Comparison of the Use of Cement, Gypsum, and Limestone on the Improvement of Clay through Unconfined Compression Test

https://doi.org/10.22146/jcef.43792

Ika Puji Hastuty(1*)

(1) Universitas Sumatera Utara
(*) Corresponding Author

Abstract


Soil stabilization is an effort to improve soil properties by adding additives in the soil to increase the soil strength and maintain the shear strength of the soil. There are many materials which can be used as stabilizers. The materials used in this study were cement, gypsum, and limestone, then the compressive strength values were compared by using the Unconfined Compression Test (UCT). The mixture combinations used in this study were 1% to 10% of cement, gypsum, and limestone on clay by curing for 14 days. The compressive strength value resulted from the unconfined compression test on the original soil sample was 1.4 kg/cm2. The original soil was classified as moderately sensitive soil because the sensitivity value of the original soil was 2. After being stabilized with various mixtures of cement, gypsum, and limestone, soil stabilization using cement obtained the maximum unconfined compressive strength value is 3.681 kg/cm2 in the mixture of 10%. Similarly, the soil stabilization using limestone and gypsum also obtained its maximum unconfined compressive strength value in the mixture of 10% is 3.307 kg/cm2 and 2.975 kg/cm2, respectively.

Keywords


Clay, Improvement of Soil, cement, Gypsum, Limestone, Unconfined Compression Test

Full Text:

PDF


References

Bowles, J. (1979) Physical and Geotechnical Properties of Soils. McGraw-Hill, Tokyo.

Das, B. M. (2014) Advanced Soil Mechanics 4th edition, CRC press, Taylor & Francis Group. doi: 10.1029/EO066i042p00714-02.

Lambe, T. W. and Whitman, R. V. (1969) Soil mechanics. New York: Wiley.

Lubis, A. S. et al. (2018) ‘Estimation of Compaction Parameters Based on Soil Classification’, in IOP Conference Series: Materials Science and Engineering. doi: 10.1088/1757-899X/306/1/012005.

Roesyanto et al. (2018) ‘Clay stabilization by using gypsum and paddy husk ash with reference to UCT and CBR value’, in IOP Conference Series: Materials Science and Engineering. doi: 10.1088/1757-899X/309/1/012026.

Silitonga, E., Levacher, D. and Mezazigh, S. (2010) ‘Utilization of fly ash for stabilization of marine dredged sediments’, European Journal of Environmental and Civil Engineering, 14(2), pp. 253–265. doi: 10.1080/19648189.2010.9693216.

Suardi, E. (2005) ‘Kajian Kuat Tekan Bebas Tanah Lempung Yang Distabilisasi dengan Additive Semen dan Kapur’, Poly Rekayasa Teknik Sipil.

Utami.GS (2014) ‘Clay Soil Stabilization with lime effect the value CBR and swelling’, in ARPN J Eng Appl Sci, pp. 9 1744–8:



DOI: https://doi.org/10.22146/jcef.43792

Article Metrics

Abstract views : 3373 | views : 3910

Refbacks

  • There are currently no refbacks.




Copyright (c) 2022 The Author(s)


The content of this website is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
ISSN 5249-5925 (online) | ISSN 2581-1037 (print)
Jl. Grafika No.2 Kampus UGM, Yogyakarta 55281
Email : jcef.ft@ugm.ac.id
Web Analytics JCEF Stats