English

Improved training in paraffin-wax impregnated Nb3Sn Rutherford cables demonstrated in BOX samples

Accelerator Physics 2023-06-14 v1

Abstract

Resin-impregnated high-field Nb3Sn type of accelerator magnets are known to require extensive training campaigns and even may exhibit performance-limiting defects after thermal or electromagnetic cycling. In order to efficiently explore technological solutions for this behaviour and assess a wide variety of impregnation material combinations and surface treatments, the BOnding eXperiment (BOX) sample was developed. BOX provides a short-sample test platform featuring magnet-relevant Lorentz forces and exhibits associated training. Here we report on the comparative behaviour of BOX samples comprising the same Nb3Sn Rutherford cable but impregnated either with common resins used in high-field magnets, or with less conventional paraffin wax. Remarkably, the two paraffin wax-impregnated BOX samples reached their critical current without training and are also resilient to thermal and mechanical cycling. These rather encouraging results strongly contrast to those obtained with resin impregnated samples, which show the characteristic extensive training and at best barely reach their critical current value.

Keywords

Cite

@article{arxiv.2201.11039,
  title  = {Improved training in paraffin-wax impregnated Nb3Sn Rutherford cables demonstrated in BOX samples},
  author = {Michael Daly and Bernard Auchmann and André Brem and Christoph Hug and Serguei Sidorov and Simon Otten and Marc Dhallé and Zichuan Guo and Anna Kario and Herman ten Kate},
  journal= {arXiv preprint arXiv:2201.11039},
  year   = {2023}
}

Comments

7 pages, 6 figures, To be published in IOP's Superconductor Science and Technology Journal (SuST)