Explore our standard-setting CNC laser cutting, bending, and surface finishing equipment built for high-accuracy production lines.
A trusted global leader in smart laser equipment design and manufacturing since 2004.
Established in July 2004, LXSHOW owns more than 500 square meters of specialized research and office space alongside a 32,000 square meter standardized manufacturing facility. Driven by a dedicated R&D engineering team, we focus on producing world-class CNC laser cutters, high-capacity benders, fiber welders, and industrial smart cleaning systems.
All machines have passed the European Union CE authentication, American FDA certificate, and are fully certified to ISO 9001 quality systems. We offer comprehensive OEM/ODM services for over 30 leading global manufacturers, establishing customized workflows for high-precision components.
In modern industrial manufacturing, laser cutting stainless steel sheets represents the peak of accuracy, cost efficiency, and design flexibility. Stainless steel alloys, particularly grades 304, 316, 316L, and duplex varieties, are widely selected across industries for their outstanding mechanical properties, rust-resistance, and aesthetic quality. To process these materials without damaging their chemical stability requires advanced fiber laser technology configured with precise gas supply, thermal regulation, and structural design.
Unlike conventional mechanical processes, laser cutting uses a highly concentrated, coherent beam of light that instantly melts, burns, or vaporizes the target material. Assisted by high-purity nitrogen or oxygen gas, the laser removes the molten slag to form a clean kerf. This contact-free process limits thermal deformation, preserves the flat alignment of the sheet metal, and delivers edge quality that cuts down on post-processing requirements.
Our industrial systems are optimized to handle a wide range of ferrous and non-ferrous metals. Understanding the unique thermal parameters of each material is crucial for clean cuts:
The manufacturing sector is in the middle of a major shift from separate automated units to fully integrated ecosystems. Our roadmap focuses on integrating laser cutting, CNC bending, and robotic welding into single-flow smart production lines. By 2040, LXSHOW plans to launch AI-driven diagnostic networks that track laser alignment, gas purity, and nozzle condition in real time to prevent downtime.
This roadmap is supported by high-power fiber laser modules ranging from 1kW to 30kW, automated loading and unloading gantries, and digital twin management software. Introducing smart deburring systems like the LX-RRW-450 makes post-processing safer and more efficient, replacing manual grinding with automated surface styling.
Different metals require dedicated laser parameters, assist gases, and feed rates to achieve clean edges and prevent structural deformation.
Aluminum
Carbon Steel
Copper
Galvanized Steel
Other Alloys
Round Tubes
Square Tubes
Stainless Steel
Global manufacturers need reliable suppliers who can weather shifting trade conditions and economic changes. By working with direct Chinese manufacturers, companies gain access to a highly resilient domestic supply chain. At LXSHOW, we control key steps of production—from the heavy structural machine beds to the electrical layouts and CNC programming.
Our 32,000㎡ smart manufacturing factory ensures consistent production capacities. Backed by partnerships with top-tier laser source makers, we maintain a steady supply of optical components, high-load guides, and mechanical controllers. This localized industrial strength enables us to deliver shorter production times and offer competitive OEM/ODM pricing for clients worldwide.
Direct factory integration with top raw materials suppliers guarantees consistent alloy quality.
Three-step quality check: component structural testing, active runtime runs, and dynamic optical calibration.
Our stainless steel laser cutting and processing equipment is utilized in multiple industrial fields:
Processing high-temperature alloys and sheet components with low heat-affected zones (HAZ) to maintain mechanical strength.
Cutting car frames, structural exhaust sheets, and interior brackets with high speed and precision.
Safe processing of surgical-grade stainless steels, avoiding tools that risk chemical contamination.
A closer look inside our corporate infrastructure, R&D labs, and heavy machining workshops.
We use quality optics, rigid structural foundations, and responsive drive mechanisms to ensure long-term stability.


















LXSHOW offers full engineering and operational support in target markets, helping clients set up production lines smoothly. We design our machines to comply with EU safety, CE markings, and FDA safety rules, making it easier to integrate our systems into local operations.
Our localized support structure includes:
Get answers to common technical, material, and system-related fabrication questions.
A: Nitrogen (N2) is preferred because it prevents oxygen-driven discoloration and oxidation at the cut boundary. This yields a clean, bright cut edge that can be welded or finished without acid pickling. Oxygen (O2) can be used for carbon steel but creates an oxidized layer on stainless steel.
A: Fiber lasers have a shorter wavelength (typically around 1.06 microns compared to 10.6 microns for CO2), which increases energy absorption in metals. This results in faster cutting speeds on thin to medium sheets, smaller heat-affected zones, and reduced operational costs.
A: Lower-power systems (1kW to 3kW) cut up to 8mm stainless steel sheets cleanly. High-power systems (6kW to 20kW+) handle thick plates up to 40mm and thicker. Achieving clean cuts on thick sheets requires careful calibration of nozzle size, focus distance, and gas pressure.
A: Dross or burrs are prevented by finding the right balance between cutting feed rate, gas pressure, and nozzle height. Incorrect speeds or insufficient gas pressure fail to blow the molten metal from the kerf, causing it to cool and form burrs on the bottom edge.
A: Our machines carry European CE certificates, meet USA FDA guidelines for radiation safety, and are built under ISO 9001 certified workflows. These safety standards support safe operations and smooth customs clearance in over 150 countries.
Explore auxiliary systems designed to work alongside our laser cutting equipment.
Our production facilities also output high-stability laser cladding systems, surface cleaners, and bending tools:
A second collection of our popular machinery systems, featuring high-capacity shearing, deburring, and marking units.