Abstract
Simultaneous changes in photovoltaic (PV) module architecture-such as increased area, replacing the polymeric backsheet with a glass backsheet, and reducing glass thickness from 3.2 to 2.0 mm-have resulted in a novel failure called spontaneous glass breakage. Spontaneous glass breakage results in front and/or rear glass failure without any obvious cause. The resulting low-energy fracture patterns have raised concerns about the thermal strengthening in 2.0-mm glass. We present validation of a nonde structive method for measuring the glass surface stress in PV modules. We use a scattered light polariscope to examine the glass properties of 11 modules from 6 solar fields, with and without spontaneous glass breakage. Based on a Mann-Whitney test p-value of 1.4 x 10-6, we conclude that there is a correlation between lower surface stress and susceptibility to spontaneous breakage. A Kendall's Tau test p-value of 2.0 x 10-4 indicates a correlation between increased module area and lower surface stress. We find that 2.0-mm glass can be, and often is, fully tempered (surface stress >=69 MPa), but inspecting the fracture pattern is not a reliable way to assess the amount of thermal strengthening. A combination of factors, not just surface stress, influences glass breakage.
| Original language | American English |
|---|---|
| Pages (from-to) | 525-533 |
| Number of pages | 9 |
| Journal | IEEE Journal of Photovoltaics |
| Volume | 16 |
| Issue number | 4 |
| DOIs | |
| State | Published - 2026 |
NLR Publication Number
- NLR/JA-5K00-96360
Keywords
- encapsulation and manufacturing new characterization methods for PVPV glass
- PV module materials
- PV reliability testing and standards
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