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Design of an ultra-thin, radiation thickness minimized, metallic cryostat for a 2T/4m free bore detector solenoid

机译:设计超薄,辐射厚度最小化,金属低温恒温器为2T / 4M自由孔探测器电磁阀

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A 2T, 6m long, 4m free bore superconducting solenoid is being designed for the so-called IDEA detector for probing electron-positron collisions at the proposed Future Circular Collider at CEKN. In order to drive the cost of the magnet down, the solenoid is positioned around the inner tracking detector for which presence of the magnetic field is mandatory. This approach reduces the dimensions of the magnet roughly to half bore size, and therefore significantly the cost. However, the new position adds a new and demanding requirement to the solenoid and cryostat designs as they need to be as thin and radiation transparent as possible. A full mechanical analysis of the cryostat including all the mechanical loads is performed to find the minimum effective wall thicknesses while respecting structural design norms. We will present a novel design of a cryostat using alternative approaches such as corrugated walls and honeycomb-like structures and compare to a classical solution of using solid uniform plate.
机译:2T,6M长,4M自由孔超导螺线管正在设计用于所谓的思想探测器,用于在Cekn的建议未来圆形撞机中探测电子正电子碰撞。为了向下驱动磁体的成本,螺线管位于内部跟踪检测器周围,该磁场的存在是强制性的。该方法大致减少了磁体的尺寸,大致为半孔尺寸,因此成本显着。然而,新位置为电磁阀和低温恒温器设计增加了新的和苛刻的要求,因为它们需要尽可能薄的和辐射透明。对包括所有机械载荷的冷冻罩的完全机械分析是在尊重结构设计规范的同时找到最小有效壁厚。我们将使用诸如瓦楞墙和蜂窝状结构的替代方法来提出一个低温恒温器设计,并与使用固体均匀板的经典溶液进行比较。

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