Impact of Moisture Variation on Some Foundry Properties of Fori Silica Sand
- 1 Engineering Material Research Department, Nigerian Building and Road Research Institute, Abuja, Nigeria
- 2 Engineering Material Research Department, Nigerian Building and Road Research Institute, Abuja, Nigeria
- 3 Department of Automobile Engineering, Abubakar Tafawa Balewa University, Bauchi, Nigeria
- 4 Engineering Material Research Department, Nigerian Building and Road Research Institute, Abuja, Nigeria
Abstract
Moulding Sand for metal casting is usually sourced from either natural deposit or synthetic mix of refractory sand grain binder and moisture. Each of the mix constituent is important in determining the characteristics of sand. The binding agent is responsible for bendability thereby determining the size of voids within the sand grain, while moisture level determines the plasticity of the foundry sand. Tests using American Foundry Society (AFS) Standard were followed in carrying out the experiment on Fori sand deposit to determine its suitability for foundry use. The sand was collected from the river bank of Fori, in Fori Community, Maiduguri, Borno State. The experimental test equipment includes: laboratory sand mixer, sand rammer, universal strength testing machine, permeability-meter, oven, mouldability machine, and as well as quick moisture teller. The chemical composition of the materials was carried out using atomic absorption spectrophotometer (AAS) model PG990AFG. The silica content in the material sample is about 78.65%, and with the traces of other elements, such as CaO (1.07%), Fe 2 O 3 (0.76%), Al 2 O 3 (15.81%), MgO (1.01%), TiO 2 (2.21%), K 2 O (3.87%), and Na 2 O (1.16%), respectively. These percentages are within acceptable limits. The results of the physical properties revealed that the sand sample has clay content of 15.32% which is above the standard range of 10% - 12% recommended for natural moulding sands required for producing good quality castings. Other foundry properties of Forinatural moulding sand conducted include “moisture content” in the following ranges of percentages, 7.6%, 6.5%, 5.8%, 4.2% and 2.9% with the corresponding value of green compressive strength of (43.95, 53.47, 69.56, 68.21 and 61.16 KN/m 2 ), dry compressive strength (93.50, 96.52, 105.50, 146.50 and 152.49 KN/m 2 ), and permeability No. of 340, 390, 410, 430 and 440 respectively. It is clear from the test that, the lower the moisture content, the higher the dry compressive strength of the materials. The refractoriness value of the materials is 1400 ℃. The results of the physical and other foundry properties carried out show that Forisilica sand is suitable for casting non-ferrous alloys like bronze, brass and aluminium, and cast iron.
- Rao, T.V. (2003) Metal Casting: Principle and Practice. New Age International, London, 15-26.
- American Foundry Men Society (AFS) (1989) Mould and Core Testing Handbook. 2nd Edition, Procedure 113, Foseco Ltd., Permgamon Press, Oxford, England, 74-78.
- Yekinni, A.A., Bello, S.K., Animasaun, L.A. and Olaiya, K.A. (2015) Assessment of Mechanical Properties of Foundry Moulding Sands. International Journal Engineering and Industrial Research, 4, 365-372.
- Gana, A. and Bala, K.C. (2018) Characterization of Gbara Sand for Foundry Application. Proceedings of the 31st International Conference of the Nigerian Institution of Mechanical Engineering, Minna, Nigeria, October 2018, 192-202.
- Ikebudu, K.O., Onyegirim, S.K. and Udeorah, P.I. (2021) Effect of Green Sand Mixture with Dextrin Additives on Mechanical Properties of Aluminum 6351. Global Journal of Engineering and Technology Advances, 6, 131-141. https://doi.org/10.30574/gjeta.2021.6.2.0013
- Brown, J.R. (1994) FOSECO Foundry Man’s Handbook. 10th Edition, Pergamon Press, Oxford, 28-55.
- Ihom, A.P., Agunsoye, J., Anbua, E.E. and Ogbodo, J. (2011) Effects of Moisture Content on the Foundry Properties of Yola Natural Sand. Leonardo Electronic Journal of Practice Technologies, 9, 85-96.
- Mahmoud, L.U., Apeh, F.I., Shuaibu, S. and Isheni, Y. (2016) Application of Gwange Natural Sand as Foundry Moulding Material. American Scientific Research Journal for Engineering, Technology and Sciences, 20, 148-156.
- Ihom, A.P. and Offiong, A. (2014) Modelling of the Effect of Moulding Variable Parameters on some Properties of Clay-Bonded Sand. International Journal of Scientific and Engineering Research, 5, 1561-1571.
- Ademoh, N.A. (2008) Evaluation of the Foundry Properties of River Niger Sand behind Ajaokuta Steel Company Limited, Ajaokuta, Nigeria. American-Eurasian Journal of Scientific Research, 3, 75-83.
- Ademulegun, F. (2008) Manufacturing Processes. Tess-Tech Educational Publisher, Ikeja, 151-159.
- Sinha, K.P. and Goel, D.B. (1991) Foundry Technology. Sixth Edition, Standard Publishers Distributors, Standard, 31-40.
- National Metallurgical Development Centre (NMDC) (2008) Jos Data Bank of Raw Materials for the Metallurgical Industry. 68.
- Yekinni, A.A. and Bello, S.K. (2013) Investigation and Comparative Analysis of Clay Content, Grain Size and Grain Size Distribution of Foundry Moulding Sands. International Journal for Management Science and Technology (IJMST), 1, 1-22.