Fiber lasers don't require as much maintenance. It does not require the same attention as a CO2 laser-cutting machine in terms of mirror cleaning and bellows inspections. It doesn't require any maintenance, as long it has clean chiller water to cool off and its air filters are regularly changed.
There are no standard material towers with a laser tube cutting machine. Bundle loaders, the most efficient of the tube material handling options, feed one tube at a time from the bundle into the tube laser via a singularizing system. This type of feeding mechanism doesn’t work with open profiles, such as angles or channels, because they interlock while in a bundle and don’t come free easily. For open profiles, step loaders are used, which sequence a section one at a time into the machine while keeping the correct orientation of that section.
Due to the high power needed to create a CO2 Laser, it is less efficient than a fiber-laser. Also, the large chillers that are required to make CO2 lasers work require more power. You are using less power due to the fiber laser's wall plug efficiency exceeding 40 percent. This means that you also use less of your floor space in high-demand areas.
The fully-automatic solution that guarantees maximum productivity and fast production changes.Tube Ø Range min. 0.47" (12 mm) - max. 6" (152.4 mm)3D cutting modeFiber laser
Keep in mind that the traditional method for checking for twists or bows within the tube can take between five and seven seconds before cutting begins. Traditional touch sensing methods can be slow and inaccurate. While this may seem like a long time in the ageof fiber laser cutter, it is actually not that simple when working with tubes.
You don't need to spend a lot of money or be very technical in order to have your own laser tube cutting. Anybody can cut like no one has ever seen, from students to engineers.
Lasertube systems are a great way to improve or create new applications. They also allow you enter new industrial areas and increase your profit margins.
In sheet laser cutting, the subject of material loading/unloading automation is well-established. This can be achieved with many different solutions. Tube laser cutting systems that are equipped with vertical storage for tubes or section bars can handle bars automatically, allowing for unmanned production changes. They have been around for only a few years.
Another consideration is the fiber laser’s briefcase-sized modules—they allow for redundancy. If one module has a problem, the resonator doesn’t shut down completely. The fiber laser is redundant in a way that the other modules can produce more power temporarily to support the down module until repairs can be completed—which, by the way, can be done in the field. Other times the fiber resonator can continue producing reduced power until repairs can be made. Unfortunately, if a CO2 resonator has an issue, the entire resonator is down, not just in a reduced-power mode.
Parts are held in place with automatic tabbing, done in FabCreator and a set o jaws on each drive chuck or idler chuck.
Tube cutting also requires a weld seam. This material is rolled-formed and then welded together. These two points should be considered:
You might have noticed that cutting speed has not been discussed yet. While it is possible for a tube to be cut at up to 500 inches per min, that is not always possible. Laser tube cutting requires that you focus on the time it takes to load a tube and index it in order to cut. Laser tube cutters are slow and take a lot of time to process parts.
StarFeed is an automatic loader/unloader that is compatible with the StarCut Tube laser cutting machine. Available in sizes S and S, this combination allows for automated dry or wet cut of tubes from 1-200 mm in diameter. StarFeed L is capable of storing up to 48 tubes. Its sensor-controlled gripping unit avoids damage. The result is a large increase in productivity.
We offer you the ideal solutions for the world of laser tube cutting. Find out here how lasers can eliminate entire process steps while also increasing the range of parts you can produce.
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.