This Non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No(s). 200910215548.7, filed in People's Republic of China on Dec. 24, 2009, the entire contents of which are hereby incorporated by reference.
1. Field of Invention
The present invention relates to a fan and a motor thereof and, in particular, to a fan and a motor thereof, whose shaft is provided with higher axial attraction.
2. Related Art
Motors can be applied in a variety of electronic equipments such as fans, optical disk drivers, hard disk drivers, optical devices or color wheels. Generally, a sliding bearing is used in the motor, and the shaft of the motor can move axially along the center of the sliding bearing to generate relative movement with respect to the sliding bearing in certain structure. However, the displacement of the shaft in various degrees may occur in the axial direction in operation in accordance with different disposition angles and use conditions of the motor. It may further cause the abrasion of the shaft and the noise generation of the motor. Consequently, the displacement constraint of the motor in the axial direction is considered to be an effective solution for certain issue.
Conventional methods for constraining the shaft displacement of the motor in the axial direction can not go out of the following three methods. The first method is to dispose a magnetic body respectively on the motor shaft and the base such that downward attraction can be provided for constraining the shaft displacement. However, two magnetic bodies are required in certain method and thereby the cost of production must increase.
The second method is to dispose a magnetic body and a magnetic back yoke on the base of the motor. It provides axial attraction for the shaft by the mutual attraction between the shaft with the magnetic property and the magnetic body. Because the most magnetic lines of the magnetic body form circuits by passing through elements without magnetic property, such as air, in certain method, the magneto resistance of the circuits are higher and thereby weakens the axial attraction provided to the shaft.
The third method is to dispose a magnetic structure on the base of the motor and apply elements with magnetic property inside the motor, such as a magnetic shaft, base or bearing. It can form magnetic circuits with the magnetic lines from one side of the magnetic structure to another by passing through the magnetic elements for increase of the attraction between the shaft and the magnetic structure. However, the shaft and the magnetic structure are respectively disposed in two separated chambers and the gap between the shaft and the magnetic structure is larger. Thus, the axial attraction provided to the shaft is weaker, and it is not effective enough for practical use.
Therefore, a motor and a fan including a shaft provided with higher axial attraction have been desired. They can constrain the displacement of the shaft in the axial direction and thereby reduce the abrasion of the shaft and the noise generation of the motor and the fan.
In view of the foregoing, the present invention provides a motor and a fan including a shaft provided with higher axial attraction. They can constrain the displacement of the shaft in the axial direction and thereby reduce the abrasion of the shaft and the noise generation of the motor and the fan.
To achieve the above, the present invention provides a motor including a bearing structure, a rotor structure, a stator structure and a magnetic body. The rotor structure includes a shaft disposed on the bearing structure. The stator structure is disposed corresponding to the rotor structure. The rotor structure further includes an iron housing and a hub connected to the iron housing and the hub. The rotor further includes a magnetic band disposed in and connected to the iron housing. The magnetic band is disposed corresponding to the stator structure. The motor further includes a base including a bushing, and the shaft and the bearing structure are disposed in the bushing. The motor further includes a magnetic element connected to the base, and the magnetic body is disposed in the bushing and located at a side of the magnetic element. The magnetic element is plate-shaped or cup-shaped.
In accordance with an embodiment of the present invention, the motor further includes a baffle disposed between the shaft and the magnetic body, and the magnetic body is disposed opposite to the shaft through the baffle. The magnetic body is disposed corresponding to the shaft and includes a first magnetic element and a second magnetic element. The first magnetic element is disposed around the second magnetic element.
In accordance with an embodiment of the present invention, the first magnetic element and the second magnetic element are disposed in concentric or non-concentric.
In accordance with an embodiment of the present invention, the polarities of the first magnetic element and the second magnetic element disposed at the same side are opposite.
In accordance with an embodiment of the present invention, the magnetic element is plate-shaped or cup-shaped.
In accordance with an embodiment of the present invention, the width of the first magnetic element is larger than the diameter of the shaft, or the width of the second magnetic element is 0.4 to 1 times as wide as the diameter of the shaft.
To achieve the above, the present invention provides a fan including the motor, a frame, a stationary blade and a plurality of blades. The blades are disposed around the periphery of the rotor structure. The frame is connected to the base, and the stationary blade is respectively connected to the frame and the base.
In summary, the motor and the fan of the present invention is provided with the magnetic body in the axial direction of the shaft of the motor. The magnetic body includes the first magnetic element and the second magnetic element, and the first magnetic element is disposed around the second magnetic element. Thus, the magnetic lines of the magnetic body form shorter closed paths and provide higher magnetic flux density to pass through the magnetic body and the shaft for providing the shaft and the magnetic body with higher axial attraction. It constrains the displacement of the shaft in the axial direction, and further reduces the abrasion of the shaft and the noise generation of the motor and the fan. In addition, the first magnetic element and the second magnetic element of the motor and the fan in accordance with the present invention, which are disposed at the same side but with opponent polarities, also contribute to the reduction of magnetic leakage because the magnetic lines of the first magnetic element and the second magnetic element can form shorter closed paths and provides higher magnetic flux density. It further reduces the level of magnetic interference to other elements.
The invention will become more fully understood from the detailed description and accompanying drawings, which are given for illustration only, and thus are not limitative of the present invention, and wherein:
The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
The motor 2 includes a bearing structure 21, a rotor structure 22, a stator structure 23 and a magnetic body 24. The rotor structure 22 includes an iron housing 222, a magnetic band 223, a hub 224 and a shaft 221 disposed in the bearing structure 221. The shaft 221 can be made of, for example but not limited to, magnetic material or non-magnetic material. The hub 224 is connected to the iron housing 222 and the shaft 221 respectively. The magnetic band 223 is disposed in and connected to the iron housing 222. The hub 224 is connected to the shaft 221 by, for example, mounting, locking or adhesion.
The magnetic band 223 is, for example, a magnetic ring, and is disposed around the internal surface of the iron housing 222. The iron housing 222 is disposed around the internal surface of the hub 224. The magnetic band 224 corresponds to the stator structure 23. The material of each of the magnetic body and the magnetic band includes, for example but not limited to, ferrite, soft ferrite magnet, highly magnetic alloy, magnetic material or a combination thereof.
The stator structure 23 is disposed corresponding to the rotor structure 22. In the present embodiment, the stator structure 23 is disposed corresponding to the magnetic band 223 of the rotor structure 22. The stator structure 23 is not limited to any specific type, and can be made of, for example, coreless coils or coils wired by a plurality of silicon steel plates. The stator structure 23, made of coils wired around silicon steel plates, is taken for exemplary description.
The magnetic body 24 is disposed opposite to the shaft 221, and includes a first magnetic element 241 and a second magnetic element 242. The first magnetic element 241 is disposed around the second magnetic element 242. In other words, if the center of the magnetic body 24 is considered as a reference point, the first magnetic element 241 is disposed as an outer circle and the second magnetic element 242 is disposed in the hollow portion surrounded with the first magnetic element 241. The second magnetic element 242 is directly connected to the first magnetic element 241. In other words, the first magnetic element 241 is connected to the second magnetic element 242 by tight connection.
The motor 2 further includes a base 25 and a magnetic element 26. The base 25 includes a bushing 251, and the shaft 221 and the bearing structure 21 are disposed in the bushing 251. The magnetic element 26 connected to the base 25, and the bearing structure 21 and the stator structure 23 are disposed on the base 25. The magnetic body 24 is disposed in the bushing 251 and located at a side of the magnetic element 26. The magnetic element 24 is disposed above the magnetic element 26.
In the present embodiment, the base 25 and the bushing 251 are, for example, integrally formed as one piece, and the material of the base 25 includes, for example, metal or plastic. The magnetic element 26 is, for example, a magnetic back yoke, and its shape is, for example, plate-shaped or cup-shaped. Herein, the plate-shaped magnetic element 26 is taken for exemplary description.
The motor 2 further includes a baffle 27 disposed between the shaft 221 and the magnetic body 24. The magnetic body 24 is disposed opposite to the shaft 221 through the baffle 27.
In addition, as shown in
The combination type of the first magnetic element 241 and the second magnetic element 242 can be various. The aforementioned two types are only taken for exemplary description, but not to limit the scope of the present invention. Any combination disposing the first magnetic element 241 around the second magnetic element 242 to form the magnetic body 24 can be used. For example, the first magnetic element 241 can be connected to the second magnetic element 242 by adhesion and locking simultaneously.
The polarities of the first magnetic element 241 and the second magnetic element 242 disposed at the same side (either top side or bottom side shown in
Moreover, the shapes of the first magnetic element 241 and the second magnetic element 242 can be various as well. As shown in
As shown in
By contrast,
As shown in
The fan 5 includes a motor 6, a plurality of blades 51, a frame 52 and a stationary blade. The blades 51 are driven by the motor 6 to rotate and thereby generate air flow. The stationary blade 53 is connected to the frame 52 and the base of the motor. The motor 6 is, for example, an external-rotor motor or an internal-rotor motor. Herein, the external-rotor motor is taken for exemplary description. To be noted again, the motor 6 of the present embodiment is provided with all of the technical characteristics of the aforementioned motor 2, and the detail description thereof will be omitted.
In addition, the motors 2, 3 and 6 are not limited to any specific application, and can be applied in electronic equipment such as fans, optical disk drivers, hard disk drivers, optical devices or color wheels. The appearance and the shape of the motors 2, 3 and 6 of the present invention are not limited as well, and the structure of the motors 2, 3 and 6 can be modified in accordance with their practical functions and fields.
In summary, the present invention is provided with the magnetic body in the axial direction of the shaft of the motor. The magnetic body includes the first magnetic element and the second magnetic element. In accordance with one embodiment of the present invention, the first magnetic element is disposed around the second magnetic element, and the first magnetic element and the second magnetic element are disposed at the same side but with opponent polarities. Thus, the magnetic lines of the magnetic body form shorter closed paths and provide higher magnetic flux density to pass through the magnetic body and the shaft for providing the shaft and the magnetic body with higher axial attraction. It constrains the displacement of the shaft in axial direction, and further reduces the abrasion of the shaft and the noise generation of the motor and the fan. In addition, the first magnetic element and the second magnetic element of the motor and the fan in accordance with the present invention, which are disposed at the same side but with opponent polarities, also contribute to the reduction of magnetic leakage because the magnetic lines of the first magnetic element and the second magnetic element can form shorter closed paths and provide higher magnetic flux density. It further reduces the level of magnetic interference to other elements.
Although the invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the invention.
Number | Date | Country | Kind |
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200910215548.7 | Dec 2009 | CN | national |