100W Mini Size Laser Rust Remover Tool Portable Design Handheld Small Cabinet 100W Laser Cleaning Machine
Datasheet
Items | Parameters | |||
Cleaning Power | 50W | 100W | 200W | 500W |
Current Consumption | Pout = Ponm / 5A | Pout = Ponm / 5A | Pout = Ponm / 5A | Pout = Ponm / 25A |
Max. Power | 400W | 600W | 900W | 6.5KW |
Power Voltage | AC 110/220V | AC 110/220V | AC 110/220V | AC 110/220V |
Cooling Method | Air Cooling | Air Cooling | Air Cooling | Water Cooling |
Laser Class | Level 4 | Level 4 | Level 4 | Level 4 |
Pulse Energy | 1.5mJ | 1.5mJ | 8mJ | 30mJ |
Fiber Optical Cable | 5m(Customizable) | 5m(Customizable) | 5m(Customizable) | 7m(Customizable) |
Laser Wavelength | 1064nm | 1064nm | 1064nm | 1064nm |
Scan Width | 1-120mm | 1-120mm | 1-120mm | 1-160mm |
Preheat Time | 10-30s | 10-30s | 10-30s | 10-30s |
Working Condition | A flat place without vibration and impact | A flat place without vibration and impact | A flat place without vibration and impact | A flat place without vibration and impact |
Working Temperature | 0-60 ℃ | 0-60 ℃ | 0-60 ℃ | 0-60 ℃ |
Storage Temperature | -10~+60℃ | -10~+60℃ | -10~+60℃ | -10~+60℃ |
Machine size | L462 x W 260 x H562 (855mm with pull rod) | L647 x W 440 x H859mm | L647 x W 440 x H859mm | L1100 x W 840 x H1150mm |
Net Weight | 32Kgs | 70Kgs | 70Kgs | 250Kgs |
Features of Machine
(1) Non-contact cleaning, no damage to the workpiece
(2) First fiber laser cleaning machine mass production factory.
(3) High cleaning efficiency, time-saving.
(4) Precision positioning, selective cleaning, desired cleaning area can be applied to the workpiece
(5) No need for chemical detergent, no consumable. Safe & environment-friendly.
(6) Stable laser cleaning system, free maintenance.
(7) Easy to operate, Either portable or equipped with robot for automatic cleaning
Applications of Machine
- Precise de coating of small areas |
- Natural stone cleaning |
- Rust/oxide removal |
- Oil & grease removal/Cleaning oil deposits |
- Paint & plating removal |
- Pre-treatment to enhance adhesive bonding |
- In-line baking plate cleaning |
- Print rollers cleaning |
- Weld seam pre-treatment/Removal preparation welding layers |
- Industrial, military & shipyard - production intensive de-coating |
- Nuclear de-contamination |
Where it is used
As well as being able to clean objects which have developed surface corrosion that needs to be removed, such as metal tools, it is also possible to use laser cleaning as a means of preparing the surface of a material before it undergoes another form of processing. This might include priming prior to the application of paint, or the removal of excess debris in anticipation of welding.
Of course these are uses in which the precision of the fiber laser cleaning process is not really put to the test. To demonstrate the true extent of its abilities, it is worth looking at how it is applied in the context of cleaning silicon wavers in electronics manufacturing.
There are a number of ways in which pulsed fiber lasers can clean surfaces during semiconductor production, whether purely through photothermal ablation or by use of a type of steam cleaning that is still far more eco-friendly than any other method available.
Impressive advantages
Some of the perks of fiber laser cleaning have been touched on already but it is worth exploring the sustainability of this process in a little more depth.
Because no chemicals are required, there is effectively no waste created through fiber laser cleaning, save from the tiny amount of material which is removed from the surface of the object. This means no harmful substances need to be disposed of and so the environment suffers no penalties.
Furthermore the amount of energy required to power fiber laser machines is comparatively low, which is good for cutting the carbon footprint of cleaning and also for reducing the cost of producing and maintaining a variety of components and equipment.