Effect of Ball Milling Methods on the Properties of Quartz Sand Powder Materials from the Yangtze River

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Abstract:

In order to lay raw materials foundation for increasing the performance of insulating brick with the low grade quartz sand along the Yangtze River, the effect of ball milling methods on the properties of quartz sand powder was researched via the ball milling method in this paper. The results show the mean grain size of quartz powders are 11.25μm via a roller ball milling, the mean grain size of quartz powders are 7.37μm via a planetary ball milling, and the particle size distribution of quartz powders milled via a roller ball milling is wider than that of quartz powders milled via a planetary ball milling. The ball milling strength of planetary ball milling is higher than that of roller ball milling. The planetary ball milling use more electronic energy than the roller ball milling in the same time. The output of powder using the roller ball milling is more than that of powder using the planetary ball milling. when the raw materials of quartz building materials is low particle size remand, and the output is more, the roller ball milling methods is suitable to prepare the raw materials of quartz building materials.

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47-51

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] K. Koseoglu, M. Polat and H. Polat: J. Hazard. Mater. Vol. 176 (2010), p.957.

Google Scholar

[2] A. Mueller, S. N. Sokolova and V. I. Vereshagin: Cons. Build. Mater. Vol. 22 (2008), p.703.

Google Scholar

[3] K.B. Tynyshtykbaev, K.T. Igibaev and D.K. Suleev: Mater. Sci. Eng. B. Vol. 134 (2006), p.296.

Google Scholar

[4] C. A. Luz, J.C. Rocha, M. Cheriaf and J. Pera: Cons. Build. Mater. Vol. 23 (2009), p.595.

Google Scholar

[5] A. Christogerou, T. Kavas and Y. Pontikes: Ceram. Int. Vol. 35 (2009), p.447.

Google Scholar

[6] J.G. Song and F. Wang: J. Ceram. Process. Res. Vol. 12 (2011), p.357.

Google Scholar

[7] A. Kritikaki and A. Tsetsekou: J. Eur. Ceram. Soc. Vol. 29 (2009), p.1603.

Google Scholar

[8] L.B. Garrido, M.P. Albano and K.P. Plucknett: J. Mater. Process. Tech. Vol. 209 (2009), p.590.

Google Scholar

[9] J. G. Song and F. Wang: Lect. Note. Inform. Tech. Vol. 15 (2012), p.473.

Google Scholar

[10] W. T. Tsai, J. M. Yang and H. C. Hsu: Micropor. Mesopor. Mat. Vol. 111 (2008), p.379.

Google Scholar

[11] K. Kiangi and M. H. Moys: Powder Technol. Vol. 187 (2008), p.79.

Google Scholar