6 Axis 1500mm ArmSpan Industrial Welding Robot

6 Axis 1500mm ArmSpan Industrial Welding Robot

With a maximum reach of 1594 mm, the robot is well suited to medium-scale welding cells where coverage matters.
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6 Axis 1500mm ArmSpan Industrial Welding Robot

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Product Description

Name

Welding robot


Range


of


motion

basic axis

J1

±170°

Max

speed


basic axis

J1

259.3°/S

Type

Vertical joint 6 degrees

J2

+64°-130°

J2

160°/S

The main purpose

Weld

J3

±80°

J3

222.2°/S

Specification

BR10iA-14


arm

axis

J4

±150°


arm

axis

J4

294.1°/S

Max load weight

6KG

J5

+130°-105°

J5

294.1°/S

Position repeatability

±0.08mm

J6

±220°

J6

426.7°/S

Action range

Attached drawing

Maximum reach

1594mm

Installation

Ground,ceiling wall mounted

Battery capacity

2KVA

Conditions

0-45℃,20-80%RH(no condensation)

Body weight

178KG

Protection class

Equivalent to IP65


Scope of work and installation diagram

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Detailed Product Description

Designed for manufacturers that require consistent weld quality and efficient motion control, this six-axis robotic system offers the flexibility needed for modern automated production. Its articulated structure supports smooth multi-angle movement, helping operators handle complex welding paths, tight workspaces, and changing fixture layouts with greater confidence. For factories seeking reliable automation without unnecessary complexity, this model provides a practical balance of reach, precision, and installation adaptability.

With a maximum reach of 1594 mm, the robot is well suited to medium-scale welding cells where coverage matters. The extended working envelope allows it to access a wide range of joints and part geometries while reducing the need to reposition workpieces. This can help streamline workflow planning, especially in production lines where takt time, repeatability, and fixture efficiency are closely monitored. The six-axis configuration also improves positioning freedom, making it easier to approach weld seams from optimal angles.

Precision for Demanding Weld Quality

Repeatability of ±0.08 mm is a key advantage in applications where process consistency directly affects product quality. In robotic welding, accurate path reproduction supports more stable arc behavior, cleaner seam appearance, and reduced variation across batches. This level of control is especially valuable for manufacturers producing metal components that must meet strict dimensional or visual standards. Whether the task involves repetitive fillet welds or more intricate weld trajectories, dependable motion repeatability contributes to better process stability over time.

The 6 kg payload is appropriate for common welding tools and related end-of-arm equipment used in automated cells. It allows the robot to support practical welding integration while maintaining responsive motion performance. In real production environments, this contributes to stable handling during programmed cycles and helps ensure that the welding torch can follow defined paths accurately. For users focused on improving line consistency, this combination of payload and precision offers meaningful operational value.

Flexible Installation for Efficient Cell Design

One of the strongest features of this robotic system is its flexible mounting capability. It can be installed on the floor, suspended from the ceiling, or fixed to a wall depending on plant layout and process requirements. This gives integrators and production engineers more freedom when designing welding cells around part flow, operator access, safety fencing, and auxiliary equipment. In facilities where floor space is limited, ceiling or wall installation can help free up the work area and improve material movement around the station.

Installation flexibility is also important when adapting automation to existing workshops rather than building entirely new lines. Manufacturers often need equipment that fits around current fixtures, conveyors, or positioning devices. A robot that supports multiple mounting methods can simplify retrofitting and reduce layout compromises. This makes it a practical option for both new automation projects and upgrades to established welding operations.

Typical Application Benefits

  • Supports precise and repeatable weld path execution

  • Improves access to complex parts through six-axis articulation

  • Helps optimize workspace through floor, wall, or ceiling mounting

  • Provides stable operation for demanding industrial welding tasks

  • Reduces dependence on manual repositioning in repetitive production

Suitable Production Environments

This equipment is suitable for industrial users that need dependable robotic welding in fabrication and manufacturing settings. It can be considered for metalworking plants, component manufacturers, machinery producers, and workshops aiming to improve process consistency through automation. It is particularly relevant where repeat welding cycles, stable output, and space-conscious installation are important factors in equipment selection.

products faq

A:

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.

A:

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

A:

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.

A:

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.

A:

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.