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Fracture behavior of filament in Nb3Sn strands with crack-bridging model

机译:Nb3Sn钢绞线中细丝的断裂行为

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摘要

The Nb3Sn strands which have high critical field are used in cable-in-conduit conductors (CICCs). The superconducting strands are twisted multistage and experience complex thermal and electromagnetic loadings. Due to their brittleness, the cracking of the Nb3Sn filaments will occur under mechanical loading. In this paper, based on the linear elastic fracture theory, we study the effects of tension loading on the fracture behavior of central crack firstly. The strain energy release rates for different twist pitches and cabling stages are presented. As the triplet is subjected to the uniaxial strain, the cracking probability will increase with the twist pitch. The crack number increases with the applied strain, and wider filament or bronze can lead to smaller crack number under the same applied strain. In addition, multistage cabling has better mechanical stability. Next, the two collinear crack problem is considered. The variations of microcrack number show that the wider bronze can provide more resistance for the propagating of the large cracks. We can conclude that the bronze plays an important role in improving the stability and strength. (C) 2015 Elsevier B.V. All rights reserved.
机译:具有高临界场的Nb3Sn绞线被用于导线管内导体(CICC)。超导绞合线是多级绞合的,承受着复杂的热和电磁载荷。由于其脆性,Nb3Sn细丝在机械载荷下会破裂。本文基于线性弹性断裂理论,首先研究了拉伸载荷对中心裂纹断裂行为的影响。给出了不同捻距和布线阶段的应变能释放率。当三重态受到单轴应变时,开裂概率将随着扭曲间距而增加。裂纹数随施加的应变而增加,在相同的施加应变下,较宽的长丝或青铜会导致较小的裂纹数。此外,多级布线具有更好的机械稳定性。接下来,考虑两个共线裂纹问题。微裂纹数的变化表明,较宽的青铜可以为更大的裂纹扩展提供更大的阻力。我们可以得出结论,青铜在提高稳定性和强度方面起着重要作用。 (C)2015 Elsevier B.V.保留所有权利。

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