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DOE OSTI · 2998861

Characterization and Damping Control of Mechanical Connections to Improve Performance of Horn Stripline

Abstract

Magnetic focusing horns are critical components for creating a stable beam of neutrinos for neutrino facilities, such as the Long Baseline Neutrino Facility (LBNF) and the Neutrinos and Main Injector (NuMI) beam lines at Fermilab. The pulsed magnetic horns are powered by high current electricity through long striplines. In addition to requirements for low inductance and voltage standoff, the striplines must survive in a harsh radiation environment for the operational life of the component, specified as the 100 million pulses requirement for LBNF. Each stripline assembly consists of four (eight layers that splits off to 2 pairs of four layers at the horn interface) layers of Al 6101-T6. As an electromechanical system, the stripline layers are bolted together with ceramic isolators for electrical insulation and connections must facilitate passive cooling and mechanical stability. The striplines experience vibrational force in addition to clamping force, repetitive thermal and electro-magnetic loading. The holes of stripline plates for ceramic joints represent one of the weak links for potential failure [1,2]. By characterizing the contact behavior of these joints and optimizing their damping properties through finite element analysis and experimental modal analysis, stripline performance and longevity can be improved. This study not only helps predict the behavior of the striplines but also improves their performance to meet the required operational lifetime.

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BibTeXRIS

Liu, Zunping [Fermilab], He, Yun [Fermilab], Orea, Adrian [Fermilab], Paley, Bill [Fermilab], Anderson, Kris [Fermilab]. 2025-10-20. Characterization and Damping Control of Mechanical Connections to Improve Performance of Horn Stripline. https://www.osti.gov/biblio/2998861

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