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首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >Radiation Resistance and Mechanical Stability of SiO_2-BaO-Based Glass Coatings for Space Solar-Cell Panels
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Radiation Resistance and Mechanical Stability of SiO_2-BaO-Based Glass Coatings for Space Solar-Cell Panels

机译:用于太空太阳能电池板的SiO_2-BaO基玻璃涂层的抗辐射性和机械稳定性

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The influence of proton irradiation (energy,18 MeV;beam current,300 nA) with doses of 5 x 10~14,1015,and 5 x 10~15 cm~(-2) on samples of SiO_2-BaO-based glass coatings is investigated.The absorption,photo-luminescence,and gamma luminescence spectra of the studied samples and their microhardness are measured.It is found that proton irradiation leads to a twofold increase in the microhardness.An insignificant increase in the optical absorption is revealed in the near-ultraviolet range (200-400 nm).This increase is accompanied by a decrease in the intensity of both light scattering in the wavelength range 400-900 nm and photoluminescence.The intensity of broadband gamma luminescence with a maximum at a wavelength of 500 nm increases with increasing proton irradiation dose.This means that excitonic radiative recombination impedes the formation of structural defects and their associated color centers.The combined effect of proton irradiation and solar electromagnetic radiation (gamma and visible light rays) accompanied by temperature changes in the range 80-470 K can provide an increase in the radiation resistance and mechanical stability of glass coatings used for solar-cell panels and their longer service life even under conditions of increased solar activity.
机译:5 x 10〜14,1015和5 x 10〜15 cm〜(-2)剂量的质子辐照(能量18 MeV;束电流300 nA)对SiO_2-BaO基玻璃涂层样品的影响测量了所研究样品的吸收,光致发光和伽马发光光谱以及它们的显微硬度。发现质子辐照导致显微硬度增加了两倍。光学吸收的增加不明显。近紫外线范围(200-400 nm)。这种增加伴随着400-900 nm波长范围内的光散射强度和光致发光强度的降低。宽带γ发光强度在500波长处最大纳米随质子辐照剂量的增加而增加,这意味着激子的辐射复合阻碍了结构缺陷及其相关色心的形成。质子辐照与太阳电磁辐射(γ和vi可见光线)伴随80-470 K范围内的温度变化,即使在日光活动增加的情况下,也可以提高用于太阳能电池板的玻璃涂层的抗辐射性和机械稳定性,并延长其使用寿命。

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