Steel Bending CNC Angle Punching Machine 90 Degree Plate Bending Adjustable Opening Closing Range
| MOQ: | 1 set |
| Price: | Negotiable |
| Standard Packaging: | Wooden case |
| Delivery Period: | 60 days |
| Payment Method: | L/C, T/T |
| Supply Capacity: | 200 sets/year |
Steel Bending CNC Angle Punching Machine 90 Degree Plate Bending Adjustable Opening Closing Range
Product Introduction:
The angle steel bending machine is mainly used for angle steel bending and sheet bending, and is mainly used for power towers, communication towers, power fittings, steel structures, storage shelves and other industries.
Product configuration:
| Model | HQ250-700 | |
| Oil Tank Pressure (kN) | 1600 | |
| Outside double-sided bending size (Heel up ) (mm) | L80*7~L250*32 | |
| Outward double-sided bending degree for angles (°) | 30° | |
| Angle steel forward single bending range (mm) | L80*7~L200*20 | |
| Angle steel forward single bending degree (°) | 20° | |
| Bending Plate thickness (mm) | 2~16 | |
| Bending Plate width (mm) | 700 | |
| Bending degree for plates (°) | 90° | |
| Angle opening & closing range (mm) | L80*7~L200*16 | |
| Angle opening & closing degree (°) | 16° | |
| Oil Tank Stroke (mm) | 800 | |
| Max.opening height (mm) | 1300 | |
| Motor Power (kW) | 15 | |
| Heating power (kW) | 60*2 | |
| CNC Axis | 3 | |
| Oil tank capacity (L) | 630 | |
| Overall size (m) | 3.5x4.5x4.1 | |
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Product Features:
1. The system is equipped with a numerically controlled programmable controller, featuring a touchscreen interface that allows for seamless data input and real-time status tracking, thereby ensuring operational simplicity.
2. It integrates advanced ultrasonic frequency induction heating technology, which significantly improves production efficiency, reduces operational expenses, and promotes environmental sustainability within the manufacturing process.
3. This machine provides outstanding flexibility, operating without the need for supplementary tools or molds.
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4. CNC control is employed to meticulously manage the molding angle of the workpiece, ensuring consistent product quality and optimizing production efficiency.
5. The system is outfitted with a tailored hydraulic and electrical control configuration, streamlining operations for improved user-friendliness while maintaining safety and reliability, thereby enhancing overall production efficiency.
6. Cold pressing is suitable for workpieces with dimensions up to L100×L100×10 and a bending angle not exceeding 5°.
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7. Processing Speed: The standard cycle time for cold pressing is 10 seconds per operation, while the heating phase lasts 120 seconds per cycle (depending on the material type and workpiece specifications). The workpiece is processed once the heating temperature reaches 800°C (or a red-hot state), with the precise temperature and bending angle determined by the material and specific requirements.
8. Throughout both the heating and processing stages, parameters are pre-set, and the cycle is initiated either by pressing the start button or engaging the footswitch. The process consists of fully automated heating, followed by completion of the heating phase, pressing the workpiece, raising the head, and removing the processed workpiece.
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9. During both the heating and cold pressing phases, parameters are pre-set, enabling immediate cold pressing without requiring the pressing head to return to its starting position. The lower pressing mold elevates by 100mm, ensuring the smooth removal of the workpiece while maintaining high operational efficiency.
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These test specimens, sourced from the production line of angle steel punching, cutting, and marking machinery, conform to the standard specifications and processing conditions commonly used in the angle steel tower industry. They allow users to directly assess the equipment's processing quality, accuracy, and craftsmanship—key performance indicators that demonstrate the equipment's ability to meet the stringent operational requirements of angle steel tower production.
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In the construction of ultra-high voltage (UHV) transmission lines, where transmission towers are exposed to severe weather conditions and substantial structural stresses, this equipment is vital for processing the angle steel components that constitute the primary load-bearing structure of the towers. It consistently performs drilling and stamping operations on the angle steel used in tower bodies, cross-arms, and other key structural elements, ensuring accurate machining and secure structural connections. This process upholds the overall integrity of the transmission towers, which is essential for the safe and continuous operation of UHV power transmission systems.