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Development of an anti-pollution coating process technology for the application of an on-site PV module

机译:用于在现场PV模块中应用抗污染涂层工艺技术的开发

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摘要

This study aimed to apply annealing processes during the coating of photovoltaic (PV) module glasses to PV modules already installed through an easy and simple procedure. Three types of annealing treatments were applied to PV module glasses, i.e., furnace, rapid thermal annealing (RTA) and torch. Among these, torch annealing, which can be easily carried out at PV module installation sites, was applied to PV module glasses using different numbers of repetition. Light transmittance, contact angle, anti-pollution characteristics, adhesion and hardness of the functional coating films after using different annealing treatment times and methods were measured, and it was confirmed that these characteristics varied depending on the annealing treatment times and methods. Through this, it was possible to optimize the process conditions that provide excellent anti-pollution characteristics and could be easily utilized at on-site PV modules.
机译:本研究旨在在光伏(PV)模块玻璃涂层期间将退火过程应用于通过简单简单的程序安装的PV模块。将三种类型的退火处理应用于PV模块玻璃,即炉子,快速热退火(RTA)和火炬。其中,使用不同数量的重复,可以在PV模块安装地点容易地进行的割炬退火。测量使用不同退火处理时间和方法后功能涂膜的透光率,接触角,抗污染特性,粘附和硬度,证实这些特性根据退火处理时间和方法而变化。通过这一点,可以优化提供优异的抗污染特性的过程条件,并且可以在现场PV模块中容易地使用。

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