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December 23, 2023

Comprehensive understanding of laser cleaning machines

Nowadays, laser cleaning machines are increasingly widely used in daily life. They can not only remove rust, but also remove various oil stains, oxides, resins, adhesives, dust, stains, production residues, etc. More and more manufacturers and individuals are starting to purchase laser cleaning machines for various production activities. At present, laser cleaning technology has been applied in various fields such as military industry, mold cleaning, surface treatment, microelectronics, cultural relic protection, medical treatment, and automotive processing.



So, what is a Laser cleaning machine? What are the characteristics and advantages of laser cleaning machines? What is its scope of application? And most importantly, how to choose a cleaning machine that suits you? Next, we will discuss these issues.



Laser cleaning machine





Introduction to Laser Cleaning Machine

The laser cleaning machine uses nano laser radiation to clean the surface of the workpiece very effectively. Due to the non-contact cleaning of workpieces by laser, cleaning precision workpieces or their fine parts is very safe and can ensure their accuracy. This is why laser cleaning is unique in the cleaning industry. Laser cleaning can not only clean organic pollutants, but also inorganic substances such as metal oxides, metal particles, dust, etc.





The advantages of laser cleaning machines

Traditional cleaning techniques include mechanical friction cleaning, chemical corrosion cleaning, liquid-solid impact cleaning, and high-frequency ultrasonic cleaning. Compared with these cleaning technologies, laser cleaning machines have the following obvious advantages:

Laser Cleaning Machine

Environmental advantages: Laser cleaning is a "green" cleaning method that does not use chemicals or cleaning liquids. The cleaning waste is basically solid powder, small in size, easy to store, recyclable, non photochemical reaction, and does not produce pollution.



Efficiency advantage: Traditional cleaning methods often use contact cleaning, which can cause mechanical forces on the surface of the cleaned object, damage the surface of the object, or the cleaning medium adheres to the surface of the cleaned object, making it impossible to remove, resulting in secondary pollution. Laser cleaning is non abrasive and non-contact, has no thermal effect, and will not damage the substrate. Therefore, these problems are easily solved.



Control advantage: Laser can be transmitted through optical fibers, which is convenient for long-distance operation in conjunction with robots and robotic arms. It can also clean parts that are not easily accessible by traditional methods, ensuring the safety of personnel when used in some dangerous places.



Convenient advantage: Laser cleaning can remove various pollutants on the surface of various materials, achieving a level of cleanliness that conventional cleaning cannot achieve. It is also possible to selectively clean the surface of materials without damaging them.



Precision advantage: It can effectively clean micron level pollutant particles, achieve controllable fine cleaning, and is suitable for the cleaning process of precision instruments and precision parts
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