RL-SFX Rotary Axis Laser Welder
NEW GENERATION

Rotary Axis Laser Welding Machine

MODEL: RL-SFX

The RL-SFX is a high-precision fiber laser welding system designed for automated industrial workflows. Equipped with a next-generation fiber laser source and a standard automatic rotary head, it bridges the gap in complex-angle automated welding. It offers superior weld aesthetics, minimal heat-affected zones, and high-speed performance.

Contact for Quotation

+86 181-1263-6831

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Technical Specifications

Industrial Precision Series
Component / Project Configuration / Specs Options / Range
Laser Source Power1500W2000W / 3000W
Rotary Chuck Diameter80mm100/125/160/200mm
Worktable Travel500 * 160mm7-Axis (Customizable)
Welding Range (Materials)0.2 - 5.0mmSS, CS, Galvanized, Alum
Cooling SystemDual-Temp Industrial ChillerHigh Power Stability
Wire FeederAutomatic Wire Sync ControlLead/Lag Feeding Support
Drive System400W Servo MotorHigh Precision Positioning

Key Advantages

01

**Simple Operation**: High welding speed and beautiful seams with **zero consumables**, significantly reducing labor costs.

02

**Versatile Metalwork**: Perfect for SS, iron, aluminum, and galvanized sheets up to **5mm**. Replaces traditional TIG and Electric arc welding.

03

**Smart Wire Feeding**: Includes **Lag Feeding and Advance Withdrawal** functions to ensure flawless start and end points of the weld.

04

**Integrated Control**: Proprietary laser control software allows for flexible graphic updates and intuitive 400W servo-driven motion.

05

**Precision Motion**: Adjustable tilt (0-90°) and 360° rotation for the welding head, allowing access to complex joint geometries.

06

**Robust Design**: 200kg industrial-grade machine body with integrated air/water cooling for 24/7 stable production.

Industrial Applications

Widely applied in industries such as: **Kitchenware & Cabinetry, Elevator/Escalator components, Stainless Steel Security Doors, Distribution Boxes, Metal Furniture, and Shelving Systems.** Designed for any precision sheet metal joining task.