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RAYMAX Laser Welding Machine – Welding Parameter Library (100+ Materials) Preloaded on Controller

RAYMAX laser welding machine comes preloaded with a welding parameter library covering over 100 material combinations (steel, stainless, aluminum, copper, brass, titanium) in various thicknesses (0.3–6mm) and joint types (butt, lap, fillet, edge). Operators select the material and thickness from a menu, and the machine sets power, pulse width, frequency, and gas flow. The library was developed through RAYMAX’s university research partnerships. The 1.5kW fiber laser welder includes a USB port for user-added custom parameters. This reduces training time and improves first-time weld quality.
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Why choose us?

Non-Contact Welding for Heat-Sensitive Applications

RAYMAX laser welding machine covers fiber, CO₂, and semiconductor laser sources, delivering non-contact welding with no electrode wear and beautiful, consistent welds. The pulsed Nd:YAG laser (up to 300J per pulse) produces weld spots as small as 0.3mm with minimal heat spread, making it suitable for heat-sensitive electronic components and medical device assemblies. The closed-loop feedback system maintains constant laser energy output regardless of line voltage fluctuations, ensuring weld consistency across production batches. Applications include battery pack assembly, sensor housing sealing, and micro-switch contacts. The machine includes a built-in weld monitoring system that records power, speed, and focus for each weld, enabling traceability for ISO-certified processes. RAYMAX provides application training and process optimization support as part of every installation.

Seam Tracking for Automated Production Lines

RAYMAX laser welding machine integrates a structured light sensor that projects a laser line onto the workpiece and detects seam position in real time, automatically guiding the welding head along lap joints, butt joints, and fillet welds. This system compensates for part misalignment up to ±1.5mm, reducing rework and scrap. The 2kW fiber laser welds 1.5mm automotive steel at 5 m/min, while a teach mode allows manual recording of complex paths. Applications include automotive body-in-white assembly, appliance cabinet welding, and battery tray fabrication. RAYMAX offers a demo program where customers send sample parts for seam tracking validation before ordering. The system integrates seamlessly with automated production lines for electronics, automotive, aerospace, and medical device industries.

Cost-Effective General-Purpose Welding Solution

RAYMAX offers cost-effective laser welding machines that balance performance and affordability, ideal for small businesses and general fabrication shops. Our general-purpose models offer basic laser welding functions with power up to 1kW, suitable for thin metal sheets (0.1-3mm) and featuring manual operation. These machines provide an affordable entry into laser welding technology without compromising on core quality. The compact design requires minimal floor space, and the simple controls reduce training time. RAYMAX's welding parameter library (preloaded for 30+ material combinations) helps operators achieve good results quickly. Perfect for custom fabrication shops, repair facilities, prototype development, and maintenance departments. RAYMAX provides installation guidance, operator training, and spare parts support through our global distribution network.

Related products

Copper welding with laser welding machines has historically been one of the most difficult applications for laser technology due to copper's extremely high reflectivity at near-infrared wavelengths and its exceptional thermal conductivity. When a fiber laser welding machine operating at the standard 1070nm wavelength strikes a copper surface at room temperature, up to 95 percent of the incident energy reflects away, leaving insufficient energy to initiate melting and keyhole formation. Modern fiber laser welding machines overcome this limitation through several technological approaches, including high-power beams exceeding 2,000 watts that overcome initial reflectivity by rapidly heating the copper surface to its melting point, at which point absorption increases dramatically. Beam oscillation welding patterns with amplitudes of 1 to 2mm and frequencies of 100 to 300 Hertz have proven particularly effective for copper welding, as the scanning motion pre-heats the weld zone and creates a temporary absorption layer that improves energy coupling. For electrical busbar welding where copper thickness exceeds 2mm, fiber laser welding machines with 3,000 watts or higher power are recommended to achieve complete penetration in a single pass. The ability to weld copper busbars to battery cells or within power distribution modules is critical for electric vehicle battery assembly, where low electrical resistance is essential for efficient power transfer. Copper tab welding for lithium-ion battery assembly requires fiber laser welding machines with pulse durations under 10 milliseconds and pulse energies of 10 to 30 joules, creating weld nuggets 1 to 2mm in diameter with penetration depths of 0.3 to 0.5mm. The narrow heat-affected zone characteristic of fiber laser welding prevents thermal damage to battery cell components during tab welding, maintaining cell safety and cycle life. For copper welding applications requiring filler material, automatic wire feeding systems can deliver copper or copper alloy filler wire at programmable rates synchronized with travel speed and power output. The latest generation fiber laser sources are protected against beam reflection, allowing reliable processing of highly reflective materials without risk of damage to the laser source optics. Pre-weld cleaning is more critical for copper than for most other metals, as surface oxides and contaminants can further reduce energy absorption and cause inconsistent weld penetration. Mechanical brushing or chemical etching of copper workpieces before welding improves process stability and reduces spatter generation. For copper thicknesses less than 1mm, lower power settings and higher travel speeds prevent heat buildup that could cause material warping or melt-through. Our laser welding machines are equipped with back-reflection absorption devices that protect the optical components when welding reflective materials like copper and brass. Contact our copper welding specialists to discuss machine configurations optimized for your specific copper alloy and thickness requirements.

Frequently Asked Questions

What is the difference between a swing beam and guillotine shearing machine?

A swing beam shearing machine uses a rotary blade motion and is suited for thinner sheets and high-speed production, while a guillotine shearing machine features vertical blade movement, offering higher precision (adjustable cutting angle 0.5~2°) for thick plates and heavy-duty applications.
Plate rolling machines are extensively used in wind tower manufacturing to roll conical and cylindrical sections from high-strength steel plates (20-60mm thick), achieving roundness tolerances within ±1mm for proper fit-up during field erection.
RAYMAX serves automotive, shipbuilding, railway, aviation, power generation, petrochemical, and light industries, providing complete sets of metal sheet and profile processing machinery exported globally to Southeast Asia, Middle East, Western Europe, and South America.
RAYMAX has been manufacturing metal processing machinery since its establishment in 2002, with over 22 years of experience, 400 factory personnel (60% middle and senior technical staff), and a global customer base of over 4,000 clients.

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Customer Reviews

Richard Chen

The structured light sensor on RAYMAX laser welding machine projects a laser line onto the workpiece and detects seam position in real time, guiding the welding head along joints even when parts are misaligned up to ±1.5mm. This feature reduced our rework significantly for automotive body-in-white assembly. The 2kW fiber laser welds 1.5mm automotive steel at 5 m/min. The teach mode allows manual recording of complex paths. The system integrates seamlessly with our automated production line. RAYMAX offered a demo program where we sent sample parts for seam tracking validation before ordering. The seam tracking accuracy has eliminated the need for precise fixturing, saving us tooling costs. This machine has improved our weld quality consistency across high-volume production.

Lisa Chen

As a small fabrication shop, we couldn't justify the cost of high-end laser welders, but RAYMAX offered an affordable general-purpose model that meets our needs perfectly. The 1kW fiber laser welds thin metal sheets from 0.1mm to 3mm with manual operation. The compact design fits in our limited floor space. The simple controls reduced training time for our welders. The preloaded welding parameter library for 30+ material combinations helped us get started quickly. The machine has been reliable for our custom fabrication work including stainless steel kitchen equipment and aluminum frames. RAYMAX provided installation guidance and operator training. The cost savings on consumables compared to TIG welding have been significant. This is a great entry point into laser welding technology.

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Non-Contact Welding for Diverse Industrial Applications

Non-Contact Welding for Diverse Industrial Applications

RAYMAX laser welding machine offers non-contact welding with no electrode wear, producing consistent and aesthetically pleasing welds for electronics, automotive, aerospace, and medical device industries. Covering fiber, CO₂, and semiconductor laser sources, this machine integrates seamlessly with automated production lines. The closed-loop feedback system maintains constant laser energy output regardless of line voltage fluctuations, ensuring weld consistency. With applications including battery pack assembly, sensor housing sealing, and automotive lightweight components, RAYMAX provides a complete welding solution for precision manufacturing needs.