Jinan Itech Machinery - a Professional Tube Laser Cutting Machine Manufacturer
Founded in 2003, we are a high-tech enterprise integrating R&D, design, production, maintenance and marketing. We have a high level of professionalism and service system.
Variety of Products
We can provide customers with fiber laser cutting machines, plasma cutting machines, metal plate laser cutting machines, plate and pipe laser cutting machines, pipe laser cutting machines, enclosed fiber laser cutting machines and other products. They can be used for cutting a variety of plates and pipes.
Rich Market Experience
Our products are sold to more than 120 countries and regions including the United States, Canada, Australia, Europe, Southeast Asia, and Africa. At the same time, we have provided OEM services to more than 30 manufacturers.
Professional Service
We provide 24-hour service, 365 days a year, including design, installation, training and maintenance. We provide pre-sales and mid-sales services in a one-to-one model by professional sales managers. For after-sales service, we also have English-speaking engineers in a one-to-one model.
Multiple Honors
In 2013, our company was awarded the title of "Advanced Woodworking Machinery Manufacturing Enterprise" by the China Machinery Industry Association. In 2016, we were rated as "Service Star of International Trade Industry" by Shandong Provincial International Trade Organization.
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Square Pipe Fiber Laser Cutting Machine
1. Working area: Pipe diameter: 20-180mm, Pipe length: 3m/4m/6m. 2. Guide rail Taiwan HIWIN. 3. AC Add to Inquiry -
1KW Fiber Laser Pipe Cutting Machine
1. Laser cutting torch: Switzerland Raytools. 2. Guide rail Taiwan HIWIN. 3. AC servo motor & Add to Inquiry -
Metal Pipe and Tube Fiber Laser Cutter Machine
1. Working area: Pipe diameter: 20-180mm, Pipe length: 3m/4m/6m. 2. Laser cutting torch: Add to Inquiry -
Metal Tube Fiber Laser Cutting Machine
1. Working area: Pipe diameter: 20-180mm, Pipe length: 3m/4m/6m. 2. Laser generator: Max,Raycus and Add to Inquiry -
Square Pipe Fiber Laser Cutting Machine
1. Working area: Pipe diameter: 20-180mm, Pipe length: 3m/4m/6m. 2. Guide rail Taiwan HIWIN. 3. AC Add to Inquiry -
Stainless Steel Tube Plate Laser Cutting Machine
1. Working area: 1500x3000mm, optional:1300x2500mm,1500x3000mm,1500x6000mm,etc.. 2. Pipe diameter: Add to Inquiry -
Metal Tube Pipe Laser Cutter
1. Working area: Pipe diameter: 20-180mm, Pipe length: 3m/4m/6m. 2. Laser generator: Max,Raycus and Add to Inquiry -
Fiber Laser Cutting Machine for Tube
This Aluminum Tube Fiber Laser Cutting Machine is a new type of laser with high energy density and Add to Inquiry -
Metal Tube Laser Cutter
This machine has the function of automatic precise positioning. Only need to feed manually to Add to Inquiry -
Metal Tube Fiber Laser Cutter
This Metal Tube Fiber Laser Cutter covers a small area, the structure is compact and beautiful, Add to Inquiry -
Automatic Tube Laser Cutting Machine
The machine is highly flexible and easy to operate. This Aluminum Tube Fiber Laser Cutting Machine Add to Inquiry -
Steel Tube Laser Cutting Machine
This Aluminum Tube Fiber Laser Cutting Machine covers a small area, the structure is compact and Add to Inquiry

Tube laser cutting machines are mainly used to cut various metal hollow circular tube materials, such as stainless steel pipes, carbon steel pipes, galvanized pipes and other industrial and civil metal pipes. There are many types of tube laser cutting machines to meet different cutting needs. For example, 2-axis tube laser cutting machines cut tubes in two dimensions. Based on precision laser cutting technology, this equipment can be used on materials of various shapes and sizes.
Several Core Components of Tube Laser Cutting Machines
Bed Part
The bed of the tube laser cutting machine is the mechanical part that realizes X, Y, and Z-axis motion, including the cutting work platform. It is used to place the workpiece to be cut and move it correctly and accurately according to the control program. It is usually driven by a servo motor.
Laser Generator
It is a device that generates laser light source. For laser cutting applications, most use CO2 gas lasers or fiber lasers with high electro-optical conversion efficiency and high output power. Since laser cutting requires high beam quality, not all lasers can be used for cutting.
External Optical Path
An external optical path, a refractor, is used to guide the laser in the desired direction. In order to prevent the failure of the optical path, all reflectors should be protected by protective covers and supplied with clean positive pressure protective gas to protect the reflectors from contamination. A set of well-performing lenses will focus a beam of light with no divergence angle into an infinitesimally small spot.
CNC System
This system controls the movement of the machine tool body in the X, Y, and Z axes, and also controls the output power of the laser. It is a key component for the entire cutting machine to realize automated processing.
Cutting Head
It mainly includes components such as a cavity, focusing lens frame, focusing mirror, capacitive sensor, auxiliary air nozzle, etc. The cutting head drive device is used to drive the cutting head to move along the Z-axis according to the program, and consists of a servo motor and transmission components such as screw rods or gears.
Chiller
Chillers are used to cool laser generators. It cools the water to take away excess heat and keep the laser generator working properly. The chiller also cools the external light path reflector and focusing mirror of the machine tool to ensure stable beam transmission quality and effectively prevent the lens from deforming or bursting due to excessive temperature.
Gas Cylinder
Gas cylinders include the working medium gas cylinder and the auxiliary gas cylinder of the laser cutting machine, which are used to supplement the industrial gas used for laser oscillation and the auxiliary gas supplied to the cutting head.
Air Cooling Dryer and Filter
These components are used to provide clean and dry air to the laser generator and optical path to maintain the normal operation of the optical path and reflector.
Features of Tube Laser Cutting Machines
Tube laser cutting machines can handle many different sizes and shapes of tubing, from less than 1 inch all the way up to 9 inches. It can cut round, rectangular or irregular contour tubes. This variety shows the wide range of flexibility these machines can handle.
Tube laser cutting machines are suitable for a variety of materials such as carbon steel, aluminum, stainless steel, and metals such as titanium. Especially for reflective materials, you should choose a fiber tube laser cutting machine instead of a CO2 cutting machine. You can even cut non-metallic materials such as plastic.
Tube laser cutting machines are extremely efficient. First, pipes cut with these machines do not require any additional processing after cutting because the cuts are clean and burr-free. Secondly, these machines are equipped with automated CNC systems, so cut-to-length cutting and complex designs can be completed on one machine
The cutting accuracy of tube laser cutting machines is based on reliable programming systems, advanced laser cutting technology and less manual intervention. Once programmed, the laser cutter can be automated and requires no adjustments.
The efficiency and precision of tube laser cutting machines means that even complex parts can be produced simply and automatically. This automated cutting process reduces manual labor and saves time. Therefore, your production costs will be reduced when using a laser tube cutting machine.
Advantages of Tube Laser Cutting Machines

Strong Versatility
As a special laser cutting machine, the tube laser cutting machine can be used to cut standard metal pipes (round pipes, rectangular pipes, oval pipes, etc.), profiles (channel steel, angle steel, etc.) and some special-shaped pipes.

High Precision
Compared with traditional cutting technology, the tube laser cutting machine has higher cutting accuracy because its contour accuracy can reach ±0.05mm. Moreover, it ensures smooth, burr-free cuts. It is non-contact processing, and the heat-affected zone of laser cutting is very small, so the material is almost not deformed.

Good Flexibility
The tube laser cutting machine offers good flexibility as it utilizes a professional CNC system and a set of material programming software. This means users can change products at any time. It can also realize cutting, chamfering, grooving or hole cutting, scribing and other processes of complex pipe structures.

High Efficiency
The tube laser cutting machine has high cutting efficiency and can achieve mass production. It can replace mechanical drilling, milling, sawing, punching or deburring and other processes that require equipment and hard tools to process different metal pipes.
Applications of Tube Laser Cutting Machines
Tube laser cutting machines replace some mechanical drilling, milling, stamping and other processing machine tool-based processes. It is widely used in the following industries:
Automotive
Laser pipe cutting machines are ubiquitous in the automation industry throughout the process of exhaust systems, rails, chassis and countless other parts. Due to its high precision, it is a necessity in large-scale manufacturing operations when developing complex shapes.
Manufacturing
For the sheet metal manufacturing industry, the machine helps produce customized designs in less time, which is not possible with traditional methods. CNC pipe cutting technology enables mass customized production.
Electronics & Technology
Tube laser cutting machines are widely used in the manufacturing of electrical and electronic components. It can output excellent manufacturing of small precision parts and better quality control.
Medical Devices
Tube laser cutters are used to manufacture medical devices such as surgical instruments, implants, and diagnostic equipment. The precision of 3D cutting makes it an ideal tool for machining complex medical parts with high tolerances.
Crafts
Fiber laser machines ensure flexibility in metal pipe processing, and this technology can cut and engrave any shape in any direction according to the design program. The greater advantage is that the operation response speed is faster according to customer needs, and truly personalized customization is achieved. Therefore, the use of fiber laser tube cutting machines can complete the cutting of any complex output structure, and the demand within the handicraft industry is growing rapidly to apply it to manufacturing.
It’s hard to imagine achieving optimal tube cutting - whether the workpieces are round, square, rectangular, or asymmetrical in shape - without lasers. Laser systems revolutionized the process of tube cutting, especially concerning complicated shapes. Such a machine requires a significant initial investment, especially if you are working with large tube sizes and introducing automation and other new technologies into the production process, so you’ll need to plan carefully to ensure that laser tube cutting is cost-effective for your company. Ultimately, you need to consider several variables before deciding to purchase a laser tube cutting machine; product design, process simplification, cost reduction, and response times are among the most critical.
Product Features
Laser cutting can lend itself to completely new product designs. Innovative and complicated designs are easy to process with the laser and can make a product stronger and more aesthetically pleasing, often reducing weight without sacrificing strength. Tube lasers excel at supporting the tube assembly process. Special laser-cut features that allow tube profiles to be bent or joined easily can simplify welding and assembly greatly and help reduce the product’s cost. A laser allows the operator to cut holes and contours precisely in one working step, eliminating repeated part handlings for downstream processes. In one specific example, making a tube connection with a laser instead of sawing, milling, drilling, deburring, and the associated material handling reduced the manufacturing cost by 30 percent. Easy programming from a computer-aided design drawing makes it possible to program a part quickly for laser cutting, even if it is for small-batch production or prototyping. Not only can the tube laser process parts quickly, but setup time is minimal, so you can make parts just-in-time to reduce inventory costs.
Matching the Machine to the Applications
After taking inventory of your typical manufacturing steps, your next step is to review the available features and decide which are essential.
*Cutting Power
Keep in mind that most tube lasers are equipped with resonators that deliver 2 to 4 kW of cutting power. This is sufficient to cut the typical maximum thickness of mild steel tubing (5⁄16 inch) and the typical maximum thickness of aluminum and steel tubing (¼ in.) efficiently. Fabricators that process substantial amounts of aluminum and stainless steel will need a machine at the high end of the power range, whereas companies that work with light-gauge mild steel can likely get by with one at the low end.
*Capacity
The machine’s capacity, usually rated in maximum weight per foot, is another critical consideration. Tubes come in a variety of standard sizes, typically from 20 to 30 feet and sometimes longer. An original equipment manufacturer or a contract manufacturer orders tube in custom sizes to minimize scrap and therefore should consider a machine that matches common material sizes. The choice gets a bit more complicated for job shops. Tubes from the mill are typically 24 ft. long for diameters up to 6 in. and 30 ft. long for profiles up to 10 in. in diameter. In this size range, the typical weight capacity of a tube laser system can be up to 27 pounds per linear foot.
*Material Load and Unload
Another factor in machine selection is its ability to feed in raw material. A typical laser machine, cutting typical parts, runs so quickly that manual loading processes cannot keep up, so tube laser cutting machines typically come with a bundle loader, which loads bundles of up to 8,000 lbs. of material into a magazine. The loader separates the tubes and loads them one by one into the machine. The bundle loader also can deliver a number of raw tubes into a buffer magazine to reduce the loading times between tubes to as little as 12 seconds. Switching from one tube size to another is made simple by an automatic mechanism within the loader. All adjustments needed for a new tube size are handled by the controller. When it’s necessary to interrupt a large production run for a small job, it is still important to have some manual load options. The operator pauses the production run, manually loads and processes the tubes to complete the small job, then restarts the production run. Unloading also comes into play. The unloading side of the equipment for finished tubes is usually 10 ft. long but can be increased to accommodate the length of the finished parts to be processed.
*Seam and Shape Detection
Welded tubes are used in manufactured products much more than seamless tubes, and the weld seam can interfere with the laser cutting process and possibly the final assembly. A laser machine equipped with the right hardware usually can detect welded seams from the outside, but sometimes the tube’s finish obscures the seam. A typical seam-sensing system uses two cameras and two light sources to look at the outside and inside of the tube to detect the weld seam. After the vision system detects the weld seam, the machine’s software and control system rotate the tube to minimize the weld seam’s impact on the finished product. Most tube laser systems can cut round, square, and rectangular tubing, as well as profiles such as teardrop shapes, angle iron, and C-channel. Asymmetrical profiles can be challenging to load and clamp properly, so an optional camera equipped with special lighting inspects the tube during the loading process and adjusts the chuck according to the detected profile. This ensures reliable loading and cutting of asymmetrical profiles.
*Cutting Head
Bevel cutting is important for fitting cut tubes together for welding. Bevel cutting requires a cutting head that tilts up to 45 degrees in either direction during the cutting process. For additional processing safety during the complex bevel cutting process, the cutting head may be secured by magnets. In the case of a collision between the tubular workpiece and the head, the head detaches; it can be reattached in just a few seconds. It also is possible to combine the bevel cutting head with an additional high-speed axis for improved cutting acceleration, allowing an increase in equipment productivity approaching 30 percent.
Maximizing Efficiency
After identifying the value a laser tube cutting system can bring to the production process, you need to configure that equipment for your application. For instance, too short of a loading system can seriously impact the nesting efficiency of finished parts, which increases scrap, while too long of a system would require a higher initial investment and more floor space than is required. In addition to seeking advice from system manufacturers, you will need to cut sample parts and evaluate every available option to make sure your investment results in the best possible return.
Exploring the Different Materials that Can be Cut with a Tube Laser Cutting Machine
Tube laser cutting is an innovative technology that is revolutionizing the way materials are cut. The tube laser cutting machine has taken the place of traditional torch-based cutting techniques that have been used for decades. This technology uses a powerful and precise beam of light to cut through steel, aluminum, brass and other metals quickly and accurately.
Metals
Metals are a popular material choice when it comes to tube laser cutting machines. Their high strength and durability make them an ideal choice for a variety of applications. Metals can be processed into intricate shapes and designs, allowing manufacturers greater flexibility in their design capabilities than ever before.The most common metals used in tube laser cutting machines are stainless steel, aluminum alloys, brass, and copper alloys. Each metal has its own unique properties that make it suitable for different tasks. Stainless steel is the most commonly used metal due to its high strength-to-weight ratio, corrosion resistance, and good thermal conductivity. Aluminum alloys are lightweight yet strong and offer excellent formability properties. Brass is often chosen for decorative elements as it is easy to polish to a beautiful finish. Copper alloys also provide good electrical conductivity making them ideal for electronic components or wiring components.
Plastics
Plastics are one of the most versatile and widely used materials on the planet. With so many varieties available, it’s no surprise that they have become a popular choice for use in tube laser cutting machines. These machines can be used to cut through a variety of plastic materials, including polyvinyl chloride (PVC), acrylic, polyethylene terephthalate (PET) and more. Using a tube laser cutting machine is an efficient way to accurately cut plastics into complex shapes and sizes. The high-power lasers employed by these machines allow for precise cuts that are far beyond what traditional saws or blades can achieve. This means that even complicated designs can be achieved quickly with minimal material waste. Additionally, using a tube laser cutting machine for plastics often results in smoother surfaces than other methods of cutting them would produce.
Glass
Glass is an extremely versatile material that can be cut with a tube laser cutting machine. Its strength and durability make it an ideal component for many different applications, from manufacturing to architectural designs. Additionally, glass offers aesthetically pleasing options for visually appealing projects. Glass can be processed with a variety of methods such as etching, engraving, and polishing in order to create custom finishes and shapes that are perfect for any project. This allows users to customize their projects according to the specific needs of each application or product type. By using a tube laser cutting machine, glass can be quickly and accurately cut into precise shapes and sizes with minimal waste or damage. It also helps reduce production costs by allowing users to achieve high-quality results without having to invest in additional tools or materials.
Tips for Optimizing Tube Laser Cutting for Efficiency and Accuracy
Utilize High-Quality Materials
The quality of the material being cut will directly affect the quality of the finished product. Using quality materials that are correctly aligned and secured in place will ensure precise and efficient cuts.
Properly Align the Tube
Before cutting, make sure the tube is properly aligned in the laser cutter. This will ensure that the cut is accurate and the finished product is of high quality.
Utilize the Proper Laser Settings
It is important to choose the correct laser settings for the type of material you want to cut. Different materials require different settings to produce the best results.
Choose the Right Focal Point
Choosing the correct laser focus is key to achieving precise cuts. The focus should be adjusted to the correct distance from the material to ensure the laser is properly focused.
Utilize Automation
Automation is a great tool for faster, more precise cutting. Automation can be used to control the speed, number of passes and focus of the laser.
Monitor the Cutting Process
Monitoring the laser cutting process is critical to ensuring accurate cuts and high product quality. Check the cutting progress regularly to make sure everything is working properly.
Maintain the Laser
Regular laser maintenance is key to ensuring an efficient and accurate cutting process. Take the time to clean and calibrate your laser to ensure it is working properly.
Use the Appropriate Abrasives
Choosing the correct abrasive is very important to produce an accurate cut. Using an abrasive that is too coarse or too fine will result in inaccurate cuts and uneven edges. When it comes to cutting metal pipes and pipes, a tube laser cutter is the ideal machine for the job.
Maintenance of tube laser cutting machines is also necessary for safety purposes. Making sure your machine is clean helps extend its life and availability. Here are common cleaning tips for keeping your laser cutter running smoothly.
Cleaning the Mirrors and Lens
The optics and lenses on commercial tube laser cutting machines are made from specially coated optics. Over time, they can become dirty from exposure to smoke, dust, moisture, or stray particles. For internal CO2 lasers, this will cause changes in the spot size of the laser beam and the reflectivity of the optics, potentially damaging components if not maintained. To avoid buildup in these areas, use a soft, lint-free cloth moistened with warm water or an appropriate cleaning agent and wipe the surface in a circular motion. Be sure to use a dry, scratch-resistant cloth to remove any residue.
Cleaning the Exhaust Fan
Exhaust fans on tube laser cutting machines help prevent dust and debris from building up inside the machine. To clean it, you need to remove the fan cover and carefully remove any carbon or dust from the fan blades with a brush or compressed air.
Cleaning the Tube Filter
Over time, the acetone filter and laser filter within a laser cutter can become clogged with dust, smoke, and other particles. If not cleaned regularly, the machine may be damaged. One way to clean these filters is to use a vacuum cleaner, keeping the hose attachment far away to avoid excessive pressure that can damage the filter. Be sure to remove all dirt and debris from the filter before putting it back in place.
Cleaning the Water Cooler
If your laser cutter has a water cooler, it's important to keep it clean. The water cooler helps dissipate heat from the laser tube, so keeping it clean will help maintain machine performance. To clean it, just turn off the machine and remove the cover. Use a soft brush or compressed air to remove any dirt or dust that may have accumulated on the radiator fins, then replace the cover and turn the machine on. If the deionized water is particularly poor, it can be drained and replaced to ensure that no air bubbles remain in the laser tube once the water is circulated again.
The picture below is our production equipment:

Frequently Asked Questions
Q: What shapes of materials can the tube laser cutting machine cut?
Q: What types of materials can tube laser cutting machines cut?
Q: What size shapes can a tube laser cut?
Q: Does the larger the pipe laser cutting machine, the stronger the performance?
Q: How do tube laser cutting machines differ from flat lasers?
Q: What cutting tolerances does a tube laser cutting machine have?
Q: What makes laser cutting tubes challenging?
Q: How do tube laser cutting machines impact manufacturing?
Q: What is the thickest pipe that a pipe laser cutting machine can laser cut?
Q: Is it expensive to laser cut tubes with a tube laser cutting machine?
Q: How much does a laser pipe cutting machine cost?
Q: How fast can a pipe laser cutting machine cut pipe?
Q: How accurate is the pipe laser cutting machine?
Q: Is it better to cut pipes with CO2 laser or fiber laser cutting machine?
Q: Can the pipe laser cutting machine cut angles?
Q: Does temperature affect pipe laser cutting machines?
Q: How much air does a tube laser cutting machine need?
As one of the most professional tube laser cutting machine manufacturers and suppliers in China for over 15 years, we're featured by good service and punctual delivery. Please rest assured to buy customized tube laser cutting machine at competitive price from our factory.
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