PENGUJIAN AWAL AGREGAT KASAR, AGREGAT HALUS, SEMEN, DAN AIR: FONDASI PENELITIAN BETON BERKUALITAS

Firmanilah Kamil

Sari


Penelitian ini bertujuan untuk mengetahui nilai hasil pengujian awal dari setiap material yang akan digunakan dalam campuran beton. Pengujian awal pada komponen-komponen beton ini mencakup berbagai parameter kunci yakni pengujian kadar air, berat jenis, berat isi, analisa saringan, kadar lumpur, pengujian waktu ikat, dan TDS. Metode yang dilakukan adalah observasi. Hasil penelitian tentang pengujian awal yang dilakukan pada agregat kasar didapatkan nilai kadar air  1,14%, berat isi padat 1,56 kg/cm3, berat isi gembur 1,43 kg/cm3, berat jenis 2,815, penyerapan air 4,05 %, modulus kehalusan 8,24, dan kadar lumpur 0,42 %. Sedangkan hasil pengujian pada agregat halus didapatkan nilai kadar air  8,05%, berat isi padat 1,55 kg/cm3, berat isi gembur 1,44 kg/cm3, berat jenis 2,09, penyerapan air 3,55 %, modulus kehalusan 5,61, dan kadar lumpur 0,97 %. Pengujian waktu ikat dilakukan hingga 105 menit dengan penurunan 2,5 mm. Nilai TDS air rata-rata adalah 179 mg/L.

 

Keyword: Pengujian Awal, Agregat, Semen.

 

Teks Lengkap:

PDF

Referensi


Akbarnezhad, A., Ong, K. C. G., Zhang, M. H., & Tam, C. T. (2014). Effect of incorporation of microfiller on mechanical properties of concrete with different binders. Construction and Building Materials, 68, 488-500.

Akhtar, N., & de Brito, J. (2019). A comprehensive review on the effects of the chemical admixtures on the properties of recycled aggregate concrete. Resources, Conservation and Recycling, 148, 35-49.

Bilodeau, A., & Duchesne, J. (2018). Use of palm oil mill waste as lightweight aggregate for production of non-structural concrete. Waste Management, 72, 35-43.

Djerbi, T., Kaci, A., & Houari, H. (2018). Study of thermal properties of palm oil shell concrete. Energy Procedia, 157, 97-102.

Garcia, S., Rodriguez, J., & Martinez, L. (2019). Influence of Aggregate Properties on Concrete Strength: A Comparative Study. Construction Science Review, 22(4), 256-268.

Indraratna, B., Nimbalkar, S., & Christie, D. (2017). Waste aggregates in railway ballast: A laboratory study. Construction and Building Materials, 136, 340-350.

Johnson, E. L. (2020). A Comparison of Traditional and Modern Aggregate Testing Methods. Construction Materials Research, 45(2), 78-92.

Johnson, M. J., & Williams, P. C. (2018). Importance of Aggregate Quality Testing in Sustainable Construction. Journal of Sustainable Engineering, 10(3), 123-135.

Kamil, F., Setiawan, A., & Purnomo, J. (2023). Perencanaan Perkerasan Kaku (Rigid Pavement) pada Kerusakan Jalan Wolter Monginsidi. Dinamika Teknik Sipil: Majalah Ilmiah Teknik Sipil, 16(1), 28-36.

Kamil, F., Sanjaya, P. P., & Iswandi, A. (2023). ANALISIS KINERJA RUAS JALAN AKIBAT PARKIR DI RUAS JALAN MERDEKA KABUPATEN KETAPANG. Jurnal Konstruksi dan Infrastruktur, 11(1).

Lee, K., & Chen, Y. (2017). Reproducibility of Aggregate Testing: A Case Study on Same-Sample Retesting. Civil Engineering Testing, 36(1), 45-54.

Ofori, S. A., & Siddique, R. (2018). Properties of concrete containing oil palm shell as coarse aggregate. Construction and Building Materials, 188, 743-750.

Rahman, M. A., Brown, D. W., & Johnson, L. W. (2018). Relevance of Aggregate Testing Results to Industry Standards and Regulations. Construction Quality Assurance Journal, 14(2), 87-101.

Rahman, M. M., Lowe, D. J., & Hebblewhite, B. (2017). Sustainable use of oil palm waste in road construction. International Journal of Pavement Engineering, 18(5), 435-443.

Rahim, S. A. A., Mahmud, H. B., Samadi, M., Mohamad, E. T., & Muthusamy, K. (2019). Flexural performance of high-strength lightweight concrete containing oil palm shell and coconut shell aggregates. Construction and Building Materials, 222, 455-469.

Rashid, N. A., Yunus, R. M., & Ismail, M. (2019). A review of oil palm shell as lightweight aggregate in concrete. IOP Conference Series: Materials Science and Engineering, 509(1), 012042.

Sadek, D. M., & Sharaf, M. A. (2020). Study on some mechanical and thermal properties of oil palm shell concrete containing cementitious materials. Journal of Building Engineering, 27, 100990.

Smith, A. R., Johnson, M. J., & Williams, P. C. (2018). Importance of Aggregate Quality Testing in Sustainable Construction. Journal of Sustainable Engineering, 10(3), 123-135.

Taha, B. H., Alomayri, T., & Quayyum, S. (2019). Experimental and Numerical Investigation of the Flexural Behavior of Reinforced Concrete Beams Containing Oil Palm Shell as Lightweight Aggregates. Sustainability, 11(21), 5901.

Udoeyo, F. F., & Aisien, F. A. (2012). Comparative study of the compressive strength of concrete with gravel and crushed over burnt bricks as coarse aggregates. Journal of Materials and Environmental Science, 3(2), 331-339.

Wang, Q., Zhang, G., & Li, J. (2021). Integration of Aggregate Testing Results in Structural Design. Structural Engineering and Mechanics, 58(5), 789-803.




DOI: http://dx.doi.org/10.33603/jki.v11i2.8700

Refbacks

  • Saat ini tidak ada refbacks.