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Time-dependent analysis of slender, tapered reinforced concrete columns

机译:纤细,锥形钢筋混凝土柱的时间依赖性分析

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This study analyzed stresses in concrete and its reinforcement, computing the additional loading transferred by concrete creep. The loading varied from zero, structure exclusively under its self-weight, up to the critical buckling load. The studied structure was a real, tapered, reinforced concrete pole. As concrete is a composite material, homogenizing techniques were used in the calculations. Due to the static indetermination for determining the normal forces acting on concrete and reinforcement, equations that considered the balance of forces and compatibility of displacement on cross-sections were employed. In the mathematical solution used to define the critical buckling load, all the elements of the structural dynamics present in the system were considered, including the column self-weight. The structural imperfections were linearized using the geometric stiffness, the proprieties of the concrete were considered according to the guidelines of the American Concrete Institute (ACI 209R), and the ground was modeled as a set of distributed springs along the foundation length. Critical buckling loads were computed at different time intervals after the structure was loaded. Finite element method results were also obtained for comparison. For an interval of 5000 days, the modulus of elasticity and critical buckling load reduced by 36% and 27%, respectively, compared to an interval of zero days. During this time interval, stress on the reinforcement steel reached within 5% of the steel yield strength. The computed strains in that interval stayed below the normative limit.
机译:本研究分析了混凝土的应力及其加固,计算了混凝土蠕变转移的额外装载。加载从零,结构仅在其自我重量下变化,直至关键屈曲负荷。研究的结构是真实,锥形的钢筋混凝土杆。混凝土是复合材料,在计算中使用均化技术。由于确定作用在混凝土和加固上作用的正常力的静态不确定,采用了考虑力平衡的方程和位移对横截面的相容性。在用于定义关键屈曲负荷的数学溶液中,考虑了系统中存在的结构动力学的所有元件,包括列自重。使用几何刚度线性化的结构缺陷,根据美国混凝土研究所(ACI 209R)的指导,混凝土的全文进行了线性化,地面被建模为沿基础长度的一组分布式弹簧。在装载结构后,在不同的时间间隔计算关键屈曲载荷。还获得了有限元方法结果进行比较。对于5000天的间隔,与零天的间隔相比,弹性的模量和关键屈曲负荷分别减少了36%和27%。在此时间间隔期间,对钢屈服强度的5%达到钢筋的应力。计算的菌株在该间隔中停留在规范性极限下方。

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