Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)

This paper presents the design and optimization of Tubular Linear Switched Reluctance Actuator (TLSRA).The study is carried out by means of Finite Element Method (FEM)by using ANSYS Maxwell software which capable of predicting the TLSRA thrust force.The study covered the variation of three paramete...

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Main Authors: Md Ghazaly, Mariam, Yeo, Chin Kiat, Chong , Shin Horng, Jamaludin, Irma Wani, Ranom, Rahifa
Format: Article
Language:English
Published: Penerbit Universiti, UTeM 2018
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Online Access:http://eprints.utem.edu.my/id/eprint/21348/2/Jtec1-mariam.pdf
http://eprints.utem.edu.my/id/eprint/21348/
https://jtec.utem.edu.my/jtec/article/view/3963/2852
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spelling my.utem.eprints.213482021-07-04T16:20:55Z http://eprints.utem.edu.my/id/eprint/21348/ Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA) Md Ghazaly, Mariam Yeo, Chin Kiat Chong , Shin Horng Jamaludin, Irma Wani Ranom, Rahifa T Technology (General) TK Electrical engineering. Electronics Nuclear engineering This paper presents the design and optimization of Tubular Linear Switched Reluctance Actuator (TLSRA).The study is carried out by means of Finite Element Method (FEM)by using ANSYS Maxwell software which capable of predicting the TLSRA thrust force.The study covered the variation of three parameters which are actuator materials,actuator air gap thickness and number of winding turns.In this design,the medium carbon steel (AISI 1045) is used for the actuator materials due to lower materials cost and higher thrust force generated compare to low carbon steel (AISI 1008 & AISI 1010) at current applied more than 1.8 A.In order to overcome the issue of TLSRA on low force density,the optimization of actuator air gap thickness and number of winding turns are important parameters that will influence the inductance and magnetic flux of TLSRA.The results show that the actuator produced larger thrust force with the air gap thickness of 0.5 mm and number of winding turns of 300 turns where it reaches 10.16 N when 3.6 A current is applied. Penerbit Universiti, UTeM 2018-05 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/21348/2/Jtec1-mariam.pdf Md Ghazaly, Mariam and Yeo, Chin Kiat and Chong , Shin Horng and Jamaludin, Irma Wani and Ranom, Rahifa (2018) Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA). Journal Of Telecommunication, Electronic And Computer Engineering (JTEC) , 10 (2-2). pp. 63-66. ISSN 2289-8131 https://jtec.utem.edu.my/jtec/article/view/3963/2852
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
Md Ghazaly, Mariam
Yeo, Chin Kiat
Chong , Shin Horng
Jamaludin, Irma Wani
Ranom, Rahifa
Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
description This paper presents the design and optimization of Tubular Linear Switched Reluctance Actuator (TLSRA).The study is carried out by means of Finite Element Method (FEM)by using ANSYS Maxwell software which capable of predicting the TLSRA thrust force.The study covered the variation of three parameters which are actuator materials,actuator air gap thickness and number of winding turns.In this design,the medium carbon steel (AISI 1045) is used for the actuator materials due to lower materials cost and higher thrust force generated compare to low carbon steel (AISI 1008 & AISI 1010) at current applied more than 1.8 A.In order to overcome the issue of TLSRA on low force density,the optimization of actuator air gap thickness and number of winding turns are important parameters that will influence the inductance and magnetic flux of TLSRA.The results show that the actuator produced larger thrust force with the air gap thickness of 0.5 mm and number of winding turns of 300 turns where it reaches 10.16 N when 3.6 A current is applied.
format Article
author Md Ghazaly, Mariam
Yeo, Chin Kiat
Chong , Shin Horng
Jamaludin, Irma Wani
Ranom, Rahifa
author_facet Md Ghazaly, Mariam
Yeo, Chin Kiat
Chong , Shin Horng
Jamaludin, Irma Wani
Ranom, Rahifa
author_sort Md Ghazaly, Mariam
title Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
title_short Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
title_full Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
title_fullStr Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
title_full_unstemmed Influence Of Materials,Air Gap And Winding Turns For A Tubular Linear Switched Reluctance Actuator (TLSRA)
title_sort influence of materials,air gap and winding turns for a tubular linear switched reluctance actuator (tlsra)
publisher Penerbit Universiti, UTeM
publishDate 2018
url http://eprints.utem.edu.my/id/eprint/21348/2/Jtec1-mariam.pdf
http://eprints.utem.edu.my/id/eprint/21348/
https://jtec.utem.edu.my/jtec/article/view/3963/2852
_version_ 1705060052893696000
score 13.160551