Reinforcing Column Enlargement Using the Chemical Anchor Method in a Hotel Construction Project
DOI:
https://doi.org/10.70609/g-tech.v10i3.10257Keywords:
Structural Analysis, Chemical Anchor, Column, Enlargement, Stress RatioAbstract
This study aims to identify the need for reinforcing column enlargement of a coffee shop structure in a hotel project due to concerns related to the adequacy of the existing column capacity during the construction stage. The evaluation was conducted through a three-dimensional structural reanalysis using SAP2000, based on the design drawings, material quality, and load combinations as specified in the project standards. The results of the analysis showed that most of the existing K1 columns, measuring 150 x 1000 mm, had a stress ratio exceeding 1.0, with the highest value reaching 1.32. It means that they do not meet the strength criteria and need reinforcement. The selected alternative was to enlarge the column dimensions to 250 x 1000 mm by adding 14D19 reinforcement and applying the chemical anchor method to ensure monolithic action between the old and new concrete. The reanalysis reduced the maximum stress ratio of the reinforced columns to 0.85, so that all columns satisfied the strength criteria. Verification of the chemical anchor system showed that all failure modes had load-to-capacity ratios below 1.0, with a maximum of 0.56 in the pull-out/bond mode. In terms of quality, time, and cost, the chemical anchor method was more efficient than the steel jacketing composite method, with an estimated 30–40% reduction in execution time and approximately 25% lower cost.
References
Badan Standardisasi Nasional. (2019a). SNI 1726:2019 Tata cara perencanaan ketahanan gempa untuk struktur bangunan gedung dan nongedung. Badan Standardisasi Nasional.
Badan Standardisasi Nasional. (2019b). SNI 2847:2019 Persyaratan beton struktural untuk bangunan gedung dan penjelasan. Badan Standardisasi Nasional.
Badan Standardisasi Nasional. (2020). SNI 1727:2020 Beban desain minimum dan kriteria terkait untuk bangunan gedung dan struktur lain. Badan Standardisasi Nasional.
Cattaneo, S., & Muciaccia, G. (2016). Adhesive anchors in high performance concrete. Materials and Structures, 49(7), 2689–2700. https://doi.org/10.1617/s11527-015-0677-4
Chmielewski, R., Kruszka, L., & Muzolf, P. (2020). The selection of methods for strengthening of the reinforced-concrete structure of the open tank. Case Studies in Construction Materials, 12, e00343. https://doi.org/10.1016/j.cscm.2020.e00343
Computers and Structures, Inc. (2016). SAP2000: Integrated software for structural analysis and design [Computer software]. Computers and Structures, Inc.
Cook, R. A., & Konz, R. C. (2001). Factors influencing bond strength of adhesive anchors. ACI Structural Journal, 98(1), 76–86.
Du, H., Wang, H., Wang, J., Wang, Y., & Yang, F. (2024). Tensile and shear capacity of post-installed chemical adhesive anchors in lightweight concrete. Structures, 61, 106113. https://doi.org/10.1016/j.istruc.2024.106113
Gholampour, A., Hassanli, R., Mills, J. E., Vincent, T., & Kunieda, M. (2019). Experimental investigation of the performance of concrete columns strengthened with fiber reinforced concrete jacket. Construction and Building Materials, 194, 51–61.
Gkournelos, P. D., Triantafillou, T. C., & Bournas, D. A. (2021). Seismic upgrading of existing reinforced concrete buildings: A state-of-the-art review. Engineering Structures, 240, 112273. https://doi.org/10.1016/j.engstruct.2021.112273
Hidayati, N. (2022). Evaluasi dan perkuatan struktur kolom beton bertulang akibat kebakaran. Potensi: Jurnal Sipil Politeknik, 24(1), 1–9. https://doi.org/10.35313/potensi.v24i1.3606
Kaontole, J. T., Sumajouw, M. D. J., & Windah, R. S. (2015). Evaluasi kapasitas kolom beton bertulang yang diperkuat dengan metode concrete jacketing. Jurnal Sipil Statik, 3(3), 167–174.
Karim, S. H., & Karim, F. R. (2020). Review on the strengthening of reinforced concrete columns by reinforced concrete jacketing. Saudi Journal of Civil Engineering, 4(1), 10–20.
Papulele, F. W. G., Wallah, S. E., & Pandaleke, R. (2017). Perbandingan nilai kapasitas beban maksimum beton bertulang kolom utuh dengan kolom yang diperkuat menggunakan chemical anchor. Jurnal Sipil Statik, 5(8), 519–532.
Rabbany, A. B. M. G., Hasan-Uz-Zaman, M., & Islam, S. (2019). Performance of RCC slender columns in different conditions with variations in slenderness and steel ratio. Journal of Civil Engineering Research, 9(1), 25–42. https://doi.org/10.5923/j.jce.20190901.03
Raza, S., Khan, M. K. I., Menegon, S. J., Tsang, H.-H., & Wilson, J. L. (2019). Strengthening and repair of reinforced concrete columns by jacketing: A state-of-the-art review. Sustainability, 11(11), 3208. https://doi.org/10.3390/su11113208
Rosyidah, A., Putra, J. W., & Saputra, J. (2022). Chemical anchor pullout force modeling with variation of anchor embedment length in concrete and concrete strength. Journal of the Civil Engineering Forum, 8(3), 277–290.
Sunarwadi, H. S. W. (2021). Performa struktur kolom pasca perkuatan dengan metode concrete jacketing bertulangan bambu. Bentang: Jurnal Teoritis dan Terapan Bidang Rekayasa Sipil, 9(1), 47–54.
Suryamisena, C. R., Milyardi, R., & Lesmana, C. (2024). Perbandingan biaya, durasi, dan kerugian pendapatan operasional metode perkuatan struktur kolom beton bertulang gedung pabrik. Jurnal Rekayasa Konstruksi Mekanika Sipil (JRKMS), 7(2), 93–103. https://doi.org/10.54367/jrkms.v7i2.3983
Tayeh, B. A., EL dada, Z. M., Shihada, S., & Yusuf, M. O. (2019). Pull-out behavior of post installed rebar connections using chemical adhesives and cement based binders. Journal of King Saud University – Engineering Sciences, 31(4), 332–339. https://doi.org/10.1016/j.jksues.2017.11.005
Tjong, L. F., & Singh, A. (2025). Retrofit kolom menggunakan concrete jacketing dan steel jacketing pada gedung beton bertulang dengan soft story. Journal of Sustainable Construction, 4(2), 15–24.
Vandoros, K. G., & Dritsos, S. E. (2008). Concrete jacket construction detail effectiveness when strengthening RC columns. Construction and Building Materials, 22, 264–276. https://doi.org/10.1016/j.conbuildmat.2006.08.019
Wuaten, H. M. (2022). Jacketing pada daerah sendi plastis pilar atau kolom dengan kombinasi wire mesh dan SCC. Kurva S: Jurnal Keilmuan dan Aplikasi Teknik Sipil, 10(2), 76–85.
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Copyright (c) 2026 Ety Fitriyani, Hulfa Istikomah, Vivid Lucha Deanggi, Saddam Mirza, Demmy Adhi Mulya Darma, Mutia Gina Savira

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