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Related papers: Supercurrents in Magnesium Diboride/Metal Composit…

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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…

Superconductivity · Physics 2009-11-07 W. Goldacker , S. I. Schlachter , S. Zimmer , H. Reiner

Magnesium diboride superconducting wires give the largest critical current density (Jc) when produced with iron sheath. Because iron is ferromagnetic, it is expected to improve the field dependence of Jc by shielding of the external field…

Superconductivity · Physics 2007-05-23 J. Horvat

An improvement of the transport critical current density, Jc, of MgB2 wires was obtained after addition of 10 wt.% B4C powders, after reaction at 800 C: Jc values of 1.10^4 A/cm2 at 4.2 K and 9T were obtained for wires of 1.11 mm diameter…

Superconductivity · Physics 2009-11-11 P. Lezza , C. Senatore , R. Flukiger

We report significant transport critical currents firstly achieved in Sr0.6K0.4Fe2As2 wires and tapes with a Tc = 34 K, which were fabricated through an in-situ powder-in-tube process. Silver was used as a chemical addition as well as a…

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…

We have fabricated (Ba,K)Fe2As2 superconducting wires through ex-situ powder-in-tube method. Silver was used as a chemical addition to improve the performance of these superconducting wires. The transport critical current densities (Jc)…

Superconductivity · Physics 2015-06-03 Qing-Ping Ding , Trirat Prombood , Yuji Tsuchiya , Yasuyuki Nakajima , Tsuyoshi Tamegai

If the critical current density Jc is very high for a superconductor, then estimating its value from transport measurements is not very easy. In such cases, the value of Jc, called Jcm for magnetic Jc, is usually obtained from the measured…

The nano-SiC doped MgB2/Fe wires were fabricated using a powder-in-tube method and an in-situ reaction process. The depression of Tc with increasing SiC doping level remained rather small due to the counterbalanced effect of Si and C…

Transport critical current (Ic) was measured for Fe-sheathed MgB2 round wires. A critical current density of 5.3 x 10^4 A/cm^2 was obtained at 32K. Strong magnetic shielding by the iron sheath was observed, resulting in a decrease in Ic by…

Superconductivity · Physics 2007-05-23 J. Horvat , X. L. Wang , S. Soltanian , S. X. Dou

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…

Superconductivity · Physics 2007-05-23 S. Jin , H. Mavoori , R. B. van Dover

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…

Superconductivity · Physics 2009-11-07 H. Kumakura , A. Matsumoto , H. Fujii , K. Togano

We fabricated (Ba,Na)Fe2As2 superconducting wires using the powder-in-tube method and hot isostatic pressing. By improving powder synthesis processes compared with previous studies, highly pure raw materials for the wire fabrication were…

Magnetic measurements carried out on MgB_2 superconducting round wires have shown that the critical current density J_c(B_a) in wires sheathed by iron can be significantly higher than that in the same bare (unsheathed) wires over a wide…

Superconductivity · Physics 2007-05-23 Alexey V. Pan , Shixue Dou

We report large transport critical current densities observed in Ag-added (Ba,K)Fe2As2 superconducting wires prepared by an ex-situ powder-in-tube (PIT) process. The wire has a simple composite structure sheathed only by Ag. A precursor…

Superconductivity · Physics 2015-05-27 Kazumasa Togano , Akiyoshi Matsumoto , Hiroaki Kumakura

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…

Superconductivity · Physics 2018-07-04 H. L. Suo , P. Lezza , D. Uglietti , C. Beneduce , V. Abacherli , R. Flukiger

Iron-based superconductors have been considered to be very promising in high-field applications, for which multifilamentary wire and tape conductors with high mechanical strength are essential. In this work, 7-,19- and 114-filament…

A relatively high critical temperature, Tc, approaching 40 K, places the recently-discovered superconductor magnesium diboride (MgB2) intermediate between the families of low- and copper-oxide-based high-temperature superconductors (HTS).…

Superconductivity · Physics 2009-11-07 Y. Bugoslavsky , L. F. Cohen , G. K. Perkins , M. Polichetti , T. J. Tate , R. Gwilliam , A. D. Caplin

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…

Superconductivity · Physics 2017-09-13 I. Pallecchi , A. Leveratto , V. Braccini , V. Zunino , A. Malagoli

The superconducting properties of copper-sheathed MgB2 wires fabricated by conventional powder-in-tube techniques and the in-situ reaction procedure are analysed. The influence of the processing conditions and initial (1+x)Mg + 2B (x = 0,…

Superconductivity · Physics 2007-05-23 E. Martinez , R. Navarro

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…

Superconductivity · Physics 2009-11-07 S. Soltanian , X. L. Wang , J. Horvat , A. H. Li , H. K. Liu , S. X. Dou
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