The fiber solution to large-diameter profiles and tubes. Tubes up O14 (355.5 mm)3D Cutting ModeFiber laser
The laser cutting system StarCut Tube SL provides highest accuracy, superior reliability, and high performance when cutting complex medical devices such as stents, aortic valve replacements, or hypotubes.
It's 1/3 of a full 20-foot (248") tube making it convenient for you to make 3 pieces of stock. This allows for you to still purchase full tubes lengths without wasting any material.
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.
Cambus Medical's Coherent StarCut Tube laser-powered tub cutting machine and Select Laser Welders are used to achieve business success.
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StarFeed, an automated loader/unloader of the StarCut Tube Laser Cutting Machine, is available in sizes S & L. This allows for fully automated dry or moist cutting tubes with diameters between 1 and 20 millimeters. StarFeed L holds up to 48 tubes. It also allows for the processing and storage of oval tubes. Its sensor-controlled gripping unit avoids damage. It results in a huge increase in productivity.
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.
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.
Discover how Cambus Medical uses the Coherent StarCut Tube laser-powered tube cutting machine and Select Laser Welders to create business success.
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.
Some machinery manufacturers use cameras to check tubes. This is done in an effort to close the time gap. Cameras reduce the time required to check quality and reduce the number rotations. This ensures that the machine can retain its productivity and accuracy.
Laser tube cutting at home doesn't have to be complicated or expensive. Students and engineers alike can cut like never seen before
Coherent StarCut Tube Hybrid version gives you the most flexibility in cutting different medical devices. This is a complete turnkey laser machine that incorporates two lasers inside a compact housing.
Maximum material cutting thicknesses by 1000W fiber laser cutting machine: Carbon steel has a maximum thickness of 10mm; stainless steel has a maximum thickness of 5mm; aluminum plate has a maximum thickness of 3mm; and copper plate has a maximum thickness of 3mm.
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.
What is the operation of a CO2 Laser? 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.