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Portable Rust Removal Machine 100W Mini Size Oil Stain Remover Laser Handheld Operation
Specification List
Items | Parameters |
Cleaning Power | 100W |
Current Consumption | Pout = Ponm / 5A |
Max. Power | 600W |
Power Voltage | AC 110/220V |
Cooling Method | Air Cooling |
Laser Class | Level 4 |
Pulse Energy | 1.5mJ |
Fiber Optical Cable | 5m(Customizable) |
Laser Wavelength | 1064nm |
Scan Width | 1-120mm |
Preheat Time | 10-30s |
Working Condition | A flat place without vibration and impact |
Working Temperature | 0-60 ℃ |
Storage Temperature | -10~+60℃ |
Machine size | L647 x W 440 x H859mm |
Net Weight | 70Kgs |
Laser cleaning is a process whereby contaminants or impurities, such as carbon or rubber, are removed from a material’s surface through the use of laser irradiation. The purpose of this is to literally clean the material that is being worked with.
Main Features
1, High-tech laser cleaning without any contact, no damage to the workpiece. |
2, Auto-focusing, hook cleaning, precision, and no dead ends cleaning ability. |
3, No consumables and cost-effective. |
4, No cleaning medium, water, and a chemical is needed. |
5, Automatic and easy operation, with electricity handheld or automation cleaning. |
6, Portable with light cabinet and universal wheels. |
7, High cleaning efficiency, time-saving. |
8, System stable, free maintenance. |
While there are many different types of laser, they generally work in the same way when it comes to cleaning, although output power, pulse parameters, and wavelength can change dramatically.
The laser cleaning process works by having a laser pulse directed at the surface of a material, which blasts this layer off. The contaminants that you are trying to remove are mostly vaporised, leaving very little waste material behind. Any waste that is left is in the form of particle dust, and it’s a simple process to suction this away.
By adjusting the laser output energy, you can remove virtually anything from a surface including non-organic materials. By controlling the energy levels, various surface contaminants cam be removed (e.g. organics, mineral oxides or ceramics) with no damage to the underlying substrate.
It is also a non-contact, and non-abrasive process
There are many advantages offered by this application:
· No problem will be presented when it comes to substrate wear
· The small amount of waste that is produced isn’t harmful or dangerous to the user. This makes it an extremely environmentally-friendly process
· It is a process with a high level of automation. This reduces the amount of operational time a user needs to commit, as well as allowing operations to be completed in dangerous or harmful environments
· A huge amount of control is offered to users, allowing them to work with small materials and to a high degree of accuracy