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AC loss of Nb3Sn-based Rutherford cables with internally and externally added Cu

机译:内部和外部添加铜的Nb3Sn基Rutherford电缆的交流损耗

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摘要

Calorimetric measurements of AC loss and hence interstrand contact resistances (ICR) were measured on various stabilized (Cu-added) Nb3Sn Rutherford cables. The cable variations formed two sets; externally added Cu and internally added Cu (mixed strand cables). In the first set, Cu strips were diffusion bonded onto a pre-existing cable. Two distinct variants were made, in the first a Cu strip was added to the "upper" and "lower" cable surfaces and then diffusion bonded during a reaction heat treatment (RHT) of 180 h/650°C under a "cold-applied pressure" of 20 MPa. The second was formed by diffusion bonding a helically wrapped Cu strip along the cable. A control cable with no strip was included in this set. The second set consisted of a cable with approximately 1/3 of the strands replaced with pure Cu wires during the cable winding, and here also a control cable was fabricated for comparison. Calorimetric measurements of AC loss were made on all cables at 4.2 K in a transverse sinusoidal field of amplitude 400 mT, frequency 5 to 90 mHz, applied both parallel and perpendicular to the face of the cable. The loss data were interpreted in terms of an effective interstrand contact resistance, R⊥,eff.
机译:在各种稳定的(添加铜的)Nb3Sn卢瑟福电缆上测量交流损耗的量热测量,从而测量线间接触电阻(ICR)。电缆的变型形成了两组。外部添加的Cu和内部添加的Cu(混合绞合电缆)。在第一组中,将Cu条带扩散结合到预先存在的电缆上。制作了两个不同的变体,首先将铜带添加到“上”和“下”电缆表面,然后在“冷应用”下在180 h / 650°C的反应热处理(RHT)期间进行扩散粘结压力”为20 MPa。第二个是通过沿电缆扩散结合螺旋缠绕的铜带而形成的。此套件中包含无剥皮的控制电缆。第二组包括一根电缆,在电缆缠绕过程中,大约1/3股绞合线被纯铜线代替,这里还制作了控制电缆以进行比较。在4.2 K的所有电缆上,在垂直和垂直于电缆表面的振幅为400 mT,频率为5到90 mHz的横向正弦波场中,进行交流损耗的量热测量。损耗数据是根据有效的链间接触电阻R 1,eff来解释的。

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