Home Physical Sciences Studies on NBR-ZDMA-OMMT Nanocomposites Prepared by Reactive Mixing Intercalation Method
Article
Licensed
Unlicensed Requires Authentication

Studies on NBR-ZDMA-OMMT Nanocomposites Prepared by Reactive Mixing Intercalation Method

  • L. Liu , Y. Luo , D. Jia and B. Guo
Published/Copyright: May 2, 2013
Become an author with De Gruyter Brill

Abstract

Two kinds of nanocomposites of nitrile-butadiene rubber (NBR), zinc methacrylate (ZDMA) and organomontmorillonite (OMMT), NBR-ZDMA-HMMTand NBR-ZDMA-USMMT, were prepared by the reactive mixing intercalation method with ZDMA and two kinds of organomontmorillonite, hexadecyltrimethylammonium bromide modified montmorillonite (HMMT) and unsaturated chemical modified montmorillonite (USMMT). The structure and properties of the nanocomposites were investigated by X-ray diffraction, transmission electron microscopy, differential scanning calorimetry and determination of crosslinking density and mechanical properties. The results showed that the interlayer galleries of HMMT and USMMT were enlarged as ZDMA polymerized in situ in rubber matrix and between the interlayer of the silicates. The layered silicates were dispersed disorderly in rubber matrix at a nanometer level. The crosslinking density of the NBR vulcanizates was increased by the addition of ZDMA and HMMT or USMMT. The glass transition temperatures of the NBR-ZDMA-OMMT nanocomposites were higher than that of the neat NBR. The mechanical properties of the NBR-ZDMA-HMMTand NBR-ZDMA-USMMT nanocomposites are remarkably superior to those of the neat NBR vulcanizate.


Mail address: D. Jia, College of Material Science and Engineering, South China University of Technology, Guangzhou, 510640 China E-mail:

References

1 Nishimura, K., Saito, T., Asada, M.: Paper presented at the SAE Int. Cong. & Exp., Detroit, MI (1989).Search in Google Scholar

2 Costin, R., Nagel, W., Ekwall, R.: Rubb. Chem. Technol.64, p. 152 (1991).10.5254/1.3538548Search in Google Scholar

3 Medalia, A. I., Alesi, A. L., Mead, J. L.: Rubb Chem Technol.65, p. 154 (1992).10.5254/1.3538597Search in Google Scholar

4 Nagata, N., Sato, T., Fujii, T., Saito, Y.: J. Appl. Polym. Sci. Appl. Polym. Symp.53, p. 103 (1994).Search in Google Scholar

5 Yuan, X. H., Zhang, Y., Peng, Z. L., Zhang, Y. X.: J. Appl. Polym. Sci.84, p. 1403 (2002).10.1002/app.10323Search in Google Scholar

6 Nagata, N., Sato, K., Fujii, T., Saito, Y.: J. Appl. Polym. Sci.53, p. 103 (1994).Search in Google Scholar

7 Kojima, Y., Fukumori, K., Okada, A., Kurachi, T.: J. Mater. Sci. Lett.12, p. 889 (1993).10.1007/BF00455608Search in Google Scholar

8 Wang, Y. Z., Zhang, L. Q., Tang, C. H., Yu, D. S.: J. Appl. Polym. Sci.78, p. 1879 (2000).10.1002/1097-4628(20001209)78:11<1879::AID-APP50>3.0.CO;2-1Search in Google Scholar

9 Zhang, L. Q., Wang, Y. Z., Wang, Y. Q., Sui, Y., Yu, D. S.: J. Appl. Polym. Sci.78, p. 1873 (2000).10.1002/1097-4628(20001209)78:11<1873::AID-APP40>3.0.CO;2-8Search in Google Scholar

10 Wang, S. J., Long, C. F., Wang, X. Y., Li, Q., Qi, Z. N.: J. Appl. Polym. Sci.69. p. 1557 (1998).10.1002/(SICI)1097-4628(19980822)69:8<1557::AID-APP10>3.0.CO;2-SSearch in Google Scholar

11 Wu, Y. P., Zhang, L. Q., Wang, Y. Q., Liang, Y., Yu, D. S.: J. Appl. Polym. Sci.82, p. 2842 (2001).10.1002/app.2138Search in Google Scholar

12 China Patent CN 1397572A (2003) Jia, D. M., Luo, Y. F., Liu, L., Zheng, Z. Y..Search in Google Scholar

13 Liu, L., Luo, Y. F., Zhang, F., Huang, M. Y., Jia, D. M.: China Synth. Rubb. Ind.25, p. 262 (2002).Search in Google Scholar

Received: 2004-2-27
Accepted: 2004-10-25
Published Online: 2013-05-02
Published in Print: 2004-12-01

© 2004, Carl Hanser Verlag, Munich

Downloaded on 15.2.2026 from https://www.degruyterbrill.com/document/doi/10.3139/217.1851/html
Scroll to top button