首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A second phase of a high field dipole technology development has been tested. A Nb3Sn block-coil model dipole was fabricated, using magnetic mirror geometry and wind/react coil technology. The primary objective of this phase was to make a firs
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A second phase of a high field dipole technology development has been tested. A Nb3Sn block-coil model dipole was fabricated, using magnetic mirror geometry and wind/react coil technology. The primary objective of this phase was to make a firs

机译:高场偶极技术开发的第二阶段已经过测试。使用磁镜几何形状和风/电抗线圈技术制造了Nb3Sn块线圈模型偶极子。这个阶段的主要目标是制造

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A second phase of a high field dipole technology development has been tested. A Nb3Sn block-coil model dipole was fabricated, using magnetic mirror geometry and wind/react coil technology. The primary objective of this phase was to make a first experimental test of the stress-management strategy pioneered at Texas A&M. In this strategy a high-strength support matrix is integrated with the windings to intercept Lorentz stress from the inner winding so that it does not accumulate in the outer winding. The magnet attained a field that was consistent with short sample limit on the first quench; there was no training. The decoupling of Lorentz stress between inner and outer windings was validated. In ramp rate studies the magnet exhibited a remarkable robustness in rapid ramping operation. It reached 85% of short sample(ss) current even while ramping 2-3 T/s. This robustness is attributed to the orientation of the Rutherford cables parallel to the field in the windings, instead of the transverse orientation that characterizes common dipole designs. Test results are presented and the next development phase plans are discussed.
机译:高场偶极技术开发的第二阶段已经过测试。使用磁镜几何形状和风/电抗线圈技术制造了Nb3Sn块线圈模型偶极子。此阶段的主要目的是对德克萨斯A&M率先提出的压力管理策略进行首次实验测试。在这种策略中,高强度支撑矩阵与绕组集成在一起,以拦截来自内部绕组的洛伦兹应力,从而使它不会累积在外部绕组中。磁铁达到的磁场与第一次淬火时的短样品极限一致。没有训练。验证了内部和外部绕组之间的洛仑兹应力解耦。在斜坡速率研究中,磁体在快速斜坡运行中表现出了出色的耐用性。即使以2-3 T / s的速度上升,也达到了短样品电流的85%。这种鲁棒性归因于卢瑟福电缆平行于绕组中磁场的方向,而不是表征普通偶极设计的横向方向。给出了测试结果,并讨论了下一个开发阶段计划。

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