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EVA solar encapsulation film production line
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Dali
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Post RequirementsPost Requirements
Dali
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China
Main Products:
Geomembrane Sheet Production Line、Drainage Sheet Production Line、Casting Film Production Line、Laminating Film Production Line
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Product information

This production line uses EVA granules as the main raw material, adopts cast film technology, heats the raw material, extrude, calender, cool and form, and then rewinds. The equipment can be designed and manufactured according to customer requirements. Solar encapsulation film is a new type of thermosetting hot melt adhesive film. It is non-sticky at room temperature and easy to use and operate. After hot lamination, chemical reactions such as cross-linking curing and bonding enhancement are produced, so that silicon wafers, glass, backplanes and other multi-layer materials are firmly bonded into one, becoming a solar panel product. Excellent resistance to moisture and heat, and UV resistance fully guarantee the requirements for long-term outdoor use of solar cell modules.

EVA solar cell film is used for solar cell encapsulation. After lamination and curing, it is bonded and sealed, which has the effects of high light transmittance, water vapor penetration prevention, high and low temperature resistance, and UV resistance on the battery module, ensuring the stable and efficient use of the battery module. It is a durable and reliable encapsulation material.

 

Model SpecificationsDL-1100DL-1300DL-1800DL-2100DL-2400DL-2700DL-3000DL-3300
Product TypeEVA Solar Encapsulation Film
Product Thickness Range0.01-2.0mm
Mold Width11001300180021002400270030003300
Maximum Finished Width8001000150018002100240027003000
Cooling FormCirculating Water Cooling
Rewinding MethodAutomatically Recycle to Screw for Reuse


 


 

Transparent and white EVA film: Currently, single-glass modules usually use conventional transparent EVA film and white film for front and back packaging. White EVA film has a high reflectivity. As the bottom film, it can effectively improve the reflection of incident light between battery cells and transmitted light of the module, thereby improving the module efficiency by 1W-3W.
 

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