Fully automatic fiber laser cutting machine technology is widely used in the processing of metal and non-metal materials, which can greatly reduce processing time, reduce processing costs, and improve workpiece quality. Pulsed lasers are suitable for metallic materials, and continuous lasers are suitable for non-metallic materials. The latter is an important application field of automatic fiber laser cutting machine technology. The automatic fiber laser cutting machine uses a focusing mirror to focus the CO2 laser beam on the surface of the material to melt the material, and at the same time use the compressed gas coaxial with the laser beam to blow away the melted material, and make the laser beam and the material follow a certain track. Movement, so as to form a certain shape of the slit. Since the 1970s, with the continuous improvement and development of CO2 lasers and numerical control technology, fully automatic fiber laser cutting machines have become an advanced processing method for sheet metal cutting in the industry. In the 1950s and 1960s, the main methods used for plate blanking and cutting were: oxyacetylene flame cutting was used for medium and thick plates; shearing was used for thin plates, stamping was used for parts with complex shapes and large batches, and vibration shear was used for single pieces. After the 1970s, in order to improve and improve the cutting quality of flame cutting, oxyethane precision flame cutting and plasma cutting were promoted. In order to reduce the manufacturing cycle of large stamping dies, CNC nibbling and electrical machining technologies have been developed. Various cutting methods have their advantages and disadvantages, and have a certain scope of application in industrial production.
Before the automatic fiber laser cutting machine, the thin plate processing with a thickness of less than 3mm can only be cut out with a shearing machine, and all the structures in the plate surface must be completed on the punching machine through a die. Even a non-standard gasket part must be out of the mold, otherwise it cannot be processed. After the application of the fully automatic fiber laser cutting machine, the processing of small and medium batches of parts does not require molds at all, and only large batches of parts need to be processed on the punching machine with punching dies. Especially for the trial production of new products, the quantity is small, the structure is uncertain, and the mold can be changed at any time, and the mold cannot be produced at all. The application of the fully automatic fiber laser cutting machine solves many difficulties in the trial production of new products and greatly shortens the manufacturing cycle of new products. Reduce mold investment. The automatic fiber laser cutting machine greatly improves the processing efficiency of our company's steel plates with a thickness of 4mm or more. Due to the constraints of the punch tonnage, the steel plate of our company with a thickness of 4mm or more cannot be punched on a punch, and can only be roughed by air cutting, and then finished with machining equipment. The result is: waste of materials, increased processes, and production cycles. Long, low production efficiency and increased cost. After using the fully automatic fiber laser cutting machine, steel plates with a thickness of 4mm or more can be directly cut to shape as long as the dimensional accuracy is not particularly high. The efficiency is higher than gas cutting, the accuracy is better, and the deformation is small, eliminating the need for machining procedures. The benefits of this are: reducing the labor intensity of workers, improving the company's working environment, and reducing environmental pollution. In terms of trial production of new products, the research and development progress has been greatly accelerated, mold investment has been saved, and costs have been reduced.