Explore developments across industries where industrial chillers play a vital role, from laser processing to 3D printing, medical, packaging, and beyond.
Smartphones set off the first round of demand for precision laser processing. So where the next round of demand upsurge in precision laser processing may be? Precision laser processing heads for high end and chips may become the next wave of craze.
The laser cutting machine protection lens can protect the internal optical circuit and core parts of the laser cutting head. The cause of the burnt-out protective lens of the laser cutting machine is improper maintenance and the solution is to select a suitable industrial cooler for the heat dissipation of your laser equipment.
Laser cladding technology often uses kilowatt-level fiber laser equipment, and is widely adopted in various fields such as engineering machinery, coal machinery, marine engineering, steel metallurgy, petroleum drilling, mold industry, automotive industry, etc. S&A chiller provides efficient cooling for the laser cladding machine, high temperature stability can reduce the fluctuation of water temperature, stabilize the output beam efficiency, and prolong the service life of the laser machine.
Extremely sensitive to the temperature, the laser engraving machine will generate high-temperature heat during work and needs temperature control through the water chiller. You can choose a laser chiller according to the power, cooling capacity, heat source, lift and other parameters of the laser engraving machine.
Precision machining is an important part of laser manufacturing. It has developed from early solid nanosecond green/ultraviolet lasers to picosecond and femtosecond lasers, and now ultrafast lasers are the mainstream. What will be the future development trend of ultrafast precision machining? The way out for ultrafast lasers is to increase power and develop more application scenarios.
Semiconductor laser is the core component of solid-state laser and fiber laser, and its performance directly determines the quality of terminal laser equipment. The quality of the terminal laser equipment is not only affected by the core component, but also by the cooling system it is equipped with. Laser chiller can ensure the stable operation of the laser for a long time, improve the efficiency and prolong the service life.
Lasers are developing in the direction of high power. Among continuous high-power fiber lasers, infrared lasers are the mainstream, but blue lasers have obvious advantages and their prospects are more optimistic. The large market demand and obvious advantages have driven the development of blue-light lasers and their laser chillers.
In the market application of laser cleaning, pulsed laser cleaning and composite laser cleaning (functional composite cleaning of pulsed laser and continuous fiber laser) are the most widely used, while CO2 laser cleaning, ultraviolet laser cleaning and continuous fiber laser cleaning are less used. Different cleaning methods use different lasers, and different laser chillers will be used for cooling to ensure effective laser cleaning.
With the growing demand of the global shipbuilding industry, breakthroughs in laser technology are more suitable for shipbuilding requirements, and the upgrade of shipbuilding technology in the future will drive more high-power laser applications.
The largest application material for laser processing is metal. Aluminum alloy is second only to steel in industrial applications. Most aluminum alloys have good welding performance. With the rapid development of aluminum alloys in the welding industry, the application of laser welding aluminum alloys with strong functions, high reliability, no vacuum conditions and high efficiency has also developed rapidly.
FPC flexible circuit boards can greatly reduce the size of electronic products and play an irreplaceable role in the electronics industry. There are four cutting methods for FPC flexible circuit boards, compared with CO2 laser cutting, infrared fiber cutting and green light cutting, UV laser cutting has more advantages.
Brightness is one of the important indicators to measure the comprehensive performance of lasers. The fine processing of metals also puts forward higher requirements for the brightness of lasers. Two factors affect the brightness of the laser: its self factors and external factors.