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Vacuum Pressure Impregnation Process in Superconducting Coils: Best Practice

机译:超导线圈中的真空压力浸渍工艺:最佳实践

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The technology associated with the design and construction of superconducting magnets has evolved dramatically over the last three decades leading to an overall increase in their complexity. Their use has moved from particle physics through medical applications such as MRI to the very large magnets demanded by fusion technology, where the optimal quality of the HV insulation is a critical step in achieving the design performance. The Vacuum Pressure Impregnation (VPI) technique—a particularly refined case of the more widely known Vacuum Assisted Resin Transfer Mould (VARTM)—has become the most common process for the consolidating electrical insulation of large superconducting magnets. To achieve success with the VPI process demands that detailed attention is paid to many steps, namely: coil drying, resin degassing and coil impregnation.
机译:在过去的三十年中,与超导磁体的设计和构造相关的技术得到了飞速发展,导致其复杂性总体上提高了。它们的使用已经从粒子物理学一直到MRI等医学应用,再到融合技术所要求的超大磁体,在该技术中,HV绝缘的最佳质量是实现设计性能的关键步骤。真空压力浸渍(VPI)技术(一种更广为人知的真空辅助树脂传递模具(VARTM)的特别改进的情况)已成为巩固大型超导磁体电绝缘的最常用方法。为了成功使用VPI工艺,需要特别注意许多步骤,即:卷材干燥,树脂脱气和卷材浸渍。

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