Preliminary Evaluation of Aluminum Foil Compatibility with EVA and POE Encapsulants

Fang Li, S. Tatapudi, G. Tamizhmani
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Abstract

Emerging photovoltaic (PV) technologies with inexpensive cell interconnect material will help to further reduce the manufacturing costs of solar cells. Aluminum foil has been explored as an inexpensive alternative material replacing silver and copper interconnect materials in the IBC (interdigitated back contact) cells or as moisture barrier in the backsheet. It is critical to assess the compatibility of the aluminum foil with dominant encapsulant types so the reliability of PV modules with aluminum interconnect is not compromised over decades of exposure in the field. In this work, through extended accelerated stress tests, we have evaluated the compatibility of aluminum foil with two encapsulant types, EVA (ethylene vinyl acetate) and POE (polyolefin elastomer). This aluminum/encapsulant compatibility evaluation was performed using both glass/glass and glass/backsheet constructions. The extended accelerated stress tests used in this work were UV (300 kWh/m2) and damp heat (1500 hours). Based on the after-stress optical and performance parameters of the mini-modules, it is demonstrated that the POE encapsulant is more compatible with aluminum foil compared to the EVA encapsulant irrespective of the substrate type, glass or backsheet.
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铝箔与EVA和POE封装剂相容性的初步评价
新兴的光伏(PV)技术与廉价的电池互连材料将有助于进一步降低太阳能电池的制造成本。铝箔作为一种廉价的替代材料,在IBC(指间背触点)电池中取代银和铜的互连材料或作为背片的防潮屏障。评估铝箔与主流封装剂类型的兼容性是至关重要的,因此带有铝互连的光伏模块的可靠性不会在数十年的现场暴露中受到影响。在这项工作中,通过扩展加速应力测试,我们评估了铝箔与两种封装剂EVA(乙烯乙酸乙烯酯)和POE(聚烯烃弹性体)的相容性。铝/密封剂相容性评估是使用玻璃/玻璃和玻璃/背板结构进行的。在这项工作中使用的扩展加速应力测试是紫外线(300千瓦时/平方米)和湿热(1500小时)。基于微型模块的应力后光学参数和性能参数,证明POE封装剂与铝箔的相容性优于EVA封装剂,而与衬底类型、玻璃或背板无关。
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