Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design

Giant magnetostrictive transducer with micro and nano precision has a wide application prospect in the field of remote sensing. However, excessive heat loss of components could generate during the energy conversion and transfer from electric energy to magnetic energy, and magnetic energy to mechanic...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Zhuan Bai, Zonghe Zhang, Ju Wang, Xiaoqing Sun, Wei Hu
Formato: article
Lenguaje:EN
Publicado: MDPI AG 2021
Materias:
Acceso en línea:https://doaj.org/article/d6feb11cc5cb4a538fe78671a3a05183
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:d6feb11cc5cb4a538fe78671a3a05183
record_format dspace
spelling oai:doaj.org-article:d6feb11cc5cb4a538fe78671a3a051832021-11-25T18:23:40ZNumerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design10.3390/mi121113972072-666Xhttps://doaj.org/article/d6feb11cc5cb4a538fe78671a3a051832021-11-01T00:00:00Zhttps://www.mdpi.com/2072-666X/12/11/1397https://doaj.org/toc/2072-666XGiant magnetostrictive transducer with micro and nano precision has a wide application prospect in the field of remote sensing. However, excessive heat loss of components could generate during the energy conversion and transfer from electric energy to magnetic energy, and magnetic energy to mechanical energy, thereby affecting its long-term service and also reducing energy utilization. In this paper, a new magnetostrictive transducer is proposed and its excitation coil, internal and external magnetic circuit are optimized from the perspective of reducing heat loss. With the help of theoretical and finite element analysis, the response law between key parameters and heat loss of key components are summarized, which provides a basis for reducing heat loss. Finally, according to the optimization scheme, the prototype is processed, and the temperature rise and dynamic output performance of the transducer are tested by constructing an experimental setup. The results show that the transducer has a low temperature rise and good frequency response characteristics, which can provide support for long-time precise actuation on-orbit.Zhuan BaiZonghe ZhangJu WangXiaoqing SunWei HuMDPI AGarticlegiant magnetostrictive transducerheat lossexcitation coilmagnetic circuit optimizationexperimental studyMechanical engineering and machineryTJ1-1570ENMicromachines, Vol 12, Iss 1397, p 1397 (2021)
institution DOAJ
collection DOAJ
language EN
topic giant magnetostrictive transducer
heat loss
excitation coil
magnetic circuit optimization
experimental study
Mechanical engineering and machinery
TJ1-1570
spellingShingle giant magnetostrictive transducer
heat loss
excitation coil
magnetic circuit optimization
experimental study
Mechanical engineering and machinery
TJ1-1570
Zhuan Bai
Zonghe Zhang
Ju Wang
Xiaoqing Sun
Wei Hu
Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
description Giant magnetostrictive transducer with micro and nano precision has a wide application prospect in the field of remote sensing. However, excessive heat loss of components could generate during the energy conversion and transfer from electric energy to magnetic energy, and magnetic energy to mechanical energy, thereby affecting its long-term service and also reducing energy utilization. In this paper, a new magnetostrictive transducer is proposed and its excitation coil, internal and external magnetic circuit are optimized from the perspective of reducing heat loss. With the help of theoretical and finite element analysis, the response law between key parameters and heat loss of key components are summarized, which provides a basis for reducing heat loss. Finally, according to the optimization scheme, the prototype is processed, and the temperature rise and dynamic output performance of the transducer are tested by constructing an experimental setup. The results show that the transducer has a low temperature rise and good frequency response characteristics, which can provide support for long-time precise actuation on-orbit.
format article
author Zhuan Bai
Zonghe Zhang
Ju Wang
Xiaoqing Sun
Wei Hu
author_facet Zhuan Bai
Zonghe Zhang
Ju Wang
Xiaoqing Sun
Wei Hu
author_sort Zhuan Bai
title Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
title_short Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
title_full Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
title_fullStr Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
title_full_unstemmed Numerical Evaluation and Experimental Test on a New Giant Magnetostrictive Transducer with Low Heat Loss Design
title_sort numerical evaluation and experimental test on a new giant magnetostrictive transducer with low heat loss design
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/d6feb11cc5cb4a538fe78671a3a05183
work_keys_str_mv AT zhuanbai numericalevaluationandexperimentaltestonanewgiantmagnetostrictivetransducerwithlowheatlossdesign
AT zonghezhang numericalevaluationandexperimentaltestonanewgiantmagnetostrictivetransducerwithlowheatlossdesign
AT juwang numericalevaluationandexperimentaltestonanewgiantmagnetostrictivetransducerwithlowheatlossdesign
AT xiaoqingsun numericalevaluationandexperimentaltestonanewgiantmagnetostrictivetransducerwithlowheatlossdesign
AT weihu numericalevaluationandexperimentaltestonanewgiantmagnetostrictivetransducerwithlowheatlossdesign
_version_ 1718411227492777984