KUAT TEKAN BETON AWAL TINGGI DENGAN VARIASI PENAMBAHAN SUPERPLASTICIZER DAN SILICA FUME

Authors

  • Hakas Prayuda Universitas Muhammadiyah Yogyakarta
  • Fadillawaty Saleh Universitas Muhammadiyah Yogyakarta

DOI:

https://doi.org/10.22219/jmts.v17i1.5951

Keywords:

Compressive Strength, High Early Age, Silica Fume, Superplasticizer

Abstract

Concrete is one of the construction materials of combination between cement, fine aggregate, coarse aggregate, and water mixed into one solid mass. The work of concrete making can be added a mineral additive as well as chemical additive (admixture) for the interest in construction work. In some cases construction work is desirable for concrete to produce optimum strength during the early age of the concrete so that the timing of concreting work can be shortened. The strength of concrete at the early age can be increased with added mineral (additive) and chemical (admixture) materials. This research made a mixture of concrete with 7 variations of mixture with total specimen 54 sample of cylindrical size with diameter 15 cm and height 30 cm. Tests conducted in the form of testing workability and compressive strength of concrete at the age of 3 days, 7 days and 28 days. Through this study obtained the right composition to make concrete with a high early age of compressive strength.

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References

Badan Standarisasi Nasional. (1990). SK SNI 03-1974-1990: Metode Pengujian Kuat Tekan Beton. Jakarta: Departement Pekerjaan Umum.

Badan Standarisasi Nasional. (2000). SNI-03-2834-2000: Tata Cara Pembuatan Rencana Campuran Beton Normal. Jakarta: Departemen Pekerjaan Umum.

Bhalla, N., Sharma, S., Sharma, S., Siddique, R. (2018). Monitoring Early Age Setting of Silica fume Concrete using Wave Propagation Techniques. Journal Construction and Building Materials, 153, 802-815.

Ikhsan, M.N., Prayuda, H., Saleh, F. (2016). Pengaruh Penambahan Pecahan Kaca Sebagai Bahan Pengganti Agregat Halus dan Penambahan Fiber Optik Terhadap Kuat Tekan Beton Serat. Jurnal Ilmiah Semesta Teknika, 19 (2), 148-156.

Karein, S. M. M., Ramezanianpour, A.A., Ebadi, T., Isapour, S. (2017). A New Approach for Application of Silica Fume in Concrete: Wet Granulation. Journal Construction and Building Materials, 157, 573-581.

Mazloom, M., Ramezanianpour, A.A., Brooks, J.J., (2004). Effect of Silica Fume on Mechanical Properties of High Strength Concrete. Cement and Concrete Composite, 26, 347-357.

Mulyono, T. (2003). Teknologi Beton. Yogyakarta: Andi Offset.

Pertiwi, H. (2011). Pengaruh Bahan Tambah Berbasis Gula Terhadap Kuat Tekan dan Modulus Elastisitas Beton. Tugas Akhir jurusan Teknik Sipil. Universitas Sebelas Maret. Surakarta.

Rostami, M., Behfarnia, K. (2017). The Effect of Cilica Fume on Durability of Alkali Activated Slag Concrete, Journal Construction and Building Materials, 134, 262-268.

Samekto, W., Rahmadiyanto, C. (2001). Teknologi Beton. Kanisius. Yogyakarta.

Shen, D., Shi, X., Zhu, S., Duan, X., Zhang, J. (2016). Relationship between Tensile Young’s Modulus and Strength of Fly Ash High Strength Concrete at Early Age. Journal Construction and Building Materials, 123, 317-326.

Tjokrodimuljo, K. (2007). Teknologi Beton. Yogyakarta: Biro Penerbit Teknik Sipil Keluarga mahasiswa Teknik Sipil dan Lingkungan, Universitas Gadjah Mada.

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Published

2019-03-01

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