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1.
Superconductivity of Y-Ba-Cu-O system is studied in the composition 2:2:3 and 1:2:3 of Y:Ba:Cu. The effect of replacement of Y or Ba by divalent Sr and Ca, trivalent Ce and tetravalent Zr is studied. X-ray diffraction, SEM and TEM techniques are used for materials characterization. Superconducting transition temperatures are measured resistively. Rapid resistance drop observed above 230 K in Y-Ba-Sr-Cu-O and Y-Ba-Ca-Cu-O systems indicate the possible existence of superconductivity above 230 K. Substitution of Ce in place of Y is found to reduce the onset Tc from 95 K to 80 K. For the first time, replacement of Cu by Zr in Y-Ba-Cu-O has yielded the onset Tc of about 105 K.  相似文献   

2.
High-temperature superconductivity in the Y-Ba-Cu-O system has been discussed with special reference to the identification and characterization of the pure monophasic compound responsible for the superconductivity. The crucial role of oxygen has been examined in the light of the structure and thermogravimetric analysis.  相似文献   

3.
A top-seeded melt-growth (TSMG) process is widely used to fabricate single domain YBa2Cu3Oy (Y–Ba–Cu–O) bulk superconductors. Pores are often found in the TSMG-processed Y–Ba–Cu–O samples due to the oxygen gas evolution during the molten stage. Recently developed liquid infiltration growth (LIG) process is known to be effective in suppressing the pore evolution and in refining the size of Y2BaCuO5 (Y211) particles dispersed in YBa2Cu3Oy matrix. The LIG process utilizes the liquid (Ba3Cu5O8) infiltration into a pre- sintered Y211 contact and slow cooling through a peritectic temperature. In this study, we fabricated bulk Y–Ba–Cu–O superconductors by the LIG process combined with top-seeding with SmBa2Cu3Oy seed and confirmed that a single-domain bulk can be produced. Trapped field measurements however showed that some distortion in the field distribution was observed in the region near the seed crystal, which was attributed to Y211 density and its relatively large size.  相似文献   

4.
Microwave induced d.c. voltage due to inverse a.c. Josephson effect has been observed across bulk samples of Y-Ba-Cu-O and Y-Ba-Sr-Cu-O. The d.c. voltage is found to vary with microwave power, frequency and also with small external magnetic fields. Although the resistivity curve of Y-Ba-Cu-O does not show any appreciable resistance drop around 230 K, the microwave induced d.c. voltage due to the inverse a.c. Josephson effect has been found to exist upto 230 K. The resistivity behaviour of Y-Ba-Sr-Cu-O shows a sharp resistivity drop above 230 K. In this sample the inverse Josephson effect is found to exist upto +26 °C, indicating the presence of a phase having a superconducting onset around this temperature.  相似文献   

5.
Y–Ba–Cu–O bulk superconductors were fast joined using Ag-doped Y–Ba–Cu–O solder (metallic Ag powder additive). The joining process was relatively shorter (around 24 h) comparing with the traditional joining method. The microstructures and the superconducting properties of the joints were evaluated carefully. Microstructure analysis revealed that the crystal pattern in the joint was almost the same as that of the base material. This indicated that the bonding zone grew along the growth direction of the base material. The trapped-field distribution of the joined bulk was almost uniform and only single peak was found. This demonstrated that strong bonding was achieved in the joining process. The ratio of joined bulk’s levitation force to that of original base material was up to 93.5%.  相似文献   

6.
The intrinsic effects of nanoscopic MnO2 powders addition combined with Fe cation substitutions for copper sites on the microstructure and superconductive properties of YBa2Cu3O7?δ (Y123) melt-solidified bulks have been investigated. On the one hand, an increase in Y2BaCuO5 (Y211) particle pushing, leading to an inhomogeneous bulk microstructure, is caused by increasing MnO2 content due to increased net interfacial energy, Δσ0; and, on the other hand, an addition of MnO2 powders is effective in enhancing both the δTc-type and δl-type pinning. It also shows that the Fe addition helps to optimize the high magnetic field performance and Y211 particle distribution in textured pellets. Further, this experiment suggests that a combination of the element substitution and the nanoscopic particle is a beneficial way to optimize the microstructure and superconductive properties of single-domain bulk superconductors.  相似文献   

7.
Artificially stacked structures of [(infinite layer CaCuO2)k/(superconducting (Cu, C)Ba2CuOx:(Cu, C)-1201)l]m were fabricated on SrCuO2 buffer layer by means of sequential deposition of each block using pulsed laser deposition. Smooth and epitaxial growth all over the deposition cycles of (Cu, C)-1201 and CaCuO2 were confirmed by streak patterns of in situ RHEED. In comparison with (Cu, C)-1201 single layer films, the artificial stacking resulted in a rise of superconducting properties, Tc-onset and Tc(ρ=0) up to 95 K and 65 K, respectively.  相似文献   

8.
We studied the effects of binder addition on the mechanical properties of bulk Y–Ba–Cu–O superconductors. We prepared YBa2Cu3Oy, Y2BaCuO5 powders and polyvinyl alcohol mixed with water as a binder. These raw materials were mixed, and the binder-added powders were pressed into pellets. The hardness of the green compacts with binder is higher than that without the binder. However, the hardness of green compacts with 8% binder is the same as that with 4% binder. The maximum compression strength of the precursor with binder is higher than that without binder. Equally, the maximum strength of the green compacts with 8% binder is higher than that with 4% binder. The differential thermal analysis measurements showed that the exothermic reaction due to the decomposition of the organic binder started at 550 °C and gradually proceeded with further heating. After de-binder treatment, BaCO3 powders were produced on the green compacts. The green compacts were subjected to melt-processing. We also measured trapped magnetic fields of binder-added bulk Y–Ba–Cu–O superconductors with a Hall probe scanning device. Trapped magnetic field of the bulk added with 4% is higher than that of the binder-free bulk. Hence, Y–Ba–Cu–O bulk with suitable amount of binder shows good influence for mechanical strength and trapped magnetic field.  相似文献   

9.
We have studied the effects of the liquid binder (polyvinyl alcohol) addition (0–10 wt%) on the mechanical properties of the green compacts and also on the superconducting properties of bulk Y–Ba–Cu–O superconductors of 20 mm diameter produced with the top-seeded melt growth (TSMG) process. The mechanical properties of the green compacts with binder addition were characterized with the compression tests, which revealed that mechanical strength increased dramatically with increasing the amount of the binder addition. The binder-added green compacts were then subjected to the TSMG process and oxygen annealing. The trapped field measurements showed that we could produce single-grain bulk Y–Ba–Cu–O samples with binder additions up to 8 wt% without any deterioration in the superconducting properties.  相似文献   

10.
Attempts to prepare single grain SmBCO/Ag using NdBa2Cu3O7?δ (Nd123) cold seeding technique have been performed. As silver decreases the melting temperature of SmBa2Cu3O7?δ (Sm123) to approximately 1028 °C, it becomes possible to texture SmBCO/Ag samples with the Nd123 cold seeding technique, and very well textured mono-domain crystals with 15 mm on a side have been successfully obtained. However, the growth rate of SmBCO/Ag system is severely reduced compared with Ag free sample. A series of samples quenched at various lower limit temperatures of slow-cooling process were fabricated to investigate the single domain growth of SmBCO/Ag system. It is found that mono-domain growth exhibits a suppressed tendency within the slow-cooling temperature window considered, and then is hindered significantly by the spontaneous nucleation. The transversal slides of these samples show that large amount of entrapped gas did not escape from the samples during the dwell time at the maximum superheating temperature. During the slow-cooling process, the entrapped gas continued to move towards the edges of the samples, coalesced with each other and very large pores several millimeters in size were formed, which finally were released from the sample. The SEM analysis reveals that the coarsening of Sm2BaCuO5 (Sm211) precipitates has occurred during the growth of mono-domain. Large Sm211 cause decreased ability to supply samarium for the growth of Sm123 crystal, resulting in a gradual decrease in the growth rate.  相似文献   

11.
Crystalline defects on the nano-scale were successfully introduced into YBCO high-temperature superconductors (HTS) by ZrO2 nanometer particles addition in order to strongly pin the quantized vortices. Three batches of ZrO2 nano-particles with different particle size distributions were used. The corresponding mean nano-particle diameters are respectively, 287, 536 and 764 nm. Serving as artificial pinning centers (APC), non-superconducting nano-particles cause a remarkable enhancement of critical current density (Jc) at T = 77 K. This improvement has been shown to depend on the size of APC. The pinning strength of nano-particles inclusions has been found to be greater with wide size dispersed nano-particles. Our results indicate that pinning properties and vortex dynamics depend on the size of APCs. The introduction of APCs with controlled size is indispensable to achieve a high Jc.  相似文献   

12.
用Sn分别部分替代Y-Ba-Cu-O系超导体中的Y或Cu,制备了Y-Ba-Cu-Sn-O系超导体,实验结果表明,在相当大的替代范围(30%的 Y,40%的 Cu)内,超导体仍保持正交结构,其零电阻转变温度基本上稳定在90K左右.  相似文献   

13.
Since bulk Y–Ba–Cu–O superconductors are brittle ceramics, reinforcement of mechanical properties is important for practical applications. It has been reported that bulk Y–Ba–Cu–O can be reinforced with Al or Fe based alloy ring, in that compression force acts on bulk Y–Ba–Cu–O due to a difference in thermal expansion coefficients. However, the shrinkage of the metal ring was not so large, and therefore careful adjustment of the circumference of the bulk and the metal rings was necessary. In this study, we employed Fe–Mn–Si shape memory alloy rings to reinforce bulk Y–Ba–Cu–O. The advantage of the shape memory alloy is that the shrinkage can take place on heating, and furthermore, the alloy shrinks and compresses the bulk body on cooling. Bulk Y–Ba–Cu–O superconductor 22.8 mm in diameter was inserted in a Fe–Mn–Si ring 23.0 mm in inner diameter at room temperature. Beforehand, the Fe–Mn–Si ring was expanded by 12% strain at room temperature. Then the composite was heated to 673 K. At room temperature, the Fe–Mn–Si ring firmly gripped the bulk superconductor. We then measured trapped fields before and after the ring reinforcement, and found that the trapped field was improved through the treatment.  相似文献   

14.
The YBa2Cu3O7?x (Y123) textured bulk superconductors with various amounts of nanometer alumina particles were fabricated by a seeded infiltration and growth process. The addition of nanometer alumina was found to be effective for an improvement of the superconducting properties. The critical current density (Jc) values were increased twice in self field with a slight addition amount of nanometer alumina particles (maximum Jc at 0.01 wt.% alumina addition). The present work suggests that the use of insulating inclusions in the nanometer sub-scale can stabilize the flux-line lattice and greatly enhance the pinning capabilities of the infiltrated samples. No refinement of Y211 particles was observed with alumina addition. The Jc improvement by nanometer alumina inclusions is likely rendered to the insulating nano-pinning centers that have been successfully embedded into superconducting Y123 matrix. On the other hand, we examined the effect of the pinning centers size on the superconducting properties of infiltrated YBCO bulk samples. To this effect insulating nano-pinning centers with two different size distributions has been successfully incorporated within YBCO matrix of bulk superconductor by slightly doping with nano-particle alumina dispersions. Two alumina nano-particle dispersions with mean size diameters of about 20 nm and 130 nm were used. It was shown that the size of the pinning centers can affect considerably the Jc performances and the pinning mechanism.  相似文献   

15.
Introduction  TheinvestigationofdirectcrystallizationofYBa2Cu3O7superconductorbylaserirradiationYBaCuOmaterialofstoichiometrical123compositionisinterested.Thedirectlasersynthesisofhightemperaturesuperconductorhasspecificdominace[1].Itisthefinestru…  相似文献   

16.
A magnetic memory effect is observed in the absorption of electromagnetic waves of 20–70 MHz in YBa2Cu3O7at 77–300 K.  相似文献   

17.
18.
Abstract

We have studied the effects of fast neutron (E>0.1 MeV) irradiation at reactor (~ 360 K) and low (~ 20 K) temperatures on the superconducting properties of polycrystalline orthorhombic YBa2Cu3O7?y . Measurements were made on the superconducting critical temperature Tc , critical current Jc , Meissner effect and magnetic field dependence of Jc . The Tc drops by an irradiation at reactor temperature and Jc increases with increasing fluence. On the other hand with the irradiation at low temperature, Tc rises and Jc increases. Results of observation of Meissner effect and the magnetic field dependence of Jc are consistent with the behavior of Tc and Jc .  相似文献   

19.
20.
We report on measurements of the Seebeck-effect, the Nernst-effect, and the magnetoresistance in the mixed state of ac-axis oriented expitaxial film of Y–Ba–Cu–O. In contrast to conventional superconductors we find a large Seebeck-coefficientS, which is comparable in magnitude to the Nernst-effect. The broadening of the super-conducting transitions of magnetoresistance and Seebeck-effect are rather similar with respect to (1) the temperature dependence, (2) the dependence on the direction between magnetic field and crystal axis and (3) the dependence on the direction between magnetic field and driving forces. The large Seebeck-effect has to be attributed to dissipation due to normal quasiparticle-excitations, since the vortex-contribution to the Seebeck-effect is by far too small to account for the observed magnitude ofS. It is argued that such a quasiparticle contribution to the dissipation is large in the high-T c superconductors because of the small coherence lengths and thus the small vortex cores. Another possibility is that granularity leads to dissipation proportional to the normal state transport properties. The Seebeck-voltage depends on all dissipative processes other than vortex motion, whereas the Nernst-effect depends only on the vortex motion. Therefore by measurements of thermomagnetic effects the various dissipative properties may be separated.  相似文献   

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