A solar photovoltaic assembly with quick installation of photovoltaic panels
Patent Information
- Application Number
- CN202521862801.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-31
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-31
AI Technical Summary
[0002]传统光伏组件的安装过程普遍较为繁琐,通常需要使用大量螺栓、支架连接件和专用工具进行现场组装,不仅施工周期长、人工成本高,而且对操作人员的技术水平要求较高,限制了其在大规模推广中的效率与便利性,但在现有安装结构多采用固定式卡槽或边框打孔方式,缺乏统一标准,不同厂家产品之间兼容性差,导致安装灵活性不足;同时,在拆卸维护过程中也存在操作复杂、易损坏组件的问题,影响系统的长期稳定运行
[0011] The beneficial effects of this utility model: This utility model provides a solar photovoltaic module that can quickly install photovoltaic panels. Because this utility model adds a self-locking limit buckle structure, a composite spring, a buckle block, a positioning block, an external cable connection point, and a slider, through our design improvements and actual use, it shows that this device has a reasonable structure and good practicality. Through the specific self-locking limit buckle structure, it is easy for personnel to quickly and accurately install this device.
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Figure CN224721832U_ABST
Abstract
Description
Technical Field
[0001] This utility model is a solar photovoltaic module that can be quickly installed with photovoltaic panels, belonging to the field of solar power generation equipment technology. Background Technology
[0002] The installation process of traditional photovoltaic modules is generally quite cumbersome, usually requiring a large number of bolts, bracket connectors, and special tools for on-site assembly. This not only results in long construction cycles and high labor costs, but also demands a high level of technical expertise from operators, limiting the efficiency and convenience of large-scale promotion. However, existing installation structures mostly use fixed slots or frame drilling methods, lacking unified standards and exhibiting poor compatibility between products from different manufacturers, leading to insufficient installation flexibility. At the same time, the disassembly and maintenance process is also complicated and prone to damaging components, affecting the long-term stable operation of the system.
[0003] Therefore, there is an urgent need to provide a solar photovoltaic module that is quick to install, structurally robust, highly compatible, and easy to maintain, in order to improve overall installation efficiency and system operational reliability, and meet the needs of efficient deployment and flexible operation and maintenance of modern photovoltaic systems. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a solar photovoltaic module that can quickly install photovoltaic panels to solve the problems mentioned in the background technology. This utility model, through a specific self-locking limiting buckle structure, facilitates the quick and accurate installation of the device by personnel.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a solar photovoltaic module that can quickly install photovoltaic panels, including an installation frame, wherein multiple first fixing blocks are fixedly connected to both ends of the installation frame, a slider is fixedly connected to one side of each of the multiple first fixing blocks, a sliding rod is sleeved on the circumferential surface of each of the multiple sliders, and a second fixing block is provided on one side of each of the multiple sliders.
[0006] Furthermore, an external connecting block is provided on one side of the mounting frame, and two card interfaces are opened on one side of the external connecting block. Placement slots are opened on the circumferential surfaces of the two card interfaces, and card connecting rods are provided in the multiple placement slots.
[0007] Furthermore, one end of each of the multiple locking rods is an inverted triangle, and a composite spring is sleeved on the surface of each of the multiple locking rods.
[0008] Furthermore, a cable connection groove is provided on one side of the mounting frame, and multiple grounding terminals are fixedly connected to the inner wall of one side of the cable connection groove.
[0009] Furthermore, a plurality of positioning guide blocks are fixedly connected to the bottom end of the mounting frame, and two guide rail embedding grooves are opened at the bottom end of the mounting frame.
[0010] Furthermore, a photovoltaic main board is provided at the top of the mounting frame, a quick-connect junction box is fixedly connected to the bottom of the photovoltaic main board, and a bracket connecting plate is provided at the bottom of the mounting frame.
[0011] The beneficial effects of this utility model: This utility model provides a solar photovoltaic module that can quickly install photovoltaic panels. Because this utility model adds a self-locking limit buckle structure, a composite spring, a buckle block, a positioning block, an external cable connection point, and a slider, through our design improvements and actual use, it shows that this device has a reasonable structure and good practicality. Through the specific self-locking limit buckle structure, it is easy for personnel to quickly and accurately install this device. Attached Figure Description
[0012] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0013] Figure 1 This is a three-dimensional schematic diagram of the overall structure of a solar photovoltaic module with a photovoltaic panel that can be quickly installed according to this utility model;
[0014] Figure 2 This is a side view of a solar photovoltaic module with a photovoltaic panel that can be quickly installed according to the present invention.
[0015] Figure 3 This is a top-view schematic diagram of a solar photovoltaic module that allows for quick installation of photovoltaic panels according to this utility model;
[0016] Figure 4 This is a first-view sectional perspective view of a solar photovoltaic module that allows for rapid installation of photovoltaic panels, according to this utility model.
[0017] In the diagram: 1-Mounting frame; 2-Photovoltaic mainboard; 3-Positioning guide block; 4-Guide rail embedding groove; 5-Cable connection groove; 6-Grounding terminal; 7-External connection block; 8-First fixing block; 9-Sliding rod; 10-Second fixing block; 11-Sliding block; 12-Bracket connection plate; 13-Quick junction box; 14-Card interface; 15-Placement groove; 16-Card connecting rod. Detailed Implementation
[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0019] Please see Figures 1-4This utility model provides a technical solution: a solar photovoltaic module that can quickly install photovoltaic panels. Multiple first fixing blocks 8 are fixedly connected to both sides of the mounting frame 1. A slider 11 is fixedly connected to one side of each of the multiple first fixing blocks 8. A sliding rod 9 is sleeved on the circumferential surface of each of the multiple sliders 11. A second fixing block 10 is provided on one side of each of the multiple sliders 11. This design solves the problem that the existing installation structure of the original device mostly adopts fixed slots or frame drilling methods, lacks a unified standard, and has poor compatibility between products from different manufacturers, resulting in insufficient installation flexibility.
[0020] As the first embodiment of this utility model: an external connecting block 7 is provided on one side of the mounting frame 1. Two card interfaces 14 are opened on one side of the external connecting block 7. Placement slots 15 are opened on the circumferential surface of the two card interfaces 14. Each placement slot 15 is provided with a carding rod 16. The external connecting block 7 is integrated at the end of the mounting frame 1, and an elastic locking structure composed of card interfaces 14, placement slots 15 and carding rods 16 is set on it, which builds a fast docking system with rapid response, convenient operation and stable connection, effectively improving the adaptability and installation efficiency of solar photovoltaic modules in the modular assembly process. Among them, the external connecting block 7, as the core component of cross-module connection, not only provides a unified connection interface for adjacent photovoltaic modules or brackets, but also enhances the centering and force balance of the overall structure. The card interface 14, as the main area of the carding engagement, ensures that the carding rod 16 can automatically spring back and lock into the corresponding structure during the insertion process, realizing tool-free rapid assembly. The placement slots 15 provide telescopic movement space for the carding rod 16, so that it can maintain smooth movement and have good reset performance during the insertion and removal process. Multiple snap-fit rods 16 have an inverted triangle at one end, and a composite spring is fitted on the surface of each snap-fit rod 16. In this device, the ends of the snap-fit rods 16 are designed as inverted triangles, and composite springs are integrated on their exteriors, creating a fast snap-fit system with automatic centering, elastic reset, and high-stability connection characteristics. This effectively improves the docking efficiency and locking reliability of solar photovoltaic modules during splicing. The inverted triangle structure serves as an integrated guide and lock contact end, and can achieve automatic calibration through the inclined guide when inserted into the snap-fit interface 14, reducing assembly difficulty and improving connection smoothness. The composite spring, as the core elastic element, not only provides continuous rebound force to the snap-fit rods 16, ensuring that they quickly reset and form a stable lock after insertion, but also absorbs energy when subjected to vibration or external impact, preventing the connection from loosening or falling off. A cable connection groove 5 is provided on one side of the mounting frame 1. Multiple grounding terminals 6 are fixedly connected to the inner wall of one side of the cable connection groove 5. The integration of multiple grounding terminals 6 inside the cable connection groove 5 constructs a cable management system with a compact structure, reliable electrical connection and high safety protection level, realizing the simultaneous completion of power transmission and grounding protection during the rapid installation of solar photovoltaic modules. Among them, the cable connection groove 5, as the core area for cable wiring and connection, not only provides a centralized cable routing channel, but also enhances the standardization of wiring operations and the convenience of maintenance. The multiple grounding terminals 6 are fixed to the inner wall of the groove, which not only realizes the efficient electrical connection between the photovoltaic modules and the external bracket or grounding grid, but also effectively prevents safety risks caused by leakage or static electricity accumulation.Multiple positioning guide blocks 3 are fixedly connected to the bottom of the mounting frame 1. Two guide rail embedding slots 4 are opened at the bottom of the mounting frame 1. The composite positioning structure consisting of the positioning guide blocks 3 and the guide rail embedding slots 4 is integrated at the bottom of the mounting frame 1, which realizes the precise alignment and quick sliding assembly of the solar photovoltaic module during the installation process. The positioning guide blocks 3 serve as initial positioning and angle correction components, which can automatically guide the module into the correct installation position when it is placed, preventing installation difficulties caused by offset or misalignment. The guide rail embedding slots 4 are used to form a sliding fit with the external support guide rail structure, so that the photovoltaic module can move smoothly on the track and quickly lock into the designated installation point. A photovoltaic main board 2 is located at the top of the mounting frame 1, and a quick-connect junction box 13 is fixedly connected to the bottom of the photovoltaic main board 2. A bracket connection plate 12 is located at the bottom of the mounting frame 1. The photovoltaic main board 2 is integrated at the top of the mounting frame 1, and the quick-connect junction box 13 and the bracket connection plate 12 are configured at the bottom of it, thus constructing a high-efficiency photovoltaic module system that integrates energy conversion, electrical connection and structural support. Among them, the photovoltaic main board 2, as the core power generation unit, is responsible for converting solar energy into electrical energy. Its stability and photoelectric conversion efficiency directly affect the overall power generation performance. The quick-connect junction box 13 is fixed to the bottom of the photovoltaic main board 2 and forms an electrical connection with the grounding terminal 6 in the cable connection groove 5, realizing the rapid access and safety protection of power output, improving the on-site installation efficiency and electrical connection reliability. The bracket connection plate 12 is located at the bottom of the mounting frame 1 and is used to make a stable connection with the external support structure, which enhances the overall load-bearing capacity of the module and ensures its operational stability in complex environments such as wind pressure and snow load.
[0021] As a second embodiment of this utility model: In this device, a linear sliding connection structure consisting of a first fixing block 8, a slider 11, a sliding rod 9, and a second fixing block 10 is provided on both sides of the mounting frame 1. This constructs a modular installation system with strong adaptability, flexible adjustment, and convenient installation, effectively solving the problems of low standardization, poor compatibility, and insufficient installation flexibility caused by the existing photovoltaic module installation structures that mostly use fixed slots or frame drilling methods. The first fixing block 8 serves as the initial connection fulcrum, providing a stable support foundation for the slider 11 and ensuring its structural stability during the sliding process. The slider 11 can slide freely along a set trajectory on the sliding rod 9, achieving precise alignment and rapid locking between the second fixing block 10 and adjacent components or brackets. The second fixing block 10 serves as a terminal connection component, capable of adapting to various installation interface forms, enhancing the versatility and adaptability of the equipment in different application scenarios. It optimizes the degree of adjustment freedom and assembly efficiency of photovoltaic modules during installation, significantly improving the overall structural stability and cross-brand compatibility. While enhancing functionality, it fully meets the technical requirements of modern photovoltaic power generation systems for standardized, modular, and efficient installation methods.
[0022] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0023] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A solar photovoltaic module with a rapidly installable photovoltaic panel, comprising a mounting frame (1), characterized in that: Multiple first fixing blocks (8) are fixedly connected to both sides of the mounting frame (1), and a slider (11) is fixedly connected to one side of each of the multiple first fixing blocks (8). A sliding rod (9) is sleeved on the circumferential surface of each of the multiple sliders (11), and a second fixing block (10) is provided on one side of each of the multiple sliders (11).
2. A solar photovoltaic module with rapidly installable photovoltaic panels according to claim 1, characterized in that: An external connecting block (7) is provided on one side of the mounting frame (1). Two card interfaces (14) are opened on one side of the external connecting block (7). Placement slots (15) are opened on the circumferential surfaces of the two card interfaces (14). Card connecting rods (16) are provided in the multiple placement slots (15).
3. A solar photovoltaic module with rapidly installable photovoltaic panels according to claim 2, characterized in that: One end of each of the multiple snap-fit rods (16) is an inverted triangle, and a composite spring is fitted on the surface of each of the multiple snap-fit rods (16).
4. A solar photovoltaic module with rapidly installable photovoltaic panels according to claim 1, characterized in that: A cable connection groove (5) is provided on one side of the mounting frame (1), and a plurality of grounding terminals (6) are fixedly connected to the inner wall of one side of the cable connection groove (5).
5. A solar photovoltaic module with rapidly installable photovoltaic panels according to claim 1, characterized in that: The bottom end of the mounting frame (1) is fixedly connected with multiple positioning guide blocks (3), and the bottom end of the mounting frame (1) has two guide rail embedding grooves (4).
6. A solar photovoltaic module with rapidly installable photovoltaic panels according to claim 1, characterized in that: The top of the mounting frame (1) is provided with a photovoltaic main board (2), the bottom of the photovoltaic main board (2) is fixedly connected with a quick junction box (13), and the bottom of the mounting frame (1) is provided with a bracket connecting plate (12).