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Investigation of Optical and Flexible Characteristics for Organic-Based Cholesteric Liquid Crystal Display by Utilizing Bending and Torsion Loadings

机译:利用弯曲和扭转载荷研究有机基胆甾型液晶显示器的光学和柔性特性

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Given that the induced stress resulting from fatigue bending or torsional loads increases with increasing display thickness, the long-term mechanical reliability of display modules in soft electronics has attracted considerable attention. Therefore, understanding the related failure mechanism and stress contour distribution in the display structure is important and necessary, particularly in torsional load application. This study introduces two important types of testing loads (i.e., entire reverse of bend and torsion with several cycles) to investigate the optical and flexible characteristics of film-type cholesteric liquid crystal displays (ChLCDs). The bending radius and the torsion angle used are 20 mm and , respectively. The stress contour and possible failure location of the testing specimens are obtained by using non-linear finite element analysis (FEA). Results indicate that a significant optical characteristic decay occurs beyond 1000 testing times. In 11,000 cycles of fatigue bending and torsion tests, 45% and 55% decay change rates, respectively, are obtained for the National Television System Committee. Accordingly, a worse situation occurs at the torsion test. This phenomenon is attributed to a two-direction bend torsion exerted on the tested ChLCD. The foregoing behavior is validated by using FEA.
机译:考虑到由疲劳弯曲或扭转载荷引起的感应应力会随着显示器厚度的增加而增加,因此软电子产品中显示模块的长期机械可靠性已经引起了相当大的关注。因此,了解相关的破坏机理和显示结构中的应力轮廓分布是重要且必要的,特别是在扭转载荷应用中。这项研究介绍了两种重要的测试负载(即弯曲和扭转的整个反向过程以及多个循环),以研究薄膜型胆甾型液晶显示器(ChLCD)的光学和柔性特性。所使用的弯曲半径和扭转角分别为20 mm和。通过使用非线性有限元分析(FEA)获得试样的应力轮廓和可能的破坏位置。结果表明,超过1000次测试时间后,光学特性将发生明显衰减。在11,000个疲劳弯曲和扭转测试循环中,国家电视系统委员会分别获得了45%和55%的衰减变化率。因此,在扭转试验中会出现更糟的情况。这种现象归因于施加在测试的ChLCD上的双向弯曲扭转。通过使用FEA可以验证上述行为。

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