Predicting the reliability of polyisobutylene seal for photovoltaic application

H. Liu, Jie Feng, E. Nicoli, L. López, K. Kauffmann, Kwanho Yang, N. Ramesh
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引用次数: 8

Abstract

Polyisobutylene (PIB) or butyl rubber has been used widely in applications such as construction materials, adhesives and sealants, agricultural chemicals, medical devices, personal care products, and fuel additives. Due to the unique low gas permeability, flexibility, and excellent weathering resistance, PIB or PIB based materials are frequently employed in photovoltaic (PV) industry as sealant to protect the electrical assembly in the package as well as moisture sensitive PV cells from aggressive environments. Long term behavior of the PIB sealant within the operating temperature range of the PV devices thus becomes a critical factor to the reliability of the device. In this paper, an experimental study of the temperature dependent fatigue behavior of a PIB based joint is presented. A finite element model capturing the joint region geometry is developed and an approach to estimate lifetime is proposed.
光伏应用聚异丁烯密封件可靠性预测
聚异丁烯(PIB)或丁基橡胶已广泛应用于建筑材料、粘合剂和密封剂、农业化学品、医疗设备、个人护理产品和燃料添加剂等领域。由于PIB或PIB基材料独特的低透气性、柔韧性和优异的耐风化性,PIB或PIB基材料经常用于光伏(PV)行业作为密封胶,以保护封装中的电气组件以及对潮湿敏感的光伏电池免受侵蚀环境的影响。因此,在PV器件的工作温度范围内,PIB密封胶的长期性能成为器件可靠性的关键因素。本文对基于PIB的接头的温度疲劳特性进行了实验研究。建立了捕获关节区域几何形状的有限元模型,并提出了一种估算寿命的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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