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A superconducting magnet mandrel with minimum symmetry laminations for proton therapy

机译:用于质子治疗的具有最小对称叠片的超导磁体心轴

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The size and weight of ion-beam cancer therapy gantries are frequently determined by a large aperture, curved, ninety degree, dipole magnet. The higher fields achievable with superconducting technology promise to greatly reduce the size and weight of this magnet and therefore also the gantry as a whole. This paper reports advances in the design of winding mandrels for curved, canted cosine-theta (CCT) magnets in the context of a preliminary magnet design for a proton gantry. The winding mandrel is integral to the CCT design and significantly affects the construction cost, stress management, winding feasibility, eddy current power losses, and field quality of the magnet A laminated mandrel design using a minimum symmetry in the winding path is introduced and its feasibility demonstrated by a rapid prototype model. Piecewise construction of the mandrel using this laminated approach allows for increased manufacturing techniques and material choices. Sectioning the mandrel also reduces eddy currents produced during field changes accommodating the scan of beam energies during treatment. This symmetry concept can also greatly reduce the computational resources needed for 3D finite element calculations. It is shown that the small region of symmetry forming the laminations combined with periodic boundary conditions can model the entire magnet geometry disregarding the ends.
机译:离子束癌症治疗门架的大小和重量通常由大孔径,弯曲的90度偶极磁体确定。超导技术可实现的更高磁场有望大大减小这种磁体的尺寸和重量,从而也大大减小龙门架的整体重量。本文报道了在质子门架的初步磁体设计背景下,弯曲的斜余弦θ(CCT)磁体的缠绕芯棒设计的进展。绕组心轴是CCT设计不可或缺的一部分,并且会显着影响建造成本,应力管理,绕组可行性,涡流功率损耗和磁体的磁场质量。介绍了一种在绕组路径中使用最小对称性的叠层心轴设计,并且其可行性通过快速原型模型进行演示。使用该层压方法的心轴的分段构造允许增加的制造技术和材料选择。切片心轴还可以减少在磁场变化过程中产生的涡流,从而适应治疗过程中电子束能量的扫描。这种对称性概念还可以大大减少3D有限元计算所需的计算资源。结果表明,形成薄片的对称性小区域与周期性边界条件相结合,可以模拟整个磁体几何形状,而无需考虑端部。

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