Photovoltaic module applied to double-slope roof
通过定位组件和固定组件的设计,解决了光伏组件在双坡屋顶安装时的无孔安装问题,实现了稳定且灵活的安装方式。
Patent Information
- Application Number
- CN202422073427.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-26
AI Technical Summary
When installing existing photovoltaic components, installation holes are required to be opened on the roof, resulting in roof damage.
The coordination of positioning components and fixing components is adopted, and the non-porous installation and spacing adjustment of the photovoltaic panels are achieved through the sliding groove, bidirectional screw and bevel gear structure, and the V-shaped positioning panel and fixing panel are used to fix them with the eaves.
The stable installation of photovoltaic panels on the double slope roof is achieved without openings, which improves the stability and flexibility of installation.
Smart Images

Figure CN223093703U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic modules, and specifically relates to a photovoltaic module applied to a double-pitched roof. Background Art
[0002] With the popularization of new energy, photovoltaic panels for solar power generation have been widely used. Photovoltaic panels are usually installed on the roof. At present, most installations of photovoltaic modules use bolts, nuts and support frames to fixedly install the photovoltaic panels. Installation holes need to be opened on the roof during installation, which is likely to cause damage to the roof surface. Therefore, we propose a photovoltaic module applied to a double-pitched roof. Content of the Utility Model
[0003] The purpose of the utility model is to provide a photovoltaic module applied to a double-pitched roof to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the utility model provides the following technical solution: A photovoltaic module applied to a double-pitched roof, including an installation frame provided on the upper surface of a house main body, a photovoltaic panel is installed on the inner side wall of the installation frame. Positioning components are provided on the front and rear side walls of the installation frame. A chute is opened on the right side wall of the installation frame. An adjusting component is provided in the chute. The adjusting component includes a first bidirectional lead screw provided in the chute. The rear side wall in the chute is connected with the first bidirectional lead screw through a bearing. One end of the first bidirectional lead screw penetrates through the front side wall in the chute and is connected with a rotating plate provided outside. Sliders are sleeved on the front and rear sides of the outer wall of the first bidirectional lead screw. Two groups of fixing components are provided on the house main body.
[0005] Further, the fixing component includes a fixing sleeve provided on the house main body. A second bidirectional lead screw is provided in the fixing sleeve. The first movable rod and the second movable rod are respectively sleeved on the left and right outer walls of the second bidirectional lead screw. One end of the first movable rod is hinged to the right side wall of the slider. A fixing plate is provided at one end of the second movable rod. A driven bevel gear is sleeved and installed on the outer wall of the second bidirectional lead screw. A driving bevel gear meshing with the driven bevel gear is provided in the fixing sleeve. A rotating shaft is provided at the bottom of the driving bevel gear. One end of the rotating shaft penetrates through the bottom in the fixing sleeve and is connected with an adjusting knob provided outside.
[0006] Further, two groups of limiting grooves are opened at the top in the fixing sleeve. Limiting blocks matching with the limiting grooves are provided on the outer side walls of the first movable rod and the second movable rod.
[0007] Further, connecting plates are sleeved on the left and right sides of the outer wall of the second bidirectional lead screw. The upper and lower side walls of the two groups of connecting plates are respectively connected with the upper and lower side walls in the fixing sleeve.
[0008] Further, a guiding groove is formed in the top inside the sliding groove, and guiding blocks matching the guiding groove are arranged on the tops of the two groups of sliding blocks.
[0009] Further, the positioning assembly includes a sleeve arranged on the front side wall of the mounting frame. A sliding plate is slidably connected inside the sleeve. A screw rod is arranged on the right side wall of the sliding plate. One end of the screw rod penetrates through the right side wall inside the sleeve and is connected to a rotating knob arranged outside. A positioning plate is arranged on the left side wall of the sliding plate. One end of the positioning plate penetrates through the left side wall inside the sleeve and extends to the outside.
[0010] Further, both the positioning plate and the fixing plate are arranged in a V shape.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows: With the cooperation of the positioning assembly and the fixing assembly, the photovoltaic panel can be installed on the roof without opening holes and using bolts and nuts for installation; with the cooperation of the adjusting assembly, the distance between the two fixing sleeves can be adjusted, so that the distance of the fixing assembly can be adjusted according to needs, improving the installation stability. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic structural diagram of the present utility model;
[0013] Figure 2 is a schematic internal structure diagram of the sleeve of the present utility model;
[0014] Figure 3 is a right view of the internal structure of the sliding groove of the present utility model;
[0015] Figure 4 is a top view of the internal structure of the fixing sleeve of the present utility model.
[0016] In the figure: 1, housing main body; 2, mounting frame; 3, photovoltaic panel; 4, positioning assembly; 40, sleeve; 41, screw rod; 42, sliding plate; 43, positioning plate; 44, rotating knob; 5, sliding groove; 6, adjusting assembly; 60, first bidirectional lead screw; 61, sliding block; 62, rotating plate; 7, fixing assembly; 70, fixing plate; 71, fixing sleeve; 72, first movable rod; 73, second bidirectional lead screw; 74, connecting plate; 75, driven bevel gear; 76, driving bevel gear; 77, adjusting knob; 78, rotating shaft; 79, second movable rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0018] Embodiment 1:
[0019] Please refer to Figures 1-3 , the present invention provides a technical solution: a photovoltaic module applied to a gable roof, including an installation frame 2 provided on the upper surface of a house main body 1, a photovoltaic panel 3 installed on the inner side wall of the installation frame 2, positioning components 4 provided on the front and rear side walls of the installation frame 2, a chute 5 opened on the right side wall of the installation frame 2, and an adjusting component 6 provided in the chute 5. The adjusting component 6 includes a first bidirectional lead screw 60 provided in the chute 5. The rear side wall in the chute 5 is connected to the first bidirectional lead screw 60 through a bearing. One end of the first bidirectional lead screw 60 penetrates through the front side wall in the chute 5 and is connected to a rotating plate 62 provided outside. Sliders 61 are sleeved on both the front and rear sides of the outer wall of the first bidirectional lead screw 60. A guiding groove is opened at the top in the chute 5. Guide blocks matching the guiding groove are provided on the tops of the two sliders 61. Under the action of the guiding groove and the guide blocks, the sliders 61 move more stably on the outer wall of the first bidirectional lead screw 60. Two fixing components 7 are provided on the house main body 1.
[0020] Please refer to Figure 4 , the fixing component 7 includes a fixing sleeve 71 provided on the house main body 1. A second bidirectional lead screw 73 is provided in the fixing sleeve 71. Connecting plates 74 are sleeved on both the left and right sides of the outer wall of the second bidirectional lead screw 73. The upper and lower side walls of the two connecting plates 74 are respectively connected to the upper and lower side walls in the fixing sleeve 71. Under the action of the connecting plates 74, the second bidirectional lead screw 73 rotates more stably. A first movable rod 72 and a second movable rod 79 are respectively sleeved on the left and right outer walls of the second bidirectional lead screw 73. One end of the first movable rod 72 is hinged to the right side wall of the slider 61. A fixing plate 70 is provided at one end of the second movable rod 79. The fixing plate 70 is arranged in a V shape and can better cooperate with the eaves. Two limiting grooves are opened at the top in the fixing sleeve 71. Limiting blocks matching the limiting grooves are provided on the outer side walls of the first movable rod 72 and the second movable rod 79. Under the action of the limiting grooves and the limiting blocks, the first movable rod 72 and the second movable rod 79 move more stably on the outer wall of the second bidirectional lead screw 73. A driven bevel gear 75 is sleeved and installed on the outer wall of the second bidirectional lead screw 73. A driving bevel gear 76 meshing with the driven bevel gear 75 is provided in the fixing sleeve 71. A rotating shaft 78 is provided at the bottom of the driving bevel gear 76. One end of the rotating shaft 78 penetrates through the bottom in the fixing sleeve 71 and is connected to an adjusting knob 77 provided outside.
[0021] Please refer toFigure 2 , the positioning component 4 includes a sleeve 40 provided on the front side wall of the installation frame 2. A sliding plate 42 is slidably connected in the sleeve 40. A screw rod 41 is provided on the right side wall of the sliding plate 42. One end of the screw rod 41 penetrates the right side wall inside the sleeve 40 and is connected to a rotation knob 44 provided outside. A positioning plate 43 is provided on the left side wall of the sliding plate 42. The positioning plate 43 is arranged in a V shape, which can better cooperate with the eaves. One end of the positioning plate 43 penetrates the left side wall inside the sleeve 40 and extends to the outside.
[0022] Working principle: Place the photovoltaic panel 3 on the upper surface of the housing main body 1. The worker rotates the rotation knob 44 to drive the screw rod 41 to rotate. Under the action of the sliding groove and the sliding block, the screw rod 41 drives the sliding plate 42 to move. The sliding plate 42 drives the positioning plate 43 to move. The positioning plate 43 can fix the left eaves. The worker rotates the rotating plate 62 to drive the first bidirectional lead screw 60 to rotate. Under the action of the guiding groove and the guiding block, the two groups of sliders 61 move away from each other on the outer wall of the first bidirectional lead screw 60. The sliders 61 drive the fixing component 7 to move, and the distance between the two groups of fixing components 7 can be adjusted as needed. Then the worker rotates the first movable rod 72 to be parallel to the roof surface. Then the worker rotates the adjustment knob 77 to drive the rotating shaft 78 to rotate. The rotating shaft 78 drives the driving bevel gear 76 to rotate. The driving bevel gear 76 drives the driven bevel gear 75 to rotate. The driven bevel gear 75 drives the second bidirectional lead screw 73 to rotate. Under the action of the limiting groove and the limiting block, the first movable rod 72 and the second movable rod 79 move relative to each other on the outer wall of the second bidirectional lead screw 73. Thus, the fixing plate 70 can fix the eaves, and thus the photovoltaic panel 3 can be installed on the roof.
[0023] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A photovoltaic module applied to a double-pitched roof, comprising a mounting frame (2) provided on the upper surface of a house main body (1), and a photovoltaic panel (3) mounted on the inner side wall of the mounting frame (2), characterized in that: The front and rear side walls of the installation frame (2) are both provided with positioning components (4). A chute (5) is formed in the right side wall of the installation frame (2), and an adjusting component (6) is arranged in the chute (5). The adjusting component (6) includes a first bidirectional lead screw (60) arranged in the chute (5). The rear side wall in the chute (5) is connected with the first bidirectional lead screw (60) through a bearing. One end of the first bidirectional lead screw (60) penetrates through the front side wall in the chute (5) and is connected with a rotating plate (62) arranged outside. Sliders (61) are sleeved on both the front and rear sides of the outer wall of the first bidirectional lead screw (60). Two fixing components (7) are arranged on the housing main body (1).
2. The photovoltaic module applied to the double-pitched roof according to claim 1, wherein: The fixing component (7) includes a fixing sleeve (71) arranged on the housing main body (1). A second bidirectional lead screw (73) is arranged in the fixing sleeve (71). First movable rods (72) and second movable rods (79) are sleeved on the left and right outer walls of the second bidirectional lead screw (73) respectively. One end of the first movable rod (72) is hinged to the right side wall of the slider (61). A fixing plate (70) is arranged at one end of the second movable rod (79). A driven bevel gear (75) is sleeved and installed on the outer wall of the second bidirectional lead screw (73). A driving bevel gear (76) meshing with the driven bevel gear (75) is arranged in the fixing sleeve (71). A rotating shaft (78) is arranged at the bottom of the driving bevel gear (76). One end of the rotating shaft (78) penetrates through the bottom in the fixing sleeve (71) and is connected with an adjusting knob (77) arranged outside.
3. The photovoltaic module applied to the gable roof according to claim 2, wherein: Two limiting grooves are formed in the top in the fixing sleeve (71). Limiting blocks matching with the limiting grooves are arranged on the outer side walls of the first movable rod (72) and the second movable rod (79).
4. The photovoltaic module applied to the gable roof according to claim 2, characterized in that: Connecting plates (74) are sleeved on both the left and right sides of the outer wall of the second bidirectional lead screw (73). The upper and lower side walls of the two connecting plates (74) are respectively connected with the upper and lower side walls in the fixing sleeve (71).
5. The photovoltaic module applied to the double-pitched roof according to claim 1, wherein: A guiding groove is formed in the top in the chute (5). Guiding blocks matching with the guiding groove are arranged on the tops of the two sliders (61).
6. The photovoltaic module applied to a gable roof according to claim 1, wherein: The positioning component (4) includes a sleeve (40) arranged on the front side wall of the installation frame (2). A sliding plate (42) is slidably connected in the sleeve (40). A screw rod (41) is arranged on the right side wall of the sliding plate (42). One end of the screw rod (41) penetrates through the right side wall in the sleeve (40) and is connected with a rotating knob (44) arranged outside. A positioning plate (43) is arranged on the left side wall of the sliding plate (42). One end of the positioning plate (43) penetrates through the left side wall in the sleeve (40) and extends to the outside.
7. The photovoltaic module applied to a gable roof according to claim 6, characterized in that: Both the positioning plate (43) and the fixing plate (70) are arranged in a V shape.