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Investigation on the stress behavior of cellulose acetate and the development of highly moisture‐resistant optical films for display devices
Authors:Min Sang Park  Seokwon Jung  So Jeong Heo  Seung Geol Lee
Affiliation:1. SK Innovation, Daejeon, Republic of Korea;2. Materials and Devices Advanced Research Institute, LG Electronics, Seoul, Republic of Korea;3. Department of Organic Material Science and Engineering, Pusan National University, Busan, Republic of Korea
Abstract:An optical film with high optical anisotropy was prepared by the stretching of a cellulose acetate film and the consequential orienting of a retardation‐enhancing additive. The change in retardation in response to moisture absorption was explored and it was found that the degree of the retardation variation is strongly related to the stretching temperature. Stress generated by the stretching and its relaxation was systematically investigated to elucidate the effect of stretching temperature on the irreversible change in retardation upon moisture absorption. The results show that the magnitude of releasable stress plays an important role in controlling changes in optical properties. In addition, the difference in the deformation behavior between glassy and rubbery states should be taken into account in the development of a moisture‐resistant optical film. © 2017 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2017 , 55, 1470–1478
Keywords:cellulose acetate  display  moisture resistant  optical film  stress behavior
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