Utilization of Additive Manufacturing for the Rapid Prototyping of C-Band Radiofrequency Loads

Author:

Mathesen Garrett1,Wehner Charlotte1,Merrick Julian1,Shirley Bradley1,Agustsson Ronald2,Berry Robert2,Diego Amirari2,Nanni Emilio1

Affiliation:

1. SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025, USA

2. RadiaBeam, 21735 Stewart Street, Suite A, Santa Monica, CA 90404, USA

Abstract

Additive manufacturing is a versatile technique that shows promise in providing quick and dynamic manufacturing for complex engineering problems. Research has been ongoing into the use of additive manufacturing for potential applications in radiofrequency (RF) component technologies. Here, we present a method for developing an effective prototype load produced from 316L stainless steel on a direct metal laser sintering machine. The model was tested using simulation software to verify the validity of the design. The load structure was manufactured by an online digital manufacturing company, showing the viability of using easily accessible tools to manufacture RF structures. The produced load was able to produce an S11 value of −22.8 dB at a C-band frequency of 5.712 GHz while under a vacuum. In a high-power test, the load was able to terminate a peak power of 8.1 MW. The discussion includes future applications of the present method and how it will help to improve the implementation of future accelerator concepts.

Funder

Department of Energy

Publisher

MDPI AG

Subject

Instrumentation

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3. Wehner, C., Merrick, J., Shirley, B., Weatherford, B., Mathesen, G., and Nanni, E. (2022). RF Properties and Their Variations in a 3D Printed Klystron Circuit and Cavities. arXiv.

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5. Mohd Yusuf, S., Cutler, S., and Gao, N. (2019). Review: The Impact of Metal Additive Manufacturing on the Aerospace Industry. Metals, 9.

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