Towards a reliable bridge joint between REBCO coated conductors

Author:

Kirchner A.,Nielsch K.,Hühne R.

Abstract

Abstract REBa2Cu3O7-x (REBCO; RE = Y, Gd) coated conductor wires are commercially available up to a length of about 1 km. However, for large-scale devices like superconducting coils for high-field magnets several kilometres of a coated conductors are required. Therefore, it is desirable to use joints, which exhibit similar superconducting properties as the coated conductor itself. In this study, we jointed commercial REBCO coated conductors by a two-step procedure. At first, a superconducting soldering solution was developed and deposited on unstabilized coated conductors via chemical solution deposition. The soldering precursor is based on a Cu-rich solution with a metal cation ratio Y:Ba:Cu of 1:2:4. Secondly, a piece of the coated conductor was delaminated between the superconducting and the buffer layer and used as bridge between two other conductors covered with the soldering layer. Annealing the resulting bridge joint under pressure results in a mechanical stable configuration.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference16 articles.

1. Persistent current joints between technological superconductors;Brittles;Superconductor Science and Technology,2015

2. Electromechanical Performance Study on Silver Diffusion Joints of REBCO Coated Conductors Under Axial Tensile Stress;Wu;IEEE Transactions on Applied Superconductivity,2017

3. Fabrication, microstructure and persistent current measurement of an intermediate grown superconducting (iGS) joint between REBCO-coated conductors;Ohki;Superconductor Science and Technology,2017

4. Development of a superconducting joint between a GdBa2Cu3O7-δ-coated conductor and YBa2Cu3O7-δ bulk: towards a superconducting joint between RE (Rare Earth) Ba2Cu3O7-δ coated conductors;Jin;Superconductor Science and Technology,2015

5. Joint of REBa2Cu3O7-δ Coated Conductors using Metal Organic Deposition;Hiramatsu;Physics Procedia,2016

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