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Adhesion investigation of stacked coatings in organic light-emitting diode display architecture

机译:有机发光二极管显示器结构中涂层的附着力研究

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Organic light-emitting diode (OLED) display is considered one of the promising portable electronic devices given that the application requirements for the Internet of Things are necessary. Composed of multi-stacked thin films, OLED display needs to bear external gas moisture and various mechanical loadings, such as bend, torsion, and fold. Under these mechanical loadings, OLED devices undergo numerous critical failure modes, one of which is the delamination of stacked films bonded by a glued layer of OLED encapsulation that has become an important reliability concern. Accordingly, this study uses a nonlinear finite element analysis based on fracture mechanics using J-integral and modified virtual crack closure technique. The proposed method is adopted to estimate the adhesions of several concerned interfaces of dissimilar materials bonded with glue through the index of energy release rates. To validate the reliability of the proposed simulation methodology, the adhesion measurement of glue/SiN passivation is performed through a four-point bending test. The analytic results show that a cracking energy up to 20.4 J/m(2) is achieved when the initial delaminated length is similar to 10 mu m and when a glue with an elastic modulus of 22 MPa is considered. In addition, a long interfacial crack length appears to promote the fracture growth of ITO/SiN stacked layers under an ultra-small bending radius of 1 mm. (C) 2016 Elsevier B.V. All rights reserved.
机译:考虑到物联网的应用需求是必要的,有机发光二极管(OLED)显示器被认为是有前途的便携式电子设备之一。 OLED显示器由多层薄膜组成,需要承受外部气体湿气和各种机械载荷,例如弯曲,扭曲和折叠。在这些机械负载下,OLED器件经历了许多关键的失效模式,其中之一是由OLED封装的胶合层粘合的堆叠膜分层,这已成为重要的可靠性问题。因此,本研究使用基于断裂力学的非线性有限元分析,使用J积分和改进的虚拟裂纹闭合技术。采用所提出的方法通过能量释放速率的指标来估计胶粘在一起的异种材料的几个相关界面的粘附性。为了验证所提出的仿真方法的可靠性,通过四点弯曲测试对胶水/ SiN钝化层的附着力进行了测量。分析结果表明,当初始分层长度类似于10μm且考虑使用弹性模量为22 MPa的胶水时,裂解能达到20.4 J / m(2)。另外,在1mm的超小弯曲半径下,长的界面裂纹长度似乎促进了ITO / SiN堆叠层的断裂增长。 (C)2016 Elsevier B.V.保留所有权利。

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