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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Effect of interconnect geometry on the evolution of stresses in a solar photovoltaic laminate during and after lamination
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Effect of interconnect geometry on the evolution of stresses in a solar photovoltaic laminate during and after lamination

机译:互连几何形状对层压期间和后和叠片太阳能光伏层压板中应力演化的影响

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摘要

Fracture in silicon crystalline solar cells has been a long-standing challenge encountered in the photovoltaic (PV) industry. This occurs as result of stresses developing in the cells due to thermo-mechanical stresses that arise when there is a mismatch in the coefficient of thermal expansion (CTE) between the different constituent materials during the manufacturing processes as well as mechanical stresses from hail, snow and wind during field operations. Through finite element simulations, this paper investigates the effect of interconnect cross-sectional geometry on stresses developed in silicon cells during the entire PV manufacturing cycle and provides physical reasoning to its stress evolution. The simulations are performed in a sequential manner whereby the residual stresses developed at the end of one step is brought forward to the beginning of the next step. It is found that the highest cell stresses occur at the back surfaces of the cells at the end of the pressure-ramping step during lamination. In addition, increasing the thickness of the front interconnects significantly increases the stresses developed in the cells during lamination. This predicted trend is verified experimentally.
机译:硅结晶太阳能电池的骨折是光伏(PV)行业遇到的长期挑战。这是由于在制造过程中不同成分材料之间存在的热膨胀系数(CTE)中出现的热机械应力而产生的电池中发出的应力产生的结果发生的结果是发生的。以及来自冰雹,雪的机械应力和风在现场操作期间。通过有限元模拟,本文研究了互连横截面几何形状对整个光伏制造周期中硅电池中产生的应力的影响,并为其应力进化提供物理推理。以顺序方式执行模拟,从而在一个步骤结束时产生的残余应力在下一步骤开始。发现,在层压期间,在压力斜坡步骤的结束时,最高细胞应力发生在电池的后表面。另外,增加前互连的厚度显着增加了层压期间细胞中产生的应力。这种预测的趋势是通过实验验证的。

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