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Book part
Publication date: 23 July 2019

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Start-up Marketing Strategies in India
Type: Book
ISBN: 978-1-78756-755-9

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Book part
Publication date: 23 July 2019

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Start-up Marketing Strategies in India
Type: Book
ISBN: 978-1-78756-755-9

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Book part
Publication date: 4 October 2024

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Higher Education and SDG14: Life Below Water
Type: Book
ISBN: 978-1-83549-250-5

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Book part
Publication date: 30 October 2024

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Higher Education and SDG2: Zero Hunger
Type: Book
ISBN: 978-1-83608-458-7

Available. Open Access. Open Access
Book part
Publication date: 10 February 2025

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Higher Education and SDG16: Peace, Justice, and Strong Institutions
Type: Book
ISBN: 978-1-80455-892-8

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Book part
Publication date: 5 November 2024

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Higher Education and SDG11: Sustainable Cities and Communities
Type: Book
ISBN: 978-1-83797-420-7

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Book part
Publication date: 2 December 2024

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Higher Education and SDG4: Quality Education
Type: Book
ISBN: 978-1-83797-630-0

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Article
Publication date: 26 April 2011

Krisztina Demeter and Harry Boer

859

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International Journal of Operations & Production Management, vol. 31 no. 5
Type: Research Article
ISSN: 0144-3577

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Book part
Publication date: 12 June 2024

Free Access. Free Access

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Strategic Tourism Planning for Communities
Type: Book
ISBN: 978-1-83549-016-7

Available. Open Access. Open Access
Article
Publication date: 21 June 2023

Xiaoyu Chen, Yonggang Leng, Fei Sun, Xukun Su, Shuailing Sun and Junjie Xu

The existing Nonlinear Dynamic Vibration Absorbers (NLDVAs) have the disadvantages of complex structure, high cost, high installation space requirements and difficulty in…

441

Abstract

Purpose

The existing Nonlinear Dynamic Vibration Absorbers (NLDVAs) have the disadvantages of complex structure, high cost, high installation space requirements and difficulty in miniaturization. And most of the NLDVAs have not been applied to reality. To address the above issues, a novel Triple-magnet Magnetic Dynamic Vibration Absorber (TMDVA) with tunable stiffness, only composed of triple cylindrical permanent magnets and an acrylic tube, is designed, modeled and tested in this paper.

Design/methodology/approach

(1) A novel TMDVA is designed. (2) Theoretical and experimental methods. (3) Equivalent dynamics model.

Findings

It is found that adjusting the magnet distance can effectively optimize the vibration reduction effect of the TMDVA under different resonance conditions. When the resonance frequency of the cantilever changes, the magnet distance of the TMDVA with a high vibration reduction effect shows an approximately linear relationship with the resonance frequency of the cantilever which is convenient for the design optimization of the TMDVA.

Originality/value

Both the simulation and experimental results prove that the TMDVA can effectively reduce the vibration of the cantilever even if the resonance frequency of the cantilever changes, which shows the strong robustness of the TMDVA. Given all that, the TMDVA has potential application value in the passive vibration reduction of engineering structures.

Details

Journal of Intelligent Manufacturing and Special Equipment, vol. 4 no. 2
Type: Research Article
ISSN: 2633-6596

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