Abstract
AbstractThis study focuses on the effect of temperature and preload force on capacitance and electromechanical impedance of lead zirconate titanate piezoelectric wafer active sensors for structural health monitoring of bolts. We explain the influence of temperature on the basis of the phenomenological thermodynamic theory of ferroelectricity by Landau, Ginsburg and Devonshire. The article illustrates the effect of damping the radial deformation of piezoelectric sensors on the capacitance and electromechanical impedance spectra in structural health monitoring of bolts. We also explains the similarities between the effects of temperature and preload force on the electromechanical impedance spectra. We establish a clear correlation between the mechanical strain in the region of the sensor (here due to a preload force), the capacitance and the electromechanical impedance spectra and thus show that piezoelectric sensors made of lead–zirconate–titanate can be used excellently in areas of variable mechanical strain. The article enhances the understanding of the measurement method and facilitates the transfer of the measurement method to other problems in structural health monitoring. Furthermore, the acquired knowledge serves as a solid basis for verifying the plausibility of data sets containing electromechanical impedance spectra.
Funder
Bundesministerium für Wirtschaft und Klimaschutz
Universität Siegen
Publisher
Springer Science and Business Media LLC
Reference58 articles.
1. J.C. Pineda Allen, C.T. Ng, Nonlinear guided-wave mixing for condition monitoring of bolted joints. Sensors (Basel, Switzerland) 21(15), 5093 (2021)
2. M. Feldmann, J. Naumes, D. Pak, Zum Last-Verformungsverhalten von Schrauben in vorgespannten Ringflanschverbindungen mit überbrückten Klaffungen im Hinblick auf die Ermüdungsvorhersage. Stahlbau 80(1), 21–29 (2011)
3. R. Grzejda, A. Parus, K. Kwiatkowski, Experimental studies of an asymmetric multi-bolted connection under monotonic loads. Materials (Basel, Switzerland) 14(9), 2353 (2021)
4. P. Nazarko, L. Ziemianski, Force identification in bolts of flange connections for structural health monitoring and failure prevention. Procedia Struct. Integrity 5, pp. 460–467 (2017). (2nd International Conference on Structural Integrity, ICSI 2017, 4-7 September 2017, Funchal, Madeira, Portugal)
5. C. Dümpelmann, Erfassung der Strukturintegrität durch Messung der zeitabhängigen Vorspannkraft in Schraubenverbindungen. Dissertation, Universität Siegen, Siegen (2020)
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献