Introduction:
1 High efficiency, fast pipe cutting speed, 20 times that of manual cutting
2 Multiple functions, arc cutting, hole cutting, cutting off
3Portable and easy to operate, independent programming, no need to change molds, precise cutting of any arc
|
Model |
100-6 |
|
Function |
Cut arc, cut hole, cut off |
|
Control way |
automatic |
|
Control way |
PLC+HMI+remote control system |
|
Cutting method |
plasma |
|
Clamping way |
Pneumatic chuck |
|
Feeding length |
6000mm |
|
positioning accuracy |
±1mm |
|
Cutting accuracy |
±1mm |
|
Feeding way |
Pneumatic,
Precision rack drive + square linear guide |
|
Applicable material |
iron pipe, stainless steel |
|
Max Cutting thickness |
4mm(depend on power of plasma) |
|
Apply to cutting material |
Round : Φ20-Φ100mm |
|
Power |
220V |
|
measure |
6600x500x500mm |
Automatic Plasma Carbon Steel and Stainless Steel Pipe Cutting Machine for Circular Tube Cut, Notching and Hole Cutting
The Automatic Plasma Carbon Steel and Stainless Steel Pipe Cutting Machine is a professional CNC cutting solution designed for efficient processing of circular tubes and round pipes. It is suitable for manufacturers working with carbon steel, mild steel, stainless steel and other electrically conductive metal tubes.
Unlike a conventional pipe cut-off machine that is limited to straight cuts, an automatic plasma pipe cutting system can perform multiple operations within one production process. Depending on the machine configuration and CNC software, it can be used for pipe cut-off, notching, hole cutting, slot cutting, angled cutting, end profiling and other complex tube shapes.
This makes the equipment suitable for manufacturers that need to produce ready-to-assemble tubular components for welding, bolting or mechanical assembly.
The combination of automatic material handling, CNC positioning and plasma cutting can help reduce manual measuring, marking, drilling and secondary fabrication operations. For repetitive production, programmed cutting paths can also improve consistency from one workpiece to another.
Typical applications include steel structure fabrication, machinery manufacturing, agricultural machinery, construction equipment, automotive components, metal furniture, railings, frames, exhaust systems and general industrial tube fabrication.
Automatic Circular Tube Plasma Cutting
Circular tubes are widely used in structural frames, machine components, transportation equipment and fabricated metal products.
An automatic plasma tube cutting machine is designed to position and process round tubes according to programmed cutting data.
Depending on the machine configuration, the tube can be rotated while the plasma torch moves along the programmed path. This allows the machine to access different areas around the circumference and produce more complex profiles than a basic fixed cutting torch.
Typical operations include:
Circular Tube Cut-Off
Round Pipe Cutting
Tube End Cutting
Angled Tube Cutting
Pipe Hole Cutting
Tube Notching
Slot Cutting
Joint Profile Cutting
Saddle Cutting
Welding Preparation
The available functions depend on the specific machine structure, plasma system and CNC software.
Carbon Steel Pipe Cutting
Carbon steel and mild steel are among the most common materials processed by industrial plasma cutting machines.
The automatic system can be used to produce carbon steel tube components for structural and mechanical applications.
Typical products include:
Structural Tubes
Carbon Steel Pipes
Machine Frames
Steel Supports
Agricultural Equipment Components
Construction Structures
Steel Furniture
Machinery Components
Industrial Frames
For batch production, CNC programming can help maintain consistent pipe length, hole location and notch geometry.
This is particularly useful when multiple identical components need to be fabricated before welding or final assembly.
Stainless Steel Pipe Cutting
Stainless steel tubes are widely used where corrosion resistance, durability and surface appearance are important.
Plasma cutting can be suitable for stainless steel because it is an electrically conductive material. The appropriate cutting parameters should be selected according to the stainless steel grade, wall thickness, tube diameter and required cut quality.
Typical applications include:
Stainless Steel Frames
Kitchen Equipment
Food Processing Equipment
Architectural Railings
Industrial Equipment
Exhaust Components
Decorative Structures
Machinery Components
Clean air or suitable gas conditions, correct consumables and appropriate cutting speed are important for maintaining stable plasma cutting performance.
Automatic Pipe Cut-Off
Pipe cut-off is a fundamental operation for tubular component manufacturing.
Instead of manually measuring and cutting each tube, the CNC system can control the cutting position according to the programmed part length.
This can provide:
Consistent Tube Length
Repeatable Cutting
Reduced Manual Measurement
Improved Production Efficiency
Faster Batch Processing
For higher-volume production, automatic feeding and unloading systems can potentially be integrated depending on the machine configuration.
CNC Pipe Notching
Pipe notching is commonly required when round tubes are joined to other tubular components.
A notch can be cut into the tube to create a joint profile that matches another pipe or structural member. This can reduce the amount of manual grinding and fitting required before welding.
Typical applications include:
Tubular Frames
Steel Furniture
Railings
Handrails
Automotive Frames
Machinery Structures
Agricultural Equipment
Structural Steel Components
CNC pipe notching allows the required geometry to be programmed and repeated across multiple workpieces.
Automatic Pipe Hole Cutting
Hole cutting is another important function for automated tube fabrication.
The machine can be programmed to create holes at specified locations along the pipe.
These openings may be used for:
Bolted Connections
Fasteners
Brackets
Mounting Points
Structural Joints
Assembly Components
Pipe Connections
Integrating hole cutting into the pipe plasma cutting process can reduce the need to move workpieces to a separate drilling machine for suitable applications.
This can improve material flow and reduce handling time.
CNC Tube Profiling
Modern pipe plasma cutting systems can perform more complex cutting patterns beyond basic holes and straight cuts.
Depending on the machine's CNC software, the equipment can produce:
Saddle Cuts
Branch Pipe Profiles
Tube Intersections
Slots
Notches
Angled Ends
Irregular Openings
Welding Joint Profiles
This is particularly useful for manufacturers producing tubular structures that require accurate joint preparation before welding.
Plasma Cutting Process
The plasma cutting process creates a high-temperature plasma arc that melts the conductive metal while the gas flow removes molten material from the cutting zone.
The CNC controller coordinates the cutting path with tube positioning and rotation.
The basic process typically includes:
Loading the circular tube.
Positioning and securing the workpiece.
Setting the cutting program.
Starting the plasma arc.
Cutting the programmed profile.
Rotating or repositioning the tube as required.
Completing the part.
Unloading the finished component.
The exact sequence depends on machine design and automation level.
Materials Supported
The machine is designed for electrically conductive metal tubes.
Common applications include:
Carbon Steel
Mild Steel
Stainless Steel
Galvanized Steel
Structural Steel
Aluminum
Other Suitable Conductive Metals
Material thickness and diameter should be matched to the plasma power source and machine capacity.
Industrial Applications
The Automatic Plasma Pipe Cutting Machine can be used across multiple industries.
Steel Structure Fabrication
For round tube frames, supports, columns and structural components.
Construction
For steel structures, railings, supports and fabricated building components.
Agricultural Machinery
For equipment frames, brackets, supports and replacement components.
Automotive Manufacturing
For tubular frames, exhaust components and other fabricated parts.
Metal Furniture
For tables, chairs, racks, frames and decorative tubular products.
Machinery Manufacturing
For machine frames, brackets, supports and structural components.
General Pipe Fabrication
For industrial tubes requiring cut-off, holes, slots and joint profiles.
Advantages of Automatic Plasma Pipe Cutting
Multiple Cutting Functions
One machine can perform cut-off, holes, notches, slots and other programmed profiles.
CNC Repeatability
Programmed cutting paths can be repeated for consistent batch production.
Reduced Secondary Processing
Integrated hole and notch cutting can reduce separate drilling and manual grinding operations.
Improved Material Utilization
Accurate programmed cutting can help reduce unnecessary material waste when properly planned.
Higher Production Efficiency
Automation reduces repetitive manual measuring, marking and cutting work.
Flexible Tube Fabrication
The machine can be used for different circular tube products and cutting patterns.
How to Choose the Right Machine
Before purchasing an automatic pipe plasma cutting machine, buyers should provide several important specifications.
Tube Diameter: Specify the minimum and maximum outside diameter of the circular tube.
Wall Thickness: Provide the normal and maximum tube thickness.
Material: Confirm whether the main materials are carbon steel, stainless steel, mild steel or aluminum.
Tube Length: Specify the typical raw tube length and finished component length.
Cutting Operations: Identify whether you need only cut-off or also holes, notches, slots, saddle cuts and angled profiles.
Production Volume: High-volume production may benefit from automatic loading and unloading.
Plasma Power: Select a suitable plasma power level based on material and maximum thickness.
CNC Requirements: Confirm required software functions and compatibility with your tube profiles.
Why Choose Us
Professional Pipe Cutting Solutions
We focus on industrial pipe and tube cutting applications for manufacturers and fabrication companies.
Carbon & Stainless Steel Applications
The equipment can be configured for suitable carbon steel, mild steel and stainless steel tube cutting applications.
Multiple Cutting Functions
Cut-off, hole cutting, notching, slotting and profile cutting can be integrated according to production requirements.
Automatic CNC Operation
CNC automation helps reduce repetitive manual measurement and improve cutting consistency.
Customized Machine Configuration
Pipe diameter range, cutting length, plasma power, automation and material handling can be configured according to the customer's application.
OEM & B2B Support
We provide technical communication and customized solutions for manufacturers, distributors and industrial equipment buyers.
Production-Focused Design
Our solutions are designed around real production requirements, helping customers reduce secondary operations and improve overall fabrication efficiency.
FAQS
1. What is an automatic plasma pipe cutting machine?
It is a CNC-controlled machine designed to automatically process pipes and tubes using plasma cutting technology according to programmed cutting paths.
2. Can it cut circular tubes?
Yes. The machine is designed specifically for circular or round tube applications, subject to the available diameter range.
3. Can it cut carbon steel pipe?
Yes. Carbon steel and mild steel are common materials for plasma pipe cutting.
4. Can it cut stainless steel pipe?
Yes. Stainless steel is electrically conductive and can be processed with suitable plasma cutting parameters.
5. Can it cut holes in round tubes?
Yes. CNC pipe plasma systems can be configured for programmed hole cutting.
6. Can it perform pipe notching?
Yes. The machine can perform CNC notching when the software and mechanical configuration support the required profile.
7. Can it cut slots?
Yes. Programmed slots can be produced according to the machine's CNC and plasma cutting capabilities.
8. Can it cut angled pipe ends?
Yes. Suitable configurations can produce angled or mitered tube ends.
9. Is the machine fully automatic?
The automation level depends on the selected configuration. Automatic CNC cutting can be combined with material feeding and unloading systems where required.
10. What tube sizes can the machine process?
The diameter range depends on the specific machine model. Buyers should provide their minimum and maximum tube diameter when requesting a quotation.
11. What materials can be cut?
Common materials include carbon steel, mild steel, stainless steel, galvanized steel and other suitable electrically conductive metals.
12. Can the machine be used for mass production?
Yes. CNC programming and automated positioning make it suitable for repetitive and batch production of tubular components.
13. What information is needed for a customized machine?
Provide tube diameter, wall thickness, material, tube length, plasma cutting requirements, hole and notch patterns, production volume and desired automation level.
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