Installation structure of photovoltaic insulation integrated panel

CN224620855UActive Publication Date: 2026-08-11WUXI UTMOST LIGHT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]有鉴于此,本实用新型提供了一种光伏保温一体板的安装结构,以解决光伏保温一体板安装效率低的技术问题

Benefits of technology

[0008]有益效果:第一安装件由第一安装部以及第二安装部组合形成,第二安装部相对于第一安装部弯折,使得第二安装部自第一安装部向远离安装面的一侧延伸;第一安装部固定连接在待安装主体上,使第一安装部与安装面贴合固定,以便于将第一安装件的荷载传递至待安装主体。第二安装件由第三安装部、第四安装部和第五安装部组合形成,第三安装部与第一安装件的第二安装部相连接,使得第二安装件可以固定连接在第一安装件上,以实现两个异形安装件的刚性连接,便于将光伏保温一体板的荷载传递给第一安装件。

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Abstract

This utility model relates to the field of building insulation technology and discloses an installation structure for a photovoltaic insulation integrated panel. It includes a first mounting component having a first mounting portion and a second mounting portion extending from the first mounting portion towards the side away from the mounting surface. The first mounting portion is fixedly connected to the main body to be installed. The second mounting component has a third mounting portion and fourth and fifth mounting portions extending from the third mounting portion to opposite sides of the third mounting portion. The fourth and fifth mounting portions are spaced apart and parallel to the mounting surface. The third mounting portion is mounted on the second mounting portion. The photovoltaic insulation integrated panel is detachably installed on the second mounting component and snapped onto the fourth and fifth mounting portions. This utility model, through the cooperation between the first mounting component, the second mounting component, and the photovoltaic insulation integrated panel, allows the photovoltaic insulation integrated panel to be quickly and detachably installed on the second mounting component, reducing installation time and improving installation efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of building insulation, specifically to an installation structure for an integrated photovoltaic insulation panel. Background Technology

[0002] The Building Integrated Photovoltaic (BIPV) market is developing rapidly, but traditional photovoltaic curtain wall systems suffer from problems such as complex installation, structural redundancy, and high installation costs. Combining integrated insulation panels with traditional insulation panels has become the preferred option in the BIPV market. However, in related technologies, integrated insulation panels are usually fixed with multiple bolts or use complex curtain wall keel systems, resulting in low installation efficiency and high installation costs. Utility Model Content

[0003] In view of this, the present invention provides an installation structure for an integrated photovoltaic insulation panel to solve the technical problem of low installation efficiency of integrated photovoltaic insulation panels.

[0004] This utility model provides an installation structure for an integrated photovoltaic insulation panel, comprising:

[0005] The first mounting component has a first mounting portion and a second mounting portion extending from the first mounting portion toward a side away from the mounting surface, wherein the first mounting portion is fixedly connected to the body to be mounted.

[0006] The second mounting member has a third mounting portion and a fourth mounting portion and a fifth mounting portion extending from the third mounting portion to two opposite sides of the third mounting portion. The fourth mounting portion and the fifth mounting portion are spaced apart and parallel to the mounting surface. The third mounting portion is mounted on the second mounting portion.

[0007] The photovoltaic insulation integrated panel is detachably installed on the second mounting component and snapped onto the fourth mounting part and the fifth mounting part.

[0008] Beneficial effects: The first mounting component is formed by combining a first mounting part and a second mounting part. The second mounting part is bent relative to the first mounting part, extending from the first mounting part to the side away from the mounting surface. The first mounting part is fixedly connected to the body to be installed, so that the first mounting part fits and is fixed to the mounting surface, facilitating the transfer of the load of the first mounting component to the body to be installed. The second mounting component is formed by combining a third mounting part, a fourth mounting part, and a fifth mounting part. The third mounting part is connected to the second mounting part of the first mounting component, so that the second mounting component can be fixedly connected to the first mounting component, thereby achieving a rigid connection between the two irregularly shaped mounting components, facilitating the transfer of the load of the photovoltaic insulation integrated panel to the first mounting component.

[0009] The fourth and fifth mounting parts extend from the third mounting part to opposite sides of it. After the third mounting part connects to the second mounting part, the fourth mounting part extends upward from the upper surface of the third mounting part, and the fifth mounting part extends downward from the lower surface of the third mounting part. A certain distance exists between the fourth and fifth mounting parts, ensuring they are located on the left and right sides of the third mounting part, respectively, without any overlap. Both the fourth and fifth mounting parts are parallel to the mounting surface, creating a space between them to facilitate the snap-fit ​​of the photovoltaic insulation panel between the mounting surface and the fourth mounting part, and between the mounting surface and the fifth mounting part.

[0010] The interaction between the first mounting component, the second mounting component, and the integrated photovoltaic insulation panel allows the integrated photovoltaic insulation panel to be detachably installed on the second mounting component. This facilitates the rapid installation, replacement, or maintenance of the integrated photovoltaic insulation panel, effectively reducing installation time and improving installation efficiency. Furthermore, the installation structure of this integrated photovoltaic insulation panel reduces the amount of bolt components used, thereby lowering auxiliary material costs and the overall cost of the installation structure.

[0011] In one optional embodiment, the fourth mounting portion and the fifth mounting portion are disposed on opposite sides of the plane where the third mounting portion is located, and the fourth mounting portion and the fifth mounting portion are integrally bent structures relative to the third mounting portion.

[0012] In one optional embodiment, the fourth mounting portion and the fifth mounting portion are arranged coplanarly, and within the coplanar plane of the fourth mounting portion and the fifth mounting portion, the fourth mounting portion and the fifth mounting portion are arranged with a gap or spacing.

[0013] In one optional embodiment, the third mounting part, the fourth mounting part, and the fifth mounting part are all plate structures.

[0014] In an optional embodiment, the system further includes a mounting frame fixedly connected within the photovoltaic insulation integrated panel. The mounting frame includes slot structures corresponding to the fourth mounting portion and the fifth mounting portion, and the mounting frame is respectively engaged with the fourth mounting portion and the fifth mounting portion through the slot structures.

[0015] In an optional embodiment, a rubber pad is also included, the rubber pad being located between the slot structure and the fourth mounting portion and / or the fifth mounting portion.

[0016] In one optional embodiment, the mounting frame includes an upper frame and a lower frame mounted on the integrated photovoltaic insulation panel. A support member is provided on the lower frame. The support member includes a support arm. The support arm is located between two adjacent sets of integrated photovoltaic insulation panels, and the support arm extends away from the main body to be installed and rests on the bottom of the integrated photovoltaic insulation panel.

[0017] In an optional embodiment, a third mounting component is further included, the third mounting component comprising a first mounting segment, a connecting segment, and a second mounting segment connected in sequence, the first mounting segment being used to mount on the subject to be mounted, and the second mounting segment being used to mount on the upper frame or the lower frame.

[0018] In an optional embodiment, a first connector is further included. The first mounting portion has a first connecting hole, and the first connector passes through the first connecting hole to fix the first mounting portion to the body to be installed.

[0019] In an optional embodiment, a second connector is further included. The second mounting portion has a second connecting hole, and the third mounting portion has a third connecting hole. The second connector passes through the second connecting hole and the third connecting hole to fix the second mounting portion to the first mounting portion. Attached Figure Description

[0020] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0021] Figure 1 This is a top view of the installation structure of a photovoltaic insulation integrated panel according to an embodiment of the present utility model;

[0022] Figure 2 This is a left view of the installation structure of a photovoltaic insulation integrated panel according to an embodiment of the present utility model;

[0023] Figure 3 This is another top view of the installation structure of a photovoltaic insulation integrated panel according to an embodiment of the present utility model;

[0024] Figure 4 This is another left view of the installation structure of a photovoltaic insulation integrated panel according to an embodiment of the present utility model;

[0025] Figure 5 for Figure 1A schematic diagram of the first mounting component in the installation structure of the photovoltaic insulation integrated panel shown;

[0026] Figure 6 for Figure 1 The front view of the second mounting component in the installation structure of the photovoltaic insulation integrated panel shown;

[0027] Figure 7 for Figure 1 Left view of the second mounting component in the installation structure of the photovoltaic insulation integrated panel shown;

[0028] Figure 8 for Figure 1 A top view of the second mounting component in the installation structure of the photovoltaic insulation integrated panel shown;

[0029] Figure 9 This is a top view of the installation structure of a photovoltaic insulation integrated panel according to another embodiment of the present invention;

[0030] Figure 10 The left view shows the installation structure of a photovoltaic insulation integrated panel according to another embodiment of the present invention.

[0031] Figure 11 Another top view of the installation structure of a photovoltaic insulation integrated panel according to another embodiment of the present utility model;

[0032] Figure 12 Another left view of the installation structure of a photovoltaic insulation integrated panel according to another embodiment of the present utility model;

[0033] Figure 13 for Figure 9 The diagram shows the structure of the third mounting component in the installation structure of the photovoltaic insulation integrated panel.

[0034] Explanation of reference numerals in the attached figures:

[0035] 100. Main body to be installed; 110. First connector; 200. First mounting component; 210. Second connector; 220. First mounting part; 221. First connecting hole; 230. Second mounting part; 231. Second connecting hole; 300. Second mounting component; 310. Third mounting part; 311. Third connecting hole; 320. Fourth mounting part; 330. Fifth mounting part; 400. Mounting frame; 410. Third connector; 420. Rubber pad; 430. Upper frame; 440. Lower frame; 500. Support component; 510. Support arm; 600. Photovoltaic insulation integrated panel; 610. Insulation layer; 620. Photovoltaic module layer; 700. Third mounting component; 710. First mounting section; 711. Fourth connecting hole; 720. Connecting section; 730. Second mounting section. Detailed Implementation

[0036] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0037] In the description of this utility model, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0038] According to an embodiment of this utility model, see Figures 1 to 4 An installation structure for an integrated photovoltaic insulation panel is provided, comprising: a first mounting member 200 having a first mounting portion 220 and a second mounting portion 230 extending from the first mounting portion 220 toward a side away from the mounting surface, the first mounting portion 220 being fixedly connected to the main body 100 to be installed; a second mounting member 300 having a third mounting portion 310 and a fourth mounting portion 320 and a fifth mounting portion 330 extending from the third mounting portion 310 toward opposite sides of the third mounting portion 310, the fourth mounting portion 320 and the fifth mounting portion 330 being spaced apart and parallel to the mounting surface, the third mounting portion 310 being mounted on the second mounting portion 230; and an integrated photovoltaic insulation panel 600 being detachably mounted on the second mounting member 300 and snapped onto the fourth mounting portion 320 and the fifth mounting portion 330.

[0039] In this embodiment, the main body 100 to be installed can be a wall or a support frame, etc. The outer surface of the main body 100 to be installed is the mounting surface. The first mounting member 200 is a basic support connecting the main body 100 to be installed, and the first mounting member 200 is installed on the mounting surface. The first mounting member 200 is formed by combining a first mounting part 220 and a second mounting part 230. The second mounting part 230 is bent relative to the first mounting part 220, so that the second mounting part 230 extends from the first mounting part 220 to the side away from the mounting surface. The shape of the first mounting member 200 can be L-shaped. The shapes of the first mounting part 220 and the second mounting part 230 can both be flat. The first mounting part 220 is fixedly connected to the main body 100 to be installed, so that the first mounting part 220 fits and is fixed to the mounting surface, so as to transfer the load of the first mounting member 200 to the main body 100 to be installed.

[0040] The second mounting component 300 serves as a support frame for fixing the integrated photovoltaic insulation panel 600. Specifically, it is formed by combining the third mounting part 310, the fourth mounting part 320, and the fifth mounting part 330, all of which can be flat. The third mounting part 310 connects to the second mounting part 230 of the first mounting component 200, allowing the second mounting component 300 to be fixedly connected to the first mounting component 200. This achieves a rigid connection between the two irregularly shaped mounting components, facilitating the transfer of the load from the integrated photovoltaic insulation panel 600 to the first mounting component 200.

[0041] The fourth mounting portion 320 and the fifth mounting portion 330 extend from the third mounting portion 310 to opposite sides of the third mounting portion 310, respectively. After the third mounting portion 310 is connected to the second mounting portion 230, the fourth mounting portion 320 extends upward from the upper surface of the third mounting portion 310, and the fifth mounting portion 330 extends downward from the lower surface of the third mounting portion 310. A certain distance exists between the fourth mounting portion 320 and the fifth mounting portion 330, so that the fourth mounting portion 320 and the fifth mounting portion 330 are located on the left and right sides of the third mounting portion 310, respectively, and there is no overlap between them. Both the fourth mounting portion 320 and the fifth mounting portion 330 are parallel to the mounting surface, creating a certain space between them and the mounting surface, so that the photovoltaic insulation integrated panel 600 can be snapped between the mounting surface and the fourth mounting portion 320, and between the mounting surface and the fifth mounting portion 330.

[0042] There are multiple photovoltaic integrated insulation panels 600. Each photovoltaic integrated insulation panel 600 is formed by combining an insulation layer 610 and a photovoltaic module layer 620. The insulation layer 610 is close to the main body 100 to be installed, and the photovoltaic module layer 620 is located on the outside of the photovoltaic integrated insulation panel 600. The photovoltaic integrated insulation panel 600 is detachably installed on the second mounting part 300. The lower part of one photovoltaic integrated insulation panel 600 is engaged in the space between the fourth mounting part 320 and the mounting surface, and the upper part of the other photovoltaic integrated insulation panel 600 is engaged in the space between the fifth mounting part 330 and the mounting surface. Through the cooperation between the first mounting component 200, the second mounting component 300, and the photovoltaic insulation integrated panel 600, the photovoltaic insulation integrated panel 600 can be detachably installed on the second mounting component 300, which facilitates the quick installation, replacement, or maintenance of the photovoltaic insulation integrated panel 600, effectively reducing the installation time and improving installation efficiency. Moreover, the installation structure of this photovoltaic insulation integrated panel reduces the amount of bolt components used, thereby reducing the cost of auxiliary materials and the overall cost of the installation structure of the photovoltaic insulation integrated panel.

[0043] See also Figure 5 In one embodiment, a first connector 110 is also included. A first connection hole 221 is provided on the first mounting part 220. The first connector 110 passes through the first connection hole 221 to fix the first mounting part 200 to the body 100 to be installed.

[0044] In this embodiment, the first connector 110 can be an expansion bolt, and the first mounting portion 220 is provided with a first connecting hole 221. When the first mounting member 200 is fixed to the body 100 to be installed, a hole is first drilled in the body 100 to be installed, the first connector 110 is passed through the first connecting hole 221, and the first connector 110 extends into the drilled hole in the body 100 to be installed; then the first connector 110 is tightened, so that the first mounting member 200 is fixedly installed on the body 100 to be installed. The force borne by the first mounting member 200 can be directly transmitted to the body 100 to be installed through the first connector 110 and the first mounting portion 220, thereby preventing the first mounting member 200 from loosening, shifting, or even falling off due to force.

[0045] See also Figures 6 to 8 In one embodiment, a second connector 210 is also included. The second mounting portion 230 is provided with a second connecting hole 231, and the third mounting portion 310 is provided with a third connecting hole 311. The second connector 210 passes through the second connecting hole 231 and the third connecting hole 311 to fix the second mounting portion 300 to the first mounting portion 200.

[0046] In this embodiment, the second connector 210 can be a bolt assembly, and the second connecting hole 231 is formed on the second mounting portion 230 of the first mounting member 200. In order to better fix the second mounting member 300 to the first mounting member 200, the number of second connecting holes 231 can be multiple to improve the stability of the connection between the first mounting member 200 and the second mounting member 300. The third connecting hole 311 is formed on the third mounting portion 310 of the second mounting member 300. The number of third connecting holes 311 corresponds one-to-one with the number of second connecting holes 231. When the second mounting member 300 is fixedly connected to the first mounting member 200, the third mounting portion 310 of the second mounting member 300 is aligned with the second mounting portion 230 of the first mounting member 200, and the positions of the second connecting holes 231 and the third connecting holes 311 are aligned one-to-one. Then, the second connecting member 210 is passed through the second connecting holes 231 and the third connecting holes 311 in sequence, and locked by tightening the nut or screw cap, so that the second mounting portion 230 and the third mounting portion 310 fit tightly together, thereby fixing the second mounting member 300 to the first mounting member 200. The weight of the photovoltaic insulation integrated panel 600 and the load of external wind pressure borne by the second mounting member 300 will be transferred to the first mounting member 200 and further conducted to the main body 100 to be installed, so as to ensure the stability of the photovoltaic insulation integrated panel 600 installation.

[0047] In one embodiment, the fourth mounting portion 320 and the fifth mounting portion 330 are respectively disposed on both sides of the plane where the third mounting portion 310 is located, and the fourth mounting portion 320 and the fifth mounting portion 330 are integrally bent structures relative to the third mounting portion 310.

[0048] In this embodiment, the fourth mounting part 320 and the fifth mounting part 330 are respectively disposed on both sides of the plane where the third mounting part 310 is located. That is, after the third mounting part 310 is fixedly connected to the second mounting part 230, the fourth mounting part 320 extends upward from the plane where the third mounting part 310 is located, and the fifth mounting part 330 extends downward from the plane where the third mounting part 310 is located, so that the fourth mounting part 320 and the fifth mounting part 330 are located on the upper and lower sides of the plane where the third mounting part 310 is located, thereby facilitating the snap-fit ​​of the photovoltaic insulation integrated panel 600. The fourth mounting part 320 is bent upward relative to the third mounting part 310 and made parallel to the mounting surface. Then, the fifth mounting part 330 is bent downward relative to the third mounting part 310 and made parallel to the mounting surface, so that a certain space is formed between the fourth mounting part 320 and the fifth mounting part 330 and the mounting surface, so that the photovoltaic insulation integrated panel 600 can be snapped between the mounting surface and the fourth mounting part 320 and between the mounting surface and the fifth mounting part 330. By bending the fourth mounting portion 320 and the fifth mounting portion 330 relative to the third mounting portion 310 to form an integral bending structure, stress concentration at the connection between the third mounting portion 310 and the fourth mounting portion 320 and the fifth mounting portion 330 is effectively avoided. This makes the second mounting component 300 stronger in terms of overall deformation resistance and load resistance, and can more reliably support the photovoltaic insulation integrated panel 600. Moreover, when manufacturing the second mounting component 300, it can be bent and formed in one step using a mold, eliminating the need for multiple splicing processes, reducing the production cost of the second mounting component 300, and ensuring the dimensional accuracy of the second mounting component 300.

[0049] In one embodiment, the fourth mounting portion 320 and the fifth mounting portion 330 are arranged in a coplanar manner, and within the coplanar plane of the fourth mounting portion 320 and the fifth mounting portion 330, the fourth mounting portion 320 and the fifth mounting portion 330 are arranged with a gap or spacing.

[0050] In this embodiment, the fourth mounting part 320 and the fifth mounting part 330 are arranged coplanarly, so that the fourth mounting part 320 and the fifth mounting part 330 are in the same plane. Specifically, this can be done at the end of the third mounting part 310 away from the mounting surface. By arranging the fourth mounting part 320 and the fifth mounting part 330 coplanarly, it can be ensured that after the multiple photovoltaic insulation integrated panels 600 are installed on the second mounting member 300, the multiple photovoltaic insulation integrated panels 600 are located on the same plane, ensuring that the surface of the multiple photovoltaic insulation integrated panels 600 is flat. Moreover, it can also ensure that the stress-bearing surface of the photovoltaic insulation integrated panel 600 after installation is on the same plane, avoiding warping or stress concentration of the panel due to the height difference of the supporting surface. By setting the fourth mounting part 320 and the fifth mounting part 330 with a gap or spacing, so that the fourth mounting part 320 and the fifth mounting part 330 are located on the left and right sides of the third mounting part 310 respectively, a certain amount of snap-fit ​​space is reserved for the photovoltaic integrated insulation panel 600, so that the edge of the photovoltaic integrated insulation panel 600 can be smoothly embedded. This not only realizes the detachable installation of the photovoltaic integrated insulation panel, but also ensures the stability of the photovoltaic integrated insulation panel after installation through the snap-fit ​​method.

[0051] In one embodiment, the third mounting part 310, the fourth mounting part 320 and the fifth mounting part 330 are all plate structures.

[0052] In this embodiment, the third mounting portion 310 needs to be fitted and fixed to the second mounting portion 230 of the first mounting member 200. The third mounting portion 310 is designed as a plate structure, providing a large contact area between the third mounting portion 310 and the second mounting portion 230. This ensures uniform force distribution when the third mounting portion 310 and the second mounting portion 230 are connected, preventing loosening or deformation due to excessive local pressure. It also facilitates the machining of the third connecting hole 311 on the third mounting portion 310.

[0053] The integrated photovoltaic insulation panel 600 needs to be snapped onto the fourth mounting part 320 and the fifth mounting part 330. The fourth mounting part 320 and the fifth mounting part 330 are designed as a panel structure to form a stable supporting surface, which distributes the force on the edges of the integrated photovoltaic insulation panel 600 more evenly, preventing localized pressure damage. Simultaneously, the flat edges of the panel also allow for a tight snap-fit ​​with the integrated photovoltaic insulation panel 600, improving the installation stability of the integrated photovoltaic insulation panel 600, thereby enhancing the reliability and convenience of the photovoltaic installation structure.

[0054] See also Figures 9 to 12In one embodiment, the device further includes a mounting frame 400, which is fixedly connected to the photovoltaic insulation integrated panel 600. The mounting frame 400 includes a slot structure corresponding to the fourth mounting part 320 and the fifth mounting part 330. The mounting frame 400 is respectively engaged with the fourth mounting part 320 and the fifth mounting part 330 through the slot structure.

[0055] In this embodiment, the mounting frame 400 is fixedly connected inside the photovoltaic insulation integrated panel 600, providing a rigid support structure for the photovoltaic insulation integrated panel 600 to enhance its overall strength and stability. It also provides an interface for the connection between the photovoltaic insulation integrated panel 600 and the second mounting component 300. The mounting frame 400 has slot structures corresponding to the fourth mounting portion 320 and the fifth mounting portion 330 of the second mounting component 300. Through the cooperation between the slot structures and the fourth mounting portion 320 and the fifth mounting portion 330, the photovoltaic insulation integrated panel 600 can be accurately installed on the second mounting component 300. When installing the photovoltaic insulation integrated panel 600 onto the second mounting component 300, the slot structures on the mounting frame 400 are aligned with the fourth mounting portion 320 and the fifth mounting portion 330, and then the mounting frame 400 is inserted into the fourth mounting portion 320 and the fifth mounting portion 330, allowing installers to quickly and accurately install the photovoltaic insulation integrated panel 600 onto the second mounting component 300. The mounting frame 400 can be composed of a main body of the mounting frame 400 and two plates extending from the main body of the mounting frame 400 to one side of the main body of the mounting frame 400, with the two plates arranged opposite each other to form a slot structure.

[0056] In one embodiment, a rubber pad 420 is also included, which is located between the slot structure and the fourth mounting portion 320 and / or the fifth mounting portion 330.

[0057] In this embodiment, slight dimensional errors may exist during the processing of the mounting frame 400's slot structure, the fourth mounting part 320, and the fifth mounting part 330 on the photovoltaic insulation integrated panel 600. This can cause the photovoltaic insulation integrated panel 600 to sway under wind pressure or vibration after it is installed on the second mounting component 300 due to the gap between the mounting frame 400 and the fourth mounting part 320 and / or the fifth mounting part 330. Furthermore, long-term friction between the mounting frame 400 and the fourth mounting part 320 and the fifth mounting part 330 can easily scratch the surface of the mounting frame 400's slot structure, the fourth mounting part 320, or the fifth mounting part 330, thereby affecting the service life of the installation structure. The rubber pad 420 has a certain elastic deformation capability. By placing the rubber pad 420 between the slot structure and the fourth mounting part 320 and / or the fifth mounting part 330, the mounting frame 400 can be prevented from directly contacting the fourth mounting part 320 and / or the fifth mounting part 330, thus preventing direct wear of the mounting frame 400, the fourth mounting part 320 or the fifth mounting part 330, and eliminating the shaking of the photovoltaic insulation integrated panel 600 when subjected to wind pressure or vibration.

[0058] Furthermore, during the use of the installation structure, slight deformation may occur due to temperature changes or minor settlement. This causes the rubber pad 420 to be tightly attached to the inner wall of the slot structure and the surface of the fourth mounting part 320 and / or the fifth mounting part 330, so that the elasticity of the rubber pad 420 absorbs or buffers the deformation stress, thereby preventing the installation structure from being damaged by environmental factors and improving the durability of the installation structure.

[0059] In one embodiment, the mounting frame 400 includes an upper frame 430 and a lower frame 440 mounted on the photovoltaic insulation integrated panel 600. A support member 500 is provided on the lower frame 440. The support member 500 includes a support arm 510. The support arm 510 is located between two adjacent sets of photovoltaic insulation integrated panels 600, and the support arm 510 extends away from the main body 100 to be installed and rests on the bottom of the photovoltaic insulation integrated panel 600.

[0060] In this embodiment, the upper frame 430 of the photovoltaic insulation integrated panel 600 is engaged with the fifth mounting portion 330 of the second mounting member 300 and is located below the third mounting portion 310; the lower frame 440 of the photovoltaic insulation integrated panel 600 is engaged with the fourth mounting portion 320 of the second mounting member 300 and is located above the third mounting portion 310. A support member 500 is installed on the lower frame 440. The support member 500 has a support arm 510, which is located between two adjacent sets of photovoltaic insulation integrated panels 600, so that the support arm 510 does not occupy the internal space of a single photovoltaic insulation integrated panel 600, and can be engaged at the joint gap between two photovoltaic insulation integrated panels 600. The support arm 510 extends away from the main body 100 to be installed, and after the photovoltaic insulation integrated panel 600 is snapped onto the second mounting part 300, the bottom of the photovoltaic insulation integrated panel 600 abuts against the upper surface of the support arm 510. In this way, the weight of the photovoltaic insulation integrated panel 600 can be transferred to the lower frame 440 through the support arm 510, and then further transferred to the main body 100 to be installed. This reduces the stress on the snap-fit ​​joint between the lower frame 440 and the fourth mounting part 320, and prevents deformation or loosening of the snap-fit ​​joint between the lower frame 440 and the fourth mounting part 320 after long-term use.

[0061] See also Figure 13 In one embodiment, a third mounting component 700 is also included. The third mounting component 700 includes a first mounting segment 710, a connecting segment 720 and a second mounting segment 730 connected in sequence. The first mounting segment 710 is used to mount on the main body 100 to be mounted, and the second mounting segment 730 is used to mount on the upper frame 430 or the lower frame 440.

[0062] In this embodiment, the third mounting component 700 is fixedly connected to the main body 100 to be installed. Multiple third mounting components 700 can be provided and spaced apart from the first mounting component 200 to increase the installation stability of the photovoltaic insulation integrated panel 600. The third mounting component 700 includes a first mounting section 710, a connecting section 720, and a second mounting section 730. The connecting section 720 is connected to both the first mounting section 710 and the second mounting section 730, making the first mounting section 710, the connecting section 720, and the second mounting section 730 integrally formed. The connecting section 720 can transmit force between the first mounting section 710 and the second mounting section 730, ensuring the overall strength and stability of the third mounting component 700.

[0063] The first mounting section 710 is provided with a fourth connecting hole 711. When the third mounting component 700 is fixed to the main body 100 to be installed, a hole is first drilled in the main body 100 to be installed, and a connector (such as an expansion bolt) is passed through the fourth connecting hole 711, extending into the drilled hole in the main body 100 to be installed; then the connector is tightened, so that the third mounting component 700 is fixedly installed on the main body 100 to be installed. Through the first mounting section 710, the third mounting component 700 can transfer the weight and force of the photovoltaic insulation integrated panel 600 to the main body 100 to be installed, thereby playing a role in fixing and supporting.

[0064] The second mounting section 730 can be installed on the upper frame 430 or the lower frame 440. The connection between the second mounting section 730 and the mounting frame 400 allows the photovoltaic insulation integrated panel 600 to be accurately positioned on the main body 100 to be installed, and partially engages the photovoltaic insulation integrated panel 600 in the space between the second mounting section 730 and the mounting surface. Furthermore, the bottom of the photovoltaic insulation integrated panel 600 abuts against the connecting section 720, further increasing the installation firmness of the photovoltaic insulation integrated panel 600.

[0065] Furthermore, there is a receiving space between the second installation section 730 and the main body 100 to be installed, and the cables of the photovoltaic insulation integrated panel 600 can be installed in this receiving space to avoid the cables being exposed and to improve the aesthetics of the photovoltaic insulation integrated panel 600.

[0066] In the specific implementation of the above embodiments, the technical features can be combined in any non-contradictory way. For the sake of brevity, not all possible combinations of the above technical features are described. However, as long as the combination of these technical features is not contradictory, it should be considered to be within the scope of this specification.

[0067] The specific embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. An installation structure for a photovoltaic integrated insulation panel, characterized in that, include: The first mounting component (200) has a first mounting portion (220) and a second mounting portion (230) extending from the first mounting portion (220) toward a side away from the mounting surface, wherein the first mounting portion (220) is fixedly connected to the body (100) to be mounted. The second mounting member (300) has a third mounting portion (310) and a fourth mounting portion (320) and a fifth mounting portion (330) extending from the third mounting portion (310) to opposite sides of the third mounting portion (310), the fourth mounting portion (320) and the fifth mounting portion (330) being spaced apart and parallel to the mounting surface, the third mounting portion (310) being mounted on the second mounting portion (230); The photovoltaic insulation integrated panel (600) is detachably installed on the second mounting part (300) and snapped onto the fourth mounting part (320) and the fifth mounting part (330).

2. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, The fourth mounting part (320) and the fifth mounting part (330) are respectively disposed on both sides of the plane where the third mounting part (310) is located, and the fourth mounting part (320) and the fifth mounting part (330) are integrally bent structures relative to the third mounting part (310).

3. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, The fourth mounting portion (320) and the fifth mounting portion (330) are arranged in a coplanar manner, and within the coplanar plane of the fourth mounting portion (320) and the fifth mounting portion (330), the fourth mounting portion (320) and the fifth mounting portion (330) are arranged with a gap or spacing.

4. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, The third mounting part (310), the fourth mounting part (320) and the fifth mounting part (330) are all plate structures.

5. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, It also includes a mounting frame (400), which is fixedly connected inside the photovoltaic insulation integrated panel (600). The mounting frame (400) includes a slot structure corresponding to the fourth mounting part (320) and the fifth mounting part (330). The mounting frame (400) is respectively snapped onto the fourth mounting part (320) and the fifth mounting part (330) through the slot structure.

6. The installation structure of the photovoltaic insulation integrated panel according to claim 5, characterized in that, It also includes a rubber pad (420) located between the slot structure and the fourth mounting part (320) and / or the fifth mounting part (330).

7. The installation structure of the photovoltaic insulation integrated panel according to claim 5, characterized in that, The mounting frame (400) includes an upper frame (430) and a lower frame (440) mounted on the photovoltaic integrated insulation panel (600). A support member (500) is provided on the lower frame (440). The support member (500) includes a support arm (510). The support arm (510) is located between two adjacent sets of photovoltaic integrated insulation panels (600), and the support arm (510) extends to the side away from the main body (100) to be installed and rests on the bottom of the photovoltaic integrated insulation panel (600).

8. The installation structure of the photovoltaic insulation integrated panel according to claim 7, characterized in that, It also includes a third mounting component (700), which includes a first mounting segment (710), a connecting segment (720), and a second mounting segment (730) connected in sequence. The first mounting segment (710) is used to mount the main body (100) to be installed, and the second mounting segment (730) is used to mount the upper frame (430) or the lower frame (440).

9. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, It also includes a first connector (110), and the first mounting part (220) is provided with a first connecting hole (221). The first connector (110) passes through the first connecting hole (221) to fix the first mounting part (200) to the body (100) to be installed.

10. The installation structure of the photovoltaic insulation integrated panel according to claim 1, characterized in that, It also includes a second connector (210), the second mounting part (230) is provided with a second connecting hole (231), the third mounting part (310) is provided with a third connecting hole (311), the second connector (210) passes through the second connecting hole (231) and the third connecting hole (311) to fix the second mounting part (300) to the first mounting part (200).