Robotic Welding Solutions for the Petrochemical Industry | AGR Robotics

Precision robotic welding for pressure vessels, burner housings, and structural frames, ensuring safety, consistency, and performance in petrochemical equipment fabrication.

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The petrochemical industry requires welding solutions that meet stringent safety, precision, and durability standards for pressure-bearing and high-temperature components.


To address these challenges, AGR Robotics developed automated welding systems designed for critical components such as pressure vessels, burner housings, and support frames.


Each system integrates high-performance welding robots, adaptive seam tracking, and intelligent heat control, ensuring uniform penetration and reliable joint integrity across thick-wall and complex geometries.


Advanced servo positioners and modular fixtures support flexible production layouts and rapid changeovers for various vessel sizes.


These solutions enhance productivity, reduce human exposure to hazardous environments, and maintain consistent welding quality — critical for safe, long-term petrochemical operations.


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AGR Solution Summary | AGR Robotics


AGR delivered a robotic welding station for burner shell fabrication, engineered for speed, accuracy, and multi-size flexibility. 


The system integrates intelligent motion control, advanced arc management, and safety automation to ensure consistent weld quality and efficient production for petrochemical components.


Key Features:

• FANUC M-10iD/8L welding robot with gas-shielded arc process, providing precise, stable, and repeatable weld performance.


• Rotary positioner with a clearly defined safe loading zone, allowing continuous operation and improved workflow safety.


• Pulse-controlled OTC welding source ensures low spatter, stable arcs, and clean, high-quality seams across various shell diameters.


• Integrated light curtain protection enables full-process automation while maintaining operator safety and system reliability.


• Multi-size burner shell compatibility, with rapid program switching and reduced manual intervention for high production adaptability.


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