Laser Cutting
Published On: July 28, 2026
Laser cutting is a mature industrial processing technology that offers high flexibility, non-contact, and stress-free processing, allowing the direct production of finished parts from the workpiece. It is a highly precise process with excellent dimensional stability, very small heat-affected zones, and narrow kerf widths.
Medical Device Industry
Medical devices require high precision, stability, safety, and purity, which impose higher demands on processing and equipment. Traditional sheet metal mechanical cutting methods have significant shortcomings in terms of precision and safety control. Laser cutting produces very narrow slits in medical devices, with the laser beam focused into a small spot achieving high power density at the focal point, rapidly heating the material to vaporization and forming a hole. As the beam and material move linearly relative to each other, the hole continuously forms a very narrow slit, typically 0.10-0.20 mm in width. The minimal slit ensures high cutting precision.
The production process of laser cutting machines is non-contact. The laser cutting head does not touch the surface of the material being processed and does not scratch the workpiece. For medical devices, a smooth surface is a basic requirement. Minimizing the surface polishing process during production can greatly improve production efficiency.
The production process of laser cutting machines is non-contact. The laser cutting head does not touch the surface of the material being processed and does not scratch the workpiece. For medical devices, a smooth surface is a basic requirement. Minimizing the surface polishing process during production can greatly improve production efficiency.

Hardware Industry
In hardware processing, laser cutting mainly uses a focused high-energy beam to instantly melt or vaporize the material, forming a cut. Almost all sheet materials can be shaped in one pass on a laser cutting machine, producing high-quality products without burrs, eliminating the need for manual reprocessing and grinding. Laser cutting effectively reduces processes and cycle times, improves work efficiency, and reduces labor intensity and processing costs.

Bathroom Industry
Traditional sheet metal processing is cumbersome, time-consuming, and labor-intensive, failing to meet market demands. Laser cutting machines can solve these problems well by using fiber laser cutting machines for automatic programming and cutting, engraving patterns on stainless steel and metal surfaces.

Automotive Manufacturing Industry
Laser cutting technology involves irradiating a high-energy laser beam onto the workpiece surface, melting and forming cuts. Combined with software such as CAD, it can achieve high-strength steel structure component cutting with complex contours, meeting personalized processing needs.

Lithium Battery Manufacturing Industry
Before the advent of laser technology, the battery industry used traditional mechanical processing. Compared to traditional mechanical processing, laser processing offers advantages such as no tool wear, flexible cutting shapes, controlled edge quality, higher precision, and lower operating costs, helping to reduce manufacturing costs, improve production efficiency, and significantly shorten the die-cutting cycle for new products.

Construction Machinery Industry
In the construction machinery industry, when faced with specific plate thicknesses, as long as the workpiece hole diameter requirement is greater than or equal to the corresponding minimum diameter value, and the roughness and diameter size requirements are within the cutting machine's guarantee range, laser cutting can be used directly, eliminating the drilling process and improving labor productivity. Laser cutting can use the dotting function to determine the hole position, saving the time for locating holes in subsequent drilling processes and eliminating the cost of making drilling templates, thus improving production efficiency and product precision.
