Photovoltaic Cable Connectors: A Comparative Assessment of the Present State of the Industry

David C. Miller, Rachael L. Arnold, Peter L. Hacke,Chun-Sheng Jiang, Steven C. Hayden,Helio Moutinho, Jimmy M. Newkirk, Greg Perrin,Laura T. Schelhas,Kent Terwilliger, Soňa Uličná, Chuanxiao Xiao

IEEE Journal of Photovoltaics(2024)

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摘要
The consequences of failure for balance-of-systems components (such as photovoltaic (PV) cable connectors) include offline module string(s); low system voltage; arc, ground, insulation, and overtemperature faults; triggered fuse(s); system shutdown; and fire. The degradation modes for connectors are studied here through an industry survey and its subsequent examination, which are compared with field-degraded specimens. A total of 117 specimens were obtained from a variety of locations and climates or accelerated tests. A failure analysis for connectors from PV installations was developed (and applied to 54 specimens), including nondestructive examinations (photography, a custom resistance–current scan, and X-ray computed tomography) and destructive examinations (featuring milling of the external plastic, extraction of the internal convolute spring, and potting and polishing in cross section). Surface and through-thickness composition of the metal pins and springs was quantified using scanning electron microscopy with energy-dispersive X-ray spectroscopy. Fourier transform infrared spectroscopy was used to verify the base polymer materials and compare the chemical structure of the connector body, bushing, end nut, and o-ring. Thermogravimetric analysis and differential scanning calorimetry were used to further verify the degradation of the same polymeric components.
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关键词
Cable connectors,differential scanning calorimetry (DSC),durability,energy-dispersive X-ray spectroscopy (EDS),Fourier transform infrared spectroscopy (FTIR),International PV Quality Assurance Task Force (PVQAT),reliability,scanning electron microscope,thermogravimetric analysis (TGA),X-ray computed tomography (XCT)
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