US2003102946A1PendingUtilityA1

Pole wheel comprising a hollow magnet body and a retaining part

Priority: Oct 12, 1998Filed: Oct 4, 2002Published: Jun 5, 2003
Est. expiryOct 12, 2018(expired)· nominal 20-yr term from priority
H02K 11/21G01P 3/487H02K 11/225G01B 7/30H02K 1/2726G05G 1/12H02K 7/1166
35
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Claims

Abstract

A pole wheel of the type driven in rotation by a shaft employs a sensor system disposed on the pole wheel for detecting rotations of the shaft. The pole wheel includes a first component in the form of a hollow magnet body and a second component that is disposed as a retaining part for the first component and is seated firmly on the shaft and is embodied integrally, for the sake of streamlined connection to the first component, with connecting means. Recesses, which for instance can be embodied in groovelike fashion, may be disposed on the second component, that is, the retaining part seated solidly on the shaft, and the first component is injected molded onto the second component, creating positive engagement connecting means comprising the material of the magnet body.

Claims

exact text as granted — not AI-modified
We claim:  
     
         1 . The combination comprising a plastic-bonded ring magnet and a ring-shaped basic body adapted to fix the magnet onto a shaft which penetrates through the magnet and the basic body, wherein 
 each of said ring magnet and ring-shaped basic body respectively includes an outer surface which establishes an outside diameter, and an inner surface which establishes an inside diameter, and a pair of separated fronts;    said ring magnet being located at a first one of said fronts of said basic body;    said inside diameter of the basic body being smaller than the inside diameter of the ring magnet, and the respective outside diameters of the basic body and the ring magnet being substantially identical to one another, and wherein 
 the basic body includes at least one axially oriented channel-shaped recess extending between both said fronts of the basic body and which defines an inside wall; and wherein 
 said recess is filled with magnetic material.  
 
   
     
     
         2 . A pole wheel including a first component that is produced in the form of a hollow magnet body of magnetic powder with thermoplastic binder, the first component having at least one north pole and one south pole in the circumferential direction and surrounding a shaft in a manner free of tensile and compressive stress, and a second component in the form of a retaining part of thermoplastic material seated solidly by press fit on the shaft and axially adjusting the first component, and connecting means for retaining the hollow magnet body axially and in a manner secure against relative rotation on the retaining part, the connecting means being embodied integrally with one of the two components, the improvement wherein the connecting means ( 5 ) are embodied integrally with the first component ( 3 ), and that the second component ( 4 ) has recesses ( 17 ) into which the connecting means ( 5 ) are formed by injection molding, wherein the second component ( 4 ) has a first face end ( 12 ) and a second face end ( 13 ), with the second face end ( 13 ) being positioned adjacent the first component ( 3 ), wherein the recesses ( 17 ) are in communication with both face ends, and the recesses, where they communicate with the first face end, have a cross section which is larger than their cross section at the second face end.  
     
     
         3 . The pole wheel of  claim 2 , wherein the recesses ( 17 ) are embodied as longitudinal grooves that are partly open toward the circumference of the second component ( 4 ).  
     
     
         4 . The pole wheel of  claim 1 , wherein the first opening cross sections and the second opening cross sections are positioned and located with respect to each other so that they form an opening angle which enables easy removal of the second component from a mold.  
     
     
         5 . The pole wheel of  claim 3 , wherein the second component ( 4 ) has a first face end ( 12 ) and a second face end ( 13 ), with the second face end ( 13 ) being positioned adjacent the first component ( 3 ), wherein the recesses ( 17 ) are in communication with both face ends, and the recesses, where they communicate with the first face end, have a cross section which is larger than their cross section at the second face end.

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