Degradation of photovoltaic backsheet materials under multi-factor accelerated UV light exposures

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Spie-Int Soc Optical Engineering

Erişim Hakkı

info:eu-repo/semantics/closedAccess

Özet

Long term outdoor durability of photovoltaic (PV) module backsheets is critical to a module's power output over its lifetime. The use of uoropolymer-based backsheets or the addition of stabilizers to polyethylene-terephthalate (PET) and polyamide (PA) type backsheets can help extend their lifetime. This study presents the performance of 21 backsheets made of 8 different material combinations under ASTM G154 Cycle 4 accelerated light exposures. The backsheets were subjected to 4000 hours of high irradiance UVA light at a peak intensity of 1.55 W/m(2) at 340 nm at 70 degrees C with and without a condensing humidity cycle at 50 degrees C. Backsheets were evaluated, with repeated measurements, using various evaluation techniques to identify and assess potential signs of degradation. These evaluations included the yellowness index (YI), CIE color space coordinates, and gloss at 20, 60, and 85 degrees. The temporal evolution of the relative color change Delta E was statistically analyzed to develop a stress-response model which used the UVA light dose to predict color change. It was found that the PVF/PET/E backsheet performed the best while PET/PET/E and THV/PET/EVA backsheets performed the worst. Additionally, substantial variation in color change response, attributable to key manufacturing differences, was observed within a given material type.

Açıklama

SPIE Conference on Reliability of Photovoltaic Cells, Modules, Components, and Systems X as part of the Optics and Photonics for Sustainable Energy Symposium -- AUG 06-07, 2017 -- San Diego, CA

Anahtar Kelimeler

Backsheet, photovoltaic, PV, long-term durability, UV exposure

Kaynak

Reliability of Photovoltaic Cells, Modules, Components, and Systems X

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10370

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Onay

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