Structure Dynamics Analysis of Modularized Deep Space Detector

YU Dengyun1, ZHANG Yuhua2, CHU Yingzhi2, LI Hao3, WANG Jianwei3, DU Dong3

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Journal of Deep Space Exploration ›› 2016, Vol. 3 ›› Issue (3) : 268-274. DOI: 10.15982/j.issn.2095-7777.2016.03.011
Article

Structure Dynamics Analysis of Modularized Deep Space Detector

  • YU Dengyun1, ZHANG Yuhua2, CHU Yingzhi2, LI Hao3, WANG Jianwei3, DU Dong3
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Abstract

Modularized and standardized concepts of deeps pace detectors are increasing along with the development of deep space exploration technique. Series connection between different sub-modules of deep space detectors are reasonable and popular, and it is a challenge to propose a reasonable dynamic response index for a single sub-module according to the dynamic response index of the overall series-connected structure. Based on the substructure modal synthesis method and the cantilever beam theory, It proposes a method for assigning design index of dynamic response for sub-modules of series-connected structures. The equation of fundamental frequencies of sub-modules are derived analytically based on three consumptions, and the relation between the dynamics of sub-modules and that of overall series-connected structure are discussed. The proposed dynamics index assignment method shows high accuracy and can provide critical instructions for the design of series-connected modularized deep space detectors.

Keywords

deep space detector / modularize / sub-structure / dynamics / index assignment

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YU Dengyun, ZHANG Yuhua, CHU Yingzhi, LI Hao, WANG Jianwei, DU Dong. Structure Dynamics Analysis of Modularized Deep Space Detector. Journal of Deep Space Exploration, 2016, 3(3): 268‒274 https://doi.org/10.15982/j.issn.2095-7777.2016.03.011

References

[1] 张伟,方宝东,成玫,等. 空间飞行器分离式构型设计[J]. 上海航天,2013,30(1):1-7. Zhang W,Fang B D,Cheng M,et al. Design of separation configuration for spacecraft[J]. Aerospace Shanghai,2013,30(1):1-7.
[2] 黄文虎,曹登庆,韩增尧. 航天器动力学与控制的研究进展与展望[J]. 力学进展,42(4):68-76. Huang W H,Cao D Q,Han Z Y. Advances and trends in dynamics and control of spacecrafts[J]. Advances in Mechanics,42(4):68-76.
[3] Hurty W C. Vibrations of structural systems by component mode synthesis[J]. Journal of the Engineering Mechanics Division,ASCE,1960,86(4):51-70.
[4] Gladwell G M L. Branch mode analysis of vibrating systems[J]. Journal of Sound and Vibration,1964,1(1):41-59.
[5] 王文亮,杜作润. 结构振动与动态子结构方法[M]. 上海:复旦大学出版社,1985. Wang W L,Du Z R. Structural vibration and dynamic substructure method[M]. Shanghai:Fudan University Press,1985.
[6] 殷学刚,陈淮,塞开林. 结构振动分析的子结构方法[M]. 北京:中国铁道出版社,1991. Yin X G,Chen H,Sai K L. Substructure method for structural vibration analysis[M]. Beijing:China Railway Publishing House,1991.
[7] 郑兆昌. 复杂结构振动研究的模态综合技术[J]. 振动与冲击,1982(1):28-36. Zheng Z C. The study on vibration of complex structure systems by component mode synthesis techniques[J]. Journal of Vibration and Shock,1982(1):28-36.
[8] 宋景涛,方明霞. 模态综合法在ANSYS中的应用[J]. 计算机辅助工程,2007,16(3):145-148. Song J T,Fang M X. Application of component mode synthesis in ansys[J]. Computer Aided Engineering,2007,16(3):145-148.
[9] 王永岩.动态子结构方法理论及应用[M]. 北京:科学出版社,1999. Wang Y Y. Theory and application of dynamic substructure method[M]. Beijing:Science Press,1999.
[10] Hou S N. Review of modal synthesis techniques and a new approach[J]. Shock Vib. bull,1969,40(4):25-39.
[11] Goldman R L. Vibration analysis by dynamic partitioning[J]. AIAA J,1969,7(6):1152-1154.
[12] MacNeal R H. A hybrid method of component mode synthesis[J]. Computers Structures,1971,1(4):581-601.
[13] Rubin S. Improved component-mode representation for structure dynamic analysis[J]. AIAA J,1975,13(8):995-1006.
[14] Hurty W C. Vibration of structure by component mode synthesis[J]. J. Engr. Div.,ASCE,1960,86:51-59.
[15] 杜飞平,谭永华,陈建华,等. 航天器子结构模态综合法研究现状及进展[J]. 力学进展,2010,36(3):39-62. Du F P,Tan Y H,Chen J H,et al. Status and progress on substructural modal synthesis techniques for space vehicls[J] Advances in Mechanics,2010,36(3):39-62.
[16] Craig R R,Chang C J. On the use of attachment modes in substructure coupling for dynamic analysis[C]. AIAA/ASME 18th Struct. Dyn. and Materials. Conf.,SanDiego,CA:1977.
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