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Direct analysis of high-strength concrete-filled-tubular columns with circular octagonal sections

机译:直接分析具有圆形和八边形截面的高强度钢管混凝土柱

摘要

High-strength-concrete (HSC) is brittle, but its ductility can be dramatically increased when confined by steel tubes. However, the size of hot-rolled tubular sections is commonly limited to 600 mm, its capacity as mega columns in many high-rise buildings is inadequate. This paper details the use of fabricated and rolled sections as mega-columns by the direct analysis of design (DAM) which is further presented for application with high-strength-concrete-filled-tubular (HCFT) columns of circular and octagonal sections allowing for confinement effects in concrete. To capture the material yielding behaviors and to allow for an explicit simulation on the member initial curvatures, a curved-piecewise-Hermite (CPH) element is especially developed for simulating the behaviors of HCFT columns under extreme loading conditions. A plastic-fiber-hinge-model using the sectional strength-iteration surfaces is proposed for capturing the yielding behavior at the hinge locations and the analytical method for generating the yield surfaces is elaborated. To this, one-element-per-member is sufficient for numerical simulation; and the savings in computer time are considerable, making the proposed theory practical. The material model for the HSC in steel tubes is essential for a successful design. To this, an experiment on two groups of confined specimens, e.g. circular and octagonal, is established for investigating the properties of HSC, and an approximated calculation method is proposed and validated with the experiments. Consequently, the corresponding stress vs. strain relations of the confined HSC can be determined for use in analysis. Finally, examples are given for verifying and validating the proposed method for HCFT columns with circular and octagonal sections.
机译:高强度混凝土(HSC)较脆,但在钢管内封闭时,其延展性可以大大提高。但是,热轧管型材的尺寸通常限制为600 mm,其在许多高层建筑中作为巨型柱的能力不足。本文通过对设计的直接分析(DAM)详细介绍了将制成型和轧制型材用作巨型柱的方法,该设计将进一步介绍用于圆形和八边形型材的高强度混凝土填充管状(HCFT)柱,在混凝土中的约束作用。为了捕获材料的屈服行为并允许对构件的初始曲率进行明确的模拟,特别开发了一种弧形分段的赫尔米特(CPH)元素来模拟HCFT柱在极端载荷条件下的行为。提出了使用截面强度-迭代表面的塑料纤维铰链模型来捕获铰链位置处的屈服行为,并阐述了生成屈服面的分析方法。对此,数值模拟就足够了。并且节省了计算机时间,这使所提出的理论具有实用性。钢管中HSC的材料模型对于成功设计至关重要。为此,对两组密闭样本进行了实验,例如建立了圆形和八边形,用于研究HSC的性能,并提出了一种近似的计算方法,并通过实验进行了验证。因此,可以确定受限HSC的相应应力与应变关系,以用于分析。最后,给出了用于验证和验证所提出的具有圆形和八边形截面的HCFT柱的方法的示例。

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