1. Field of the Invention
The invention relates to an adjustable mount and an angle-adjusting method, and especially relates to an adjustable mount providing a plurality of fixing angles for solar panels and an angle-adjusting method therefor.
2. Description of the Prior Art
As the light-emitting power of Light-Emitting Diode (LED) is improving, the solar power generation has entered commercial operation. Because a solar panel performs photovoltaic conversion with sunlight, the intensity of the sunlight received by the solar panel becomes important. In a system design of immovable receiving angle, a supporting mount thereof provide only an immovable supporting angle for solar panels. So the angle is normally designed to be an optimum angle of inclination in some locality so that the solar panels can receive most solar energy. However, the optimum angle of inclination for every locality is not the same. The supporting mount providing only one immovable angle for supporting cannot meet the requirements of optimum angle of inclination for every locality. In other words, the solar panels on the supporting mount with single immovable inclination utilize sunlight poorly in some localities, leading to solar energy loss. If the supporting mount is customized for each locality, the cost of manufacturing and stock management will increase.
An objective of the invention is to provide an adjustable mount for supporting solar panel. The adjustable mount provides a plurality of supporting angles by use of angle-adjusting device so that solar panels disposed on the adjustable mount can receive sunlight in a better angle.
The adjustable mount of the invention includes a frame, an angle-adjusting device, and a side support. The frame is used for fixing at least one solar panel. The angle-adjusting device is disposed on the frame and includes an angle index part for providing finite angle positions. The side support is connected to the frame through the angle-adjusting device. Therein, a relative rotation angle of the side support and the frame is capable of being adjusted by engaging the side support and the angle index part. The relative rotation angle corresponds to one of the finite angle positions. Thereby, the adjustable mount can provide proper relative rotation angles for choice for various operation localities, so that the solar panel can receive sunlight in a better angle to enhance the utilization of the received sunlight.
Another objective of the invention is to provide an angle-adjusting method for the adjustable mount of the invention. The angle-adjusting method is to use the angle-adjusting device to adjust the disposition angle of the solar panel so that the solar panel can receive sunlight in a better angle.
The angle-adjusting method of the invention uses the adjustable mount of the invention. The angle-adjusting method is to adjust the relative rotation angle of the side support and the frame by engaging the side support and the angle index part. Therein, the relative rotation angle corresponds to one of the finite angle positions. Thereby, the angle-adjusting method is to be able to adjust the relative rotation angle for various operation localities, so that the solar panel can receive sunlight in a better angle to enhance the utilization of the received sunlight.
In sum, the adjustable mount and the angle-adjusting method therefor of the invention can provide finite angles of fixing the solar panel. During the disposing of the adjustable mount, the invention adjusts the relative rotation angle of the side support and the frame by engaging the side support and the angle index part, so as to meet requirements of optimum angle of inclination for different operation localities, which solves the problem that the supporting mount with single immovable angle cannot be applied to different localities effectively in the prior art.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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In the embodiment, the angle-adjusting device 14 includes a bolt 142, a first nut 144, an angle index part 146, and a second nut 148. The frame 12 has a through hole 122. The bolt 142 passes through the through hole 122 from the inside of the frame 12. The first nut 144 is screwed tightly on the bolt 142 to be fixed on the frame 12. The angle index part 146 is a gear, sleeved on the bolt 142 to be fixed. The first side support 16 has a teeth-shaped through hole 162 corresponding to the angle index part 146, for engaging with the angle index part 146. The above fixing way can be performed by screwing the second nut 148 on the bolt 142 to pack the angle index part 146. In this case, the second nut 148 can be a nut capable of passing through the teeth-shaped through hole 162 so that the first side support 16 can be sleeved directly on the angle index part 146. Or the angle index part 146 thereon forms an inner thread 1462, and then the above fixing way can be performed by screwing the angle index part 146 on the bolt 142 through the inner thread 1462. Or the above fixing way can be performed by fixing the angle index part 146 on the bolt 142 by use of other adhering or soldering. The angle-adjusting device 14 provides finite angle positions by use of the angle index part 146. In practice, the angle position means the status of the engagement angle of the first side support 16 and the angle index part 146 and influences the relative rotation angle 164 of the first side support 16 and the frame 12, but not directly in a numerical conversion of a numerical equation. This is because the relative rotation angle 164 is also influenced by the relative disposition angle of the angle index part 146 and the frame 12. In practice, the above relations can be quantified so that the angle position can be converted into a corresponding value of the relative rotation angle 164; however, the invention is not limited to it. In the embodiment, the angle index part 146 has four teeth, so the angle index part 146 can provide four angle positions logically; however, in practice, two of the teeth are used for positioning. The relative rotation angle 164 of the first side support 16 and the frame 12 can be adjusted by engaging the first side support 16 and the angle index part 146; in other words, it is adjusted by engaging the teeth-shaped through hole 162 and the angle index part 146 in different rotation angles. After adjusted, the relative rotation angle 164 corresponds to one of the finite angle positions.
It is added that, the angle index part 146 uses gear structure so that the junction strength of the angle index part 146 and the first side support 16 is stronger than that of a common fitting of shaft and hole, so as to obtain a stable supporting angle. Furthermore, if the angle index part 146 is screwed tightly on the bolt 142 through the inner thread 1462, the second nut 148 can be a nut larger than the teeth-shaped through hole 162 lest the first side support 16 should depart from the angle index part 146. In addition, the frame 12 thereon forms an angle scale 124 close to the angle-adjusting device 14. The angle scale 124 includes a plurality of marks (shown by bold lines) corresponding to the finite angle positions; it is conducive to setting the relative rotation angle 164 during the engagement of the first side support 16 and the angle index part 146. It is added more that, referring to
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Similarly, the angle-adjusting device 34 can provide finite angle positions by use of the first positioning hole 3442 of the angle index part 344. In principle, each angle position corresponds to one of the first positioning holes 3442. A user can insert the pin 346 into the second positioning hole 362 and any of the first positioning holes 3442 to achieve the purpose of adjusting the relative rotation angle. In the embodiment, the frame 32 thereon forms an angle scale 322 close to the angle-adjusting device 34. The angle scale 322 includes a plurality of marks (shown by bold lines) corresponding to the finite angle positions. During rotating the first side support 36, the first side support 36 can be aligned with one of the marks for the convenience of the user to insert the pin 346 into the second positioning hole 362 and the corresponding first positioning hole 3442, so as to perform the adjustment of the relative rotation angle.
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As discussed above, the adjustable mount and the angle-adjusting method therefor of the invention can provide finite angles of fixing the solar panel by use of the angle-adjusting device. During the disposing of the adjustable mount, the invention adjusts the relative rotation angle of the side support and the frame by engaging the side support and the angle index part, so as to meet requirements of optimum angle of inclination for different operation localities so that the solar panel can receive sunlight in a better angle to enhance the utilization of the received sunlight for enhance the utilization of the sunlight, which solves the problem that the supporting mount with single immovable angle cannot be applied to different localities effectively in the prior art.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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100119757 | Jun 2011 | TW | national |