This application claims priority of Taiwanese Application No. 097124841, filed on Jul. 2, 2008, and Taiwanese Application No. 097149696, filed on Dec. 19, 2008.
1. Field of the Invention
The present invention relates to a device capable of generating electricity, more particularly to a device capable of generating electricity through deformation of a piezoelectric material to convert mechanical energy to electricity.
2. Description of the Related Art
Referring to
An object of the present invention is to provide a device capable of generating electricity using piezoelectric material.
Accordingly, a device capable of generating electricity of the present invention comprises a rotating unit and at least one piezoelectric component. The rotating unit is rotatable about a rotation axis, and includes a plurality of strikers that are disposed at angularly spaced apart positions relative to the rotation axis and that define a plurality of voids, each of which is located between an adjacent pair of the strikers. The piezoelectric component has a portion that extends into one of the voids of the rotating unit. Rotation of the rotating unit about the rotation axis results in the strikers striking the portion of the piezoelectric component intermittently to thereby cause the piezoelectric component to deform, exhibit a direct piezoelectric effect and generate electricity.
Another object of the present invention is to provide a method of generating electricity using piezoelectric material.
According to another aspect of the present invention, a method of generating electricity comprises the steps of:
a) providing a rotating unit that is rotatable about a rotation axis and that includes a plurality of strikers disposed at angularly spaced apart positions relative to the rotation axis, the strikers defining a plurality of voids, each of which is located between an adjacent pair of the strikers;
b) extending a portion of a piezoelectric component into one of the voids of the rotating unit; and
c) causing the rotating unit to rotate about the rotation axis, thereby resulting in the strikers striking the portion of the piezoelectric unit intermittently such that the piezoelectric component deforms, exhibits a direct piezoelectric effect and generates electricity.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
The casing 12 defines an accommodation space 8, and includes a front sidewall 123 formed with a wind inlet 121, and a rear sidewall 124 that is opposite to the front sidewall 123 and that is formed with a wind outlet 122. In practice, the front sidewall 123 can be also formed with a plurality of the wind inlets 121, and the rear sidewall 124 can be also formed with a plurality of the wind outlets 122. The wind inlet 121 and the wind outlet 122 are in fluid communication with the accommodation space 8 and respectively permit air to flow into and out of the accommodation space 8 in a direction indicated by arrows in
The rotating unit is rotatable about a rotation axis and includes a plurality of strikers that are disposed at angularly spaced apart positions relative to the rotation axis and that define a plurality of voids. Each of the voids is located between an adjacent pair of the strikers. In this embodiment, the rotating unit is in a form of a fan component 3 received in the accommodation space 8 and having an axial part 31 that extends along the rotation axis and a plurality of blades 32 that are connected to the axial part 31 and that serve as the strikers. The blades 32 define a plurality of voids 320, each of which is located between an adjacent pair of the blades 32. When air flows into and out of the accommodation space 8 through the wind inlet 121 and the wind outlet 122, the fan component 3 is driven to rotate by the air flowing into the accommodation space 8. In this embodiment, the axial part 31 of the rotating unit 3 is disposed perpendicular to the airflow path through the wind inlet 121 and the wind outlet 122 of the casing 12, but is not limited to the disclosure herein.
The piezoelectric components 4 are disposed on the right sidewall 126 of the casing 12. Each of the piezoelectric components 4 has a portion extending into one of the voids 320 of the fan component 3. Rotation of the fan component 3 about the rotation axis results in the blades 32 striking the portion of each of the piezoelectric components 4 intermittently, thereby causing the piezoelectric components 4 to deform, exhibit a direct piezoelectric effect and generate electricity. Each of the piezoelectric components 4 is plate-shaped, extends parallel to the rotation axis, and includes a piezoelectric plate or a stack of the piezoelectric plates that are interconnected electrically in a series connection, or a parallel connection. The power supply unit 5 is electrically connected to one end of each of the piezoelectric components 4 adjacent to the casing 12.
The electrical interconnection between the power supply unit 5 and the piezoelectric components 4 is different when each of the piezoelectric components 4 includes only one piezoelectric plate or includes a plurality of the piezoelectric plates. Details of the electrical interconnection between the power supply unit 5 and the piezoelectric components 4 are described in the following paragraphs.
When each of the piezoelectric components 4 includes only one piezoelectric plate, referring to
Regarding the piezoelectric components 4 each of which includes a stack of two piezoelectric plates as an example,
Moreover, the two piezoelectric plates shown in
An output voltage of the stack of the piezoelectric plates shown in
By the above-mentioned configuration, when air flows into and out of the accommodation space 8 through the wind inlet 121 and the wind outlet 122, the fan component 3 is driven to rotate by the air flowing into the accommodation space 8. Further, the rotation of the fan component 3 results in the blades 32 striking each of the piezoelectric components 4 intermittently, and causes the piezoelectric components 4 to deform. Therefore, the piezoelectric components 4 exhibit a direct piezoelectric effect and generate electricity provided to the power supply unit 5.
In principle, a number of the piezoelectric plates of each of the piezoelectric components 4 should not result in obstruction of the rotation of the fan component 3. Preferably, the piezoelectric plates of the piezoelectric components 4 can be made of a material with relatively greater resiliency, such as polyvinylidene difluoride (PVDF) having an elastic modulus of 1.37×103 Mpa (at 22.8° C.) and elongation in the range from 25% to 500%, zinc oxide, or a combination thereof. The power supply unit 5 is capable of processing the electricity generated by the piezoelectric components 4 to generate a voltage output. The light emitting unit 6 includes a light emitting diode (LED) lamp 61 and is disposed on the front sidewall 123 of the casing 12 as shown in
Referring to
The energy storage unit 7 can be omitted in other embodiments of the invention. Moreover, the light emitting unit 6 can be omitted, and the device 100 of the invention can be used as an energy storing device in further embodiments of the invention. The light emitting unit 6 may even be replaced by other electric devices. Additionally, aside from disposal on the bicycle 200, the device 100 can be disposed on other vehicles or a helmet.
Referring to
When the bicycle wheel 220 of the bicycle 200 rotates, the spokes 222 rotate and strike the piezoelectric component 4. Therefore, the piezoelectric component 4 deforms, exhibits a direct piezoelectric effect and generates electricity that is provided to the power supply unit 5. Since the principle of generating electricity is the same as that in the first preferred embodiment, details thereof will be omitted herein for the sake of brevity. The light emitting unit, the energy storage unit, and the switch unit are disposed in the power supply unit 5 and form a unitary structure. In this embodiment, a rider (not shown) of the bicycle 200 rides the bicycle 200 to result in the device 100′ generating electricity. In practice, the device 100′ can be disposed on an exercise bike or a motorcycle having a wheel and a wheel axle to generate electricity and to provide electricity to an instrument panel of the motorcycle or a display unit of the exercise bike provided with the device 100′.
The preferred embodiment of a method of generating electricity will now be described in the succeeding paragraphs.
First, a rotating unit rotatable about a rotation axis is provided. The rotating unit includes a plurality of strikers disposed at angularly spaced apart positions relative to the rotation axis. The strikers define a plurality of voids, each of which is located between an adjacent pair of the strikers. The rotating unit can be in a form of the fan component 3 shown in
Then, a portion of a piezoelectric component is extended into one of the voids of the rotating unit.
Finally, the rotating unit is caused to rotate about the rotation axis to thereby result in the strikers striking the portion of the piezoelectric unit intermittently such that the piezoelectric component deforms, exhibits a direct piezoelectric effect and generates electricity. In practice, the rotating unit can be driven by wind (e.g., the first preferred embodiment) or by mechanical transmission (e.g., the second preferred embodiment) to rotate about the rotation axis.
In sum, the device 100, 100′ of the present invention generates electricity provided to an electrical load (e.g., the light emitting unit 6) by virtue of the blades 32 or the spokes 222 striking the piezoelectric components 4 intermittently, causing the piezoelectric components 4 to deform, exhibit a direct piezoelectric effect and generate electricity. Therefore, the objects of the present invention can be positively achieved.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments 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 |
---|---|---|---|
097124841 | Jul 2008 | TW | national |
097149696 | Dec 2008 | TW | national |