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The influence parameters of 60m able deployable articulated mast mode

  • Nian pu Xue
  • , Feng Ding
  • , Biao Li
  • , Qiong Wu*
  • , Dong jian Xie
  • *Corresponding author for this work
  • Beihang University
  • China Aerospace Science and Technology Corporation

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Able deployable articulated mast is a deployable support arm which has been used in the space field as the positioning or support structure on the spacecraft. Due to the long arm length and accurate position requirements, the reasonable modal value of the mast has a critical impact on its operational stability. In this paper, a 60m-long mast is taken to study the influence parameters of the first mode. Firstly, the key parameters of the mast are extracted. Then, using the parameterized system established by VB, the APDL language of ANSYS is called to carry out the simulation solution. The actual modal value of 6-span mast is measured through experiments, and ANSYS analysis is used to determine stiffness value of spherical joint, so the relationship between stiffness of spherical joint and pre-tension of stay cable is concluded. The effect of the pre-tension on the first mode of the mast is studied by adjusting the value of the pretension of the cable.

Original languageEnglish
Title of host publicationProceedings of the International Symposium on Big Data and Artificial Intelligence, ISBDAI 2018
EditorsXiao-Guang Yue
PublisherAssociation for Computing Machinery
Pages299-305
Number of pages7
ISBN (Electronic)9781450365703
DOIs
StatePublished - 29 Dec 2018
Event2018 International Symposium on Big Data and Artificial Intelligence, ISBDAI 2018 - Hong Kong, Hong Kong SAR
Duration: 29 Dec 201830 Dec 2018

Publication series

NameACM International Conference Proceeding Series

Conference

Conference2018 International Symposium on Big Data and Artificial Intelligence, ISBDAI 2018
Country/TerritoryHong Kong SAR
CityHong Kong
Period29/12/1830/12/18

Keywords

  • Able deployable articulated mast
  • Finite element method
  • Modal analysis

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