Fabrication and Characterization the Properties of Decorative Tile from White Cement and Waste Glass Powder

Author:

Thongchai Tanikan1,Poolsawat Krisana1

Affiliation:

1. Naresuan University

Abstract

This research mainly focused on the properties of decorative white cement tiles which made from waste glass and white cement. The ratio of waste glass powder and white cement were studied at 10 : 90, 15 : 85, 20 : 80, 30 : 70, 40 : 60, 50 : 50, 60 : 40 and 70 : 30 by using water content at 30 %wt. All components were mixed and cast into the mould. Decorative white cement tiles were curing at 14, 21 and 28 days. In order to characterize physical and mechanical properties, all tiles were measured density, water absorption and compressive strength. According to the results, it can be obviously seen that density increased and water absorption decreased with increasing waste glass powder content. The highest compressive strength of around 36.5 MPa was found at 20 %wt of waste glass powder. However, compressive strength decreased with increasing waste glass powder over 20 %wt (waste glass powder 20: white cement 80). It was found that the lowest compressive strength of around 30.58 MPa was found at 70 %wt of waste glass powder. Curing time also affected properties as it was found that increasing curing time to 28 days resulted in increasing of density and compressive strength. In order to study how long does essential oil last on decorative white cement tiles, the orange essential oil at 1, 5 and 10 %wt were added into the white cement paste by using waste glass powder : white cement at 20 : 80 with 30 %wt of water. Decorative white cement tiles were smelled by 30 people every morning for 30 days and it can be found that 10 %wt of orange essential oil last longest on the decorative white cement tiles with 22 days.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference24 articles.

1. R. Kleanmak: Ceramic Industry Department of Primary Industries and Mines (2004).

2. S. Sirisunthorn: Ceramic Industry Status in Thailand: Ceramic Journal Vol. 14 (2010), pp.43-53.

3. P. Pimkhaokhum, in: Ceramics, Chula Press Publishing, Bangkook, Thailand (2004).

4. S. M. Hama, A. S. Mahmoud, and M. M. Yassen: Flexural behavior of reinforced concrete beam incorporating waste glass powder: Structures Vol. 20 (2019), pp.510-518.

5. Information on http://www.mtec.or.th/th/research/gsat/glassweb/gsat.asp.

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