Magnetic pole for magnetic levitation vehicles
First Claim
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1. A magnetic pole for magnetic levitation vehicles, comprising:
- a core (1) having a center axis (5); and
a winding (10, 35, 36) applied on said core (1), characterized in that said winding (10, 35, 36) has two disks (11, 12) adjacent to each other in the direction of the center axis (5), said disks being formed of conductor strip sections (21a, 21b, 29, 30) coiled in several layers coaxially around the center axis (5) onto said core (1) and having a plurality of layers (14) in a radial direction of the center axis (5), the conductor strip section (21a, 29) coiled in a first winding sense, the conductor strip section (21b, 30) coiled in a second winding sense being opposite the first winding sense, each disc (11, 12) having an outside layer being radially farthest from the core (1) and an inside layer being near the core (1), the two inside layers of the two disks (11, 12) being conductively connected by a connection section (21c, 31, 17), the two outside layers provided each with an electrical connection (18, 19), the connection section (21c, 31) determining the winding senses of the two conductor strip sections (21a, 21b, 29, 30) and an axial distance (a) between the two disks (11, 12).
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Abstract
A magnetic pole for magnetically levitation vehicles is described comprising a core and a winding applied on said core. According to the present invention, the winding has two spaced disks formed of conductor strip sections (21a, 21b) wound in opposite winding sense and in several layers around said core and conductively connected to each other at ends near said core by a connection section (21c) which defines the axial distance of said two disks (11, 12) and the winding sense of the two conductor strip sections (21a, 21b).
11 Citations
12 Claims
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1. A magnetic pole for magnetic levitation vehicles, comprising:
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a core (1) having a center axis (5); and a winding (10, 35, 36) applied on said core (1), characterized in that said winding (10, 35, 36) has two disks (11, 12) adjacent to each other in the direction of the center axis (5), said disks being formed of conductor strip sections (21a, 21b, 29, 30) coiled in several layers coaxially around the center axis (5) onto said core (1) and having a plurality of layers (14) in a radial direction of the center axis (5), the conductor strip section (21a, 29) coiled in a first winding sense, the conductor strip section (21b, 30) coiled in a second winding sense being opposite the first winding sense, each disc (11, 12) having an outside layer being radially farthest from the core (1) and an inside layer being near the core (1), the two inside layers of the two disks (11, 12) being conductively connected by a connection section (21c, 31, 17), the two outside layers provided each with an electrical connection (18, 19), the connection section (21c, 31) determining the winding senses of the two conductor strip sections (21a, 21b, 29, 30) and an axial distance (a) between the two disks (11, 12). - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12)
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Specification