Some things aren’t quite as evident until you take a closer look at a fiber laser in operation. Because its beam diameter is often one-third the size of a CO2 beam, a fiber laser has a greater power density than a CO2 laser beam. Not only does this allow the fiber to cut faster, but it also allows it to pierce faster. This smaller beam size also gives the fiber the ability to cut intricate shapes and leave sharp edges. Imagine cutting a company logo out of a tube when the spacing between the logo’s letters is 0.035 inch; a fiber can make that cut, while a CO2 laser can’t.
These machines have a rock-solid cutting platform (the SL uses a minerals cast base) and offer unparalleled precision. Contoured cutting accuracy is better than +/-5um. The choice between a fiber laser and the new Monaco USP allows fine cutting of any kind of metal or polymer.
Tubes, profiles and systems are everywhere. They're used for everything from mechanical engineering to system construction to furniture making. With the new possibilities that lasers present, designers are increasingly taking advantage of laser-cut tubes or profiles. This has led to a substantial increase in demand. TruLaser Tube machines are a complete solution for laser tube cutting.
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The maintenance of a fiber laser is not as important. It doesn't need mirror cleaning or bellows checks like a CO2 Laser Cutting Machine. It does not need to be cooled with cold water, and air filters can be replaced regularly.
Fiber lasers are practically maintenance-free and have superior wall plug efficiency to CO2 laser cutters. They can also cut reflective materials and provide precise cutting. They can also be used to cut certain metal thicknesses faster than CO2 machines. Speed is relative when it involves cutting tube. It is possible to reduce the time required for tube processing and produce finished parts faster.
StarCut Tube is a tube-cutting laser machine that offers precision up to +/- 5um.
Gulf States Saw & Machinery Co., Inc. can provide a variety of fabrication solutions for processing tubes, pipes, or structural steel. The tube lasers of Gulf States Saw & Machinery Co., Inc. offer superior laser-cutting technology, but many include additional processing functions that provide value-added benefits to fabricators.
The product images shown are for illustration purposes only and may not be an exact representation of the product. Gulf States Saw & Machinery Co., Inc. reserves the right to change product images and specifications at any time without notice.
The CO2 solution for large diameter tubes and profiles.Tubes up to Ø 14" / 24" (355 mm / 610 mm)3D cutting modeCO2 laser
TruLaser Tube3000 fiber: The laser tube-cutting machine that is worth the investment is the TruLaser 3000. This is an economical and reliable laser tube cutter. This machine is great for both first-time users and as an add-on.
Even for XXL tubes, this machine is designed for maximum productivity. This machine is robust and solid-state laser capable of processing tubes and profiles of a wide variety of materials and wall thicknesses.
The other factor to keep in mind is that the traditional method of checking for bows and twists in the tube can take up to five or seven seconds before cutting commences. With the traditional means of touch sensing, you have to trade productivity for accuracy. Again, in the age of fiber laser cutting, this can seem like a lifetime, but working with tube is not as simple as working with sheet metal.
Motion Dynamics is a major manufacturer of neurological sub-assemblies. They include steerable catheters as well as "pull wire" assemblies. Our StarCut Tube machines are used to precision cut key components.
A fiber laser cutting machine generates a laser beam using active optical fibers and transmits it to the machine's cutting head via a transport fiber. This extremely hot laser is condensed into a narrow beam and is used to cut through various metal thicknesses.
Laser cutting pipe is the best way to achieve repeatable and precise cutting in applications where the precision of the cut itself is important.
Modern CO2 machines typically generate the laser beam in a sealed glass tube filled with gas, typically carbon dioxide. A high voltage flows through the tube, interacting with the gas particles and increasing their energy, resulting in the production of light.