印尼低层建筑常用钢梁柱连接概述

Prima Sukma Yuana, Muslinang Moestopo, Dyah Kusumastuti, Naomi Pratiwi
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引用次数: 0

摘要

印尼的钢结构抗震规定始于2002年。从那时起,钢材作为结构材料的使用也在增加。然而,到目前为止,钢结构抗震设计还存在许多不足。在印尼的钢结构建筑中,许多梁柱连接在抗弯矩连接系统中都采用了弯管连接。在AISC 358中,悬架系统没有被描述为允许用于抗震建筑的连接。最近,欧洲发布了欧洲预审合格钢接头(equal接头)。这里讨论了四种类型的连接,其中一种是后扣式连接。后端连接符合抗震要求,适合在欧洲作为抗震连接使用。这可以作为我们在印尼设计后端连接的参考。然而,应该特别注意细节。螺栓的配置,端板的厚度,以及后腿的形状都不像印度尼西亚常用的,必须在equaljoint中进行改进调整。因此,连接的抗震性能变得更加有保证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Overview of Commonly Used Steel Beam-Column Connection in Indonesia for Low-Rise Building
The Indonesian seismic provision for steel structures was initiated in 2002. The use of steel has also been increasing as a choice of structural material since then. However, there are still many weaknesses in the seismic design of steel structures that have been carried out so far. A lot of beam-column connections in steel buildings in Indonesia use a haunch in a moment-resisting connection system. Haunched systems are not described in AISC 358 as permitted connections for earthquake-resistant buildings. Recently, Europe publishes European Prequalified Steel Joints (EqualJoints). There are four types of connections discussed, and one of them is the haunched type connections. The haunched connection meets the seismic requirements to be suitable for use as an earthquake-resistant connection in Europe. This can be used as a reference if we are going to design a haunched connection in Indonesia. However, special attention should be paid to the details. The bolt configuration, the thickness of the end plates, and the shape of the haunch are not like those commonly used in Indonesia, there must be improvements to be adjusted in EqualJoints. So that the performance of the connection against earthquakes becomes more guaranteed.
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