Stabilization of kaolinitic soil using crushed tile column

Kaolinitic soil is a problematic soil that causes poor carrying capacity and excessive settlement, resulting in significant damage to buildings and foundations. Therefore, soil enhancements were introduced to improve the engineering characteristics of the soil. Crushed tiles were taken from the cons...

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Main Authors: M. S. I., Zaini, Muzamir, Hasan, K. A., Masri
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2023
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Online Access:http://umpir.ump.edu.my/id/eprint/39373/1/muzamir%20mce%20journal.pdf
http://umpir.ump.edu.my/id/eprint/39373/
https://engstroy.spbstu.ru/en/article/2023.123.4/
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spelling my.ump.umpir.393732023-11-24T03:09:16Z http://umpir.ump.edu.my/id/eprint/39373/ Stabilization of kaolinitic soil using crushed tile column M. S. I., Zaini Muzamir, Hasan K. A., Masri TA Engineering (General). Civil engineering (General) Kaolinitic soil is a problematic soil that causes poor carrying capacity and excessive settlement, resulting in significant damage to buildings and foundations. Therefore, soil enhancements were introduced to improve the engineering characteristics of the soil. Crushed tiles were taken from the construction area to substitute aggregate or natural sand. Hence, the purpose of the study is to investigate the lateral load capacity of the crushed tile column on the kaolin clay at various column dimensions. Reinforced kaolin clay samples were tested via several laboratory tests, including Particle Size Distribution, Atterberg limits test, Relative Density, Compaction test, Permeability test, Unconfined Compression Test, and Unconsolidated Undrained Triaxial Test with encapsulated crushed tile with geotextile encasement. The authors investigated the effects of column diameter, height, area replacement ratio, height penetration ratio, height to column diameter ratio, volume replacement ratio, and confining pressures on the shear strength of the encapsulated crushed tile columns at a diameter of 6 mm and 8 mm and at a height of 25.33 mm, 38 mm, and 76 mm. The findings showed that using crushed tile columns at various above listed parameters can enhance the soil's shear strength up to 52.00 % at the optimal utilization of a single enveloped crushed tile column with a diameter of 6 mm and height of 76 mm. The crushed tile granular column is practical to be implemented to enhance the strength of the problematic soil. However, the limitation of utilizing this approach is that the crushed tile granular column may not be suitable for deeper soil layers. Hence, the study demonstrated the significant enhancement of the lateral load capacity of soft kaolin clay soil by utilizing crushed tile waste as a granular column. Peter the Great St. Petersburg Polytechnic University 2023-11 Article PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/39373/1/muzamir%20mce%20journal.pdf M. S. I., Zaini and Muzamir, Hasan and K. A., Masri (2023) Stabilization of kaolinitic soil using crushed tile column. Magazine of Civil Engineering, 7 (123). p. 12303. ISSN 2712-8172. (Published) https://engstroy.spbstu.ru/en/article/2023.123.4/ 10.34910/MCE.123.4
institution Universiti Malaysia Pahang Al-Sultan Abdullah
building UMPSA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang Al-Sultan Abdullah
content_source UMPSA Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
M. S. I., Zaini
Muzamir, Hasan
K. A., Masri
Stabilization of kaolinitic soil using crushed tile column
description Kaolinitic soil is a problematic soil that causes poor carrying capacity and excessive settlement, resulting in significant damage to buildings and foundations. Therefore, soil enhancements were introduced to improve the engineering characteristics of the soil. Crushed tiles were taken from the construction area to substitute aggregate or natural sand. Hence, the purpose of the study is to investigate the lateral load capacity of the crushed tile column on the kaolin clay at various column dimensions. Reinforced kaolin clay samples were tested via several laboratory tests, including Particle Size Distribution, Atterberg limits test, Relative Density, Compaction test, Permeability test, Unconfined Compression Test, and Unconsolidated Undrained Triaxial Test with encapsulated crushed tile with geotextile encasement. The authors investigated the effects of column diameter, height, area replacement ratio, height penetration ratio, height to column diameter ratio, volume replacement ratio, and confining pressures on the shear strength of the encapsulated crushed tile columns at a diameter of 6 mm and 8 mm and at a height of 25.33 mm, 38 mm, and 76 mm. The findings showed that using crushed tile columns at various above listed parameters can enhance the soil's shear strength up to 52.00 % at the optimal utilization of a single enveloped crushed tile column with a diameter of 6 mm and height of 76 mm. The crushed tile granular column is practical to be implemented to enhance the strength of the problematic soil. However, the limitation of utilizing this approach is that the crushed tile granular column may not be suitable for deeper soil layers. Hence, the study demonstrated the significant enhancement of the lateral load capacity of soft kaolin clay soil by utilizing crushed tile waste as a granular column.
format Article
author M. S. I., Zaini
Muzamir, Hasan
K. A., Masri
author_facet M. S. I., Zaini
Muzamir, Hasan
K. A., Masri
author_sort M. S. I., Zaini
title Stabilization of kaolinitic soil using crushed tile column
title_short Stabilization of kaolinitic soil using crushed tile column
title_full Stabilization of kaolinitic soil using crushed tile column
title_fullStr Stabilization of kaolinitic soil using crushed tile column
title_full_unstemmed Stabilization of kaolinitic soil using crushed tile column
title_sort stabilization of kaolinitic soil using crushed tile column
publisher Peter the Great St. Petersburg Polytechnic University
publishDate 2023
url http://umpir.ump.edu.my/id/eprint/39373/1/muzamir%20mce%20journal.pdf
http://umpir.ump.edu.my/id/eprint/39373/
https://engstroy.spbstu.ru/en/article/2023.123.4/
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score 13.235796