China Laser Cleaning Machine - FRZ-LC from Reliable Suppliers and Factory for Effective Surface Cleaning Solutions
Equipment Introduction
The principle of laser cleaning is mainly based on the thermal effect, photochemical effect, and shock wave effect generated by the interaction between laser and matter. When the laser beam is irradiated onto the surface of the material, pollutants absorb laser energy and quickly heat up, expand, vaporize, or peel off, thereby achieving cleaning.
The specific process of laser cleaning includes the following steps:
1
Energy absorption: Pollutants heat up after absorbing laser energy.
2
Physical and chemical changes: Pollutants undergo physical and chemical changes such as melting, combustion, or gasification.
3
Pollutant removal: Pollutants detach from the surface of the material without damaging the substrate.
Key Advantages: No grinding, non-contact, no thermal effect, and environmental friendliness. It is suitable for various materials and can solve problems that traditional cleaning methods cannot solve.
Application Scenario: Laser cleaning is widely used in the industrial field, such as removing dirt and coatings on the surfaces of metals, plastics, ceramics and other materials, especially suitable for cleaning precision parts and complex structures.
Application Areas
Laser cleaning machine is widely used in the industrial field, such as removing dirt and coatings on the surfaces of metals, plastics, ceramics and other materials, especially suitable for cleaning precision parts and complex structures.
Technical Parameters
| Model | FRZ-LCF | FRZ-LCU | FRZ-LCG | FRZ-LCC |
| Average output power(W) | 100-500 | 5-15 | 20-100 | 20-500 |
| Wavelength(nm) | 1070 | 355 | 532 | 10600 |
| Scan speed(mm/s) | 20000 | |||
| Scan length (mm) | 100--150 | |||
| Power range | 0--100% | |||
| Power supply | 220V±10%, 50Hz | |||
| Language | Chinese, English Korean, Japanese | |||
| Cooling mode | Air cooling or Water cooling | |||
Equipment Pictures
Portable Bag Style
Trolley Case Style
Storage Box Style
Cabinet Style
Samples Pictures
5G Filter Silver Layer Removal
Cell Phone Holder Rust Cleaning
Rust Layer Cleaning
Welding Seam Cleaning
Rust Removal of Keys
Polar Cleaning
Cleaning of Stainless Steel Oxide Layer
Cleaning of Black Ink on the Surface of Mobile Phone Glass Screen
Cleaning of Ink on the Surface of Glass Screen
Videos
Frequently Asked Questions
What is the working principle of this laser cleaning machine?
The principle is based on the interaction of the laser beam with the material's surface, causing thermal effects, photochemical effects, and shock waves. Pollutants absorb the laser energy, heat up rapidly, and vaporize, expand, or peel off from the substrate without damage.
What are the key steps involved in the laser cleaning process?
The process consists of three main steps:
1. Energy absorption where pollutants heat up.
2. Physical and chemical changes like melting, combustion, or gasification.
3. Pollutant removal where they detach from the material surface safely.
What advantages does laser cleaning offer compared to traditional methods?
Laser cleaning provides a non-contact, non-grinding solution that creates no thermal effects on the substrate. It is highly environmentally friendly, versatile for various materials, and resolves cleaning issues that traditional methods cannot handle.
Which materials and applications can be processed?
It is widely used to remove dirt, coatings, rust, and oxide layers from metals, plastics, ceramics, and other materials. It is highly suited for cleaning precision parts and complex geometries.
What are the cooling modes and power ranges for the FRZ models?
The average output power ranges from 5W to 500W depending on the specific model (FRZ-LCF, FRZ-LCU, FRZ-LCG, FRZ-LCC). The system supports either Air cooling or Water cooling modes depending on configuration requirements.
What languages are supported by the equipment's system?
The equipment system is multi-lingual and supports Chinese, English, Korean, and Japanese.
