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Laser tube cutting is a highly versatile fabrication technique that has become an integral part of Metalstar Prototype's custom steel tubing services. This advanced technology allows us to quickly and precisely cut complex, 3D profiles from a wide range of tubular materials, including stainless steel, carbon steel, and aluminum.
The key advantage of laser tube cutting lies in its unparalleled speed and accuracy. Unlike traditional tube cutting methods that rely on mechanical saws or abrasive wheels, laser cutting utilizes a high-energy beam to melt and vaporize the metal, resulting in clean, burr-free edges and intricate contours that are simply not achievable through conventional means. This precision is particularly critical for components that require tight tolerances or intricate geometries, such as those found in the automotive, aerospace, and medical device industries.
In addition to its precision, laser tube cutting also offers remarkable flexibility. Our state-of-the-art laser systems can accommodate tubes of varying diameters, wall thicknesses, and material compositions, allowing us to fabricate custom parts for a diverse range of applications. This versatility, combined with our in-house tube bending and welding capabilities, enables Metalstar to provide seamless, end-to-end support for even the most complex tube-based assemblies.
By investing in the latest laser cutting technologies and highly skilled operators, Metalstar Prototype is able to deliver exceptional quality and rapid turnaround times for our clients. Whether you require precise tube components for a new product prototype or large-scale production runs, our laser cutting expertise ensures that your fabrication needs are met with uncompromising precision and efficiency.
Take the part as above picture as an example, this is a 304 stainless steel custom steel tubing fabrication part using 3D tube laser cutting process, the cutting precision is +/-0.02mm, and the material properties as below for reference.
Steel Material Properties | |||||||||
Material Grade/Description | Chemical Composition (weight %) | Tensile strength (Mpa) |
Yield strength (Mpa) |
Elongation | Remarks | ||||
(C) | (P) | (Mn) | (S) | (Si) | |||||
SS304 | <=0.08 | <=0.05 | <=2.0 | <=0.03 | …… | >=520 | >=310 | >=40% |