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Determining the mechanical properties of optical films in liquid crystal displays (LCDs)

机译:确定液晶显示器(LCD)中光学薄膜的机械性能

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摘要

Liquid crystal displays (LCDs) have become increasingly popular and have gradually replaced traditional cathode ray tube (CRT) displays. Since optical films have excellent optical properties, they are the important components of LCDs. Unfortunately, the mechanical properties of such films are unstable. This study presents an experimental methodology that combines the micro tensile test and the bulge test to characterize the mechanical properties of optical diffuser films, including Young's modulus, Poisson's ratio and residual stress. The thickness of the optical diffuser films studied herein is 38 urn. The numerical model based on finite element analysis (FEA) was employed to demonstrate that the proposed methodology successfully measures the mechanical properties of optical diffuser films in LCDs. The influence of exposure to heat on the mechanical properties of optical diffuser films was also investigated. The results reveal that the heat does significantly affects the Young's modulus of the optical diffuser films and more weakly influences the Poisson's ratio and residual stress.
机译:液晶显示器(LCD)变得越来越流行,并逐渐取代了传统的阴极射线管(CRT)显示器。由于光学膜具有出色的光学性能,因此它们是LCD的重要组成部分。不幸的是,这种膜的机械性能不稳定。这项研究提出了一种实验方法,结合了微拉伸试验和凸出试验来表征光学扩散膜的机械性能,包括杨氏模量,泊松比和残余应力。本文研究的光学漫射膜的厚度为38微米。利用基于有限元分析(FEA)的数值模型来证明所提出的方法成功地测量了LCD中光学扩散膜的机械性能。还研究了暴露于热对光学扩散膜的机械性能的影响。结果表明,热量确实会显着影响光学扩散膜的杨氏模量,而对泊松比和残余应力的影响则较小。

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