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Sunlight irradiation and wind effect on the interlaminar stresses of the organic solar cell

机译:阳光照射和有机太阳能电池间应力的风力辐照

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The organic solar cell has attracted much interest due to its high power conversion efficiency and low cost. This paper studies the interlaminar stresses between the working layer and the substrate of the organic solar cell. The effects of solar irradiation and wind speed have been considered as well. The multilayered film model and the thin film-substrate model are employed separately in reaction to the different magnitude of the film and substrate thickness. Both models straightforwardly show the dangerous stress areas at the two ends of the working layer. Numerical examples reveal that the interlaminar stress increases as the solar irradiation increases while decreases with the wind speed increasing. A thicker working layer of the organic solar cell results in larger interlaminar stresses. The critical value of sunlight irradiation for varying external environment is predicted. The critical value of sunlight irradiation at the wind speed of V-f = 15 m/s increases by nearly 20%, compared with that of the wind speed V-f = 5 m/s. In addition, the effect of the equivalent thermal expansion coefficient of the working layer on the interlaminar stress is also explored.
机译:由于其高功率转换效率和低成本,有机太阳能电池引起了很多兴趣。本文研究了有机太阳能电池的工作层和基板之间的层间应力。也考虑了太阳照射和风速的影响。多层薄膜模型和薄膜基板模型与膜和基板厚度的不同幅度分开使用。两种型号均直接显示工作层两端的危险应力区域。数值例子表明,随着太阳照射的增加而随着风速的增加而增加,Interlaminar应力增加。有机太阳能电池的较厚工作层导致较大的层间胁迫。预测了不同外部环境的阳光照射的临界值。与风速V-F = 5M / s的风速V-F = 5m / s的阳光照射的阳光照射的临界值增加近20%。此外,还探讨了工作层对层间应力的等效热膨胀系数的影响。

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