Descrizione dei prodotti
A professional, standardized product called the Silane Functionalized Ethylene-Vinyl Acetate Copolymer Photovoltaic Film Cross-Linking Agent was created to improve the durability and performance of photovoltaic films used in the solar energy sector. This cross-linking agent confers special qualities and benefits by integrating silane functionalization into an ethylene-vinyl acetate copolymer matrix. Its capacity to enhance compatibility, moisture resistance, UV stability, adhesion properties, cross-linking efficiency, and optical qualities leads to improved module longevity, higher energy conversion efficiency, more flexible application options, and a wide range of industry applications. This cross-linking agent’s wide range of applications helps to produce high-quality photovoltaic modules, which raises the effectiveness and sustainability of solar energy systems.
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Caratteristica
Prestazioni | Valore | Metodo di prova |
Densità | 0.95g/㎤ | ASTM D792 |
Punto di fusione (DSC) | 69℃(156℉) | ASTM D3418 |
MFR(190℃2.16kg) | 5-15g/10min | ASTM D1238 |
Contenuto di silano | Alto | Metodo interno |
Nota: I dati sopra riportati sono valori di prova tipici e non devono essere interpretati come specifiche.
Dosaggio suggerito:Il dosaggio suggerito èIn base all'applicazione effettiva, tenendo conto dei costi, l'importo appropriato di aumento o diminuzione.
Imballaggio e trasporto: Sacchetto di plastica da 20 kg, in base alle merci non pericolose, evitare la luce del sole e la pioggia.
Il copolimero etilene-vinilacetato funzionalizzato con silano ha le caratteristiche di un elevato contenuto di silano, alta trasparenza e basso punto di cristallo.
- Silane Functionalization: The ethylene-vinyl acetate copolymer matrix’s cross-linking qualities are improved by the addition of silane functional groups. The silane groups enhance the mechanical and thermal properties of the film by promoting the development of robust and stable cross-links.
- Enhanced adhesive: The film’s adhesive qualities are enhanced by the Silane Functionalized Ethylene-Vinyl Acetate Copolymer Photovoltaic Film Cross-Linking Agent. Silane functional groups facilitate interfacial bonding, leading to superior adhesion between various film layers and the enclosed elements, including substrates and solar cells.
- Moisture Resistance: The photovoltaic film is more resistant to moisture because to this cross-linking agent. By creating a moisture barrier, the silane functionalization reduces the chance of moisture-induced film deterioration or delamination by stopping water penetration.
Vantaggio
Enhanced Module dependability: The solar film’s increased adhesive qualities lead to an increase in module dependability. The cross-linking agent ensures the solar module’s long-term structural integrity and performance stability by reducing the possibility of delamination or film layer separation.
Extended Lifespan: The cross-linking agent gives the film its moisture resistance and UV stability, which help to prolong its life. By shielding the solar cells from outside elements like moisture and UV rays, the increased resilience increases the lifespan of the cells.
Enhanced Energy Conversion Efficiency: The Silane Functionalized Ethylene-Vinyl Acetate Copolymer Photovoltaic Film Cross-Linking Agent improves the solar cells’ energy conversion efficiency by lowering light losses and enhancing the optical characteristics. Higher energy yields and better system performance are the results of this.
versatility in Application: The cross-linking agent can be used with a variety of ethylene-vinyl acetate copolymers, providing versatility in application. It is appropriate for large-scale production since it is simple to integrate into current film manufacturing processes without requiring major adjustments or extra equipment.
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Applicazione
Applicazione tipica
1.Film di incapsulamento fotovoltaico
2.Adesivo per vetro
The solar energy sector makes considerable use of the Silane Functionalized Ethylene-Vinyl Acetate Copolymer Photovoltaic Film Cross-Linking Agent. It is appropriate for the production of photovoltaic modules with thin-film and crystalline silicon solar cell technologies. When utilized in utility-scale, commercial, and residential installations, these additives improve the efficiency and robustness of solar films.