CN-224205014-U - Prefabricated packaging component of assembled photovoltaic system
Abstract
The utility model discloses a prefabricated packaging component of an assembled photovoltaic system, which belongs to the technical field of photovoltaic systems and comprises a bottom plate, wherein two first support plates are arranged on the left side above the bottom plate, two second support plates are arranged on the right side above the bottom plate, a concave plate is clamped in the first support plates, one side of the concave plate is connected with a first moving plate in a sliding manner, the other side of the concave plate is connected with a second moving plate in a sliding manner, a connecting plate is arranged in the first moving plate, and a mounting plate is arranged in the second moving plate. According to the utility model, the concave plates, the connecting plates, the mounting plates, the limiting blocks and the bolts are arranged, and the prefabricated packaging components are matched with the connecting plates, the mounting plates and the bolts, so that only one bolt is needed when the first support plate and the second support plate are integrally fixed, the influence on the integral mounting efficiency due to the adoption of a plurality of groups of bolts is avoided, the phenomenon of difficult mounting or unstable connection is avoided, and the stability of the structure is ensured.
Inventors
- JIANG CHAO
Assignees
- 江苏固尚新能源有限公司
Dates
- Publication Date
- 20260505
- Application Date
- 20250506
Claims (6)
- 1. The prefabricated packaging component of the assembled photovoltaic system comprises a bottom plate (1) and is characterized in that two first supporting plates (2) are arranged on the left side of the upper portion of the bottom plate (1), two second supporting plates (3) are arranged on the right side of the upper portion of the bottom plate (1), a concave plate (6) is clamped in the first supporting plates (2), one side of the concave plate (6) is slidably connected with a first moving plate (9), the other side of the concave plate (6) is slidably connected with a second moving plate (10), a connecting plate (7) is arranged in the first moving plate (9), a mounting plate (8) is arranged in the second moving plate (10), one side of the connecting plate (7) is fixedly connected with a limiting block (11), bolts (12) are arranged in the limiting block (11), a guide rod (14) is fixedly connected in the first moving plate (9), and a coil spring (15) is sleeved outside the guide rod (14).
- 2. The prefabricated packaging component of the assembled photovoltaic system, as set forth in claim 1, is characterized in that a first positioning bolt (4) is arranged in the first supporting plate (2), the first supporting plate (2) is connected with the bottom plate (1) through the first positioning bolt (4), a second positioning bolt (5) is arranged in the second supporting plate (3), the second supporting plate (3) is connected with the bottom plate (1) through the second positioning bolt (5), and the concave plate (6) is clamped in the second supporting plate (3).
- 3. The prefabricated packaging component of the assembled photovoltaic system, as set forth in claim 1, characterized in that the limiting block (11) is clamped in the mounting plate (8), the limiting block (11) is connected with the mounting plate (8) through a bolt (12), and the connecting plate (7) is rotatably connected to the outer surface of the guide rod (14).
- 4. The prefabricated packaging component of the assembled photovoltaic system, as set forth in claim 1, characterized in that the concave plate (6) is internally provided with a groove (13), the connecting plate (7) is connected in the groove (13) through a coil spring (15), and the connecting plate (7) is rotatably connected in the groove (13).
- 5. The prefabricated packaging component of the assembled photovoltaic system, as set forth in claim 1, characterized in that the first magnet (17) is fixedly connected in the concave plate (6), and the second magnet (18) is fixedly connected to one side of the first moving plate (9).
- 6. The prefabricated packaging component of the assembled photovoltaic system, as set forth in claim 1, is characterized in that a chute (16) is formed in the concave plate (6), a sliding block (19) is fixedly connected to the outside of the first movable plate (9), and the sliding block (19) is slidably connected in the chute (16).
Description
Prefabricated packaging component of assembled photovoltaic system Technical Field The utility model relates to the technical field of photovoltaic systems, in particular to a prefabricated packaging component of an assembled photovoltaic system. Background Prefabricated packaging components of an assembled photovoltaic system refer to standardized components which integrate photovoltaic modules, supporting structures and other functional modules together through industrial production, the components have the characteristics of modularization, quick installation and high-efficiency utilization of resources, the components are widely applied to Building Integrated Photovoltaic (BIPV) and distributed photovoltaic power generation systems, the current prefabricated packaging components are mainly matched and connected with the supporting structures through a plurality of groups of bolts, however, the plurality of groups of bolt connections in the prefabricated packaging components are required to be screwed down one by one, the operation is complex, the time consumption is long, the installation efficiency is easy to influence, the plurality of groups of bolt connections are required to be aligned accurately, otherwise, the installation difficulty or the connection insecurity can be caused, and the structural stability is influenced. Disclosure of utility model The utility model aims to provide a prefabricated packaging component of an assembled photovoltaic system, so as to solve the problems in the background technology. In order to achieve the purpose, the prefabricated packaging component of the assembled photovoltaic system comprises a bottom plate, wherein two first support plates are arranged on the left side above the bottom plate, two second support plates are arranged on the right side above the bottom plate, a concave plate is clamped in the first support plates, one side of the concave plate is connected with a first moving plate in a sliding mode, the other side of the concave plate is connected with a second moving plate in a sliding mode, a connecting plate is arranged in the first moving plate, a mounting plate is arranged in the second moving plate, one side of the connecting plate is fixedly connected with a limiting block, bolts are arranged in the limiting block, a guide rod is fixedly connected in the first moving plate, and a coil spring is sleeved outside the guide rod. As a further preferable mode of the technical scheme, a first positioning bolt is arranged in the first supporting plate, the first supporting plate is connected with the bottom plate through the first positioning bolt, a second positioning bolt is arranged in the second supporting plate, the second supporting plate is connected with the bottom plate through the second positioning bolt, and the concave plate is clamped in the second supporting plate. As a further preferable mode of the technical scheme, the limiting block is clamped in the mounting plate, the limiting block is connected with the mounting plate through a bolt, and the connecting plate is rotationally connected to the outer surface of the guide rod. As a further preferable mode of the technical scheme, a groove is formed in the concave plate, the connecting plate is connected in the groove through a coil spring, and the connecting plate is rotationally connected in the groove. As a further preferable mode of the technical scheme, a first magnet is fixedly connected in the concave plate, and a second magnet is fixedly connected on one side of the first moving plate. As a further preferable mode of the technical scheme, a sliding groove is formed in the concave plate, and a sliding block is fixedly connected to the outer side of the movable plate and is slidably connected in the sliding groove. The utility model provides a prefabricated packaging component of an assembled photovoltaic system, which has the following beneficial effects: (1) According to the utility model, the concave plate, the connecting plate, the mounting plate, the limiting block and the bolt are arranged, when the concave plate is overlapped with one side of the first supporting plate, the first moving plate is pushed, the sliding block on one surface of the first moving plate slides in the sliding groove, when the first moving plate moves to a proper position, the connecting plate is pushed to the connecting plate, the connecting plate drives the coil spring to deform when rotating on the surface of the guide rod, and when the second moving plate moves to a proper position, the rotating force is applied to the mounting plate, when the limiting block on the side surface of the connecting plate is clamped into the mounting plate, the limiting block is connected with the mounting plate through the bolt, and the prefabricated packaging component is matched with the connecting plate, the mounting plate and the bolt, so that the first supporting plate and the second supporting plate only need