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A novel energy efficient SFCL with a silver-free contact switchgear for application in electricity and transportation

机译:具有无银触点开关装置的新型节能SFCL,用于电力和运输

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摘要

A novel concept of a switchgear based on the combination of an AC superconducting fault current limiter (SFCL) and silver-free electrical contacts is proposed. In the combined system SFCL+switchgear, it is possible to employ cheaper materials for electrical contacts. The SFCL device includes inductive coupling of high-Tc superconducting active elements, in the form of layered flat rings of a Bi1.8Pb0.3Sr1.9Ca2Cu3Ox compound, prepared by a solid-state reaction technique. Experimental results obtained by testing a prototype SFCL in short circuit regime at AC 50 Hz under quasistationary conditions are presented. The use of the superconducting rings enables a wide range variation of the dissipated power. Copper/diamond composites, prepared by explosive synthesis, are employed as contact materials for the switchgear. The addition of particles (<1 μm) leads to improved mechanical characteristics and increased stability of the composite materials. The combination of switchgear with silver-free electrical contacts and SFCL allows a short circuit regime to withstand the switchgear and provides increased system reliability.
机译:提出了一种基于交流超导故障限流器(SFCL)和无银电触点的开关柜的新颖概念。在组合系统SFCL +开关柜中,可以使用更便宜的材料制成电触点。 SFCL器件包括通过固态反应技术制备的Bi1.8Pb0.3Sr1.9Ca2Cu3Ox化合物的层状扁平环形式的高Tc超导有源元件的电感耦合。给出了通过在准静态条件下以交流50 Hz在短路状态下测试原型SFCL所获得的实验结果。超导环的使用使得耗散功率的变化范围很广。通过爆炸合成制备的铜/金刚石复合材料用作开关设备的接触材料。颗粒(<1μm)的添加可改善机械性能并提高复合材料的稳定性。带有无银电触点的开关设备和SFCL的组合允许短路状态承受开关设备,并提高了系统的可靠性。

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