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Development of cube-textured Ni-W alloy substrates for YBCO-coated conductor

机译:用于YBCO涂层导体的立方织构Ni-W合金基底的开发

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摘要

We fabricated pure Ni and Ni-W alloy substrates for YBCO-coated conductor applications and evaluated the effect of W in Ni on texture, grain size, grain boundary and surface morphology, and hardness of the substrates. Pure Ni, Ni-2at.%W. and Ni-5at.%W alloy substrates were prepared by plasma arc melting, cold rolling, and recrystallization heat treatment at various temperatures (700-1300 degreesC). Substrate texture was evaluated by pole-figure and microstructure and surface morphology were investigated by optical and atomic force microscopy (AFM).We observed that the Ni-W alloy substrates had stronger cube texture that was maintained at higher annealing temperatures than seen for the pure Ni substrate: Full-width at half-maximum of in-plane texture was 13.40degrees for the Ni substrate and 4.42-5.57degrees for the Ni W substrate annealed at 1000 degreesC. In addition, the Ni-W substrate had smaller grain size, less thermal grooving, and higher hardness, compared to those of the pure Ni substrate, indicating that the presence of W in Ni effectively restricts grain growth and enhances thermal stability by strengthening the grain boundary in the Ni substrate. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们制造了用于NiBCO涂层导体应用的纯Ni和Ni-W合金基底,并评估了Ni中的W对基底的织构,晶粒尺寸,晶界和表面形态以及硬度的影响。纯Ni,Ni-2at。%W。通过在各种温度(700-1300℃)下进行等离子弧熔化,冷轧和再结晶热处理来制备Ni-5at。%W合金基材。通过极图评估基材的织构,并通过光学和原子力显微镜(AFM)研究微观结构和表面形态。我们观察到Ni-W合金基材具有更强的立方织构,并且在高于纯净退火温度的情况下保持较高的退火温度Ni基板:Ni基板的面内织构的半峰全宽为13.40度,在1000℃下退火的Ni W基板为4.42-5.57度。另外,与纯Ni基底相比,Ni-W基底具有较小的晶粒尺寸,较少的热切槽和较高的硬度,表明Ni中W的存在通过强化晶粒有效地限制了晶粒的生长并增强了热稳定性。 Ni衬底中的边界。 (C)2004 Elsevier B.V.保留所有权利。

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