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Transport critical current densities and n-values were measured at 4.2 K in fields up to 15 T on 7, 19, and 37-stack multifilamentary MgB2 strands made using an in-situ route. Some strands included SiC additions (particle size 30 nm), while…

超导电性 · 物理学 2009-11-10 M. D. Sumption , M. Bhatia , X. Wu , M. Rindfleisch , M. Tomsic , E. W. Collings

Recent advances in MgB2 conductors are leading to a new level of performance. Based on the use of proper powders, proper chemistry, and an architecture which incorporates internal Mg diffusion (IMD), a dense MgB2 structure with not only a…

MgB2 tapes and wires were fabricated by the Powder-In-Tube method. Stainless steel and Cu-Ni tubes were used as sheath materials, and no heat treatment was applied. The tapes made of stainless steel showed transport critical current density…

超导电性 · 物理学 2009-11-07 H. Kumakura , A. Matsumoto , H. Fujii , K. Togano

A series of MgB2 superconducting composite strands co-doped with Dy2O3 and C were prepared via an advanced internal Mg infiltration (AIMI) route.The transport properties and MgB2 layer growth were studied in terms of the Dy2O3 doping level,…

超导电性 · 物理学 2014-09-23 G. Z. Li , M. D. Sumption , M. A. Rindfleisch , C. J. Thong , M. J. Tomsic , E. W. Collings

In this letter, we report the first successful fabrication of dense, metal-clad MgB2 superconductor wires as well as the first demonstration of high transport Jc of greater than 36,000 A/cm2 in MgB2. The fabrication technique that we…

超导电性 · 物理学 2007-05-23 S. Jin , H. Mavoori , R. B. van Dover

We succeeded in the fabrication of high-Jc MgB2/Fe wires applying the internal Mg diffusion (IMD) process with pure Mg core and SiC addition. A pure Mg rod with 2 mm diameter was placed at the center of a Fe tube, and the space between Mg…

超导电性 · 物理学 2009-11-13 J. M. Hur , K. Togano , A. Matsumoto , H. Kumakura , H. Wada , K. Kimura

We prepared and characterized monofilamentary MgB2 wires with a mechanically reinforced composite sheath of Ta(Nb)/Cu/steel, which leads to dense filaments and correspondingly high transport currents up to Jc = 10^5 A/cm^2 at 4.2 K, self…

超导电性 · 物理学 2009-11-07 W. Goldacker , S. I. Schlachter , S. Zimmer , H. Reiner

Transport measurements of critical current density, Jct, in monocore powder-in-tube MgB2 strands have been carried out at temperatures, T, of from 4.2 K to 40 K, and in transverse fields, B, of up to 14 T. Processing methods used were…

超导电性 · 物理学 2015-05-30 G Z Li , Y Yang , M A Susner , M D Sumption , E W Collings

The critical current densities of MgB2 monofilamentary strands with and without SiC additions were measured at 4.2 K. Additionally, magnetic Jc at B = 1 T was measured from 4.2 K to 40 K. Various heat treatment times and temperatures were…

超导电性 · 物理学 2009-11-10 M. D. Sumption , M. Bhatia , M. Rindfleisch , M. Tomsic , E. W. Collings

Multifilamentary MgB2/Fe wires and tapes with high transport critical current densities have been fabricated using a straightforward powder-in-tube (PIT) process. After annealing, we measured transport jc values up to 1.1 * 105 A/cm2 at 4.2…

超导电性 · 物理学 2009-11-07 H. L. Suo , C. Beneduce , X. D. Su , R. Flukiger

The anisotropy of the critical current density (Jc) and its influence on measurement of irreversibility field (Birr) has been investigated for high quality, in-situ MgB2 strands. Comparison of transport and magnetization measurements has…

We report on the preparation of dense monofilamentary MgB2/Ni and MgB2/Fe tapes with high critical current densities. In annealed MgB2/Ni tapes, we obtained transport critical current densities as high as 2.3*105 A/cm2 at 4.2 K and 1.5 T,…

Monocore powder-in-tube MgB2 strands were cold-drawn and heat-treated at 600C and 700C for times of up to 71 hours and structure-property relationships examined. Drawing-induced elongation of the Mg particles led, after HT, to a textured…

超导电性 · 物理学 2015-05-30 M. A. Susner , T. W. Daniels , M. D. Sumption , E. W. Collings

In this work we investigate the effect of each different heat treatment stage in the fabrication of Bi2Sr2CaCu2O8+d superconducting wires on intra-grain and inter-grain superconducting properties. We measure magnetic critical temperature Tc…

超导电性 · 物理学 2017-09-13 I. Pallecchi , A. Leveratto , V. Braccini , V. Zunino , A. Malagoli

The powder in tube method has been used to fabricate Ag and Cu clad MgB2 wires using an in-situ reaction method. The effects of short time sintering on the critical current densities of Ag and Cu clad MgB2 wires were studied. All the…

超导电性 · 物理学 2009-11-07 S. Soltanian , X. L. Wang , J. Horvat , A. H. Li , H. K. Liu , S. X. Dou

Mono- and multifilamentary MgB2/Fe tapes and wires with high transport critical current densities have been prepared using the powder-in-tube (PIT) process. The fabrication details are described. The effect of powder grain sizes and…

超导电性 · 物理学 2018-07-04 H. L. Suo , P. Lezza , D. Uglietti , C. Beneduce , V. Abacherli , R. Flukiger

We have fabricated a series of ex situ copper sheathed powder-in-tube MgB2 wires with 20% by volume Ag, Pb, In, and Ga metal added to the MgB2 powder. We find the transport critical current of these wires increases significantly with the…

超导电性 · 物理学 2009-11-11 M. J. Holcomb

A series of doping experiments are reported for MgB2 conductors that have been synthesized using doped boron fibers prepared by chemical vapor deposition(CVD) methods. Undoped MgB2 samples prepared from CVD prepared fibers consistently give…

Transport current values of 7.5 x 104 A/cm2 at 4.2 K and self-field are reported for MbB2-based tapes. MgB2 strands were formed by directly filling commercially available MgB2 powder into Nb-lined, monel tubes and wire drawing. The wires…

超导电性 · 物理学 2007-05-23 M. D. Sumption , X. Peng , E. Lee , M. Tomsic , E. W. Collings

In the present investigation, we report a systematic study of Ag admixing in MgB2 prepared by solid-state reaction at ambient pressure. All the samples in the present investigation have been subjected to structural/ microstructural…

超导电性 · 物理学 2007-05-23 Chandra Shekhar , Rajiv Giri , R. S. Tiwari , S. K. Malik , O. N. Srivastava
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