Product Attributes
Professional Aluminum Laser Marking Machine is a laser device specially used for precision marking on the surface of aluminum materials. It is often used in the industrial field to permanently mark aluminum products, such as text, serial numbers, QR codes, patterns, etc.
Advantages
1. High-precision marking
This equipment is equipped with a fiber laser imported from Germany (brands such as IPG or Raycus), with stable laser beam quality, small beam divergence angle, and a focal diameter of about 20μm after focusing, with high energy density and stability. The overall marking accuracy of the system can be controlled at ±0.01mm, which is suitable for marking tasks with high detail requirements, such as tiny text, product serial numbers, complex graphics, and QR codes.
2. High-speed marking
This machine is equipped with a digital high-speed galvanometer scanning system with a maximum marking speed of 7000mm/s. Compared with traditional mechanical engraving or needle marking methods, its marking efficiency is increased by about 3 to 5 times. In mass production scenarios, such as aluminum parts, aluminum profile nameplates, etc., it can significantly shorten the processing time of a single piece, improve the production rhythm of the entire line, and reduce the frequency of manual intervention, thereby effectively improving the overall production capacity and production line efficiency.
3. Non-contact processing
Laser marking is a non-contact processing process. During the marking process, there is no need to touch the surface of the workpiece or install a special fixture. This processing method avoids physical damage and stress interference to the material, and is particularly suitable for processing lightweight, thin-walled or complex aluminum parts. It can stably mark on a variety of aluminum surfaces (including anodized aluminum, aluminum alloy, die-cast aluminum, etc.), ensuring that the product size accuracy is not deformed and the marking is clear and firm.
4. Excellent marking effect
In view of the characteristics of the aluminum surface, we have integrated the MOPA Q-switched laser configuration in the equipment to achieve more flexible laser pulse width and frequency adjustment. This technology can achieve bright pure white marking on the black anodized aluminum surface with good visual contrast and recognition. At the same time, for ordinary aluminum alloy materials, by adjusting the laser frequency (30300kHz) and pulse width (80200ns), a deep black, grayscale and even color tone marking effect can be formed on the surface.
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