
Five-axis linked welding
Five-Axis Automatic Laser Welding Machine
A five-axis servo laser welding platform for three-dimensional curved surfaces and special-shaped joints. Review the required orientations and workpiece fixture, then define the laser, welding head, CCD-assisted positioning and line interface for the submitted part.
Application-configured system · final package confirmed after workpiece and process review
Specifications
Five-axis automatic welding system data
Laser and motion
- Laser power
- 1,000-6,000 W
- Manual-listed power selections
- 1,500 / 2,000 / 3,000 / 6,000 W
- Welding speed
- 5-120 mm/s
- Repeat positioning accuracy
- ±0.02 mm
- Motion structure
- Five-axis linkage servo-control system
Optics and process
- Laser wavelength
- 1,070 nm
- Pulse frequency
- ≤100 Hz
- Pulse width
- 0.5-15 ms
- Spot adjustment range
- 0.1-3 mm
- Laser-source options
- Raycus / IPG / JPT / MAX
- Welding-head option
- Raytools HZG
Guidance and integration
- Visual positioning
- CCD-assisted seam positioning
- Cooling system
- Water cooling
- Electrical listing
- 220 / 380 V · 3-phase · 50 / 60 Hz
- Fixture change
- Quick-change fixture support
- Production-line connection
- Supported
Reach three-dimensional seams through five linked axes
This is an application-configured system rather than a fixed catalogue model. The working envelope, fixture, laser source, vision scope and line interface are selected after the part and production task are reviewed.
Five-axis spatial path control
Five linked servo axes coordinate the welding head and workpiece path for three-dimensional curved surfaces and special-shaped joints.
CCD-assisted seam positioning
The supplied configuration includes CCD visual positioning for alignment and live observation. Final vision scope depends on the joint and fixture review.
Configurable laser and optics
The current table lists 1,000-6,000 W, while the supplied manual identifies 1,500, 2,000, 3,000 and 6,000 W selections with optional source and welding-head brands.
Prepared for automated production
Quick-change fixture support and a production-line interface allow the cell boundary to be defined around loading, unloading and cycle-time requirements.
From application review to delivery
- 01
Machine-bed welding
- 02
Beam preparation
- 03
Heat treatment
- 04
Precision machining
- 05
Pre-assembly inspection
- 06
Machine assembly
- 07
Testing, debugging and acceptance
- 08
Delivery
Parts suited to a configurable five-axis weld path
Suitability depends on material, joint design, three-dimensional access, weld depth and target cycle time. Submit the actual part data before fixing the process route.
Compare the next automation path
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Related industry solutions
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View all industry solutionsPlan the orientations needed to reach the joint
Describe the spatial seam, not only the part outline
Identify the weld path and the direction from which the head must reach each section. Include nearby features and fixture access. The five-axis arrangement is evaluated against those requirements; it is not a blanket promise to weld every complex shape without repositioning.
Include fixture changes and loading in the sequence
The listed configuration supports quick-change fixtures and production-line connection. Define which part families will use the cell, what changes between them and which tasks remain manual. Fixture change support does not establish automatic changeover of the complete station.
Confirm the selected laser package
The product table lists a 1–6 kW range, while the manual identifies 1.5, 2, 3 and 6 kW selections. Use the quoted configuration to identify the actual source, optics and power rather than assuming every value within a range is an offered selection.
Machine selection questions
Does five-axis mean five-in-one cutting and welding functions?
No. Five-axis describes the linked servo motion for spatial welding paths. This page is for an automatic laser welding platform; it does not establish five separate handheld processing functions or a five-axis laser cutting machine.
When should I consider five-axis rather than four-axis welding?
Compare the orientations needed along the seam and the access available with the proposed fixture. Use the complete part drawing to assess the motion arrangement. More axes alone do not establish a better weld or a shorter cycle.
Is quick-change fixture support the same as automatic part changeover?
No. It describes support for changing the fixture. Part loading, fixture exchange, program selection and subsequent checks need a defined workflow. Confirm the equipment and operator responsibilities for each part family.
Does CCD-assisted positioning guarantee seam tracking on any workpiece?
The listed system supports visual positioning and observation. The required alignment or tracking behavior must be specified for the actual joint, fixture and part variation; a CCD listing is not a universal tracking guarantee.
What should I provide for a five-axis configuration review?
Send the 3D part geometry or dimensioned drawings, seam path, material and thickness, fixture concept, part variations and acceptance criteria. Include required output and loading or line interfaces so reach, motion and the process package can be reviewed together.
Request a quote
Tell us the part. We will tell you the machine.
Configuration and quotation are prepared after the workpiece, spatial weld path and automation boundary are reviewed.
- Phone+86 153 6281 4831
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