The glass laser drilling equipment uses a high repetition frequency 532 nm nanosecond green laser, combined with laser back processing (that is, the beam focus moves from bottom to top) process, which can perform various types of thin glass and tubular glass of various materials. Fast finishing. For example, drilling holes along the end face or side wall, cutting special-sized glass sheets, removing the transparent conductive film on the glass substrate, local texturing and scoring of the glass surface, marking on the surface or inside, etc. Depending on the pulse width and pulse repetition frequency, the maximum average laser output power can reach 50 W. As far as glass drilling is concerned, the hole diameter can usually be as small as 0.15 mm and as large as 50 mm or more, which can produce nearly zero-taper through holes, blind holes, oblique holes, step holes, square holes or other special hole shapes. . Tucson Laser uses high repetition frequency nanosecond green fiber laser to process soda-lime glass, borosilicate glass, quartz glass, etc. It has many successful cases in the field of glass deep processing. The applicable glass thickness range is usually 0.1 mm - 10 mm. between. Switching to 0.5 mm thick soda-lime glass, the maximum wire cutting speed can reach more than 22 mm/s. Figures 1 to 3 respectively give some representative pictures of glass processing results.

Laser marking machine, as an essential tool for modern enterprises, has been closely related to the information marking of enterprise products. Many large and well-known companies that we are familiar with are using lasers to print their own information. This method is beneficial to improving product quality, long-lasting, and difficult to erase. However, when using a laser marking machine, there may be reasons such as the laser output is not strong or becomes weak.

Laser cutting machine is an important tool in the cutting field and is known as the fastest "knife". Its principle is to irradiate the surface of the material with a high-density and high-energy laser beam to melt, vaporize, ablate or reach the ignition point. At the same time, the molten material is blown away by the high-speed airflow coaxial with the beam, thereby cutting the workpiece and forming a cutting.

Plastics, with their versatile properties and widespread applications, have undeniably become an integral part of our modern world. From consumer goods to industrial components, their presence is ubiquitous. However, the ability to accurately engrave, etch, and mark plastics has often presented a challenge due to their sensitive nature. Enter the groundbreaking solution: the 355nm ultraviolet laser with water cooling technology. This remarkable innovation has revolutionized the art of plastic marking, offering unprecedented precision, efficiency, and durability.

In the fast-paced world of product identification, barcode technology plays a pivotal role in streamlining processes and ensuring efficient supply chains. The ability to accurately imprint barcodes onto various surfaces, especially plastic, has become increasingly crucial. This is where the awe-inspiring capabilities of the 3-watt UV laser come into play, leaving an indelible mark on the art of barcode engraving.

In the realm of product identification, the importance of clear and precise markings cannot be overstated. In particular, the ability to mark transparent plastic materials has become a crucial requirement for various industries. Enter the awe-inspiring world of 5W UV laser module marking, where technology meets elegance to create indelible impressions on transparent plastic surfaces.

< 1...121314...48 > proceed page