Cooling support element for a stator segment of an electrical machine for a wind turbine
US-9203282-B2 · Dec 1, 2015 · US
US2016164374A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016164374-A1 |
| Application number | US-201514747503-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 23, 2015 |
| Priority date | Dec 3, 2014 |
| Publication date | Jun 9, 2016 |
| Grant date | — |
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A rotor of a wound rotor driving motor includes: a rotor body that is rotatably installed at a predetermined air gap at an inside of a stator and in which a rotor coil is wound in a plurality of rotor teeth; and an end coil cover that is mounted at each of both sides of an axial direction of the rotor body in order to prevent the rotor coil from separating, where the rotor body forms a plurality of air movement passages that are open to the outside in an axial direction, and the end coil cover forms a plurality of connection passages that are connected to the air movement passage.
Opening claim text (preview).
What is claimed is: 1 . A rotor of a wound rotor driving motor, the rotor comprising: a rotor body that is rotatably installed at a predetermined air gap at an inside of a stator and in which a rotor coil is wound in a plurality of rotor teeth; and an end coil cover that is mounted at each of both sides of an axial direction of the rotor body in order to prevent the rotor coil from separating, wherein the rotor body forms a plurality of air movement passages that are open to the outside in an axial direction therein, and the end coil cover forms a plurality of connection passages that are connected to the air movement passage. 2 . The rotor of claim 1 , wherein the rotor body is formed in an open structure by utilizing a non-molding method of connecting the end coil cover. 3 . The rotor of claim 1 , wherein the air movement passage is formed between rotor teeth in which the rotor coil is wound in the rotor body. 4 . The rotor of claim 1 , wherein the end coil cover comprises a plurality of ribs that radially partition the plurality of connection passages. 5 . The rotor of claim 4 , wherein the ribs are provided as a twist blade that is twisted in a pan shape. 6 . The rotor of claim 5 , wherein the twist blade has opposite twist directions at both sides of the axial direction of the rotor body. 7 . The rotor of claim 5 , wherein the end coil cover is coupled to each of both sides of the rotor body and is coupled to a wedge that supports the rotor coil between rotor teeth of the rotor body. 8 . The rotor of claim 7 , wherein the end coil cover integrally forms a wedge fixing portion that is coupled to the wedge. 9 . The rotor of claim 1 , wherein the end coil cover comprises. a first support ring that supports external circumferences of both sides of the rotor body; a second support ring that supports a rotation shaft of a central portion of the rotor body; and ribs that integrally connect the first and second support rings and that radially partition the plurality of connection passages. 10 . The rotor of claim 9 , wherein the ribs are provided as a twist blade of a pan shape. 11 . The rotor of claim 10 , wherein the twist blade has opposite twist directions at both sides of the axial direction of the rotor body. 12 . The rotor of claim 10 , wherein the rotor body comprises a wedge that is installed between rotor teeth and that supports the rotor coil, and a wedge fixing portion that is coupled to the wedge is integrally formed at a support surface of the first support ring.
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