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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Development and Fabrication of ${rm Nb}_{3}{rm Sn}$ Rutherford Cable for the 11 T DS Dipole Demonstrator Model
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Development and Fabrication of ${rm Nb}_{3}{rm Sn}$ Rutherford Cable for the 11 T DS Dipole Demonstrator Model

机译:用于11 T DS偶极子演示器模型的$ {rm Nb} _ {3} {rm Sn} $ Rutherford电缆的开发和制造

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Fermilab and CERN started the development of 11 T ${rm Nb}_{3}{rm Sn}$ dipoles 11 m long to replace a few regular LHC NbTi dipoles and free space for cold collimators in LHC dispersion suppression (DS) areas. An important step in the design of these magnets is the development of the high aspect ratio ${rm Nb}_{3}{rm Sn}$ cable to achieve the nominal field of 11 T at the nominal LHC operating current of 11.85 kA with 20% margin. Keystoned cables 14.7 mm wide with and without a stainless steel core were made out of hard Cu wires and ${rm Nb}_{3}{rm Sn}$ strand of 0.7 mm nominal diameter. The cable optimization process was aimed at achieving both mechanical stability and minimal damage to the internal architecture of the Restacked-Rod Process (RRP) ${rm Nb}_{3}{rm Sn}$ strands with 127 restack design to be used in the magnet short models. Each cable was characterized electrically for transport properties degradation at high fields, for flux jump stability at low fields, and metallographically for internal damage.
机译:Fermilab和CERN开始开发11 m长的11 T $ {rm Nb} _ {3} {rm Sn} $偶极子,以替换一些常规的LHC NbTi偶极子和LHC弥散抑制(DS)区域中用于冷准直器的自由空间。这些磁体设计中的重要一步是开发高长宽比$ {rm Nb} _ {3} {rm Sn} $电缆,以在11.85 kA的额定LHC工作电流下实现11 T的额定磁场,保证金20%。 14.7毫米宽(带或不带不锈钢芯)的梯形电缆由硬铜丝和标称直径为0.7毫米的{rm Nb} _ {3} {rm Sn} $绞合线制成。电缆优化过程旨在实现机械稳定性,并最大限度地减少对重叠棒工艺(RRP)$ {rm Nb} _ {3} {rm Sn} $绞合线的内部结构的损坏,该绞合线将用于127个重叠设计磁铁短款。每根电缆的电气特性均表现为在高场下传输性能下降,在低场下通量跳变稳定性以及金相内部损坏。

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