Intelligent energy management device for photovoltaic curtain wall
By assembling the connection structure and components of the photovoltaic curtain wall on the ground and installing them using a crane, the problem of frequent high-altitude operations during photovoltaic curtain wall installation was solved, achieving an efficient and safe construction process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-03-24
AI Technical Summary
In the current photovoltaic curtain wall installation process, installers need to frequently work at heights, resulting in high construction risks.
The design of the connection structure and installation components allows for the assembly of multiple installation frames on the ground, and the efficient installation of multiple frames can be achieved through fixing bolts and cranes, reducing the time spent working at height.
It improved installation efficiency, reduced the time installers spent working at heights, and lowered construction risks.
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Figure CN224037291U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of photovoltaic curtain walls, in particular to a photovoltaic curtain wall intelligent energy management device. BACKGROUND
[0002] The photovoltaic curtain wall intelligent energy management device is a support system of the curtain wall. As the main support structure of the photovoltaic curtain wall, the support system is mainly responsible for bearing the weight of the photovoltaic cells and other components and maintaining the stability thereof. Specifically, the support system includes a plurality of mounting rods, a plurality of mounting frames mounted on the mounting rods, and a photovoltaic curtain wall mounted in the mounting frames. The mounting method is as follows: first, the mounting rods are mounted on the outer wall of the building through pre-buried parts; then, the mounting frames are mounted on the mounting rods through threaded connection or welding; and finally, the photovoltaic curtain wall is mounted in the mounting frames.
[0003] Since a plurality of photovoltaic curtain walls need to be installed along the height direction of the outer wall in the prior art, the installer needs to ride the elevator for multiple times of installation during the entire process, and the continuous aerial work greatly increases the construction risk. Therefore, the present application provides a photovoltaic curtain wall intelligent energy management device to reduce the time of aerial work of the installer and reduce the construction risk. CONTENT OF THE UTILITY MODEL
[0004] In view of the deficiencies in the prior art, the present application aims to provide a photovoltaic curtain wall intelligent energy management device to reduce the time of aerial work of the installer and reduce the construction risk.
[0005] The above-mentioned purpose of the present application is achieved by the following technical solution: a photovoltaic curtain wall intelligent energy management device includes a plurality of mounting rods, a plurality of mounting frames, and a photovoltaic curtain wall mounted in the mounting frames. The periphery of each mounting frame is provided with a connecting structure for connecting the mounting frames to each other. The connecting structure includes a sliding groove formed in the periphery of the mounting frame, a connecting piece slidingly connected to the mounting frame along the width direction of the sliding groove, and a fixing structure provided in the connecting piece for fixation.
[0006] Further, the fixing structure includes a fixing screw hole provided in the middle of the connecting piece and a fixing bolt threadedly connected to the connecting piece through the fixing screw hole.
[0007] By adopting the technical scheme, firstly, the installer reasonably splices multiple installation frames together on the ground according to the width of the building outer wall, then slides the connecting pieces to make the connecting pieces of the multiple installation frames stacked together, then twists the fixing bolts to make the fixing bolts pass through the fixing screw holes and the connecting pieces stacked together, so that the multiple installation frames are fixed together, then the installation rod is installed on the building outer wall through the embedded part, then the multiple installation frames fixed together are hoisted to the installation position by using a hoisting machine or other high-altitude construction instruments, the installer only needs to take the elevator and move to the installation position to install the installation frame on the installation rod, so that the installer can install multiple installation frames at a time, the installation efficiency of the installer is greatly improved, the time of high-altitude operation of the installer is reduced, and the purpose of reducing the danger of construction is achieved.
[0008] Further, the connecting pieces at the upper end and the lower end of the multiple installation frames extend above the connecting pieces at the left side and the right side of the installation frame.
[0009] By adopting the technical scheme, the installation frame is uniformly surrounded by the connecting pieces, and the positions of the four corners of the multiple installation frames after splicing are prevented from being spaced.
[0010] Further, the installation rod is provided with an installation groove, and the installation frame is provided with an installation assembly installed on the installation rod through the installation groove.
[0011] Further, the installation assembly comprises a mounting column fixedly arranged on the back of the installation frame and shaped as a quadrilateral, an extrusion plate arranged on the four sides of the mounting column, and an extrusion spring arranged between the extrusion plate and the mounting column and used for pushing the extrusion plate to extrude the side wall of the installation groove.
[0012] By adopting the technical scheme, although the connection structure can make the multiple installation frames combined together to improve the installation efficiency of the installer, the combined installation frames also make it very inconvenient for the installer to weld or threadedly connect the installation frame on the installation rod, and the installation groove and the installation assembly solve this technical problem. Through the arrangement of the installation assembly, when the installer installs the multiple installation frames on the installation rod, the installer only needs to instruct the hoisting personnel to make the mounting column align with the installation groove, then the installer pushes the installation frame to make the extrusion plates on the four sides of the mounting column extrude the side wall of the installation groove to compress the extrusion spring, so that the mounting column is inserted into the installation groove, and the extrusion spring that is compressed exerts a pushing force on the extrusion plate to make the extrusion plate abut against the side wall of the installation groove, thereby improving the friction between the mounting column and the installation rod, preventing the installation frame from being separated from the installation rod, completing the installation of the installation frame, and making it more convenient for the installer to install the installation frame on the installation rod.
[0013] Further, the inner wall of the mounting groove is fixedly provided with extruded rubber.
[0014] By adopting the above technical scheme, the friction between the mounting column and the mounting rod is further improved by the setting of the extruded rubber, so that the connection between the mounting frame and the mounting rod is more stable.
[0015] Further, one end of the extruded rubber close to the outlet of the mounting groove is provided with a circular arc part.
[0016] By adopting the above technical scheme, when the mounting column is inserted into the mounting groove, the end surface of the extruded plate contacts the circular arc part, and slides into the mounting groove along the circular arc surface of the circular arc part and abuts against the extruded rubber, so that the insertion of the mounting column into the mounting groove is more smooth.
[0017] Further, the fixing structure further comprises two fixing rods for enhancing the stability of the installation of the mounting frame, the fixing rod is provided with a plurality of connecting screw holes for butt jointing the fixing screw holes, and the fixing rod is provided with a connecting bolt threadedly connected to the fixing rod through the connecting screw hole.
[0018] By adopting the above technical scheme, after the installation personnel completes the installation of all the mounting frames, the fixing rods are installed on both sides of the building outer wall, the connecting screw holes on the fixing rods are butt jointed to the fixing screw holes on the connecting pieces of the mounting frames located on both sides of the mounting frames which have been installed, and then the connecting pieces are threadedly connected to the fixing rods by the connecting bolts, so that both sides of the mounting frames which have been installed are limited by the fixing rods, thereby improving the stability of the installation of the mounting frames.
[0019] In summary, the present application has at least one of the following beneficial technical effects:
[0020] 1. By the setting of the connecting structure, a plurality of mounting frames are first spliced together on the ground according to the width of the building outer wall, then the connecting pieces are slid to stack the connecting pieces of the plurality of mounting frames together, then the fixing bolts are screwed to pass through the connecting pieces stacked together, so that the plurality of mounting frames are fixed together, then the mounting rods are installed on the building outer wall through the embedded parts, then the plurality of mounting frames fixed together are hoisted to the installation position by using a hoisting machine or other high-altitude construction instruments, and the installation personnel only need to move to the installation position by taking the elevator and install the mounting frames on the mounting rods, so that the installation personnel can install a plurality of mounting frames at one time, greatly improving the installation efficiency of the installation personnel, thereby achieving the purpose of reducing the time of high-altitude operation of the installation personnel and reducing the danger of construction. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a schematic diagram of the overall structure of the embodiment;
[0022] Figure 2 is the specific structure diagram of the mounting rod;
[0023] Figure 3 is the specific structure diagram of the back of the mounting frame.
[0024] The mounting frame 2 is connected by the connecting structure 3, and the mounting rod 1 is installed on the building outer wall through the pre-buried part. The mounting personnel only needs to move to the installation position by taking the elevator, and then the mounting frame 2 can be installed on the mounting rod 1, so that the mounting personnel can install multiple mounting frames 2 at a time, greatly improving the installation efficiency of the mounting personnel, thereby achieving the purpose of reducing the time of the mounting personnel's high-altitude operation and reducing the danger of construction. DETAILED DESCRIPTION
[0025] The application will be further described in detail below with reference to the accompanying drawings.
[0026] Embodiment, refer to Figure 1 The photovoltaic curtain wall intelligent energy management device comprises a plurality of mounting rods 1, a plurality of mounting frames 2, and a photovoltaic curtain wall 20 installed in the mounting frame 2. The periphery of the mounting frame 2 is provided with a connecting structure 3 for connecting the mounting frames 2 to each other. The connecting structure 3 comprises a sliding groove 30 opened on the periphery of the mounting frame 2, a connecting piece 31 slidably connected to the mounting frame 2 along the width direction of the sliding groove 30, and a fixing structure 4 provided in the connecting piece 31 for fixing. The fixing structure 4 comprises a fixing screw hole 40 opened in the middle of the connecting piece 31 and a fixing screw 41 threadedly connected to the connecting piece 31 through the fixing screw hole 40. First, the installation personnel reasonably splice the mounting frames 2 together on the ground according to the width of the building outer wall, then slide the connecting piece 31 to make the connecting pieces 31 of the mounting frames 2 stacked together, then twist the fixing screw 41 to make the fixing screw 41 pass through the connecting pieces 31 stacked together through the fixing screw hole 40, so that the mounting frames 2 are fixed together, then install the mounting rod 1 on the building outer wall through the pre-buried part, then use a hoist or other high-altitude construction instrument to hoist the mounting frames 2 fixed together to the installation position. The installation personnel only needs to move to the installation position by taking the elevator, and then the mounting frame 2 can be installed on the mounting rod 1, so that the mounting personnel can install multiple mounting frames 2 at a time, greatly improving the installation efficiency of the mounting personnel, thereby achieving the purpose of reducing the time of the mounting personnel's high-altitude operation and reducing the danger of construction.
[0027] In this embodiment, the connecting pieces 31 at the upper and lower ends of the mounting frames 2 extend to above the connecting pieces 31 on the left and right sides of the mounting frames 2, so that the mounting frames 2 are evenly surrounded by the connecting pieces 31, preventing the four corners of the spliced mounting frames 2 from being spaced apart.
[0028] Although the arrangement of the connecting structure 3 can enable multiple mounting frames 2 to be combined together to improve the installation efficiency of the installer, the combined mounting frames 2 also make it very inconvenient for the installer to weld or threadedly connect the mounting frames 2 to the mounting rod 1. To solve this technical problem, the present embodiment is characterized in that Figure 2 and Figure 3 The present embodiment is provided with a mounting recess 10 on the mounting rod 1, and the mounting frame 2 is provided with a mounting assembly 5 on the back surface thereof for mounting on the mounting rod 1 through the mounting recess 10. The mounting assembly 5 includes a mounting column 50 fixedly arranged on the back surface of the mounting frame 2 in a quadrilateral shape, an extrusion plate 51 arranged on the four faces of the mounting column 50, and an extrusion spring 52 arranged between the extrusion plate 51 and the mounting column 50 for pushing the extrusion plate 51 to extrude the side wall of the mounting recess 10. Through the arrangement of the mounting assembly 5, when the installer installs multiple mounting frames 2 on the mounting rod 1, the installer only needs to instruct the hoisting personnel to align the mounting column 50 with the mounting recess 10, and then push the mounting frame 2 to make the extrusion plate 51 on the four faces of the mounting column 50 press the side wall of the mounting recess 10 to compress the extrusion spring 52, so that the mounting column 50 is inserted into the mounting recess 10, and the compressed extrusion spring 52 applies a pushing force to the extrusion plate 51 to make the extrusion plate 51 abut against the side wall of the mounting recess 10, thereby improving the friction between the mounting column 50 and the mounting rod 1, preventing the mounting frame 2 from being separated from the mounting rod 1, and completing the installation of the mounting frame 2, so that the installer can more conveniently install the mounting frame 2 on the mounting rod 1.
[0029] In the present embodiment, the extrusion rubber 11 is fixedly arranged on the inner wall of the mounting recess 10. Through the arrangement of the extrusion rubber 11, the friction between the mounting column 50 and the mounting rod 1 is further improved, and the connection between the mounting frame 2 and the mounting rod 1 is more stable.
[0030] In the present embodiment, one end of the extrusion rubber 11 close to the outlet of the mounting recess 10 is provided with a circular arc portion. Through the arrangement of the circular arc portion, when the mounting column 50 is inserted into the mounting recess 10, the end surface of the extrusion plate 51 contacts the circular arc portion and slides into the mounting recess 10 along the arc surface of the circular arc portion to abut against the extrusion rubber 11, so that the insertion of the mounting column 50 into the mounting recess 10 is more smooth.
[0031] The fixing structure 4 also includes two fixing rods 42 for enhancing the stability of the installation of the mounting frame 2. The fixing rods 42 are provided with a plurality of connecting screw holes 43 which are in alignment with the fixing screw holes 40. The fixing rods 42 are provided with connecting bolts 44 which are screwed into the fixing rods 42 through the connecting screw holes 43. After the installation of all the mounting frames 2 is completed, the fixing rods 42 are installed on the two sides of the building outer wall. The connecting screw holes 43 of the fixing rods 42 are aligned with the fixing screw holes 40 of the connecting plates 31 of the mounting frames 2 on the two sides of the building outer wall. Then the connecting bolts 44 are screwed into the connecting plates 31 through the fixing rods 42, so that the two sides of the mounting frames 2 are limited by the fixing rods 42, thereby enhancing the stability of the installation of the mounting frames 2.
[0032] Specific implementation process: first, the installer reasonably splices a plurality of mounting frames 2 together on the ground according to the width of the building outer wall. Then the connecting plates 31 are slid to stack the connecting plates 31 of the plurality of mounting frames 2 together. Then the fixing bolts 41 are screwed to pass through the connecting plates 31 stacked together to fix the plurality of mounting frames 2 together. Then the mounting rods 1 are installed on the building outer wall through the embedded parts. Then the plurality of mounting frames 2 fixed together are hoisted to the installation position by using a hoisting machine or other high-altitude construction equipment. The installer only needs to take the elevator to the installation position and then push the mounting frames 2 so that the pressing plates 51 on the four sides of the mounting columns 50 compress the springs 52 by rubbing against the arc part of the extruded rubber 11, so that the mounting columns 50 are inserted into the mounting grooves 10. Then the fixing rods 42 are installed on the two sides of the building outer wall. The connecting screw holes 43 of the fixing rods 42 are aligned with the fixing screw holes 40 of the connecting plates 31 of the mounting frames 2 on the two sides of the building outer wall. Then the connecting bolts 44 are screwed into the connecting plates 31 through the fixing rods 42, so that the two sides of the mounting frames 2 are limited by the fixing rods 42, thereby enhancing the stability of the installation of the mounting frames 2.
[0033] The embodiments of the specific implementation are the preferred embodiments of the application, but not limit the protection scope of the application. Therefore, any equivalent changes made according to the structure, shape, principle of the application should be covered in the protection scope of the application.
Claims
1. A photovoltaic curtain wall intelligent energy management device, characterized in that, It includes multiple mounting rods (1), multiple mounting frames (2), and a photovoltaic curtain wall (20) installed in the mounting frames (2). The multiple mounting frames (2) are provided with a connection structure (3) around their periphery for connecting the multiple mounting frames (2) to each other. The connection structure (3) includes a groove (30) opened on the periphery of the mounting frame (2), a connecting piece (31) slidably connected to the mounting frame (2) along the width direction of the groove (30), and a fixing structure (4) provided in the connecting piece (31) for fixing.
2. The intelligent energy management device for photovoltaic curtain walls according to claim 1, characterized in that, The fixing structure (4) includes a fixing screw hole (40) opened in the middle of the connecting piece (31) and a fixing bolt (41) threaded to the connecting piece (31) through the fixing screw hole (40).
3. The intelligent energy management device for photovoltaic curtain walls according to claim 1, characterized in that, The connecting pieces (31) at the top and bottom ends of the multiple mounting frames (2) extend to the top of the connecting pieces (31) on the left and right sides of the mounting frame (2).
4. The intelligent energy management device for photovoltaic curtain walls according to claim 1, characterized in that, The mounting rod (1) has a mounting groove (10), and the mounting frame (2) has a mounting assembly (5) on the back side that is mounted on the mounting rod (1) through the mounting groove (10).
5. The intelligent energy management device for photovoltaic curtain walls according to claim 4, characterized in that, Each of the mounting grooves (10) has a compression rubber (11) fixedly installed on its inner wall.
6. The intelligent energy management device for photovoltaic curtain walls according to claim 5, characterized in that, The extruded rubber (11) has an arc-shaped part at one end near the outlet of the mounting groove (10).
7. The intelligent energy management device for photovoltaic curtain walls according to claim 2, characterized in that, The fixing structure (4) also includes two fixing rods (42) for enhancing the stability of the installation frame (2). The fixing rods (42) are provided with multiple connecting screw holes (43) with mating fixing screw holes (40). The fixing rods (42) are provided with connecting bolts (44) that are threaded to the fixing rods (42) through the connecting screw holes (43).