Basic equipment parameters
* Feeding method: 4-wheel traction automatic feeding
* Sizing method: activities depend on sizing
* Fixed length accuracy: +/- 0.2mm
* Clamping method: pneumatic
* Cutting feed method: pneumatic + hydraulic buffer
* Lathe knife cutting blade: CNC threaded blade or alloy blade (3 * 6 * 200)
* Action mode: 4-wheel traction automatic feeding → signal induction of backing fixed length → clamping → cutting → automatic reset → complete one processing.
*The body is welded and assembled by steel plate heat treatment, the structure is strong and stable.
Equipment advantages
Blade cutting: 1. High productivity, 40-50% higher than the traditional way of cutting the blade.
2. Do not need to add coolant cutting, pipe surface clean and flawless.
3. No glitches nozzle.
4. Thin-walled tube cutting, the pipe is not deformed.
5. Blade cutting stainless steel pipe durability,
CNC thread blade: 1 can cut 8000-10000 sticks,
Alloy blade: manual grinding can be cut 3000-5000 one time.
|
No |
Item |
Data |
|
1 |
Electrical control |
PLC+ touch screen |
|
2 |
Spindle speed |
400/800RPM |
|
3 |
Motor power |
1.5kw |
|
4 |
Linear guide |
Shangyin 15type |
|
5 |
Fixture |
Yonghe |
|
6 |
Air source pressure |
0.4-0.6mpa |
|
7 |
voltage |
380/415/ customized |
|
8 |
Main structure size |
8500x650x1500 |
Thin Pipe Stainless Steel Cutting Machine with Cold Saw Cutter
The Thin Pipe Stainless Steel Cutting Machine is designed for manufacturers that need accurate, clean, and repeatable cutting of stainless steel tubes, thin-wall pipes, and other compatible metal tubing. Using a cold saw cutting method, the machine provides a practical solution for tube fabrication where controlled cutting, dimensional consistency, and efficient production are important.
Thin-wall stainless steel tubes can be more sensitive to deformation, vibration, heat, and excessive clamping force than heavy-wall pipes. For this reason, the cutting process requires appropriate blade selection, stable workholding, controlled feeding, and suitable cutting parameters.
This machine can be configured for different tube diameters, wall thicknesses, cutting lengths, materials, feeding methods, and automation requirements. Actual processing capability should be confirmed according to the customer's tube specifications, production volume, required tolerance, and finished-edge requirements.
Cold Saw Cutting Technology
A cold saw uses a circular saw blade designed for metal cutting. Compared with abrasive cutting methods, cold saw technology is commonly selected when manufacturers need controlled cutting and repeatable tube lengths.
The blade selection is important for stainless steel and thin-wall tube applications. Tooth geometry, blade material, blade diameter, cutting parameters, lubrication, and workpiece support all influence cutting performance.
For thin stainless steel tubes, the cutting process should be carefully matched to the tube diameter and wall thickness. An unsuitable blade or excessive cutting pressure can increase burrs, deformation, vibration, or blade wear.
Thin-Wall Stainless Steel Tube Processing
Thin-wall stainless steel tubing is used in many industries because of its corrosion resistance, clean appearance, and favorable strength-to-weight characteristics. Typical products include decorative tubes, furniture tubing, industrial components, automotive parts, equipment frames, and specialized piping.
The main challenge in thin-wall tube cutting is maintaining the shape of the tube while producing a consistent cut. Excessive clamping pressure can flatten or deform the tube, while insufficient clamping can allow movement and vibration.
A suitable fixture should therefore provide stable support without unnecessarily compressing the workpiece.
Precision Tube Cutting
The machine is designed for repeatable tube cutting operations. Depending on the configuration, CNC or automatic control can coordinate feeding, positioning, clamping, and cutting.
Precise material positioning reduces the need for repeated manual measurement. This can be particularly useful when a production order requires hundreds or thousands of tubes to be cut to consistent lengths.
Actual cutting tolerance depends on tube material, diameter, wall thickness, cut length, machine structure, feeding accuracy, clamping stability, blade condition, and process settings. Specific tolerance requirements should be confirmed through technical evaluation or sample testing.
Automatic Tube Feeding
For higher-volume applications, an automatic feeding system can reduce repetitive manual loading and positioning. Depending on the machine configuration, tubes can be supplied to the cutting area and positioned according to programmed cutting requirements.
Automatic feeding is useful when the same tube specification needs to be processed repeatedly. It can help improve workflow consistency and reduce operator workload.
The actual production cycle depends on tube size, cutting length, feeding method, blade condition, loading arrangement, and machine configuration. Automatic operation also does not necessarily mean fully unmanned production; operators may still be required for material loading, process monitoring, inspection, and maintenance.
Stainless Steel Cold Saw Cutting
Stainless steel requires careful control during cold saw cutting. Different stainless steel grades may have different cutting characteristics, so blade selection and cutting parameters should be adjusted according to the material.
For production applications, proper lubrication or cooling may also be considered depending on the blade and machine design. Controlling heat generation can help protect the blade and maintain consistent cutting performance.
Customers should provide the stainless steel grade, tube dimensions, wall thickness, and required cut length when evaluating a machine for a specific application.
Clean Tube Ends
A major consideration in tube cutting is the condition of the finished end. For applications involving welding, assembly, bending, fitting, or further machining, consistent tube ends can simplify downstream processing.
Cold saw cutting can provide controlled separation of the tube when the blade, fixture, feed rate, and material are properly matched.
Depending on the application and required edge condition, additional deburring or chamfering may still be required. The need for secondary finishing depends on material, blade selection, cut geometry, and customer quality standards.
Applications
The Thin Pipe Stainless Steel Cutting Machine can be used across a wide range of industrial and commercial tube-processing applications.
Stainless Steel Furniture
Stainless steel tubing is widely used for tables, chairs, racks, display structures, kitchen equipment, and other furniture products. Repeatable tube cutting helps manufacturers prepare components for welding and assembly.
Automotive Components
Thin-wall metal tubes can be used in automotive structures, exhaust-related components, supports, brackets, and other fabricated parts. Exact application suitability depends on the tube material and component design.
Industrial Equipment
Manufacturers can use cut stainless steel tubing for machine frames, guards, supports, equipment components, and fabricated assemblies.
Architectural Fabrication
Stainless steel tubes are commonly used in railings, decorative structures, display systems, and architectural fabrication. Accurate cutting helps simplify downstream welding and assembly.
HVAC and Plumbing
Compatible stainless steel and metal tubing can be cut into specified lengths for piping, fittings, and installation-related applications.
General Metal Fabrication
The machine can support fabrication shops and industrial manufacturers that need repeatable cutting of thin-wall tubes and pipes.
Workpiece Clamping
Clamping is especially important for thin pipe cutting. The tube must remain stable throughout the cutting cycle while avoiding excessive compression.
A properly selected fixture can help reduce tube movement and vibration. For very thin-wall tubing, specialized support or customized workholding may be required.
Tube diameter, wall thickness, material hardness, and tube profile should therefore be considered when selecting the clamping system.
Saw Blade Selection
Cold saw blade selection should be based on the material and tube dimensions rather than using a single blade for every application.
Important considerations include:
Stainless steel grade
Tube diameter
Wall thickness
Required cutting length
Production volume
Desired edge quality
Cutting parameters
Machine spindle and blade specifications
Using the correct blade can help improve cutting consistency and extend blade service life.
Production Efficiency
The machine is suitable for batch production where many tubes need to be cut to specified lengths. Automated positioning and repeatable cutting can reduce manual measuring and improve production organization.
For high-volume manufacturing, the cutting machine can be incorporated into a larger material-handling process with automatic feeding, collection, sorting, or downstream equipment.
Actual production output depends on the complete workflow rather than the cutting machine alone. Material loading, tube length, cut length, blade changes, inspection, and operator workflow all affect total production efficiency.
Flexible Tube Specifications
Different customers may process different tube diameters and wall thicknesses. A machine should therefore be selected according to the complete range of workpieces rather than one sample size.
Customers should provide:
Minimum tube diameter
Maximum tube diameter
Wall thickness range
Stainless steel grade
Required cutting lengths
Production volume
Required cutting tolerance
Finished-edge requirements
This information allows the machine configuration, fixture, feeding system, and blade selection to be evaluated more accurately.
CNC and Automatic Control
Depending on the selected configuration, CNC or programmable controls can simplify repeated tube cutting jobs. Operators can establish production parameters according to the required tube length and cutting sequence.
Automated control can coordinate feeding, positioning, clamping, and cutting operations, reducing repetitive manual actions.
For factories with multiple tube products, programmable production settings can also make it easier to switch between different cutting jobs.
Quality Control
Consistent tube cutting requires quality control throughout the production process. Operators should inspect tube diameter, wall thickness, cut length, end condition, burr level, and tube deformation according to the customer's specifications.
Blade wear should also be monitored because a worn blade can affect cut quality and increase cutting resistance.
For precision applications, samples should be tested before mass production to verify the complete cutting process.
Maintenance
Routine maintenance helps maintain stable machine performance. Operators should regularly inspect the saw blade, feeding mechanism, guides, clamping system, drive components, lubrication points, electrical controls, and safety devices.
Metal chips should be removed from the cutting area regularly. The saw blade should be inspected for wear or damage and replaced when its cutting performance is no longer suitable.
Following the manufacturer's maintenance schedule can help reduce unexpected downtime and extend equipment service life.
Safety
Cold saw cutting equipment contains rotating blades and moving mechanical components. Operators should follow all machine operating instructions and applicable workplace safety requirements.
Machine guarding, emergency-stop systems, protective devices, and chip-control measures should be provided according to the machine configuration and local regulations.
Operators should use appropriate personal protective equipment and make sure the tube is securely positioned before starting the cutting cycle.
OEM and ODM Tube Cutting Solutions
For machinery distributors, stainless steel manufacturers, tube-processing companies, and fabrication businesses, OEM and ODM services provide flexibility for specialized applications.
The machine can be evaluated for customized feeding systems, workholding fixtures, cutting ranges, automation levels, electrical requirements, branding, and production-line integration.
Providing drawings or samples allows the cutting process to be evaluated according to the actual tube dimensions, material, cutting length, production volume, and quality requirements.
Why Choose Us
1. Designed for Thin-Wall Tube Cutting
The machine can be configured for suitable thin stainless steel and metal tube applications with appropriate clamping and tooling.
2. Cold Saw Cutting System
Cold saw technology provides a controlled solution for repeatable metal tube cutting.
3. Stainless Steel Processing
The machine can be configured for compatible stainless steel grades and tube specifications.
4. Automatic Production Options
Automatic feeding, positioning, clamping, and cutting functions can reduce repetitive manual operations.
5. Precision and Repeatability
Controlled feeding and cutting can help maintain consistent tube lengths across batch production.
6. Flexible Machine Configuration
Tube diameter, wall thickness, cutting length, fixtures, blades, and automation can be evaluated according to your application.
7. OEM and ODM Support
Customized machine solutions can be developed for distributors, manufacturers, and industrial production projects.
8. Application-Based Engineering
Tube drawings, material information, samples, and production requirements can be used to determine an appropriate machine configuration.
FAQs
1. What is a cold saw tube cutting machine?
A cold saw tube cutting machine uses a circular metal-cutting saw blade to separate tubes and pipes into specified lengths. It is commonly used where controlled and repeatable metal cutting is required.
2. Can this machine cut thin-wall stainless steel tubes?
Yes, it can be configured for suitable thin-wall stainless steel tube applications. Proper blade selection, clamping, support, and cutting parameters are important to minimize deformation.
3. What stainless steel materials can be cut?
The machine can be evaluated for compatible stainless steel grades. Because different grades have different cutting characteristics, the material grade should be provided before machine selection.
4. Can it cut round stainless steel pipes?
Yes. The machine is particularly suitable for round tubes and pipes when the correct workholding system is selected.
5. Can it cut square or rectangular tubes?
Certain configurations can process square and rectangular tubing. The required fixture and cutting system should be confirmed according to the profile dimensions.
6. Is automatic feeding available?
Automatic feeding can be included depending on the machine configuration. Feeding requirements depend on tube diameter, tube length, material, and production volume.
7. Will the cold saw leave burrs?
Cut quality depends on the material, blade, cutting parameters, blade condition, clamping, and machine setup. Some applications may still require deburring or chamfering after cutting.
8. Can the machine cut very thin-wall tubing?
Suitable thin-wall applications can be evaluated, but very thin tubing requires careful control of clamping pressure, support, blade selection, and cutting parameters.
9. What information is needed to select the machine?
Provide tube material and grade, outer diameter or profile dimensions, wall thickness, required cutting lengths, production volume, desired tolerance, and drawings or samples if available.
10. Is CNC control available?
Depending on the machine configuration, CNC or programmable control can be used for feeding, positioning, cutting, and repeat production operations.
11. How often does the saw blade need to be replaced?
Blade life varies according to material, tube dimensions, production volume, blade type, cutting parameters, and operating conditions. The blade should be replaced when cutting performance becomes unsuitable.
12. Can the machine be customized?
Yes. Feeding systems, fixtures, cutting ranges, automation, electrical configuration, and other machine functions can be evaluated according to specific production requirements.
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