Specialized Metal Surface Dirty Stains Laser Cleaner Machine Rust Cleaning Laser Device
Main Technical Parameters
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 | 600 | 590 | 600 | 610 | W | |
4 | Fiber Cable | 5 | 5 | 5 | 10 | M | |
General Characteristics | 1 | Working temperature range | 0 | / | 60 | ℃ | |
2 | Storage temperature | -10 | / | 60 | ℃ | ||
3 | Laser power | 100 | W | ||||
4 | Peak power | >10KW | KW | ||||
5 | Cooling method | Air Cooling |
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6 | Laser level | 4 Class |
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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 | L647*W440*H859 | mm | ||||
12 | Weight | 70 | kg |
Principles and Fundamentals of Fiber Laser Cleaning
Laser cleaning is now getting to be a more and more important process for many industries all around the world, and while it has similarities to other laser processes, it has some unique attributes which set it apart. We have covered these below.
The basics
Before examining the specifics in more detail, these are the basic principles and fundamentals of fiber laser cleaning:
· It is a non-contact, non-abrasive process
· It is a process completed using a fiber laser, as opposed to a crystal or gas laser
· It allows users a great deal of control over power output, wavelength and ablation depth
· It is a newer cleaning process, replacing more traditional methods such as media blasting, dry-ice blasting or cleaning using chemical solvents
· It is an efficient, safe, environmentally-friendly and cost-effective process
· It is a more efficient cleaning method compared with the traditional cleaning way.