Photovoltaic sound insulation assembly
By embedding photovoltaic panels inside the sound insulation panels, the dual functions of sound insulation and power generation are achieved, solving the problem of the single function of traditional sound insulation panels, improving resource utilization and simplifying the installation process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEFEI SUNGROW RENEWABLE ENERGY SCI & TECH CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-05-12
AI Technical Summary
Traditional soundproof panels have a single function and fail to make full use of their physical location and structural characteristics, resulting in a waste of resources.
设计一种光伏隔音组件,通过在隔音板内嵌入光伏板,实现隔音和发电功能,并通过滑动连接机制简化安装过程。
It improved resource utilization, simplified the installation process, shortened the construction cycle, and enhanced installation efficiency and safety.
Smart Images

Figure CN224227680U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of sound insulation board technology, and in particular to a photovoltaic sound insulation component. Background Technology
[0002] Sound barriers have been installed along roadsides near residential areas in many cities to reduce the impact of traffic noise on residents' lives. However, traditional sound barriers have a single function, mainly focusing on sound insulation, and have failed to fully utilize their physical location and structural characteristics to achieve more functions, thus resulting in a certain waste of resources. Utility Model Content
[0003] The main purpose of this application is to propose a photovoltaic sound insulation component that can both reduce noise on roads and generate photovoltaic power, thereby improving resource utilization.
[0004] To achieve the above objectives, the photovoltaic sound insulation module proposed in this application includes:
[0005] The first mounting frame includes a plurality of first frame strips connected in sequence and configured to form a first receiving groove, wherein a first mounting port communicating with the first receiving groove is formed between two first frame strips;
[0006] The second mounting frame includes a plurality of second frame strips connected in sequence and configured to form a second receiving groove;
[0007] A photovoltaic sound insulation panel is installed in the second receiving groove;
[0008] One of the first frame strip and the second frame strip is provided with a first sliding groove, and the other is provided with a sliding part that is slidably connected to the first sliding groove, so that the second mounting frame can be inserted into the first receiving groove from the first mounting port.
[0009] In one embodiment, a second mounting port communicating with the second receiving groove is formed between the two second frame bars, and the photovoltaic sound insulation panel can be inserted into the second receiving groove through the second mounting port.
[0010] In one embodiment, the sliding part is rotatably disposed within the first groove, so that the second mounting frame rotates relative to the first mounting frame.
[0011] In one embodiment, the second mounting frame is provided in multiple ways, and a connecting part is provided on an adjacent side of two adjacent second mounting frames, and the two adjacent connecting parts are rotatably connected.
[0012] In one embodiment, the second mounting openings of at least two adjacent second mounting frames are disposed close to each other, and the connecting portion is disposed at the edge of the second mounting opening.
[0013] In one embodiment, the second mounting frame further includes a stop bar that extends along the edge of the second mounting opening and connects two second frame bars. The connecting portion is disposed on the stop bar, and two adjacent connecting portions are stacked and rotatably connected by a pin.
[0014] In one embodiment, a first limiting groove is provided on the first frame bar of the first mounting frame relative to the first mounting opening. The first limiting groove is interconnected with the first receiving groove and the first sliding groove. The second frame bar of the second mounting frame relative to the second mounting opening is at least partially accommodated in the first limiting groove.
[0015] In one embodiment, a second sliding groove is provided on the first frame strip adjacent to the first mounting opening in the second mounting frame. The second sliding groove is connected to the second receiving groove, and the photovoltaic sound insulation board is inserted into the second sliding groove.
[0016] In one embodiment, a second limiting groove is provided on the second frame strip opposite to the second mounting opening in the second mounting frame. The second limiting groove is interconnected with the second receiving groove and the second sliding groove, and the edge of the photovoltaic sound insulation board is accommodated in the second limiting groove.
[0017] In one embodiment, a third limiting groove is provided on the first frame strip opposite to the first mounting opening in the first mounting frame. The third limiting groove is located on the side of the first frame strip away from the first mounting opening, and the second mounting frame portion located near the first mounting opening is accommodated in the third limiting groove of the adjacent first mounting frame.
[0018] In one embodiment, the first frame strip adjacent to the first mounting port in the first mounting frame protrudes from the second mounting frame at the end where the first mounting port is located and overlaps the end face of the groove sidewall of the third limiting groove.
[0019] In one embodiment, the photovoltaic sound insulation panel includes a sound insulation panel and a photovoltaic panel, wherein the photovoltaic panel is disposed on at least one side of the sound insulation panel.
[0020] The technical solution of this application sets a photovoltaic sound insulation board in the second mounting frame and installs the second mounting frame in the first mounting frame, so that the photovoltaic sound insulation component not only provides a good sound insulation effect, but also realizes the function of photovoltaic power generation. The photovoltaic sound insulation component has multiple uses and improves the utilization rate of the photovoltaic sound insulation component.
[0021] Meanwhile, by providing a first groove in one of the first frame bars and a sliding part that is slidably connected to the first groove in the other, the sliding mechanism formed between the first frame bars and the second frame bars allows the second mounting frame to be smoothly installed into the first receiving groove from the first mounting opening, thereby simplifying the installation process of the first mounting frame and the second mounting frame, improving installation efficiency, and shortening the construction cycle. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0023] Figure 1 This is a schematic diagram of the structure of an embodiment of the photovoltaic sound insulation module provided in this application;
[0024] Figure 2 for Figure 1 Another structural diagram of the photovoltaic sound insulation component;
[0025] Figure 3 This is a structural schematic diagram of the installation process of a photovoltaic sound insulation component in one embodiment;
[0026] Figure 4 for Figure 3 Another structural diagram of the photovoltaic sound insulation component;
[0027] Figure 5 A schematic diagram of a first mounting frame embodiment provided in this application;
[0028] Figure 6 for Figure 5 A magnified view of a section at point A in the middle;
[0029] Figure 7 A structural schematic diagram of the first mounting frame provided in this application from another perspective;
[0030] Figure 8 for Figure 7 A magnified view of a section at point B in the middle;
[0031] Figure 9 This is a schematic diagram of a structure of an embodiment of the second mounting frame provided in this application;
[0032] Figure 10 This is a structural schematic diagram of the second mounting frame provided in this application from another perspective;
[0033] Figure 11This is a schematic diagram illustrating an application scenario of an embodiment of the photovoltaic sound insulation component provided in this application;
[0034] Figure 12 for Figure 11 A magnified view of a section at point C.
[0035] Explanation of icon numbers:
[0036] 100, First mounting frame; 200, Second mounting frame; 300, Photovoltaic sound insulation board; 110, First receiving groove; 120, First mounting opening; 130, First sliding groove; 131, Groove opening; 132, Groove bottom; 140, First frame strip; 141, First limiting groove; 142, Third limiting groove; 210, Second receiving groove; 220, Second mounting opening; 230, Sliding part; 240, Connecting part; 250, Stop bar; 260, Second frame strip; 261, Second limiting groove; 262, Second sliding groove.
[0037] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0039] It should be noted that if the embodiments of this application involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0040] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution that simultaneously satisfies A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0041] This application proposes a photovoltaic sound insulation component.
[0042] Please see Figure 1 , Figure 5 and Figure 9 In one embodiment of this application, the photovoltaic sound insulation component includes a first mounting frame 100, a second mounting frame 200, and a photovoltaic sound insulation panel 300. The first mounting frame 100 includes a plurality of first frame strips 140 connected in sequence and configured to form a first receiving groove 110, wherein a first mounting opening 120 communicating with the first receiving groove 110 is formed between two first frame strips 140. The second mounting frame 200 includes a plurality of second frame strips 260 connected in sequence and configured to form a second receiving groove 210. The photovoltaic sound insulation panel 300 is installed in the second receiving groove 210. One of the first frame strips 140 and the second frame strips 260 is provided with a first sliding groove 130, and the other is provided with a sliding part 230 slidably connected to the first sliding groove 130, so that the second mounting frame 200 can be inserted into the first receiving groove 110 from the first mounting opening 120.
[0043] Specifically, the photovoltaic sound insulation components are used to install on both sides of the road, achieving road sound insulation while also generating photovoltaic power. The first mounting frame 100 includes multiple first frame strips 140 connected sequentially to form a first receiving groove 110. These multiple first frame strips 140 are interconnected to form a space (i.e., the first receiving groove 110) that can accommodate a second mounting frame 200. A first mounting opening 120 is provided between two of the frame strips, allowing the second mounting frame 200 to be easily and quickly inserted into the first receiving groove 110.
[0044] For a reference to typical application scenarios of photovoltaic sound insulation modules, please refer to [link / reference]. Figure 11Photovoltaic sound insulation components are typically installed on concrete blocks along roadsides. During the pouring of concrete blocks, the reinforcing steel bars are exposed on the upper surface. The first mounting frame 100 is erected on the concrete block and can be fixed to it by welding to the exposed steel bars. Of course, photovoltaic sound insulation components can also be installed along roadsides or in other locations requiring noise reduction and insulation in other ways.
[0045] The second mounting frame 200 includes multiple second frame strips 260 connected sequentially and configured to form a second receiving groove 210. The second mounting frame 200 is used to mount the photovoltaic sound insulation panel 300. The photovoltaic sound insulation panel 300 is installed in the second receiving groove 210 formed by the second mounting frame 200 and is responsible for converting solar energy into electrical energy and providing sound insulation. Thus, it can achieve both noise reduction and sound insulation on the road and photovoltaic power generation, improving resource utilization.
[0046] The length and width of the first mounting frame 100 and the second mounting frame 200 can be customized according to requirements, providing high flexibility and adaptability. Each first mounting frame 100 can accommodate only one second mounting frame 200, or multiple second mounting frames 200 can be installed depending on the length of the first mounting frame 100; each second mounting frame 200 can accommodate only one photovoltaic sound insulation panel 300, or multiple photovoltaic sound insulation panels 300 can be installed depending on the length of the second mounting frame 200.
[0047] By providing a first groove 130 in one of the first frame strips 140 and 260, and a sliding part 230 slidably connected to the first groove 130 in the other, the second mounting frame 200 can be smoothly inserted into the first receiving groove 110 from the first mounting opening 120. Thus, through the sliding mechanism formed between the first frame strips 140 and 260, the second mounting frame 200 can be quickly and easily installed into the first mounting frame 100, thereby simplifying the installation process of the first mounting frame 100 and the second mounting frame 200, improving installation efficiency, and shortening the construction cycle. Simultaneously, the second mounting frame 200 can be easily disassembled through the sliding mechanism for inspection or replacement of the photovoltaic sound insulation panel 300, facilitating later maintenance.
[0048] The technical solution of this application, by setting a photovoltaic sound insulation panel 300 inside the second mounting frame 200 and installing the second mounting frame 200 inside the first mounting frame 100, enables the photovoltaic sound insulation component to not only provide good sound insulation effect but also realize the function of photovoltaic power generation. The photovoltaic sound insulation component has multiple uses and improves resource utilization. At the same time, by setting a first groove 130 in one of the first frame strips 140 and the second frame strip 260, and setting a sliding part 230 that is slidably connected to the first groove 130 in the other, the sliding mechanism formed between the first frame strip 140 and the second frame strip 260 allows the second mounting frame 200 to be smoothly installed into the first receiving groove 110 from the first mounting opening 120, thereby simplifying the installation process of the first mounting frame 100 and the second mounting frame 200, improving installation efficiency, and shortening the construction cycle.
[0049] In one implementation, please refer to Figure 1 , Figure 5 and Figure 9 A second mounting port 220 communicating with the second receiving groove 210 is formed between the two second frame strips 260, and the photovoltaic sound insulation board 300 can be inserted into the second receiving groove 210 through the second mounting port 220.
[0050] A second mounting opening 220 is formed between two adjacent second frame strips 260, and the second mounting opening 220 communicates with the second receiving groove 210. The photovoltaic sound insulation panel 300 is inserted into the second receiving groove 210 through the second mounting opening 220, thereby fixing it in the second mounting frame 200. By providing the second mounting opening 220, the photovoltaic sound insulation panel 300 can be easily inserted through the second mounting opening 220 without complicated tools or additional operating steps, further enhancing the convenience of photovoltaic sound insulation component installation; if the photovoltaic sound insulation panel 300 is damaged or its performance degrades, it can be quickly replaced through the second mounting opening 220 without disassembling the entire photovoltaic sound insulation component, reducing maintenance costs and time.
[0051] During installation, the second mounting frame 200 can be first inserted into the first receiving groove 110 through the first mounting port 120 via the sliding part 230 engaging with the first sliding groove 130, thus completing the assembly of the first mounting frame 100 and the second mounting frame 200. Then, the photovoltaic sound insulation board 300 can be inserted into the second receiving groove 210 through the second mounting port 220 to complete the overall assembly of the photovoltaic sound insulation component. Alternatively, the photovoltaic sound insulation board 300 can be first inserted into the second receiving groove 210 through the second mounting port 220 to complete the assembly of the second mounting frame 200. Then, the assembled second mounting frame 200 can be inserted into the first receiving groove 110 through the first mounting port 120 via the sliding part 230 engaging with the first sliding groove 130 to complete the overall assembly of the photovoltaic sound insulation component.
[0052] In other embodiments, the second mounting port 220 may not be provided, and the second mounting frame 200 may fix the photovoltaic sound insulation board 300 by clamping, snapping or other means.
[0053] In one implementation, please refer to Figure 1 , Figure 3 and Figure 9 The sliding part 230 is rotatably disposed in the first sliding groove 130 so that the second mounting frame 200 rotates relative to the first mounting frame 100.
[0054] The sliding part 230 is disposed within the first sliding groove 130 and can rotate within the first sliding groove 130, allowing the second mounting frame 200 (and the photovoltaic sound insulation panel 300 installed therein) to be rotated and adjusted at a certain angle relative to the first mounting frame 100. The rotation axis direction of the second mounting frame 200 is set at an angle to the extension direction of the first sliding groove 130. The second mounting frame 200 is first inserted into the first receiving groove 110 through a sliding fit with the first mounting frame 100, and then rotated with the first mounting frame 100 so that the plane on which the second mounting frame 200 is located is set at an angle to the plane on which the first mounting frame 100 is located, so that the second mounting opening 220 can face the inside of the road, so that construction workers can complete the installation of the photovoltaic sound insulation panel 300 from the inside of the road. Especially when installing photovoltaic sound insulation components on elevated roads, construction workers can stand on the inside of the road to install them instead of being on the outside, making the installation method safer. After the photovoltaic sound insulation panel 300 is installed, the second mounting frame 200 can be rotated so that the plane of the second mounting frame 200 is parallel to and located within the plane of the first mounting frame 100, and the second mounting frame 200 is located within the first receiving groove 110. The second mounting frame 200 can slide and rotate freely within the first mounting frame 100, which not only improves the assembly efficiency between the first mounting frame 100 and the second mounting frame 200, but also facilitates flexible installation of the photovoltaic sound insulation panel 300, thereby improving the installation efficiency of the photovoltaic sound insulation components and the safety factor during construction.
[0055] In one implementation, please refer to Figure 1 , Figure 3 and Figure 9 Multiple second mounting frames 200 are provided, and a connecting part 240 is provided on the adjacent side of two adjacent second mounting frames 200, and two adjacent connecting parts 240 are rotatably connected.
[0056] Each of two adjacent second mounting frames 200 has a connecting portion 240 on one side. The two adjacent connecting portions 240 are linked together by a rotatable connection. The second mounting frames 200 are connected to adjacent second mounting frames 200 via the connecting portions 240. Rotating one second mounting frame 200 will cause the connected second mounting frame 200 to rotate as well, creating a linked mechanism that simplifies the installation of the photovoltaic sound insulation panel 300 and improves installation efficiency. Simultaneously, the connection between adjacent second mounting frames 200 via the connecting portions 240 improves the reliability of the photovoltaic sound insulation component. The connecting portion 240 can be formed within the second mounting frame 200, or it can be a separate component connected to the second mounting frame 200, or it can be a separate connector comprising two connecting portions 240 located on adjacent second mounting frames 200.
[0057] The second mounting frames 200 are installed one by one into the first mounting frames 100 and connected, and can slide and rotate within the first mounting frames 100. This installation process can be further simplified and improved in efficiency. Before installing the second mounting frames 200 into the first mounting frames 100, several second mounting frames 200 can be pre-connected via connecting parts 240 (the photovoltaic sound insulation board 300 can also be installed into the second mounting frames 200 at this step, or it can be omitted). This allows several second mounting frames 200 to be stacked together, saving space, facilitating transportation, and improving installation efficiency.
[0058] In other embodiments, the connecting part 240 may be omitted, and each second mounting frame 200 may be able to rotate independently. In this way, when the photovoltaic sound insulation board 300 in a single second mounting frame 200 is inspected and maintained, it will not affect the photovoltaic sound insulation boards 300 in other second mounting frames 200.
[0059] In one implementation, please refer to Figure 1 , Figure 3 and Figure 9 At least two adjacent second mounting frames 200 have their second mounting openings 220 close to each other, and the connecting portion 240 is located at the edge of the second mounting opening 220.
[0060] The proximity of the second mounting port 220 to the setting and the position of the connecting part 240 simplifies the installation process of the photovoltaic sound insulation panel 300. In adjacent second mounting frames 200, the positions of their respective second mounting ports 220 are close to each other. By rotating the second mounting frame 200, both second mounting ports 220 face the same side simultaneously, making it easier for construction workers to operate when installing the photovoltaic sound insulation panel 300 and reducing the amount of adjustment work. The photovoltaic sound insulation panels 300 in both second mounting frames 200 can be installed or removed in the same position, reducing the workload for construction workers.
[0061] In other embodiments, the second mounting openings 220 of at least two adjacent second mounting frames 200 may be arranged opposite to each other; or the second mounting openings 220 of at least two adjacent second mounting frames 200 may be distributed in the same direction. The connecting portion 240 may also be provided on the second frame strip 260.
[0062] In one implementation, please refer to Figure 1 , Figure 3 , Figure 4 and Figure 9 The second mounting frame 200 also includes a baffle 250, which extends along the edge of the second mounting opening 220 and connects two second frame strips 260. A connecting part 240 is provided on the baffle 250, and two adjacent connecting parts 240 are stacked and rotatably connected by a pin.
[0063] The retaining strip 250 extends along the edge of the second mounting opening 220 without obstructing it. The retaining strip 250 not only connects two adjacent second frame strips 260, improving the overall structural strength of the second mounting frame 200 and the stability of the connection with the second frame strips 260, but also provides additional support and protection for the photovoltaic sound insulation panel 300, making it more securely fixed within the second receiving groove 210 and reducing the risk of accidental detachment due to external factors (such as strong winds, vibrations, etc.). Simultaneously, the retaining strip 250 also provides an installation position for the connecting part 240. By placing the connecting part 240 on the retaining strip 250, the strength and reliability of the connection between adjacent second mounting frames 200 are enhanced. As the base of the connecting part 240, the retaining strip 250 can better disperse the mechanical stress caused by rotation, reducing the risk of localized damage.
[0064] In other embodiments, the stop bar 250 may be omitted, and the connecting part 240 may be directly connected to the end of the first frame bar 140.
[0065] The connecting part 240 is provided with a pin hole through which a pin passes to rotatably connect the two connecting parts 240. Pin-shaft connections are generally intuitive and easy to operate, making the connection of the connecting parts 240 simpler and faster. When maintenance or replacement of a single second mounting frame 200 is required, the connected second mounting frames 200 can be separated by simply disassembling the pin, reducing the impact on the overall structure and lowering maintenance difficulty. Pin-shaft connections allow for appropriate displacement and rotation, which can alleviate thermal expansion and contraction and mechanical stress caused by factors such as temperature changes and wind pressure to a certain extent, thereby helping to extend the service life of the entire system.
[0066] In other embodiments, two adjacent second mounting frames 200 may also be connected by hinges or flexible materials.
[0067] In one implementation, please refer to Figure 3 , Figure 5 and Figure 9 The first groove 130 is provided on the first frame 140, and the sliding part 230 is provided on the second frame 260.
[0068] The first groove 130 is located on the first frame strip 140 and provides guidance and support for the second mounting frame 200. The sliding part 230 is located on the second frame strip 260. The second mounting frame 200 slides and positions itself by engaging with the first groove 130 of the first frame strip 140 through the sliding part 230 on the second frame strip 260. When the second mounting frame 200 needs to be inserted into the first mounting frame 100, the sliding part 230 on the second frame strip 260 slides along the first groove 130 on the first frame strip 140, allowing the second mounting frame 200 to easily enter the first receiving slot 110 from the first mounting opening 120, and to be disassembled or adjusted as needed. The engagement of the first groove 130 and the sliding part 230 provides clear guidance, ensuring that the second mounting frame 200 maintains the correct position and orientation during insertion, avoiding misalignment caused by human error. The sliding part 230 is located on the second frame strip 260, so that the sliding part 230 can be observed directly during installation, making it convenient for the sliding part 230 to be installed into the first slide groove 130.
[0069] In other embodiments, the first slide groove 130 may be provided on the second frame strip 260, and the sliding part 230 may be provided on the first frame strip 140. Alternatively, the first slide groove 130 may be provided on the first frame strip 140, and the second frame strip 260 may be installed in the first slide groove 130 as the sliding part 230. In this case, the first mounting frame 100 and the second mounting frame 200 can only slide relative to each other and cannot rotate relative to each other.
[0070] In one implementation, please refer to Figure 7 and Figure 8 The width of the opening 131 of the first groove 130 is smaller than the width of its bottom 132.
[0071] The first slide groove 130 extends through the end face of the first frame along its length direction, and a port communicating with the first slide groove 130 is formed on the end face of the first frame along its length direction. The groove opening 131 of the first slide groove 130 is narrow and the groove bottom 132 is wide, so that the sliding part 230 inserted therein can only enter from the port of the first slide groove 130, and once it enters the first slide groove 130, it is difficult to easily detach, thereby ensuring that the sliding part 230 will not accidentally detach from the first slide groove 130 during normal use.
[0072] In other embodiments, the width of the opening 131 of the first groove 130 may also be the same as the width of its bottom 132.
[0073] In one implementation, please refer to Figure 1 , Figure 2 , Figure 5 and Figure 6 The first frame 140 in the first mounting frame 100, which is opposite to the first mounting opening 120, is provided with a first limiting groove 141. The first limiting groove 141 is connected to the first receiving groove 110 and the first sliding groove 130. The second frame 260 in the second mounting frame 200, which is opposite to the second mounting opening 220, is at least partially accommodated in the first limiting groove 141.
[0074] Among the multiple first frame strips 140, the first frame strip 140 opposite to the first mounting opening 120 is provided with a first limiting groove 141. When the second mounting frame 200 moves into place along the first sliding groove 130 via the sliding part 230, at least part of the second frame strip 260 of the second mounting frame 200 opposite to the second mounting opening 220 can be accurately embedded in the first limiting groove 141, ensuring precise docking and stable connection between the two. The first limiting groove 141 not only provides additional support for the second frame strip 260, but also enhances the stability of the overall structure of the photovoltaic sound insulation module by restricting its lateral movement. Even under the action of external forces (such as wind pressure, vibration, etc.), the second mounting frame 200 can maintain a good fixed state, reducing the risk of loosening or displacement and greatly improving the safety of use. The limiting cooperation between the second frame strip 260 and the first limiting groove 141 ensures that the second mounting frame 200 is installed stably, which can greatly improve the installation efficiency of the second mounting frame 200. The connection between the first limiting groove 141 and the first sliding groove 130 simplifies the installation steps of the second mounting frame 200. Simply align the sliding part 230 and push it along the first sliding groove 130, and the second mounting frame 200 will automatically be confined within the first limiting groove 141 after it moves into place, without the need for complicated calibration work.
[0075] In one implementation, please refer to Figure 9 and Figure 10 In the second mounting frame 200, a second sliding groove 262 is provided on the first frame strip 140 adjacent to the first mounting port 120. The second sliding groove 262 is connected to the second receiving groove 210. The photovoltaic sound insulation board 300 is inserted into the second sliding groove 262.
[0076] Among the multiple second frame strips 260, the second frame strip 260 adjacent to the second mounting port 220 is provided with a second sliding groove 262. The photovoltaic sound insulation panel 300 enters through the second mounting port 220 and slides along the second sliding groove 262 until it is fully inserted into the second receiving groove 210, making the installation process of the photovoltaic sound insulation panel 300 simple and intuitive. The second sliding groove 262 provides guidance and support for the photovoltaic sound insulation panel 300, ensuring that it can be accurately and securely installed in the second receiving groove 210. Even when faced with the influence of the external environment (such as wind pressure, vibration, etc.), it can effectively prevent the photovoltaic sound insulation panel 300 from shifting or falling off. The design of the second sliding groove 262 makes full use of the internal space of the second mounting frame 200, allowing the photovoltaic sound insulation panel 300 to be closely arranged in the second receiving groove 210, maximizing the use of available space, while not affecting the layout of other functional components. When the photovoltaic sound insulation panel 300 needs to be inspected, repaired or replaced, it can be easily removed from the second slide groove 262 through the second mounting port 220 without disassembling the entire component, which greatly simplifies the maintenance work and reduces maintenance costs and time.
[0077] In other embodiments, a clamping part may also be provided on the first frame strip 140 adjacent to the first mounting port 120 in the second mounting frame 200, and the clamping part clamps the edge of the photovoltaic sound insulation board 300.
[0078] In one implementation, please refer to Figure 9 and Figure 10 The second frame 260260 in the second mounting frame 200, which is opposite to the second mounting port 220, is provided with a second limiting groove 261. The second limiting groove 261 is connected to the second receiving groove 210 and the second sliding groove 262. The edge of the photovoltaic sound insulation board 300300 is accommodated in the second limiting groove 261.
[0079] A second limiting groove 261 is provided on the second frame strip 260 of the second mounting frame 200, which is opposite to the second mounting opening 220. The second limiting groove 261 is used to guide and fix the position of the photovoltaic sound insulation panel 300. After the photovoltaic sound insulation panel 300 enters through the second mounting opening 220 and slides into place along the second sliding groove 262, its edge is embedded in the second limiting groove 261, realizing precise positioning and fixation of the photovoltaic sound insulation panel 300. The second limiting groove 261 not only provides additional support for the photovoltaic sound insulation panel 300, but also restricts its lateral movement, enhancing the overall structural stability of the photovoltaic sound insulation component. Even under the action of external forces (such as wind pressure, vibration, etc.), the photovoltaic sound insulation panel 300 can maintain a good fixed state, reducing the risk of loosening or displacement, and greatly improving the safety of use. The limiting cooperation between the photovoltaic sound insulation panel 300 and the second limiting groove 261 ensures that the photovoltaic sound insulation panel 300 is installed firmly, which can greatly improve the installation efficiency of the photovoltaic sound insulation panel 300. The connection between the second limiting groove 261 and the second sliding groove 262 simplifies the installation steps of the photovoltaic sound insulation panel 300. Simply align the photovoltaic sound insulation panel 300 with the second mounting port 220 and push it along the second sliding groove 262. Once the photovoltaic sound insulation panel 300 is in place, it will automatically be confined within the second limiting groove 261, eliminating the need for complex calibration work.
[0080] In one implementation, please refer to Figure 7 and Figure 8 , Figure 11 and Figure 12 The first frame 140 of the first mounting frame 100, which is opposite to the first mounting opening 120, is provided with a third limiting groove 142. The third limiting groove 142 is located on the side of the first frame 140 away from the first mounting opening 120. The second mounting frame 200, which is located near the first mounting opening 120, is partially accommodated in the third limiting groove 142 of the adjacent first mounting frame 100.
[0081] A third limiting groove 142 is provided on the first frame strip 140 of the first mounting frame 100 relative to the first mounting opening 120. The third limiting groove 142 is used to accommodate and fix a part of the second mounting frame 200 located near the first mounting opening 120 in the first mounting frame 100 adjacent to it.
[0082] The first mounting openings 120 of multiple first mounting frames 100 are distributed in the same direction. The first frame strip 140 of one first mounting frame 100, facing away from the first mounting opening 120, is adjacent to the first mounting opening 120 of another adjacent first mounting frame 100. A portion of the second mounting frame 200 near the first mounting opening 120 is accommodated within an adjacent third limiting groove 142. The first mounting frame 100 seals the first mounting opening 120 of the adjacent first mounting frame 100 through the third limiting groove 142, providing additional support for the second mounting frame 200 at this location and restricting its lateral movement. This enhances the stability of the connection between two adjacent photovoltaic sound insulation components, effectively preventing loosening or displacement of the photovoltaic sound insulation components even under external forces (such as wind pressure, vibration, etc.).
[0083] In one implementation, please refer to Figure 11 and Figure 12 In the first mounting frame 100, the first frame strip 140 adjacent to the first mounting opening 120 protrudes from the second mounting frame 200 at the end where the first mounting opening 120 is located, and overlaps the end face of the groove side wall of the third limiting groove 142.
[0084] In the plurality of first frame strips 140, the assembly is completed by overlapping adjacent parts of two adjacent first mounting frames 100. Specifically, the end of the first frame strip 140 of one first mounting frame 100 adjacent to the first mounting opening 120 overlaps with the end face of the groove sidewall of the third limiting groove 142 of another first mounting frame 100 (i.e., the top and bottom of the groove sidewall of the third limiting groove 142). At this time, the second mounting frame 200 near the first mounting opening 120 is confined in the third limiting groove 142, thus forming a stable state for the entire photovoltaic sound insulation module. By overlapping adjacent first mounting frames 100, the second frame at the first mounting opening 120 can be limited, reducing the number of fasteners, improving installation efficiency, and ensuring the safety of the overall structure.
[0085] In other embodiments, two adjacent first mounting frames 100 may also be locked together by fasteners or by welding.
[0086] In one embodiment, the photovoltaic sound insulation panel 300 includes a sound insulation panel and a photovoltaic panel, with the photovoltaic panel disposed on at least one side of the sound insulation panel.
[0087] The sound insulation panel is the part of the photovoltaic sound insulation module responsible for providing sound insulation. It can be made of high-efficiency sound insulation materials and can effectively block the transmission of noise generated by road vehicles, providing a quiet and comfortable environment for residential areas along the road. The photovoltaic panel is responsible for converting solar energy into electrical energy. It is composed of multiple photovoltaic cell units that can absorb sunlight and convert it into usable electricity. Thus, the photovoltaic sound insulation module can achieve both the noise reduction and sound insulation effect of the sound insulation panel on the road and the power generation effect of the photovoltaic panel.
[0088] Sound insulation panels and photovoltaic panels can be combined in various ways. For example, photovoltaic panels can be glued, embedded, or mechanically fixed to one or both sides of the sound insulation panel. The modular design of the photovoltaic sound insulation panel 300 makes installation simpler and faster, allowing it to be installed into the second receiving groove 210 in one go, thereby shortening the construction cycle and reducing installation difficulty.
[0089] Sound insulation panels can be made of metal sheets and placed on the side facing the road to reflect sound waves. They can also be made of rubber and asphalt materials and placed between two layers of photovoltaic panels for damping, reducing noise transmission by consuming vibration energy. Sound insulation panels can also be made of gypsum board, polyurethane foam, mineral fiberboard, etc., and placed on the side facing the road or away from the road. Among them, gypsum board can improve the sound insulation effect by increasing its thickness or using a double-layer structure, while polyurethane foam and mineral fiberboard can absorb sound wave energy through the complex microchannels and gaps inside their materials.
[0090] The above description is merely an exemplary embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the technical concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. A photovoltaic sound insulation module, characterized in that, include: The first mounting frame (100) includes a plurality of first frame strips (140) that are sequentially connected and configured to form a first receiving groove (110), wherein a first mounting port (120) communicating with the first receiving groove (110) is formed between two first frame strips (140); The second mounting frame (200) includes a plurality of second frame strips (260) that are sequentially connected and configured to form a second receiving groove (210); A photovoltaic sound insulation panel (300) is installed in the second receiving groove (210); One of the first frame strip (140) and the second frame strip (260) is provided with a first slide groove (130), and the other is provided with a sliding part (230) that is slidably connected to the first slide groove (130), so that the second mounting frame (200) can be inserted into the first receiving groove (110) from the first mounting port (120).
2. The photovoltaic sound insulation module as described in claim 1, characterized in that, A second mounting port (220) communicating with the second receiving groove (210) is formed between the two second frame strips (260), and the photovoltaic sound insulation panel (300) can be inserted into the second receiving groove (210) through the second mounting port (220).
3. The photovoltaic sound insulation module as described in claim 1, characterized in that, The sliding part (230) is rotatably disposed in the first sliding groove (130) so that the second mounting frame (200) rotates relative to the first mounting frame (100).
4. The photovoltaic sound insulation module as described in claim 2, characterized in that, The second mounting frame (200) is provided in multiple ways. A connecting part (240) is provided on the adjacent side of two adjacent second mounting frames (200), and two adjacent connecting parts (240) are rotatably connected.
5. The photovoltaic sound insulation module as described in claim 4, characterized in that, At least two adjacent second mounting frames (200) have their second mounting openings (220) arranged close to each other, and the connecting portion (240) is located at the edge of the second mounting opening (220).
6. The photovoltaic sound insulation module as described in claim 4, characterized in that, The second mounting frame (200) also includes a baffle (250), which extends along the edge of the second mounting opening (220) and connects two second frame bars. The connecting part (240) is provided on the baffle (250), and two adjacent connecting parts (240) are stacked and rotatably connected by a pin.
7. The photovoltaic sound insulation module as described in claim 2, characterized in that, The first frame (140) of the first mounting frame (100) is provided with a first limiting groove (141) relative to the first mounting port (120). The first limiting groove (141) is interconnected with the first receiving groove (110) and the first sliding groove (130). The second frame (260) of the second mounting frame (200) relative to the second mounting port (220) is at least partially accommodated in the first limiting groove (141).
8. The photovoltaic sound insulation module as described in claim 2, characterized in that, The second mounting frame (200) has a second sliding groove (262) on the first frame strip (140) adjacent to the first mounting port (120). The second sliding groove (262) is connected to the second receiving groove (210). The photovoltaic sound insulation board (300) is inserted into the second sliding groove (262).
9. The photovoltaic sound insulation module as described in claim 8, characterized in that, The second frame (260) of the second mounting frame (200) is provided with a second limiting groove (261) on the second frame strip (260) opposite to the second mounting port (220). The second limiting groove (261) is connected to the second receiving groove (210) and the second sliding groove (262). The edge of the photovoltaic sound insulation board (300) is accommodated in the second limiting groove (261).
10. The photovoltaic sound insulation module as described in claim 1, characterized in that, The first frame (140) of the first mounting frame (100) is provided with a third limiting groove (142) on the first frame strip (140) opposite to the first mounting port (120). The third limiting groove (142) is located on the side of the first frame strip (140) away from the first mounting port (120). The second mounting frame (200) located near the first mounting port (120) is partially accommodated in the third limiting groove (142) of the adjacent first mounting frame (100).
11. The photovoltaic sound insulation module as described in claim 10, characterized in that, The first frame strip (140) in the first mounting frame (100) adjacent to the first mounting port (120) protrudes from the second mounting frame (200) at the end where the first mounting port (120) is located, and overlaps the end face of the groove side wall of the third limiting groove (142).
12. The photovoltaic sound insulation module as described in claim 1, characterized in that, The photovoltaic sound insulation panel (300) includes a sound insulation panel and a photovoltaic panel, wherein the photovoltaic panel is disposed on at least one side of the sound insulation panel.