Page 48 - Read Online
P. 48
Page 22 of 28 Park et al. Soft Sci 2024;4:28 https://dx.doi.org/10.20517/ss.2024.22
12. Kim TW, Lee JS, Kim YC, Joo YC, Kim BJ. Bending strain and bending fatigue lifetime of flexible metal electrodes on polymer
substrates. Materials 2019;12:2490. DOI PubMed PMC
13. Ugural AC, Fenster SK. Chapter 5: Bending beams. In: Advanced mechanics of materials and applied elasticity. 5th ed. Prentice;
2019. pp. 226-91. Available from: https://ptgmedia.pearsoncmg.com/images/9780137079209/samplepages/0137079206.pdf. [Last
accessed on 30 Jul 2024].
14. Yeh M, Chang L, Cheng H, Wang P. Bending stress analysis of laminated foldable touch panel. Procedia Eng 2014;79:189-93. DOI
15. Nishimura M, Hishinuma M, Yamaguchi H, Murayama A. 56-3: quantitative evaluation of neutral-plane splitting in foldable displays
using folding stiffness measurements and finite element method simulations. SID Int Symp Dig Tech 2020;51:834-7. DOI
16. Chae Y, Chae GS, Youn YO, Woo S, Shin SH, Lee J. Optimal design of thickness and young’s modulus of multi-layered foldable
structure considering bending stress, neutral plane and delamination under 2.5 mm radius of curvature. Int J Precis Eng Manuf
2018;19:1143-54. DOI
17. Hwang B, Lim S, Park M, Han S. Neutral plane control by using polymer/graphene flake composites for flexible displays. RSC Adv
2017;7:8186-91. DOI
18. Park Y, Bang S, Hwang B, et al. 69-2: Development of flexible cover window for large foldable display with a pen-touch function.
Symp Digest Tech Papers 2021;52:1033-5. DOI
19. Choi GM, Jin J, Shin D, et al. Flexible hard coating: glass-like wear resistant, yet plastic-like compliant, transparent protective
coating for foldable displays. Adv Mater 2017;29:1700205. DOI PubMed
20. Jeong YC, Kim DG, Kim H. 66-1: invited paper: flexible yet robust cover window with enhanced bending stiffness. Symp Digest
Tech Papers 2023;54:932-5. DOI
21. Jeong SY, Shim HR, Na Y, et al. Foldable and washable textile-based OLEDs with a multi-functional near-room-temperature
encapsulation layer for smart e-textiles. npj Flex Elect 2021;5:15. DOI
22. Jeong EG, Kwon JH, Kang KS, Jeong SY, Choi KC. A review of highly reliable flexible encapsulation technologies towards rollable
and foldable OLEDs. J Inform Display 2020;21:19-32. DOI
23. Ha M, Choi J, Park B, Han K. Highly flexible cover window using ultra-thin glass for foldable displays. J Mech Sci Technol
2021;35:661-8. DOI
24. Jo W, Jeong K, Park Y, Lee J, Gap Im S, Kim T. Thermally stable and soft pressure-sensitive adhesive for foldable electronics. Chem
Eng J 2023;452:139050. DOI
25. Salmon F, Everaerts A, Campbell C, Pennington B, Erdogan-haug B, Caldwell G. 64-1: modeling the mechanical performance of a
foldable display panel bonded by 3M optically clear adhesives. Symp Digest Tech Papers 2017;48:938-41. DOI
26. Han SH, Shin JH, Choi SS. Analytical investigation of multi-layered rollable displays considering nonlinear elastic adhesive
interfaces. Sci Rep 2023;13:5697. DOI PubMed PMC
27. Kwon Y, Lee S, Kim J, et al. Ultraviolet light blocking optically clear adhesives for foldable displays via highly efficient visible-light
curing. Nat Commun 2024;15:2829. DOI
28. Back JH, Kwon Y, Cho H, et al. Visible-light-curable acrylic resins toward UV-light-blocking adhesives for foldable displays. Adv
Mater 2023;35:e2204776. DOI
29. Choi JW, Lee JH. Selectively UV-blocking and visibly transparent adhesive films embedded with TiO /PMMA hybrid nanoparticles
2
for displays. Materials 2020;13:5273. DOI PubMed PMC
30. Wu C, Zeng S, Wang Z, et al. Efficient mechanoluminescent elastomers for dual-responsive anticounterfeiting device and stretching/
strain sensor with multimode sensibility. Adv Funct Mater 2018;28:1803168. DOI
31. Wang J, Yao K, Cui K, et al. Contact electrification induced multicolor self-recoverable mechanoluminescent elastomer for wearable
smart light-emitting devices. Adv Opt Mater 2023;11:2203112. DOI
32. Wang C, Hu H, Peng D, Dong L, Zhu D. Soft devices empowered by mechanoluminescent materials. Soft Sci 2023;3:39. DOI
33. Li L, Cheng L, Yang L, Zhang J. Multistimuli-responsive artificial skin with dual output of photoelectric signals. Macro Mater Eng
2021;306:2100017. DOI
34. Abrahamson JT, Beagi HZ, Salmon F, Campbell CJ. Optically clear adhesives for OLED. In: Pyshkin S, editor. Luminescence -
OLED technology and applications. IntechOpen; 2019. DOI
35. Nishimura M, Takebayashi K, Hishinuma M, Yamaguchi H, Murayama A. A 5.5-inch full HD foldable AMOLED display based on
neutral-plane splitting concept. J Soc Info Display 2019;27:480-6. DOI
36. Su Y, Li S, Li R, Dagdeviren C. Splitting of neutral mechanical plane of conformal, multilayer piezoelectric mechanical energy
harvester. Appl Phys Lett 2015;107:041905. DOI
37. Hishinuma M, Nishimura M, Yamaguchi H, Murayama A. [FLX3-1(Invited)] Analysis of neutral-plane splitting for foldable displays
using digital image correlation method. Proc Int Display Workshops 2020;27:898. DOI
38. Lecavelier des Etangs-levallois A, Chen Z, Lesecq M, et al. A converging route towards very high frequency, mechanically flexible,
and performance stable integrated electronics. J Appl Phys 2013;113:153701. DOI
39. Shi Y, Rogers JA, Gao C, Huang Y. Multiple neutral axes in bending of a multiple-layer beam with extremely different elastic
properties. J Appl Mech 2014;81:114501. DOI
40. Li S, Su Y, Li R. Splitting of the neutral mechanical plane depends on the length of the multi-layer structure of flexible electronics.
Proc Math Phys Eng Sci 2016;472:20160087. DOI PubMed PMC
41. Wald MJ, Salmon FT, Cosgrove DT, Everaerts AI, inventors; 3M Innovative Properties Co., assignee. Flexible displays having stiff

