Connecting piece set and solar module system

Through the upper pressure connecting plate, the middle support plate and the third connecting plate in the connector set, the fastening component is used to form a limit relationship, which solves the problem of the solar module being easily deflected under strong winds and achieves stable installation of the component.

CN223191853UActive Publication Date: 2025-08-05苏州旭洋佳制造有限公司
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Patent Information

Application Number
CN202422483578.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-08-05
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

Existing solar modules are prone to deflection and damage in strong wind environments, and lack effective connection and positioning fixtures, resulting in unstable installation.

Method used

A connector set is adopted, including an upper pressing connection plate, a middle support plate and a third connection plate, and a limit relationship is formed by fastening the assembly to ensure a stable connection between the solar module and the steel cable.

Benefits of technology

It improves the installation stability of solar modules, prevents flips in strong winds, and protects the solar module from deflection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a connecting piece set and a solar module system, in the connecting piece set, a first space for placing an external first structure is formed between a first pressing plate part of an upper pressing connecting plate and a first bearing plate part of a middle bearing plate; the first mounting part of the upper pressing connecting plate, the second mounting part of the middle bearing plate and the third mounting part of the third connecting plate are connected through a first fastening assembly so that the first structure and the second structure can form a limiting relation. In the solar module system, a frame of a solar module serves as a first structural object to be placed in the first space, and a first bearing plate part of a middle bearing plate is connected with the first structural object through a second fastening module; the steel rope as a second structure penetrates through the second space; and the third mounting parts of the third connecting plates on the two sides of the second space are connected with the first mounting part of the upper pressing connecting plate and the second mounting part of the middle bearing plate through the first fastening assembly, so that the mounting stability of the solar module in the solar module system is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of connection structures between components, in particular to a connector set and a solar component system. Background Art

[0002] Currently, in the field of solar photovoltaic module installation, solar modules are mainly installed by high and low set steel cables. There is a lack of effective connection and positioning fixtures between adjacent solar modules, which makes the photovoltaic system including multiple solar modules prone to deflection and damage when encountering strong winds. Therefore, it is necessary to add a connector set between multiple adjacent solar modules in the photovoltaic system or between the solar modules and the steel cables to prevent the solar modules from being easily deflected when encountering strong winds. Utility Model Content

[0003] The technical problem to be solved by the present invention is to provide a connector set and a solar module system, so that a limiting relationship is formed between an external first structure and an external second structure, thereby improving the installation stability of the solar module in the solar module system.

[0004] The technical solution adopted by the present invention to solve the above technical problems is: in the first aspect, a connector set comprising

[0005] Upper pressure connecting plate, middle supporting plate, third connecting plate;

[0006] A first space for placing an external first structure is formed between the first pressing plate portion of the upper pressing connecting plate and the first supporting plate portion of the middle supporting plate;

[0007] The third connecting plate forms a second space for placing an external second structure, or a second space for placing an external second structure is formed between the third connecting plate and the middle supporting plate;

[0008] The first mounting portion of the upper pressure connecting plate, the second mounting portion of the middle supporting plate, and the third mounting portion of the third connecting plate are connected by a first fastening assembly so that the first structure and the second structure form a limiting relationship.

[0009] Preferably, in the connector set, a second fastening assembly is provided at the first supporting plate portion of the middle supporting plate, and a fastening connection is formed between the first supporting plate portion and the first structure through the second fastening assembly.

[0010] Preferably, in the connector set, the upper pressure connecting plate also includes a second pressure plate portion, and the middle support plate also includes a second support plate portion, and a third space for placing an external third structure is formed between the second pressure plate portion of the upper pressure connecting plate and the second support plate portion of the middle support plate.

[0011] Preferably, in the connector set, a third fastening assembly is provided at the second supporting plate portion of the middle supporting plate, and a fastening connection is formed between the second supporting plate portion and the third structure through the third fastening assembly.

[0012] Preferably, in the connector set, the upper pressure connecting plate is a Z-shaped structure or an I-shaped structure, and the middle supporting plate is a Z-shaped structure or an I-shaped structure.

[0013] Preferably, in the connector set, the upper pressing connecting plate further has a lower extension portion, and the lower extension portion abuts against the side of the second mounting portion of the middle supporting plate.

[0014] Preferably, in the connector set, the third connecting plate has two third mounting portions on both sides, and a curved or arc-shaped protrusion is formed between the two third mounting portions on both sides, so that the third connecting plate forms a second space for a second structure in a rope-like shape to pass through, or a second space for a second structure in a rope-like shape to pass through is formed between the third connecting plate and the middle support plate.

[0015] Preferably, in the connector set, the surface of the upper pressure connecting plate for contacting the first structure has a serrated structure, and / or the surface of the supporting connecting plate for contacting the first structure has a serrated structure.

[0016] Preferably, the connector kit also includes an elastic sheath, which includes a first sheath cylinder and a second sheath cylinder. The first sheath cylinder is inserted into the third mounting portion of the third connecting plate, and the second sheath cylinder is located in the second space. The second sheath cylinder is used to wrap around the outer wall of the second structure when the second structure penetrates the second space.

[0017] In a second aspect, a solar module system includes a solar module, a steel cable, and the above-mentioned connector set.

[0018] A frame of a solar panel is placed in the first space as a first structure, and the first support plate portion of the middle support plate is connected to the first structure via a second fastening assembly;

[0019] The steel cable passes through the second space as a second structure; the third mounting parts of the third connecting plates on both sides of the second space are connected to the first mounting part of the upper pressure connecting plate and the second mounting part of the middle supporting plate by a first fastening assembly.

[0020] In a third aspect, a solar module system includes a solar module, a steel cable, and the above-mentioned connector set.

[0021] A frame of a solar panel is placed in the first space as a first structure, and the first support plate portion of the middle support plate is connected to the first structure via a second fastening assembly;

[0022] The frame of another solar module is placed in the third space as a third structure, and the second support plate portion of the middle support plate is connected to the third structure via a third fastening assembly;

[0023] The steel cable passes through the second space as a second structure; the third mounting parts of the third connecting plates on both sides of the second space are connected to the first mounting part of the upper pressure connecting plate and the second mounting part of the middle supporting plate by a first fastening assembly.

[0024] The beneficial effect of the present invention is that when the connector set is connected to the first structure, the first structure is placed in the first space, so that the external first structure and the connector set form a positioning relationship. When the second structure is placed in the second space, a limiting relationship is formed between the external first structure and the external second structure, thereby forming a relatively stable position limit for the first structure and preventing it from turning over due to multi-directional forces.

[0025] In the solar panel system, the solar panel frame is placed in the first space, establishing a positioning relationship between the solar panel and the connector set. When the steel cable is placed in the second space, a restraining relationship is formed between the solar panel and the cable, thereby providing a relatively stable position for the solar panel and preventing it from tipping over due to multi-directional forces. The connector set is added between the solar panel and the cable to prevent the solar panel from deflecting in strong winds, thereby protecting the solar panel and improving the installation stability of the solar panel in the solar panel system. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a structural diagram of the first embodiment of the connector set in the present utility model;

[0027] Figure 2 This is a schematic diagram of the installation of the connector set and the first structure according to the first embodiment of the present invention;

[0028] Figure 3 This is a structural diagram of the second embodiment of the connector set in the present utility model;

[0029] Figure 4 This is a schematic diagram of the installation of the connector set and the first structure and the second structure of the second embodiment of the present invention. Figure 1 ;

[0030] Figure 5 This is a schematic diagram of the installation of the connector set and the first structure and the second structure of the second embodiment of the present invention. Figure 2 ;

[0031] Figure 6 It is a structural diagram of the solar module system in the present utility model;

[0032] Figure 7 1 is a schematic diagram of the installation of the connector set and the solar panel in the solar panel system according to the first embodiment;

[0033] Figure 8 This is a schematic diagram of the installation of the connector set and solar panels in the second embodiment of the solar panel system. Figure 1 ;

[0034] Figure 9 This is a schematic diagram of the installation of the connector set and solar panels in the second embodiment of the solar panel system. Figure 2 ;

[0035] Among them: 100, upper pressure connecting plate; 101, first pressure plate part; 102, first installation part; 103, second pressure plate part; 104, lower extension part; 200, middle supporting plate; 201, first supporting plate part; 202, second installation part; 203, second supporting plate part; 300, third connecting plate; 400, first structure; 500, second structure; 600, third structure; 701, first fastening assembly; 702, second fastening assembly; 703, third fastening assembly. DETAILED DESCRIPTION

[0036] The present invention will now be described in further detail with reference to the accompanying drawings and preferred embodiments. These drawings are simplified schematic diagrams, which only illustrate the basic structure of the present invention in a schematic manner, and therefore only show components related to the present invention.

[0037] In the first aspect, in a feasible embodiment 1, as Figure 1 As shown, a connector set includes

[0038] Press the connecting plate 100, the middle supporting plate 200, and the third connecting plate 300 upward;

[0039] A first space for placing an external first structure 400 is formed between the first pressing plate portion 101 of the upper pressing connecting plate 100 and the first supporting plate portion 201 of the middle supporting plate 200;

[0040] The third connecting plate 300 forms a second space for placing the external second structure 500, or a second space for placing the external second structure 500 is formed between the third connecting plate 300 and the middle supporting plate 200;

[0041] The first mounting portion 102 of the upper pressure connecting plate 100, the second mounting portion 202 of the middle supporting plate 200, and the third mounting portion of the third connecting plate 300 are connected by a first fastening assembly 701 to form a limiting relationship between the first structure 400 and the second structure 500.

[0042] The upper pressing connecting plate 100, the middle supporting plate 200 and the third connecting plate 300 are connected to each other by the first fastening assembly 701. The first fastening assembly 701 can be a bolt assembly composed of bolts, nuts, washers and the like.

[0043] like Figure 2 As shown, when the connector set is connected to the first structure 400 for use, the first structure 400 is placed in the first space, so that the external first structure 400 and the connector set form a positioning relationship. When the second structure 500 is placed in the second space, a limiting relationship is formed between the external first structure 400 and the external second structure 500, thereby forming a relatively stable position limit for the first structure 400 and preventing it from turning over due to multi-directional forces.

[0044] Specifically, in a preferred embodiment, a second fastening assembly 702 is provided on the first support plate portion 201 of the central support plate 200. This second fastening assembly 702 secures the first support plate portion 201 to the first structure 400. The second fastening assembly 702 can be a bolt assembly consisting of bolts, nuts, washers, etc. Other connection methods, such as bonding, can also be used between the first support plate portion 201 and the external first structure 400.

[0045] In a feasible embodiment 2, as Figure 3 As shown, based on the feasible embodiment 1, in a connector set, the upper pressure connecting plate 100 further includes a second pressure plate portion 103, and the middle supporting plate 200 further includes a second supporting plate portion 203. A third space for placing an external third structure 600 is formed between the second pressure plate portion 103 of the upper pressure connecting plate 100 and the second supporting plate portion 203 of the middle supporting plate 200. Figure 4 、 Figure 5 As shown, when the connector set is connected to the third structure 600 for use, the third structure 600 is placed in the third space, so that a positioning relationship is formed between the third structure 600 and the connector set. When the second structure 500 is placed in the second space, a limiting relationship is formed between the third structure 600 and the second structure 500, thereby forming a relatively stable position limit for the third structure 600 and preventing it from turning over due to forces from multiple directions.

[0046] Specifically, in a preferred embodiment, a third fastening assembly 703 is provided on the second support plate portion 203 of the central support plate 200. This third fastening assembly 703 secures the second support plate portion 203 to the third structure 600. The third fastening assembly 703 can be a bolt assembly consisting of bolts, nuts, washers, etc. Other connection methods, such as bonding, can also be used between the second support plate portion 203 and the external second structure 500.

[0047] Specifically, in a preferred embodiment, the upper pressure connecting plate 100 is a Z-shaped structure or an X-shaped structure, and the middle supporting plate 200 is a Z-shaped structure or an X-shaped structure. The above structure prevents the first connecting plate or the second connecting plate from being easily deformed when subjected to multi-directional forces.

[0048] Specifically, in a preferred embodiment, the upper pressure connecting plate 100 further has a lower extension portion 104, which abuts against the side of the second mounting portion 202 of the middle supporting plate 200. By adding the lower extension portion 104, the shaking of the middle supporting plate 200 is further reduced.

[0049] Specifically, in a preferred embodiment, the third connecting plate 300 has two third mounting portions on either side, with a curved or arcuate protrusion formed between the two third mounting portions. This allows the third connecting plate 300 to form a second space through which the second, cable-like structure 500 passes, or alternatively, a second space through which the second, cable-like structure 500 passes is formed between the third connecting plate 300 and the middle supporting plate 200. The second space restrains the second structure 500, thereby ensuring that the connector set and the second structure 500 are inseparable, and thus providing a certain degree of positional restraint between the first structure 400 and the second structure 500.

[0050] Specifically, in a preferred embodiment, the surface of the upper pressure connecting plate 100 that contacts the first structure 400 has a serrated structure, and / or the surface of the supporting connecting plate that contacts the first structure 400 has a serrated structure. The serrated structure is provided to increase the friction between the upper pressure connecting plate 100 and the first structure 400, or to increase the friction between the supporting connecting plate and the first structure 400.

[0051] Specifically, in a preferred embodiment, the connector assembly further includes an elastic sheath comprising a first sheath cylinder and a second sheath cylinder. The first sheath cylinder is inserted into the third mounting portion of the third connecting plate 300, and the second sheath cylinder is located in the second space. The second sheath cylinder is used to wrap around the outer wall of the second structure 500 when the second structure 500 passes through the second space. The addition of the elastic sheath can, on the one hand, reduce wear and tear on the second structure 500, such as a steel cable, in the second space. On the other hand, it can also increase friction between the gasket in the first fastening assembly 701 and the third mounting portion, making the first fastening assembly 701 less likely to loosen.

[0052] In a second aspect, a solar module system, such as Figure 6 、 Figure 7 As shown, it includes solar panels, steel cables, and the above-mentioned connector set.

[0053] A frame of a solar panel is placed in the first space as a first structure 400, and the first support plate portion 201 of the middle support plate 200 is connected to the first structure 400 via a second fastening assembly 702;

[0054] The steel cable passes through the second space as the second structure 500; the third mounting portion of the third connecting plate 300 on both sides of the second space is connected to the first mounting portion 102 of the upper pressure connecting plate 100 and the second mounting portion 202 of the middle supporting plate 200 by the first fastening assembly 701.

[0055] The first fastening assembly 701 forms a non-detachable relationship between the upper pressure connecting plate 100, the middle supporting plate 200, and the third connecting plate 300. The frame of the solar panel is placed in the first space, so that a positioning relationship is formed between the solar panel and the connector set. The second fastening assembly 702 forms a fastening connection between the first supporting plate portion 201 and the solar panel. When the steel cable is placed in the second space, a limiting relationship is formed between the solar panel and the steel cable, thereby forming a relatively stable limiting relationship for the solar panel, preventing it from flipping over due to forces from multiple directions. A connector set is added between the solar panel and the steel cable to prevent the solar panel from being deflected easily when encountering strong winds, thereby protecting the solar panel.

[0056] In a third aspect, a solar panel system, such as Figure 6 、 Figure 8 、 Figure 9 As shown, it includes solar modules, steel cables, and a connector set. The selected connector set is based on the connector set in the above-mentioned feasible embodiment 2.

[0057] A frame of a solar panel is placed in the first space as a first structure 400, and the first support plate portion 201 of the middle support plate 200 is connected to the first structure 400 via a second fastening assembly 702;

[0058] The frame of another solar module is placed in the third space as a third structure 600. The second support plate portion 203 of the middle support plate 200 is connected to the third structure 600 via a third fastening assembly 703.

[0059] The steel cable passes through the second space as the second structure 500; the third mounting portion of the third connecting plate 300 on both sides of the second space is connected to the first mounting portion 102 of the upper pressure connecting plate 100 and the second mounting portion 202 of the middle supporting plate 200 by the first fastening assembly 701.

[0060] The first fastening assembly 701 forms a non-detachable relationship between the upper pressure connecting plate 100, the middle supporting plate 200, and the third connecting plate 300. The frame of a solar module is placed in the first space, forming a positioning relationship between the solar module and the connector set. The frame of another solar module is placed in the third space, forming a positioning relationship between the other solar module and the connector set. The second fastening assembly 702 forms a fastening connection between the first supporting plate portion 201 and the solar module. The third fastening assembly 703 forms a fastening connection between the second supporting plate portion 203 and the other solar module. When the steel cable is placed in the second space, a limiting relationship is formed between the one solar module and the other solar module and the steel cable, thereby forming a relatively stable limiting relationship for both solar modules and preventing them from flipping due to multi-directional forces. A connector set is added between the two solar modules and the steel cable to prevent the solar modules from deflecting in strong winds, thereby protecting the solar modules.

[0061] The above description only describes the specific implementation methods of the utility model. Various examples do not limit the essential content of the utility model. Ordinary technicians in the relevant technical field can modify or deform the specific implementation methods described above after reading the description without departing from the essence and scope of the utility model.

Claims

1. A connector set, characterized in that: include An upper pressure connecting plate (100), a middle supporting plate (200), and a third connecting plate (300); A first space for placing an external first structure (400) is formed between the first pressing plate portion (101) of the upper pressing connecting plate (100) and the first supporting plate portion (201) of the middle supporting plate (200); The third connecting plate (300) is formed with a second space for placing an external second structure (500), or a second space for placing an external second structure (500) is formed between the third connecting plate (300) and the middle supporting plate (200); The first mounting portion (102) of the upper pressure connecting plate (100), the second mounting portion (202) of the middle supporting plate (200), and the third mounting portion of the third connecting plate (300) are connected by a first fastening assembly (701) so that the first structure (400) and the second structure (500) form a limiting relationship.

2. The connector kit according to claim 1, characterized in that: A second fastening assembly (702) is provided at the first supporting plate portion (201) of the middle supporting plate (200), and a fastening connection is formed between the first supporting plate portion (201) and the first structure (400) through the second fastening assembly (702).

3. The connector kit according to claim 1, characterized in that: The upper pressure connecting plate (100) further includes a second pressure plate portion (103), and the middle supporting plate (200) further includes a second supporting plate portion (203). A third space for inserting an external third structure (600) is formed between the second pressure plate portion (103) of the upper pressure connecting plate (100) and the second supporting plate portion (203) of the middle supporting plate (200).

4. The connector kit according to claim 3, characterized in that: A third fastening assembly (703) is provided at the second supporting plate portion (203) of the middle supporting plate (200), and a fastening connection is formed between the second supporting plate portion (203) and the third structure (600) through the third fastening assembly (703).

5. The connector kit according to claim 1, characterized in that: The upper pressing connecting plate (100) is a Z-shaped structure or an I-shaped structure, and the middle supporting plate (200) is a Z-shaped structure or an I-shaped structure.

6. The connector kit according to claim 1, characterized in that: The upper pressing connecting plate (100) further comprises a lower extension portion (104), and the lower extension portion (104) abuts against the side of the second mounting portion (202) of the middle supporting plate (200).

7. The connector kit according to claim 1, characterized in that: The third connecting plate (300) has two third mounting portions on both sides, and a curved or arc-shaped protrusion is formed between the two third mounting portions on both sides, so that the third connecting plate (300) forms a second space for the second structure (500) in a rope-like shape to pass through, or a second space for the second structure (500) in a rope-like shape to pass through is formed between the third connecting plate (300) and the middle supporting plate (200).

8. The connector kit according to claim 1, characterized in that: The surface of the upper pressing connecting plate (100) for contacting the first structure (400) has a sawtooth structure, and / or the surface of the supporting connecting plate for contacting the first structure (400) has a sawtooth structure.

9. The connector kit according to claim 1, characterized in that: It also includes an elastic sheath, which includes a first sheath cylinder and a second sheath cylinder. The first sheath cylinder is inserted into the third mounting portion of the third connecting plate (300), and the second sheath cylinder is located in the second space. The second sheath cylinder is used to wrap around the outer wall of the second structure (500) when the second structure (500) penetrates the second space.

10. A solar panel system, characterized in that: The invention comprises a solar panel, a steel cable, and a connector set according to any one of claims 1, 2, and 5 to 9. A frame of a solar panel is placed in the first space as a first structure (400), and the first support plate portion (201) of the middle support plate (200) is connected to the first structure (400) via a second fastening assembly (702); The steel cable serves as a second structure (500) passing through the second space; the third mounting portions of the third connecting plates (300) on both sides of the second space are connected to the first mounting portion (102) of the upper pressure connecting plate (100) and the second mounting portion (202) of the middle supporting plate (200) by a first fastening assembly (701).

11. A solar panel system, characterized in that: The invention comprises a solar panel, a steel cable, and a connector set according to any one of claims 3, 4, 5 to 9. A frame of a solar panel is placed in the first space as a first structure (400), and the first support plate portion (201) of the middle support plate (200) is connected to the first structure (400) via a second fastening assembly (702); The frame of another solar module is placed in the third space as a third structure (600), and the second support plate portion (203) of the middle support plate (200) and the third structure (600) are connected via a third fastening assembly (703); The steel cable serves as a second structure (500) passing through the second space; the third mounting portions of the third connecting plates (300) on both sides of the second space are connected to the first mounting portion (102) of the upper pressure connecting plate (100) and the second mounting portion (202) of the middle supporting plate (200) by a first fastening assembly (701).