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The range of applications for fully automatic fiber laser cutting

Fully automatic fiber laser cutting is for steel plates with a strength of up to 1500MPa, because there is no other processing method to substitute. In this case, users do not need to invest in expensive stamping equipment and cutting equipment. Because when processing these high-hardness materials, the service life of the dies or cutters of traditional equipment will be greatly shortened, surface laser cutting does not have to consider these issues, and it also has the advantages of short installation time, flexible product replacement or sample production. Edge trimming is another challenge for high-strength steels. The 3D laser cutting machine is suitable for the trimming of the formed sheet metal parts, especially the 3D laser cutting machine is applied to the cutting of the side wall of the automobile, which of course includes the trimming. The B side wall is made of high-strength steel hot formed, which has high hardness and has to withstand great stress. The B side wall made of high-strength steel increases the impact resistance and improves the safety of the car. This is also the reason why automakers are willing to use high-strength steel despite its high cost. The price of Guangdong fiber laser cutting machine laser cutting equipment is quite expensive, about 1.5 million yuan or more.

Fully automatic fiber laser cutting With the continuous development of the current storage tank industry, more and more industries and companies have used the industry to enter the storage tank industry. However, because the cost of subsequent processing is reduced, it is feasible to use this equipment in mass production. Since there is no tool processing cost, laser cutting equipment is also suitable for producing small batches of parts of various sizes that could not be processed previously. Laser cutting equipment usually uses computerized digital control technology (CNC) devices. After adopting this device, the telephone line can be used to receive cutting data from a computer-aided design (CAD) workstation. Principle Laser cutting is to use a focused high-power density laser beam to irradiate the workpiece to quickly melt, vaporize, ablate or reach the ignition point of the irradiated material. At the same time, the molten material is blown away by the high-speed airflow coaxial with the beam to realize the workpiece Cut open. Laser cutting is one of the thermal cutting methods. Classification Laser cutting can be divided into four categories: laser vaporization cutting, laser melting cutting, laser oxygen cutting and laser scribing and controlled fracture.

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