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Stainless Steel Laser Cutters

Roll Laser Cutting Machine Fast Roll SR Series

Fast Roll SR Series Coil Laser Cutting Machine - Video Showcase(Stainless Steel Laser Cutters)

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Fast Roll SR Series Coil Laser Cutting Machine - Details Image(laser cutter for aluminum)

Heavy-duty welded bed frame

The bed frame is welded using thick square tubes and reinforced internally to enhance structural strength and tensile resistance.It undergoes high-temperature annealing and natural aging treatment to eliminate welding stress, prevent deformation, reduce vibrations, and ensure excellent cutting precision.

Servo precision feeding system

Independent open automatic feeding system

Automatic transmission operation platform

Completely eliminate the disadvantages of manual feeding

Higher degree of automation and significantly improved efficiency

Feeding data

  • Coil thickness:0.5-3mm
  • Coil width:500-1500mm
  • Uncoiler unwinding speed:20m/min

Laser Cutting head

  • Autofocus function, which automatically adjusts the focal length according to the thickness of different materials to ensure cutting quality and efficiency
  • Dual water cooling circuit system, it effectively reduces the operating temperature of the laser head and improves the stability and life of continuous work.
  • With IP65 dustproof performance, it effectively prevents dust and particles from entering the laser head and protects key components from pollution and damage.

Bus system with an intelligent cutting head

  • Precision and Efficiency: Achieve precise control over the cutting head’s position and movement, enhancing cutting accuracy and efficiency.
  • Real-time Adjustment and Adaptability: Instantly adjust cutting parameters to suit different materials and cutting needs. It supports various cutting modes and material processing options.
  • Stability, Reliabilityand Integration: Ensure stable, reliable operation for long-term use. The system integrates smoothly with automated production lines, enhancing overall operational intelligence.

Fast and stable drive system

Using Japanese Yaskawa Electric, Japanese Fuji Electric or Inovance Motor, high precision, no step loss, high torque, low noise, using Taiwan yyc/Germany herion gear and Japanese shimpo/French motovario/Germany lead reducer, the machine positioning accuracy reaches 0.02 mm

Fast Roll SR Series Coil Laser Cutting Machine - Technical Parameters

Model

SR3

Working area(mm)

3250*1530mm

Dimension (L*W*H)

17000*2500*2600mm

Outer diameter of metal coil

Φ1200-φ1500mm

Inner diameter of metal coil

Φ510 φ600

Maximum weight of single roll

≤8T

Material thickness(mm)

0.6-2

Feeding accuracy(mm)

±2

Feeding speed(m/min)

0-10

X/Y axis positioning accuracy

±0.05mm

Repeat positioning accuracy

±0.03mm

Fast Roll SR Series Coil Laser Cutting Machines - Cutting Power

Fast Roll SR Series Coil Laser Cutting Machine - Cutting Samples

Sample-1

Fast Roll SR Series Coil Laser Cutting Machine - Procurement Process

Fast Roll SR Series Coil Laser Cutting Machine - After-sales Service Process

Fast Roll SR Series Coil Laser Cutting Machine - FAQ

A: In order to recommend you the most suitable machine model, just tell us below information

1)What is your material

2)The size of material

3)The thickness of material

A:1)Alibaba trade assurance/TT/West Union/Payple/LC/Cash and so on.

2)We start making standardized machines after receiving 30% of the payment, inspect the machines after completion, and finally collect the 70% balance before shipping.

A:1)We provide free training in our factory

2)We provide free online after-sales service

3)We have complete installation instructions and video tutorials

4)Door-to-door service charges are based on region and aircraft model

5)Provide three-year warranty, except for consumable parts, direct replacement for non-human damage

 

Fast Roll SR Series Coil Laser Cutting Machine - Application Center

Stainless Steel Laser Cutters: A Comprehensive Guide

Introduction to Stainless Steel Laser Cutters

Laser cutting is an advanced technology widely used across various industries due to its precision and efficiency. When it comes to stainless steel, a material known for its durability and corrosion resistance, laser cutting offers a clean, accurate, and efficient method for shaping and engraving. This comprehensive guide explores the intricacies of using laser cutters for stainless steel, covering the types of lasers suitable for this material, the process involved, and the benefits of using laser technology.

Types of Laser Cutters for Stainless Steel

1 Fiber Lasers

Fiber lasers are highly efficient and offer excellent precision, making them ideal for cutting stainless steel. They operate by generating a high-power laser beam, which is focused onto the material, melting and vaporizing it along a precise path. The key advantages of fiber lasers include:

- High efficiency: Fiber lasers convert electrical energy into laser light with great efficiency, leading to lower operating costs.

- Precision: They produce a smaller spot size, enabling finer cuts and intricate designs.

- Speed: Fiber lasers can cut through stainless steel quickly, enhancing productivity.(Stainless Steel Laser Cutters)

2CO2 Lasers

CO2 lasers are another popular choice for cutting stainless steel. They use a gas mixture to produce the laser beam and are known for their versatility. Key features include:

- Broad applicability: CO2 lasers can cut a wide range of materials, including various grades of stainless steel.

- Lower initial cost: These lasers generally have a lower purchase cost compared to fiber lasers.

- Smooth cuts: CO2 lasers produce clean and smooth edges, especially on thicker stainless steel sheets.(Stainless Steel Laser Cutters)

3UV and IR Lasers

For specialized applications, such as cutting very thin stainless steel sheets or foils, UV (ultraviolet) and IR (infrared) lasers can be used. These lasers are less common but offer specific benefits:

- UV lasers: Ideal for very fine and detailed work, they are used in applications requiring extremely tight tolerances.

- IR lasers: Suitable for slightly thicker materials, they provide a good balance between precision and speed.(Stainless Steel Laser Cutters)

The Laser Cutting Process for Stainless Steel

1Preparing the Design

The first step in the laser cutting process is creating a precise design, typically using CAD software. This design guides the laser cutter, ensuring that the cuts are made accurately.

2Setting Up the Machine

Once the design is ready, the next step involves setting up the laser cutting machine. This includes selecting the appropriate laser type, adjusting the power settings, and calibrating the focus and assist gas (commonly nitrogen or oxygen) to optimize the cutting process.

3The Cutting Process

The laser cutter follows the programmed design, cutting through the stainless steel with high precision. The focused laser beam heats the material to its melting point, and a gas jet removes the molten metal, leaving behind a clean cut.

4Post-Cutting Processes

After the cutting is complete, the parts may require additional finishing, such as deburring or polishing, to achieve the desired surface quality. This step is crucial for applications where aesthetic or functional precision is critical.

Benefits of Laser Cutting Stainless Steel

1Precision and Accuracy

Laser cutting offers unmatched precision, allowing for the creation of complex shapes and intricate patterns that would be challenging with traditional cutting methods. The high accuracy ensures minimal waste, which is particularly important when working with expensive materials like stainless steel.(Stainless Steel Laser Cutters)

2Speed and Efficiency

Compared to mechanical cutting methods, laser cutting is significantly faster, especially for thin and medium-thickness stainless steel sheets. This speed, combined with the ability to automate the process, enhances overall production efficiency.(Stainless Steel Laser Cutters)

3Clean Cuts and Reduced Heat-Affected Zones (HAZ)

Laser cutting minimizes the heat-affected zone (HAZ) around the cut edges, preserving the material’s mechanical properties and reducing the risk of warping or distortion. The process also results in smooth, burr-free edges, reducing the need for post-processing.

4Versatility

Laser cutters can handle a wide range of stainless steel types and thicknesses, making them suitable for various industries, from automotive and aerospace to medical device manufacturing and decorative arts.(Stainless Steel Laser Cutters)

Considerations for Optimal Laser Cutting

1Material Thickness and Type

The type and thickness of stainless steel being cut are critical factors in determining the appropriate laser cutter and settings. Thicker materials may require higher power lasers and slower cutting speeds, while thin sheets can be cut quickly with lower power settings.

2Laser Power and Focus

Selecting the right laser power is crucial for achieving high-quality cuts. Too much power can cause excessive melting and a rough edge, while too little power may not penetrate the material. The focus of the laser must also be adjusted precisely to match the material thickness.

3Assist Gas Selection

The choice of assist gas affects the quality of the cut and the speed of the process. Nitrogen is often used for cutting stainless steel as it prevents oxidation and ensures a clean cut. Oxygen can be used for faster cuts but may result in an oxidized edge.

4Machine Maintenance and Calibration

Regular maintenance and calibration of the laser cutting machine are essential to ensure consistent performance. This includes cleaning the optics, checking the alignment, and replacing consumables like lenses and nozzles as needed.

Applications of Stainless Steel Laser Cutting

1Automotive Industry

In the automotive industry, laser cutting is used to create precise components and parts, such as exhaust systems and body panels. The ability to cut complex shapes quickly and accurately makes it a valuable tool for automotive manufacturers.

2Aerospace and Aviation

The aerospace industry demands high precision and quality in its components. Laser cutting is ideal for producing intricate parts from stainless steel, such as turbine components and structural elements, where tolerances are critical.

3Medical Devices

Stainless steel is commonly used in medical devices due to its corrosion resistance and strength. Laser cutting is used to manufacture surgical instruments, implants, and other medical devices, ensuring high precision and cleanliness.

4Architecture and Design

Laser-cut stainless steel is also popular in architectural and decorative applications. From intricate railings and facades to detailed signage and art pieces, laser cutting offers designers the freedom to create unique and complex designs.

Challenges and Solutions in Stainless Steel Laser Cutting

1Heat Management

One of the challenges in laser cutting stainless steel is managing the heat generated during the process. Excessive heat can lead to warping and other defects. Using proper assist gas, optimizing cutting speed, and using cooling systems can help manage heat effectively.(Stainless Steel Laser Cutters)

2Edge Quality

Achieving a clean edge without burrs is crucial for many applications. Adjusting the laser settings, such as power and focus, and selecting the right assist gas can help improve edge quality. Post-processing techniques like deburring may also be necessary for high-precision requirements.(Stainless Steel Laser Cutters)

3Cost Considerations

While laser cutting offers many benefits, it can also be costly, particularly for high-power machines and thick materials. It's important to balance the costs with the benefits, such as reduced material waste and increased production speed, to determine the overall value.(Stainless Steel Laser Cutters)

Future Trends in Laser Cutting Technology

1 Advances in Fiber Laser Technology

Fiber laser technology continues to evolve, with improvements in power, efficiency, and beam quality. These advancements are expanding the range of applications for laser cutting and improving the quality and speed of the process.(Stainless Steel Laser Cutters)

2Automation and Integration

Automation is becoming increasingly important in manufacturing, and laser cutting is no exception. Integrating laser cutting machines with other automated systems, such as robotic arms and conveyor belts, can streamline production and reduce labor costs.(Stainless Steel Laser Cutters)

3Environmental Considerations

As environmental concerns grow, the industry is looking at ways to make laser cutting more sustainable. This includes improving energy efficiency, reducing emissions from assist gases, and recycling waste materials.(Stainless Steel Laser Cutters)

Conclusion

Stainless steel laser cutting is a versatile and efficient process that offers numerous advantages, including high precision, speed, and the ability to handle complex designs. With the right equipment and settings, laser cutting can produce high-quality results for a wide range of applications. As technology advances, we can expect even greater capabilities and efficiencies from laser cutters, making them an increasingly valuable tool in various industries.(Stainless Steel Laser Cutters)

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