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Evaluation of cellular glasses for solar mirror panel applications

机译:太阳能镜面板应用中蜂窝玻璃的评估

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摘要

An analytic technique was developed to compare the structural and environmental performance of various materials considered for backing of second surface glass solar mirrors. Cellular glass was determined to be a prime candidate due to its low cost, high stiffness-to-weight ratio, thermal expansion match to mirror glass, evident minimal environmental impact and chemical and dimensional stability under conditions of use. The current state of the art and anticipated developments in cellular glass technology are discussed; material properties are correlated to design requirements. A mathematical model is presented which suggests a design approach which allows minimization of life cost; and, a mechanical and environmental testing program is outlined, designed to provide a material property basis for development of cellular glass hardware, together with methodology for collecting lifetime predictive data. Preliminary material property data from measurements are given. Microstructure of several cellular materials is shown, and sensitivity of cellular glass to freeze-thaw degradation and to slow crack growth is discussed. The effect of surface coating is addressed.
机译:开发了一种分析技术来比较考虑用于第二面玻璃太阳镜的各种材料的结构和环境性能。由于其低成本,高刚度重量比,与镜面玻璃的热膨胀匹配,在使用条件下明显的最小环境影响以及化学和尺寸稳定性,蜂窝玻璃被认为是主要的候选者。讨论了蜂窝玻璃技术的当前技术水平和预期发展。材料特性与设计要求相关。提出了一个数学模型,该数学模型提出了一种设计方法,该方法可将生命成本降至最低;概述了机械和环境测试程序,旨在为蜂窝玻璃硬件的开发提供材料特性基础,以及收集寿命预测数据的方法。给出了来自测量的初步材料特性数据。显示了几种多孔材料的微观结构,并讨论了多孔玻璃对冻融降解和减慢裂纹生长的敏感性。解决了表面涂层的影响。

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    Giovan, M.; Adams, M.;

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  • 年度 1979
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