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首页> 外文期刊>Superconductor Science & Technology >Proposal of an effective mechanical reinforcement structure for a REBaCuO disk bulk pair by full metal encapsulation to achieve a higher trapped field over 20T
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Proposal of an effective mechanical reinforcement structure for a REBaCuO disk bulk pair by full metal encapsulation to achieve a higher trapped field over 20T

机译:通过全金属封装的Rebacuo磁盘散装对的有效机械加固结构的提议,以实现20T的更高陷阱场

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摘要

In this paper, we propose an effective mechanical reinforcement of a REBaCuO superconducting disk bulk pair to avoid mechanical fracture due to a large hoop stress during field-cooled magnetization (FCM), and confirm the reinforcement effect using numerical simulation. In this reinforcement, the disk bulk is fully encapsulated by an outer metal ring with upper and lower plates made by stainless steel (SUS316). The trapped field, B-z in the bulk pair with various critical current densities, J(c), was numerically simulated during FCM from B-app = 22 T, and the hoop stress, sigma(theta), was also estimated during FCM after cooling from 300 to 20 K. As a result, the trapped field of over 20 T can be achieved in the gap center of the bulk pair. A large compressive hoop stress, sigma(cool)(theta) due to the difference of thermal expansion coefficients between the bulk and stainless steel, was effectively applied to the whole bulk during the cooling process, compared to that for the conventional reinforcement using only a SUS316 outer ring. The electromagnetic hoop stress, sigma(FCM)(theta) during FCM was also reduced, and the maximum of the total hoop stress, sigma(total)(theta) (=sigma(FCM)(theta) + sigma(cool)(theta)) can be reduced below the fracture strength of the REBaCuO bulk. The possibility to achieve a higher trapped field over 20 T is suggested in the gap of the REBaCuO bulk pair without mechanical fracture.
机译:在本文中,我们提出了一种有效的机械加固了REBACUO超导盘体对,以避免由于在现场冷却的磁化(FCM)期间具有大的箍应力而导致的机械断裂,并使用数值模拟确认增强效果。在该加强件中,圆盘块通过具有由不锈钢制成的上和下板的外金属环完全封装(SUS316)。捕获的字段,与各种临界电流密度的散装对的BZ,在来自B-APP = 22t的FCM期间数量模拟,并且在冷却后,在FCM期间还估计了Hoop应力Sigma(θ)。结果,从300到20 k。结果,在散装对的间隙中心中可以实现超过20t的被捕获的场。在冷却过程中有效地应用于散装和不锈钢之间的热膨胀系数的差异而导致的大型压缩箍应力,Sigma(凉爽)(θ),而是仅使用常规增强剂的整体块SUS316外圈。 FCM期间的电磁环应力,Sigma(FCM)(θ)也降低,并且总箍应激的最大值,Sigma(总)(Theta)(= Sigma(FCM)(THETA)+ Sigma(COON)(THETA ))可以减少低于Rebacuo散装的裂缝强度。在没有机械骨折的Rebacuo散装对的间隙中建议实现超过20吨的更高截图的截图的可能性。

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