Automatic Carbon Steel Construction Plates Press Brake CNC Angle Steel Fire Bar Iron Bending Machine
| MOQ: | 1 set |
| Price: | Negotiable |
| Standard Packaging: | Wooden case |
| Delivery Period: | 60 days |
| Payment Method: | L/C, T/T |
| Supply Capacity: | 200 sets/year |
Automatic Carbon Steel Construction Plates Press Brake CNC Angle Steel Fire Bar Iron Bending Machine
Product Introduction:
Primarily employed for the bending of angle steel and plates.
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 outfitted with a numerically controlled programmable controller, incorporating a touchscreen interface for effortless data input and real-time status monitoring, ensuring ease of operation.
2. It incorporates cutting-edge ultrasonic frequency induction heating technology, enhancing production efficiency, lowering operational costs, and fostering environmental sustainability within the manufacturing environment.
3. This machine offers exceptional versatility, functioning without the requirement for additional tools or molds.
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4. CNC control is implemented to precisely regulate the molding angle of the workpiece, ensuring uniform product quality and maximizing production efficiency.
5. The system is equipped with a specialized hydraulic and electrical control configuration, simplifying operations for enhanced usability while ensuring safety and dependability, thus driving superior production efficiency.
6. Cold pressing is applicable for workpieces with dimensions smaller than L100×L100×10 and a bending angle of less than 5°.
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7. Processing Speed: The typical cycle time for cold pressing is 10 seconds per operation, while the heating process takes 120 seconds per cycle (dependent on material type and workpiece specifications). The workpiece is processed once the heating temperature reaches 800°C (or red-hot), with the exact temperature and bending angle determined by the material and specific requirements.
8. During both the heating and processing stages, parameters are preconfigured, and the cycle is initiated either by pressing the start button or activating the footswitch. The process involves fully automated heating, followed by the completion of heating, pressing the workpiece, lifting the head, and removing the processed workpiece.
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9. Throughout the heating and cold pressing process, parameters are preconfigured, allowing for immediate cold pressing without the need for the pressing head to return to its initial position. The lower pressing mold raises by 100mm, facilitating the effortless removal of the workpiece while ensuring high operational efficiency.
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These test specimens, derived from the production line of angle steel punching, cutting, and marking machinery, adhere to the standard specifications and processing conditions typically employed in the angle steel tower industry. They enable users to directly evaluate the equipment’s processing quality, precision, and workmanship—critical performance metrics that highlight the equipment's capability to meet the rigorous operational demands of angle steel tower manufacturing.
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In the construction of ultra-high voltage (UHV) transmission lines, where transmission towers are subjected to extreme weather conditions and significant structural stresses, this equipment is essential for processing the angle steel components that form the primary load-bearing structure of the towers. It consistently performs drilling and stamping operations on angle steel used in the tower bodies, cross-arms, and other critical structural elements, ensuring precise machining and secure structural connections. This process maintains the overall integrity of the transmission towers, which is crucial for the safe and uninterrupted operation of UHV power transmission systems.