Handheld, flexible, portable and easy to operate
High pulse energy, high laser beam quality, smooth surface cleaning effect
Parameters Table
Item | L/N | Characteristics | Test Conditions | Min. | Typical | Max. | Unit |
Electrical Characteristics | 1 | Power Voltage | 220 | 210 | 220 | 230 | AC |
2 | Maximum current loss | Pout=Pnom | 4 | 5 | 6 | A | |
3 | Total Power | 400 | 390 | 400 | 410 | W | |
4 | Fiber Cable | 5 | 5 | 5 | 8 | M | |
General Characteristics | 1 | Working temperature range | 0 | / | 60 | ℃ | |
2 | Storage temperature | -10 | / | 60 | ℃ | ||
3 | Laser power | 50 | W | ||||
4 | Peak power | >10KW | KW | ||||
5 | Cooling method | Air Cooling | |||||
6 | Laser level | 4 Class | |||||
7 | Pulse energy | 1.5mJ | mJ | ||||
8 | Laser wavelength | 1064 | nm | ||||
9 | Preheat time | Reach to start operation | 0 | s | |||
Achieve complete stability | 10 | ||||||
10 | Humidity | 10 | / | 95 | % | ||
11 | Laser machine size | L462*W260*H562 (855mm with pull rod) | mm | ||||
12 | Weight | 30 | kg |
Product Advantages
As a green and environmentally friendly cleaning method, laser cleaning technology emerges at the historic moment and becomes an emerging cleaning technology, attracting the attention of automobile manufacturing, mechanical processing, railway industry, coal industry, electronic processing, cultural relic restoration, mold industry, shipping industry, food processing, petrochemical and other industries. Compared with traditional industrial cleaning method, it has the following advantages:
No consumables, no chemical pollution, no noise, energy saving
No contact, no grinding, no stress, minimal damage to the workpiece
Can remove the pollution particles below the nanometer level, high cleanliness
Optical fiber transmission, portable operation, can clean the inaccessible area
It can quickly clean the heavy pollutants and light pollutants
Paint Cleaning
For applications that require delicate removal of surface coatings without affecting the base material, pulsed fibre lasers are the perfect tool. Laser cleaning can be applied to various materials including metals, plastics, composites and glass. Coatings such as paint, varnish and rust can be cleaned with ease. This is useful for the electronics, aerospace and solar energy industries amongst others.
The conventional methods for paint removal involves the use of chemical solvents or abrasive media blasting. These methods can be time consuming, very harsh on the substrate and involve additional costs such as purchasing the blast media and safe disposal of the solvents after use.