RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT

The performances of spacecraft payloads and platforms on orbit are influenced by dimensional stability of spacecraft structure. This article had researched the test method of structure thermal deformation in the vacuum thermal environment simulated on the ground to improve measurement and verificati...

Full description

Saved in:
Bibliographic Details
Main Authors: LI Yu, CHEN Li, JIANG HongZhi, AI Zhuo, WANG GenYuan, CAO JinXin
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2020-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.02.034
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841535791248965632
author LI Yu
CHEN Li
JIANG HongZhi
AI Zhuo
WANG GenYuan
CAO JinXin
author_facet LI Yu
CHEN Li
JIANG HongZhi
AI Zhuo
WANG GenYuan
CAO JinXin
author_sort LI Yu
collection DOAJ
description The performances of spacecraft payloads and platforms on orbit are influenced by dimensional stability of spacecraft structure. This article had researched the test method of structure thermal deformation in the vacuum thermal environment simulated on the ground to improve measurement and verification method of the space structure deformation on orbit.It presented a single-camera and multistation photogrammetric measurement scheme,based on the analysis of related test methods and typical measurement systems. Then a camera protection system and a two-dimensional motion mechanism was developed. The camera can complete the image acquisition at different stations in a arc surface through the arc shaped guide of the motion mechanism in the vacuum thermal environment,and satisfy the measurement requirement of multistation. The influence on the camera calibration due to the optical window of the camera protection system had been discussed. Besides,the effect of the scene depth,the contrast of circular feature points and scale factor on the measurement accuracy was verified by the simulation and experiment,then a multi-exposure image processing method was proposed,which selecting the best circle center extraction and recognition results from circular feature point images taken from different exposures to fusion computation,ensuring better contrast and brightness images were obtained. Finally,the structure thermal deformation measurement method in the vacuum thermal environment proposed in this article was test and verified through a typical test piece,the test results all reached a measuring accuracy of 0. 043 mm,and it proved that this method can effectively meet the needs of thermal deformation measurement for the spacecraft structure in the future.
format Article
id doaj-art-86b6ebf5bc1f43d3bcac4d65dd83e99b
institution Kabale University
issn 1001-9669
language zho
publishDate 2020-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-86b6ebf5bc1f43d3bcac4d65dd83e99b2025-01-15T02:28:16ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692020-01-014248048530607564RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENTLI YuCHEN LiJIANG HongZhiAI ZhuoWANG GenYuanCAO JinXinThe performances of spacecraft payloads and platforms on orbit are influenced by dimensional stability of spacecraft structure. This article had researched the test method of structure thermal deformation in the vacuum thermal environment simulated on the ground to improve measurement and verification method of the space structure deformation on orbit.It presented a single-camera and multistation photogrammetric measurement scheme,based on the analysis of related test methods and typical measurement systems. Then a camera protection system and a two-dimensional motion mechanism was developed. The camera can complete the image acquisition at different stations in a arc surface through the arc shaped guide of the motion mechanism in the vacuum thermal environment,and satisfy the measurement requirement of multistation. The influence on the camera calibration due to the optical window of the camera protection system had been discussed. Besides,the effect of the scene depth,the contrast of circular feature points and scale factor on the measurement accuracy was verified by the simulation and experiment,then a multi-exposure image processing method was proposed,which selecting the best circle center extraction and recognition results from circular feature point images taken from different exposures to fusion computation,ensuring better contrast and brightness images were obtained. Finally,the structure thermal deformation measurement method in the vacuum thermal environment proposed in this article was test and verified through a typical test piece,the test results all reached a measuring accuracy of 0. 043 mm,and it proved that this method can effectively meet the needs of thermal deformation measurement for the spacecraft structure in the future.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.02.034Industrial photogrammetryThermal deformationEnvironment testMeasurement accuracy
spellingShingle LI Yu
CHEN Li
JIANG HongZhi
AI Zhuo
WANG GenYuan
CAO JinXin
RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
Jixie qiangdu
Industrial photogrammetry
Thermal deformation
Environment test
Measurement accuracy
title RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
title_full RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
title_fullStr RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
title_full_unstemmed RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
title_short RESEARCH ON THE TEST METHOD OF STRUCTURE THERMAL DEFORMATION IN THE VACUUM THERMAL ENVIRONMENT
title_sort research on the test method of structure thermal deformation in the vacuum thermal environment
topic Industrial photogrammetry
Thermal deformation
Environment test
Measurement accuracy
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.02.034
work_keys_str_mv AT liyu researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment
AT chenli researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment
AT jianghongzhi researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment
AT aizhuo researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment
AT wanggenyuan researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment
AT caojinxin researchonthetestmethodofstructurethermaldeformationinthevacuumthermalenvironment