Analisis Kuat Lekat Angkur Pada Beton Berdasarkan Variasi Bentuk Angkur Dengan Menggunakan Metode Pemasangan Cast In Place
Studi Penelitian
DOI:
https://doi.org/10.61132/konstruksi.v2i2.237Keywords:
bond, anchor variations, cast in place, bond stressAbstract
An anchor is a steel element that is embedded in concrete when it is cast (cast in place) or installed later (post-installed) into concrete that has hardened and is used to distribute loads (tension and shear) acting on the concrete (SNI 2847:2019). The use of anchors in the world of construction is increasingly popular to help connect concrete structures. The installation of anchors has progressed from the initial anchors being installed before casting the concrete (cast in place), progressing to the anchors being installed after the concrete has hardened (post installed) by drilling. By drilling into concrete, installing and removing anchors becomes easier. Installation of cast-in-place anchors is generally used in the design of new construction, while post-installed anchor installation is generally used in old construction for repairs or retrofitting. Anchors have several variations including hed heax, L bolt and J bolt anchor variations, but it is not yet known which anchor variation has a greater bond strength value, what are the results of the comparison of bond strength values for each variation of anchor and what are the differences in the anchor bond strength capacity for each variation? the anchor. With this research, it is hoped that we can find out the bond strength and bond stress values for each variation of anchor so that the comparison of the bond strength of the anchor can answer the differences in capacity of each variation of the anchor as well. Research on the bond strength of anchors based on variations in anchor shape using the cast in place method shows that the bond strength value shown at the highest loading value is the type J anchor variation with an average load of 27,816 kN, the type L anchor variation with an average load of 26,971 kN and variations of the hex head type anchor with an average load of 12.85 kN. It can be concluded that the stress value is directly proportional to the loading value. The greater the loading value, the greater the bond stress value. The highest bond stress value is found in the type J anchor variation with an average bond stress value of 151,397 Mpa, in the L type anchor variation with an average bond stress value of 147,798 Mpa and in the hex head type anchor variation with an average bond stress value of 69.953 Mpa, so the bond stress is directly proportional to the loading value.
References
Ananta, B. D., & Apriyatno, H. (2022). Experiment On Chemical Attachment Of Anchor Deform Depth 110 Mm Cast-In Place And Post-Installed Drill Bit Extractor Method. Citizen : Jurnal Ilmiah Multidisiplin Indonesia, 2(3), 543–550. Https://Doi.Org/10.53866/Jimi.V23.107
Badan Standar Nasional. (T.T.). SNI 7656:2012 Tata Cara Pemelihan Campuran Untuk Beton Normal, Beton Berat Dan Beton Massa.
Badan Standar Nasional (BSN). (T.T.). SNI 07-2529-1991 Metode Pengujian Kuat Tarik Baja Beton.
Badan Standar Nasional (BSN). (2019). SNI 2847-2019 Persyaratan Beton Struktural Untuk Bangunan Gedung 1. 303–328.
Huda, A. (2020). Eksperimen Tarik Angkur Tipe Ekspansi Secara Cast In Place Dan Post-Installed Dengan Kegagalan Breakout Beton.
Langi, W., Kumaat, E. J., & Manalip, H. (2018). Tegangan Lekat Antara Baja Dan Beton Dengan Mutu Beton 40-70 Mpa. Sipil Statik, 6, 1–8.
Malombasang, A. M. A. (2023). Pengaruh Kedalaman Terhadap Gaya Tarik Angkur Lipat Pada Tanah Lunak.
Maming, M. I., Djamaluddin, A. R., Harianto, T., & Muhiddin, A. B. (2019). Uji Model Kapasitas Tarik Angkur Tanah Type Lipat (Folding Type) Pada Tanah Kohesif.
Mazumder, M., Amin, A., Riyad, R. H., & Fayzul Bari, A. K. M. (2020). Investigation The Variation Of Pull-Out Load Capacity Of Adhesive Anchors With Mixture Ratio Of Concrete And Rebar Grade. Civil Engineering & Architecture, 63(2), 1–9.
Nilforoush, R., Nilsson, M., & Elfgren, L. (2017). Experimental Evaluation Of Tensile Behaviour Of Single Cast-In-Place Anchor Bolts In Plain And Steel Fibre-Reinforced Normal- And High-Strength Concrete. Engineering Structures, 147, 195–206. Https://Doi.Org/10.1016/J.Engstruct.2017.05.062
Rahman, M. P., & Kurniawan, F. A. (2022). Analisa Kekuatan Material Bahan Carbon Steel Aisi 1018 Dan Baja Tulangan Polos Sni P40 Sebagai Angkur Pada Tower Dengan Metode Uji Tarik. 17, 1–11.
Badan Standar Nasional. SNI 07-2529-1991 Metode Pengujian Kuat Tarik Baja Beton.
Štrba, M., & Karmazínová, M. (2016). Using Of The Design Assisted By Testing Method In Case Of The Experimental Verification Of The Load-Carrying Capacity Of Expansion Anchors. International Journal Of Mechanics, 10, 1–8.
Wiguntoro. (2020). Eksperimen Perbandingan Kapasitas Kekuatan Angkur Menggunakan Metode Cast In Place Dan Post-Installed Pada Kegagalan Pull-Out.
Winters, J., Jenny, P. D., & Dolan, W. C. (2013). Concrete Breakout Capacity Of Cast‐In‐Place Anchors In Early Age Concrete
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Konstruksi: Publikasi Ilmu Teknik, Perencanaan Tata Ruang dan Teknik Sipil
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.