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Product Details:
Payment & Shipping Terms:
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| Condition: | New | Max. Size Width X Height: | 1250x600mm |
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| Min. Size Width X Height: | 200×75mm | Max Beam Length: | 12000mm |
| Main Spindle: | 3 | Main Spindle Model: | BT40 |
| Motor Powerr : | 3*11KW | Spindle Speed: | 200~3000 R/min |
Industrial High-Speed CNC H Beam Drilling Machine With Three Independent Spindles
Product Introduction:
This CNC Beam Drilling Line is specially engineered for high-precision drilling applications on H-beam structural components. Equipped with three high-speed precision spindle units, the machine delivers efficient multi-directional drilling performance with excellent machining accuracy and operational convenience. As a reliable and advanced processing solution for the steel fabrication industry, it is extensively applied in various fields, including construction steel structures, bridge engineering, transmission tower manufacturing, and large-scale grid structure projects.
Product configuration information:
| H beam parameter | Max. Size Width x Height | 1250x600mm | |
| Min. Size Width x Height | 200×75mm | ||
| Max. Beam Length | 12000mm | ||
| Main spindle | Qty. | 3 | |
| Model | BT40 | ||
| Motor power | 3x11 kW | ||
| Spindle speed | 200~3000 r/min | ||
| Max. Hole diameter | φ40 mm | ||
| Motor power | Feed servo motor power | 2x3 kW | |
| Positioning servo motor power | 2x3 kW | ||
| Processing Accuracy | Hole distance deviation | Two holes within 1 meter | ±0.5 |
| The allowable deviation value increases by ±0.2mm for every additional 1 meter of the hole distance, and the maximum does not exceed ±2mm | |||
| End margin deviation | ±1.0 mm | ||
| Hydraulic system | Hydraulic pump pressure | 7 MPa | |
| Oil pump motor power | 7kW | ||
| Electrical System | Control method | PLC | |
| Number of CNC axes | 7 | ||
| Overall size (L x W x H) | 32000x6200x4000 | ||
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Product Features
1. The 3D CNC H-beam drilling and cutting machine is composed of a heavy-duty machine frame, CNC feeding system, material conveying system, electrical control system, hydraulic system, cooling system, lubrication system, scrap collection unit, and other auxiliary components. Featuring a fixed machine bed combined with a movable workpiece structure, the equipment is specifically optimized for machining large-size H-beams. It supports continuous automated production and provides outstanding processing efficiency and operational stability.
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2. The machine structure consists of the main bed, CNC sliding table assemblies, supporting mechanisms, upper clamping units, side clamping units, and workpiece detection systems. The CNC sliding assemblies include fixed-side slides, movable-side slides, and upper spindle sliding units. Developed specifically for H-beam machining, each sliding assembly integrates a sliding plate, slide base, spindle headstock, high-speed mechanical spindle, tool cylinder, variable-frequency motor, servo motor, linear guideways, and precision lead screws, ensuring accurate positioning and stable machining performance.
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3. The CNC feeding system is composed of support brackets, rack-and-pinion transmission mechanisms, servo motors, reducers, and feeding manipulators. Driven by the servo motor, the manipulator accurately transfers H-beam workpieces along the X-axis direction, ensuring precise feeding control and reliable positioning throughout the machining process.
4. The material handling system includes both an in-feed conveyor and an out-feed conveyor. The in-feed conveyor consists of conveyor supports, supporting rollers, and lateral positioning mechanisms, which are designed to transport steel profiles, achieve accurate Y-axis positioning, and cooperate with the CNC feeding system for efficient and stable material loading. The out-feed conveyor is composed of discharge supports and roller assemblies, providing smooth transportation of completed workpieces after machining.
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5. The cooling system adopts a combination of internal and external cooling methods, utilizing oil mist lubrication technology for effective heat dissipation during drilling operations. This advanced cooling solution reduces coolant consumption, improves production cost efficiency, supports environmentally friendly manufacturing, and extends drill tool service life by minimizing thermal wear.
6. The hydraulic system provides reliable power support for the upper clamping mechanism, side clamping mechanism, tool cylinders, and other hydraulic actuated components, ensuring stable workpiece fixation and dependable machine operation.
7. The pneumatic system supplies compressed air power for the feeding manipulator, detection cylinders, and other pneumatic-driven components, ensuring fast response and reliable automation performance.
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8. The lubrication system combines centralized automatic lubrication with manual lubrication methods. The centralized lubrication system provides timely and precise lubrication for critical moving components, including linear guideways and lead screw assemblies, effectively reducing mechanical wear and maintaining long-term machining accuracy.
9. The machine control system integrates an industrial computer, PLC controller, and related control components to provide intelligent and automated operation. Processing programs can be generated by importing CAD drawings or entering machining parameters through USB interfaces or keyboard input. Programs can be stored, recalled, displayed, and transferred according to part numbers whenever required. The system also supports manual adjustment of individual machining parameters while enabling complete automatic execution of the entire production cycle, significantly improving operational flexibility and manufacturing efficiency.
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During sample demonstration sessions, the CNC beam and sheet metal drilling, marking, and shearing machine effectively demonstrates its processing capabilities when working with standard H-beam samples—featuring varying flange widths and web thicknesses—as well as channel steel samples of different sizes. The specimens showcased in these demonstrations clearly highlight the equipment's ability to achieve precise hole placement, clean tapped threads, and well-defined marking patterns, thereby thoroughly illustrating its exceptional accuracy and reliability in real-world applications.
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The High-Speed CNC H-Beam Drilling, Marking, and Shearing Machine is primarily utilized in steel structure manufacturing facilities and bridge construction projects. In steel structure workshops, it ensures precise machining of H-beams used in frameworks and support structures, providing a strong foundation for the stable assembly of steel constructions. In bridge construction, the equipment performs high-precision drilling operations on H-beams, improving the structural integrity of bridges and enabling them to effectively withstand long-term loads. With its exceptional operational efficiency, this machine offers reliable support for these essential infrastructure sectors, contributing to the smooth progress of related projects.
Contact Person: Gaven
Tel: +86-13306412803
Fax: +86-531-5553-1208