Dynamic-Breakdown of the Ball-Screw Inerter in ISD System

Inerter is a novel type of mechanical element. As the important composition of vibration control systems, inerters are widely used. Meanwhile, the operation security issue of the inerter is becoming increasingly prominent. Dynamic-breakdown of the inerter (DBoI) means that the inerter’s two terminal...

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Main Authors: Yuehao Li, Niaoqing Hu, Zhe Cheng, Lun Zhang, Yi Yang, Zhengyang Yin, Liangyuan Huang
Format: Article
Language:English
Published: MDPI AG 2023-02-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/13/4/2168
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author Yuehao Li
Niaoqing Hu
Zhe Cheng
Lun Zhang
Yi Yang
Zhengyang Yin
Liangyuan Huang
author_facet Yuehao Li
Niaoqing Hu
Zhe Cheng
Lun Zhang
Yi Yang
Zhengyang Yin
Liangyuan Huang
author_sort Yuehao Li
collection DOAJ
description Inerter is a novel type of mechanical element. As the important composition of vibration control systems, inerters are widely used. Meanwhile, the operation security issue of the inerter is becoming increasingly prominent. Dynamic-breakdown of the inerter (DBoI) means that the inerter’s two terminals come into contact, which can cause a huge impact force and destroy the system. The ball-screw inerter is an essential protype of inerters. The existence of dynamic-breakdown of a single inerter has been already proved by previous research. To confirm whether DBoI exists in the inerter-spring-damper (ISD) system, the research focuses on the dynamic-breakdown of a ball-screw inerter (DBoBSI) in the ISD system. The dynamic model of the DBoI in the ISD system is established and analyzed. On account of the model and analysis, DBoBSI is analyzed. A novel experimental system is established and experiments of DBoBSI in the ISD system are carried out. The coefficient of restitution <i>e</i><sub>t</sub> changes slightly with a value of about 0.5. The variation of momentum is nearly equal to the impulse, with an error within 15%. On account of the experimental data collected, the conclusions are that there is a DBoBSI in the ISD system, and the impact force during DBoI in the ISD system ought to be avoided.
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spelling doaj.art-fa8aee920f004038b2cf0d738cabb0352023-11-16T18:51:51ZengMDPI AGApplied Sciences2076-34172023-02-01134216810.3390/app13042168Dynamic-Breakdown of the Ball-Screw Inerter in ISD SystemYuehao Li0Niaoqing Hu1Zhe Cheng2Lun Zhang3Yi Yang4Zhengyang Yin5Liangyuan Huang6College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaCollege of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, ChinaInerter is a novel type of mechanical element. As the important composition of vibration control systems, inerters are widely used. Meanwhile, the operation security issue of the inerter is becoming increasingly prominent. Dynamic-breakdown of the inerter (DBoI) means that the inerter’s two terminals come into contact, which can cause a huge impact force and destroy the system. The ball-screw inerter is an essential protype of inerters. The existence of dynamic-breakdown of a single inerter has been already proved by previous research. To confirm whether DBoI exists in the inerter-spring-damper (ISD) system, the research focuses on the dynamic-breakdown of a ball-screw inerter (DBoBSI) in the ISD system. The dynamic model of the DBoI in the ISD system is established and analyzed. On account of the model and analysis, DBoBSI is analyzed. A novel experimental system is established and experiments of DBoBSI in the ISD system are carried out. The coefficient of restitution <i>e</i><sub>t</sub> changes slightly with a value of about 0.5. The variation of momentum is nearly equal to the impulse, with an error within 15%. On account of the experimental data collected, the conclusions are that there is a DBoBSI in the ISD system, and the impact force during DBoI in the ISD system ought to be avoided.https://www.mdpi.com/2076-3417/13/4/2168ball-screw inerterdynamic-breakdownISD systemimpact
spellingShingle Yuehao Li
Niaoqing Hu
Zhe Cheng
Lun Zhang
Yi Yang
Zhengyang Yin
Liangyuan Huang
Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
Applied Sciences
ball-screw inerter
dynamic-breakdown
ISD system
impact
title Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
title_full Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
title_fullStr Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
title_full_unstemmed Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
title_short Dynamic-Breakdown of the Ball-Screw Inerter in ISD System
title_sort dynamic breakdown of the ball screw inerter in isd system
topic ball-screw inerter
dynamic-breakdown
ISD system
impact
url https://www.mdpi.com/2076-3417/13/4/2168
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AT lunzhang dynamicbreakdownoftheballscrewinerterinisdsystem
AT yiyang dynamicbreakdownoftheballscrewinerterinisdsystem
AT zhengyangyin dynamicbreakdownoftheballscrewinerterinisdsystem
AT liangyuanhuang dynamicbreakdownoftheballscrewinerterinisdsystem