The present invention relates to solar energy equipment and more particularly, to a solar panel frame structure.
In order to encourage the use of alternative energy sources, solar energy is a kind of green energy that the government is pushing forward. However, solar panels are currently installed in a rectangular frame, and then the rectangular frame is installed on an iron frame outside the roof or the outer wall of the building, and the rectangular frame holding the solar panel is not directly taken as a building material on the roof or used as an exterior wall. In the case of a roof, it is necessary to make a roof on the building and then mount the iron frame on the roof. Finally, the rectangular frame holding the solar panel is fastened to the iron frame using complicated clips or fixtures. Therefore, in the same area, it is equivalent to a two-story roof. This installation method is a waste of space and materials. The main reason is that the overall structure of the solar panel frame used in the past is easy to leak, so it is not suitable for use as a roof directly.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide a solar panel frame structure, which can have better water leakage prevention effect and can be directly used as a roof.
To achieve this and other objects of the present invention, the solar panel frame structure comprises a solar panel and two side frames. The solar panel is rectangular in shape with two pairs of opposite sides. The two side frames are respectively set on a pair of corresponding sides of the solar panel. Each side frame is in the shape of a long strip, comprising a top plate, a vertical plate and a bottom plate. The top plate is arranged above the vertical plate, and protrudes from both sides of the vertical plate. The bottom plate is arranged on one side of the vertical plate. The section of the top plate where the top plate and the bottom plate are positioned on the same side of the vertical plate is defined as an inner section. The section of the top plate where the top plate and the bottom plate are positioned on different sides of the vertical plate is defined as an outer section. An accommodating area is formed between the inner section and the bottom plate for accommodating one side of the solar panel. The vertical plate comprises a combined section protruding downwards from the bottom plate, and a through hole located in the combined section.
Preferably, the outer section of the top plate has a bottom side thereof mounted with an elongated sealing member. The sealing member has a middle part thereof provided with an upper protruding portion when viewed from the short axial section thereof. The upper protruding portion is used to be clamped between two adjacent solar panel frame structures.
Preferably, the top plate of each side frame comprises a series of locking teeth on a bottom side of the outer section.
Preferably, the solar panel frame structure further comprises a shelf plate added to one side of the combined section. The shelf plate comprises an upper section and a lower section in view of the short axial section thereof. The upper section is provided with a through hole for a bolt to pass through. The lower section is connected to a lower edge of the upper section and extends laterally to one side.
First of all, it should be noted that the technical features provided by the present invention are not limited to the specific structures, uses and applications described in the embodiments. The terms used in the specification are all illustrative terms that can be understood by those with ordinary knowledge in the technical field. The descriptive directional terms such as “front”, “up”, “down”, “rear”, “left”, “right”, “top”, “bottom”, “inside”, and “outside” mentioned in this specification are only exemplary descriptive terms based on the normal usage direction, and are not intended to limit the scope of claims.
Furthermore, as used in the patent scope of this invention application, the singular form of “a”, “an” and “the” and other numerals all include the meaning of the plural. Thus, for example, a reference to “an element” refers to one or more elements and includes equivalents known to those of ordinary skill in the art. All conjunctions used in similar situations should also be understood in their broadest sense. The specific shapes and structural features or technical terms described in the specification should also be construed as including equivalent replacement structures or technical terms for the functions that can be achieved by the specific structures or technical terms.
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This solar panel frame structure in the present invention comprises a solar panel 10 and two side frames 20. The solar panel 10 is rectangular in shape with two pairs of opposite sides.
The two side frames 20 are respectively arranged on a pair of corresponding sides of the solar panel 10. Each side frame 20 is in the shape of a long strip, and each side frame 20 comprises a top plate 21, a vertical plate 22 and a bottom plate 23 from top to bottom when viewed from its short axial section. The top plate 21 is arranged above the vertical plate 22 and protrudes from both sides of the vertical plate 22. so that its cross-section is T-shaped. The bottom plate 23 is arranged on one side of the vertical plate 22 and is parallel to the top plate 21. The section where the top plate 21 and the bottom plate 23 are positioned on the same side of the vertical plate is the inner section 211. and the section where the top plate 21 and the bottom plate 23 are positioned on the different sides of the vertical plate 22 is the outer section 212. An accommodating area is formed between the top plate inner section 211 and the bottom plate 23 for accommodating one side of the solar panel 10. The vertical plate 22 has a portion protruding downwards from the bottom plate 23 as a combined section 221. The direction in which the combined section 221 extends is parallel to the direction in which the vertical plate 22 extends. The vertical plate 22 is provided with at least one through hole 222 in the combined section 221 for bolts to pass through.
In the solar panel frame structure of the present invention, the outer sections 212 of the top plates 21 of the two side frames 20 are respectively set across one longitudinal beam C of the transverse beam-column component set, so that the vertical plates 22 can be in close contact with the longitudinal beam C and the combined sections 221 located on both sides of the longitudinal beam C can sandwich the longitudinal beam C. Then use a bolt to pass through the through holes 222 of the combined sections 221 and the longitudinal beam C for screwing. In this specification, each embodiment of the longitudinal beam takes a C-shaped steel transverse beam as an illustrative example, as shown in
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The bottom plate 23 of each side frame is arranged on one side of the associating vertical plate 22 and is parallel to the associating top plate 21. The vertical plate 22 has a portion protruding downwards from the bottom plate 23 as a combined section 221. and the direction in which the combined section 221 extends is parallel to the direction in which the vertical plate 22 extends. The solar panel 10 is also arranged between the top plate 21 and the bottom plate 23.
The difference from the first embodiment is that the solar panel frame structure further comprises a fixing angle plate 70. The fixing angle plate has a first section 71 and a second section 72. An included angle is contained between the first section 71 and the second section 72. The included angle is preferably 90 degrees, so that the first section 71 and the second section 72 are L-shaped. The first section 71 and the second section 72 are respectively provided with a mounting groove 73. The fixing angle plate 70 is disposed below the adjoining place where a horizontal side frame adjoins a vertical side frame, so that the end sections of the vertical plates 22 of the two adjacent side frames can be inserted and fixed in the mounting grooves 73 of the first section 71 and the second section 72 respectively, so as to increase the stability of the combination of the two side frames.
With the structure of the sixth embodiment of the present invention, not only the arrangement of side frames on the four sides of the solar panel is beneficial to the fixation of the solar panel, the transverse beam and the longitudinal beam, moreover, by adding the setting of the fixing angle plates, the joint of the side frames in horizontal and vertical can be more stable, so as to reduce the damage to the solar panel caused by the distortion of the frame structure.