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Durability of acrylic: Stress and response characterization of materials for photovoltaics

机译:丙烯酸的耐久性:光伏材料的应力和响应特性

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In the development of materials for enhanced photovoltaic (PV) performance, it is critical to have quantitative knowledge of the initial performance, as well as the performance of these materials over the required 25-year lifetime of the PV system. Lifetime and degradation science (L&DS) allows for the development of new metrology and metrics, coupled to degradation mechanisms and rates. All PV systems are exposed to multifactor and cyclic environmental stressors including solar irradiance, temperature and humidity which can cause degradation over time. A stress and response framework is being used to link the intensity and accumulation of damaging environmental stressors to changes in materials properties. This allows for determination of appropriate techniques for accelerating environmental stressors, and also allows determination of the effects of stressors at multiple service conditions. Induced absorbance to dose (IAD), a new metric being developed for solar radiation durability studies of solar and environmentally exposed materials, is defined as the rate of photodarkening or photobleaching of a material as a function of total absorbed solar radiation dose. Yellowing rates, the change in ASTM E313 Yellowness Index as a function of absorbed dose, of two grades of acrylic poly(methyl-methacrylate) (PMMA) have been reported. IAD spectra for two formulations of acrylic PMMA are reported.
机译:在增强光伏(PV)性能的材料的开发中,对初始性能的定量了解至关重要,以及通过PV系统所需的25年寿命的这些材料的性能。终身和退化科学(L&DS)允许开发新的计量和指标,耦合到劣化机制和率。所有光伏系统都暴露于多因素和循环环境压力源,包括太阳辐照度,温度和湿度,这会随着时间的推移而导致降级。应力和响应框架用于将损坏环境压力源的强度和积累与材料特性的变化联系起来。这允许确定用于加速环境压力源的适当技术,并且还允许在多种服务条件下确定压力源的效果。诱导的吸光度(IAD),用于太阳能和环保材料的太阳辐射耐久性研究开发的新度量,被定义为作为总吸收的太阳辐射剂量的函数的材料的光沉淀或光漂白速率。据报道,黄变率,据报道,ASTM E313黄色指数的变化作为吸收剂量的丙烯酸多等级的丙烯酸聚(甲基丙烯酸甲酯)(PMMA)。报道了两种丙烯酸丙烯酸PMMA配方的IAD光谱。

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