Calculation of Crack Formation During the Thermal Stress State of Concrete Masses and Development of Measures to Improve the Operational Properties of Concrete

Author:

Nikolenko S D,Sazonova S A,Zvyagintseva A V

Abstract

Abstract The modeling of the thermally stressed state of the building foundation slab is considered. The performed calculations took into account the occurrence of stresses as a result of heating the concrete mass during cement hydration. To simulate the thermal stress state, the specialized Midas Fea software package is used. In carrying out the research, materials from articles on the construction and examination of the current state of buildings and structures made of concrete and fiber-reinforced structures were used. At control points, diagrams of changes in temperatures, stresses, and crack formation coefficients in relation to the time of curing are obtained. The isopoles of temperature distribution and crack formation coefficients over the volume of the studied array are obtained. Measures have been developed to improve the operational properties of concrete, including engineering and technical recommendations to reduce the negative impact of temperature differences on the manufacturing process of concrete mixtures and foundations.

Publisher

IOP Publishing

Subject

General Medicine

Reference29 articles.

1. Concrete and reinforced concrete structures

2. Design Code,1991

3. Mathematical modeling of the process of fracture adhesion of reinforcing bar with concrete Part 1 Models taking into account discontinuities of the connection;Benin;Magazine of Civil Engineering,2013

4. Research on the influence of thermal effects on the strength characteristics of concrete;Mikhnevich;Scientific journal of construction and architecture,2017

5. Free vibrations of rectangular mesh plates with an elastic contour;Sazonova;Izvestiya Akademii Nauk Solid Mechanics,1993

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