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Silane functional photovoltaic film additives

Numéro de modèle : R1120

Introduction :

Silane functional photovoltaic film additives are photovoltaic film additives with unique characteristics and advantages.
Caractéristiques Valeur Unité Méthode d'essai
Densité 0.87 g/cm3 ASTM D792
Température de fusion 46 DSC
Débit de fusion(190℃2.16kg) 8- 15 g/10min ASTM D1238
Groupe fonctionnel Contenu Haut wt% Méthode COACE
Apparence Granulés / /
Couleur Translucide ou blanc / /
Description des produits

 

A novel class of solar film additives with special qualities and benefits are silane functional photovoltaic film additives. It may increase the mechanical strength, thermal stability, and durability of solar films and has good cross-linking and barrier qualities. It is more environmentally friendly than previous additives and may increase the photoelectric conversion efficiency of solar modules as well as the adhesive film’s lifespan.

Un équipement de pointe !

Elle est équipée de lignes de production avancées et d'un centre d'essais expérimentaux pour garantir la qualité des produits.

Une force technique puissante !

Plus de 10 techniciens expérimentés en recherche et développement sont à l'origine d'une innovation permanente.

 

Caractéristique

 

Caractéristiques Valeur Unité Méthode d'essai
Densité 0.87 g/cm3 ASTM D792
Température de fusion 46 DSC
Débit de fusion(190℃2.16kg) 8- 15 g/10min ASTM D1238
Groupe fonctionnel Contenu Haut wt% Méthode COACE
Apparence Granulés / /
Couleur Translucide ou blanc / /

The following are some of the exceptional qualities of silane functional photovoltaic film additives:

  • Cross-linking performance: This additive can cross-link with the polymer matrix in the solar film and has outstanding cross-linking performance. Additives can greatly enhance the film’s mechanical strength and thermal stability by cross-linking, extending its longevity and anti-aging properties.
  • Barrier performance: Silane functional photovoltaic film additives are able to successfully block the entry of moisture, oxygen, and other contaminants into the interior of the film due to their superior barrier qualities. This barrier effect increases the stability and longevity of the coating while assisting in the reduction of issues like corrosion, electrical failure, and performance degradation.
  • Environmental friendliness: This additive doesn’t contain any hazardous materials and has a decent level of environmental friendliness. Silane functional photovoltaic film additives, on the other hand, are safer and more dependable to use than typical additives because they don’t include chemicals that might be bad for the environment or humans.
Avantage

 

a) Increase light absorption efficiency: By enhancing the film’s surface qualities and lowering surface reflection and scattering, this addition can increase the photovoltaic module’s solar light absorption efficiency. By doing this, solar modules’ power generation capacity and photoelectric conversion efficiency may both rise.

b) Increase mechanical strength: Silane functional photovoltaic film additives have a cross-linking action that can increase the film’s longevity and mechanical strength. External pressures may impact photovoltaic modules during installation, shipping, and usage. This addition can strengthen the adhesive film’s resilience to tensile strain, impacts, and thermal aging while lowering the risk of damage and rupture.
c) Increase lifespan: This additive’s barrier qualities may successfully stop moisture, oxygen, and other dangerous chemicals from penetrating the adhesive film. They can also lessen corrosion and adhesive film performance deterioration. This can increase the solar module’s stability and dependability while also extending the life of the photovoltaic film.

 

Notre avantage

Chaîne d'approvisionnement mondiale !

Sound Storage And Logistics Supply Chain System (système de chaîne d'approvisionnement)
Support technique
Protection après-vente

Concentration - Réalisation - Excellence !

Produits personnalisés
Priorité à la R&D
Services globaux

Certification Coace !

Certification ISO9001:2015
Certification ISO14001:2015
Enregistrement REACH dans l'UE

Corée K-REACH pré-enregistrement

L'avantage de l'entreprise !

Disposition à l'intérieur et à l'extérieur du pays, idéal pour les mélanges
Schéma de commercialisation intérieure
Mise en place d'un marketing outre-mer

 

Application

 

Benefits of application:
In solar film applications, silane functional photovoltaic film additives offer the following benefits:
a) Production of solar modules: To enhance the performance of solar film, this additive can be applied during the preparation process. Enhancing the mechanical strength of the film, raising the power production capacity, extending the lifespan of the solar module, and increasing the photoelectric conversion efficiency are all possible with it.

b) Maintaining photovoltaic films: Silane functional film additives’ barrier qualities can successfully stop corrosion and performance deterioration while also extending the films’ lifespan. Additionally, it can lessen contamination and dust buildup on the film surface, which lowers the need for cleaning and maintenance as well as its cost.
c) solar film repair: Silane functional additives for solar films can be employed as a repair agent when the film becomes damaged or aging. It can repair the film’s damage and cracks, maintain its performance and integrity, and increase its shelf life.

Solution par secteur d'activité

Silane functional additives for photovoltaic films are widely used in many different photovoltaic industries, such as: a) photovoltaic power plants: use this additive in photovoltaic films to increase the stability and power generation efficiency of photovoltaic power plants while lowering maintenance costs.

b) Integration of solar power generation and construction: Include this additive in building materials to accomplish integration, offer renewable energy, and lower energy usage.

c) Photovoltaic mobile equipment: This additive is employed to produce photovoltaic film, which is then utilized to produce portable clean energy sources like solar chargers and mobile charging stations.

 

 

 

 

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