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Compression member response of steel angle on truss structure with variation of single and double sections

机译:单个和双段变化桁架结构钢角度的压缩构件响应

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Implementation of an axial compression load on the steel angle can be found at the various structure such as truss system on telecommunication tower. For telecommunication tower, steel angle section can be suggested as an alternative solution due to its assembling easiness as well as its strength. But, antennas and microwaves installation that keep increases every time on this structure demand reinforcement on each leg of the tower structure. One solution suggested is reinforcement with increasing areas section capacity, where tower leg consisted of single angle section will be reinforced to be double angle section. Regarding this case, this research discussed the behavior of two types of steel angle section: single angle of L.30.30.3 and double angles of 2L.30.30.3. These two sections were designed identically in length (103 cm) and tested by axial compression load. At the first step, compression member together with tension member was formed to be a truss system, where compression and tension member were met at a joint plate. Schematic loading was implemented by giving tension loading on the joint plate until failure of specimens. Experimental work findings showed that implementing double angle sections (103 cm) significantly increased compression capacity of steel angle section up to 118 %.
机译:钢角上的轴向压缩负荷的实施可以在电信塔上的各种结构中找到诸如桁架系统的各种结构。对于电信塔,由于其组装容易和其强度,可以建议钢角度作为替代解决方案。但是,每次在塔结构的每条腿上都会在这种结构需求加固时保持增加的天线和微波安装。建议的一个解决方案是随着越来越多的区域段容量而加强,其中由单角度部分组成的塔腿将被加强为双角度部分。关于这种情况,本研究讨论了两种类型的钢角度部分的行为:L.30.30.3的单个角度和2L.30.30.3的双角度。这两个部分的长度(103厘米)设计,并通过轴向压缩负荷测试。在第一步骤中,压缩构件与张力构件一起形成为桁架系统,其中在关节板上满足压缩和张力构件。通过在关节板上施加张力载荷来实现示意性加载,直至试样失效。实验工作结果表明,实施双角度部分(103cm)显着增加了钢角度部分的压缩容量,高达118%。

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