DETERMINATION OF CARRYING CAPACITY OF TWO-WOOD REINFORCED CONCRETE COLUMNS IN DIRECT DAMAGE

Y. Klymenko, E.V. Maksiuta
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Abstract

Based on the field studies and determination of the parameters of the stress-strain state, as well as the nature of the operation of reinforced concrete I-beam columns damaged during operation and during hostilities, a general method for determining the residual bearing capacity of elements was created. The article presents a method for determining the residual bearing capacity of damaged compressed reinforced concrete columns with direct damage, when the damage front is parallel to one of the main axes of the section. The prerequisites for the calculation of damaged reinforced concrete I-columns are proposed: the hypothesis of flat sections is accepted; stresses in the compressed zone are distributed uniformly with intensity ηfcd; the stresses in the reinforcement are taken depending on the height of the compressed zone of concrete, the forces in the tension zone are perceived by the reinforcement and are taken no more than the design tensile strength ft; the work of tensioned concrete is not taken into account; the condition of parallelism of force planes is accepted (the plane of action of external and internal forces are the same or parallel, depending on the design case); the reduced bearing capacity of exposed reinforcing bars is taken into account; damage front is a straight line. Equilibrium equations are composed. The proposals set forth in the article are based on the main provisions of the current norms and expand the scope of their use. The proposed method for determining the residual bearing capacity of reinforced concrete compressed elements of the tee profile, damaged during operation, is statistically justified and reliable. This allows the calculation method to determine the possibility of further trouble-free operation of structures or the need for their strengthening or reconstruction. A system of equations has been created that takes into account all the variety of shapes and sizes of the cross section of the element as a whole, the shapes and sizes of the compressed concrete zone. The reliability of these proposals is confirmed by comparison with data obtained experimentally, and statistical processing of such a comparison. The deviation variation coefficient is 0,125.
直接损伤下二木钢筋混凝土柱承载力的测定
通过对钢筋混凝土工字梁柱应力应变状态参数的实地研究和确定,结合工字梁柱在运行和敌对状态下的运行特性,提出了确定构件剩余承载力的通用方法。本文提出了当损伤前缘平行于截面主轴之一时,直接损伤钢筋混凝土受压柱的残余承载力的确定方法。提出了钢筋混凝土工字形柱损伤计算的前提条件:接受平截面假设;压缩区应力随强度η - fcd均匀分布;钢筋中的应力取决于混凝土压缩区的高度,受拉区的力由钢筋感知,且不超过设计抗拉强度ft;未考虑受拉混凝土的作用;接受力面平行的条件(根据设计情况,内力和外力的作用面相同或平行);考虑了外露钢筋的承载力降低;损伤锋是一条直线。建立了平衡方程。本文提出的建议是基于现行规范的主要规定,扩大其使用范围。本文提出的三通型钢筋混凝土压缩构件剩余承载力的确定方法在统计上是合理的和可靠的。这使得计算方法可以确定结构进一步无故障运行的可能性或其加强或重建的需要。我们创建了一个方程系统,该系统考虑了整体构件横截面的各种形状和大小,以及压缩混凝土区域的形状和大小。这些建议的可靠性是通过与实验数据的比较和统计处理来证实的。偏差变异系数为0,125。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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