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HIGH-VOLTAGE INSULATING SYSTEM AND HIGH-VOLTAGE INDUCTION DEVICE CONTAINING SUCH INSULATING SYSTEM

机译:包含这种绝缘系统的高压绝缘系统和高压感应装置

摘要

FIELD: electrical engineering.;SUBSTANCE: invention relates to electrical engineering. Insulating system (1-1) contains outermost inner pair (3) of barriers, arranged to cover largest part of windings structure (11) in axial direction (A) inside and outside relative to its turns curvature. At least one barrier of outermost inner pair (3) of barriers sets first flow path (3-1), enabling dielectric fluid (F) to flow, mainly, in first axial direction between windings structure (11) and, at least, one barrier, when insulating system (1-1) is in assembled state. First outer barrier (5) is arranged radially inside or outside relative to each barrier of outermost inner pair of barriers and sets second flow path (5-1) parallel to first flow path (3-1), enabling dielectric fluid (F) flow, mainly, in second axial direction, opposite to first axial direction. Insulating system (1-1) is arranged so, that dielectric medium (F) can flow from second flow path and enter first flow path (3-1) on one axial end section of one of barriers of outermost inner pair (3) of barriers, and at other axial end section of one of barriers of outermost inner pair (3) of barriers exit from corresponding first flow path (3-1). Each barrier of outermost inner pair (3) of barriers has continuous enveloping surface, extending between one axial end section and other axial end section of each barrier of outermost inner pair (3) of barriers.;EFFECT: technical result consists in improvement of insulating property on both ends of winding.;16 cl, 6 dwg
机译:技术领域本发明涉及电气工程。绝缘系统(1-1)包含最外面的一对内部屏障(3),这些屏障布置成相对于其匝曲率在轴向(A)的内部和外部覆盖绕组结构(11)的最大部分。屏障的最外面的内部对(3)中的至少一个屏障设置了第一流动路径(3-1),从而使介电流体(F)主要在第一轴向方向上在绕组结构(11)和至少一个之间流动。隔热系统(1-1)处于组装状态时的防护栏。第一外部屏障(5)相对于最外面的一对内部屏障中的每个屏障径向地布置在内部或外部,并且使第二流动路径(5-1)平行于第一流动路径(3-1),从而使介电流体(F)流动,主要是在第二轴向上,与第一轴向相反。布置绝缘系统(1-1),以使介电介质(F)可以从第二流路流动并进入第一流路(3-1),位于第二流路的最外层内部对(3)的一个壁垒中。隔板,并且在隔板的最外面的内部对(3)中的一个隔板的另一轴向端部从相应的第一流动路径(3-1)离开。最外侧内层对(3)的每个隔层均具有连续的包封表面,在最外侧内层对(3)的每个隔层的一个轴向端部与另一轴向端部之间延伸。效果:技术成果在于改善绝缘性能绕组两端的特性。; 16 cl,6 dwg

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