Virtual Principle for Determination Initial Displacements of Reinforced Concrete and Prestressed Concrete (Overtop) Members

M. Balabušić
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Abstract

Theoretical approach with analytical and numerical procedure for determination initial displacement of a reinforced and prestressed concrete members, simple and cantilever beams, loaded by axial forces and bending moments is proposed. It is based on the principle of minimum potential energy with equality of internal and external forces. The equations for strain internal energy have been derived, including compressed and tensile concrete and reinforcement. The energy equations of the external forces with axial flexural displacement effects have been derived from the assumed sinusoidal curve. The trapezoid rule is applied to integrate the segment strain energy. The proposed method uses a non-linear stress-strain curve for the concrete and bilinear elastic-plastic relationship for reinforcement; equilibrium conditions at a sectional level to generate the strain energies along the beam. At the end of this article are shown three specific numerical examples with comparative, experimental (two tests) results with the excellent agreement and one calculation result with a great disagreement, by obtaining results of virtual principle method. With this method is avoiding the adoption of an unsure (EJ), as in the case of underestimating or overestimate initial flexural rigidity.
钢筋混凝土和预应力混凝土(上部)构件初始位移确定的虚原理
提出了用解析和数值方法确定钢筋和预应力混凝土构件、简支梁和悬臂梁在轴力和弯矩作用下初始位移的理论方法。它基于内力和外力相等的最小势能原理。推导了混凝土和钢筋受压和受拉时的应变内能方程。从假定的正弦曲线出发,导出了轴向弯曲位移作用下的外力能量方程。采用梯形法则对分段应变能进行积分。该方法对混凝土采用非线性应力-应变曲线,对钢筋采用双线性弹塑性关系;在截面水平上产生沿梁应变能的平衡条件。本文最后给出了三个具体的数值算例,通过虚拟原理法的计算结果,对比和实验(两个试验)结果非常吻合,而一个计算结果却大相径庭。这种方法避免采用不确定(EJ),如在低估或高估初始弯曲刚度的情况下。
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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