Pengaruh Penggunaan Silica Fume Sebagai Bahan Tambah Pada Beton Alir

Authors

  • Achmad ihza Mahendra Universitas 17 Agustus 1945 Surabaya
  • Nurul Rochmah Universitas 17 Agustus 1945 Surabaya
  • Herry Widhiarto Universitas 17 Agustus 1945 Surabaya

DOI:

https://doi.org/10.55606/sscj-amik.v1i4.1577

Keywords:

Flowing Concrete, Compressive Strength, Silica Fume

Abstract

Concrete is a material that is commonly used when doing construction work today. Because concrete has several advantages when compared to other materials, such as being easy to form, resistant to weather changes, has high compressive strength, and is durable. In this study the use of Silica Fume as an additive to flow concrete has the function of improving the quality of flowing concrete. Silica Fume has an important role in affecting the chemical and mechanical properties of concrete. Judging from its chemical properties, Silica Fume geometrically fills the voids between cement materials, and causes the pore diameter to decrease and the total pore volume to decrease. Meanwhile, from its mechanical properties, Silica Fume has a pozzolanic reaction (a material containing silica/silica dioxide and alumina compounds) which reacts to the limestone released by the cement. The aim of the research is to increase the maximum compressive strength of flowing concrete by using Silica Fume added with varying percentages of 0%, 5%, 6%, 7.5%, 9%, 10.5% and 12% and using a superplasticizer of 1.5 %. From the results of the research conducted, it was found that flowing concrete with added silica fume on concrete compressive strength was able to reach 7.5% at 7 days of age of 25.91 MPa and at 28 days of concrete age was obtained at 26.19 MPa.

References

ASTM International. (1995). ASTM C 117 – 95. Standard Test Method for Materials Finer than 75-µm (No.200) Sieve in Mineral Aggregates by Washing. United States : ASTM International.

ASTM International. (1997). ASTM C 29/C 29M – 97. Standard Test Method for Bulk Density (“Unit Weight”) and Voids in Aggregate. United States : ASTM International.

ASTM International. (1997). ASTM C 566 – 97. Standard Test Method for Total Evaporable Moisture Content of Aggregate by Drying. United States : ASTM International.

ASTM International. (2001). ASTM C 127 – 01. Standarad Test Method for Density, Relative Density (Specific Gravity), and Arbsorption of Coarse Aggregate. United States : ASTM International.

ASTM International. (2001). ASTM C 128 – 01. Standard Test Method for Density, Relative Density (Specific Gravity), and Absorption of Fine Aggregate. United States : ASTM International.

ASTM International. (2001). ASTM C 136 – 01. Standard Test Method for Sieve Analysis of Fine and Coarse Aggregates. United States : ASTM International.

ASTM International. (2003). ASTM C 33 – 03. Standard Specification for Concrete Aggregates. United States : ASTM : International.

ASTM International. (2004). ASTM C 187 – 04. Standard Test Method for Normal Consistency of Hydraulic Cement. United States : ASTM International.

ASTM International. (2005). ASTM C 618 – 05. Standard Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete. United States : ASTM International.

ASTM International. (2008). ASTM C 191 – 08. Standard Test Methods for Time of Setting of Hydraulic Cement by Vicat Needle. United States ASTM International.

ASTM International. (2014). ASTM C131/C131M – 14. Standard Test Method for Resistance to Degradation of Small – Size Coarse Aggregate by Abrasion and Impact in the Los Angeles Machine. United States : ASTM International.

ASTM. (2020). C1240 Standard Specification for Silica Fume Used in Cementitious Mixtures. Annual Book of ASTM Standards, 1–7.

Rochmah, N., Sutriono, B., Beatrix, M., & Pertiwi, D. (2022). Pengaruh Abu Sekam Sebagai Substitusi Semen Pada Kuat Tekan Flowing Concrete. 10(1), 19–024.

Sebayang, S. (2011). Tinjauan Sifat-Sifat Mekanik Beton Alir Mutu Tinggi dengan Silika Fume sebagai Bahan Tambahan. Journal Rekayasa, 15(2), 131–138.

Simatupang, P. H., Nasjono, J. K., & Mite, K. G. (2017). Pengaruh Penambahan Silica Fume Terhadap Kuat Tekan. Jurnal Teknik Sipil, VI(2), 219–230.

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Published

2023-06-05

How to Cite

Achmad ihza Mahendra, Nurul Rochmah, & Herry Widhiarto. (2023). Pengaruh Penggunaan Silica Fume Sebagai Bahan Tambah Pada Beton Alir. Student Scientific Creativity Journal, 1(4), 117–126. https://doi.org/10.55606/sscj-amik.v1i4.1577