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YBCO coated conductor using biaxially textured clad composite Ni-Mn/Ni-Cr substrate

机译:使用双轴织构复合Ni-Mn / Ni-Cr基底的YBCO涂层导体

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摘要

A new biaxially textured composite tape of Ni–4.5% Mn/Ni–1.5% Cr was used as a substrate for a YBCO coated conductor through the RABiTS approach. Multi-layer CeO2/YSZ/Y2O3 buffer layers and YBCO film were deposited on the substrate by pulsed laser deposition. The deposition conditions of the buffer layers and the YBCO were studied and compared. Good biaxial textures have been obtained for buffer layers on composite Ni–4.5% Mn/Ni–1.5% Cr substrates. Scanning electron microscopy on sample cross-sections was used to examine the interface and diffusion of oxygen. The uniform formation of an Ni–Mn–O layer between NiO and the Ni–4.5% Mn layer was observed, and the Ni–Mn–O layer restricted the further growth of NiO layer, which was thin and not continuous, within the coated conductor during YBCO deposition at higher temperature and higher oxygen pressure. The Jc of YBCO films on these metal substrates was 1.5 × 106 A cm−2 at 77 K, 0 T.
机译:通过RABiTS方法,将一种新的双轴织构复合带Ni-4.5%Mn / Ni-1.5%Cr用作YBCO涂层导体的基底。通过脉冲激光沉积在基板上沉积多层CeO2 / YSZ / Y2O3缓冲层和YBCO膜。研究并比较了缓冲层和YBCO的沉积条件。在复合Ni–4.5%Mn / Ni–1.5%Cr衬底上的缓冲层上已获得良好的双轴织构。样品截面的扫描电子显微镜用于检查氧气的界面和扩散。观察到在NiO和Ni–4.5%Mn层之间均匀形成了Ni–Mn–O层,并且Ni–Mn–O层限制了涂层内NiO层的进一步生长,该层薄且不连续在较高温度和较高氧气压力下沉积YBCO期间的导体。这些金属基板上的YBCO膜的Jc在77 K,0 T下为1.5×106 A cm-2。

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