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排序方式: 共有131条查询结果,搜索用时 15 毫秒
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Oxana V. Kharissova Evgeny M. Kopnin Victor V. Maltsev Nikolai I. Leonyuk Luis Manuel León-Rossano Ilya Yu. Pinus 《固体与材料科学评论》2014,39(4):253-276
This article is focused on principal Bi-containing superconductors. Recent results obtained on Bi-2212, Bi-2223, and related composite materials are discussed. Special attention is paid to various advanced methods of synthesis. Optimization of the superconducting properties by the chemical modifications is considered in terms of most important practical applications. 相似文献
3.
提高临界电流密度(Jc)对促进Bi-2223/Ag高温超导带材的应用有着重要意义.在常压热处理条件下所制备的带材中存在大量的裂纹、孔洞和第二相颗粒等,这些因素都会对带材的超导连接性能产生破坏作用.我们成功建立了一套可用氧气氛的热等静压设备,工作气压和温度可同时达到15MPa和850°C.通过引入裂纹愈合热处理过程,我们成功对带材进行了高压热处理,所得样品中第二相颗粒和裂纹数量大幅度降低,77K、自场下的临界电流相比常压热处理样品提高了20%左右. 相似文献
4.
Development of p-type transparent conducting thin films is tireless due to the trade-off issue between optical transparency and conductivity. The rarely concerned low normal state resistance makes Bi-based superconducting cuprates the potential hole-type transparent conductors, which have been realized in Bi2Sr2CaCu2Oy thin films. In this study, epitaxial superconducting Bi2Sr2CuOy and Bi2Sr1.8Nd0.2CuOy thin films with superior normal state conductivity are proposed as p-type transparent conductors. It is found that the Bi2Sr1.8Nd0.2CuOy thin film with thickness 15 nm shows an average visible transmittance of 65% and room-temperature sheet resistance of 650 Ω/sq. The results further demonstrate that Bi-based cuprate superconductors can be regarded as potential p-type transparent conductors for future optoelectronic applications. 相似文献
5.
本文阐述了用于高温超导磁体电磁结构优化设计的一种新方法,与一般优化方法不同之处在于其不用定义磁体的初始结构形状,采用该方法可以得到满足规格和性能要求的较佳磁体结构.通过此方法优化设计了一个中心磁场为3T的Bi系高温超导磁体,其设计结果与满足同样要求且经过优化的单螺管高温超导磁体的设计结果作了对比,由结果表明该方法具有很好的优化效果. 相似文献
6.
D. E. Daney M. P. Maley H. J. Boenig J. O. Willis J. Y. Coulter L. Gherardi G. Coletta 《Physica C: Superconductivity and its Applications》1998,310(1-4):236-239
We report single-phase AC loss measurements on 8-, 4-, and 3-layer, multi-strand, HTS prototype conductors for power transmission lines. We use both calorimetric and electrical techniques. The agreement between the two techniques suggests that the interlayer current distribution in 1-m long conductors are representative of those in long conductors. The losses for the 8- and 4-layer conductors are in rough agreement, with the 8-layer losses being somewhat lower. The 3-layer conductor losses are substantially higher — probably due to unbalanced azimuthal currents for this configuration. 相似文献
7.
Fedor Gmry Daniela Bettinelli Laura Gherardi Giovanni Crotti 《Physica C: Superconductivity and its Applications》1998,310(1-4):48-51
Magnetic nature of the losses in superconducting wire carrying AC current implies that it should be possible to determine these losses in a contactless way. Ribbon-like samples are quite favorable for such an experiment, because a notable portion of magnetic flux related to losses ‘escapes' the sample volume and can be detected by an appropriate pick-up coil. In this case, a model describing the AC current penetration into the tape, based, e.g., on the critical state model, allows one to derive the losses from the pick-up coil signal. Because this signal is proportional to the number of coil turns, extension of the accessible range of measured voltages (and losses) can be achieved. We demonstrate the data obtained on a 1 cm long portion of a low-loss multifilamentary tape carrying AC current with frequency 35 Hz. The pick-up coil technique allowed us to reach loss level more than one order below the experimental limit for direct measurements. 相似文献
8.
Laura Gherardi Daniela Bettinelli Sergio Spreafico Fedor G m ry 《Physica C: Superconductivity and its Applications》1998,310(1-4):52-56
Transport AC losses measured in self-field conditions on multifilamentary Bi-2223 tapes are often found to be lower than those calculated within the framework of the critical state model for a bulk wire with elliptical cross section, though generally higher than predicted for a strip. This effect is sometimes ascribed to the non-ideal geometry of the tapes, which does not exactly reproduce either shape. Here we propose an alternative explanation assuming that the critical current density of superconducting material depends on magnetic field. In practice, we analyzed the AC loss curve and deduced different Ic values for the individual data points, using the standard Norris equation for elliptical conductor. This gives the relation between ‘calculated' Ic and the self-field associated to AC transport current, which can be regarded as an alternative way to qualify the dependence of Jc on magnetic field. Important is that this procedure covers the range of fields below the self-field at Ic where the measurement in background DC field can not be used to determine Jc(B). 相似文献
9.
W. Goldacker M. Quilitz B. Obst H. Eckelmann 《Physica C: Superconductivity and its Applications》1998,310(1-4):182-186
Hysteresis losses and coupling losses, a main component of the AC losses in Bi(2223) tapes, can effectively be reduced by enhancing the resistivity of the matrix material between the filaments and applying a filament twist. Since through alloying the sheath, as using AgAu(8 wt.%), the resistivity can only be raised by a factor <10 (77 K), a new conductor configuration with a quite novel composite matrix having resistive SrCO3 barriers inside the Ag matrix between the filaments was developed. These new barriers, a cheap and commercial material, withstand the tape annealing, do not react with the superconductor, sinter dense and have a good bonding to Ag. Applying two different preparation techniques for 19 filament prototype tapes, critical current densities up to 20.7 kA cm−2 were achieved. We report on tape preparation, the effect on the phase texture and the superconducting properties of such barrier tapes. 相似文献
10.
Albino Polcari Marc Dhall Frank Marti Grgoire Witz Yibing Huang Ren Flükiger 《Physica C: Superconductivity and its Applications》1998,310(1-4):177-181
AC losses in multifilamentary tapes depend on various parameters. Among them, geometrical factors such as overall tape width and thickness as well as the precise arrangement of the filaments are expected to have an important influence. Several theoretical models describe this dependency. In order to study these geometrical effects experimentally, we prepared a series of Bi(2223)/Ag tapes with gradually changing filament arrangements and tape aspect ratio, and characterised them by AC transport and magnetic measurements. The results are compared to model predictions. 相似文献