END WINDING RESTRAINT IN AN ELECTRICAL MACHINE
The rotor body of an electrical machine has end windings supported by a plurality of circumferentially spaced rakes having tines between which the end windings pass in an arcuate pattern from and for return to an axial orientation within the rotor body. The rakes are supported on axial beams secured to the rotor body. An end disk is secured at the opposite ends of the beams and to a shield overlying the end windings. The rakes, beams and end disks provide axial end winding restraint. The end disk is weighted at selected circumferential locations to resist tendencies of the end windings to distort, e.g., toward an elliptical or non-concentric configuration about the rotor axis.
Latest General Electric Patents:
- METHODS AND APPARATUS TO IMPROVE FAN OPERABILITY CONTROL USING SMART MATERIALS
- APPARATUSES, SYSTEMS, AND METHODS FOR THREE-DIMENSIONAL, IN-SITU INSPECTION OF AN ADDITIVELY MANUFACTURED COMPONENT
- RELATING TO THE CONTROL OF POWER CONVERTERS DURING FAULT CONDITIONS IN POWER TRANSMISSION NETWORKS
- POWER SUPPLY SYSTEM FOR A PLURALITY OF ELECTROLYZERS AND ASSOCIATED FACILITY AND METHOD
- Systems and methods for computed tomography
The present invention relates generally to electrical machines of the type having a rotor and field windings, including end windings about the rotor body and particularly relates to restraints for restraining axial movement of the end windings and minimizing distortion of the rotor end windings in circumferential and axial directions.
In electrical machines, for example, generators, there is provided a rotor body having field windings which in part extend from the rotor body to form arcs at the opposite ends of the rotor body called end windings. The end windings extend generally axially from the rotor body and cross over supports or spindles in a circumferential direction adjacent opposite ends of the body for return in an axial direction into and along the rotor body. In a typical generator construction, the windings are located in slots in the rotor body and wedges secure the windings in the slots. The end windings are typically separated from one another by spacer blocks. More recent generators include a rotor body having defined pole regions with pole faces and parallel sides, together with prefabricated winding modules extending along the parallel sides with the prefabricated end windings extending beyond end faces of the rotor body. In both types of generator constructions, the end windings can become distorted, i.e., elliptically deformed and lose concentricity if not supported. Also, the end windings have a tendency to displace axially when the generator is operated at speed. Consequently, there is a need for end winding restraints in electrical machines having structures which minimize distortion and resist and restrain both circumferential and axial movement of the end windings.
BRIEF DESCRIPTION OF THE INVENTIONIn accordance with a preferred embodiment of the present invention, the rotor body has field windings and end windings which are restrained against both axial and circumferential movement. Particularly, the rotor body includes beams secured to an end face of the rotor body and which beams extend axially for securement to an annular end disk. Between the rotor end face and the annular end disk are a plurality of circumferentially spaced rakes mounted on the beams. The rakes include a plurality of axially spaced tines for receiving the end windings. The rakes and end disk restrain the end windings against axial movement. The end disk is also weighted such that the tendency of the end windings to become distorted, i.e., elliptically deformed and lose concentricity at speed, is effectively resisted. The end disk is weighted symmetrically in a diametrical direction to preclude imbalance of the rotor. The end disk also includes generally radially extending passages along the inner face which weight the portions of the disk not having passages. The passages also provide for transmission of cooling fluid generally radially outwardly and through apertures in the enclosure about the rotor body.
In accordance with a preferred embodiment according to the present invention, there is provided a restraint arrangement for end windings of a rotor in an electrical machine comprising an end winding support having a plurality of axially extending, circumferentially spaced support beams secured at one end to the rotor against movement in an axial direction and a plurality of circumferentially spaced, axially extending support rakes radially outwardly of respective beams for receiving the circumferentially extending end windings between axially spaced tines of the rakes and restraining the end windings against axial movement.
In a further preferred embodiment according to the present invention, there is provided an arrangement for restraining deformation of end windings of a rotor about a rotor axis in an electrical machine comprising a rotor body, field windings extending along the rotor body including the end windings and a support assembly for the end windings including a disk extending generally normal to the axis of rotation of the rotor body, the rotor body having a quadrature axis and the disk having a weight distribution thereabout such that the disk has a greater diametrically symmetrical weight along the quadrature axis than the diametrically symmetrical weight along a direct axis perpendicular to the quadrature axis and the axis of rotation.
BRIEF DESCRIPTION OF THE DRAWINGS
As illustrated in drawing
As illustrated in
Each of the axial support rakes 58 includes a base 66 having a pair of depending flanges 68 (
To prevent or minimize distortion of the end windings, and loss of concentricity, as referred to
It will also be appreciated that the support assembly including the beams and weights, as well as the end disk, provide axial support for the end windings against thermal expansion of the rotor windings. The tines 70 of the rakes 58 also provide a means for supporting the windings 50 during winding assembly and maintain the individual windings separated from one another at a fixed spacing.
While the invention has been described in connection with what is presently considered to be the most practical and preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiment, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Claims
1. A restraint arrangement for end windings of a rotor in an electrical machine comprising:
- an end winding support having a plurality of axially extending, circumferentially spaced support beams secured at one end to the rotor against movement in an axial direction; and
- a plurality of circumferentially spaced, axially extending support rakes radially outwardly of respective beams for receiving the circumferentially extending end windings between axially spaced tines of the rakes and restraining the end windings against axial movement.
2. A restraint according to claim 1 wherein said beams are secured at said one end to an end face of the rotor by a tongue-and-groove connection.
3. A restraint according to claim 1 including an annular end disk secured to said beams for precluding axial thermal expansion of the rotor end windings.
4. A restraint according to claim 1 including an interpolar brace outwardly of a rotor end spindle disposed to space an outermost end winding from one pole of the rotor against circumferential displacement of an outermost end winding of each adjacent pole.
5. A restraint according to claim 1 including an annular end disk secured to said beams for precluding axial expansion of the rotor end windings, said disk having a predetermined and variable weight distribution about the disk for minimizing tendencies of the end windings to lose concentricity upon rotation of the rotor about an axis thereof.
6. A restraint according to claim 5 wherein said weight distribution is diametrically symmetrical to avoid imbalancing the rotor.
7. A restraint according to claim 5 wherein said weight distribution is in part provided by diametrically opposed recesses formed in a face of the disk.
8. A restraint according to claim 7 including an enclosure about the end windings and having apertures therethrough adjacent said disk, said recesses lying in communication with said apertures respectively affording passages for flowing the cooling medium outwardly of the rotor.
9. A restraint according to claim 1 in combination with a rotor body having defined pole regions and pole faces and parallel sides adjacent the pole faces, prefabricated field winding modules having sequentially abutting flat field windings, said modules being disposed over the parallel sides of the rotor body, said rotor having a quadrature axis generally perpendicular to said parallel sides, said weight distribution about said disk being such that the disk has a greater diametrically symmetrical weight along the quadrature axis than the diametrical symmetrical weight along a direct axis perpendicular to the quadrature axis and the axis of rotation.
10. An arrangement for restraining deformation of end windings of a rotor about a rotor axis in an electrical machine comprising:
- a rotor body;
- field windings extending along the rotor body including the end windings;
- a support assembly for the end windings including a disk extending generally normal to the axis of rotation of the rotor body, said rotor body having a quadrature axis and said disk having a weight distribution thereabout such that the disk has a greater diametrically symmetrical weight along the quadrature axis than the diametrically symmetrical weight along a direct axis perpendicular to the quadrature axis and the axis of rotation.
11. An arrangement according to claim 10 wherein said assembly includes a plurality of axially extending, circumferentially spaced support beams secured at one end to the rotor, a plurality of circumferentially spaced, axially extending support rakes radially outwardly of respective beams for receiving the circumferentially extending end windings between axially spaced tines of the rakes and restraining the end windings against axial movement.
12. An arrangement according to claim 11 wherein said beams are secured at said one end to an end face of the rotor by a tongue-and-groove connection.
13. An arrangement according to claim 11 wherein said weight distribution is in part provided by diametrically opposed recesses formed in a face of the disk, and an enclosure about the end windings and having apertures therethrough adjacent said disk, said recesses lying in communication with said apertures respectively affording passages for flowing the cooling medium outwardly of the rotor.
Type: Application
Filed: May 21, 2004
Publication Date: Nov 24, 2005
Applicant: General Electric Company (Schenectady, NY)
Inventors: Christopher Kaminiski (Schenectady, NY), Robert Nygard (Saratoga Springs, NY), Anand Tanavde (Albany, NY), James Alexander (Ballston Lake, NY)
Application Number: 10/849,803