Karakteristik Campuran AC-BC Menggunakan Slag Nikel PT. Vale Sebagai Pengganti Agregat
DOI:
https://doi.org/10.52722/f9vtw695Kata Kunci:
AC-BC, Mixture Characteristics, Marshall Test, Nickel SlagAbstrak
The use of green materials for road work construction is urgently needed in order to create sustainable construction. One of the green materials that can be used is nickel slag found in PT. Vale Sorowako. This research is intended for the utilization of nickel slag of PT. Vale Sorowako in AC-BC mixture and to obtain the characteristic value of filler, fine and coarse aggregate and then the composition of the AC-BC mixture is carried out, as well as to obtain the characteristics of the mixture is carried out by marshall test and to obtain the results of the stability of the residual marshall. The guideline used in this study is SNI 03-1737-1989. The use of 100% aggregate of nickel slag and asphalt content of 5.00%-7.00% with an interval of 0.5% results in an optimum of 7.00% and meets for all test results for marshall characteristics. And for the results of KAO at asphalt content of 7.00% through marshall immersion testing on AC-BC mixture, Marshall stability was obtained Residual by 104.91%
Unduhan
Referensi
[1] B. Jauhari dan N. Doda, “Pengaruh gradasi agregat terhadap nilai karakteristik aspal beton (ac-bc),” Gorontalo J. Infrastruct. Sci. Eng., vol. 2, no. 1, hlm. 27, Apr 2019, doi: 10.32662/gojise.v2i1.524.
[2] R. Kadarningsih, “Evaluation of Aggregate Quality at the Batching Plant in Gorontalo as Raw Material for Ready-Mix Concrete,” E3S Web Conf., vol. 476, hlm. 01052, 2024, doi: 10.1051/e3sconf/202447601052.
[3] A. Rahmat dan I. Fadly, “Analisis Material Agregat pada Campuran Asphalt Concrete-Binder Course (Studi Kasus: Agregat Sungai Saddang Kebupaten Enrekang),” J. Karajata Eng., vol. 2, no. 2, hlm. 61–69, Des 2022, doi: 10.31850/karajata.v2i2.1858.
[4] S. Asfiati, Zurkiyah, M. Yani, Indrayani, dan S. Prafanti, “Analysis of Mixed Stiffness Modulus of Different Asphalt Levels for AC–BC Pavement Layer with Pertamina 60/70 Asphalt and 60/70 Esso Asphalt Material,” J. Phys. Conf. Ser., vol. 2193, no. 1, hlm. 012017, Feb 2022, doi: 10.1088/1742-6596/2193/1/012017.
[5] Arrang, Irmawaty, Djamaluddin, dan Parung, “Efektifitas Sabut Kelapa Sebagai Stabilizing Agent dalam Campuran Stone MAtrix Asphalt,” Konf. Nas. Tek. Sipil KoNTekS, vol. 2, no. 1, Jan 2025, doi: 10.62603/konteks.v2i1.242.
[6] R. T. Bethary dan D. E. Intari, “Penggunaan Limbah Slag Nikel Untuk Material Jalan Ramah Lingkungan,” Fondasi J. Tek. Sipil, hlm. 34, Apr 2022, doi: 10.36055/fondasi.v0i0.14473.
[7] C. Kamba dan R. Rachman, “Marshall Characteristics Test On Hot Rolled Sheet Base Combine Using Nickel Slag For Half Gap Graded,” PCEJ, vol. 5, no. 3, 2018.
[8] A. Putrawirawan, I. Ibayasid, dan R. Tristo, “Pemanfaatan Batu Laterit Sebagai Bahan Substitusi Agregat Kasar pada campuran Asphalt Concrete Binder Course (AC-BC),” Kurva J. Keilmuan Dan Apl. Tek. Sipil, vol. 10, no. 3, hlm. 166, Des 2022, doi: 10.31293/teknikd.v10i3.6848.
[9] E. D. L. Bancin, K. Lubis, dan N. Mahda, “Pengaruh Penggunaan Tanah Merah Sebagai Filler pada Campuran AC-BC Terhadap Nilai Marshall,” J. Civ. Eng. Build. Transp., vol. 5, no. 1, hlm. 17–25, Apr 2021, doi: 10.31289/jcebt.v5i1.5072.
[10] A. N. Rahmawati dan Y. Widhiastuti, “Pengaruh Penambahan Serbuk Limbah Ban Bekas Kendaraan terhadap Karakteristik Laston Ac-Bc dengan Metode Uji Marshall,” J. Pendidikan Tambusai, vol. 7, 2023.
[11] V. O. A. S. Ressang, E. Ngii, dan N. Nasrul, “Pengaruh Penggunaan Filler Slag Nickel FENI III pada Campuran HRS-WC,” STABILITA J. Ilm. Tek. Sipil, vol. 8, no. 2, hlm. 79, Agu 2020, doi: 10.55679/jts.v8i2.13682.
[12] R. Wiziarti dan W. Rahayu, “Potensi Penggunaan Campuran Slag Nikel dan Fly Ash Sebagai MAterial Perkerasan Jalan,” Racic Rab Constr. Res., vol. 7, no. 1, hlm. 55–70, Jun 2022, doi: 10.36341/racic.v7i1.2462.
[13] D. M. Putra, N. Nasrul, dan E. Ngii, “Potensi Slag Nikel Halus PT. Antam Pomalaa Sebagai Agregat Halus pada Campuran Aspal,” STABILITA J. Ilm. Tek. Sipil, vol. 8, no. 1, hlm. 11, Jul 2020, doi: 10.55679/jts.v8i1.12669.
[14] O. Yendri dan W. Septiandi, “Kajian Kemampuan Campuran Aspal-Beton dengan Asbuton Cait yang Diisi dengan Serpihan HDPE,” J. Tek. Gradien, vol. 15, no. 01, hlm. 9–19, Apr 2023, doi: 10.47329/teknik_gradien.v15i01.1011.
[15] H. N. Hidayati, M. G. Rifqi, dan M. S. Amin, “Pengaruh Penambahan Plastik LDPE Pada Campuran Aspal Beton Lapis AC-BC,” J. Appl. Civ. Eng. Infrastruct. Technol., vol. 2, no. 2, hlm. 1–6, Des 2021, doi: 10.52158/jaceit.v2i2.63.