Method for manufacturing precursor, method for manufacturing superconducting wire, precursor, and superconducting wire
View Patent ↗A method for manufacturing a superconducting wire includes the following steps. A laminate metal having a first metal layer and a Ni layer formed on the first metal layer is prepared. An intermediate layer ( 20 ) is formed on the Ni layer of the laminate metal. A superconducting layer ( 30 ) is formed on the intermediate layer ( 20 ). By subjecting the laminate metal to a heat treatment after at least either of the step of forming a intermediate layer ( 20 ) and the step of forming a superconducting layer ( 30 ), a nonmagnetic Ni alloy layer ( 12 ) is formed from the laminate metal.
1. A multilayer structure comprising:
a single nickel alloy layer which has lower magnetism than a simple substance of Ni, wherein said single nickel alloy layer consists of (i) a first metal and (ii) nickel that is not oxidized in a superficial layer of said nickel alloy layer, and wherein said single nickel alloy layer does not include a simple substance of nickel; and
an intermediate layer formed on said single nickel alloy layer, wherein
in said single nickel alloy layer, the concentration of nickel monotonically reduces from an interface with said intermediate layer towards the surface opposite to said interface.
2. The multilayer structure according to claim 1 , further comprising a second metal layer formed under said single nickel alloy layer which has lower magnetism than a simple substance of Ni and having higher strength than said single nickel alloy layer;
said intermediate layer including at least one of:
i) rare earth element oxides which include cerium oxide (CeO 2 ), holmium oxide (Ho 2 O 3 ), yttrium oxide (Y 2 O 3 ) and ytterbium oxide (Yb 2 O 3 ); or
ii) yttria-stabilized zirconia (YSZ), magnesium oxide (MgO), and Ln-M-O compounds (Ln represents one or more lanthanoid elements, M represents one or more elements selected from Sr, Zr and Ga, and O represents oxygen) which include strontium titanate (SrTiO 3 ), BZO (BaZrO 3 ) and aluminum oxide (Al 2 O 3 ).
3. A superconducting wire comprising:
the multilayer structure of claim 1 , and
a superconducting layer formed on an intermediate layer.