Analysis of the tensile strength and elastic modulus of the insulation coating of the pipeline depending on the operating temperature

Corrosion processes occurring in pipelines were researched to improve existing methods for determining the degree of corrosion and clarify existing models on the topic of research. The causes of corrosion in pipelines, corrosion inhibitors are considered. Recalculation was carried out using experime...

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Hauptverfasser: Ankudinov, Vladislav, Shaikhetdinova, Ramiliya, Bronskaya, Veronika, Aminova, Guzel, Kotova, Nina, Minnegalieva, Chulpan, Kharitonova, Olga
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container_volume 2467
creator Ankudinov, Vladislav
Shaikhetdinova, Ramiliya
Bronskaya, Veronika
Aminova, Guzel
Kotova, Nina
Minnegalieva, Chulpan
Kharitonova, Olga
description Corrosion processes occurring in pipelines were researched to improve existing methods for determining the degree of corrosion and clarify existing models on the topic of research. The causes of corrosion in pipelines, corrosion inhibitors are considered. Recalculation was carried out using experimental data from literary sources using Wolfram Mathematica. Graphs were built and approximating functions were selected for each data sample. The adhesion properties of various coatings of pipelines have been investigated, the influence of various factors on the course of corrosion processes has been simulated and the models found in the literature on the research topic have been refined. The correlation between the corrosion intensity and the reliability and durability of the operation of oil pipelines is determined, the influence of adhesion and thermal expansion is considered.
doi_str_mv 10.1063/5.0092451
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source American Institute of Physics (AIP) Journals
subjects Adhesion
Corrosion inhibitors
Insulation
Mathematical analysis
Modulus of elasticity
Operating temperature
Petroleum pipelines
Tensile strength
Thermal expansion
title Analysis of the tensile strength and elastic modulus of the insulation coating of the pipeline depending on the operating temperature
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