
I. Application of Laser Cutting Technology
High-precision Cutting:
Laser cutting technology is renowned for its high precision, which can meet the strict requirements for the size and shape of components in mold manufacturing. The focal point of the laser beam is extremely small, enabling cutting precision at the micrometer level and ensuring the accuracy of mold components.
Complex Shape Processing:
Mold manufacturing often requires processing components of various complex shapes, such as curves, arcs, and holes. Laser cutting technology can easily meet these complex shape processing needs. It does not require mold opening and directly cuts according to design drawings, greatly improving processing efficiency and flexibility.
Material Saving:
Laser cutting adopts a non-contact processing method, avoiding tool wear and material damage caused by cutting force in traditional cutting methods. At the same time, the kerf width of laser cutting is very small, which can minimize material waste and reduce production costs.
II. Application of Laser Welding Technology
High-quality Welding:
Laser welding technology can achieve high-quality and high-strength welded joints, meeting the strict requirements for welding quality in mold manufacturing. The weld seam of laser welding is small and aesthetically pleasing, and the heat-affected zone during the welding process is small, which can maintain the original performance of the mold material.
Complex Structure Welding:
Mold manufacturing often requires welding components of various complex structures, such as multi-layer plates and special-shaped parts. Laser welding technology can flexibly meet the welding needs of these complex structures, achieving precise butt joint and firm connection.
Improving Production Efficiency:
Laser welding has fast speed and high efficiency, which can significantly shorten the mold manufacturing cycle. At the same time, laser welding has a high degree of automation, which can reduce manual intervention and labor intensity, and improve production efficiency and safety.
III. Application of Laser Marking Technology
High-precision Marking:
Laser marking technology can perform high-precision and high-definition marking operations on the surface of mold components. The focal point of the laser beam is extremely small, enabling fine marking in a tiny area and meeting the strict requirements for identification information in mold manufacturing.
Diversified Marking:
Laser marking technology can realize various forms of marking operations such as text, patterns, and QR codes. These identification information helps in product traceability and management, improving the management level and product quality of mold manufacturing enterprises.
Environmental Protection and Pollution-free:
No chemical reagents or consumables are used in the laser marking process, and no harmful substances or waste are generated. This environmentally friendly and pollution-free processing method meets the requirements of sustainable development in modern industry.

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