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FEASIBILITY STUDY OF THE CORRELATION BETWEEN DAMP HEAT TEST AND ACCELERATED WEATHERING TEST METHODS FOR BACKSHEETS

机译:沉积热试验与底片的加速风化试验方法之间的相关性研究

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As the main critical parts in a photovoltaic (PV) module are polymeric materials, the aging behavior of backsheets is crucial for the whole photovoltaic module. In many standard backsheets polyethylene terephthalate (PET) is used as core layer. This is the reason for the high influence of the aging behavior of PET on the whole backsheet and therefore also on the whole PV module. Currently the standard test method for lifetime evaluation of backsheets of PV modules is a damp heat (DH) test at 85°C and 85% relative humidity (RH) for up to 2000 hours (h). The test duration of 2000 h equals approximately 3 months, which is a long time for material development. Further acceleration can be achieved by an increase of temperature, humidity and pressure - a so called pressure cooker test. To analyse differences in thermal and mechanical properties the aging behaviour was investigated by differential scanning calorimetry (DSC) and tensile tests. Thermal and mechanical properties showed a good correlation between pressure cooker at 120°C and damp heat test, with the constraint of presumable differences in the failure mechanism.
机译:由于光伏(PV)模块中的主要关键部件是聚合物材料,因此底片的老化行为对于整个光伏模块至关重要。在许多标准底片中,将聚对苯二甲酸乙二醇酯(PET)用作核心层。这是PET在整个底片上的老化行为的高度影响的原因,因此也在整个光伏模块上。目前,PV模块底片的终身评估标准测试方法是85℃和85%相对湿度(RH)的潮湿热(DH)测试,可达200​​0小时(H)。 2000小时的测试持续时间等于大约3个月,这是物质开发的很长一段时间。通过增加温度,湿度和压力 - 即所谓的压力炊具测试,可以实现进一步的加速度。为了分析热和机械性能的差异,通过差示扫描量热法(DSC)和拉伸试验研究了老化行为。热量和机械性能在120°C和潮湿的热试验下的压力锅之间显示出良好的相关性,其故障机构的可推定差异的约束。

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