LX-Z6
Automatic Laser Pocket Welting Machine
Revolutionize Your Pocket Production
The LUNEX Automatic Laser Pocket Welting Machine is an advanced, fully automated solution designed to produce high-quality welt pockets with exceptional precision and speed. Combining laser positioning, servo control, and intelligent automation, it significantly reduces manual labour while ensuring consistent pocket quality for every garment.
- Fully Automatic Pocket Processing
- Laser Positioning Technology
- High-Speed Production
- Precision Servo Control
- Superior Stitch Quality
- Intelligent Fabric Alignment
- Easy Operation
- Low Maintenance
The LUNEX Thread Sucking Machine is manufactured using high-quality industrial components for long-lasting performance and reliable operation.
Premium Components
Component | Specification |
|---|---|
Head Sewing Speed | Up to 3000 rpm |
Needle System | Groz-Beckert DP × 17 |
Needle Pitch | 0.1–12.7 mm |
Pressure Foot Lift | 28 mm |
Pocket Length | 35–207 mm |
Pocket Width | 8–35 mm |
Pocket Sewing Speed | 13–19 sec/piece |
Folding Method | Automatic Double/Four Fold |
Drive System | Direct Drive Servo Motor |
Laser Tube | 120W |
Power Supply | AC 220V |
Air Pressure | 0.6 MPa |
Net Weight | 720 kg |
Advanced Features
- Fully Automated Pocket Processing
Completes the complete pocket welting process in a single automated cycle, improving efficiency and reducing operator dependency. - High-Speed Performance
Designed for continuous industrial production with significantly faster processing compared to conventional methods. - Laser Positioning System
Ensures precise material alignment for accurate and repeatable pocket placement. - Intelligent Fabric Handling
Automatic folding and positioning system delivers consistent pocket formation with minimal fabric distortion. - Servo Drive Technology
Advanced servo motors provide smooth motion, high precision, and reliable long-term performance. - Easy Operation
User-friendly touchscreen interface simplifies setup and operation while reducing training time.