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Data for ultimate bearing capacity of concrete-filled steel tubular members and arches by the elastic modulus reduction method

机译:通过弹性模量减少法的混凝土钢管元件和拱形轴承轴承的最终承载力数据

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Homogeneous generalized yield function is adopted in this article to calculate the ultimate bearing capacity of 93 concrete-filled steel tubular components with detailed test data, and the ratios of the ultimate bearing capacity calculated to the tested are presented. Moreover, the incremental nonlinear finite element method and elastic modulus reduction method are adopted to evaluate the ultimate bearing capacity of 11 concrete-filled steel tubular arches, 7 among which with detailed test data. The component data cover those under different loading conditions, material strength and geometric parameters, and the arch data include those under different loading conditions and rise to span ratios. The data provided are useful to investigate the strength of CFST members and arches and to demonstrate the validation of other numerical methods. The current data are considered as a complementary for the main work “Linear elastic iteration technique for ultimate bearing capacity of circular CFST arches” .
机译:本文采用均匀的广义产量函数,以计算93个混凝土钢管元件具有详细测试数据的最终承载力,并提出了计算对测试的最终承载能力的比率。此外,采用增量非线性有限元方法和弹性模量减少方法来评价11个混凝土钢管拱的最终承载力,其中7个具有详细的测试数据。组件数据在不同的装载条件下,材料强度和几何参数下覆盖那些,并且弓形数据包括在不同的负载条件下的弓形数据并增加到跨度比率。提供的数据可用于研究CFST成员和拱门的强度,并证明其他数值方法的验证。目前的数据被认为是主要工作“线性弹性迭代技术的互补性”圆形CFST拱的最终承载能力“。

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