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August 1, 1976Applied Physics Letters75 citations

Effect of stress on the critical current of Nb3Sn multifilamentary composite wire

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JEJ. W. Ekin

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Abstract

A critical-current study of flexible Nb3Sn multifilamentary composite wires has been conducted at 4 K in magnetic fields to 90 kOe (7.2×106 A/m) while the wire is subjected to high mechanical stresses. The results show that at stresses above 1–2×108 Pa (strains of 0.1–0.2%) the critical current is significantly degraded, with the magnitude of the reduction dependent on reinforcement techniques used in the wire’s construction. The effect increases with magnetic field and results in the introduction of significant resistance at current levels well below the zero-stress critical current. Design considerations for the use of Nb3Sn wires in the high-stress environments of large-scale superconducting magnets are discussed.

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J. W. Ekin (1976) studied this question.

synapsesocial.com/papers/6a8478fd121b098de683f2dbhttps://doi.org/10.1063/1.88999
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Superconducting Machines and Devices: Large Systems Applications1975 · 14 citations
  2. 2Effect of Tensile Stress on the Transition Temperature and Current-Carrying Capacity of Nb3Sn1965 · 47 citations
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  4. 4Effect of Stress on the Superconducting Transition Temperature of V3 Si1964 · 51 citations
  5. 5Influence of Mechanical Constraints on Critical Currents of Superconducting Surface Layers of Nb3Sn on Niobium and V3Ga on Vanadium in Transverse Magnetic Fields1964 · 8 citations