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Photovoltaic Packaging Film Additives

Model No.: R1020

lntroduction:

High transparency and low crystal point silane-modified olefin copolymer photovoltaic encapsulation film glass adhesive
Performance Value Test method
Density 0.87g/㎤ ASTM D792
melting point(DSC)  72℃(161.6℉) COACE Method²
MFR(190℃2.16kg)  10-20g/10min ASTM D1238
Silane content  High COACE Method¹
Products Description

 

Advanced and specialized goods, Silane Modified Olefin solar Encapsulation Film Additives are made to improve the durability and performance of solar encapsulation films. These additives have remarkable properties and benefits that make them perfect for a range of uses in the solar energy sector by integrating silane technology into olefin-based films. Coace® R1020 is an olefin copolymer that has been silane-treated. It is mostly used in sun encapsulation films. Low crystal point, high transparency, and high concentration of silane are some of its characteristics. They contribute to longer module lifespans, higher energy conversion efficiency, lower costs, and greater adhesion, moisture resistance, UV stability, optical qualities, and thermal stability. These additives are essential parts of high-quality photovoltaic module production, increasing the sustainability and efficiency of solar energy systems with their wide range of applications.

 

Advanced Equipment!

Equipped with advanced production lines and experimental testing center to ensure product quality.

Strong Technical Force!

More than 10 experienced technical R&D staff drive continuous innovation.

 

Characteristic

 

Performance Value Test method
Density 0.87g/㎤ ASTM D792
melting point(DSC)  72℃(161.6℉) COACE Method²
MFR(190℃2.16kg)  10-20g/10min ASTM D1238
Silane content  High COACE Method¹

Note: The above data are typical test values and should not be interpreted as specifications.

Suggested Dosage:According to the actual application, taking into account the cost, the appropriate amount of increase or decrease.

 

Silane-modified olefin copolymer, mainly used in photovoltaic encapsulation film, with high silane content, high transparency, low crystal point and other characteristics.

  • Enhanced adhesive: Olefin-based encapsulation films’ adhesive qualities are intended to be improved by the Silane Modified Olefin Photovoltaic Encapsulation Film Additives. Silane technology is incorporated to improve interlayer bonding, which leads to superior adhesion between various film layers and the enclosed components, like substrates and solar cells.
  • Moisture Resistance: By strengthening the encapsulating layers’ resistance to moisture, these additives shield the solar cells from moisture intrusion. By creating a moisture barrier, silane technology reduces the chance of moisture-induced film breakdown or delamination by stopping water from penetrating.
  • UV Stability: The encapsulation films’ UV stability is improved by the Silane Modified Olefin Photovoltaic Encapsulation Film Additives. By acting as a protective layer, silane technology prolongs the life of solar cells and lessens the deterioration brought on by UV light.
  • Better Optical Properties: By improving the encapsulation films’ optical characteristics, these additives enable greater light transmission and less light scattering. Through reduction of light loss and enhancement of light capture, the additives help the solar cells achieve higher energy conversion efficiency.
  • Thermal Stability: The encapsulation films’ thermal stability is enhanced by the Silane Modified Olefin Photovoltaic Encapsulation Film Additives. Even in difficult operating conditions, the solar cells’ integrity and functioning are guaranteed by their increased resilience to high temperatures.
Advantage

 

Enhanced Module Reliability: This is the outcome of the encapsulating coatings’ increased adhesive qualities. The additives reduce the possibility of film layer delamination or separation, guaranteeing the solar module’s long-term structural integrity and performance stability.

Extended Lifespan: The encapsulating films’ longer lifespan is facilitated by these additives’ moisture resistance and UV stability. The increased resilience extends the operating life of the solar cells by shielding them from external elements like moisture and UV rays.

Enhanced Energy Conversion Efficiency: The Silane Modified Olefin Photovoltaic Encapsulation Film Additives improve the optical characteristics and lower light loss, which raises the solar cells’ energy conversion efficiency. Higher energy yields and better system performance are the results of this.

Cost Savings: Manufacturers and operators of solar energy systems can save money thanks to the photovoltaic module’s increased longevity and increased dependability. A higher return on investment is a result of improved energy conversion efficiency and decreased maintenance and replacement expenses.

 

Our advantage

Global Supply Chain!

Sound Storage And Logistics Supply Chain System
Technical Support
After-sales protection

Focus • Achievement • Excellence!

Products Customized
Focus on R&D
Global Services

Coace Certification!

ISO9001:2015 Certification
ISO14001:2015 Certification
EU REACH registration

Korea K-REACH pre-registration

Enterprise advantage!

Layout at home and abroad, wonderful for mixing
Domestic marketing layout
Overseas marketing layout

 

Application

 

Typical application

1. Photovoltaic encapsulation film
2. Glass adhesive

Polyethylene (PE) and polypropylene (PP) films are two examples of olefin-based encapsulation films that work well with the Silane Modified Olefin Photovoltaic Encapsulation Film Additives. These additives are excellent for large-scale production since they are simple to include into the film manufacturing process without requiring significant modifications or new equipment.

In the solar energy sector, Silane Modified Olefin Photovoltaic Encapsulation Film Additives are widely used, particularly in the production of photovoltaic modules. They work well with both thin-film and crystalline silicon solar cell technologies. The encapsulation films used in solar panels for residential, commercial, and utility-scale applications perform better and last longer thanks to these additives.

 

 

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