Analisis Perilaku Pelat dari Baja Hollow dengan Pengisian Mortar FAS 0,4 terhadap Variasi Ukuran dan Tebal Profil Baja Hollow
Abstract
The development of the times and science, especially in the field of civil engineering requires an increase in the quality of civil engineering structures so that many innovations are found with the use of steel profiles. One type of steel profile that can be found is the hollow steel profile. As a construction element, hollow steel has a weakness in carrying loads, this is because of the strength in the middle profile so that the hollow steel structure becomes more slender and prone to bending. To overcome these weaknesses, it is possible to fill in the mortar in the middle of the profile. The purpose of this study is to analyze the value of the capacity of the plate structure made of hollow steel structure by analyzing 3 types of capacity, namely yield capacity, maximum capacity, and allowable capacity. Broadly speaking, in this study 5 specimens were made which were divided into 2 variations of test objects, namely variations in profile sizes and variations in thickness of hollow steel profiles, each plate specimen being named BU1, BU2, BU3, BU4, and BU5. The results showed that there was a correlation between the size of the profile and the profile of the slab capacity value, where the larger the size and thickness of the profile, the better the capacity of the slab to withstand the load.
Keywords
Full Text:
Untitled PDFReferences
Amir, F., 2019. Redesign Gedung Laboratorium Dasar Bersama Universitas Mataram Menggunakan Struktur Baja Beton Komposit. Tugas Akhir, Universitas Muhammadiyah Mataram, Mataram.
Anonim, 2002, Standar Nasional Indonesia 1729-2015 Spesifikasi Untuk Bangunan Gedung Baja Struktural, Badan Standarisasi Nasional, Jakarta.
Anonim, ACI 211-91 Standard Practice for Selecting Proportions for Normal Heavyweight and Mass Concrete, ACI Committee 211, Detroit, 2002.
Anonim, Standar Nasional Indonesia 1729-2015, Spesifikasi Untuk Bangunan Baja Struktural, Departemen Pekerjaan Umum, Jakarta, 2015.
Anonim, Standar Nasional Indonesia 07-8389-2017, Cara Uji Tarik Logam, Departemen Pekerjaan Umum, Jakarta, 2017.
Anonim, Sika Voscocrete-10, Product Data Sheet Edition 04/2019, Sika South Africa (Pty) Ltd, Westmead, 2019.
Bowles, J.E, Foundation Analysis and Design, McGrawhill International Edition, New York, 1980.
Cahya, H.N., Studi Analisis Perbandingan Metode (Allowable Stress Design) Dengan LRFD (Load And Resistance Factor Design) Pada Struktur Gable Frame Di Pembangunan Pasar Baru Kabupaten Lumanjang, Tugas Akhir, Universitas Syiah Kuala, Banda Aceh.
Keniko, W., 2019, Analisis Kekuatan dan Perilaku Balok Sederhana (Simple Bream) Baja Hollow yang Diisi Mortar FAS 0,4 Dengan Variasi Ukuran Profil, Tugas Akhir, Universitas Syiah Kuala, Banda Aceh.
Mursal., 2018. Analisis perilaku portal bidang (plane frame) baja hollow yang diisi mortar dengan variasi tinggi portal. Tugas Akhir, Universitas Syiah Kuala, Banda Aceh.
Nawy, E.G., (1996), ″Reinforced Concrete, Fundamental Approach″, 3rd ed, Prentice-Hall Inc., New York.
Nurlina, S., Suseno, H., Hidayat, M. T., & Pratama, I. M. Y. (2016). Perbandingan Daktilitas Balok Beton Bertulang Dengan Menggunakan Perkuatan CFRP Dan GFRP. Rekayasa Sipil, 10(1), 62-69.
Setiawan A, 2008. Perencanaan Struktur Baja dengan metode LFRD, Erlangga.: Jakarta
Spiegel, L., dan Limbruner, G., F., Reinforce Concrete Design, Pretince Hall, New Jersey, 1998.
Tjokrodimuljo, Teknologi Beton, Jurnal Sipil Statik, Jakarta, 2007.
Refbacks
- There are currently no refbacks.
JURNAL TEKNIK SIPIL