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Manufacturing Induced Bending Stresses: Glass-Glass vs. Glass-Backsheet

机译:制造诱导弯曲应力:玻璃玻璃与玻璃底片

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The architecture of a photovoltaic module directly influences its mechanical stability, affecting cell crack propagation and contributing to the existence and distribution of stresses. Herein, we evaluate cell deflection using X-Ray Topography (XRT) and compare resulting stresses using both thin-plate theory and Finite Element Analysis (FEA). Countering the common belief, we show that glass/glass module architectures exhibit higher bending induced cell stresses during module fabrication. These residual stresses superimpose with stresses experienced in the field and may lead to more frequent cell breakage.
机译:光伏模块的架构直接影响其机械稳定性,影响细胞裂纹繁殖并有助于应力的存在和分布。 这里,我们使用X射线形貌(XRT)评估细胞偏转,并使用薄板理论和有限元分析(FEA)进行比较导致的应力。 对抗共同的信念,我们表明玻璃/玻璃模块架构在模块制造期间表现出更高的弯曲感应细胞应力。 这些残余应力叠加在该领域中经历的应力,并且可能导致更频繁的细胞破损。

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