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Highly accelerated stress method for measuring water vapor transmission rate of PV backsheet

机译:高加速应力法测量光伏背板透水率

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In this study, we investigate the water vapor transmission rate (WVTR) with highly accelerated stress test (HAST) for the backsheets of the photovoltaic module. According to the Fick's equation, the WVTR can be fitted by the water concentration of EVA with time dependence. In order to receive the trend of the relative humidity in the photovoltaic module, the flexible printed circuit with high accuracy humidity sensors were embedded in two ethylene-vinyl-acetate (EVA) stacks and laminated with glass and backsheet. Compare to result of the commercial method, this way can reach high accuracy in 3 cycles. However, we get the WVTR of backsheets using dry process in the open air space, but the inhomogeneous temperature and humidity cause the lower WVTR.
机译:在这项研究中,我们通过高度加速应力测试(HAST)研究了光伏模块背板的水蒸气透过率(WVTR)。根据菲克方程,WVTR可以与时间相关的EVA的水浓度拟合。为了接收光伏模块中相对湿度的趋势,将带有高精度湿度传感器的柔性印刷电路嵌入两个乙烯-乙酸乙烯酯(EVA)堆栈中,并与玻璃和背板层压在一起。与商业方法的结果相比,这种方式可以在3个周期内达到高精度。但是,我们在露天空间中使用干法获得背板的WVTR,但温度和湿度不均匀会导致WVTR降低。

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