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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >In-line determination of the degree of crosslinking of ethylene vinyl acetate in PV modules by Raman spectroscopy
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In-line determination of the degree of crosslinking of ethylene vinyl acetate in PV modules by Raman spectroscopy

机译:拉曼光谱在线测定光伏组件中乙烯乙酸乙烯酯的交联度

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In photovoltaics, the quality of the polymeric solar cell embedding material is of key importance for the long-term durability and performance of the PV modules. For the most common encapsulant, elastomeric ethylene vinyl acetate (EVA), the degree of crosslinking is a key issue in this respect. Raman spectroscopy was researched as a fully contact-free, truly non-destructive optical method to measure the degree of EVA crosslinking of bare EVA film samples as well as in-situ inside assembled PV modules. The method relies on evaluating subtle but characteristic spectral differences in the CH-stretching vibration region (3.000-2.800 cm(-1)) that correlate directly, unambiguously and reliably to the crosslinking state of the EVA encapsulant. With measurement times below one second per analysis point, the method is suitable for real-time, in-line quality control. Using a self-referencing data evaluation approach, the method could be designed to be widely immune to real-world effects, including different sample reflectivity and instrument drifts. Involving the reaction kinetics of the curing reaction, the Raman data can be converted into crosslinking readings that equal the traditional, Soxhlet-derived gel content values. The method has been successfully validated for bare foils, glass-backsheet and glass-glass modules with three different EVA types and deployed in-line in a commercial PV module manufacturing line. Using Raman spectroscopy, it is thus possible to determine the degree of crosslinking of the EVA encapsulant inside assembled modules in-line and with high accuracy, even on moving modules. (C) 2016 Elsevier B.V. All rights reserved.
机译:在光伏中,聚合物太阳能电池嵌入材料的质量对于PV模块的长期耐用性和性能至关重要。对于最常见的密封剂,弹性体乙烯醋酸乙烯酯(EVA),交联度是这方面的关键问题。拉曼光谱法被研究为一种完全无接触,真正无损的光学方法,用于测量裸EVA薄膜样品以及组装好的光伏组件内部的EVA交联度。该方法依赖于评估CH拉伸振动区域(3.000-2.800 cm(-1))中细微但特征性的光谱差异,该差异直接,明确且可靠地与EVA密封剂的交联状态相关。每个分析点的测量时间低于一秒,该方法适用于实时在线质量控制。使用一种自参考数据评估方法,该方法可以设计为不受实际影响,包括不同的样品反射率和仪器漂移。涉及固化反应的反应动力学,拉曼数据可以转换为等于传统的索氏提取的凝胶含量值的交联读数。该方法已成功验证了具有三种不同EVA类型的裸箔,玻璃背板和玻璃玻璃组件,并已在商业PV组件生产线中在线部署。因此,使用拉曼光谱法,即使在移动的模块上,也可以在线且高精度地确定组装模块内部的EVA密封剂的交联度。 (C)2016 Elsevier B.V.保留所有权利。

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