레이저 유리 가공 기술 is 빠르다 되는 industry's new favorite for its 우수한 절단 속도 and 넓은 범위 of material 적응성. from glass to metals, ceramics, polymers and semiconductors, everything is within its cutting capabilities.
To meet the growing market demand, the industry is 점차적으로 shifting to processing large glass panels to realize the shift from wafer to panel processing.
The CLT 80G laser glass processing tool is a vivid example of this trend. It can support up to 2300 mm x 2500 mm large glass substrate, and realize the continuous production of all-weather, greatly improving the production efficiency.
As a global leader in the glass industry, China holds an important position in the market for laser glass processing systems. Float glass exports are steadily among the world's highest, and the production of glass bottles and containers continues to climb, with global production expected to reach a staggering 743 billion units.
그러나, the environmental impact of glass manufacturing cannot be ignored, and reducing carbon emissions in the production process has become an urgent issue for the industry. According to statistics, the high temperatures in the production process have led to global CO2 emissions in 2022 reaching approximately 95 million tons.
가공 유리 with lasers relies on extremely short pulse durations, measured in femtoseconds and picoseconds. The 다재다능함 의 레이저 기술 빛나다 여기 - a 단일 레이저 소스 can be adapted to a 다양성 의 유리 가공 작업 such as 절단, 드릴링, 조각 및 짝수 마킹 for 품질 제어 목적.

UV 레이저 점유 a 중요한 위치 in the global market for laser glass processing systems, with a market share of more than 41.2%, demonstrating significant growth. This growth is attributed to the superior performance of UV lasers in high-precision, minimally invasive material processing.
Operating at wavelengths between 150 and 400 nanometers, much smaller than visible light, they are capable of generating extremely small spot sizes, enabling fine processing on a microscopic scale. For example, specialized vacuum UV lasers are capable of achieving sub-micron spot sizes in areas such as spatially resolved spectroscopy.
UV 레이저 아르 심오하게 변화하는 풍경 의 유리 가공 산업 함께 그들의 독특한 "냉기 가공" 기능. 그것 가능 에 정확하게 브레이크 재료 결합 없이 생성 과도한 열 및 최소한 열 왜곡. 이 다목적성 허용 UV 레이저 에 처리 a 넓은 범위 의 재료 포함 유리, 세라믹, 강화 폴리머, 및 높은 반사 귀중한 금속 such as silver, 금 및 구리.
여부 그것's 섬세한 마킹 의 수정되지 않은 유리 또는 조각 복잡한 패턴 에 과일, 테프론, 다이아몬드, 및 플라스틱, UV 레이저 가지고 시연된 그들의 우수한 정밀도 가공 기능 안에 the 레이저 유리 가공 시스템 시장.
The market for UV lasers is driven, in part, by rapid technological advances. diode-pumped UV lasers at 266 nm (four times the frequency) offer higher photon energies than lasers at three times the frequency of 355 nm, opening up wholerely new processing possibilities. Industry leaders such as RPMC Laser and Frankfurt Laser Company continue to drive innovation in the market by introducing a portfolio of UV laser diodes and DPSS lasers covering a wide range of wavelengths (200 nm to 420 nm), multiple modes of operation (pulsed and continuous wave), and varying power outputs (1 MW to 20 W).









