NUMERICAL MODELING OF COMPOSITE FITTINGS FOR CLUTCHING WITH CONCRETE

Author:

Николюкин А.1,Nikolyukin A.2,Ярцев В.1,Yarcev Viktor2,Коломникова И.1,Kolomnikova I.2

Affiliation:

1. Тамбовский государственный технический университет

2. Tambov State Technical University

Abstract

Reinforced concrete is one of the most common materials in construction. Constructions made of this material have a high bearing capacity; well perceived dynamic and static loads. This is ensured by the adhesion between the reinforcing bar and concrete. The amount of adhesion is made from a number of different factors formed in the region of the conventional surface of interaction of reinforcement with concrete. It is implied that even if any reinforcement is used, materials come into contact over the surface, which can collapse depending on the load. Violation of the clutch causes significant deformation of the structure, which subsequently leads to a loss of the bearing capacity of the element. Therefore, there is a need to study the magnitude of the adhesion between concrete and reinforcement under various influences. This article describes the results of a numerical experiment on pulling out fiberglass reinforcement of a periodic profile from concrete. A mathematical model is constructed, which allows to study the accumulation of defects and the destruction of reinforcement in the area of concrete fixing. The results of numerical studies are considered.

Publisher

BSTU named after V.G. Shukhov

Subject

Psychiatry and Mental health,Neuropsychology and Physiological Psychology

Reference12 articles.

1. Холмянский М.М. Контакт арматуры с бетоном. М.: Стройиздат, 1981. 184с., Holmyanskij M.M. Contact reinforcement with concrete [Kontakt armatury s betonom]. M.: Strojizdat. 1981, 184 p. (rus)

2. Хозин В.Г. [и др.] Сцепление полимеркомпозитной арматуры с цементным бетоном // Известия КГАСУ. 2013. № 1 (23). С. 214–220., Hozin V.G. and other. Coupling polymer composite reinforcement with cement concrete [Sceplenie polimerkompozitnoj armatury s cementnym betonom]. Izvestiya KGASU. 2013. No. 1 (23). Pp. 214–220. (rus)

3. Овчинникова И.Г. Напряженно деформированное состояние бетона в области силового воздействия с арматурой. В. кн.: Сцепление арматурой с бетоном. Челябинск. ЦПНТО Стройиндустрия, МИСИ, ЧПИ, НИИЖБ, ВНИИ Железобетон, 1971., Ovchinnikova I.G. Stress-strain state of b-tone in the field of force action with reinforcement [Napryazhenno deformirovannoe sostoyanie betona v oblasti silovogo vozdejstviya s armaturoj]. V. kn.: Sceplenie armaturoj s betonom. CHelyabinsk. CPNTO Strojindustriya, MISI, CHPI, NIIZHB, VNII Zhelezobeton. (rus)

4. ГОСТ 10060-2012. Бетоны. Методы определения морозостойкости Общие технические условия. НИИБЖ им. А. А. Гвоздева. М., 2014. 56 с., GOST 10060-2012. Concretes. Methods for determining the frost resistance General technical conditions [Betony. Metody opredeleniya morozostojkosti Obshchie tekhnicheskie usloviya]. NIIBZH im. A. A. Gvozdeva. M. 2014. 56 p. (rus)

5. ГОСТ 31938-2012. Арматура композитная полимерная для армирования бетонных конструкций. Общие технические условия. НИИБЖ им. А. А. Гвоздева. М., 2013. 42 с., GOST 31938-2012. Composite polymer reinforcement for reinforcement of concrete structures. General technical conditions [Armatura kompozitnaya polimernaya dlya armirovaniya betonnyh konstrukcij. Obshchie tekhnicheskie usloviya]. NIIBZH im. A. A. Gvozdeva. M. 2013. 42 p. (rus)

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1. ANALYSIS OF THE STRESS-STRAIN CONDITION OF CONCRETE AND REINFORCEMENT IN THE AREA OF THEIR ENGAGEMENT IN THE ANSYS SOFTWARE PACKAGE;Bulletin of Belgorod State Technological University named after. V. G. Shukhov;2019-11-20

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