首页> 外文会议>International cryogenic materials conference;ICMC;Cryogenic engineering conference;CEC >AC LOSS AND CONTACT RESISTANCE IN Nb_3Sn RUTHERFORD CABLES WITH AND WITHOUT A STAINLESS STEEL CORE
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AC LOSS AND CONTACT RESISTANCE IN Nb_3Sn RUTHERFORD CABLES WITH AND WITHOUT A STAINLESS STEEL CORE

机译:带和不带不锈钢芯的Nb_3Sn拉特福德电缆的交流损耗和接触电阻

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Calorimetric measurements of AC loss and hence interstrand contact resistance (IRC), were measured on two types of Rutherford cable wound with unplated Nb_3Sn strand. One of the cable types was furnished with a thin core of AISI 316L stainless steel and the other was left uncored. The cables were subjected to pressures of 5, 10, and 20 MPa, respectively, during reaction heat treatment (RHT), and to 100 MPa during measurement. AC loss was measured at 4.2 K in sinusoidal fields of amplitudes 200 and 400 mT at frequencies of 5 to 90 mHz both with and without the presence of DC bias fields of up to 1 T. The transverse fields were applied both parallel and perpendicular to the face of the cable. For the cored cable IRC was relatively high, typically 70 μΩ at 1 T. On the other hand for the uncored cable at 1 T, IRC was more than an order of magnitude lower; also for the uncored cable IRC was found to decrease still further with decreasing bias field. Since the strand contained a Ta-protected Nb diffusion barrier it was deduced that the application of the bias field altered the way in which eddy currents flowed within the strand, in one case (0 T) via the Nb barrier and the Cu sheath, and in the other (1 T) via the A15 filaments, the bronze, and the sheath, which led to a higher IRC. It is concluded that AC loss in a Nb_3Sn-strand Rutherford cable can be significantly moderated both by paying attention to strand design as well as through the insertion of a core.
机译:对AC损耗的量热测量和意识形式的接触电阻(IRC)进行了两种类型的Rutherford电缆卷绕,用未镀NB_3SN股线测量。其中一条电​​缆类型配备了AISI 316L不锈钢的薄芯,另一个薄薄的核心未采用。在反应热处理(RHT)期间,分别在5,10和20MPa的压力下进行5,10和20MPa,并在测量期间得到100MPa。在4.2 k下测量AC损耗,在振幅200的正弦场和400mT的频率下,在5至90MHz的频率下,并且没有直流偏置场的直流偏置场,横向场均由平行和垂直于电缆的面孔。对于芯电缆IRC相对较高,通常为70μΩ,另一方面,对于未计算的电缆,IRC位于较小的数量级;对于未采用的电缆IRC,发现仍然通过减小偏置场进一步降低。由于股线包含了受到TA保护的Nb扩散屏障,因此推导出偏置场的应用改变了通过Nb屏障和Cu护套在一个壳体(0 t)内流动的涡流流动的方式。在另一(1吨)通过A15长丝,青铜和护套,其导致更高的IRC。得出结论,通过将注意力设计和芯的插入,可以显着地调节NB_3SN股线Rutherford电缆中的交流损失。

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