As a globally recognized manufacturing powerhouse, China has made tremendous strides in industrialization, achieving remarkable success while simultaneously leading to severe environmental degradation and industrial pollution.
In recent years, my country's environmental protection regulations have become increasingly stringent, resulting in the closure and rectification of some enterprises. This blanket environmental crackdown has impacted the economy; changing traditional polluting production models is key.
With technological advancements, various environmentally friendly technologies have been explored, and
Laser Cleaning Machine are one of them.
Laser
Cleaning Machine represent a newly emerging workpiece
Surface Cleaning Technology in the last decade. Their advantages and irreplaceable nature are gradually replacing traditional cleaning processes in many fields.
Traditional cleaning methods include mechanical cleaning, chemical cleaning, and ultrasonic cleaning. Mechanical cleaning uses scraping, wiping, brushing, sandblasting, and
Other mechanical means to remove surface contaminants; wet chemical cleaning uses organic cleaning agents and removes surface deposits through spraying, rinsing, soaking, or high-frequency vibration; ultrasonic cleaning involves immersing the parts to be treated in a cleaning agent.
Ultrasonic cleaning utilizes the vibration effect generated by ultrasound to remove dirt. Currently, these three cleaning methods still dominate the Chinese cleaning market, but all generate pollutants to varying degrees, significantly limiting their application due to environmental protection and high-precision requirements.
Laser Cleaning Machine cleaning refers to a laser process that utilizes a high-energy, high-frequency laser beam to irradiate the surface of a workpiece, causing surface dirt, rust, or coatings to evaporate or peel off instantly. This high-speed and efficient removal of adhering substances or surface coatings from the object's surface achieves a clean result.
Laser is characterized by high directionality, monochromaticity, high coherence, and high brightness. Through focusing with a
Lens and Q-switching, energy can be concentrated into a very small spatial and temporal range.