With the Fusion Pro Series, you can add a fiber light source to your CO2 Laser machine. A dual source laser system will enhance your capabilities and help you increase your product lines and profits.
You might be interested in building a 2D/3D laser cutter kit with CO2 laser tubes and fiber laser generators. This will allow you to cut metal, wood, plywood or chipboard.
GSS Machinery CO2 laser cutting machines offer many possibilities. GSS Machinery laser cutting machines are easy to use for hobbyists, entrepreneurs, and makers. They can produce anything from simple machine designs to packaging and awards to trophies and awards. Laser machines can be used to cut wood and paper, plastic, fabric and foam with great precision and speed. They are clearly superior to other cutting technologies.
GSS Machinery CO2 laser-cutting machines offer many possibilities. GSS Machinery laser-cutting machines allow makers, hobbyists, as well as entrepreneurs, to produce everything they need, from machine designs, packaging, to awards and trophies. Laser machines can cut wood or paper, plastic, cloth, foam, and other materials at high speed and precision. This gives them an edge over other cutting technologies.
All-in-1 sheet metal and tube cutters for sale at prices starting from $42,500 to $1.16,000 for dual-purpose, commercial use with automatic motion.
We have the right laser cutting machine for your needs, whether you are looking to cut hardwood, plywood or mdf.
Fiber laser was introduced in the market in circa 2008. Fiber lasers possess a higher speed of cutting and low operating costs. At the beginning of this invention, it couldn’t perform on thicker metals.
CO2 laser cutters cannot cut reflective and conductive materials but the fiber laser can. But, there are certain aspects in which CO2 laser cutters are better than fiber laser cutters. Primarily when the manufacturers have to work on some thicker metals where good edge quality is required, they choose CO2 laser cutters.
In order to make the machine easy to use, an user-friendly controller and powerful CAD/CAM software based on Windows and macOS are indispensable. Some of them are free with simple functions, while paid software is more professional for your business. All depends on your business needs.
With flame cutting, the material’s ignition temperature must be below the melting point. With high-alloyed steels and nonferrous metals, flame-cutting with oxygen is feasible but, for qualitative and economic reasons, it is not ideal.
Next, press the main switch to turn on the main power of the machine. Turn the key switch on the control panel. This is machine-specific and not relevant to all lasers. If all the covers fixed with safety circuit breakers are closed, the system will start to quote after startup. After turning on the machine, the table will move all the way down while the pro laser head moves to the zero position (located in the upper left corner). When there is a sound and the LED light flashes slowly and steadily, the reference process has been completed correctly and the machine is ready to start operation.
The staff must be present to monitor the cutting condition of equipment. If an emergency arises, they will need to press the brake key quickly.
Due to the thin incision of the fiber laser, the gas consumption is large (especially when cutting with nitrogen).
This user-friendly laser cutting/engraving machine has the easiest setting up protocols. The accuracy of this machine is outstanding because of the high-speed software and good communication in the machine. The software is Grbl software which is open-source software so no need to worry about software procurement.
Cutting thick materials is difficult.
The less effective laser cutting becomes as the material thickness increases. For example, when it comes to cutting thick sheets of carbon steel, laser cutting may be difficult.
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.
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