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首页> 外文期刊>Steel & Composite Structures: An International Journal >Effect of spiral spacing on axial compressive behavior of square reinforced concrete filled steel tube (RCFST) columns
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Effect of spiral spacing on axial compressive behavior of square reinforced concrete filled steel tube (RCFST) columns

机译:螺旋间距对方形钢管(RCFST)柱轴向压缩行为的影响

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摘要

Spiral spacing effect on axial compressive behavior of reinforced concrete filled steel tube (RCFST) stub column is experimentally investigated in this paper. A total of twenty specimens including sixteen square RCFST columns and four benchmarked conventional square concrete filled steel tube (CFST) columns are fabricated and tested. Test variables include spiral spacing (spiral ratio) and concrete strength. The failure modes, load versus displacement curves, compressive rigidity, axial compressive strength, and ductility of the specimens are obtained and analyzed. Especially, the effect of spiral spacing on axial compressive strength and ductility is investigated and discussed in detail. Test results show that heavily arranged spirals considerably increase the ultimate compressive strength but lightly arranged spirals have no obvious effect on the ultimate strength. In practical design, the effect of spirals on RCFST column strength should be considered only when spirals are heavily arranged. Spiral spacing has a considerable effect on increasing the post-peak ductility of RCFST columns. Decreasing of the spiral spacing considerably increases the post-peak ductility of the RCFSTs. When the concrete strength increases, ultimate strength increases but the ductility decreases, due to the brittleness of the higher strength concrete. Arranging spirals, even with a rather small amount of spirals, is an economical and easy solution for improving the ductility of RCFST columns with high-strength concrete. Ultimate compressive strengths of the columns are calculated according to the codes EC4 (2004), GB 50936 (2014), AU (2008), and ACI 318 (2014). The ultimate strength of RCFST stub columns can be most precisely evaluated using standard GB 50936 (2014) considering the effect of spiral confinement on core concrete.
机译:本文实验研究了钢筋混凝土钢管轴向压缩行为对轴向压缩行为的螺旋间距效应。共有二十个标本,包括16个方形RCFST柱和四个基准的传统方形混凝土填充钢管(CFST)柱是制造和测试的。测试变量包括螺旋间距(螺旋比)和混凝土强度。获得并分析了失效模式,负荷与位移曲线,压缩刚度,轴向抗压强度和延伸性和延展性。特别是,研究并详细讨论了螺旋间距对轴向抗压强度和延伸性的影响。测试结果表明,严重排列的螺旋显着提高了极限抗压强度,但轻度排列对极限强度没有明显影响。在实用的设计中,只有当螺旋排列时,才能考虑螺旋对rcfst柱强度的影响。螺旋间距对增加RCFST柱的峰值延展性具有相当大的影响。螺旋间距的降低显着增加了RCFST的后峰值延展性。当混凝土强度增加时,最终的强度增加,但由于更高强度混凝土的脆性,延展性降低。即使具有相当少量的螺旋形,螺旋形是一种经济且易于改善RCFST柱的延展性,具有高强度混凝土。根据代码EC4(2004),GB 50936(2014),AU(2008)和ACI 318(2014)计算柱的最终压缩强度。考虑到螺旋限制对核心混凝土的影响,可以最精确地评估RCFST存根柱的最终强度。

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