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Testing and numerical modelling of circular CFDST cross-sections with stainless steel outer tubes in bending

机译:不锈钢外管弯曲圆形CFDST横截面的测试与数值建模

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The structural performance of circular concrete-filled double skin tubular (CFDST) cross-sections with stainless steel outer tubes has been examined herein based on experiments and numerical modelling. A laboratory testing programme comprising a total of 22 four-point bending tests was performed on seven CFDST cross-sections with varying concrete grades. The details of the test rig and procedures, as well as the key test observations, including the failure moment capacities, moment-curvature curves and failure modes, are fully reported. A numerical modelling programme was then carried out; a finite element (FE) model was first established to replicate the test observations, and then adopted to conduct a parametric study to acquire further FE data over a broader spectrum of material strengths and cross-section slendernesses. Based on the combined set of test and FE results, the general design provisions for concrete-filled carbon steel members in the current European and American design codes were evaluated for their applicability to the studied CFDST cross-sections. Overall, the results revealed that both of the examined design codes yield unduly conservative (less so for the higher concrete grades) and scattered moment resistance predictions, though some moment resistances predicted from the European code were on the unsafe side. Modifications, including a concrete reduction factor eta to reflect the reduced relative effectiveness of using higher concrete grades and a modified stress distribution considering the partial spread of plasticity, were proposed and shown to improve the consistency of the resistance predictions. Finally, the reliability of the current and modified design rules was demonstrated through statistical analyses.
机译:基于实验和数值模型,在本文中研究了圆形混凝土双皮管(CFDST)横截面的结构性能。在具有不同混凝土等级的七个CFDST横截面上进行总共22个四点弯曲试验的实验室测试程序。预先报道了测试钻机和程序的细节以及包括故障时刻容量,力矩曲线和故障模式的关键测试观察。然后进行数值建模程序;首先建立有限元(FE)模型以复制测试观察,然后采用参数研究,以在更广泛的材料强度和横截面纤维的范围内获得进一步的FE数据。基于组合的测试和FE结果,评估了当前欧美设计代码中混凝土碳钢成员的一般设计规定,对其对研究的CFDST横截面的适用性进行了评估。总的来说,结果表明,两种检测的设计代码都是过度保守的(对于较高的具体成绩而少)和散射的力矩阻力预测,尽管从欧洲代码中预测的一些时刻电阻在不安全方面。提出并提出了考虑使用更高的混凝土等级的相对有效性和考虑塑性的部分扩散的改进的应力分布,包括修改。最后,通过统计分析证明了当前和修改设计规则的可靠性。

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