Title :
Evaluation of the durability of flexible barrier materials
Author :
Michael D. Kempe;Dylan L. Nobles;Mark D. Weigel;Alan K. Nachtigal;Mark A. Roehrig;Tracie J. Berniard;Joseph C. Spagnola;Charlene M. Schubert
Author_Institution :
National Renewable Energy Laboratory, Golden, Colorado, 80401, USA
fDate :
6/1/2015 12:00:00 AM
Abstract :
To enable the production of lightweight photovoltaic modules, it is desired to use thin film absorbers on metal substrates in a flexible package. To do this with a polymer based frontsheet, it is estimated that a water vapor transmission rate (WVTR) less than 10-4 g/m2/day must be achieved and maintained through the expected life of the module. Barrier-frontsheet films have been developed at 3M with very low permeation rates and evaluated for their long term durability with respect to WVTR and optical transmittance. After exposure to 2500 h of 10 UV suns at 105°C, one design was found which experienced negligible loss in optical transmission while maintaining a WVTR well below the required 10-4 g/m2/day. Further accelerated tests were conducted at different stress levels. For some less durable designs we were able to obtain degradation acceleration factors suggesting the highest exposure was equal to between 4.4 and 10 y on a roof.
Keywords :
"Optical films","Indexes","Reliability","Thickness measurement","Weight measurement","Moisture measurement","Heat sinks"
Conference_Titel :
Photovoltaic Specialist Conference (PVSC), 2015 IEEE 42nd
DOI :
10.1109/PVSC.2015.7355605