China wholesaler Hot Sale Laser Cutting Machine Used ASME CE Pmvsd All in One 4in1 Energy Saving Screw Air Compressor mini air compressor

China Wholesaler Hot Sale Laser Cutting Machine Used ASME CE Pmvsd All in One 4in1 Energy Saving Screw Air Compressor Mini Air Compressor

The laser cutting machine is an essential tool in various factories. It requires the use of gas to enhance its cutting capabilities. There are two types of gases used: auxiliary gas and cutting gas. The compressed air, mixed with oxygen or nitrogen, is used as auxiliary gas to blow away the residual metal between the slits. Compressed air, high purity oxygen, and nitrogen are used as cutting gas to provide gas to the cutting head. This combination of gases ensures efficient and precise cutting.

Almost 70%~80% of factories have their own laser cutting machines, with each machine matched with a 16bar screw air compressor. The demand for these 16bar air compressors in the market is immense. The use of compressed air for laser cutting machines is cost-effective and widely applicable. It can be used for cutting various materials such as carbon steel, aluminum, aluminum alloy, stainless steel, and brass below 2.5mm. The air supply pressure required is between 13bar-16bar.

One customer case involves a metal processing factory that purchased a set of screw air compressor equipment to provide compressed air for their 500W fiber laser cutting machine. By using compressed air as the air source, the cost is significantly lower compared to using N2 or O2. The electricity cost for running a 7.5KW-11kw air compressor for 8 hours a day is around $60. In just one year, the savings can amount to $2,700, allowing the cost of the air compressor to be recovered in less than 2 years. Using compressed air for laser cutting machines not only saves money but also protects the machine itself.

To protect the laser cutting machine, CHINAMFG 16bar 4in1 screw air compressor is equipped with a 400L air tank, a lower pressure dew point refrigerated air dryer, and a 4-level line air filter. This ensures that the protective lens is free from oil and water, preventing any dispersion of the focused light and reducing the cutting efficiency.

When choosing an air compressor for laser cutting machines, it is important to consider the power requirements. For a 500W laser machine, an 11kw air compressor is suitable. For a 1000W-5000W laser machine, a 15kw air compressor is recommended. And for a 6000W-12000W laser machine, a 22kw air compressor is needed.

Why choose CHINAMFG 16bar air compressor? It is a 4IN1 type that includes a screw air compressor, receiver tank, air dryer, and air filter. It is plug-and-use, eliminating the need for installation. The 16bar compressed air is perfect for laser cutting machines, reducing the need for N2 and O2. The air compressor provides clean air to protect the laser cutting machine and operates with stability, reliability, low noise, and energy-saving features.

Detailed Photos

1. High-Quality Air-End
Keep the compressor stable running guaranteed, with no overheating problems even under continuous 100% load.

2. PLC Controller
A colorful touch-screen controller that allows for easy operation with record, remind, and alarm protect functions.

3. Refrigerated Air Dryer
Lower pressure dew point, removing 98% of water from the air.

4. Reliable Inverter
Air supply is equal to air demand, eliminating electricity wastage and unloading wastage.

Everything used in our air compressor is of the highest quality, ensuring optimal performance and efficiency.

Technical Parameters

Model Max Working Pressure Capacity Motor Power Air Tank Capacity Connection Net Weight Dimension (L

All the content of this page is from the Internet. The content is only for reference for product selection. Our products are replacement parts and not original spare parts. We are not the holder of the original trademarks of the content. Our products are only suitable for after-sales replacement parts and not original spare parts. Our replacement parts can be perfectly adapted to the original spare parts. If you need to buy original spare parts, please contact the original factory to buy. If you want to buy original spare parts, please contact the original supplier for purchase.

Performance Characteristics of Laser Compressor

1. Enhanced Beam Quality

The Laser Compressor improves the beam quality of laser systems, resulting in sharper and more precise outputs. This enhancement allows for better performance in various applications and ensures accurate results.

2. Pulse Compression

By compressing laser pulses, the Laser Compressor enables shorter pulse durations, which is essential for applications that require high peak powers and ultrafast operations. This feature is particularly beneficial in scientific research and industrial material processing.

3. Efficient Energy Conversion

Laser Compressors are designed to efficiently convert electrical energy into laser energy, minimizing energy loss and maximizing the laser system’s overall performance. This efficiency is crucial for applications that require high power outputs and long-lasting operation.

Types and Characteristics of Laser Compressor

1. Grating Compressor

– Utilizes diffraction gratings to compress laser pulses.
– Offers high precision and adjustable compression ratios.
– Suitable for ultrafast laser systems and scientific research.

2. Prism Compressor

– Employs prisms to compress laser pulses.
– Provides excellent dispersion control and pulse compression.
– Commonly used in medical and cosmetic procedures.

Advantages of Laser Compressor Made of Different Materials

1. Glass Compressor

– Offers good thermal stability and low dispersion.
– Ideal for industrial material processing and telecommunications applications.

2. Crystal Compressor

– Provides high damage threshold and exceptional beam quality.
– Suitable for ultrafast laser systems and scientific research.

Application of Laser Compressor

Laser Compressors find extensive usage in various fields, including:

– Ultrafast Laser Systems

– Enables precise and efficient ultrafast laser operations.
– Essential for high-power and ultrafast scientific experiments.

– Medical and Cosmetic Procedures

– Used in laser surgery, skin rejuvenation, and tattoo removal.
– Offers precise control over laser parameters for optimal results.

– Industrial Material Processing

– Enables precise cutting, drilling, and marking of materials.
– Enhances productivity and quality in manufacturing processes.

– Scientific Research

– Facilitates advanced experiments in physics, chemistry, and biology.
– Enables groundbreaking discoveries and technological advancements.

– Telecommunications

– Used in fiber-optic communication systems.
– Enhances signal transmission and data transfer speeds.

Future Development Trends and Opportunities of Laser Compressor

The Laser Compressor industry is expected to witness significant growth and opportunities in the coming years. Some of the future development prospects include:

– Miniaturization of Laser Compressors

– Advancements in technology will lead to smaller and more compact laser compressors.
– Increased portability and integration into various devices and systems.

– Improved Efficiency and Performance

– Ongoing research and development efforts aim to enhance the efficiency and performance of laser compressors.
– Better beam quality, higher compression ratios, and improved energy conversion.

– Expansion into Emerging Markets

– Laser Compressors have immense potential in emerging markets, including developing countries and industries.
– Increased adoption and demand for laser technology in various sectors.

How to Choose a Suitable Laser Compressor

When selecting a Laser Compressor, consider the following aspects:

– Clear Requirements

Define your specific needs, such as desired pulse duration, power output, and beam quality. This will help narrow down the options and choose the most suitable compressor.

– Material Selection

Choose a Laser Compressor made of materials that align with your application requirements. Consider factors such as thermal stability, dispersion control, and damage threshold.

– Design Optimization

Evaluate the design features and specifications of different compressors. Look for features that enhance performance, precision, and durability.

– Suppliers and After-Sales Service

Select reliable suppliers who offer quality products and excellent after-sales service. Ensure prompt technical support and availability of replacement parts if needed.

– Cost-Effectiveness and Quality Control

Balance the cost of the Laser Compressor with its quality and performance. Consider long-term reliability and overall value for money.

Author: Dream

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Laser compressor

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