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LRPM-G13A Plasma Cleaner Equipment

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SheetPVBplasmasurfacetreatmentmachineforEnhancesurfaceadhesion

詳情介紹

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Mainly used in material surface cleaning, activation to improve the material surface Yang strength, hydrophilicity, wide application, high efficiency.

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment

Product nameSingle-jet plasma processor
Product modelPM-G13A
Input voltageAC220V( ±10v)
Output power

1000W

Equipment size400(L)x280(W)x380(H)
Operating frequency18-25kHz
Air source pressure2-2.5 kg
weight35kg
Use gasAir.N2(Optional)
Connection length2.5m


Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Product characteristics

Single head (nozzle)
Different sizes of nozzles can be selected
Applicable to different products
Processing width
35-40mm
55-60mm
75-80mm

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Product characteristics
Product surface modification

The modification of Fangrui plasma equipment can effectively reduce the influence factors of material pretreatment by 95%

Product surface activation
The surface activation rate of the materials pretreated with Fangrui plasma equipment is 98%

Product surface cleaning
The modification of Fangrui plasma equipment can effectively reduce the influence factors of material pretreatment by 95%

Product surface bonding
The adhesion of the material surface was improved by 92% by using Fangrui plasma equipment

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Suitable for a variety of industries

Biomedical industry
3 C Digital industry
Optical photoelectric industry
Printing and packaging industry
Automobile manufacturing industry
Household appliance industry
Plastic and rubber industry
Semiconductor industry
Textile printing and dyeing industry
Semiconductor packaging industry
Mobile phone manufacturing industry
New energy industry
FBC/PCB field

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Plasma application field

Packaging industry
Professional improve coated paper glazed paper, polished, gold and silver card, aluminum plated paper, UV, OPP, PP, PE and other color boxes, color box surface paste box fastness;

Electronic industry
Electronic components processing plasma pretreatment, PCB cleaning, removal of static electricity, LED support, IC surface cleaning and bonding.

Automobile industry
Plasma surface pretreatment process for car lamp bonding, brake pad, wiper, hood, instrument, bumper, etc.

Printing and coding industry
Plasma pretreatment before pad printing, screen printing and jet coding on the surface of plastic, metal, glass and other composite materials to improve the adhesion of material surface to ink

Precision glass
All kinds of precision glass, spraying, printing, bonding before treatment. LCD panel 1C before binding terminal surface cleaning, improve the glass surface cleanliness and hydrophilicity:

Plastic industry
Plastic, rubber, gold Bali before bonding pretreatment, improve the surface adhesion; · Pretreat the plastic shell of mobile phones, computers, toys and so on before painting to improve the surface adhesion

Sheet PVB plasma surface treatment machine for Enhance surface adhesion,Plasma cleaner equipment
Introduction to low temperature plasma surface treatment technology

The energy of particles in low-temperature plasma is generally about several to ten electron volts, which is larger than the bond energy of polymer materials (several to ten volts), and can completely break the chemical bonds of organic macromolecules and form new bonds, but it is far lower than high-energy radioactive rays, which only involves the surface of the material and does not affect the performance of the matrix. In low-temperature plasma in non-thermodynamic equilibrium state, electrons have high energy, which can break the chemical bonds of molecules on the surface of materials and improve the chemical reactivity of particles (greater than that of hot plasma), while the temperature of neutral particles is close to room temperature. These advantages provide suitable conditions for surface modification of heat-sensitive polymer polymers. Through low temperature plasma surface treatment, a variety of physical and chemical changes occur on the surface of the material, or produce etching and roughness, or form a dense cross-linked layer, or introduce oxygen polar groups, so that the hydrophilicity, cohesiveness, chromability, biocompatibility and electrical properties are improved. When the surface of the material is treated under the appropriate technological conditions, the surface morphology of the material is changed significantly. A variety of oxygen-containing groups are introduced to make the surface change from non-polar and difficult to stick to a certain polarity, easy to stick and hydrophilic, which is conducive to bonding, thin coating and printing. However, because corona can only be carried out between two adjacent parallel electrodes, and the distance should not be too large, the corona processing method is not suitable for dealing with the surface polarization problem of three-dimensional objects. If the flame process is used, the weakness is that all polymers are flammable and have a low melting point. When organic materials are exposed to high temperature flame, they will deform, discolor, rough surface, burn and emit toxic gases due to high temperature treatment. And the processing technology is difficult to master. The low temperature plasma flow process is the best method to modify the surface of 3D object. The principle is shown in the figure. By applying AC high frequency and high voltage at both ends of the electrode, the air between the two electrodes generates gas glow discharge and forms an isoionization zone. The equiionization reaches the surface of the treated object under the blowing of the air flow to achieve the purpose of modifying the 3D surface.
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