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Erschienen in: Acta Mechanica 9/2019

03.07.2019 | Original Paper

Theoretical analysis of vibration pickups with quasi-zero-stiffness characteristic

verfasst von: Iman Pishvaye Naeeni, Mostafa Ghayour, Ahmad Keshavarzi, Arash Moslemi

Erschienen in: Acta Mechanica | Ausgabe 9/2019

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Abstract

The use of quasi-zero-stiffness isolators in vibration pickups is investigated in this study. For this purpose, a quasi-zero-stiffness mechanism is first investigated to extract optimal values of parameters guaranteeing these conditions. The frequency response of this type of pickups is then obtained and compared with their equivalent linear pickup to investigate the effects of damping and oscillation amplitude measured by the pickup on the pickup performance. To study the phase distortion, the phase difference between the oscillations exerted on the pickup and those measured by the pickup for various excitation frequencies are measured at quasi-zero-stiffness and their equivalent linear pickups. In this way, the effects of the pickup design parameters on the pickup performance are investigated, and the response of this type of pickups to a sum of two harmonic excitations is studied. Finally, the effects of uncertainties such as friction, noise, etc., on experimental results are investigated.
Literatur
1.
Zurück zum Zitat Sun, X., Jing, X.: Multi-direction vibration isolation with quasi-zero stiffness by employing geometrical nonlinearity. Mech. Syst. Signal Process. 62, 149–163 (2015)CrossRef Sun, X., Jing, X.: Multi-direction vibration isolation with quasi-zero stiffness by employing geometrical nonlinearity. Mech. Syst. Signal Process. 62, 149–163 (2015)CrossRef
2.
Zurück zum Zitat Montazeri-Gh, M., Kavianipour, O.: Investigation of the passive electromagnetic damper. Acta Mech. 223(12), 2633–2646 (2012)CrossRefMATH Montazeri-Gh, M., Kavianipour, O.: Investigation of the passive electromagnetic damper. Acta Mech. 223(12), 2633–2646 (2012)CrossRefMATH
3.
Zurück zum Zitat Fattahi, I., Mirdamadi, H.R.: Novel composite finite element model for piezoelectric energy harvesters based on 3D beam kinematics. Compos. Struct. 179, 161–171 (2017)CrossRef Fattahi, I., Mirdamadi, H.R.: Novel composite finite element model for piezoelectric energy harvesters based on 3D beam kinematics. Compos. Struct. 179, 161–171 (2017)CrossRef
4.
Zurück zum Zitat Casciati, F., Faravelli, L.: Experimental investigation on the aging of the base isolator elastomeric component. Acta Mech. 223(8), 1633–1643 (2012)CrossRefMATH Casciati, F., Faravelli, L.: Experimental investigation on the aging of the base isolator elastomeric component. Acta Mech. 223(8), 1633–1643 (2012)CrossRefMATH
5.
Zurück zum Zitat Fattahi, I., Mirdamadi, H.R.: A novel 3D skeletal frame topology for energy harvesting systems. Microelectron. J. 83, 6–17 (2019)CrossRef Fattahi, I., Mirdamadi, H.R.: A novel 3D skeletal frame topology for energy harvesting systems. Microelectron. J. 83, 6–17 (2019)CrossRef
7.
Zurück zum Zitat Zhang, J., et al.: An ultra-low frequency parallel connection nonlinear isolator for precision instruments. In: Key Engineering Materials. Trans Tech Publications (2004) Zhang, J., et al.: An ultra-low frequency parallel connection nonlinear isolator for precision instruments. In: Key Engineering Materials. Trans Tech Publications (2004)
8.
Zurück zum Zitat Blair, D.G., et al.: Performance of an ultra low-frequency folded pendulum. Phys. Lett. A 193(3), 223–226 (1994)CrossRef Blair, D.G., et al.: Performance of an ultra low-frequency folded pendulum. Phys. Lett. A 193(3), 223–226 (1994)CrossRef
9.
Zurück zum Zitat Liu, J., Ju, L., Blair, D.G.: Vibration isolation performance of an ultra-low frequency folded pendulum resonator. Phys. Lett. A 228(4–5), 243–249 (1997)CrossRef Liu, J., Ju, L., Blair, D.G.: Vibration isolation performance of an ultra-low frequency folded pendulum resonator. Phys. Lett. A 228(4–5), 243–249 (1997)CrossRef
10.
Zurück zum Zitat Biglar, M., et al.: Optimal configuration of piezoelectric sensors and actuators for active vibration control of a plate using a genetic algorithm. Acta Mech. 226(10), 3451–3462 (2015)MathSciNetCrossRefMATH Biglar, M., et al.: Optimal configuration of piezoelectric sensors and actuators for active vibration control of a plate using a genetic algorithm. Acta Mech. 226(10), 3451–3462 (2015)MathSciNetCrossRefMATH
11.
Zurück zum Zitat Giurgiutiu, V., et al.: Predictive modeling of piezoelectric wafer active sensors interaction with high-frequency structural waves and vibration. Acta Mech. 223(8), 1681–1691 (2012)CrossRefMATH Giurgiutiu, V., et al.: Predictive modeling of piezoelectric wafer active sensors interaction with high-frequency structural waves and vibration. Acta Mech. 223(8), 1681–1691 (2012)CrossRefMATH
12.
Zurück zum Zitat Wang, X., Huang, G.: On the dynamic behavior of piezoelectric sensors and actuators embedded in elastic media. Acta Mech. 197(1–2), 1–17 (2008)CrossRefMATH Wang, X., Huang, G.: On the dynamic behavior of piezoelectric sensors and actuators embedded in elastic media. Acta Mech. 197(1–2), 1–17 (2008)CrossRefMATH
13.
Zurück zum Zitat Goyal, D., Pabla, B.: The vibration monitoring methods and signal processing techniques for structural health monitoring: a review. Arch. Comput. Methods Eng. 23(4), 585–594 (2016)MathSciNetCrossRefMATH Goyal, D., Pabla, B.: The vibration monitoring methods and signal processing techniques for structural health monitoring: a review. Arch. Comput. Methods Eng. 23(4), 585–594 (2016)MathSciNetCrossRefMATH
14.
Zurück zum Zitat Thomson, W.: Theory of Vibration with Applications. CRC Press, Boca Raton (1996) Thomson, W.: Theory of Vibration with Applications. CRC Press, Boca Raton (1996)
15.
Zurück zum Zitat Rao, S.S., Yap, F.F.: Mechanical Vibrations, vol. 4. Prentice Hall, Upper Saddle River (2011) Rao, S.S., Yap, F.F.: Mechanical Vibrations, vol. 4. Prentice Hall, Upper Saddle River (2011)
16.
Zurück zum Zitat Scheffer, C., Girdhar, P.: Practical Machinery Vibration Analysis and Predictive Maintenance. Elsevier, Amsterdam (2004) Scheffer, C., Girdhar, P.: Practical Machinery Vibration Analysis and Predictive Maintenance. Elsevier, Amsterdam (2004)
17.
Zurück zum Zitat Buzdugan, G., Mihailescu, E., Rades, M.: Vibration Measurement, vol. 8. Springer, Berlin (1986)CrossRef Buzdugan, G., Mihailescu, E., Rades, M.: Vibration Measurement, vol. 8. Springer, Berlin (1986)CrossRef
18.
Zurück zum Zitat Randall, R.B.: Vibration-Based Condition Monitoring: Industrial, Aerospace and Automotive Applications. Wiley, Hoboken (2011)CrossRef Randall, R.B.: Vibration-Based Condition Monitoring: Industrial, Aerospace and Automotive Applications. Wiley, Hoboken (2011)CrossRef
19.
Zurück zum Zitat Hao, Z., Cao, Q.: The isolation characteristics of an archetypal dynamical model with stable-quasi-zero-stiffness. J. Sound Vib. 340, 61–79 (2015)CrossRef Hao, Z., Cao, Q.: The isolation characteristics of an archetypal dynamical model with stable-quasi-zero-stiffness. J. Sound Vib. 340, 61–79 (2015)CrossRef
20.
Zurück zum Zitat Lan, C.-C., Yang, S.-A., Wu, Y.-S.: Design and experiment of a compact quasi-zero-stiffness isolator capable of a wide range of loads. J. Sound Vib. 333(20), 4843–4858 (2014)CrossRef Lan, C.-C., Yang, S.-A., Wu, Y.-S.: Design and experiment of a compact quasi-zero-stiffness isolator capable of a wide range of loads. J. Sound Vib. 333(20), 4843–4858 (2014)CrossRef
21.
Zurück zum Zitat Xu, D., et al.: Theoretical and experimental analyses of a nonlinear magnetic vibration isolator with quasi-zero-stiffness characteristic. J. Sound Vib. 332(14), 3377–3389 (2013)CrossRef Xu, D., et al.: Theoretical and experimental analyses of a nonlinear magnetic vibration isolator with quasi-zero-stiffness characteristic. J. Sound Vib. 332(14), 3377–3389 (2013)CrossRef
22.
Zurück zum Zitat Carrella, A., Brennan, M., Waters, T.: Static analysis of a passive vibration isolator with quasi-zero-stiffness characteristic. J. Sound Vib. 301(3–5), 678–689 (2007)CrossRef Carrella, A., Brennan, M., Waters, T.: Static analysis of a passive vibration isolator with quasi-zero-stiffness characteristic. J. Sound Vib. 301(3–5), 678–689 (2007)CrossRef
23.
Zurück zum Zitat Le, T.D., Ahn, K.K.: A vibration isolation system in low frequency excitation region using negative stiffness structure for vehicle seat. J. Sound Vib. 330(26), 6311–6335 (2011)CrossRef Le, T.D., Ahn, K.K.: A vibration isolation system in low frequency excitation region using negative stiffness structure for vehicle seat. J. Sound Vib. 330(26), 6311–6335 (2011)CrossRef
24.
Zurück zum Zitat Carrella, A., et al.: On the force transmissibility of a vibration isolator with quasi-zero-stiffness. J. Sound Vib. 322(4–5), 707–717 (2009)CrossRef Carrella, A., et al.: On the force transmissibility of a vibration isolator with quasi-zero-stiffness. J. Sound Vib. 322(4–5), 707–717 (2009)CrossRef
25.
Zurück zum Zitat Kovacic, I., Brennan, M.J., Waters, T.P.: A study of a nonlinear vibration isolator with a quasi-zero stiffness characteristic. J. Sound Vib. 315(3), 700–711 (2008)CrossRef Kovacic, I., Brennan, M.J., Waters, T.P.: A study of a nonlinear vibration isolator with a quasi-zero stiffness characteristic. J. Sound Vib. 315(3), 700–711 (2008)CrossRef
26.
Zurück zum Zitat Liu, X., Huang, X., Hua, H.: On the characteristics of a quasi-zero stiffness isolator using Euler buckled beam as negative stiffness corrector. J. Sound Vib. 332(14), 3359–3376 (2013)CrossRef Liu, X., Huang, X., Hua, H.: On the characteristics of a quasi-zero stiffness isolator using Euler buckled beam as negative stiffness corrector. J. Sound Vib. 332(14), 3359–3376 (2013)CrossRef
27.
Zurück zum Zitat Zhou, J., et al.: Nonlinear dynamic characteristics of a quasi-zero stiffness vibration isolator with cam-roller-spring mechanisms. J. Sound Vib. 346, 53–69 (2015)CrossRef Zhou, J., et al.: Nonlinear dynamic characteristics of a quasi-zero stiffness vibration isolator with cam-roller-spring mechanisms. J. Sound Vib. 346, 53–69 (2015)CrossRef
28.
Zurück zum Zitat Hassan, A.: On the local stability analysis of the approximate harmonic balance solutions. Nonlinear Dyn. 10(2), 105–133 (1996)MathSciNetCrossRef Hassan, A.: On the local stability analysis of the approximate harmonic balance solutions. Nonlinear Dyn. 10(2), 105–133 (1996)MathSciNetCrossRef
29.
Zurück zum Zitat Jazar, G.N., et al.: Frequency response and jump avoidance in a nonlinear passive engine mount. J. Vib. Control 12(11), 1205–1237 (2006)CrossRefMATH Jazar, G.N., et al.: Frequency response and jump avoidance in a nonlinear passive engine mount. J. Vib. Control 12(11), 1205–1237 (2006)CrossRefMATH
30.
Zurück zum Zitat Nayfeh, A.H., Mook, D.T.: Nonlinear Oscillations. Wiley, Hoboken (2008)MATH Nayfeh, A.H., Mook, D.T.: Nonlinear Oscillations. Wiley, Hoboken (2008)MATH
Metadaten
Titel
Theoretical analysis of vibration pickups with quasi-zero-stiffness characteristic
verfasst von
Iman Pishvaye Naeeni
Mostafa Ghayour
Ahmad Keshavarzi
Arash Moslemi
Publikationsdatum
03.07.2019
Verlag
Springer Vienna
Erschienen in
Acta Mechanica / Ausgabe 9/2019
Print ISSN: 0001-5970
Elektronische ISSN: 1619-6937
DOI
https://doi.org/10.1007/s00707-019-02465-0

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