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Collaborative Simulation and Testing of the Superconducting Dipole Prototype Magnet for the FAIR Project

机译:FAIR项目的超导偶极原型磁体的协同仿真和测试

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The superconducting dipole prototype magnet of the collector ring for the Facility for Antiproton and Ion Research (FAIR) is an international cooperation project. The collaborative simulation and testing of the developed prototype magnet is presented in this paper. To evaluate the mechanical strength of the coil case during quench, a 3-dimensional (3D) electromagnetic (EM) model was developed based on the solid97 magnetic vector element in the ANSYS commercial software, which includes the air region, coil and yoke. EM analysis was carried out with a peak operating current at 278 A. Then, the solid97 element was transferred into the solid185 element, the coupled analysis was switched from electromagnetic to structural, and the finite element model for the coil case and glass-fiber reinforced composite (G10) spacers was established by the ANSYS Parametric Design Language based on the 3D model from the CATIA V5 software. However, to simulate the friction characteristics inside the coil case, the conta173 surface-to-surface contact element was established. The results for the coil case and G10 spacers show that they are safe and have sufficient strength, on the basis of testing in discharge and quench scenarios.
机译:反质子和离子研究设施(FAIR)的集电环的超导偶极原型磁体是一项国际合作项目。本文介绍了已开发的原型磁体的协同仿真和测试。为了评估淬火过程中线圈壳体的机械强度,基于ANSYS商业软件中的solid97磁矢量元素,开发了一个三维(3D)电磁(EM)模型,该模型包括空气区域,线圈和磁轭。在278 A的峰值工作电流下进行EM分析。然后,将solid97元素转换为solid185元素,将耦合分析从电磁转换为结构,并建立了线圈盒和玻璃纤维增​​强材料的有限元模型基于CATIA V5软件的3D模型,通过ANSYS参数化设计语言建立了复合(G10)垫片。但是,为了模拟线圈壳体内部的摩擦特性,建立了conta173的表面对表面接触元件。根据在放电和淬火情况下的测试,线圈盒和G10垫片的结果表明它们是安全的并且具有足够的强度。

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