Tube Lasers Cutting Systems Nj

What can you do with old laser tubes

You will find the perfect solution for your laser fabrication needs, while still ensuring process quality and efficiency in both metal and nonmetal fabricating.

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Metal fabricators know a lot about what flat sheet processing has involved with fiber laser cutting technology. But, what does the fiber laser do for tube cutting? A lot actually.

StarCut Tube, the laser cutting system StarCut Tube, SL offers high precision, superior reliability and high performance when cutting complex medical device such as stents or aortic replacements.

Tube Lasers Cutting Systems Limited

StarFeed is an automated unloader/loader for StarCut Tube laser cutters. It is available in two sizes: S and L. These combination options allow fully automated dry and wet cutting of tubes up to 20 mm diameter. StarFeed L can store up to 48 tubes, and it even supports the processing of oval tubes. Its sensor-controlled gripping unit avoids damage. This results in a significant increase in productivity.

How do you compensate for that? Traditionally, you are going to come down and touch the face with a sensor that marks the contact point. The tube is then rotated, and the opposite side of the tube is touched. That gives the control an idea of just how bowed the tube is. This method is accurate and can ensure those through-holes work out for the application. But keep in mind that each time a rotation of the tube occurs, the ability to deliver very high tolerances is reduced.

Tube Lasers Cutting Systems Limited
Fiber Laser

Fiber Laser

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.

Check out our StarCut Tube laboratory and production area to see more about these fully-automated multi-axis CNC machine for tubes and flat materials.

Bystronic Tube Laser

Medical device manufacturing is possible with precision and maximum uptime using Coherent Laser Systems for cutting, welding drilling, texturizing and marking.

North America's most important magazine for metal forming and fabricating, The FABRICATOR is the FABRICATOR. The magazine provides news, technical articles and case histories to help fabricators do their jobs better. Since 1970, the FABRICATOR has been serving the industry.

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You can choose between 2D or 3D laser cutting technology, which allows you to create parts with a very specific shape. This includes tubes of various shapes, such as squares, rectangles, and profiles with different open cross-sections (e.g H, L and Tcross-sections). The 3D technology allows for bevel cuts of up to 45 degrees. This flexibility eliminates the need to do costly milling, drilling, punching or sawing.

Many people believed that fiber lasers could only cut thin materials. The CO2, due to its longer wavelength created enough kerf when cutting thick materials. Fiber lasers couldn't produce the same result with thicker material. Recent developments have addressed this problem with collimating technologies that produce a larger fiber laser-generated beam which creates materials separation. Switchable beam width allows the machine to use the narrower beam for processing thin materials. This allows the machine to process multiple-sized materials more quickly on one fiber laser cutting machine.

Lasertube Systems

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.

Some things are very obvious. A fiber laser's laser generator is smaller than a CO2 resonator. The fiber laser is actually made from banks of diodes, which are assembled in a module the size of a briefcase. It can produce power from 600 to 1,500 Watts. The final powered resonator is made up of multiple modules that are connected together. It can be as small as a small filing cabinet. Fiber-optic cable amplifies the light produced and channels it. The light that exits the fiber optic cable is exactly the same as it was when it was generated. There is no loss in power or quality. The light is then focused and adjusted to determine the material that will be cut.

Frequently Asked Questions

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.

CO2 laser cutters are the most commonly used types of laser cutters because they are low power, relatively inexpensive, efficient, and can cut through and raster a wide range of materials.

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.