CNC Round Stainless Steel Carbon Steel Pipe Cutting Machine for Cut-Off, Notching and Hole Cutting
The CNC Round Stainless Steel Carbon Steel Pipe Cutting Machine is a professional automated cutting solution designed for processing round pipes and tubes used in industrial fabrication. It is suitable for stainless steel pipe, carbon steel pipe, mild steel tube and other electrically conductive metal tubes, depending on the machine configuration and cutting process.
Unlike a basic pipe cut-off machine that performs only straight cuts, a CNC pipe cutting system can be configured to perform multiple operations, including cut-off, hole cutting, slot cutting, notching, angled cutting and pipe profiling. This makes it particularly useful for manufacturers that need ready-to-assemble pipe components with accurate openings and joint profiles.
The machine is designed for applications where consistent dimensions, repeatable cutting patterns and improved production efficiency are important. CNC control allows programmed cutting paths to be reproduced across multiple workpieces, reducing the amount of manual layout and secondary processing required.
Typical applications include steel structure fabrication, stainless steel fabrication, machinery manufacturing, automotive components, agricultural machinery, construction equipment, metal furniture, railing systems, exhaust components and general pipe fabrication.
6 meters round tube plasma cutting machine
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Suitable pipe to cut |
Tube material: carbon steel/ steel |
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diameter: round tube ,φ25-φ219 thickness within 10mm(can be customized) |
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Length: 6000mm |
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Cut notching , cut hole ,cut off(30-90degree ), |
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model |
SP219(6000) |
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Measure |
7600*1900*600mm (Subject to the actual object) |
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Weight of product |
1500KG (Subject to the actual object) |
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Input power supply |
380V (three-phase, four-wire) |
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Output power supply |
24V |
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Mode of transmission |
Rack and pinion drive |
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Mode of control |
PLC controlled touch screen |
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Thickness of fuselage coaming plate |
The 2.0 mm |
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Plasma power supply |
Customer's own |
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Pipe for fuselage frame |
100 x100x3. 75 mm |
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Processing technology |
Manual feeding - automatic fixing - automatic rotation - automatic cutting – finishing |
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Main component Settings and parameters |
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Electric control unit |
chint |
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Size of guide rail |
Round guide rail |
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Operating system |
Numerical control system software |
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chuck |
Electric three-jaw chuck (feeding) |
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Auxiliary support system |
Automatic rise and fall support frame |
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Servo servo system |
Servo station operator |
CNC Round Pipe Cutting
Round pipe and tube are widely used in industrial structures, frames, transportation equipment and fabricated products.
A CNC round pipe cutting machine can coordinate the movement of the cutting torch or tool with the position of the workpiece. Depending on the configuration, the pipe may rotate during processing so the cutting head can access different areas around the circumference.
This allows the machine to produce:
Straight Pipe Cuts
Angled Pipe Cuts
Pipe End Cuts
Cross Cuts
Holes
Slots
Notches
Branch Connections
Saddle Profiles
Welding Preparation Profiles
The actual cutting functions depend on the selected CNC system, machine structure and cutting technology.
Stainless Steel Pipe Cutting
Stainless steel is commonly used in applications where corrosion resistance, durability and appearance are important.
A CNC pipe cutting machine can be configured for suitable stainless steel applications such as:
Stainless Steel Tubes
Stainless Steel Pipes
Industrial Frames
Kitchen Equipment
Food Processing Equipment
Architectural Structures
Railings
Exhaust Components
Machinery Components
Stainless steel cutting requires suitable cutting parameters and consumables. Material grade, wall thickness, diameter, cutting speed and gas or plasma settings can all affect the final cut quality.
Carbon Steel Pipe Cutting
Carbon steel and mild steel are among the most widely processed materials in pipe fabrication.
The CNC machine can be used for cutting carbon steel pipes and tubes used in structural and mechanical applications.
Typical products include:
Structural Steel Tubes
Carbon Steel Pipes
Machine Frames
Support Structures
Agricultural Equipment
Construction Components
Steel Furniture
Industrial Machinery
For production environments, CNC control can help maintain consistent hole positions, cutting lengths and notch profiles across multiple workpieces.
Pipe Cut-Off
Pipe cut-off is one of the basic functions of a pipe cutting machine.
The CNC system can control the cutting position according to the programmed length. This helps manufacturers produce repeated pipe sections without manually measuring every workpiece.
Accurate cut-off is particularly useful when pipes will later be welded, assembled or used as structural components.
For high-volume production, automated material feeding and unloading can further improve productivity, depending on the machine configuration.
CNC Pipe Notching
Pipe notching is an important operation in tube fabrication.
A notch can be cut into the end or side of a pipe to create a joint profile for another tube or structural member. This is commonly required when fabricating frames, railings, handrails and tubular structures.
CNC pipe notching can provide more consistent geometry than manual grinding or cutting.
Typical applications include:
Tube Frame Fabrication
Handrail Manufacturing
Steel Furniture
Automotive Frames
Structural Tubing
Machinery Frames
Metal Structures
The specific notch shape depends on the CNC software, pipe dimensions and machine configuration.
CNC Pipe Hole Cutting
Hole cutting allows manufacturers to create openings directly in the pipe or tube.
These holes can be used for:
Bolted Connections
Fasteners
Brackets
Assembly Components
Pipe Connections
Structural Joints
Mounting Points
CNC programming allows hole locations to be defined digitally, helping improve repeatability during batch production.
For manufacturers producing large numbers of identical tubular components, integrated hole cutting can eliminate separate drilling operations and reduce handling between machines.
Pipe Profiling and Complex Cutting
Modern CNC pipe cutting equipment can perform more than simple round holes.
Depending on the software and machine configuration, it may support complex profiles for tube intersections, branch connections, saddle cuts and other fabrication requirements.
This is particularly useful for welded tubular structures because the pipe can be prepared before assembly.
Accurate joint preparation can help reduce manual grinding and fitting work before welding.
CNC Control and Production Efficiency
CNC control is a key advantage of automated pipe cutting.
Instead of manually marking every cutting position, operators can load the required cutting program and allow the machine to execute the programmed path.
Potential benefits include:
Repeatable Cutting
Consistent Hole Position
Accurate Cut Length
Reduced Manual Layout
Lower Secondary Processing
Improved Production Efficiency
Easier Batch Manufacturing
The actual accuracy and production rate depend on machine construction, cutting technology, material, tube dimensions and operating parameters.
Materials and Applications
The machine can be configured for various conductive metals, depending on the selected cutting technology.
Common materials include:
Carbon Steel
Mild Steel
Stainless Steel
Galvanized Steel
Structural Steel
Aluminum
Typical industries include:
Steel Fabrication
For structural tubes, frames, supports and steel components.
Automotive Manufacturing
For tubular frames, exhaust components and structural parts.
Agricultural Machinery
For equipment frames, brackets, supports and replacement parts.
Construction
For structural tubes, railings, supports and fabricated building components.
Metal Furniture
For tables, chairs, racks, frames and other tubular products.
Machinery Manufacturing
For machine frames, supports and fabricated components.
How to Choose a CNC Pipe Cutting Machine
Before selecting equipment, buyers should provide detailed information about their actual pipe requirements.
Pipe Diameter
Specify the minimum and maximum outside diameter of the round pipe.
Wall Thickness
The pipe wall thickness determines the required cutting capacity and process parameters.
Material
Identify whether the primary material is stainless steel, carbon steel, mild steel, aluminum or another metal.
Pipe Length
The required processing length determines the machine bed and material handling requirements.
Cutting Operations
Specify whether you require only cut-off or also holes, slots, notches, angled cuts and complex profiles.
Production Volume
High-volume production may benefit from automatic feeding, unloading and material handling.
Cutting Technology
Plasma, laser, saw and other cutting technologies have different advantages depending on pipe material, thickness, accuracy and production requirements.
Why Choose Us
CNC Pipe Cutting Expertise
We focus on industrial pipe and tube cutting applications and can recommend configurations according to actual workpiece requirements.
Stainless & Carbon Steel Applications
Our solutions can be configured for suitable stainless steel, carbon steel and other conductive metal pipe applications.
Multiple Cutting Functions
The equipment can be configured for cut-off, holes, slots, notching, angled cuts and other pipe profiles.
Production-Oriented Design
CNC automation helps manufacturers improve repeatability and reduce manual measuring and marking.
OEM & Custom Solutions
Machine dimensions, pipe capacity, cutting length, automation and software functions can be discussed for customized production requirements.
B2B Export Support
We support manufacturers, distributors and industrial buyers with equipment configuration and technical communication.
Application-Based Recommendations
We evaluate pipe diameter, wall thickness, material, cutting requirements and production volume rather than recommending equipment based on a single specification.
FAQS
1. What is a CNC round pipe cutting machine?
It is an automated machine designed to cut round pipes and tubes according to programmed dimensions and cutting patterns.
2. Can it cut stainless steel pipe?
Yes. Suitable CNC pipe cutting configurations can process stainless steel pipe and tubing.
3. Can it cut carbon steel pipe?
Yes. Carbon steel and mild steel are common materials for CNC pipe cutting applications.
4. Can it cut holes in round pipe?
Yes. CNC pipe cutting systems can be configured for hole cutting according to the machine's software and cutting technology.
5. Can it perform pipe notching?
Yes. CNC notching can produce joint profiles used for tubular structures and welded assemblies.
6. Can it cut different hole shapes?
Depending on the CNC software and cutting system, different programmed openings and profiles can be produced.
7. Can it perform angled cuts?
Yes. Suitable CNC configurations can perform angled or miter cuts on round tubes and pipes.
8. What materials can the machine process?
Depending on the cutting technology, it can be configured for carbon steel, mild steel, stainless steel, galvanized steel, aluminum and other suitable metals.
9. Can the machine replace drilling?
For suitable hole-cutting applications, integrated CNC cutting can reduce or eliminate separate drilling operations. The suitability depends on hole size, material thickness and required tolerance.
10. Is the machine suitable for mass production?
Yes. CNC programming and repeatable positioning make it suitable for batch and mass production of tubular components.
11. What information is needed to select the machine?
Provide pipe diameter, wall thickness, material, pipe length, required cutting operations and production volume.
12. Can the machine be customized?
Yes. Pipe capacity, cutting length, automation, loading systems, CNC functions and other configurations can be customized according to production requirements.
13. How do I choose between plasma and laser pipe cutting?
The choice depends on material, thickness, required accuracy, production volume, cutting speed and budget. Plasma is often attractive for higher thicknesses and general industrial fabrication, while laser can be advantageous when finer precision and smaller kerf are required.
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