LAPSE:2023.34928
Published Article

LAPSE:2023.34928
Design, Implementation and Test of a Novel Cylindrical Permanent Magnet DC Linear Motor
April 28, 2023
Abstract
Electric motors that convert electrical energy into motion are one of the basic components of automation systems. In these systems, either linear or circular motion is needed. Linear motion can be obtained either from motors that generate circular motion with the help of ancillary equipment or directly by the means of a linear motor. Obtaining linear motion from motors that produce rotary motion leads to additional costs and reduced efficiency. Linear motors, on the other hand, eliminate the need for conversion mechanisms. Despite this advantage, linear motors have some disadvantages, such as length limitation and low force/current ratio. In this study, a novel Cylindrical Direct Current Linear Motor (CDCLM) with high force/current ratio and no length limitation (long stroke) has been developed. Analyses of the developed motor has been performed with an analytical method. In addition, detailed numerical analyses have been carried out in an Ansys-Maxwell environment. A prototype of the designed DC linear motor has been implemented in a laboratory environment and experimental analyses have been carried out. The results of analytical, numerical and experimental analyses have been compared.
Electric motors that convert electrical energy into motion are one of the basic components of automation systems. In these systems, either linear or circular motion is needed. Linear motion can be obtained either from motors that generate circular motion with the help of ancillary equipment or directly by the means of a linear motor. Obtaining linear motion from motors that produce rotary motion leads to additional costs and reduced efficiency. Linear motors, on the other hand, eliminate the need for conversion mechanisms. Despite this advantage, linear motors have some disadvantages, such as length limitation and low force/current ratio. In this study, a novel Cylindrical Direct Current Linear Motor (CDCLM) with high force/current ratio and no length limitation (long stroke) has been developed. Analyses of the developed motor has been performed with an analytical method. In addition, detailed numerical analyses have been carried out in an Ansys-Maxwell environment. A prototype of the designed DC linear motor has been implemented in a laboratory environment and experimental analyses have been carried out. The results of analytical, numerical and experimental analyses have been compared.
Record ID
Keywords
Ansys-Maxwell, cylindrical motor, linear motor, permanent magnets
Suggested Citation
Demirkol Z, Hasirci U, Demirci R. Design, Implementation and Test of a Novel Cylindrical Permanent Magnet DC Linear Motor. (2023). LAPSE:2023.34928
Author Affiliations
Demirkol Z: Department of Electronics and Automation, Kastamonu University, 80309 Kastamonu, Türkiye
Hasirci U: Department of Electrical and Electronics Engineering, Engineering Faculty, Duzce University, 81620 Duzce, Türkiye
Demirci R: Department of Computer Engineering, Technology Faculty, Gazi University, 06190 Ankara, Türkiye [ORCID]
Hasirci U: Department of Electrical and Electronics Engineering, Engineering Faculty, Duzce University, 81620 Duzce, Türkiye
Demirci R: Department of Computer Engineering, Technology Faculty, Gazi University, 06190 Ankara, Türkiye [ORCID]
Journal Name
Energies
Volume
16
Issue
8
First Page
3491
Year
2023
Publication Date
2023-04-17
ISSN
1996-1073
Version Comments
Original Submission
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PII: en16083491, Publication Type: Journal Article
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LAPSE:2023.34928
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https://doi.org/10.3390/en16083491
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Apr 28, 2023
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