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Design, development and fabrication for BESIII superconducting muon detector solenoid

机译:BESIII超导μ子探测器螺线管的设计,开发和制造

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The BESIII thin superconducting solenoid will generate 1.0 T central field with a field uniformity of 5% within the drift chamber. The superconducting coil winding has an ID of 2962 mm, an OD of 3002 mm and a length of 3550 mm. The overall magnet cryostat has an I.D. of 2750 mm (warm bore), an O.D. of 3390 mm and a length of 3910 mm. Rectangular Aluminum Stabilized Nb-Ti/Cu Superconductor, 3.7 mm /spl times/ 20 mm, is employed to wind the one-layer coil inside a hoop-force support cylinder. The winding is indirectly cooled by forced-flow two-phase liquid helium. The thermal shield is also indirectly cooled by two-phase liquid nitrogen circulating in a tracing tube. The 4.5 K coil together with its support cylinder weighs 3583 kg. It is supported by twenty-four radial supports and twenty-four axial supports. The supports are designed for electromagnetic de-centering forces of 63.7 kN radial and 122.3 kN axial in addition to a 3 g axial and radial acceleration load. The 80 K thermal shields are supported by eight cold mass supports against 3 g load. The detailed magnet and cryostat design and the design of cold mass support and the coil fabrication process will be discussed.
机译:BESIII薄型超导螺线管将在漂移室内产生1.0 T的中心场,场均匀度为5%。超导线圈绕组的内径为2962毫米,外径为3002毫米,长度为3550毫米。整体磁体低温恒温器具有I.D.外径2750毫米(暖孔) 3390毫米的长度和3910毫米的长度。矩形铝稳定Nb-Ti / Cu超导体(3.7毫米/ spl次/ 20毫米)用于将单层线圈缠绕在环向力支撑圆柱体内。绕组通过强制流动的两相液氦间接冷却。隔热屏还通过在示踪管中循环的两相液氮间接冷却。 4.5 K线圈及其支撑筒重3583千克。它由二十四个径向支撑和二十四个轴向支撑支撑。除了3 g的轴向和径向加速负载外,这些支撑件还设计用于承受63.7 kN径向和122.3 kN轴向电磁偏心力。 80 K隔热板由8个冷重支架支撑,承受3 g负载。将讨论详细的磁体和低温恒温器设计以及冷质量支撑的设计以及线圈的制造过程。

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