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Factorial designs of multi-coatings for induced stresses of advanced flexible displays

机译:用于诱导先进柔性显示器应力的多涂层的因子设计

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Fatigue behavior of multi-stacked films type OLED devices under a flexural load been greatly paid attention while the requirement of thinner and more flexible packaging structure. To enhance mechanical reliability of related critical components utilized in foregoing OLED architecture, a mechanical model of multi-layers structure is demonstrated and validated by nonlinear finite element analysis, exploring the impact of several concerned mechanical parameters within a whole OLED packaging. The results indicated that the thickness of PI substrate is a significant parameter to determine the bending stress of indium tin oxide film. It is found that the use of thicker and softer film could be able to reduce the stress of ITO conductive film.
机译:在弯曲载荷下的多堆叠薄膜型OLED器件的疲劳行为在较薄和更柔韧的包装结构的要求中得到了极大的注意。为了增强在前述OLED架构中使用的相关关键组分的机械可靠性,通过非线性有限元分析对多层结构的机械模型进行了说明和验证,探讨了整个OLED包装内的几个有关机械参数的影响。结果表明,PI衬底的厚度是确定氧化铟锡膜的弯曲应力的重要参数。结果发现,使用较厚和更柔软的薄膜可以能够降低ITO导电膜的应力。

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