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Article

The Concept and Measurements of an Adjustable Holder for Large Magnets Applicable for a THz Undulator Working in Superradiant Emission

by
Paweł J. Romanowicz
1,2,*,
Jarosław Wiechecki
2,3,
Daniel Ziemiański
2,4,
Robert Nietubyć
2 and
Paweł Krawczyk
2
1
Department of Machine Design and Composite Structures, Faculty of Mechanical Engineering, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
2
Plasma/Ion Beam Technology Division, Material Physics Department, National Centre for Nuclear Research Świerk, 7 Sołtana St., 05-400 Otwock, Poland
3
National Synchrotron Radiation Centre SOLARIS, Jagiellonian University, ul. Czerwone Maki 98, 30-392 Cracow, Poland
4
Department of Applied Mechanics and Biomechanics, Faculty of Mechanical Engineering, Cracow University of Technology, ul. Warszawska 24, 31-155 Kraków, Poland
*
Author to whom correspondence should be addressed.
Appl. Sci. 2024, 14(22), 10338; https://doi.org/10.3390/app142210338
Submission received: 20 October 2024 / Revised: 5 November 2024 / Accepted: 7 November 2024 / Published: 10 November 2024

Abstract

The main aim of this study is the concept of the magnet holder for the THz undulator utilized in the PolFEL superradiant light source. To achieve maximum flux at high K values (radiation frequencies ranging from 0.5 THz to 5 THz, and K values exceeding 3), it is necessary to use large permanent magnets with dimensions of 100 × 100 × 39.9 mm. For the above assumptions and parameters and specific requirements for magnet positioning, existing design solutions in the literature were found to be insufficient. The main challenges in the design of this holder included the following: (a) the unusually large size of the magnets, (b) requirements of wide-range calibration, and (c) large magnetic forces acting on each magnet, which can approach almost 4 kN. Taking into consideration these challenges, the prototype of the magnet holder was developed and manufactured. The paper presents the findings from both numerical and experimental studies aimed at validating the mechanical behavior and deformation of the proposed magnet holder. The measurements were conducted using two methods—traditional with the use of dial indicators and a novel approach based on the application of the Digital Image Correlation. The results from these numerical and experimental studies indicate that all specified requirements have been satisfactorily met. The study confirms the capability for accurate magnet positioning, demonstrating stable deformation of the holder under a magnetic load. Additionally, it was proved that the positioning of the magnets is both linear and repeatable, with calibration achievable within a range of at least ±0.25 mm.
Keywords: FEL undulators; magnet holders; large magnets; digital image correlation; magnetics; FEM analyses; magnetic forces; insertion device FEL undulators; magnet holders; large magnets; digital image correlation; magnetics; FEM analyses; magnetic forces; insertion device

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MDPI and ACS Style

Romanowicz, P.J.; Wiechecki, J.; Ziemiański, D.; Nietubyć, R.; Krawczyk, P. The Concept and Measurements of an Adjustable Holder for Large Magnets Applicable for a THz Undulator Working in Superradiant Emission. Appl. Sci. 2024, 14, 10338. https://doi.org/10.3390/app142210338

AMA Style

Romanowicz PJ, Wiechecki J, Ziemiański D, Nietubyć R, Krawczyk P. The Concept and Measurements of an Adjustable Holder for Large Magnets Applicable for a THz Undulator Working in Superradiant Emission. Applied Sciences. 2024; 14(22):10338. https://doi.org/10.3390/app142210338

Chicago/Turabian Style

Romanowicz, Paweł J., Jarosław Wiechecki, Daniel Ziemiański, Robert Nietubyć, and Paweł Krawczyk. 2024. "The Concept and Measurements of an Adjustable Holder for Large Magnets Applicable for a THz Undulator Working in Superradiant Emission" Applied Sciences 14, no. 22: 10338. https://doi.org/10.3390/app142210338

APA Style

Romanowicz, P. J., Wiechecki, J., Ziemiański, D., Nietubyć, R., & Krawczyk, P. (2024). The Concept and Measurements of an Adjustable Holder for Large Magnets Applicable for a THz Undulator Working in Superradiant Emission. Applied Sciences, 14(22), 10338. https://doi.org/10.3390/app142210338

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