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Durability of polymeric glazing materials for solar applications

机译:太阳能用聚合物玻璃的耐久性

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The economic viability of solar collector systems for domestic hot water (DHW) generation is strongly linked to the cost of such systems. Installation and hardware costs must be reduced by 50% to allow significant market penetration. An attractive approach to cost reduction is to replace glass and metal parts with less expensive, lighter weight polymeric components. Weight reduction decreases the cost of shipping, handling, and installation. The use of polymeric materials also allows the benefits and cost savings associated with well established manufacturing processes, along with savings associated with improved fastening, reduced part count, and overall assembly refinements. A key challenge is to maintain adequate system performance and assure requisite durability for extended lifetimes. Results of preliminary and ongoing screening tests for a large number of candidate polymeric glazing materials are presented. Based on these results, two specific glazings with moderate and poor weathering stability are selected to demonstrate how a service lifetime methodology can be applied to accurately predict the optical performance of these materials during in-service use. A summary is given for data obtained by outdoor exposure and indoor testing of polyvinyl chloride (PVC) and high temperature modified polycarbonate copolymer (coPC) materials, and an initial risk analysis is given for the two materials. Screening tests and analyses for service lifetime prediction are discussed. A methodology that provides a way to derive correlations between degradation experienced by materials exposed to controlled accelerated laboratory exposure conditions and materials exposed to in-service conditions is given, and a validation is presented for the methodology based upon durability test results for PVC and coPC.
机译:用于生活热水(DHW)产生的太阳能集热器系统的经济可行性与此类系统的成本密切相关。必须将安装和硬件成本降低50%,以实现较大的市场渗透率。降低成本的一种有吸引力的方法是用更便宜,重量更轻的聚合物组件代替玻璃和金属零件。减轻重量可以降低运输,处理和安装的成本。聚合物材料的使用还可以带来与成熟的制造过程相关的收益和成本节省,以及与改善的紧固性,减少的零件数量和整体组装改进相关的节约。一个关键的挑战是保持足够的系统性能并确保延长使用寿命所需的耐用性。给出了对大量候选聚合物玻璃材料的初步和正在进行的筛选测试的结果。基于这些结果,选择了两种具有中度和较差的耐候稳定性的特殊玻璃,以证明使用寿命方法可用于在使用过程中准确预测这些材料的光学性能。总结了通过室外暴露和室内聚氯乙烯(PVC)和高温改性聚碳酸酯共聚物(coPC)材料进行测试所获得的数据,并对这两种材料进行了初步风险分析。讨论了用于使用寿命预测的筛选测试和分析。给出了一种方法,该方法提供了一种方法,可以得出暴露于受控加速实验室暴露条件下的材料与暴露于使用条件下的材料所经历的降解之间的相关性,并基于PVC和coPC的耐久性测试结果对该方法进行了验证。

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