Modeling of stress-strain state and strength-element analysis of construction of inertial-filter gas tank
DOI:
https://doi.org/10.15587/2312-8372.2013.12405Keywords:
modeling, strength, inertial-filter tank, calculationAbstract
The estimation of strength and stability of a device is an important task at the development stage of any new equipment, which is an inertial-filter gas tank. The purpose of the article is to study the structural strength of the tank with the help of modern computer modeling. For the experiment the module APM FEM made by "ASCON" was selected, which permits to recalculate automatically the stress-strain state when changing the geometry of a three-dimensional solid model.
We have calculated the distribution of equivalent stresses and their components, as well as the principal stresses; the distribution of linear, angular and total displacements; the distribution of strains on the model elements; diagrams of the distribution of internal forces; the value of the coefficient of the stability factor and form of stability loss; the distribution of safety factors and the number of cycles according to the criterion of fatigue strength.
The strength analysis of the module APM FEM helps solve linear problems of the stress-strain state (static analysis), static strength of assembly, stability, thermoelasticity, and stationary heat conductivity. The dynamic analysis permits to determine the frequencies and forms of the natural oscillations, including models with a pre-load.
References
- Чичеров, Л.Г. Расчет и конструирование нефтепромыслового оборудования [Текст] / Л.Г. Чичеров, Г.В. Молчанов, А.М. Рабинович. – М.: Недра, 1987. – 422 с.
- Краснокутский, А. Прочностной анализ с помощью программы ПАССАТ [Текст] / А. Краснокутский, А. Тимошкин // Cad Master. – №3. – 2006. – С. 86-89. – Режим доступа: URL: http://www.truboprovod.ru/articles/CadMaster2006_03_Passat.pdf
- Юсупов Ильгиз. Использование модуля прочностного анализа APM Structure 3D для расчета строительных конструкций в условиях сурового климата [Текст] / Ильгиз Юсупов // САПР и графика. – №8. – 2000.
- Стремнев, А. Прочностные анализы в Autodesk Inventor [Текст] / Александр Стремнев // САПР и графика. – №5. – 2010. – Режим доступа: URL: http://pointcad.ru/about/article/362/818/
- Магомедов, А. Интегрированный конечно-элементный анализ в КОМПАС-3D [Текст] / Александр Магомедов, Андрей Алехин // Машиностроение и смежные отрасли. – №8(60). – 2010. – Режим доступа: URL: http://kompas.ru/source/articles/Observer_08.2010_APM.pdf
- Кочина, М.Л. Результаты моделирования напряженно-деформированного состояния роговицы глаза с использованием системы инженерного анализа ANSYS [Текст] / М.Л. Кочина, В.Г. Калиманов // Клиническая информатика и Телемедицина. — 2009. — Т. 5, вып. 6. — C. 26-30.
- Савинова, Н. Опыт проведения исследований корпусных деталей дробильного оборудования в среде прочностного анализа АРМ Structure3D [Текст] / Наталья Савинова // САПР и графика. – №3. – 2005. – Режим доступа: URL: http://www.sapr.ru/article.aspx?id=7066&iid=289
- Бандурин, М.А. Моделирование напряженно-деформированного состояния оросительного лотка-оболочки [Текст] / М.А. Бандурин // Научный журнал КубГАУ. – №24(8). – 2006. – Режим доступа: URL: http://ej.kubagro.ru/2006/08/pdf/33.pdf
- Bakouline, N. Variation parametric research technique of variable by step width shollo shells with finite deflections [Text] / N. Bakouline, O. Ignatiev, V. Karpov // International Journal for Computional Civil and Structural Engineering. – Voulume 1. – Issue 3. – 2000. – pp.1-6.
- Doneil, L.N. A new theory for buckling of thin cylinders under axial compression and bending [Text] / L.N. Doneil / Trans.ASME. – 1934. – pp. 56.
- Chicherov, L.G, Molchanov, G.V, Rabinovich, A.M. (1987). Calculation and design of oil field equipments. Moscow: Nedra, 422 p.
- Andrey Krasnokutsky, Alekcey Timoshkin (2006). Strength analysis using PASSAT. Journal Cad Master, № 3, pp. 86-89. Access mode: http://www.truboprovod.ru/articles/CadMaster2006_03_Passat.pdf
- Ilgiz Yusupov. (2000). Using the module APM Structure 3D strength analysis for design of structures in severs climatic environments. Journal "CAPR and Graphics», № 8.
- Alexander Stremnev. (2010). Strength analysis in Autodesk Inventor. Journal "CAPR and Graphics», № 5. Access mode: http://pointcad.ru/about/article/362/818/
- Alexander Magomedov, Andrey Alekhine. (2010). Integrated finite element analysis in KOMPAS-3D. Journal " Mechanical engineering and related industries». № 8 (60). Access mode: http://kompas.ru/source/articles/Observer_08.2010_APM.pdf
- Cochin, M.L, Kalimanov, V.G. (2009). The results of simulation of stress-strain states of the cornea eyes with using of engineering analysis ANSYS. Clinical Informatics and Telemedicine, V.5, № (6), pp. 26-30.
- Natalia Savinova (2005). Experience of conducting researches of body parts crushing equipment in the medium strength analysis of work station Structure 3D. Journal "CAD and graphics", №. 3. Access mode: http://www.sapr.ru/article.aspx?id=7066&iid=289
- Bandurin, M.A. (2006). Modelling of the stress-strain state of an irrigation tray wrapper. Scientific Journal" KubGAU", №24(8). Access mode: http://ej.kubagro.ru/2006/08/pdf/33.pdf
- Bakouline, N., Ignatiev, O., Karpov, V. (2000). Variation parametric research technique of variable by step width shallow shells with finite deflections. International Journal for “Computional Civil and Structural Engineering”, Voulume 1, Issue 3, pp. 1-6.
- Doneil, L.N. (1934). A new theory for buckling of thin cylinders under axial compression and bending. Trans.ASME.,p. 56.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2016 Аль-Раммахи Макки Мохаммед Али Мустафа
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.