This application claims priority of Taiwanese Patent Application No. 105215038, filed on 4 Oct. 2016.
The disclosure relates to a power generator, and more particularly to a disc type power generator.
Disc type power generator is one kind of developing power generators, which has high energy transforming efficiency. Electric power generated by the disc type power generator not only can be offered for operating the disc type power generator, but also can be stored for other usage.
A conventional disc type power generator includes a supporting frame, a plurality of wire trays and magnetic plates alternately mounted to the supporting frame, and a transmission shaft coaxially extending through the wire trays and the magnetic plates to drive relative rotations between the wire trays and the magnetic plates to generate the electric power.
Since each of the wire trays and the magnetic plates has a certain weight, connecting portions between the wire trays and the transmission shaft, and between the magnetic plates and the transmission shaft are subjected to relatively large torque, and are thus easy to be broken, and the wire trays and the magnetic plates are required to be often replaced.
Therefore, the object of the disclosure is to provide a power generator that can alleviate at least one of the drawbacks of the prior art.
According to the disclosure, the power generator includes a supporting frame mechanism, a magnetic plate unit, a wire tray unit and a transmission mechanism. The magnetic plate unit includes at least one magnetic plate module including a plurality of magnets that are angularly spaced apart from each other. The wire tray unit generates electric power induced by a relative rotation between the wire tray unit and the magnets of the magnetic plate unit. The transmission mechanism includes two axial member units extending along an axis, rotatably mounted to the supporting frame mechanism, and coaxial with each other, and a plurality of transmission shafts mounted between the axial member units, extending through the at least one magnetic plate module of the magnetic plate unit and the wire tray unit, and rotatable about the axis. The transmission shafts are angularly spaced apart from each other, are disposed about the axis, and are driven by the axial member units to drive the relative rotation between the wire tray unit and the at least one magnetic plate module of the magnetic plate unit.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
The supporting frame mechanism 3 includes two spaced apart mounting wall units 31, and two spaced apart frame rods 32 fixedly connected between the mounting wal 1 units 31. Each of the mounting wall units 31 has a base wall 311, and a top wall 312 removably mounted on and above the base wall 311, and cooperating with the base wall 311 to define a supporting hole 313 therebetween. The supporting hole 313 extending along an axis 700. The frame rods 32 extend in a direction parallel to the axis 700, and are respectively located at two sides of the axis 700. The supporting hole 313 of one of the mounting wall units 31 has a first section 314 proximate to the other one of the mounting wall units 31, and a second section 315 distal from the other one of the mounting wall units 31, and having a diameter that is smaller than that of the first section 314.
Referring to
Each of the axial member units 41 is confined between the base wall 311 and the top wall 312 of a corresponding one of the mounting wall units 31, and includes a side rod 411 extending through the supporting hole 313 of the corresponding one of the mounting wall units 31 along the axis 700, a bearing 412 sleeved onto the side rod 411, and mounted inside the first section 314 of the corresponding one of the supporting holes 313 of the supporting frame mechanism 3, and a transmission plate 413 coaxially and fixedly connected to one end of the side rod 411 that is located between the mounting wall units 31. Each of the transmission plates 413 has a plurality of coupling holes 414 angularly spaced apart from each other, and disposed about the axis 700.
Each of the transmission shafts 42 is fixedly connected between the transmission plates 413 of the axial member units 41, and extends through corresponding two coupling holes 414 such that, the transmission shafts 42 are co-rotatable with the axial member units 41. Each of the transmission shafts 42 is sleeved with two of the spacers 43 that are spaced apart from each other, and that are driven by a corresponding one of the transmission shafts 42 to rotate about the axis 700.
The magnetic plate unit 5 includes at least one magnetic plate module 51. The transmission shafts 42 extend through the at least one magnetic plate module 51, such that the transmission shafts 42 are co-rotatable with the at least one magnetic plate module 51 about the axis 700. In this embodiment, the magnetic plate unit 5 includes a plurality of magnetic plate modules 51 spaced apart from each other along the axis 700. Each of the magnetic plate modules 51 is disposed between two adjacent spacers 43. It should be noted that, the number of the magnetic plate modules 51 may be varied in other embodiments. Each of the spacers 43 is disposed for spacing a corresponding one of the transmission plates 413 from an adjacent one of the magnetic plate modules 51. Each of the magnetic plate modules 51 has a plate body 511, and includes a plurality of magnets 514 angularly spaced apart from each other, embedded into and exposed from the plate body 511 in directions parallel to the axis 700, and co-rotatable with the plate body 511 about the axis 700. Each of the plate bodies 511 of the magnetic plate modules 51 abuts against two adjacent spacers 43 such that, relative axial movements between the transmission shafts 42 and the plate bodies 511 of the magnetic plate modules 51 are prevented.
Each of the plate bodies 511 has a plurality of through holes 512 angularly spaced apart from each other, disposed about the axis 700, and permitting the transmission shafts 42 to respectively extend therethrough, and a plurality of mounting holes 513 respectively disposed for embedding the magnets 514 of a corresponding one of the magnetic plate modules 51.
Referring to
In this embodiment, each of the wire tray modules 61 has a plurality of coils 611 angularly spaced apart from each other about the axis 700. The output terminal 614 of each of the wire tray modules 61 aggregates the electric power generated by the coils 611. As the disposition and the connecting methods of the coils 611 are plenty, and not the focus of the disclosure improved, so are not further described herein.
Referring back to
In conclusion, since the magnetic plate modules 51 are driven by the transmission shafts 42, stress generated between a transmission shaft and magnetic plates of a conventional disc type power generator is dispersed, and transmission power is largely increased, such that the magnetic plate modules 51 with a larger size can be applied. In addition, since the wire tray modules 61 are mounted onto the supporting frame mechanism 3 without contacting with the transmission shafts 42 and the spacers 43, disposition of the bearings 412 between the wire tray modules 61 and the transmission shafts 42 is not required, and the disposition of the wire tray modules 61 onto the supporting frame mechanism 3 is much more steady.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment. It will be apparent, however, to one skilled in the art, that one or more other embodiments maybe practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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105215038 | Oct 2016 | TW | national |