With the improvement of precision and miniaturization processing, lasers are also divided into ultrafast time – nanosecond lasers, picosecond lasers, and femtosecond lasers, and the corresponding surface treatment and precision processing technologies are integrated, which are applied to medical biology, aerospace, consumer electronics, lighting display, energy environment, precision machinery and other industries.
At present, most traditional lasers are nanosecond lasers, and picosecond lasers and femtosecond lasers are ultrashort pulse lasers. In recent years, the rapid progress of ultrashort pulse (USP) lasers has made ultrafast laser processing technology develop by leaps and bounds, and the highest precision has been achieved in a very short time in microstructure processing, such as:
For tooling, molds, steel tools, and automotive precision parts, high-precision cleaning and polishing can be achieved; ultra-precision processing of optical and mechanical devices at the micron to nanometer scale; mirror polishing of anodized aluminum marking of the shell logo of 3C products such as smart phones and laptops; third-generation bioresorbable heart stent (BRS) technology to achieve cleaning, deburring, etching and polishing processes; processing of complex surface edges of ultra-hard tool materials, etc.
As we all know, laser cutting machines are widely used in industrial processing, such as precision cleaning of parts, high-power cutting, welding, micro-machining drilling, scribing, fine grinding, fine polishing, cutting, texturing, stripping, isolation, etc.
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