Always clean the equipment when it is stopped. Wipe the rack and apply lubricating oils to the guide rails often to remove any debris.
GSS Machinery highspeed CO2 lazer machines come in a range of configurations to match your budget and process needs.
Laser cutting can be achieved using high-power density energy from a focused laser beam. The CNC controller controls the laser generator to produce a high-frequency pulsed light beam in a controlled manner. This laser generates a beam of a specific frequency and width. The laser beam is transmitted through the optical path, reflected back into the optical path, and then focused by the focusing group. The focal point is located close to the surface to be cut. A small, high-energy, dense light spot forms on the part's surface. Material melts or vaporizes instantly. Each laser pulse creates a tiny hole in the substrate. The computer numerical controller controls the laser head and substrate to perform relative movement and dotting in accordance with the design file. This allows the substrate to be cut into the desired shape.
Marking is the kind of operation in which the laser does not penetrate fully into the substrate material. It only changes the properties and the appearance of the material. When the laser comes in contact with the substrate, it creates high contrast marks because of the heat of the beam.
Waveguide laser tubes from GSS Machinery are the most advanced in the field. GSS Machinery laser tubes offer the best engraving and cutting results. They have faster switching rates, higher CO2 gas pressure and an optimized beam.
Debug the equipment repeatedly and adjust the focal point of the cutting-head to the right position.
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Laser cutting is a fabrication process. It consists of a very thin, invisible but focused laser beam that cuts and engraves the substrate material. It can either be used to cut through the material or it can be used to create logos, patterns, designs, and write text or numbers.
After purchasing the parts and accessories, you will need to assemble and troubleshoot the software and hardware. The machine's performance and quality are directly affected by the material used to cut, the laser generator, the gas used, the air pressure, and the parameters set. Be sure to set the parameters in accordance with your cutting process. An improper setting or operation of parameters can lead to reduced cutting effects, damage or personal injury to the machine or parts, and even reduction in cutting power.
CO2 laser cutting systems are able to cut variety of thin metal and non-metal materials of wood, MDF, plywood, chipboard, acrylic, plastic, PMMA, leather, fabric, cardboard, paper, rubber, depron foam, woodleather, wood paper, EPM, gator foam, polyester (PES), polyethylene (PE), polyurethane (PUR), neoprene, textile, bamboo, ivory, carbon fibers, beryllium oxide, polyvinyl chloride (PVC), polyvinyl butyrale (PVB), polytetrafluoroethylenes (PTFE / Teflon), phenolic or epoxy resins, and any materials with halogens (fluorine, astatine, iodine, chlorine, bromine).
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Laser cutter kits can be divided in 3 axis type, 4th (rotary axis), 4th axis type types, 4th, 5th, 6th, 7th, 8th, 9th, 10th, 12th, 14th, 16th, 20th, 24th, and 25th axis kinds, flatbed laser cutters laser tube cutters laser tube cutters laser tube cutters laser tube cutters laser tube cutters laser tube cutters laser tube cutters laser home types laser die cutters laser profile cutters, and industrial lasers
For accurate, easy positioning of graphics, the Fusion Pro features the overhead IRIS camera system. Drag and drop your artwork onto your materials for quick job turnaround.
Laser cutters are an automated laser system that includes a CNC controller, machine frame and laser generator.
Laser cutters can cut all types of metals, including mild steel, stainless steel, and nonferrous metals.
Laser cutting is classified into three types: fusion cutting, flame cutting, and remote cutting. An inert gas (typically nitrogen) is used in fusion cutting to expel molten material from the kerf. Nitrogen gas does not exothermically react with molten material and thus contributes no energy to the system.
'The effect that powerful lasers have on actual flesh varies both with the wavelength, or color, of the light and the duration of the pulses that they produce,' as you might expect. The real discovery of these researchers, however, is that lasers cut flesh by causing a series of overlapping micro-explosions.