Intelligent Seam Ironing Machine for Sheet Fabrics with Low Power Consumption
Automated Precision Seam Pressing
The XST-261-8WT Intelligent Seam Ironing Machine represents a breakthrough in automated fabric processing. This fully self-developed system combines intelligent temperature control with steam penetration technology to eliminate traditional manual ironing challenges.
Key Advantages
- High-Speed Processing: Handles 100–150 meters of seam per minute with simultaneous upper and lower fabric pressing
- Fabric Protection: Intelligent temperature control prevents scorching, shine marks, and fiber shrinkage
- Operator Safety: Internal insulation system protects against burns and prevents fabric yellowing
- Easy Operation: Intuitive interface requires only 3 minutes of training for new operators
- Water Stain Prevention: Dedicated condensate drainage system ensures dry, stable steam output
- Energy Efficient: 400W total power consumption – approximately one-tenth of traditional equipment
- Rapid Startup: Reaches operating temperature in 8–10 seconds with synchronized steam delivery
Applications
Ideal for high-end tailored suits, dress shirts, professional uniforms, trench coats, leather jackets, and denim. Features automatic seam opening and pulling for directional ease with lightweight sheet fabrics.
Technical Specifications
| Parameter |
Value |
| Brand |
DRESSED SANTO |
| Model |
XST-261-8WT |
| Ironing Speed |
100m/min (speed adjustable) |
| Ironing Width |
10-20 mm |
| Feeding Method |
Top/bottom dual feeding |
| Ironing Stroke |
Continuous |
| Air Pressure |
0.6-0.7 Mpa |
| Presser Foot Temperature |
150-250℃ (adjustable according to fabric) |
| Voltage |
AC 220V±10%, 50/60Hz |
| Motor Power |
100W servo motor |
| Patent No. |
ZL 2024 2 1833237.3 (Movable Feeding Device) |
World's First Innovation: The XST-261-8WT is the first device to integrate automated seam opening, steam pressing, and high-speed feeding into a single in-house-developed machine, delivering uniform pressing width and durable seam adherence without human variability.