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Abstract
Frequent flooding in Indonesia causes significant infrastructure damage, including deterioration of asphalt pavements. Bekasi City was selected as the study area due to its river system characteristics, which make the region highly susceptible to prolonged inundation. This study evaluates glass powder (GP) as an alternative filler in AC-WC mixtures and examines performance under simulated flooding. Five GP substitution levels (0%, 25%, 50%, 75%, and 100%) were tested and immersed in Bekasi River water for 0, 24, and 48 hours. Performance was assessed through Marshall Standard (MS), Indirect Tensile Strength ( ITS), Index of Retained Strength (IRS), Tensile Strength (TSR), and Cantabro Loss (CL) testing. Results show that GP affects all performance parameters, with 75% substitution exhibiting the best behavior among modified mixtures. However, all GP mixtures showed lower stability and ITS compared to the control, and full substitution (100%) resulted in the greatest performance decline. Longer immersion further reduced stability, ITS, TSR, and IRS while increasing flow, indicating higher moisture susceptibility. CL decreased with GP addition except at 100% substitution or extended immersion, where mass loss increased. Overall, while 75% GP substitution showed the best relative performance and remained functional up to 24 hours of immersion, long-term soaking led to significant degradation. GP shows potential as a sustainable filler, but improvements are required for use in flood-prone areas.
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Copyright (c) 2025 Ardhya Alga Lingga, Muhamad Abdul Hadi

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References
- Alam, M. N., & Aggarwal, P. (2020). Effectiveness of anti stripping agents on moisture susceptibility of bituminous mix. Construction and Building Materials, 264, 120274.
- American Association of State Highway, Officials T. Standard Specifications for Transportation Materials and Methods of Sampling and Testing 1993.
- Chasanah, F., & Sukmo, T. A. (2023). Pengaruh Bubuk Talk Sebagai Bahan Filler Pengganti Pada Campuran Ac-Wc: Indonesia. AJIE (Asian Journal of Innovation and Entrepreneurship), 82-90.
- Choudhary, J., Kumar, B., & Gupta, A. (2021). Utilization of waste glass powder and glass composite fillers in asphalt pavements. Advances in Civil Engineering, 2021(1), 3235223.
- Direktorat Jenderal Bina Marga. Spesifikasi Umum Bina Marga 2018: untuk Pekerjaan Konstruksi Jalan dan Jembatan (Revisi 2), 2018.
- Gedik, A., Selcuk, S., & Lav, A. H. (2021). Investigation of recycled fluorescent lamps waste as mineral filler in highway construction: A case of asphaltic pavement layers. Resources, Conservation and Recycling, 168, 105290.
- Harahap AR, Wiyono S, Elizar E, Puri A. (2023). The Effect of Peat Water Soaking on The Durability of AC-WC. Media Komunikasi Teknik Sipil. 28:241–9. https://doi.org/10.14710/mkts.v28i2.42945.
- Hasan, K., Fariha, N. A., Bashar, J. B., Alakhali, A. K., & Yahaya, F. M. (2025). An experimental investigation on the mechanical performance of sustainable asphalt pavement incorporating waste glass powder. In IOP Conference Series: Earth and Environmental Science (Vol. 1444, No. 1, p. 012003). IOP Publishing.
- Kabo, D. R. G., Tumpu, M., & Parung, H. (2021). Influence of water immersion on stability of AC-WC mixed with gondorukem additional material. In IOP Conference Series: Earth and Environmental Science (Vol. 921, No. 1, p. 012067). IOP Publishing.
- Kalampokis, S., Kalama, D., Kesikidou, F., Stefanidou, M., & Manthos, E. (2023). Assessment of waste glass incorporation in asphalt concrete for surface layer construction. Materials, 16(14), 4938.
- Khaled, T. T., Kareem, A. I., Mohamad, S. A., Al-Hamd, R. K. S., & Minto, A. (2024). The performance of modified asphalt mixtures with different lengths of Glass Fiber. International Journal of Pavement Research and Technology, 1-17.
- Kifile, D., Quezon, E. T., & Tesfaye, A. (2024). Evaluation of Waste Glass Powder as Partial Replacement for Mineral Filler in Asphalt Concrete Mixes. Emerging Technologies for Building Green Economy.
- Mataram I. N. K., Thanaya I.N.A., Welimince Y. (2021). Kajian Durabilitas Campuran Perkerasan Aspal yang Terendam Air Laut dan Air Tawar. Jurnal Ilmiah Teknik Sipil. 25:126–33.
- Ogundipe, O. M., & Nnochiri, E. S. (2020). Evaluation of the effects of waste glass in asphalt concrete using the Marshall test. Engineering Review: Međunarodni časopis namijenjen publiciranju originalnih istraživanja s aspekta analize konstrukcija, materijala i novih tehnologija u području strojarstva, brodogradnje, temeljnih tehničkih znanosti, elektrotehnike, računarstva i građevinarstva, 40(2), 24-33.
- Osuolale, O. M., Arinkoola, A. O., & Olawuyi, O. A. (2023). Performance evaluation of bamboo leaf ash and steel slag powder as alternative filler in asphaltic mixes. Journal of Engineering Research, 11(4), 334-346.
- Palinggi, M. D. M. (2020). Recycling brick building waste as a filler on laston AC–WC. In IOP Conference Series: Earth and Environmental Science (Vol. 419, No. 1, p. 012070). IOP Publishing.
- Rojali, A., & Elsari, P. (2020). Pemodelan Banjir di Perumahan Pondok Gede Permai Bekasi. Rekayasa Sipil, 9(1), 6.
- Sarkar, M. T. A., & Elseifi, M. A. (2023). Experimental evaluation of asphalt mixtures with emerging additives against cracking and moisture damage. Journal of Road Engineering, 3(4), 336-349.
- Suárez, D. M. L., Acosta Hernández, J. S., & Bonivento Hernández, J. D. (2019). Study of hot mix asphalt with incorporation of waste glass powder as filler.
- Sucipto, S., & Sari, Y. A. (2021). Analisa Karakteristik Campuran Aspal Menggunakan Serbuk Kaca. Journal of Civil Engineering and Planning (JCEP), 2(1), 84-98.
- Sufanir, A. M. S., Astor, Y., & Aulia, R. (2020). Characteristics of AC-WC asphalt mixtures with volcanic ash deposits as cement substitutes in filler. In IOP Conference Series: Materials Science and Engineering (Vol. 732, No. 1, p. 012014). IOP Publishing.
- Susilowati A, Wiyono E, Praktikto, I. R. M. (2019). Variation of Soaking Time on Asphalt Concrete Properties using Anti Stripping Materials. Proceedings of the 8th Annual Southeast Asian International Seminar, SCITEPRESS; 2019, p. 132–7. https://doi.org/10.5220/0009967900002905.
- Tang, B., Wu, H., Liao, Y., & Huang, D. (2015, November). Effect of glass powder instead of mineral powder on asphalt mixture. In 5th international conference on civil engineering and transportation (pp. 714-720). Atlantis Press.
- Upoma, S. S., Islam, M. M., & Hossain, Q. S. (2024). Assessing the effect of various categories of filler of high content on Hot Mix Asphalt. In 7th International Conference on Civil Engineering for Sustainable Development (ICCESD 2024) (pp. 203-215). Atlantis Press.
- Widojoko, L., & Purnamasari, P. E. (2012). Study the use of cement and plastic bottle waste as ingredient added to the asphaltic concrete wearing course. Procedia-Social and Behavioral Sciences, 43, 832-841.
- Yuniarti, R., Hasyim, H., Hariyadi, H., & Handayani, T. (2019). Penggunaan limbah kaca sebagai filler pada campuran perkerasan aspal panas. Jurnal Teknik Sipil, 26(3), 265.
References
Alam, M. N., & Aggarwal, P. (2020). Effectiveness of anti stripping agents on moisture susceptibility of bituminous mix. Construction and Building Materials, 264, 120274.
American Association of State Highway, Officials T. Standard Specifications for Transportation Materials and Methods of Sampling and Testing 1993.
Chasanah, F., & Sukmo, T. A. (2023). Pengaruh Bubuk Talk Sebagai Bahan Filler Pengganti Pada Campuran Ac-Wc: Indonesia. AJIE (Asian Journal of Innovation and Entrepreneurship), 82-90.
Choudhary, J., Kumar, B., & Gupta, A. (2021). Utilization of waste glass powder and glass composite fillers in asphalt pavements. Advances in Civil Engineering, 2021(1), 3235223.
Direktorat Jenderal Bina Marga. Spesifikasi Umum Bina Marga 2018: untuk Pekerjaan Konstruksi Jalan dan Jembatan (Revisi 2), 2018.
Gedik, A., Selcuk, S., & Lav, A. H. (2021). Investigation of recycled fluorescent lamps waste as mineral filler in highway construction: A case of asphaltic pavement layers. Resources, Conservation and Recycling, 168, 105290.
Harahap AR, Wiyono S, Elizar E, Puri A. (2023). The Effect of Peat Water Soaking on The Durability of AC-WC. Media Komunikasi Teknik Sipil. 28:241–9. https://doi.org/10.14710/mkts.v28i2.42945.
Hasan, K., Fariha, N. A., Bashar, J. B., Alakhali, A. K., & Yahaya, F. M. (2025). An experimental investigation on the mechanical performance of sustainable asphalt pavement incorporating waste glass powder. In IOP Conference Series: Earth and Environmental Science (Vol. 1444, No. 1, p. 012003). IOP Publishing.
Kabo, D. R. G., Tumpu, M., & Parung, H. (2021). Influence of water immersion on stability of AC-WC mixed with gondorukem additional material. In IOP Conference Series: Earth and Environmental Science (Vol. 921, No. 1, p. 012067). IOP Publishing.
Kalampokis, S., Kalama, D., Kesikidou, F., Stefanidou, M., & Manthos, E. (2023). Assessment of waste glass incorporation in asphalt concrete for surface layer construction. Materials, 16(14), 4938.
Khaled, T. T., Kareem, A. I., Mohamad, S. A., Al-Hamd, R. K. S., & Minto, A. (2024). The performance of modified asphalt mixtures with different lengths of Glass Fiber. International Journal of Pavement Research and Technology, 1-17.
Kifile, D., Quezon, E. T., & Tesfaye, A. (2024). Evaluation of Waste Glass Powder as Partial Replacement for Mineral Filler in Asphalt Concrete Mixes. Emerging Technologies for Building Green Economy.
Mataram I. N. K., Thanaya I.N.A., Welimince Y. (2021). Kajian Durabilitas Campuran Perkerasan Aspal yang Terendam Air Laut dan Air Tawar. Jurnal Ilmiah Teknik Sipil. 25:126–33.
Ogundipe, O. M., & Nnochiri, E. S. (2020). Evaluation of the effects of waste glass in asphalt concrete using the Marshall test. Engineering Review: Međunarodni časopis namijenjen publiciranju originalnih istraživanja s aspekta analize konstrukcija, materijala i novih tehnologija u području strojarstva, brodogradnje, temeljnih tehničkih znanosti, elektrotehnike, računarstva i građevinarstva, 40(2), 24-33.
Osuolale, O. M., Arinkoola, A. O., & Olawuyi, O. A. (2023). Performance evaluation of bamboo leaf ash and steel slag powder as alternative filler in asphaltic mixes. Journal of Engineering Research, 11(4), 334-346.
Palinggi, M. D. M. (2020). Recycling brick building waste as a filler on laston AC–WC. In IOP Conference Series: Earth and Environmental Science (Vol. 419, No. 1, p. 012070). IOP Publishing.
Rojali, A., & Elsari, P. (2020). Pemodelan Banjir di Perumahan Pondok Gede Permai Bekasi. Rekayasa Sipil, 9(1), 6.
Sarkar, M. T. A., & Elseifi, M. A. (2023). Experimental evaluation of asphalt mixtures with emerging additives against cracking and moisture damage. Journal of Road Engineering, 3(4), 336-349.
Suárez, D. M. L., Acosta Hernández, J. S., & Bonivento Hernández, J. D. (2019). Study of hot mix asphalt with incorporation of waste glass powder as filler.
Sucipto, S., & Sari, Y. A. (2021). Analisa Karakteristik Campuran Aspal Menggunakan Serbuk Kaca. Journal of Civil Engineering and Planning (JCEP), 2(1), 84-98.
Sufanir, A. M. S., Astor, Y., & Aulia, R. (2020). Characteristics of AC-WC asphalt mixtures with volcanic ash deposits as cement substitutes in filler. In IOP Conference Series: Materials Science and Engineering (Vol. 732, No. 1, p. 012014). IOP Publishing.
Susilowati A, Wiyono E, Praktikto, I. R. M. (2019). Variation of Soaking Time on Asphalt Concrete Properties using Anti Stripping Materials. Proceedings of the 8th Annual Southeast Asian International Seminar, SCITEPRESS; 2019, p. 132–7. https://doi.org/10.5220/0009967900002905.
Tang, B., Wu, H., Liao, Y., & Huang, D. (2015, November). Effect of glass powder instead of mineral powder on asphalt mixture. In 5th international conference on civil engineering and transportation (pp. 714-720). Atlantis Press.
Upoma, S. S., Islam, M. M., & Hossain, Q. S. (2024). Assessing the effect of various categories of filler of high content on Hot Mix Asphalt. In 7th International Conference on Civil Engineering for Sustainable Development (ICCESD 2024) (pp. 203-215). Atlantis Press.
Widojoko, L., & Purnamasari, P. E. (2012). Study the use of cement and plastic bottle waste as ingredient added to the asphaltic concrete wearing course. Procedia-Social and Behavioral Sciences, 43, 832-841.
Yuniarti, R., Hasyim, H., Hariyadi, H., & Handayani, T. (2019). Penggunaan limbah kaca sebagai filler pada campuran perkerasan aspal panas. Jurnal Teknik Sipil, 26(3), 265.