Deformation-strength model application at the determining of stress-strain state of reinforced concrete structures

Abstract

The work considers the possibility and expediency of deformation-strength model applica-tion in the study of stress-strain state of reinforced concrete structures. Relying on the basic provisions of the mechanics of solid deformable body and the real stages of work of reinforced concrete elements, it is generalized and established by the authors that the real state of rein-forced concrete structures cannot only be described by stresses diagrams or only by strain diagram. Aim of the paper is consideration of concrete and reinforced concrete elements’ work as a force and deformation model. The theory of reinforced concrete structures resistance, as before, is aimed at a precise definition of the four major problems: accurate calculation of the load at which the first cracks appear; deter-mination of the width of the cracks in the operational phase, starting from the moment of their appearance; calculation of rigidity and deflec-tions, including the maximum permissible; definition of maximum possible bearing capacity (strength or stability). The real state of the rein-forced concrete structure cannot be displayed only by stress distribution or deformations diagrams. This can only be done when used in con-junction with both diagrams. In this case, the generalized model of the element deformation should be able to equally reflect both the nature of the growth of relative deformation of materials, and a process of continuous redistribution of stresses in them, especially at the stages that are close to the limit equilibrium.

Authors and Affiliations

V. M. Karpiuk, A. I. Kostiuk, Yu. A. Somina, D. S. Danilenko

Keywords

Related Articles

Using software based on the Monte-Carlo method for receiving the few-group homogenized macroscopic interaction cross-section

The constant preparation issues are important for performing the few-group analysis for different states of the reactor core. Besides, the constant preparation method influences the further calculations accuracy and qual...

The efficiency of the differential gear to devices for controlling the speed change through a sun gear

When performing technological processes, it becomes necessary to control changes in speed in magnitude and direction. Today, special attention is paid to the method of controlling speed changes using single-stage and mul...

Global position system sensor model for robotics simulator

Today there is acute problem of automatic navigation for different types of robots, unmanned vehicles and people. Increasing number of robotic vehicles requires them to have more accurate navigation in the environment. D...

Thermal hydraulic analysis of the regimes with unmanageable control rods movement and ejection for the reactor strength estimation

The article presents results of research (thermal-hydraulic analysis) of initiating events (regulatory regimes), associated with the uncontrolled movement and ejection of control rods that had previously not been conside...

Fracture resistance of shell-steel reactor steel with mixed deformation modes for justification of extension of nuclear power plants lifetime

Preliminary thermomechanical loading promotes increase of resistance to brittle fracture of heat-resistant steels with fractures and is the fundamental basis of the perspective method of increasing the resource for ensur...

Download PDF file
  • EP ID EP319332
  • DOI 10.15276/opu.2.52.2017.03
  • Views 154
  • Downloads 0

How To Cite

V. M. Karpiuk, A. I. Kostiuk, Yu. A. Somina, D. S. Danilenko (2017). Deformation-strength model application at the determining of stress-strain state of reinforced concrete structures. Праці Одеського політехнічного університету, 2(52), 18-23. https://www.europub.co.uk/articles/-A-319332