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首页> 外文期刊>NDT & E international >Crack detection in monocrystalline silicon solar cells using air-coupled ultrasonic lamb waves
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Crack detection in monocrystalline silicon solar cells using air-coupled ultrasonic lamb waves

机译:空气耦合超声兰姆波检测单晶硅太阳能电池中的裂纹

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摘要

In recent years, solar energy becomes one of the most popular renewable energy resources. Among the solar energy systems, solar cells are considered to be one of the most critical components, which are naturally fragile during either fabrication or service. Thus, nondestructive examination of solar cells is required practically. In this research, solar cells made from monocrystalline silicon are selected as the typical samples. The air-coupled ultrasonic nondestructive testing system, based on the generation and reception of the A0 mode Lamb waves, will be adopted for defects detection. Firstly, the dispersion curves of Lamb waves in anisotropic monocrystalline silicon are calculated theoretically, which provides a theoretical foundation for analyzing the behavior of Lamb waves propagating in silicon solar cells. Then, experiments on monocrystalline silicon solar cells are carried out by introducing the air-coupled ultrasonic Lamb waves. The amplitude distributions of Lamb waves propagating along various rotation angles in silicon solar cells are obtained. It shows a strong anisotropic properties of the tested samples. Finally, artificial cracks in solar cells are scanned circularly and laterally. The results of amplitude distributions give the scattering pattern of cracks, which can be used to determine whether the crack breaks through or not. And the extracted amplitude cross-correlation coefficients can help to estimate the length of them.
机译:近年来,太阳能成为最受欢迎的可再生能源之一。在太阳能系统中,太阳能电池被认为是最关键的组件之一,在制造或维修过程中它们自然易碎。因此,实际上需要对太阳能电池进行无损检查。在这项研究中,选择单晶硅制成的太阳能电池作为典型样品。基于A0模式兰姆波的产生和接收的空气耦合超声无损检测系统将用于缺陷检测。首先,理论计算了Lamb波在各向异性单晶硅中的色散曲线,为分析Lamb波在硅太阳能电池中的传播行为提供了理论基础。然后,通过引入空气耦合的超声波兰姆波来进行单晶硅太阳能电池的实验。得到了在硅太阳能电池中沿各种旋转角度传播的兰姆波的振幅分布。它显示了测试样品的强各向异性。最后,圆形和横向扫描太阳能电池中的人造裂缝。振幅分布的结果给出了裂纹的散射模式,可用于确定裂纹是否穿透。提取的幅度互相关系数可以帮助估计它们的长度。

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