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Formulae for hot-spot stress concentration factors of concrete-filled CHS T-joints based on experiments and FE analysis

机译:基于试验和有限元分析的混凝土CHS T型接头热点应力集中系数公式

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Fatigue of welded concrete-filled tubular joints is a new subject to be investigated, compared with fatigue of welded tubular joints without concrete which has been studied well. Fatigue cracking is usually located at the hot spot stress of a welded concrete-filled tubular joint. A method of calculating its hot spot stress is essential for fatigue strength assessment. Hot spot stress concentration factors (SCF) of welded concrete-filled circular hollow section (called as CFCHS) T-joints respectively under axial force and in-plane bending are investigated experimentally and numerically in this paper. SCF testing was carried out on ten CFCHS T-joints with different nondimensional geometric parameters beta (ratio of brace to chord diameter), 2 gamma (ratio of chord diameter to thickness) and tau (ratio of brace to chord thickness). The experimental findings shows in most cases, a remarkable decrease in SCFs of CFCHS T-joints, compared with circular hollow section T-joints without concrete. Finite element (FE) modelling with 3D quadratic hexahedral solid element was developed and verified by the experimental data. It is found that the conversion relationship SCF = 1.2 SNCF (strain concentration factor) can be adopted for CFCHS Tjoints. Using the reliable FE modelling, parametric study was conducted to know the effect of non-dimensional parameters on SCFs of CFCHS T-joints. Based on multiple regression analysis, a series of formulae are recommended for calculating SCFs in the chord and brace of CFCHS T-joints subjected to the axial force and inplane bending in the brace and in the chord respectively, which are validated by both the experimental data and FE modelling.
机译:与无混凝土的焊接钢管接头的疲劳相比,填充钢管焊接的疲劳是研究的新课题。疲劳裂纹通常位于填充混凝土的焊接管状接头的热点应力处。计算其热点应力的方法对于疲劳强度评估至关重要。分别通过轴向和平面弯曲试验研究了圆孔空心截面T型节点的受热应力集中系数(SCF)。 SCF测试是在十个CFCHS T型接头上进行的,这些T型接头具有不同的无量纲几何参数β(撑杆与弦直径之比),2 gamma(撑杆直径与弦之比)和tau(撑杆与弦之比)。实验结果表明,与没有混凝土的圆形空心截面T型接头相比,CFCHS T型接头的SCF明显降低。利用3D二次六面体实体元素进行了有限元(FE)建模,并通过实验数据进行了验证。发现CFCHS Tjoints可以采用转换关系SCF = 1.2 SNCF(应变集中系数)。使用可靠的有限元建模,进行了参数研究,以了解无量纲参数对CFCHS T型接头的SCF的影响。在多元回归分析的基础上,建议采用一系列公式分别计算CFCHS T型接头的弦和支架中的SCF,使其分别受支架和弦中的轴向力和面内弯曲的影响,并通过实验数据进行了验证。和有限元建模。

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