Application of Laser Technology in Ceramic Processing

       Ceramic is a functional material with high melting point, high hardness, high wear resistance and oxidation resistance. It is also a good insulator and is often used in military, aerospace, PCB and other fields. Ceramics used in military, aerospace, and 3C industries are mainly oxide ceramics, carbide ceramics, metal ceramics, nitride ceramics, etc., with special mechanical, optical, acoustic, electrical, magnetic, thermal and other characteristics. Today, laser cutting manufacturer Ande Laser will talk to you about the application of laser technology in ceramic processing
        1. Breakthroughs in laser technology meet the needs of ceramic processing

       Due to the functional characteristics and performance characteristics of ceramic materials, they require high precision, good processing effect and fast speed in the processing process, which makes the processing difficult.
       The traditional processing method is mainly through CNC machining, which is slow and low in precision. This method is increasingly unsuitable for use under conditions with higher precision requirements. Under such preconditions, the continuous breakthrough of laser technology has gradually gained the right to speak in the application of ceramic cutting and marking.
       2.The advantages of laser cutting and marking
       The advantage of laser cutting is that the laser spot is small, which means that the cutting precision is high. Laser cutting is a non-contact processing method and does not generate stress. The traditional processing method is in contact with the material, which will inevitably affect the processing accuracy and efficiency, so the laser cutting efficiency is higher.
       In terms of ceramic marking, the focusing spot of the UV laser is small, the marking accuracy can reach ± ​​0.2mm, the marking visual effect is good, the marking effect is long-lasting, wear-resistant, non-fading, clear and layered, especially based on In the case of precision marking, it has a steady advantage, which is far beyond the reach of other lasers.
       The application of ceramics has expanded from daily life and industrial production to machinery, chemical industry, electronics, aerospace and other scientific and technological fields, and the market prospect is broad. The importance of laser as a tool for ceramic processing is self-evident. Like the current metal laser marking machine and fiber laser marking machine, they provide more possibilities for ceramic processing and make ceramic products more exquisite. In the laser processing of ceramics, cooling of the laser equipment is also essential.
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