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Iron-free permanent magnet structures for traveling wave tubes

机译:用于行驶波管的无铁永磁结构

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The mass and bulk of the magnetic focusing structures of traveling wave tubes depend greatly on the details of their design. The authors describe several permanent magnet structures that use no iron pole-pieces and depend upon magnetically rigid permanent magnet materials in novel configurations to produce large longitudinal magnetic fields in the working space with a minimum of leakage to the structural exterior. These configurations are compared with regard to field-mass ratio, field uniformity, and flux leakage. The most mass-effective periodic structure with regard to on-axis field amplitude is the iron-free hybrid structure. For average cross-sectional field strength the triangular hybrid structure is the best choice. Both offer order of magnitude mass and bulk reductions compared to those of the conventional structures which use pole pieces. For short beam paths, high-field, nonperiodic applications, the magic sphere is a good choice. For long beam paths and very uniform fields of modest magnitude (up to 4 kOe), the permanent magnet solenoid should be considered.
机译:行进波管的磁聚焦结构的质量和大部分依赖于其设计的细节。作者描述了几种使用没有铁杆件的永磁体结构,并且依赖于新颖的配置中的磁性刚性永磁材料,以在工作空间中产生大的纵向磁场,其泄漏到结构外部。将这些配置与现场比率,现场均匀性和焊剂泄漏进行比较。关于轴上的轴场幅度的最具质量有效的周期性结构是无铁混合结构。对于平均横截面强度,三角形混合结构是最佳选择。与使用杆子件的传统结构相比,均提供幅度质量和散装顺序。对于短梁路径,高场,非星期性应用,魔术领域是一个不错的选择。对于长光束路径和适度幅度的非常均匀的字段(最多4只Koe)​​,应考虑永磁螺线管。

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