Mathematical Modeling of the Process of Reduction of the Material Consumption of Gas Transmission System Elements

Author:

Pirumyan Narine1,Stakyan Mihran1,Khazaryan Hmayk Ashot2

Affiliation:

1. National University of Architecture and Construction of Armenia

2. "Gazprom Armenia" CJSC

Abstract

The new method for a comprehensive assessment of the strength, durability and material capacity of the critical elements of the main gas pipelines, taking into account the combined impact of factors causing damage (environment, corrosion, random loading, geometry variation, material defects, etc.), which are changing the bearing capacity and material capacity of these structures, is proposed. As the main damaging factor, the process of corrosion fatigue is accepted, the qualitative and quantitative assessment of which are realized by applying a set of equations of comparable fatigue lines obtained by fatigue tests carried out in air and in corrosive environment. By the joint solution of these equations, the functions of the corrosion action coefficients are obtained in a wide range of cyclic strength and durability, which in standard calculation procedures are performed only for cyclic strength and only at the inflection point of the fatigue lines (NG 5 106 cycles).The issues of reducing the material consumption and ensuring the cost-effectiveness of structures, by using relatively cheap materials for pipelines - low-carbon and low-alloy structural steels subjected to surface hardening in stressed sections of pipes (edge welds) in order to significantly increase the physical and mechanical characteristics of the used steel grades are considered. In order to increase the corrosion resistance of these sections, contemporary polymer anticorrosive coatings are used.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference25 articles.

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2. B.V. Zverkov, D.L. Kostovetsky, Sh.N. Katz, et al., Calculation and construction of pipelines: Tutorial-handbook, Mashinostroenie, Leningrad, (1979).

3. V.I. Trufyakov, Fatigue of welded joints, Naukova dumka, Kiev, (1973).

4. Information on https://www.belzona.com/ru/index.aspx.

5. A.F. Dashchenko, V.S. Kravchuk, V.D. Iorgachev, Bearing capacity of hardened machine parts, Astroprint, Odessa, (2004).

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