Copyright (c) 2013 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Anti-scratch Properties of Clearcoat after Application of Polymer Coated Silica Ball
Corresponding Author(s) : Seung Kyu Park
Asian Journal of Chemistry,
Vol. 25 No. 10 (2013): Vol 25 Issue 10
Abstract
Organic/inorganic hybrid materials such as core-shell hybrid nanocomposites have attracted great interest in automotive industry since they can be adjustable through the control of functionality of the components and exhibit markedly improved durability on outdoor weather and scratch. We have synthesized nano silica ball, g-methacryloxy propyl trimethoxy silane modified nano silica ball (NSB-g-MPS), nano silica ball core-polymethylmethacrylate shell hybrid complex (NSB-PMMA) and nano silica ball core-poly (MMA-AN- styrene) shell structured materials (NSB-MAS) and applied to conventional clearcoat and compared the anti-scratch properties by nano scratch tester.
Keywords
Download Citation
Endnote/Zotero/Mendeley (RIS)BibTeX
- S.M. Noh, J.W. Lee, J.H. Nam, J.M. Park and H.W. Jung, Prog. Org. Coat., 74, 192 (2012).
- K. Adamsons, Prog. Org. Coat., 45, 69 (2002).
- S.S. Pathak and A.S. Khanna, in: High-performance Organic Coatings, Edited by Anand S. Khanna, CRC Press (ISBN 978-1-4200-7969-2), USA Woodhead Publishing Limited (ISBN 978-1-84569-265-0), Cambridge England B.A. Rozenberg and R. Tenne, R., pp. 407-428 (2008).
- K. Adamsons, G. Blackman, B. Gregorovich, L. Lin and R. Matheson, Prog. Org. Coat., 34, 64 (1998).
- A. Jurgetz, Metal Finishing, 93, 53 (1995).
- B.A. Rozenberg and R. Tenne, Prog. Polym. Sci., 33, 40 (2008).
- J. Chen and M.D. Soucek, Eur. Polym. J., 39, 505 (2003).
- F. Bauer, V. Sauerland, H.J. Glasel, H. Ernst, M. Findeisen, E. Hartmann, H. Langguth, B. Marquardt and R. Mehnert, Macromol. Mater. Eng., 287, 546 (2002).
- M.S. Lee and N.J. Jo, J. Sol-Gel Sci. Tech., 24, 175 (2002).
- H. Zhang, H. Zhang, L. Tang, Z. Zhang, L. Gu, Y. Xu and C. Eger, Tribol. Int., 43, 83 (2010).
- Z. Zhang, J.L. Yang and K. Friedrich, Polymer, 45, 3481 (2004).
- S.B. Yoon, J.Y. Kim, J.H. Kim, Y.J. Park, S.K. Park and J.S. Yu, J. Mater. Chem., 17, 1758 (2007).
- B.G. Kim, G. Park, Y. Lee, S.M. Noh, J. Lee and S.K. Park, Appl. Chem. Eng., 21, 670 (2010).
- H.C. Kim, S.M. Noh and S.K. Park, J. Appl. Polym. Sci., 127, 1653 (2013).
- H.C. Kim, K.H. Choi and S.K. Park, Asian J. Chem., 24, 4185 (2012).
References
S.M. Noh, J.W. Lee, J.H. Nam, J.M. Park and H.W. Jung, Prog. Org. Coat., 74, 192 (2012).
K. Adamsons, Prog. Org. Coat., 45, 69 (2002).
S.S. Pathak and A.S. Khanna, in: High-performance Organic Coatings, Edited by Anand S. Khanna, CRC Press (ISBN 978-1-4200-7969-2), USA Woodhead Publishing Limited (ISBN 978-1-84569-265-0), Cambridge England B.A. Rozenberg and R. Tenne, R., pp. 407-428 (2008).
K. Adamsons, G. Blackman, B. Gregorovich, L. Lin and R. Matheson, Prog. Org. Coat., 34, 64 (1998).
A. Jurgetz, Metal Finishing, 93, 53 (1995).
B.A. Rozenberg and R. Tenne, Prog. Polym. Sci., 33, 40 (2008).
J. Chen and M.D. Soucek, Eur. Polym. J., 39, 505 (2003).
F. Bauer, V. Sauerland, H.J. Glasel, H. Ernst, M. Findeisen, E. Hartmann, H. Langguth, B. Marquardt and R. Mehnert, Macromol. Mater. Eng., 287, 546 (2002).
M.S. Lee and N.J. Jo, J. Sol-Gel Sci. Tech., 24, 175 (2002).
H. Zhang, H. Zhang, L. Tang, Z. Zhang, L. Gu, Y. Xu and C. Eger, Tribol. Int., 43, 83 (2010).
Z. Zhang, J.L. Yang and K. Friedrich, Polymer, 45, 3481 (2004).
S.B. Yoon, J.Y. Kim, J.H. Kim, Y.J. Park, S.K. Park and J.S. Yu, J. Mater. Chem., 17, 1758 (2007).
B.G. Kim, G. Park, Y. Lee, S.M. Noh, J. Lee and S.K. Park, Appl. Chem. Eng., 21, 670 (2010).
H.C. Kim, S.M. Noh and S.K. Park, J. Appl. Polym. Sci., 127, 1653 (2013).
H.C. Kim, K.H. Choi and S.K. Park, Asian J. Chem., 24, 4185 (2012).