Laser machine provider by CosmoLaser

Best laser engraving machine supplier: You can laser etch a wider variety of materials, including steel, aluminum, anodized aluminum, lead, magnesium, and zinc. There’s also a unique method called laser annealing to mark metals like stainless steel. From Solid to Gas: How It Works: Whereas laser etching melts the material surface to change its roughness, laser engraving sublimates the material surface to create deep crevices. This means that the surface instantly absorbs enough energy to change from solid to gas without ever becoming a liquid. Find more information at cosmo laser equipment.

The industrial laser market has grown rapidly in recent years. Laser is dominating the industrial processing market with their unique technology and application advantages. Laser processing has high efficiency and flexibility. In terms of accuracy, speed and efficiency, it is the best choice for most industries. With the increasing cost of labour, not all jobs can be done manually and most companies are opting for machines instead of labour. If you want to increase productivity, profitability and reduce costs, using a laser machine is the way to go. Suitable for industries such as jewellery, watches, glasses, gifts, hardware, circuit boards and electronic equipment.

The power applied to the ink droplet charging electrodes can be used to control the position of each ink droplet. For example, when printing a QR code, only the ink droplet vertical marker line changes, allowing the object to be printed and the nozzle relative movement to combine each black and white pixel block of the image screen, resulting in the printing mark on the product coverage. As a result of the low cost of inkjet printing mark raw materials, printing mark operation is simple to standardize and unify. While laser marking is more expensive, it can mark in a variety of ways and has a wider range of applications. In conclusion, we can select a method that is appropriate for their specific product printing labelling situation.

The position capture fiber laser marking machine(CTM-20CM) is based on CTM-20, with a position capturing camera system. It has a positioning function that eliminates inaccurate marking due to human error. Its advantages are reflected in being able to do batch marking of multiple work pieces accurately irregardless of position within the marking area. Different work pieces can be set to mark different patterns. It can automatically retrieve the previous marking position and accurately repeat the marking. Its design is time-saving so that achieve high-precision assembly line automated production.

SW-1 is a high-precision spot welding machine designed for industries that require precise welding with highly consistent laser output at high frequency and pulse rate. Because the welded area is small, there is minimal deformation and a smooth welded finish. The model HW-1 can be used with a variety of metals and alloys, including titanium, stainless steel, carbon steel, copper, aluminum, etc. It is extensively utilized in the intricate and erratic welding processes of cabinets and kitchens, stairlifts, shelves, ovens, guardrails for stainless steel doors and windows, distribution boxes, stainless steel furniture, metal sheet metal, and other industries. Find more info at cosmolaser.net.

CUV is applied to both metal and nonmetal materials. It is widely used in the jade, wood, acrylic, crystal, semi-precious stone, glass, plastic, gift, jewelry, hardware, and etc. The “cold” laser process results in very fine marking. Also capable of subsurface marking on transparent materials such as crystals. Provide fine marking on non-metal that other types of lasers cannot. Cosmo’s latest precision fibre laser cutting machine, the CPC-500G3 (Excel), is highly recommended for precious metal cutting. Its enclosed design is the preferred method for cutting gold and silver for consideration of loss. It uses an imported laser source which has a consistent quality and long lifespan. It has all the features and is easy to operate.

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