Tube Laser Cutting Systems Kickstarter

Tube Lasers Cutting Systems Michigan

Reduce the amount of components and save time. You can make tubular frames or metal structures that are easier to assemble and more precise. Your part can be completed in just one programming step and in one machining step.

Gulf States Saw & Machinery Co., Inc. provides a wide range solutions when it comes processing tubes, pipe, and structural metal. Gulf States Saw & Machinery Co., Inc. tube lazers are not only superior in laser-cutting, but they also offer additional processing capabilities to benefit fabricators.

The fiber laser does not require as much maintenance. The fiber laser doesn't need to be cleaned as often as a CO2 laser cutter machine. The fiber laser does not require any preventive maintenance as long as it has access to clean chiller water and that the filters are regularly replaced.

Fiber Laser Cut

Laser tube cutting machines do not have standard material towers. Bundle loaders provide the fastest method of handling tube material. One tube is fed from a bundle into the tube laser by a singularizing system. This type isn't able to feed open profiles like angles and channels. They interlock in the bundle and are not easy to get free. Step loaders can be used to sequence open profiles one by one into the machine, while still maintaining the proper orientation.

Even for XXL tubes, this machine is designed for maximum productivity. This machine is robust and solid-state laser capable of processing tubes and profiles of a wide variety of materials and wall thicknesses.

Fiber Laser Cut
What can a 5.5 watt laser cut

What can a 5.5 watt laser cut

Our system solutions are flexible enough to produce small and large batches with diameters between 10 and 324 millimeters.

ExactCut 430 is a precision laser cutting system for automated processing of thin and thick metals and alloys, brittle materials like sapphire, PCD, and ceramics.

What is the difference between pipe and tube

Cameras are being used by machinery manufacturers to inspect tubes. The quality check takes only about half an second, and the rotations required are reduced. This allows the machine's productivity to be maintained as well as its accuracy.

Let's now look at the benefits associated with an automatic tube and section-bar storage system combined with a Lasertube Cutting system.

Market Forces
Market Forces

A laser tube cutter machine does not come with standard material towers. Bundle loaders are the most efficient option for tube material handling. They feed one tube from each bundle to the tube laser through a singularizing device. This type of feeding mechanism is not suitable for open profiles such as channels or angles, since they are interlocked while inside a bundle and can't be released easily. Step loaders are used for open profiles. They sequence each section into the machine one at a while maintaining the correct orientation.

With diameters ranging from 10 to 324 millimeters and pipe and profile lengths up to 12.5 meters, our system solutions offer the largest available selection for the flexible production of small and large series.

Tube Laser Cutting Systems Yawei

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

TruLaser Tube3000 fiber: The laser tube-cutting machine that is worth the investment is the TruLaser 3000. This is an economical and reliable laser tube cutter. This machine is great for both first-time users and as an add-on.

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.