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Precisely Cut Outline of Graphic: Oscillating Knife Cutter with CCD Mark Recognition System [Video]

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Image Recognition in Marketing

Precisely Cut Outline of Graphic: Oscillating Knife Cutter with CCD Mark Recognition System

How Oscillating Knife Cutting Machines with CCD Mark Point Recognition Systems Work
Oscillating knife cutting machines equipped with CCD Mark point recognition systems combine high-precision cutting technology with advanced visual recognition, enabling more accurate and efficient automated cutting. Here’s how these systems work:

1. Design and Preparation
Designers create the required cutting patterns using CAD software and add Mark points to the design. These Mark points are used for calibration and alignment during the cutting process.

2. Material Preparation
The material with Mark points is placed on the working platform of the oscillating knife cutting machine. Mark points on the material are typically conspicuous markers used for machine vision system recognition.

3. CCD Camera Recognition of Mark Points
The cutting machine is equipped with a CCD camera system. When the material is placed on the worktable, the CCD camera scans the material surface to recognize and locate the Mark points. The camera captures images, and the vision processing software analyzes the positions of the Mark points.

4. Coordinate Calibration and Alignment
After recognizing the Mark points, the system compares the actual positions of the Mark points with those in the design. The CNC system automatically adjusts the cutting path based on the deviation of the Mark points to ensure cutting accuracy and alignment.

5. Cutting Path Planning
Once coordinate calibration is complete, the CNC system re-plans the cutting path based on the calibrated Mark point positions. The system automatically optimizes the cutting path to ensure efficiency and precision.

6. Automatic Cutting
The oscillating knife cutting machine starts cutting, with the knife moving along the planned path under high-frequency vibration to perform cutting and slotting tasks. The CCD camera continuously monitors the cutting process to ensure the accuracy of the cutting path.

7. Real-Time Monitoring and Adjustment
During the cutting process, the CCD camera system can monitor the material and Mark points in real-time. If the material shifts or errors occur, the system can automatically adjust the cutting path to maintain the precision of the final product.

8. Completion and Unloading
After cutting is complete, the system automatically separates the finished product from the waste material and transfers the finished product to the unloading area. Operators can inspect and collect the finished pieces.

Advantages
High Precision: The CCD Mark point recognition system ensures accurate alignment for each cut, reducing errors.
High Efficiency: Automatic calibration and path optimization enhance cutting efficiency and reduce manual adjustment time.
Flexibility: Capable of handling various materials and complex design patterns, meeting diverse production needs.
Reduced Material Waste: Precise cutting path planning minimizes material waste and improves material utilization.
Summary
Oscillating knife cutting machines with CCD Mark point recognition systems achieve higher cutting precision and efficiency by combining visual recognition and high-precision cutting technology. These systems are highly valuable in modern industrial production, particularly in industries requiring high-precision and complex pattern cutting.
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If you would like to know more about AMOR oscillating knife cutting machines, please contact us:
Web:https://www.cncamor.com
Email: amorsales@amorcnclaser.com;
WhatsApp:86 18863504017.

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