Robotic Automated Welding Production Line for Stiffener Plates
Dedicated to robotic automated welding of steel-structure fillet welds, with a fully self-developed control system whose core algorithms do not depend on external suppliers. Teach-free programming—welding posture, locating posture, and idle-motion paths are all automatically computed by software; the welding tracking system combines feed-forward and feedback to achieve higher welding precision. Ground-rail flexible layout, flexibly placed according to workshop layout.
Built on the company's self-developed core technology and validated by numerous leading steel-structure enterprises
Core algorithms developed in-house, not dependent on external suppliers—controllable iteration.
Welding posture, locating posture, and idle-motion paths all computed and generated by software.
Feed-forward + feedback combined, real-time correction for higher welding precision.
Ground-rail position flexibly installed and placed per workshop layout and production flow.
Flat-right-angle, flat broken-line, and vertical fillet welds can all be welded.
Supports Tekla / SolidWorks 3D modeling offline programming.
From core structure to machining flow—integrated, efficient forming.
Welding posture, locating posture, and idle-motion paths all automatically computed and generated by software.
Tracking system combines feed-forward and feedback for real-time correction, higher welding precision.
Ground-rail position flexibly installed and placed per workshop layout and production flow.
Flat-right-angle, flat broken-line, and vertical fillet welds can all be welded.
For the same production task, the automated solution clearly outperforms in precision, efficiency, and cost.
| Dimension | Manual welding | ★ Robotic automatic welding |
|---|---|---|
| Consistency | Depends on welder skill | High, fully traceable |
| Labor intensity | High | Low, fewer operators |
| Pass rate | Highly variable | Stable ≥99% |
| Safety | Arc-light & fume exposure | Enclosed protection |
| Staffing need | Many | Fewer operators |
A real-workflow record from machine loading to finished product.
Standard workstation configuration; ground rail and stations extensible by component size.
| Technical Parameter | Specification / Index |
|---|---|
| Effective total welding length | 12 m |
| Effective welding width range | 1.2 m |
| Weld form | Flat-right-angle / flat broken-line / vertical fillet weld |
| Ground-rail layout | Customized by workshop layout and production flow |
| Programming method | Teach-free · offline programming |
| Control system | Fully self-developed |
| Modeling software | Tekla / SolidWorks |
| Tracking system | Laser tracking + current tracking |
※ Applicable to: fillet-weld automated welding of relatively open steel structures such as H-section columns, roof beams, crane beams (traveling-rail beams), and machinery equipment base structural parts.
Real conditions · Full-process record · From equipment to finished-product delivery






High-tech enterprise · SRUI SME · Participated in industry standard compilation
High-quality laser applications covering the entire steel-structure processing chain
Get detailed specifications, quotation, and an on-site test-cut invitation for the Rib-plate Robot Automatic Welding Production Line—our engineers will serve you promptly.
Note: Performance data stated on this website—such as efficiency gains, cutting/marking precision, cost-reduction ratios, lens reflectivity, and weld pass rates—are based on internal tests under typical operating conditions and measurements from customer production lines. Actual results may vary with material, thickness, process, and on-site environment. Specific indicators are subject to the actual equipment configuration and the technical agreement.