Impact of Swelling Indices of Sokoto Clays on the Moulding Properties of the Clays in Sand Mixtures

Abstract

The Impact of Swelling Indices of Sokoto Clays on the Moulding Properties of the Clays in Sand Mixtures was investi- gated. Four clays (labeled A, B, C, D) from different locations in Sokoto state of Nigeria were sampled. The sampling method was that for each deposit five samples were taken at different positions and then mixed together. At the labora- tory they were washed to remove organic matter and then dried at 110°C in the oven. A laboratory ball mill was used to grind the dried clays. Each of the clay was then sampled for the determination of its swelling index. The determination of the moulding properties of the clays then followed. Only green compression strength, dry compression strength and green permeability, moulding properties were determined. The analysis of the result revealed that clay B has the highest green and dry strength values it had the highest green compression strength of 71.7 KN/m2 and the highest dry com- pression strength of 3225.75 KN/m2. Clay B also has the highest swelling index of 60% and very high degree of expan- siveness when compared to the other three clays. Clay B was followed by clay A with swelling index of 25%; the clay has high green and dry compression strength and a moderate degree of expansiveness. The inability of clay D with swelling index of 40% to be the next clay to clay B which has the highest swelling index of 60% among the four clays in terms of good moulding properties is an indication that high swelling index does not always mean good moulding properties in clay binders.

Share and Cite:

I. Paul, S. Mohammed and N. Bem, "Impact of Swelling Indices of Sokoto Clays on the Moulding Properties of the Clays in Sand Mixtures," Journal of Minerals and Materials Characterization and Engineering, Vol. 11 No. 10, 2012, pp. 1050-1054. doi: 10.4236/jmmce.2012.1110109.

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] Raw Materials Research and Development Council (RMRDC), “Technical Brief on Minerals in Nigeria, Bentonite,” Raw Materials Research and Development Coun- cil, Abuja, 1999, pp. 5-10.
[2] I. A. Paul, S. A. Yaro and V. S. Aigbodion, “Beneficiation of Bende Ameki Bentonite Clay,” Ife Journal of Technology, Vol. 15, No. 2, 2006, pp. 93-98.
[3] A. J. Clegg, “Precision Casting Processes,” Pergamon Press, Oxford, 1991.
[4] I. A. Paul and O. O. Olubajo, “Investigation of Bende Ameki Clay’s Foundry Properties and its Suitability as a Binder For Sand Casting,” NMS Proceedings of the 21st Annual conference Enugu-2002, Enugu, 26-30 October 2002, pp. 20-30.
[5] S. Mittal and J. P. Shukla, “Soil Testing for Engineers,” 5th Edition, Khanna Publishers Nai Sarak, Delhi, 2008.
[6] I. A. Paul, “Foundry Raw Materials for sand casting and testing Procedures,” A2P2 Transcendent Engineering, Jos, 2012.
[7] P. R. Beeley, “Foundry Technology,” 4th Edition, Butterworth Scientific, London, 1982.
[8] R. W. Heine, C. R. Loper Jr. and P. C. Rosenthal, “Principles of Metal Casting,” 2nd Edition, Tata Mcgraw Hill Publishing Company Limited, New Delhi, 1967.
[9] J. R. Brown, “Foseco Foundryman’s Handbook,” 10th Edition, Butterworth Heinemann Ltd., Linacre House, Jordan Hill Oxford, 1994.
[10] NMDC, “Databank of Raw Materials for the Metallurgical Industry,” National Etallurgical Development Centre, Jos, 2008, p. 69.
[11] I. A. Paul, A. Johnson, A. Bam and E. E. Anbua, “Investigation of the Properties of a Nigerian and a Liberian Bentonite for Foundry Application,” Continental Journal of Engineering Sciences, Vol. 4, No. 2, 2009, pp. 6-11.
[12] R. K. Jain, “Production Technology,” Khanna Publishers, Delhi, 2009.
[13] I. A. Paul, S. A. Yaro and V. S. Aigbodion, “Application of Multiple Regression Model to the Study of Foundry Clay bonded Sand Mixtures,” Journal of Information and Communication and Computing Technologies, Vol. 2 No. 1, 2006, pp. 160-168.
[14] J. A. Omotoyinbo and O. O. Oluwole, “Working Properties of Some Selected Refractory Clay Deposits in South Western Nigeria,” Jessie Mae Monroe Elementary School, Vol. 7, No. 3, 2008, pp. 233-245.
[15] K. B. Rundman, “Metal Casting,” Department of Material Science and Engineering Michigan Technology University, Michagan, 2000, pp. 17-19
[16] C. O. Nwajagu, “Foundry Theory and Practice,” ABC Publishers, Enugu, 1994.

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.