Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture

Tether-net is a promising active debris removal technique, and a closing mechanism can ensure the reliable wrapping of space debris by using tether-net. This study focuses on the dynamics model of the split closing mechanism and the sliding joint between thread and ring. First, a new kind of closing...

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Main Authors: Jiyue Si, Zhaojun Pang, Zhonghua Du, Jie Fu
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:International Journal of Aerospace Engineering
Online Access:http://dx.doi.org/10.1155/2021/8827141
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spelling doaj-d1c899140b9343ee8163191d47346d8a2021-02-15T12:53:01ZengHindawi LimitedInternational Journal of Aerospace Engineering1687-59661687-59742021-01-01202110.1155/2021/88271418827141Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net CaptureJiyue Si0Zhaojun Pang1Zhonghua Du2Jie Fu3School of Mechanical Engineering, Nanjing University of Science and Technology, 210094 Nanjing, ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, 210094 Nanjing, ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, 210094 Nanjing, ChinaShanghai Academy of Spaceflight Technology, Shanghai 201109, ChinaTether-net is a promising active debris removal technique, and a closing mechanism can ensure the reliable wrapping of space debris by using tether-net. This study focuses on the dynamics model of the split closing mechanism and the sliding joint between thread and ring. First, a new kind of closing mechanism is proposed, which drives the closing thread to close the net mouth through the split masses, and the mass-spring-damper method is used to model tether-net. Thereafter, for the first time, the model of thread-ring sliding joint is proposed based on the mass-spring-damper method, which can be used to simulate the closing process of tether-net. Finally, one-edge closure experiment of the net is carried out and the experimental results are compared with the simulation results, and the closing process of the tether-net is simulated by using the thread-ring sliding joint. Results reveal that the thread-ring sliding joint can be used to simulate the relative slip between the thread and the ring, and the tether-net can wrap the target reliably in a short time by using the split closing system. The split closing mechanism can make it possible for the tether-net to close successfully, whether it starts to work before or after the net contacts with the target.http://dx.doi.org/10.1155/2021/8827141
collection DOAJ
language English
format Article
sources DOAJ
author Jiyue Si
Zhaojun Pang
Zhonghua Du
Jie Fu
spellingShingle Jiyue Si
Zhaojun Pang
Zhonghua Du
Jie Fu
Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
International Journal of Aerospace Engineering
author_facet Jiyue Si
Zhaojun Pang
Zhonghua Du
Jie Fu
author_sort Jiyue Si
title Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
title_short Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
title_full Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
title_fullStr Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
title_full_unstemmed Dynamics Modeling and Simulation of a Net Closing Mechanism for Tether-Net Capture
title_sort dynamics modeling and simulation of a net closing mechanism for tether-net capture
publisher Hindawi Limited
series International Journal of Aerospace Engineering
issn 1687-5966
1687-5974
publishDate 2021-01-01
description Tether-net is a promising active debris removal technique, and a closing mechanism can ensure the reliable wrapping of space debris by using tether-net. This study focuses on the dynamics model of the split closing mechanism and the sliding joint between thread and ring. First, a new kind of closing mechanism is proposed, which drives the closing thread to close the net mouth through the split masses, and the mass-spring-damper method is used to model tether-net. Thereafter, for the first time, the model of thread-ring sliding joint is proposed based on the mass-spring-damper method, which can be used to simulate the closing process of tether-net. Finally, one-edge closure experiment of the net is carried out and the experimental results are compared with the simulation results, and the closing process of the tether-net is simulated by using the thread-ring sliding joint. Results reveal that the thread-ring sliding joint can be used to simulate the relative slip between the thread and the ring, and the tether-net can wrap the target reliably in a short time by using the split closing system. The split closing mechanism can make it possible for the tether-net to close successfully, whether it starts to work before or after the net contacts with the target.
url http://dx.doi.org/10.1155/2021/8827141
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AT zhonghuadu dynamicsmodelingandsimulationofanetclosingmechanismfortethernetcapture
AT jiefu dynamicsmodelingandsimulationofanetclosingmechanismfortethernetcapture
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