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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Innovative high-pressure laminate insulation for fusion magnets
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Innovative high-pressure laminate insulation for fusion magnets

机译:创新的融合磁体高压层压绝缘

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摘要

High-pressure laminate (HPL) composite materials, such as G-10, have been used for many years in both the electrical and magnet industry as insulation for demanding applications. Because of their relative ease of fabrication and ability to be inspected prior to magnet installation, these materials have remained an attractive insulation option for current magnet designers. However, composite insulation for use in many new Next Step Option (NSO) fusion devices must meet an increasingly demanding set of requirements, including cryogenic and elevated temperature performance while withstanding higher radiation levels. The lack of performance in high radiation environments by materials such as G-10 has led Composite Technology Development, Inc. (CTD) to develop a series of new, innovative HPL insulation systems that can meet the new fusion magnet challenges. Material development has focused on highly radiation-resistant resin systems, as well as lower radiation resistant, low cost alternatives. Prototype laminates have been fabricated and evaluated by a leading industrial partner to ensure their suitability for large-scale production. This paper will present several new insulation systems capable of being fabricated in the HPL process, provide processing characteristics, along with mechanical and electrical property data.
机译:高压层压板(HPL)复合材料(例如G-10)已在电气和磁体行业中用作绝缘材料,用于要求苛刻的应用。由于它们相对容易制造并且可以在安装磁体之前进行检查,因此这些材料对于当前的磁体设计人员仍然是有吸引力的绝缘选择。但是,用于许多新的下一步选项(NSO)融合设备的复合绝缘材料必须满足日益增长的要求,包括低温和高温性能,同时还要承受更高的辐射水平。 G-10等材料在高辐射环境中缺乏性能,导致Composite Technology Development,Inc.(CTD)开发了一系列新的,创新的HPL绝缘系统,可以应对新的聚变磁体挑战。材料开发的重点是高度抗辐射的树脂系统,以及抗辐射性较低,成本较低的替代产品。原型层压板已由领先的工业合作伙伴制造和评估,以确保其适合大规模生产。本文将介绍几种能够在HPL工艺中制造的新型绝缘系统,并提供加工特性以及机械和电气性能数据。

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