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Portable Laser Metal Cleaning Machine

Shenzhen Super Fast Laser Technology Co., Ltd.
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Address: 3rd Floor, Building 3, No. 128 Shangnan East Road, Huangpu Community, Xinqiao Street, Bao'an District, Shenzhen, Guangdong, China

Contact name:Ivan

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Shenzhen Super Fast Laser Technology Co., Ltd.

Portable Laser Metal Cleaning Machine

Country/Region china
City & Province shenzhen guangdong
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Product Details

 


Portable Laser Metal Cleaning Machine

 

The laser cleaning machine is easy to clean rust, paint, and oil. Easy to operate, turn on the power, run the device, then you can begin no chemical reagents, no contact, no media, dust-free, anhydrous cleaning, autofocus, fit surface cleaning, cleaning the surface cleanliness advantages, to clear the surface resin, Oil, dirt, dirt, rust, coating, coating, paint.

 

Specification List

ItemsParameters
Cleaning Power50W100W200W500W
Current ConsumptionPout = Ponm / 5APout = Ponm / 5APout = Ponm / 5APout = Ponm / 25A
Max. Power400W600W900W6.5KW
Power VoltageAC 110/220VAC 110/220VAC 110/220VAC 110/220V
Cooling MethodAir CoolingAir CoolingAir CoolingWater Cooling
Laser ClassLevel 4Level 4Level 4Level 4
Pulse Energy1.5mJ1.5mJ8mJ30mJ
Fiber Optical Cable5m(Customizable)5m(Customizable)5m(Customizable)7m(Customizable)
Laser Wavelength1064nm1064nm1064nm1064nm
Scan Width1-120mm1-120mm1-120mm1-160mm
Preheat Time10-30s10-30s10-30s10-30s
Working ConditionA flat place without vibration and impactA flat place without vibration and impactA flat place without vibration and impactA flat place without vibration and impact
Working Temperature0-60 ℃0-60 ℃0-60 ℃0-60 ℃
Storage Temperature-10~+60℃-10~+60℃-10~+60℃-10~+60℃
Machine sizeL462 x W 260 x H562 (855mm with pull rod)L647 x W 440 x H859mmL647 x W 440 x H859mmL1100 x W 840 x H1150mm
Net Weight32Kgs70Kgs70Kgs250Kgs

 

How does fiber laser cleaning work?

There are two elements to examine with fiber laser cleaning; how laser cleaning works, and how a fiber laser itself works.

Laser cleaning operates by using a laser beam to pulse the surface layer of a material, ablating and vapourising it to the desired depth to leave a clean, pure surface beneath. The important fundamentals to note here are that this is a non-contact process, so the laser beam won’t have any adverse abrasive side effects on the material like more traditional laser processes that have come before.

A fiber laser uses an optical fiber as its laser medium for completion. Generally, you will find that this medium is a normal optical fiber, manufactured from silica glass, which has been dipped in the rare-earth element of Erbium. This is because Erbium has good energy levels while being a cost-effective solution. It is, therefore, a cheap, yet high quality, method.

Also found in this type of laser will be Bragg Gratings, which are reflective sections of glass. Think of it as a type of mirror system, these are used in order to make a laser cavity. You’ll also find a pump source which helps to excite the electrons, needed in order to create the laser beam. This laser beam will then, in turn, be used for the laser cleaning process.

The laser cleaning process helps to leave a high-quality finish

 

 
Main Features

Features of Super Fast Laser cleaning machine
1) No damage to the base of the material due to the no-touch surface cleaning performance
2) Precise cleaning technic for the specific area in a selected area
3) No need for chemistry or other added supplies
4) Easy to be operated, can be hand-held or auto-cleaned by installing a robotic arm
5) Small cleaning time consumption and comes with a high-quality finishing result
6) The stable and impacted integrated design which results in no extra maintenance

 

Specialized Laser Cleaning Machine to Clean the Steel Moulds

Our Lasers can be used for a range of cleaning applications. These applications typically use high repetition rates and short pulses with high peak powers. The intention is to remove surface debris and contaminated layers without damaging the substrate materials.

Our Lasers can be used for a range of cleaning applications. These applications typically use high repetition rates and short pulses with high peak powers. The intention is to remove surface debris and contaminated layers without damaging the substrate materials.

Application examples include the cleaning of print rolls and mold tools. Our Fiber Laser series is ideal for this application, with its broader energy distribution it is well suited for large-area processing due to the higher efficiency of wider, even, high-frequency fill pattern overlapping. Lasers with Gaussian energy distributions can cause substrate damage due to the high peak powers in the center point of the beam and need higher overlaps reducing processing efficiencies. Our solution offers the most consistent application of energy to achieve a smooth and even surface.

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