The relationship between processing route and suspension stability in ZrO2-H2O-PANH4 system was investigated through rheology study. The work showed that two suspensions with identical PANH4 concentration and final solution condition but prepared by different routes differed greatly in stability. This behavior is attributed to their different distribution state of PANH4 on ZrO2 surface that is determined by the adsorption affinity depending on pH condition in solution. High affinity at pH 5.0 induces a nonuniform distribution of soluble PAA- (polyacrylicacid) on particle surface, which can flocculate the suspension strongly, while low affinity at pH 9.0 induces an uniform distribution of polymer so that the higher stabilization can be achieved. A simple mathematical model was used to account for the observed results.
参考文献
[1] | R W Cahn;P Haasen;E J Kramer.[J].Materials Science and Technology,1994(11):84. |
[2] | P C Heimenz.Principles of Colloid and Surface Chemistry[M].Marcel Dekker,New York,1997 |
[3] | J A Lewis .[J].Journal of the American Ceramic Society,2000,83:2341. |
[4] | J Cesarano Ⅲ;I A Aksay;A Bleier .[J].Journal of the American Ceramic Society,1988,71:250. |
[5] | Z Chen;T A Ring;J Lemaitre.Ceramic Powder Science Ⅳ[M].American Ceramic Society,Westerville,1991:257. |
[6] | Y Hirate;A Nishimoto;Y Ishihara .[J].Journal of the Ceramic Society of Japan,1992,100:983. |
[7] | J Cesarano Ⅲ;I A Aksay .[J].Journal of the American Ceramic Society,1988,71:1062. |
[8] | Z C Chen;T A Ring;J Lemaitre .[J].Journal of the American Ceramic Society,1992,75:3201. |
[9] | L C Guo;Y Zhang;N Uchida .[J].Journal of the European Ceramic Society,1997,17:345. |
[10] | L C Guo.Surface and Colloidal Chemistry in Processing of Advanced Alumina Ceramics[M].Nagaoka University of Technology,Japan,1998 |
[11] | Denghao LI;Lucun GUO .[J].J Chin Cerem Soc,2004,32:80. |
[12] | N Casson;C C Mill.Rheology of Disperse Systems[M].Pergamon,New York,1959 |
[13] | L C Guo;Y Zhang;N Uchida .[J].Journal of the American Ceramic Society,1998,81:549. |
[14] | M J Edirisinghe;H M Shaw;K L Tomkins .[J].Ceramics International,1992,18:193. |
[15] | J C Chang;F F Lange;D S Pearson .[J].Journal of the American Ceramic Society,1994,77:19. |
[16] | B J Briscoe;A U Khan;P F Luckham .[J].Journal of the European Ceramic Society,1998,18:2169. |
[17] | L Bergstrom.[M].New York,1994:105. |
[18] | R J Hunter .[J].Advances in Colloid and Interface Science,1982,17:197. |
[19] | Y Q Liu;L GaoMater .[J].Chemical Physics,2002,78:480. |
[20] | Z W Zhou;P J Scales;D V Boger .[J].Chemical Engineering Science,2001,56:2901. |
[21] | F Q Tang;L Yu X X Huang;J K Guo.[J].Nanostructured Materials,1999(11):441. |
[22] | F F Lange .[J].Journal of the American Ceramic Society,1989,72:3. |
[23] | A A Zaman;R Tsuchiya;B M Moudgil .[J].Journal of Colloid and Interface Science,2002,256:73. |
[24] | Z C Chen;T A Ring;J Lemaitre .[J].Journal of the American Ceramic Society,1992,75:3201. |
[25] | L Dupont;A Foissy;R Mercier;B.Mottet .[J].Journal of Colloid and Interface Science,1993,161:455. |
[26] | R Hogg;T W Healy;D W Fuerstenau .[J].Transactions of the Faraday Society,1966,62:1638. |
[27] | H Ohshima;T W Healy;L R White .[J].Journal of Colloid and Interface Science,1982,89:484. |
[28] | J N Israelachvili.Intermolecular and Surface Forces[M].Academic Press,London,1992 |
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