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Ultrasonic Methods for Inline Solar Cell Interconnector Inspection: Method Overview, Applications and Limits

机译:在线太阳能电池互连器检查的超声方法:方法概述,应用和限制

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Digitalization” of our industry in terms of materials, components and manufacturing as well as logistics and markets is one of the most promising concepts for achieving longterm overall cost reductions, high reliability and quality assurance within the “industry 4.0”. To achieve this long-term goal, several challenges must be overcome: among others, reliable and inlinecapable characterization methods are the key technology to deliver input and verification for the digital representative (“digital twin”). This paper gives an overview of three ultrasonic methods developed for inline characterization of copper ribbons used to interconnect solar cells in a solar module. Material parameters of these ribbons are crucial for the soldering process and the future reliability of solar modules. The three methods are based on different physical effects: 1) Determination of elastic constants by ultrasonic dispersion analysis; 2) Acoustoelastic microstructural analysis; 3) Determination of mean grain size by ultrasonic scattering analysis. Each method has its own specific range of application: Method 1 proved to be very stable and reliable for elastic constant evaluation (Young's modulus, Poison's ratio) in all areas of ribbon production and module manufacturing. Method 2 is most sensitive and suitable for detecting small changes in microstructure due to mechanical loading or manufacturing process variation. It is therefore well-suited to inline quality check in module production. Method 3 allows determination of the mean grain size, characterizing the annealing process. Mechanical loading must be avoided here, as generated dislocations also influence the attenuation. The newly developed methods and achieved results indicate enormous potential for ribbon characterization on an industrial scale and fit well in the “industry 4.0” concept.
机译:在材料,组件和制造以及物流和市场方面,我们行业的数字化是在“工业4.0”中实现长期总体成本降低,高可靠性和质量保证的最有希望的概念之一。为了实现这一长期目标,必须克服几个挑战:其中,可靠和可在线表征的方法是为数字代表(“数字孪生”)提供输入和验证的关键技术。本文概述了开发的三种超声波方法,这些方法用于在线表征用于互连太阳能模块中太阳能电池的铜带。这些碳带的材料参数对于焊接过程以及太阳能电池组件的未来可靠性至关重要。这三种方法基于不同的物理效应:1)通过超声弥散分析确定弹性常数; 2)声弹显微组织分析; 3)通过超声散射分析确定平均晶粒尺寸。每种方法都有其特定的应用范围:方法1被证明在色带生产和模块制造的所有领域中对弹性常数评估(杨氏模量,毒性比)非常稳定和可靠。方法2最灵敏,适用于检测由于机械负载或制造工艺变化而引起的微观结构细微变化。因此,它非常适合模块生产中的在线质量检查。方法3可以确定平均晶粒尺寸,从而表征退火过程。这里必须避免机械负载,因为产生的位错也会影响衰减。新开发的方法和取得的成果表明,在工业规模上进行色带表征具有巨大潜力,并且非常适合“工业4.0”概念。

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