/B/C (mm) | ±0.02/1000 |
| Three-axis repeat positioning accuracy | X/Y/Z/A/B/C (mm) | ±0.01/1000 |
| Electrical system | CNC system | FAGOR/ KND/ GSK |
| Tool changer | Disc type (Optional) | 24 tool positions |
| Overall size | LxWxH (m) | 3.2x2.2x2.2 |
Product Feature:
1. The machine is primarily composed of the machine bed and longitudinal sliding table, gantry frame and transverse sliding table, vertical sliding ram drilling power head, worktable, electrical control system, hydraulic system, cooling system, chip removal system, centralized lubrication system, and other related components.
2. The machine is designed with a movable gantry structure and a fixed worktable, effectively reducing floor space requirements.
3. The machine bed and worktable are constructed as separate units, enhancing the overall stability of the equipment and effectively minimizing vibration generated during high-speed drilling operations.
4. The longitudinal and transverse movements of the machine are supported by precision roller linear guideways, significantly enhancing the rigidity and stability of the equipment.
5. The spindle motor is driven by a dedicated servo motor through a synchronous belt transmission system, providing stepless speed control and strong low-speed torque. It is capable of handling heavy cutting loads and is well suited for high-speed machining applications using carbide cutting tools.
6. The drilling spindle is equipped with a Taiwan-made precision spindle featuring an internal cooling system. The spindle adopts a BT40 taper interface and is fitted with a butterfly spring automatic tool clamping mechanism. Drills or milling cutters are installed through the drawbar system, while tool release is performed hydraulically, ensuring fast and convenient tool replacement.
The CNC gantry plate cutting machine is a high-performance industrial system specifically engineered for the precise machining of plate-type components and structural parts. It is designed to process workpieces such as flanges, discs, rings, and flat plates, provided that the material thickness remains within the machine’s specified effective machining range.
In steel structure fabrication workshops, this plate drilling machine delivers accurate drilling and milling operations on structural plates and connection components, establishing a solid basis for the reliable assembly of steel frameworks. In the wind power industry, it provides high-precision machining for wind turbine towers and flange components, ensuring these parts can withstand severe environmental conditions such as strong winds and temperature fluctuations. In bridge construction applications, the equipment is used to process bridge girders and supporting elements, enabling durable and stable connections designed to endure dynamic loads over the long service life of the structure.
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