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    Electric Section Pipe Bending Machine, Voltage : 220-380V

    • MOQ1 Piece
    • Driven TypeElectric
    • Voltage220-380V
    • ConditionNew
    • ApplicationPipe Bending
    • Supply TypeManufacturer, Exporter, Supplier
    • Preferred Buyer Location All over the world
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    • calendar Member Since 12 Years
    • building Nature of Business Supplier
    • gst icon GST No. 27AKXPJ2352B1Z5

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    • Country of OriginIndia
    • Voltage220-380V
    • ApplicationPipe Bending
    • ConditionNew
    • Driven TypeElectric
    • Brand NameUjwal Engineering

    A section pipe bending machine, also known as a section bender or profile bending machine, is used to bend pipes, tubes, and other metal profiles into curved shapes or arcs. This type of machine is primarily used in industries that require curved or circular sections of pipes or metal, such as construction, shipbuilding, and metal fabrication.

     

    Key Components:

    • Rollers or Dies: These are the tools that the pipe or profile passes through. Typically, there are three rollers arranged in a pyramid or triangle, and they are adjustable to control the radius of the bend.
    • Hydraulic or Electric Drive: The machine is powered either hydraulically or electrically to rotate the rollers and push the pipe through to achieve the desired bend.
    • Frame: A strong, rigid structure that holds the rollers in place and supports the machine during the bending process.
    • Control Panel: Used to set parameters such as roller positioning, speed, and bending angle. Adjustable Rollers: The position of the rollers can be adjusted depending on the size of the section being bent and the desired bend radius.

     

    Types of Section Pipe Bending Machines:

    • Manual Section Bending Machine: Operated manually, often used for lighter materials and smaller projects.
    • Hydraulic Section Bending Machine: Uses hydraulic power to bend larger or heavier sections of pipe or metal profiles.
    • CNC Section Bending Machine: Computer-controlled for high precision and automation, used in large-scale production settings where repeatable accuracy is critical.

     

    Features:

    • Multi-Directional Bending: Section benders can bend pipes in both vertical and horizontal planes, allowing for complex shapes and arcs.
    • Bending Capacity: Can handle a wide variety of profile shapes, including round pipes, square tubes, rectangular sections, and other custom profiles.
    • Variable Radius: By adjusting the rollers, operators can achieve different radii and bend angles to suit the specific needs of the project.
    • Versatility: Section benders can work with various materials, such as steel, stainless steel, aluminum, and brass, making them versatile for different industries.

     

    Applications:

    • Architectural Structures: For bending metal pipes into arches, railings, and decorative metalwork in buildings.
    • Shipbuilding: Used to form curved metal sections required for ship hulls and frames.
    • Automotive: For bending exhaust pipes, roll cages, and chassis components.Furniture Manufacturing: For creating curved metal furniture components like chair frames and tables.
    • Structural Engineering: Used for making curved beams and sections used in construction projects, such as bridges, stadiums, and tunnels.

     

    Advantages:

    • High Precision: Machines, especially CNC models, can produce very accurate bends without deforming the pipe or metal profile.
    • Versatility: Can bend a variety of pipe sizes, profiles, and materials, making them useful in multiple industries.
    • Efficient Bending: Hydraulic and CNC models can bend large sections quickly, improving productivity in large-scale projects.
    • Reduced Material Waste: With precise control, section benders help reduce the risk of material wastage due to inaccurate bends or deformations.

     

    How It Works:

    • The pipe or profile is placed between the three rollers.
    • The two outer rollers push against the pipe while the middle roller exerts pressure, bending the pipe as it moves through the machine.
    • By adjusting the distance between the rollers and controlling the force, the operator can control the radius and angle of the bend.


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