首页> 外文会议>ASME International Technical Conference on Packaging and Integration of Electronic and Photonic Microsystems >STRESS EVALUATION OF FLEXIBLE DISPLAYS WITH MULTIPLE-LAMINATIONS ARCHITECTURE ENABLED BY EXPERIMENTAL MEASUREMENT AND SIMULATION BASED FACTORIAL DESIGN
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STRESS EVALUATION OF FLEXIBLE DISPLAYS WITH MULTIPLE-LAMINATIONS ARCHITECTURE ENABLED BY EXPERIMENTAL MEASUREMENT AND SIMULATION BASED FACTORIAL DESIGN

机译:通过实验测量和基于仿真的因子设计实现多层结构柔性显示器的应力评估

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Fatigue behavior of multiple-stacked film-type flexible displays under flexural load has received considerable research attention, whereas the requirement of a considerably thin and flexible packaging structure with single/multiple neutral axis has not been systemically explored. Consequently, this study evaluated the flexural load induced strain and corresponding resistance change in flexible display architecture by both experimental and simulation works. The relationship between mechanical strains and the relevant resistance change in a touch panel module is estimated by both nonlinear finite element analysis and actual experiments. The aforementioned results revealed that the simulated strain and the resistance change of indium tin oxide (ITO) film were increased as the bending radius becomes narrow. Moreover, the influences of several mechanical parameters within an entire organic light-emitting diode device package with multiple coatings were estimated by a simulation-based parametric study. It should be noted that the structure design would lead the single/multiple neutral axis (N.A.) occurred in the concerned flexible displays. Among all the designed structural and material properties, the Young's modulus of the adhesive is the most dominant factor to determine the bending strain of ITO film and the phenomenon occurrence of multiple N.A. The analytic results indicated that the multiple N.A. design is contributed to decrease the flexural strain and corresponding resistance change of ITO film. Therefore, the design rules of single/multiple N.A. and its influences on stress-induced electric variation in flexible display are revealed.
机译:在挠曲载荷下多层堆叠的薄膜型柔性显示器的疲劳行为已经引起了相当大的研究关注,而对于具有单/多个中性轴的相当薄且柔性的包装结构的要求尚未得到系统地探讨。因此,本研究通过实验和仿真工作评估了挠性显示器架构中的挠曲载荷引起的应变和相应的电阻变化。通过非线性有限元分析和实际实验,可以估算触摸面板模块中机械应变与相关电阻变化之间的关系。上述结果表明,随着弯曲半径变窄,模拟氧化铟锡(ITO)薄膜的应变和电阻变化增加。此外,通过基于仿真的参数研究估算了整个有机发光二极管器件封装中具有多个涂层的几个机械参数的影响。应该注意的是,结构设计将导致在相关的柔性显示器中出现单个/多个中性轴(N.A.)。在所有设计的结构和材料性能中,胶粘剂的杨氏模量是决定ITO膜弯曲应变和多重NA现象发生的最主要因素。分析结果表明,多重NA设计有助于降低挠曲性。 ITO膜的应变和相应的电阻变化。因此,揭示了单个/多个N.A.的设计规则及其对柔性显示器中应力引起的电变化的影响。

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