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Modeling effects of gas bubbles on the mechanical behaviors of Ag/Bi-2212 round wires using a double cantilever beam bridge model

机译:使用双悬臂梁桥模型模拟气泡对Ag / Bi-2212圆线力学行为的影响

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Due to the larger current-carrying property, Bi2Sr2CaCu2Ox, (Bi2212) superconductors have a great potential application in high field magnet. Bi2212 superconducting material can be fabricated as an isotropic round wire. However, there is 30% void space in the wire, such as gas bubbles. The void space has a larger influence on the property of the wire. In this paper, we will study the effect of gas bubble on the fracture behavior. Based on the double cantilever beam model and critical state theory, the mechanical behavior of Bi2212 wire is studied for decreasing field. Two different damage mechanisms are discussed using the strain energy release rate and strain of bridge. The results show that the large gas bubble can increase the strain of bridge. The central filaments with gas bubble are easier to be damaged than the edge filaments with gas bubble. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于Bi2Sr2CaCu2Ox(Bi2212)超导体具有较大的载流特性,因此在高磁场磁体中具有巨大的应用潜力。 Bi2212超导材料可以制造为各向同性的圆线。但是,焊丝中有30%的空隙,例如气泡。空隙对电线的性能影响更大。在本文中,我们将研究气泡对断裂行为的影响。基于双悬臂梁模型和临界状态理论,研究了Bi2212线材的机械性能,以减小磁场。利用应变能释放速率和桥梁应变讨论了两种不同的损伤机理。结果表明,较大的气泡会增加桥梁的应变。带有气泡的中央细丝比带有气泡的边缘细丝更容易被损坏。 (C)2016 Elsevier Ltd.保留所有权利。

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