--_003_AANLkTiy693MyFRXyD0M4fFYSXwRz4H4DZXf7q2cmailgmailcom_ Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Various schemes for DIY and low cost or some new commercial panels use interesting sealing systems. This 2005 NREL paper investigates water intrusion through nominally waterproof sealants and membranes with some interesting and largely discouraging results. http://www.nrel.gov/docs/fy05osti/37390.pdf The results suggested by this report are bad enough as to be suspect, given current practice. However, the work looks well enough done, and NREL are usually competent. The similar water barrier performance of PET and industry standard Tedlar backsheet is notable. ______________ Do you know why you think your current photo voltaic panels will be "waterproof long term". Despite its reasonably technical approach this short paper provides some extremely practical and possibly disturbing information. The industry PV panel backsheet material of choice for many years has been Tedlar. The standard panel sealant and bonding agent is EVA. As a std Si panel is a glass/EVA/Si/EVA/Tedlar sandwich, the EVA provides an effective edge seal around the periphery of the panel (ASCII diagram at end) - the water sealing is only as good as the ability of the EVA to resist lateral "edge-in" water intrusion, no matter how impervious the glass and Tedlar may be (or not). Some recent low cost sealing systems use silicone sealants such as Dow Corning's functionally superb and widely acclaimed Sylgard 184. Acclaim and functionality notwithstanding, 184 is about 10 x more water permeable at a given temperature than EVA. EVA is 10 to 100 x more permeable than Tedlar. "Softdrink bottle" PET plastic is comparable with Tedlar. So, use of EVA as the effective edge seal of a panel sandwich can dominate water penetration via the Tedlar backsheet, and use of Sylgard 184 seems highly suspect, the large number of reported success stories notwithstanding. Specialist films such as LCP and Aclar (polychlorotrifluorethylene) may be 10 x better again but are usually both impractical and too costly for field use. LCP is potentially capable of use as an edge seal, but still provides only a few years of sealing against significant water vapour ingress if eg a 25mm / 1inch seal width is used. Note that EVA film in attached jpg starts out as semi translucent but after heat & pressure lamination is extremely transparent. The black edge material in the jpg may be a silicone rubber sealant - this usually has minimal effect on absolute sealing if this report is to be believed. Dupont has other ideas http://www2.dupont.com/Plastics/en_US/Knowledge_Center/engg_desig= n_mag/ed082/ed08204.html Russell McMahon __________________________ Si PV sandwich. EVA melts and acts as bonding agent and edge seal to Si. Rear water path is Tedlar - EVA - Si But side intrusion path is EVA - Si GGGGGGGGGGGGGGG Glass EEEEEEEEEEEEEEEEEEEE EVA ee ssssssssssssss ee Si <- E melts into envelope outside Si area. 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