Explore our high-performance fiber laser systems engineered for exceptional accuracy, high cutting speeds, and low operational overhead.
Founded in July 2004, LXSHOW stands at the forefront of the smart laser equipment sector, bridging the gap between innovative technology and real-world industrial output.
LXSHOW operates a specialized 32,000 square meter factory coupled with over 500 square meters of dedicated R&D and administrative facilities. We are committed to engineering next-generation CNC systems that enable global manufacturing entities to build Industry 4.0 standard smart factories.
Every fiber laser cutting, welding, and cleaning system we manufacture undergoes rigorous quality testing and holds certifications including European Union CE authentication, American FDA certificate, and ISO 9001 quality management system standards.
Through our comprehensive ODM and OEM capabilities, we support over 30 global brands and directly distribute machines to clients across the USA, Canada, Australia, Europe, Southeast Asia, and Africa.
A closer look inside our state-of-the-art facility where technical precision meets high-output manufacturing.
Our heavy gantry machining and assembly zones ensure mechanical structural alignments down to the micron.
In-house mechanical and software engineers designing custom gantries, cutting heads, and auto-nesting software integrations.
Comprehensive training spaces where client operators learn software setup, assist gas dynamics, and maintenance routines.
An in-depth look at chemical compositions, material characteristics, and optical processing methods.
Cutting stainless steel (such as austenitic grades 304 and 316) presents different physical challenges compared to processing carbon steel. Stainless steel contains significant percentages of chromium and nickel, which increase its corrosion resistance but alter its thermal properties. It features low thermal conductivity and high thermal expansion rates, requiring precise heat delivery profiles to prevent deformation.
Traditional mechanical shearing and punching introduce micro-cracks and residual stress along cut edges. Fiber laser systems operating at wavelengths around 1.07 microns offer high absorption rates for stainless steel, minimizing heat-affected zones (HAZ) and producing oxide-free edges when combined with nitrogen assist gas.
Choosing the correct assist gas is critical to achieving specific edge finishes and metallurgical outcomes:
| Material Grade | Laser Source Power | Optimal Assist Gas | Cutting Speed (m/min) | Surface Edge Quality |
|---|---|---|---|---|
| SUS304 / SUS316 (2mm) | 2 kW Fiber Laser | Nitrogen (14-16 bar) | 12.0 - 15.0 | Bright Finish, Burr-Free |
| SUS304 / SUS316 (6mm) | 4 kW Fiber Laser | Nitrogen (18-20 bar) | 2.8 - 3.5 | Bright Finish, Minimal Dross |
| SUS304 / SUS316 (12mm) | 12 kW Fiber Laser | Nitrogen (22 bar) | 1.8 - 2.4 | Smooth Cut, Straight Profile |
| SUS304 (25mm+) | 30 kW Fiber Laser | Oxygen or High-Pressure N2 | 0.8 - 1.2 | Standard Quality, Slag at Base |
Adapting to changing economic environments, automation demands, and technical standardization.
Global procurement teams prioritize reliability, long-term operational efficiency, and rapid customization when sourcing laser systems. Our ODM services address these requirements by providing tailored solutions, including custom footprints, integrated safety features, and specialized sheet handling configurations.
We source critical components from leading international suppliers, ensuring consistent performance and readily available replacement parts:
How LXSHOW CNC systems help optimize production workflows in high-precision manufacturing sectors.
Precision-controlled cutting parameters minimize microstructural damage in heat-sensitive alloys and high-strength stainless steels.
Supplying fully automated tube and sheet laser systems designed to cut structural chassis and exhaust assemblies in high-throughput lines.
Providing micro-laser systems that execute precise cuts in medical-grade stainless steel implants, surgical tools, and structural enclosures.
Enabling fast, burr-free nitrogen cutting on thin-gauge stainless steel sheets to eliminate secondary grinding steps and increase output.
Equipping companies with high-power systems (up to 40kW) capable of cleanly piercing and cutting thick plates for structural frames.
Efficiently processing electrical control cabinets, structural ductwork, and specialized steel bracketry.
Our commitment to continuous innovation, eco-friendly operation, and Industry 4.0 integration.
As manufacturing moves toward autonomous operation, LXSHOW's long-term plan aims to place the company among the industry's leaders by 2040. We are currently developing adaptive optical systems that change focus and spot sizes dynamically based on real-time feedback from the cut path.
Our upcoming systems feature integrated vision sensors and AI nesting software to reduce sheet waste, detect anomalies during operations, and prevent cutting head collisions with tipped parts.
Furthermore, our commitment to green manufacturing drives us to reduce energy consumption in fiber resonators and optimize assist gas flow to lower operational costs for our clients.
Reduces nitrogen consumption by up to 30% through real-time pressure adjustment.
Monitors optical temperature fluctuations to alert operators before degradation occurs.
Seamless connection with auto-storage, gantry loaders, and robotic sorting cells.
Ensuring operational safety and regulatory compliance across diverse international markets.
Our laser enclosures feature double-interlock safety circuits, light curtain sensors, and certified OD4+ observation glass to protect operators from reflected beams.
Our systems meet Class 1 safety enclosure standards for laser products and feature compliant safety keys, indicator lamps, and emergency stop systems.
From plate testing to final assembly calibration, our production workflow follows strict quality management protocols to ensure product consistency.
Addressing common technical and procurement questions from global manufacturing professionals.
For processing 12mm stainless steel, we recommend a minimum fiber laser power of 6kW for standard operations, and 12kW or above for high-speed production. A 12kW system delivers a cleaner surface finish, faster cutting speeds, and minimizes dross formation along the bottom edge.
Warping is typically caused by heat accumulation. To prevent this, our systems utilize specialized CNC nesting paths that distribute cuts across the plate, and adapt the laser's pulse frequency and duty cycle. Additionally, optimized nitrogen pressure acts as a cooling agent directly in the cutting zone.
IPG Photonics is known for high electro-optical efficiency and a global service network, making it a common choice for high-reliability applications. Raycus is a cost-effective, high-power alternative widely used in standard industrial operations, offering competitive performance for many sheet metal applications.
Reflective metals can reflect laser energy back into the delivery fiber, potentially damaging the source. Our systems feature back-reflection protection in the laser resonators, safety monitors, and specialized cutting heads to ensure safe cutting of brass, copper, and aluminum.
We provide comprehensive customization, including custom working dimensions, automatic exchange tables, rotary attachments for tube cutting, automated plate loaders, fully enclosed safety cabins, and custom software integrations for ERP systems.
Our engineers provide global assistance, including system installation, beam alignment calibration, software training (such as CypCut), and maintenance guidance. We also offer online technical support and local service partners in several regions.
Our machines feature proportional gas valves managed directly by the CNC controller. This design dynamically adjusts the assist gas pressure based on the current material thickness and cutting speed, ensuring clean pierces and reduced gas consumption during transit.
Complete your production line with our high-precision bending, deburring, and metal marking systems.