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Strongly enhanced current densities in Sr0.6K0.4Fe2As2 + Sn superconducting tapes.


ABSTRACT: Improving transport current has been the primary topic for practical application of superconducting wires and tapes. However, the porous nature of powder-in-tube (PIT) processed iron-based tapes is one of the important reasons for low critical current density (Jc) values. In this work, the superconducting core density of ex-situ Sr0.6K0.4Fe2As2 + Sn tapes, prepared from optimized precursors, was significantly improved by employing a simple hot pressing as an alternative route for final sintering. The resulting samples exhibited optimal critical temperature (Tc), sharp resistive transition, small resistivity and high Vickers hardness (Hv) value. Consequently, the transport Jc reached excellent values of 5.1 × 10(4)?A/cm(2) in 10?T and 4.3 × 10(4)?A/cm(2) in 14?T at 4.2?K, respectively. Our tapes also exhibited high upper critical field Hc2 and almost field-independent Jc. These results clearly demonstrate that PIT pnictide wire conductors are very promising for high-field magnet applications.

SUBMITTER: Lin H 

PROVIDER: S-EPMC3964518 | biostudies-literature | 2014 Mar

REPOSITORIES: biostudies-literature

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Strongly enhanced current densities in Sr0.6K0.4Fe2As2 + Sn superconducting tapes.

Lin He H   Yao Chao C   Zhang Xianping X   Zhang Haitao H   Wang Dongliang D   Zhang Qianjun Q   Ma Yanwei Y   Awaji Satoshi S   Watanabe Kazuo K  

Scientific reports 20140325


Improving transport current has been the primary topic for practical application of superconducting wires and tapes. However, the porous nature of powder-in-tube (PIT) processed iron-based tapes is one of the important reasons for low critical current density (Jc) values. In this work, the superconducting core density of ex-situ Sr0.6K0.4Fe2As2 + Sn tapes, prepared from optimized precursors, was significantly improved by employing a simple hot pressing as an alternative route for final sintering  ...[more]

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