Highly stretchable dielectric elastomer material based on acrylonitrile butadiene rubber

Macromolecular Research - Tập 22 - Trang 1170-1177 - 2014
Tien Dat Nguyen1, Canh Toan Nguyen1, Dong-hyuk Lee1, Uikyum Kim1, Choonghan Lee1, Jae-do Nam2, Hyouk Ryeol Choi1
1School of Mechanical Engineering, Sungkyunkwan University, Gyeonggi, Korea
2Department of Polymer Science and Engineering, Sungkyunkwan University, Gyeonggi, Korea

Tóm tắt

This study presents a highly stretchable dielectric elastomer material for transducers based on acrylonitrile butadiene rubber (NBR). The material has advantages in that its mechanical and electrical properties can be modified according to the requirements of applications by changing the content of additives such as carbon black (CB), multi-walled carbon nanotubes (MWCNT), and graphite (GP) in the NBR matrix. First, the changes of dielectric permittivity depending on the additives are discussed. Moreover, the electrical resistance is examined in detail by changing the compositions of the additives, and the applicability of the material to the electrodes of transducers is investigated. Finally, the optimal contents of additives for actuators or sensors are discussed.

Tài liệu tham khảo

C. T. Nguyen, N. L. Nguyen, H. S. Lee, D. G. Kim, C. H. Lee, H. P. Moon, J. C. Koo, J. D. Nam, J. H. Han, and H. R. Choi, Macromol. Res., 21, 85 (2013). K. M. Jung, J. H. Lee, M. S. Cho, J. C. Koo, J. D. Nam, Y. K. Lee, and H. R. Choi, Smart Mater. Struct., 16, S288 (2007). J. C. Koo, K. M. Jung, J. K. Park, J. D. Nam, Y. K. Lee, J. W. Jeon, and H. R. Choi, Int. J. Control Autom. Syst., 5, 429 (2007). H. C. Nguyen, H. L. V. Nguyen, D. S. Kim, Y. K. Lee, J. C. Koo, H. P. Moon, J. D. Nam, and H. R. Choi, IEEE/ASME Trans. Mechatron., 16, 1 (2010). H. C. Nguyen, V. T. Doan, J. K. Park, Y. K. Lee, J. C. Koo, J. D. Nam, and H. R. Choi, Smart Mater. Struct., 18, 1 (2008). U. Kim, J. Kang, C. Lee, H. Y. Kwon, S. Hwang, H. P. Moon, J. C. Koo, J. D. Nam, B. H. Hong, J. B. Choi, and H. R. Choi, Nanotechnology, 16, 1 (2013). T. Sekitani, Y. Noguchi, K. Hata, T. Fukushima, T. Aida, and T. Someya, Science, 21, 1468 (2008). K. Y. Chun, Y. S. Oh, J. H. Rho, J. H. Ahn, Y. J. Kim, H. R. Choi, and S. H. Baik, Nat. Nanotechnol., 5, 853 (2010). D. Wang, H. Li, H. Jiang, M. Xia, and Z. Zhou, J. Mater. Chem. C, 1, 2744 (2013). S. Yun, X. Niu, Z. Yu, W. Hu, P. Brochu, and Q. Pei, J. Adv. Mater., 24, 1321 (2012). B. Tony and B. David, Electrical Properties of Polymers. Campridge University press, 2nd edition, 2005. T. Someya, Stretchable Electronics. Viley — VCH, 1st edition, 2012. F. Carpi and E. Smela, editors. Biomedical Applications of Electroactive Polymer Actuators. State Avenue: Wiley Press, 2009. K. J. Kim and S. Tadokoro, editors. Electroactive Polymers for Robotic Application: Artificial Muscles and Sensors. Springer, 2007. T. Someya, T. Sekitani, S. Iba, Y. Kato, H. Kawaguchi, and T. Sakurai, Proceeding of the Nat. Acad. Sci., 101, 9966 (2004). L. K. Baxter, Capacitive Sensors: Design and Applications. Elsevier, 1996. A. S. A. Reffaee, D. E. E. Nashar, S. L. A. E. Messied, and K. N. A. Nour, IEEE. C. Solid Dielectrics, 7, 274 (2007). J. Brydson, Plastics Materials. Wiley-IEEE Press, 2009. B. L. Shah and V. V. Shertukde, J. Appl. Polym. Sci., 90, 3278 (2003). S. Rosset and H. R. Shea, J. Phys A: Appl. Phys., 110, 281 (2013). P. Lee, J. H. Lee, H. M. Lee, J. Y. Yeo, S. J. Hong, K. H. Nam, D. J. Lee, S. L. Lee, and S. H. Ko, Smart Materials and Structures, 24, 3326 (2012). T. A. Kim, H. S. Kim, S. S. Lee, and M. Park, Carbon, 50, 444 (2012). H. R. Choi, K. M. Jung, S. M Ryew, J. D. Nam, J. W. Jeon, J. C. Koo, and K. Tanie, IEEE/ASME Transaction on Mechatronics, 321, 581 (2005). Vulcanization, The Columbia Electronic Encyclopedia 6th edition NewYork: Columbia University Press, 2003. G. Kofod, S. Risse, H. Stoyanov, D. N. McCarthy, S. Sokolov, and R. Kraehnert, ACS Nano, 5, 1623 (2011). J. P. Szabo, J. A. Hiltz, C. G. Cameron, R. S. Underhill, J. Massey, B. White, and J. Leidner, SPIE, Electroactive Polymer Actuators and Devices (EAPAD), 5051, 180 (2003). J. B. Donnet and A. Vidal, J. Telechelics Advances in Polymer Science, 76, 103 (1986). L. J. Romasanta, M. Hernández, M. A. López-Manchado, and R. Verdejo, Nanoscale Research Letters, 6, 508 (2011). Y. S. Oh, K. Y. Chun, E. S. Lee, Y. J. Kim, and S. H. Baik, J. Mat. Chem., 20, 3579 (2010). C. Löwe, X. Zhang, and G. Kovacs, Advanced Engineering Materials, 7, 361 (2005). G. Kovacs, L. Düring, S. Michel, and G. Terrasi, J. Phys. A: Sensors and Actuators, 155, 299 (2009). L. D. Perez, M. A. Zuluaga, T. Kyu, and J. E. Mark, Pomymer Eng. Science, 29, 866 (2009). D. McMullan, Scanning Electron Microscopy 1928–1965. 17, 175 (1995). The Scanning electron microscopy at http://en.wikipedia.org/wiki/Scanninge lectronm icroscope.