Rollling shutter roll forming machine in India

Condition
New
Listing ID
42134
Location
India

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A Rolling Shutter Door Roll Forming Machine is specifically designed to create the slat profiles for rolling shutter doors. These doors are widely used in commercial, industrial, and residential applications for their durability, security, and ease of operation. The roll forming process involves continuously bending a long strip of metal, usually steel, through a series of contoured rollers to achieve the desired shutter profile. This machine not only enhances production speed and quality but also ensures consistency in shutter panel profiles, making it ideal for large-scale manufacturing.

The rolling shutter door roll forming machine typically includes a decoiler, a feeding guide, a roll forming unit, a cutting unit, and a control system. It is highly customizable, allowing manufacturers to produce different sizes and shapes of shutter door slats based on specific requirements. Some models also come with additional components such as punching systems for ventilation slots or embossing systems to add texture to the slats.

Specifications

  1. Roller Materials:

    • High-quality steel or GCr15 alloy steel with hard chrome plating for durability.
    • Hardened to a specific level to withstand continuous operation.
  2. Profile Range:

    • Customizable to accommodate different slat designs, including flat, curved, and vented designs.
    • Profile width varies, with the most common range being between 60mm to 120mm, depending on requirements.
  3. Material Thickness:

    • Typically ranges from 0.3mm to 1.2mm.
    • Accepts materials such as galvanized steel, pre-painted steel, aluminum, and stainless steel.
  4. Forming Speed:

    • Typically between 10-30 meters per minute, adjustable depending on requirements.
    • Higher-end models can achieve up to 40-50 meters per minute.
  5. Frame Structure:

    • Heavy-duty steel frame for stability and durability.
    • Often welded and stress-relieved to handle high-speed operation.
  6. Cutting System:

    • Hydraulic or servo-driven cutting systems for precise, burr-free cuts.
    • Flying cutting mechanism on some models to ensure continuous production without stopping the machine.
  7. Control System:

    • PLC control system with HMI (Human Machine Interface) for easy operation.
    • Settings for profile dimensions, cutting lengths, and production counts are programmable.
  8. Power Supply:

    • Ranges from 380V/50Hz to 460V/60Hz, depending on the machine model and region.
    • Equipped with efficient motors (typically 5-15kW depending on the size and capacity of the machine).
  9. Dimensions and Weight:

    • Length: 8m - 12m depending on the configuration.
    • Weight: Approximately 6-10 tons, depending on the machine’s design and features.
  10. Optional Extras:

    • Punching systems for ventilation slots.
    • Embossing rollers for textured slats.
    • Automatic stackers and coil handling systems.
    • Remote PLC systems for centralized control.

Setup and Installation

Setting up a rolling shutter door roll forming machine requires a level, reinforced floor to ensure machine stability. The setup typically includes positioning the decoiler, feeding guide, roll forming section, and cutting unit in a linear or semi-linear arrangement to facilitate smooth material flow. After installation, calibrate the rollers and align the cutting unit to ensure profile accuracy. Most manufacturers provide a user manual and technical support for setup and installation.

Maintenance Requirements

Regular maintenance of the rolling shutter door roll forming machine ensures longevity and efficiency. Essential maintenance tasks include:

  • Lubricating the rollers, chains, and bearings to reduce wear.
  • Checking and adjusting roller alignment regularly to prevent profile distortion.
  • Inspecting the cutting blade for sharpness to ensure clean cuts.
  • Cleaning the control panel and keeping all electrical components free from dust.

Question and Answer Section

Q1: What types of materials can be used in a rolling shutter door roll forming machine?

  • A1: These machines can process a variety of materials, including galvanized steel, pre-painted steel, aluminum, and stainless steel. The material type generally depends on the desired durability, appearance, and usage of the finished shutter doors.

Q2: Can the machine produce different shutter profiles?

  • A2: Yes, the rolling shutter door roll forming machine is often customizable to produce different profiles, including flat, curved, and vented slats. The machine can also incorporate punching or embossing features for ventilation and texturing.

Q3: What is the average production speed of this machine?

  • A3: Most rolling shutter door roll forming machines operate at speeds ranging from 10-30 meters per minute. Higher-end models with advanced control systems may achieve speeds up to 40-50 meters per minute.

Q4: What are the power requirements for this machine?

  • A4: Power requirements vary depending on the model, but they typically range from 380V/50Hz to 460V/60Hz. It’s essential to check the specifications based on your region and ensure that the power supply is compatible.

Q5: Is it difficult to operate and maintain a rolling shutter door roll forming machine?

  • A5: These machines are generally user-friendly, with PLC control systems for easy operation. Regular maintenance, such as lubrication and alignment checks, is essential for optimal performance. Manufacturers often provide training and support to assist with operation and maintenance.

Q6: How does the cutting mechanism work?

  • A6: The machine uses either a hydraulic or servo-driven cutting system to create precise cuts based on the programmed length. Some machines feature a flying cutting system, allowing cuts to be made without stopping production, thus increasing efficiency.

Q7: What optional extras can enhance the machine's functionality?

  • A7: Optional extras include punching systems for creating ventilation slots, embossing rollers for textured profiles, automatic stackers, remote PLC systems, and coil handling systems. These additions can enhance the versatility and automation of the machine, improving productivity.

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