Red and Green Laser Powder Bed Fusion of Pure Copper in Combination with Chemical Post-Processing for RF Cavity Fabrication

Author:

Mayerhofer Michael1ORCID,Brenner Stefan2,Dickmann Marcel1ORCID,Doppler Michael3,Gruber Samira4ORCID,Helm Ricardo1ORCID,Lopez Elena4ORCID,Maier Verena5,Mitteneder Johannes1,Neukirchen Carsten6ORCID,Nedeljkovic-Groha Vesna2,Reinarz Bernd7,Schuch Michael8,Stepien Lukas4ORCID,Dollinger Günther1

Affiliation:

1. Institute for Applied Physics and Measurement Technology, University of the Bundeswehr Munich, Werner-Heisenberg-Weg 39, 85577 Neubiberg, Germany

2. Institute for Design and Production Engineering, University of the Bundeswehr Munich, Werner-Heisenberg-Weg 39, 85577 Neubiberg, Germany

3. RENA Technologies Austria GmbH, Samuel-Morse-Straße 1, 2700 Wiener Neustadt, Austria

4. Institute for Material and Beam Technology IWS, Fraunhofer Society, Winterbergstraße 28, 01277 Dresden, Germany

5. Center for Applied Sciences and Tissue Engineering and Regenerative Medicine, Munich University of Applied Sciences, Lothstrase 34, 80335 Munich, Germany

6. Institute of Chemical and Environmental Engineering, University of the Bundeswehr Munich, Werner-Heisenberg-Weg 39, 85577 Neubiberg, Germany

7. Innovation Center Düsseldorf, EOS GmbH Electro Optical Systems, Fichtenstr. 53, 40233 Düsseldorf, Germany

8. Bundeswehr Research Institute for Materials, Fuels and Lubricants (WIWeB), Institutsweg 1, 85435 Erding, Germany

Abstract

Linear particle accelerators (Linacs) are primarily composed of radio frequency cavities (cavities). Compared to traditional manufacturing, Laser Powder Bed Fusion (L-PBF) holds the potential to fabricate cavities in a single piece, enhancing Linac performance and significantly reducing investment costs. However, the question of whether red or green laser PBF yields superior results for pure copper remains a subject of ongoing debate. Eight 4.2 GHz single-cell cavities (SCs) were manufactured from pure copper using both red and green PBF (SCs R and SCs G). Subsequently, the surface roughness of the SCs was reduced through a chemical post-processing method (Hirtisation) and annealed at 460 °C to maximize their quality factor (Q0). The geometric accuracy of the printed SCs was evaluated using optical methods and resonant frequency (fR) measurements. Surface conductivity was determined by measuring the quality factor (Q0) of the SCs. Laser scanning microscopy was utilized for surface roughness characterization. The impact of annealing was quantified using Energy-Dispersive X-ray Spectroscopy and Electron Backscatter Diffraction to evaluate chemical surface properties and grain size. Both the SCs R and SCs G achieved the necessary geometric accuracy and thus fR precision. The SCs R achieved a 95% Q0 after a material removal of 40 µm. The SCs G achieved an approximately 80% Q0 after maximum material removal of 160 µm. Annealing increased the Q0 by an average of about 5%. The additive manufacturing process is at least equivalent to conventional manufacturing for producing cavities in the low-gradient range. The presented cavities justify the first high-gradient tests.

Funder

Federal Ministry of Education and Research (BMBF) via ERUM-Pro and the EU project Radiate

dtec.bw—Forschungszentrum Digitalisierung und Technik der Bundeswehr

European Union—NextGenerationEU

German Research Foundation

Publisher

MDPI AG

Reference46 articles.

1. Witman, S. (Symmetry Magazine, 2014). Ten Things You Might Not Know about Particle Accelerators, Symmetry Magazine.

2. Wangler, T.P. (2008). RF Linear Accelerators, John Wiley & Sons.

3. Advanced technologies for applied particle accelerators and examples of their use;Kutsaev;Tech. Phys.,2021

4. Microbial decontamination of food by electron beam irradiation;Lung;Trends Food Sci. Technol.,2015

5. History of radiation therapy technology;Kim;Prog. Med Phys.,2020

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