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Dependent analyses of multilayered material/geometrical characteristics on the mechanical reliability of flexible display devices
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Dependent analyses of multilayered material/geometrical characteristics on the mechanical reliability of flexible display devices

Chang-Chun LeeYan-Yu Liou
IEEE Transactions on Device and Materials Reliability
2018

摘要

Analytical solutions Bending stress. Films Finite element analysis Flexible display Indium tin oxide Materials reliability Multilayered architecture Organic light emitting diodes Strain Stress Electronic Optical and Magnetic Materials Safety Risk Reliability and Quality Electrical and Electronic Engineering
A generalized solution for the bending stress/strain expression of flexible display composed of multi-stacked thin films is presented in this paper. Flexible display comprises an arbitrary number of films combined with dissimilar thicknesses and linearelastic mechanical characteristics. Specific consequences for alternate layered systems are estimated to reveal the elementary trends of the dependencies of normalized bending strain and neutral axis position on the modulus and thickness ratios of the concerned layers. An actual architecture of flexible display is also provided as an example to calculate the results and compared with the simulated predictions of finite element analysis. With various material selections of cover plate, the induced stresses on transparent conducting film and the position of the neutral axis plate are separately investigated. Moreover, it is also found that the impact of bending radius on the mechanical reliability of flexible encapsulation. The presented results serve as a design guideline for the infrastructure optimization of flexible display devices without electrical failures.

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