What is the difference between fiber laser cutting machine and traditional processing methods?


Release time:

2024-08-21

Laser cutting tube processing is very fast, several times or even dozens of times faster

What is the difference between fiber laser cutting machine and traditional processing methods?
1. Processing speed
Laser cutting tube processing is very fast, several times or even dozens of times faster than traditional processing
Traditional processing techniques such as wire cutting, punching, and flame cutting have slow speeds and cannot provide timely supply during peak periods
2. Processing accuracy
Laser cutting for pipe processing, with accurate dimensions and an error within ± 0.1mm,
Traditional flame processing has rough precision and accurate wire cutting dimensions.
3. Whether to open a mold or not
Laser cutting of pipes does not require mold opening and can be cut according to computer graphics
Traditional processing requires auxiliary molds, such as stamping molds.
4. Processing scope
Laser tube cutting can process any surface of any shape of tube and 360 ° 3D cutting
Traditional processing surfaces and shapes are limited.
Fiber laser cutting machine can meet the large-scale processing requirements of stainless steel insulated cups. The cutting speed of 1mm stainless steel can reach 15m/min, and it can drill holes on the surface of the plate to cut various complex patterns. It has the advantages of high precision, small cutting seam, material saving, and smooth cutting surface, which eliminates multiple processes such as cutting, stamping, and polishing, greatly shortening the production cycle of the product.
Fiber laser cutting machine uses the energy released by laser beam irradiation on the surface of the workpiece to melt and evaporate the workpiece, thereby achieving the purpose of cutting and engraving. Laser cutting manufacturers believe that fiber laser cutting has the characteristics of high precision, fast cutting speed, unrestricted cutting patterns, automatic typesetting, material saving, smooth cutting, and low processing costs. It is particularly suitable for stainless steel insulated cup technology with multiple varieties and complex structures.

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