A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures
The aim of this research is to design a PZT-coated cantilever utilized as a transducer for simultaneous sensing and actuating in dynamic testing of miniature or microscale structures. In the study, the cantilever is viewed as an electromechanical system having a single electrical input port and a si...
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sg-ntu-dr.10356-65552023-03-11T17:51:10Z A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures Wang, Deyang Ling Shih Fu School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Mechanics and dynamics The aim of this research is to design a PZT-coated cantilever utilized as a transducer for simultaneous sensing and actuating in dynamic testing of miniature or microscale structures. In the study, the cantilever is viewed as an electromechanical system having a single electrical input port and a single mechanical output port. The relationship between the input electrical variables and output mechanical variables is then described by a two by two matrix. This matrix, termed as transduction matrix, completely characterizes the forward actuating and backward sensing functions of the cantilever transducer. Utilizing the transduction matrix, the mechanical impedance at the output port can be evaluated from the electrical impedance measured at the input port. As such, the cantilever transducer performs both actuating and sensing simultaneously in a dynamic testing of structures. DOCTOR OF PHILOSOPHY (MAE) 2008-09-17T11:17:53Z 2008-09-17T11:17:53Z 2007 2007 Thesis Wang, D. Y. (2007). PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/6555 10.32657/10356/6555 Nanyang Technological University application/pdf |
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DRNTU::Engineering::Mechanical engineering::Mechanics and dynamics Wang, Deyang A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
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The aim of this research is to design a PZT-coated cantilever utilized as a transducer for simultaneous sensing and actuating in dynamic testing of miniature or microscale structures. In the study, the cantilever is viewed as an electromechanical system having a single electrical input port and a single mechanical output port. The relationship between the input electrical variables and output mechanical variables is then described by a two by two matrix. This matrix, termed as transduction matrix, completely characterizes the forward actuating and backward sensing functions of the cantilever transducer. Utilizing the transduction matrix, the mechanical impedance at the output port can be evaluated from the electrical impedance measured at the input port. As such, the cantilever transducer performs both actuating and sensing simultaneously in a dynamic testing of structures. |
author2 |
Ling Shih Fu |
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Ling Shih Fu Wang, Deyang |
format |
Theses and Dissertations |
author |
Wang, Deyang |
author_sort |
Wang, Deyang |
title |
A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
title_short |
A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
title_full |
A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
title_fullStr |
A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
title_full_unstemmed |
A PZT-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
title_sort |
pzt-coated cantilever for simultaneous sensing and actuating in dynamic testing of structures |
publishDate |
2008 |
url |
https://hdl.handle.net/10356/6555 |
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1761781575218888704 |