Desain Ulang Balok dan Kolom Komposit

Syafridal Is, Muhammad Zardi, Nanda Mahathir
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Abstract

The aim of this study is to redesign the beams and columns of reinforced concrete into a composite structure of Women's Empowerment and Child Protection Agency to derive a comparison of strength and efficiency between concrete-steel composite structures and reinforced concrete structures without changing the layout of columns and beams in the initial planning. LRFD (Load Resistance Factor Design) method and SAP2000 ver.14 as a tool were used in this study. The design was based on Indonesian Standard Regulation. The concrete strength (f’c) and steel strength ( were25 MPa and 250 MPa, respectively. In this study, steel profile BJ 37of WF (400 x 400 x 21 x 21) mm was used for beam and WF (400 x 400x 30 x 50) mm with concrete cross section (500 x 500) mm for column. The results of redesign composite structure for three-story building with the designed steel profile is fulfilled the strength requirements. The obtained maximum moment of beam and column are 36789,36 kg.cm and 43942,2 kg.cm, respectively. The used of composite material is 76,925% more expensive than reinforced concrete material.
重新设计梁和复合柱
本研究的目的是将钢筋混凝土的梁和柱重新设计为妇女赋权和儿童保护机构的组合结构,在不改变初始规划中柱和梁的布局的情况下,得出混凝土-钢组合结构与钢筋混凝土结构的强度和效率比较。LRFD(负载阻力系数设计)方法和SAP2000版本。14作为本研究的工具。该设计基于印度尼西亚标准法规。混凝土强度f 'c为25 MPa,钢强度f 'c为250 MPa。在本研究中,梁采用WF (400 × 400 × 21 × 21) mm的钢型材bj37,柱采用WF (400 × 400 × 30 × 50) mm,混凝土截面(500 × 500) mm。采用设计的钢型材对三层楼组合结构进行再设计,结果满足强度要求。得到的梁、柱最大弯矩为36789、36kg。厘米和43942,2公斤。厘米,分别。复合材料的使用比钢筋混凝土材料贵76,925%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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