Research on the Strengthen of Silicone Rubber

Article Preview

Abstract:

A new kind of microsphere filler was synthesized with octyltrimethoxysilane (WD13) and tetraethoxysilane (TEOS) by sol-gel method. The morphology of the filler was measured by TEM. The so synthesized spheres were added into the silicone rubber. Both the strain-stress and the water contact angle of the silicone rubber were researched. The results showed that both the mechanical property and the hydrophobic performance of the composite were improved compared with the blank specimen. The possible strengthen mechanism of the filler was discussed. The neotype silica sphere researched in this paper could react with the silicone rubber chains which perfects the vulcanization of the silicone rubber. This kind of sphere filler exhibits many merits for usage as filler.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

377-380

Citation:

Online since:

February 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] A. Scott, R. Gupta, G.U. Kulkarni: Macromol. Chem. Phys. Vol. 211 (2010), p.1640.

Google Scholar

[2] A. D'Amore, G. D. Maria, L. Grassia, C. Natale, S. Pirozzi: J Appl Polym Sci Vol. 122 (2011), p.3758.

Google Scholar

[3] Y.H. Lin, S.W. Kang, T.Y. Wu: Appl. Therm. Engineering Vol. 29 (2009) p.573.

Google Scholar

[4] C. Zhang, K. Pal, J.U. Byeon, S.M. Han, J. K. Kim: J Appl Polym Sci Vol. 119 (2011), p.2737.

Google Scholar

[5] D. Damiron, N. Okhay, S. A. Akhrass, P. Cassagnau and E. Drockenmuller: J Polym Sci. A: Polym Chem Vol. 50 (2012), p.98.

DOI: 10.1002/pola.24991

Google Scholar

[6] E.S. Kim, T.H. Lee, S. H. Shin, J.S. Yoon: J Appl Polym Sci Vol. 120 (2011) p.831.

Google Scholar

[7] T.F. Baumann, T.V. Jones, T. Wilson, A.P. Saab, R.S. Maxwell: J Polym Sci Part A: Polym Chem Vol, 47 (2009) p.2589.

Google Scholar

[8] M.S. Zbik, R.L. Frost: J. Colloid Interface Sci. Vol. 344 (2010) p.563.

Google Scholar

[9] S. H. Yoo, L. Yee, C. Cohen: Polymer Vol. 51 (2010) p.1608.

Google Scholar

[10] C.S. Hernandez, M. J. P. Alquiza, P. Salgado and J. Cervantes: Appl. Organometal. Chem. Vol. 24 (2010), p.481.

Google Scholar

[11] V.J. Cadarso, A. Llodera, G. Villanueva, J.A. Plaza, J. Brugger, C. Domiguez: Procedia Chemistry Vol. 1 (2009) p.560.

Google Scholar

[12] J.P. H. Ortiz, T.A. Osswald: J Appl Polym Sci Vol. 119 (2011) p.1864.

Google Scholar

[13] T. Aziz, M. Waters, R. Jagger: Journal of Dentistry Vol. 31 (2003) p.67.

Google Scholar

[14] K. Siderakis, D. Agoris and S.A. Gubanski: Ieee Transactions on Power Delivery Vol. 23 (2008) p.2270.

DOI: 10.1109/tpwrd.2008.2002857

Google Scholar