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Product Description
Scope of work and installation diagram

Detailed Product Description
Built for modern fabrication lines, the 6 Axis 2000mm ArmSpan MlG Industrial Welding Robot combines working range, movement speed, and repeatable positioning in a compact robotic welding platform. Its vertical articulated structure gives manufacturers the flexibility needed to weld mild steel, carbon steel, and similar metal assemblies where consistent torch travel and stable path control are essential. For workshops seeking higher throughput without sacrificing weld quality, this robot offers a practical balance between reach, payload, and installation adaptability.
With a maximum reach of 2127 mm, the robot can cover large fixtures, deep work areas, and multi-station layouts more efficiently than shorter-arm systems. The 6-axis architecture supports smooth orientation changes around complex joints, corners, fillet lines, and curved weld seams. A payload capacity of 6 kg makes it suitable for carrying welding torches and related end-of-arm tooling used in automated MIG welding applications. Its repeatability of ±0.08 mm helps maintain process consistency, especially where identical parts are produced in batches and dimensional stability is critical.
Long working envelope for wider fixtures and larger welded parts
6-axis movement for improved access to difficult weld positions
Stable repeatability for repeat production and reduced variation
Fast axis speeds that support efficient cycle performance
Multiple mounting options for flexible cell design
IP65-equivalent protection for demanding industrial environments
Each axis is configured to support responsive and coordinated motion. J1 provides ±175° travel for broad base rotation, while J2 and J3 enable vertical and forward positioning across the work zone. The arm axes, including J4 through J6, are optimized for torch angle adjustment and seam tracking posture. This combination allows the system to approach welds from different directions, reducing the need to reposition parts manually and improving fixture efficiency. Faster wrist-axis movement is particularly useful when weld paths require frequent orientation changes.
This model is well suited to manufacturers that produce structural steel components, machinery frames, metal cabinets, brackets, agricultural equipment parts, vehicle subassemblies, and general fabricated products. It can also support contract fabrication businesses that need a versatile welding robot for mixed production tasks. Because it can be installed on the ground, ceiling, or wall, it is easier to integrate into space-sensitive production lines where floor area must be used efficiently.
Automated MIG welding of medium to large fabricated parts
Multi-pass welding processes requiring stable path repetition
Production cells with rotating positioners or fixed fixtures
Facilities upgrading from manual welding to robotic automation
Factories seeking more uniform weld appearance and better productivity
products faq
A welding robot is an automated system consisting of a robotic arm, welding power source, wire feeder, and control unit. It follows pre-programmed paths to position the welding torch and execute welds with high precision. The robot can perform various welding processes including MIG/MAG, TIG, and plasma welding, with motion controlled by a PLC or CNC system that ensures repeatable accuracy.
Welding robots offer several key benefits:
Consistent quality – eliminates human error and fatigue
High productivity – operates continuously with minimal downtime
Labor savings – reduces dependence on skilled welders
Safety – removes operators from hazardous environments (fumes, heat, arc flash)
Precision – achieves repeatable accuracy within ±0.1mm
Welding robots are highly versatile and can handle a wide range of workpieces, including:
Structural steel components (H-beams, columns, frames)
Pipe and tube assemblies
Pressure vessels and tanks
Automotive and machinery parts
Custom fabricated assemblies
The robot can be equipped with positioners, rotary tables, and tracking systems to accommodate complex geometries and large components.
Modern welding robots feature user-friendly programming interfaces, including:
Teach pendant – operators guide the robot through the weld path, which is then stored as a program
Offline programming – allows programming from a computer without interrupting production
Intuitive software – simplifies parameter setting for speed, voltage, current, and weave patterns
Operators with basic welding knowledge can typically become proficient after short training.
Routine maintenance includes:
Checking and replacing welding consumables (contact tips, nozzles, liners)
Inspecting cables, hoses, and connections for wear
Lubricating robotic arm joints and gearboxes
Cleaning protective glass and sensors
Updating software and backing up programs
Regular preventive maintenance schedules help ensure long-term reliability and minimize production downtime. Our service team provides comprehensive technical support and spare parts availability.