Things to Consider Before Investing in a Tube & Profile Laser ...
Things to Consider Before Investing in a Tube & Profile Laser ...
Tube/profile laser cutting machines provide precision, power, and productivity — all in one high-performance solution. These machines are valuable additions to your fabrication shop, but you want to make sure you get the right one for your specific needs. Whether your business is fabricating 50ft beams for steel structures or simply cutting small diameter round tubing to length for the next phase of the manufacturing process, there’s a tube laser for you.
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What Materials and Shapes Will You Cut?
Tube laser machines are designed for cutting round, square, and custom profile tubes with exceptional speed and accuracy. They can also cut various materials, including steel, aluminum, copper, titanium, plastic, and more. This makes them adept for a variety of applications.
Before purchasing a tube laser cutter, consider what materials, shapes, and thicknesses you will cut to ensure you pick a model that suits your needs. Ferric JQ tube laser machines offer models that cut round, square, rectangular, L, H, C, and structural shapes, as well as a wide range of heavy-duty materials. Our sales team and service technicians have the expertise to ensure you get the best machinery for your needs!
What Are Your Machine Requirements?
The next consideration is the capabilities you need. Ferric machinery offers a wide range of highly customizable options to suit your specific needs.
Important information needed to select the correct model include:
Maximum infeed and outfeed lengths of material to be cut – Determines the length of the loading and unloading tables needed.
Maximum thickness being cut – Determines the power needed for your laser source. The power of lasers directly impacts the machine’s cutting speed and its ability to cut through materials. Higher power lasers cut through thicker material tubes faster, but come at a higher initial cost. Balancing power and required speed is critical to ROI calculations.
Standard 2D cutting or bevel head 3D cutting – Do your parts require bevelled edges? *Will also impact maximum cut thickness if doing bevel cutting.
Loading and unloading – There are a few different styles of loading and unloading material from a tube laser. Manually placing beams/tubing on towers that input the material after being placed, chain-driven material conveyor systems where multiple pieces of material can be placed and fed into chucks, and fully automated self-feeding and unloading systems. It’s important to remember that while material is being cut, the operator has time to load the next piece. However, if the goal is to have minimal machine interaction apart from programming, full automation is the approach for you.
These are just a few of the requirements you will need to consider and will be asked when looking for the tube laser that suits your needs. Also take into consideration: Amount of chucks needed (2-3), Type of clamping system on chuck, Cutting gases, Compressor capabilities, Floor space…
Most importantly, don’t get overwhelmed with the optionality; let the team at Ferric guide your decision in the right direction and help provide the best machine and service in the Canadian market.
Why Ferric JQ Laser Machines Offer the Best Value in Canada
Ferric Machinery is proud to be the exclusive Canadian supplier of JQ Laser’s advanced Tube & Profile Laser Cutting Machines. The relationship between Ferric and JQ has created multiple success stories in the Canadian market. Built to handle large diameters and a variety of materials, Ferric JQ Laser systems offer unmatched efficiency for applications such as agricultural equipment, automotive manufacturing, construction machinery, furniture, fitness equipment, elevator manufacturing, storage systems, and more! Ferric JQ Lasers give you the edge you need, regardless of your industry or requirements.
We hope this blog helps you with your decision-making process and buying journey. Explore Ferric JQ Laser Tube & Profile Lasers today or request a demo to learn more.
How to Choose the Right Laser Tube Cutting Machine
Laser cutting is a boon for the manufacturing industry. It is a beneficial and lucrative business that involves precise and efficient cutting of different products. Industries and manufacturing units, such as automobiles, furniture, automotive, medical, etc., depend on the fiber laser industry because of their high speed and high-quality production.
Purchasing a suitable machine is not easy. In fact, it requires a lot of brain storming. For this, you need contemplation and careful planning because the markets are filled with hundreds of tools. Acquiring a laser tube cutting machine is a long-term investment. The question arises “How to Choose the Right Laser Tube Cutting Machine”? Reviewing the features according to needs will ensure you get the best machinery in the market:
Complex cuts and intricate patterns are an easy job:
Complex cuts and intricate designs can be produced with laser tube cutting in record time. Speed is one of the primary criteria you must remember before picking the best laser-cutting gadgets from the market.
Is the machine compatible with the latest software?
The machines you choose for your industrial works must be compatible with the latest computer-aided software. These tools should be created explicitly for designing and tube-cutting purposes. Nowadays, automation of complex cutting processes and the smooth transfer of cutting patterns is seamlessly accessible, so get the machine that suits your purpose.
Check out the speed of the laser machine:
Undoubtedly, productivity is immensely increased because of the product’s ease of use. As a result, the cost of running the manufacturing unit and labour charges are reduced to a great extent. Save money in the long run by making a sensible and well-thought-out purchase.
Versatile:
A tube laser cutting machine is a technological innovation that has changed face of industry. It is a powerful tool with a high-intensity laser beam to cut smoothly through different materials, including plastics, metals, glass, acrylics, wood, etc,. The high-powered heat ray focuses on the point of the material to melt and vaporize it into shape.
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Computerized control:
The laser cutting machine should have computerized control. This way you can feed designs and adjust the tool to different cutting modes. Manual and automatic controls also help make the proper selection.
Accurate cutting:
Laser cutters can cut smoothly through thick materials, and this is an advantage over other machines, such as plasma cutters and water jets. The cuts are precise, clean, and accurate, an ideal quality for the automotive and automobile industry.
Material’s thickness and machine power:
It is imperative to consider specific requirements and business needs before buying it. Informed decisions are very helpful here. Businesses need laser cutters for different applications, and accordingly, they choose the power levels and size of the machine.
It is the materials and projects that decide the machine to be used. The thickness of material decides the machine’s power. Thick materials can be shaped easily with a high-powered tool, and a low-power machine helps cut thin materials and also mark and engrave different substances.
Choose according to cutting requirements:
Begin by clearly defining your cutting requirements and goals. You have to consider:
- type of materials you’ll be cutting,
- the thickness of the materials,
- production volume,
- desired cutting precision
Cutting Speed:
It is better to pick a machine that has faster cutting speeds. Competition is always lurking around the corner and a high production rate can help a company make a profit and money. Ensure the machine’s specifications align with your product and desired production rate.
Automation and Software:
There are plenty of machines available in the market. Some of them are manually operated, whereas others rely on automatic loading. Evaluate the machine’s automation and software capabilities before you pick one. Computerized commands and instructions ensure the end product is cut to perfection.
Precision and Quality:
Assess the machine’s accuracy and cut quality before booking it for your business. Look for features such as auto-focus, laser beam control, and advanced motion control systems to contribute to precise and clean cuts. All these things are crucial and contribute to precision and quality. These two features are the main reason for a razor-sharp performance and perfect product.
Budget:
Determine your budget constraints and find a machine that fits the bill. You need to choose the best and pick offers that balance your need for technologically advanced features and cost. Remember that cheaper machines are substandard and may need more advanced features. Furthermore, they may not be durable, so why not request a quote and choose the best from Stealth machine tools?
Reviews, recommendations, References:
Research customer reviews online, and you will get an idea of the best tube laser cutting machines in the markets. The recommendations and reviews from other clients can provide valuable insights into the real-world performance and reliability of the tool.
Maintenance and Service:
Every time a machine breaks down, it must be repaired, or else the production is affected. It would be best if you purchased a dependable machine. Before purchasing the laser cutting tool, consider the ease of maintenance and availability of technical support.
Reliable machines should have a good track record of service and back-up technical support from the manufacturer or distributor. A service network matters and can get the cutting tools back in working order. Moreover, a sound machine is value for money, and there is very little wear and tear if brought from a dependable source, so pick the best.
Undoubtedly, laser tube cutting is gaining popularity in the industrial and manufacturing fields. Manufacturers dealing with wood, glass, metals, acrylics, plastics, and other composite materials rely on accurate and precise laser cutting. Laser tube cutting machines are used very effectively in the automotive sectors, automobile manufacturing, and Medical Devices and appliance industry cause of their high precision performance.

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