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Study of lamination quality of solar modules with PMMA front layer

机译:PMMA前层的太阳能模块的层压质量研究

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Purpose The photovoltaic modules with front glass as a protective layer are the most popular type in the industry, but for some applications it can be considered as too heavy. One of the approaches is to laminate the cells using PMMA [Poly(methyl methacrylate)] as the front layer. This polymer has good mechanical strength and optical properties but exhibits low adhesion to lamination foil. To increase adhesion between these two materials, PMMA surface treatment may be required. Design/methodology/approach To examine the PMMA treatment influence on the sample, adhesion samples' surfaces were modified by grinding and laser cutting. Also two types of PMMA available in the market were tested, namely, smooth and satin types. The quality of lamination was determined using two methods, namely, tear test with recorded maximal tear force achieved for the samples, and environment chamber tests, in which the system resistance against the cyclic temperature variation was evaluated. Findings Additional treatment of the PMMA surface lead to increased adhesion of the lamination foil used. Ethylene-vinyl acetate foil in the PMMA system is sensitive to temperature variation, which can lead to system delamination, whereas polyvinyl butyral foil exhibits better environmental performance and even its adhesion to PMMA is lower. Originality/value This paper presents atypical surface modification methods that contributed to higher adhesion of lamination systems in glass-free solar modules. Glass front sheet and polymeric backsheet were replaced with PMMA. As the adhesion mechanism in the PMMA-lamination foil system differs from that in the traditional glass system, different PMMA surface treatments need to be evaluated.
机译:目的,具有前玻璃作为保护层的光伏模块是该行业中最流行的类型,但对于一些应用,它可以被认为太重。其中一种方法是使用PMMA [聚(甲基丙烯酸甲酯)]作为前层来层压细胞。该聚合物具有良好的机械强度和光学性能,但对层压箔表现出低粘附性。为了增加这两种材料之间的粘附,可能需要PMMA表面处理。通过研磨和激光切割改变了设计/方法/方法以检查样品对样品的影响,粘附样品的表面进行修饰。还测试了市场上可用的两种类型的PMMA,即平滑和缎面类型。使用两种方法测定层压的质量,即撕裂试验,具有用于样品的最大撕裂力和环境室测试,其中评价了对循环温度变化的系统阻力。发现PMMA表面的额外处理导致使用的层压箔的粘附性增加。 PMMA系统中的乙烯 - 乙酸乙烯酯箔对温度变化敏感,这可能导致系统分层,而聚乙烯醇缩水箔表现出更好的环境性能,甚至其对PMMA的粘附性较低。原创性/值本文提出了非典型表面改性方法,这些方法导致了玻璃无玻璃太阳能模块中的层压系统粘附更高。用PMMA取代玻璃前板和聚合物底片。随着PMMA层压箔系统的粘合机理与传统玻璃系统中的不同之处不同,需要评估不同的PMMA表面处理。

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