The fiber laser's small modules, which are compact and easily transportable, allow for redundancy. The resonator won't completely shut down if one module experiences a problem. In order to provide power for the down module, the fiber laser can temporarily produce more power until it is repaired. This can, of course, be done in the field. Sometimes, the fiber resonator will continue to produce reduced power until repairs are made. If a CO2 reactor has an issue, it can cause the whole resonator to go down.

The tube cutting laser machine StarCut Tube offers the ultimate precision, with contour cutting accuracies better than +/- 5µm.

Fiber lasers can cut thin materials at high speeds. They are also very energy-efficient and require little maintenance. This laser cutting technology has special properties that allow for applications in steel, stainless steel, aluminum, as well as non-ferrous metals like copper and brass.

Fiber lasers can be used to cut reflective materials and provide precise cutting. They are almost maintenance-free. They can also cut certain thicknesses of metal faster than CO2 lasers. But speed is only relative when cutting tube. Speeding up the process of cutting tube and producing finished products can make time savings.

Tube Laser Cutting Systems Working

Keep in mind that there is no such thing as a perfect tube. They have bows. Weld seams can protrude not only on the exterior but also the interior of the tube. It’s a real challenge to process this material consistently and rapidly when such inconsistencies exist from one product run to another.

Motion Dynamics is a leader in the manufacture of neuro-sub-assemblies. This includes steerable catheters, "pull-wire" assemblies and other neurological components. We use our StarCut Tube machines to precisely cut key components.

Tube Laser Cutting Systems Working
Tube Laser Cutting Systems 1325

Tube Laser Cutting Systems 1325

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.

Gulf States Saw & Machinery Co., Inc. offers tube laser manufacturing capabilities that allow our customers to replace manual processes, and optimize the cutting process.

Cnc

The most productive solution for tubes of any section. Tubes up to Ø 6" (152.4 mm)2D cutCO2 or fiber laser

NIT's Coherent laser cutting machine is used to vertically produce nitinol, and other metal components. It has exceptional precision and edge quality.

Tube Lasers Cutting Systems Online
Tube Lasers Cutting Systems Online

Most metal fabricators have a strong understanding of what fiber laser cutting technology has done for flat sheet processing, but just what has the fiber laser done for tube cutting? Quite a bit, actually.

Some things are obvious. A fiber laser has a smaller laser "generator" than a CO2-resonator. Actually, the fiber laser is made by banks of diodes which are combined in a small module. These modules can have a power range from 600 to 1,500 W. To create the final powered resonance, multiple modules are spliced together. This is usually the same size as a small filing cupboard. The fiber-optic cables channel the light and amplify it. Fiber-optic cables transmit the same light as when they were generated, with no loss of power and quality. The fiber-optic cable is then adjusted and focused to cut the appropriate material.

Tube Lasers Cutting Systems Ohio

This is the easiest way to enter tube laser cutting. Tubes upto O 4,72" (120mm)2D CutFiber laser

Discover how Cambus Medical uses the Coherent StarCut Tube laser-powered tube cutting machine and Select Laser Welders to create business success.

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.