Mathematical modeling of transformable space structure dynamics

Today large space structures are in focus of attention of engineers and designers of rocket and space equipment. In ground-based experiments, it is not always possible to carry out complex tests of large space structure functionality. Therefore, the development of mathematical models describing prop...

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Main Authors: Zimin Vladimir, Krylov Alexey, Churilin Sergey, Zhang Zikun
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2019/26/epjconf_epps2018_01018.pdf
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spelling doaj-ec2da22c32b344fa8b221792d7b581eb2021-08-02T14:23:28ZengEDP SciencesEPJ Web of Conferences2100-014X2019-01-012210101810.1051/epjconf/201922101018epjconf_epps2018_01018Mathematical modeling of transformable space structure dynamicsZimin Vladimir0Krylov Alexey1Churilin Sergey2Zhang Zikun3Bauman Moscow State Technical UniversityBauman Moscow State Technical UniversityBauman Moscow State Technical UniversityBauman Moscow State Technical UniversityToday large space structures are in focus of attention of engineers and designers of rocket and space equipment. In ground-based experiments, it is not always possible to carry out complex tests of large space structure functionality. Therefore, the development of mathematical models describing properly the transformable structure dynamics when they opened from the densely packed transport state to the operating position in the orbit becomes very important. To determine the stress-strain state of the frame elements when it is unfolding the shape of the framework is taken at the moments when relative velocities of the adjacent sections are maximal. Supposed, that at these moments the frame elements are getting on the stops limiting their relative angular displacements, and the structure behaves as an elastic rod with specified characteristics. Numerical analysis of the stress-strain state in the framework is carried out by means of a finite element model. Therefore, the represented mathematical model can be effectively used to predict the functional suitability of such transformable space structures already on the early stages of their development.https://www.epj-conferences.org/articles/epjconf/pdf/2019/26/epjconf_epps2018_01018.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Zimin Vladimir
Krylov Alexey
Churilin Sergey
Zhang Zikun
spellingShingle Zimin Vladimir
Krylov Alexey
Churilin Sergey
Zhang Zikun
Mathematical modeling of transformable space structure dynamics
EPJ Web of Conferences
author_facet Zimin Vladimir
Krylov Alexey
Churilin Sergey
Zhang Zikun
author_sort Zimin Vladimir
title Mathematical modeling of transformable space structure dynamics
title_short Mathematical modeling of transformable space structure dynamics
title_full Mathematical modeling of transformable space structure dynamics
title_fullStr Mathematical modeling of transformable space structure dynamics
title_full_unstemmed Mathematical modeling of transformable space structure dynamics
title_sort mathematical modeling of transformable space structure dynamics
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2019-01-01
description Today large space structures are in focus of attention of engineers and designers of rocket and space equipment. In ground-based experiments, it is not always possible to carry out complex tests of large space structure functionality. Therefore, the development of mathematical models describing properly the transformable structure dynamics when they opened from the densely packed transport state to the operating position in the orbit becomes very important. To determine the stress-strain state of the frame elements when it is unfolding the shape of the framework is taken at the moments when relative velocities of the adjacent sections are maximal. Supposed, that at these moments the frame elements are getting on the stops limiting their relative angular displacements, and the structure behaves as an elastic rod with specified characteristics. Numerical analysis of the stress-strain state in the framework is carried out by means of a finite element model. Therefore, the represented mathematical model can be effectively used to predict the functional suitability of such transformable space structures already on the early stages of their development.
url https://www.epj-conferences.org/articles/epjconf/pdf/2019/26/epjconf_epps2018_01018.pdf
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AT krylovalexey mathematicalmodelingoftransformablespacestructuredynamics
AT churilinsergey mathematicalmodelingoftransformablespacestructuredynamics
AT zhangzikun mathematicalmodelingoftransformablespacestructuredynamics
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