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Bending strain tolerance of MgB2 superconducting wires

机译:MgB2超导线材的弯曲应变容限

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This work describes the strain tolerance of MgB2 superconductors subjected to variable bending stresses. Bending of MgB2 wire was done at room temperature in different modes: (i) direct bending of straight annealed samples to variable diameters and by (ii) indirect bending by straightening of bent and annealed samples. I-c-bending strain characteristics of samples made by in situ PIT and by the internal magnesium diffusion (IMD) process were measured at 4.2 K. The results show a good agreement between the direct and indirect bending mode, which allows easier estimation of limits important for the winding process of MgB2 superconductors with brittle filaments. A comparison of MgB2 wires made by in situ PIT and IMD processes showed improved strain tolerance for IMD due to better grain connectivity the low annealing temperature, which does not appear to reduce the mechanical strength of sheath material.
机译:这项工作描述了MgB2超导体在可变弯曲应力下的应变容差。 MgB2焊丝的弯曲是在室温下以不同的方式完成的:(i)将直退火的样品直接弯曲至可变直径,以及(ii)通过将弯曲和退火后的样品矫直进行间接弯曲。通过原位PIT和内部镁扩散(IMD)工艺制成的样品的Ic弯曲应变特性在4.2 K下进行了测量。结果表明,直接弯曲模式和间接弯曲模式之间具有良好的一致性,从而可以更轻松地估算对于带有细丝的MgB2超导体的缠绕过程。通过原位PIT和IMD工艺制造的MgB2线的比较显示,由于更好的晶粒连接性和较低的退火温度,IMD的应变耐受性得到了改善,这似乎并没有降低护套材料的机械强度。

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