Metal fabricators are well-versed in the basics of fiber laser cutting technology for flat sheet processing. But what about tube cutting? It's quite a lot.
Another thing to remember is that traditional methods of checking for twists and bows in the tube may take as long as five to seven seconds before cutting begins. You have to compromise accuracy for productivity with traditional touch sensing. This can be frustrating, especially in this age of fiber laser cutting. However, working with tube is much more difficult than working with sheet metal.
Many believed that fiber lasers were only suitable for thin materials. Because of its longer wavelength, CO2 created enough kerf to allow for material removal. The fiber laser could not produce the same results or kerf with thicker materials. This problem has been solved by collimating technology, which can create a wider fiber laser-generated beam. This allows for materials separation and more room to remove thicker materials. The machine can switch between the beam widths, so it can process thinner materials with the narrower beam. This allows for faster processing of different-sized materials using the same fiber laser cutting machine.
With a laser tube-cutting machine, there are no standard towers. Bundle loads are the most efficient method for handling tubes. These loaders feed one tube per bundle into the tube cutter via a singularizing mechanism. This feeding method is not compatible with open profiles such as angles or channels. Because they interlock within a bundle, and don't allow for easy release, this type of feeding doesn't work. Step loaders are employed for open profiles. These machines sequence one section at a time and maintain the correct orientation.
Laser cutting machines that cut sheet metal can turn a sheet into a sheet in seconds. A laser tube cutter machine can do the same thing, but it's quite different in how it's done.
Tubes are and will continue to be used throughout the entire industry, including in system and mechanical engineering as well as furniture construction. New design possibilities have been opened by lasers. This means that more and more designers are utilizing the benefits of laser-cut tube and profile cutting, which is driving up demand. TruLaser Tube machines offer all-round solutions in the field of laser tube cutters.
StarCut Tube's tube-cutting laser machine StarCut Tube provides the highest precision and contour cutting accuracy, at a range of +/-5um.
TruLaser Tube 3000 Fiber is a worthwhile laser tube cutter. It is affordable even when not in use. It is ideal for beginners or as an additional machine due to its reliability.
Learn how the Coherent StarCut Tube, StarFiber laser-powered cutting tools helped NPX Medical achieve a competitive edge when it comes to stent manufacturing.
When fabricators think of fiber laser cutting technology they may first think high-speed. This might be true. However, speed is subjective when it comes to tube-cutting. It's not the cutting speed of the tube that matters, but rather the processing time.
Learn how the Coherent StarCut Tube was used to cut stents and how StarFiber, a laser-powered cutting machine, helped NPX Medical.
The worthwhile laser tube cutting machine: the TruLaser Tube 3000 fiber is economical even when it is not being fully utilized. Thanks to its reliability and easy of operation, it is perfect for first-time users or as a supplementary machine.
StarFiber Series are compact fiber lasers that include optional focusing heads. These can be used for laser cutting and welding, or for laser cutting. SmartWeldTM technology is available for fine welds.
There are many ways to use processed tubes and profiles. It can be used in automotive, furniture design, architecture, and commercial vehicle construction. The laser-assisted processing (profiles and tubes) offers a wide range of manufacturing options and unique design possibilities in many industries.
The laser beam is the most important component of the laser cutter; it determines wavelength and power, and thus the material that it can cut or engrave. Solid-state lasers, fiber lasers, and CO2 lasers are the three main types of lasers used in laser cutting.
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 tube cutting is a method and technique for cutting tubes, structural shapes, or channels. These items will be cut to the required length during the process. It can also make holes or designs in tubing. It is a precise cutting method. It can also be used on a variety of materials in a variety of shapes and sizes.