The drawings show:
For simplicity sake, vanes which are well known in the state of the art are not shown. The shaft 3 carries permanent magnets 7 which cooperate with electrical coils 8 for rotating the shaft 3. Between the permanent magnets 7 and the electrical coils 8, there is provided a motor gap, shown at an increased, overproportional scale. In the motor gap, a separation member 9, which is formed as a glass tube, is arranged. The glass tube 9 is supported against a cylindrical guide surface 10 provided on the support 2 and against a likewise cylindrical guide surface 11 provided on a cover 12. The guide surfaces 10 and 11 are coaxial and are axially spaced apart from each other. With the glass tube having a constant outer diameter, the guide surfaces 10,11 would have the same radices. In order to prevent stresses, which can be produced by a non-uniform heat expansion of the glass tube and support and/or cover, the guide surfaces 10,11 contact the outer surface of the glass tube 9. A spacer 14 connects the cover 12 and the support 23. Together with a separation sleeve, these components form a chamber in which the electric coils 8 are arranged. Connection surfaces 17 insure coaxiality of the guide surfaces 10,11. The connection surfaces 17 are provided on the inner side of the spacer 14, on the support 2 and on the cover 12. In the right low portion of
The support 2 and the cover 12 provide stops in both axial directions. The distance between the stops is greater than the axial length of the glass tube so that the glass tube has a certain axial play. It is advantageous when the guide surfaces do not have narrow tolerances as no preload is produced. In this case, the glass tube is displaceable within certain limits. Elastomeric rings 13 support the glass tube 9 floatingly for axial and radial displacement, with the guide surfaces 10,11 guiding the glass tube 9.
Another advantage of the embodiment of
In a second operational step, the guide surface 11 and the connection surface on the cover can be formed. As a result, the coaxiality of the guide surfaces with respective connection surfaces and of the guide surfaces with each other is very precise. All of this insures a very high precision of the entire arrangement, and a clearance between the permanent magnets 7, which are supported on the shaft 3, and the electrical coils 8 can be retained optimally small. The power parameters of the motor are correspondingly improved or a necessary motor power consumption is reduced as losses, which are associated with the motor gap, are significantly reduced.
Though the present invention was shown and described with references to the preferred embodiments, such are merely illustrative of the present invention and are not to be construed as a limitation thereof and various modifications of the present invention will be apparent to those skilled in the art. It is, therefore, not intended that the present invention be limited to the disclosed embodiments or details thereof, and the present invention includes all variations and/or alternative embodiments within the spirit and scope of the present invention as defined by the appended claims.
Number | Date | Country | Kind |
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10 2006 022 772.7 | May 2006 | DE | national |