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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Fabrication of Reinforced and Biaxially Textured NiW Alloy Substrates by Spark Plasma Sintering Technique
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Fabrication of Reinforced and Biaxially Textured NiW Alloy Substrates by Spark Plasma Sintering Technique

机译:火花等离子烧结技术制备增强的双轴织构NiW合金基体

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摘要

The key requirement for the substrates employed in coated conductors is using highly cube textured and weakly magnetic as well as strengthened materials. In this work, a tri-layer of composite substrate, as a substitute for the traditional substrate architecture, was designed and obtained by sintering two pieces of Ni-5at.% W (or Ni-7at.% W) outer layers on both sides of a Ni-12at.% W mixed powder (as an inner layer) together using an advanced spark plasma sintering (SPS) technology, followed by cold rolling and annealing. The sharp cube texture was obtained in both kinds of composite substrates by optimizing rolling and recrystallization processes. The percentage of the cube texture component on the Ni5W outer layer of the Ni5W/Ni12W/Ni5W composite substrate was higher than 95.4% within a misorientation angle of 10 $^{circ}$ from EBSD measurements. Moreover, the yield strength of this composite substrate exceeds 300 MPa, while the saturation magnetization is reduced dramatically.
机译:对涂覆导体中使用的基板的关键要求是使用高立方纹理,弱磁性以及增强材料。在这项工作中,通过烧结两面两面Ni-5at。%W(或Ni-7at。%W)的外层,设计并获得了三层复合衬底作为传统衬底结构的替代品使用先进的火花等离子体烧结(SPS)技术将Ni-12at。%W混合粉末(作为内层)混合在一起,然后进行冷轧和退火。通过优化轧制和再结晶工艺,两种复合基材均获得了清晰的立方织构。 Ni5W / Ni12W / Ni5W复合衬底的Ni5W外层上的立方织构成分的百分比在EBSD测量的10°C的失取向角内高于95.4%。此外,该复合基板的屈服强度超过300MPa,同时饱和磁化强度显着降低。

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