Fiber Laser Cleaning Machine
Fiber Laser Cleaning Machine
Products Description
Fiber cleaning machines are cutting-edge industrial solutions that harness the power of high-powered fiber s to effectively eliminate rust, paint, and contaminants from a wide range of surfaces. With their exceptional efficiency, precision, and environmentally-friendly cleaning methods, these machines are quickly gaining popularity in various industries.
Utilizing a fiber for cleaning involves the rapid delivery of thousands of micro-pulses every second. These pulsations generate small plasma bursts at the targeted spot, effectively eradicating any unwanted substances. The ensuing vaporization process swiftly removes the debris, leaving a spotless surface in its wake. This non-contact technique not only prevents any form of mechanical harm but also reduces material wastage significantly.
Advantages of Fiber cleaning machine
1. Precision: Fiber cleaning machines are highly precise in pinpointing the intended area for cleaning, ensuring that only the unnecessary material is removed while maintaining the integrity of the surface underneath.
2. Speed: Laser cleaning is incredibly efficient, outpacing traditional cleaning methods and boosting productivity.
3. Non-abrasive and eco-friendly: Rather than relying on harsh cleaning techniques that create waste and potential damage, cleaning offers a non-invasive solution that leaves no secondary waste or harm to the material.
4. Versatility: Fiber s are highly versatile tools that can effectively clean a wide range of materials such as metals, plastics, ceramics, and composites.
5. No consumables: Laser cleaning is a cost-effective and eco-friendly solution that eliminates the need for consumables such as chemicals or abrasive media. This not only lowers operating costs but also reduces environmental impact, making it a highly efficient and sustainable cleaning method.
When selecting a fiber cleaning machine, it's important to take into account key factors such as power, scanning coverage, automation level, and user-friendly operation. The ideal choice will vary depending on the unique needs and specifications of your particular application.
Parameters
|
Model |
DS-C200 |
DS-C500 |
DS-C1000 |
DS-C1500 |
DS-C2000 |
|
Laser Power |
200W |
500W |
1000W |
1500W |
2000W |
|
Laser type |
Pulse/Continuous |
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|
Laser wavelength |
1064nm-1070um |
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Cooling type |
Air cooling/ water cooling(Water cooling above 500W ) |
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|
Cooling water type |
Purified water/ special antifreeze/alcohol+water |
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|
Working water temperature |
18-35°C (reference range) |
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|
Cleaning head weight |
1.2 kg |
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|
Total power |
≤200-3000W |
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|
Scan width |
10-120mm |
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Operating temperature |
15℃-55℃ |
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Working Principle
1. The powerful produced by the Fiber Laser Cleaning Machine can be expertly concentrated by the optical system to create high levels of energy concentration. As the beam is focused, it can reach temperatures of thousands or even tens of thousands of degrees near the focal point. This intense heat causes instant vaporization or decomposition of any unwanted material on the object's surface.
2. Optical peeling uses technology to gently heat and expand the attachments on the surface of an object. This process allows for easy removal of the attachments when the force of expansion exceeds the force of adhesion to the substrate.
1. Cleaning in the electronics industry. The electronics industry will use s to remove oxides, and the electronics industry is suitable for s to remove oxides. Before the circuit board is soldered, the component pins must be thoroughly deoxidized to ensure the effect of electrical contact, and the pins must not be damaged during the decontamination process.
2. Pretreatment for brazing and welding Laser welding preparation is one of the many applications of cleaning, which helps to remove ferrous and non-ferrous metals, lubricants and other contaminants on the surface of metal and aluminum, and prepares for high-quality welding.
3. Cleaning of the mold during the production process, the cleaning of the tire mold must be rapid and reliable to save downtime. Because the cleaning method can be connected by optical fiber to clean the dead corners of the mold or the parts that are not easy to clean, it is convenient to use.

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