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Critical current retention of potted and unpotted REBCO Roebel cables under transverse pressure and thermal cycling

机译:在横向压力和热循环下临界电流保留盆栽和未被剥离的Rebco Roebel电缆

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摘要

Coated conductor Roebel cables are an effective way to create a high current density, fully transposed cable. However, despite REBCO tapes being robust against transverse stress, the Roebel architecture can concentrate transverse stress in non-trivial and random patterns depending on the exact arrangement of strands. If stands are embedded in a solid media which consolidates all strands then a transverse stress concentration will not occur. We tested this idea through mechanical and thermo-cycling tests on 5 strand Roebel cables. For non-impregnated cable irreversible degradation in critical currents is initiated at transverse pressures in a range of 4-34 MPa. Optical examination of the cables shows stress concentration patterns beyond those predicted by thickness variations. For cables impregnated with epoxy filled with SiO2 nanopowder, which has a similar thermal expansion coefficient to the metallic substrate of the strands, the irreversibility point is increased above our highest experimentally available pressure of 270 MPa. Thermo-cycling experiments confirmed a closely matched thermal expansion coefficient between the embedding media and metallic substrate is critical to avoid wire failures.
机译:涂层导体圈电缆是创建高电流密度,完全转换电缆的有效方法。然而,尽管REBCO磁带牢固地抵抗横向应力,但罗伊贝尔架构可以根据股线的确切布置来集中非微型和随机图案的横向应力。如果站立嵌入固体介质中,则不会发生横向应力浓度。我们通过5股绳索电缆的机械和热循环试验测试了这个想法。对于非浸渍的电缆,在4-34MPa的范围内以横向压力引发临界电流的不可逆降解。电缆的光学检查显示超出厚度变化预测的应力集中模式。对于填充有SiO2纳米粉末的环氧树脂的电缆,其具有与股线的金属基板类似的热膨胀系数,不可逆点高于我们的最高实验可用压力为270MPa。热循环实验证实了嵌入介质和金属基材之间的热膨胀系数紧密匹配,这对于避免导线故障至关重要。

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