标题: 钢骨钢筋混凝土(SRC)短柱轴压行为与围束效应之数值模拟研究
A Numerical Investigation on Compression Behaviorand Confinement Effect of SRC Short Columns
作者: 王琳
Wang, Lin
翁正强
Weng, Cheng-Chiang
土木工程学系
关键字: SRC短柱;轴压行为;围束效应;数值模拟;ANSYS;强度;韧性;箍筋用量;设计方法;SRC Short Column;Axial Compression Behavior;Confinement Effect;Numerical Simulation;ANSYS;Strength;Ductility;Design Method
公开日期: 2009
摘要: 近年来陆续有许多大尺寸的钢骨钢筋混凝土(Steel Reinforced Concrete,SRC)柱之试验结果出现,证实SRC柱具备优良的抗压强度与韧性,且SRC柱中之钢骨可以对其所包覆之混凝土发挥良好的围束效应。然而,由于SRC构造设计之参数较为复杂,若要逐一进行轴压试验来探讨各设计参数对轴压行为之影响,则势必需要耗费庞大的人力、时间及金钱,且由于试验设备及场地等限制,常常仅能针对一部份设计参数进行试验,而无法作较为详细的探讨。
为了有效运用资源并节省人力、时间及金钱,本研究针对SRC短柱之“轴压行为”与“围束效应”进行数值模拟分析。根据文献调查显示,ANSYS为一功能强大的有限元素分析软体,其在钢结构及RC结构之分析应用上已有相当之成果,故本研究乃采用ANSYS软体作为数值模拟分析之工具。
本研究运用ANSYS软体建立SRC短柱受轴压作用之分析模型,并与一系列SRC短柱之试验结果互相比对验证。最后针对SRC柱之“围束箍筋需求量”进行深入探讨,经由分析证实SRC柱内之钢骨翼板确实能够对其所包覆之混凝土发挥围束贡献,大约可额外提升20%至33%的混凝土抗压强度。本研究并提出一套新的SRC柱围束箍筋需求量之计算公式,以提供学术界与工程界参考。
During the last decade, test results of full-scale steel reinforced concrete (SRC) columns obtained by previous researchers have demonstrated satisfactory performance both in strength and ductility. In addition, special recognition has been accredited to the superior concrete confinement effect provided by the steel section embedded in the SRC column. However, due to the fact that the cost of conducting experiment on full-scale specimens is very expensive and time consuming, an alternative approach using the numerical simulation technique has become increasingly desirable.
It is the objective of this study to utilize the highly recognized finite element method (FEM) software ANSYS to numerically simulate the mechanical behavior and confinement effect of the SRC columns. In the first stage, this study generated and analyzed a FEM model to simulate the SRC test specimen. The numerical result was compared to the SRC test data to confirm the validity of the FEM model. In the second stage, the parameters related to the design of the SRC columns were investigated using the FEM model obtained from the previous stage. The major parameters in this numerical study included the axial strength, ductility and the confinement effect. The numerical results showed that the steel section in SRC short columns can provide effective confinement to the concrete and enhance the concrete compressive strength up to 20 to 33 percent. Therefore, a new design method was proposed in this study to account for the confinement effect provided by the steel section embedded in the SRC column.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079616504
http://hdl.handle.net/11536/42226
显示于类别:Thesis


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