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Ultraviolet laser cold light source cutting PET film
Aug 18 , 2023Ultraviolet laser cold light source cutting PET film
As a cold light source, ultraviolet laser has wide application potential, especially in cutting PET film. As a common covering material, PET film is often used in the electronics and packaging industries. Traditional cutting methods may have problems such as heating and gas emissions, but UV lasers are an ideal choice to solve these problems due to their unique cutting methods.
First of all, the UV laser uses non-contact cutting, avoiding the negative effects of physical contact. It directly irradiates the PET film with a high-energy pulsed laser beam, cutting it into a predetermined shape without applying additional pressure. This can not only avoid damage to the membrane material, but also reduce energy consumption and labor costs in the production process.
Second, UV lasers have high energy output and can complete cutting tasks quickly and accurately. Compared with traditional mechanical cutting or thermal cutting methods, UV laser can complete the efficient cutting process in a short time. Its high power output enables a substantial increase in cutting speed, increasing productivity while maintaining quality.
In the future, the application potential of ultraviolet lasers in the field of cutting PET films is still huge. With the continuous advancement of technology, the cutting speed of UV lasers will be further improved, so as to further meet the needs of efficient production. At the same time, the automated and intelligent paint stripping process will also become the focus of attention, making the cutting process more convenient and accurate.
To sum up, as a cold light source, ultraviolet laser has unique advantages in cutting PET film. Its non-contact cutting and high energy output will bring more convenient and efficient production methods to the electronics and packaging industries. With the development of technology, the application prospect of ultraviolet laser in this field will be broader.