Tube Lasers Cutting Systems Near Me

Tube Laser Cutting Systems 600w

Leaders in the manufacturing of advanced laser cutting solutions.

The maintenance of a fiber laser is not as important. It doesn't need mirror cleaning or bellows checks like a CO2 Laser Cutting Machine. It does not need to be cooled with cold water, and air filters can be replaced regularly.

Imagine that you have to position a through-hole on top of a tube. It must be centered on the tube's actual dimension. It will be more difficult to center the tube if it is bent. This is the reality of tube fabrication.

StarFiber Series includes compact fiber lasers and optional focusing heads to allow for cutting or laser welding. SmartWeld(tm), a technology that allows for fine and large welds, can also be used.

Square Tube

Processing tubes and profiles can be used in many different ways. You can use them in many industries, including the automotive industry, furniture design and architecture, as well as commercial vehicle construction. Laser-assisted processing of profiles and tubes offers many options for unique design and a manufacturing range that is almost limitless.

The wavelength of fiber lasers is 0.06 microns. This difference is 10 times smaller than the wavelength of CO2 lasers. A fiber laser beam produces a wavelength of 1.06 microns, which is 10 percent smaller than that of a CO2 light source. However, a CO2 light source is much more likely be absorbed by reflective materials. Fiber laser cutting machines have the ability to cut brass, copper, or other reflective materials. Note that CO2 laser light that reflects off the material could not only damage the machine's optical system, but also the entire beam pathway. This risk is eliminated when the beam path is made of fiber-optic cable.

Square Tube
Large Diameter Tubes

Large Diameter Tubes

Lasertubes are our 2D- and 3D laser cutting machines for tubes and bars. Available in sizes from 12 mm - 610 mm (.5" - 24") and lengths up to 18m (60")

PowerLineC CO2 laser-based systems that can precision drill, cut, scribing mark, and emboss many non-metals like glass and organic material.

Tube Lasers Cutting Systems Washington Dc

The images of product are used for illustration purposes only. They may not represent the exact product. Gulf States Saw & Machinery Co., Inc. reserves every right to make changes to product specifications and images without prior notice.

Tube laser cutting offers the best solution for wide-ranging work. Tubes upto O 9.45 inches (240 mm).3D cutting modeCO2 and fiber laser

Tube Laser Cutting Systems 150w
Tube Laser Cutting Systems 150w

Lasertube systems allow you to create or improve new applications, allowing you to enter new industries and increase profit margins.

How can you compensate for this? Traditionally, you will touch your face with a sensor marking the contact point. The tube is then rotated and the opposite end of the tube touched. The control will then be able to see how bent the tube looks. This allows for precise measurements and ensures that the through-holes will work properly. Keep in mind, however, that every rotation of the tube reduces the ability for very high tolerances.

Tube Lasers Cutting Systems Richmond Va

Fiber lasers require little maintenance, are more efficient than traditional CO2 laser cutting machines and can cut reflective materials. They are also faster than CO2 machines for certain metal thicknesses. When it comes to cutting tubes, speed is not necessarily a good thing. You can save time by speeding up the tube processing and producing finished parts.

NIT uses a Coherent Laser Cutting Machine to Vertically Produce Nitinol and Other Metal Components with outstanding precision and edge quality.

Frequently Asked Questions

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.

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.