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Spread of Flame Testing of Glass - Backsheet c-Si Solar Modules: Degradation Progression and Effect of Module Laminate Materials

机译:玻璃 - 背板C-Si太阳能模块的火焰测试的传播:模块层压材料的降解进展和效果

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Recent changes to the flammability test set in UL 1703 have raised the opportunity for using glass - backsheet c-Si modules on rooftop installations. For this module type, passing the Spread of Flame test can be problematic. This paper describes work undertaken to identify the progression of degradation in the module during the course of the test, and to understand which variables in module design can affect the process. Small and full size modules were prepared with different laminate material combinations, and these were flame tested while recording video, thermocouple and thermal imaging data. From these data sets, we have developed a physical model of events leading to failure, with critical steps consisting of A) stress generation in the glass due to thermal expansion B) glass cracking, and C) escape of volatiles through glass cracks followed by ignition above the glass and into the laminate. Glass cracking has been found to be the single most important factor in spread of flame testing. Encapsulant degree of cure is also important in determining flame performance.
机译:UL 1703中的易燃性测试最近的变化提高了在屋顶安装上使用玻璃背板C-Si模块的机会。对于此模块类型,传递火焰测试的传播可能是有问题的。本文介绍了在测试过程中确定模块中劣化进展的工作,并了解模块设计中哪些变量会影响该过程。使用不同的层压材料组合制备小型和全尺寸模块,并且在记录视频,热电偶和热成像数据时,这些是火焰测试的。从这些数据集中,我们开发了导致失败的事件的物理模型,其具有由热膨胀B)玻璃裂纹引起的玻璃中的应力产生的关键步骤,以及C)通过玻璃裂缝逸出,然后点火脱落在玻璃上方和层压板上。已发现玻璃裂缝是火焰测试传播中最重要的因素。密封剂的固化程度在确定火焰性能方面也很重要。

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