A Survey of Pressure Vessel Code Compliance for Superconducting RF Cryomodules
Abstract
Superconducting radio frequency (SRF) cavities made from niobium and cooled with liquid helium are becoming key components of many particle accelerators. The helium vessels surrounding the RF cavities, portions of the niobium cavities themselves, and also possibly the vacuum vessels containing these assemblies, generally fall under the scope of local and national pressure vessel codes. In the U.S., Department of Energy rules require national laboratories to follow national consensus pressure vessel standards or to show "a level of safety greater than or equal to" that of the applicable standard. Thus, while used for its superconducting properties, niobium ends up being treated as a low-temperature pressure vessel material. Niobium material is not a code listed material and therefore requires the designer to understand the mechanical properties for material used in each pressure vessel fabrication; compliance with pressure vessel codes therefore becomes a problem. This report summarizes the approaches that various institutions have taken in order to bring superconducting RF cryomodules into compliance with pressure vessel codes.
Keywords
Cite
@article{arxiv.1209.2405,
title = {A Survey of Pressure Vessel Code Compliance for Superconducting RF Cryomodules},
author = {Thomas Peterson and Arkadiy Klebaner and Tom Nicol and Jay Theilacker and Hitoshi Hayano and Eiji Kako and Hirotaka Nakai and Akira Yamamoto and Kay Jensch and Axel Matheisen and John Mammosser},
journal= {arXiv preprint arXiv:1209.2405},
year = {2015}
}
Comments
7 pp