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CNC Controlled Automatic Wire Mesh Weaving Machine with 1600mm Weaving Width for High Precision Metal Mesh Production

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Anping Weaver Wire Mesh Equipment Manufacturing Co., Ltd.

Country/Region:china

Tel:86--13253256366

Contact Person:
Mrs.Laura
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CNC Controlled Automatic Wire Mesh Weaving Machine with 1600mm Weaving Width for High Precision Metal Mesh Production

Model Number 1300D
Weaving Diameter 0.015-0.14
Condition New
Supply Ability 1000+ /year
Weaving Width 1600mm
Type Automatic
Voltage 380 V 50 Hz
Brand Name APBWR
Delivery Time 14-21Days
Payment Terms T/T
Control CNC
Minimum Order Quantity 1 SET
Warranty 1 Years
Place of Origin CHINA
Productname Wire Mesh Weaving Machine
Certification ISO9001
Packaging Details Pallets or wooden crates as per customer's requirements.
Maximum Width 1320mm
Price $5000-50000
Detailed Product Description
1. Key Features
  • Model: BWR 1300, designed for a maximum weaving width of 1300mm.
  • Full automatic control system with a user-friendly digital operation panel.
  • Shuttleless weft insertion mechanism for stable and high-speed operation.
  • Integrated warp tension control system, supporting various metal wires (stainless steel, copper, aluminum, etc.).
  • Automatic wire breakage detection and emergency stop function.
  • Heavy-duty frame structure with low center of gravity for enhanced stability and low noise operation.
  • Equipped with high-precision rolling mechanism for neat mesh take-up.
2. Core Advantages
  1. High Efficiency & Precision: Advanced servo-driven system enables consistent weaving quality, capable of producing fine and high-density mesh with minimal defects.
  2. Versatility: Supports multiple weaving patterns (plain, twill, Dutch weave) and a wide range of wire diameters, adapting to diverse production needs.
  3. Low Labor Cost: One operator can manage multiple machines due to its high level of automation, reducing manual labor significantly.
  4. Durability & Reliability: Robust industrial-grade components ensure long service life with minimal maintenance requirements.
  5. Energy Saving: Optimized power transmission system reduces energy consumption compared to traditional looms.
3. Main Applications
  • Filtration & Separation: For oil, chemical, pharmaceutical, and food processing industries.
  • Protection & Safety: Used in construction, machinery guards, and security fencing.
  • Screening & Sieving: In mining, agriculture, and environmental engineering.
  • Specialized Fields: Aerospace, electronics, and medical applications requiring high-precision metal mesh.
4. Technology & Working Principle
  • Working Principle: The machine operates based on the fundamental weaving process:
    1. Warp wires are unwound from the warp beam under controlled tension.
    2. The heddle frames lift and lower alternate warp wires to form a "shed".
    3. A rapier head carries the weft wire through the shed in a single pass.
    4. The reed beats the weft wire into place, forming the mesh structure.
    5. The finished mesh is wound onto the take-up roll automatically.
  • Core Technology:
    • Servo Control: Ensures precise synchronization of all movements (shedding, weft insertion, beating-up, take-up).
    • Shuttleless Weft Insertion: Eliminates shuttle wear, reduces noise, and increases speed.
    • Closed-Loop Tension Control: Maintains constant tension on warp wires for uniform mesh density.
5. Production Process
  1. Preparation: Warping the warp wires onto the warp beam; pre-cutting the weft wires to required specifications.
  2. Threading: Drawing the warp wires through the heddles and reed according to the weave pattern.
  3. Setup: Installing the warp beam, setting machine parameters (mesh count, wire speed, take-up tension).
  4. Trial Run: Performing a short test weave to adjust tension, alignment, and quality.
  5. Mass Production: Continuous weaving with periodic quality checks.
  6. Finishing: Unloading the finished mesh roll, cutting to required lengths, and inspection.
6. Operation Methods
  1. Pre-Operation:
    • Check all safety guards and emergency stop functions.
    • Verify oil levels in lubrication points.
    • Confirm warp and weft wire installation.
  2. Startup:
    • Power on the control system and set production parameters.
    • Run the machine at low speed to check for abnormal noise or vibration.
    • Gradually increase speed to the production rate.
  3. During Operation:
    • Monitor the digital control panel for any alarms.
    • Inspect the woven mesh quality regularly.
    • Respond immediately to wire breakage alarms.
  4. Shutdown:
    • Reduce speed gradually before stopping.
    • Clean the machine and record production data.
    • Turn off the power supply.
7. Precautions
  • Safety: Never reach into moving parts during operation; wear protective gloves when handling metal wires.
  • Maintenance: Perform regular lubrication and component checks to prevent wear and tear.
  • Tension Control: Incorrect tension will cause uneven mesh or wire breakage; adjust carefully based on wire material.
  • Environment: Keep the workshop clean and dry to avoid contamination of the metal wires and mesh.
  • Emergency: If the machine stops due to an alarm, address the root cause before restarting.
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