COMPRESSIVE STRENGTH ANALYSIS OF CONCRETE USING ASPHALT SCRAP WASTE

  • MUHAMMAD RIFA'I Department of Civil Engineering, Faculty of Engineering, Krisnadwipayana University, Jakarta, Indonesia
  • YONAS PRIMA ARGA RUMBYARSO Department of Civil Engineering, Faculty of Engineering, Krisnadwipayana University, Jakarta, Indonesia
  • INDRIASARI Department of Civil Engineering, Faculty of Engineering, Krisnadwipayana University, Jakarta, Indonesia
Keywords: Waste, asphalt scrap, coarse aggregate, compressive strength, concrete

Abstract

Concrete is one of the most commonly used building materials in civil construction and is widely used by various groups. Currently, the rapid growth of the global economy has led to various upgrades of concrete building construction systems in various places, resulting in an increase in concrete production. With the development of technology in concrete, more and more ideas and innovations are used to improve the quality of concrete, one of the innovations is by adding additional or substitute materials to concrete. One of the substitute materials that can be used is asphalt scrap waste. This study aims to determine the compressive strength of concrete by utilizing asphalt scrap waste as a partial substitute for coarse aggregate. This research was conducted by comparing the effect of using scrap asphalt waste on the compressive strength of normal concrete. This research method is by conducting experiments or experiments in the concrete laboratory. This research refers to SNI-03-2834-2000, about Procedure for Making Normal Concrete Plan. Based on the research results, it can be concluded that the average normal concrete compressive strength value is 25.57 MPa, so it meets the planned concrete compressive strength of 25 MPa. The average concrete compressive strength of 5% scrap asphalt waste variation is 24.88 MPa, the average concrete compressive strength of 10% scrap asphalt waste variation is 23.86 MPa. Based on these results, that the greater the use of scrap asphalt waste, the compressive strength of concrete decreases.

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References

Darmiyanti, L., Pribadi, G., & Rodji, A. P. (2021). Penambahan Serbuk Kayu Kamper terhadap Kuat Tekan Beton. Bentang: Jurnal Teoritis dan Terapan Bidang Rekayasa Sipil, 9(2), 85-92.
Pribadi, G., Darmiyanti, L., & Martinus, M. (2023). Analisis Kuat Tekan Beton dengan Bahan Tambah Gula Pasir. Jurnal Pendidikan Tambusai, 7(2), 11257-11262.
Achmad Pahrul Rodji, P. JURNAL. 3. ANALISIS PERBANDINGAN PASIR JAMBI DAN PASIR PONTIANAK TERHADAP KUAT TEKAN BETON. JURNAL SIPILKRISNA VOL. 8 NO. 1 APRIL 2022.
Achmad Pahrul Rodji, P. JURNAL. 1. ANALISIS KUAT TEKAN BETON MENGGUNAKAN LIMBAH BOTOL KACA SEBAGAI PENGGANTI SENAGIAN AGREGAT HALUS DAN GULA MERAH SEBAGAI BAHAN TAMBAH ADITIF BETON. JURNAL SIPILKRISNA VOL. 8 NO. 2 OKTOBER 2022.
SNI 8198:2015 Spesifikasi Campuran Beraspal Panas Bergradasi Menerus (Laston).
Darmiyanti, L., Rodji, A. P., & Mumtaz, A. (2022). Perencanaan Struktur Atap Frofil Baja Wf. Journal of Sustainable Civil Engineering (JOSCE), 4(02), 99-121.
Darmiyanti, L. (2022). Kinerja Kapasitas Lalu Lintas Jalan Mustika Jaya Bekasi Dipengaruhi Oleh Hambatan Samping Jalan. Konferensi Nasional ke 16.
Darmiyanti, D., Rachmansyah, A., Munawir, A., Zaika, Y., & Suryo, E. A. (2023, November). Voltage optimization in expansive soil improvement with saline solution on swelling and shear strength. In IOP Conference Series: Earth and Environmental Science (Vol. 1263, No. 1, p. 012050). IOP Publishing.
Rachmansyah, A., Darmiyanti, L., & Kusumaningrum, R. (2023, October). Expansive Soil Improvement Using Electrochemical Injection. In IOP Conference Series: Earth and Environmental Science (Vol. 1249, No. 1, p. 012039). IOP Publishing.
Setiawan, B., Sihombing, S. M., & Darmiyanti, L. (2022). ANALISIS PENINGKATAN TEBAL PERKERASAN RUNWAY DI LANUD RADEN SADJAD RANAI KABUPATEN NATUNA. Jurnal Sipil Krisna, 8(1), 21-31.
Darmiyanti, L. (2024). Perbaikan potensi pengembangan tanah ekspansif dengan metode elektrokinetik menggunakan larutan kalsium dioksida. Jurnal Teknik Sipil, 5(1), 10-14.
Susilo, M. F. T., Rodji, A. P., & Darmiyanti, L. (2022). ANALISIS TEBAL PERKERASAN LENTUR PADA APRON PANGKALAN UDARA SAUMLAKI DI TANIMBAR MALUKU. Jurnal Sipil Krisna, 8(1), 1-10.
Cahyani, G., Darmiyanti, L., & Pribadi, G. (2024). ANALYSIS OF BUILDING BEAMS CALCULATION FOR EMPLOYEE MESS IN KONAWE SOUTHEAST SULAWESI. INTERNATIONAL JOURNAL OF MULTI SCIENCE, 4(02), 76-83.
Sihombing, S. M., & Darmiyanti, L. (2022). ANALISIS PENGARUH HAMBATAN SAMPING TERHADAP KINERJA KAPASITAS LALU LINTAS PADA JALAN IR. H. JUANDA BEKASI TIMUR. Jurnal Sipil Krisna, 8(2), 30-37.
Windasari, W., & Darmiyanti, L. (2004). Pengaruh Jarak Dukungan Lateral terhadap Kapasitas Lentur Balok Vierendeel.
Herawati, S., Darmiyanti, L., & Loen, M. (2024). PENGELOLAAN SAMPAH DAN WIRAUSAHA PEMANFAATAN BARANG BEKAS DALAM MENINGKATKAN EKONOMI KELUARGA. SIKAMA: Sinergi Akademisi dan Masyarakat, 2(1), 1-6.
Gandasari, I., Hotimah, O., & Miyarsah, M. (2020). Green campus as a concept in creating sustainable campuses. KnE Social Sciences, 1-9.
Kusumo, B. (2024). Sistem Informasi Pengajuan dan Analisis Kelayakan Kredit Berbasis Website Menggunakan Metode AHP Simulasi Pada Bank Perkreditan Rakyat Cibitung. JURNAL KRIDATAMA SAINS DAN TEKNOLOGI, 6(02), 702-721.
Kusumo, B., & Antoro, W. D. (2024). Analisis Tingkat Pencahayaan Ruang Kelas Gedung Fakultas Teknik Universitas Krisnadwipayana Menggunakan Dialux. Jurnal Elektro, 12(2), 120-127.
Published
2025-02-13