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100W Rubber Molding Cleaning System Laser Power Pulse Energy Fiber Laser Cleaner System

Shenzhen Super Fast Laser Technology Co., Ltd.
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100W Rubber Molding Cleaning System Laser Power Pulse Energy Fiber Laser Cleaner System

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Brand Name : CK (Super Fast)

Model Number : CK-FC-100W

Certification : CE, ISO

Place of Origin : China

MOQ : 1 set

Price : 20000USD-26000USD

Payment Terms : L/C, T/T, Western Union

Supply Ability : 200sets/month

Delivery Time : 5-7 days

Packaging Details : Plywood case

Keywords : 100 w CNC laser rust removal

Function : Molding dirt cleaning machine

Usage : Iron rust removal

Laser length : 0cm-12cm adjustable

Laser type : Pulse energy fiber laser

Laser power : 100W

Fiber length : 5-10m

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100W Rubber Molding Cleaning System Laser Power Pulse Energy Fiber Laser Cleaner System

Technical parameters

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

How does the process work?


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

Why is this process better than more traditional methods?
A key question that we are frequently asked is “How does laser cleaning work differently to the other more traditional methods?”. There are some key problems that lasers have helped to address and solve.
Firstly, other methods were contact processes, meaning they were abrasive and damaging to the materials that they were working with. Take media blasting, for example, which essentially acts like a pressure washer, but with pressurised air, to blast a material until it is clean. It gets the job done, but it often affects the material that you don’t want to damage below!
Laser cleaning, on the other hand, is non-contact and non-abrasive, and so will only irradiate the material that you want to get rid of.
You also have a great deal of control over the beam, meaning you can achieve the desired depth that you want to. Further to this, you can irradiate the whole surface layer of a material, or a much thinner layer, say the topcoat of paint, but not the primer below. Or, should you wish, you can just clean a very small section. If using another process which simply blasts the material, it is hard to enjoy such a high level of control.
One of the key benefits in the way that laser cleaning works is that not much waste is left over due to the irradiation process; the substrate is simply vaporised rather than left as waste. The majority of the waste that is left over comes as dust particles and can be easily collected and removed by the user.
Previous processes left a great deal of waste that had to be removed. Not only is this costly in terms of time efficiency, but much of this waste was hazardous as well, and users were often required to wear protective gear. This danger to worker safety has been removed by the laser.
So, the key characteristics of how the laser cleaning process works, which differentiates it from more traditional methods, are that:
1 It is a much safer process
2 It is more efficient
3 It offers the user a higher level of accuracy and control and
4 There is a greater focus on a higher quality end result

Machine advantages

1) non-contact cleaning, does not damage the part substrate.
2) precise cleaning, can achieve a precise location, the exact size of the selective cleaning.
3) without any chemical cleaning fluid, no supplies, safety, and environmental protection.
4) simple operation, power can be hand-held or with the robot to achieve automated cleaning.
5) cleaning efficiency is very high, save time.
6) The laser cleaning system is stable, almost no maintenance.


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