Photovoltaic curtain wall mounting structure for zero-carbon building

CN224804902UActive Publication Date: 2026-09-25DONYA DECORATION CO LTD
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Patent Information

Application Number
CN202522321287.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-09-25
Estimated Expiration
2035-11-03

AI Technical Summary

Technical Problem

[0003]现有技术中,零碳建筑的光伏幕墙的安装通常采用栓接固定的连接方式,在对外墙构件固定时,多依赖多组螺栓拼接等方式,安装拆卸时需逐一拆卸固定件、校准传动部件,操作流程烦琐,前期安装和后期维保的难度相对较高,安装便利性与稳固性相对较为不足,且光伏幕墙组件通过支架与建筑主体直接锁定后,其安装角度便无法根据阳光照射角度变化进行调整,导致光伏组件在不同季节、不同时段难以始终保持最佳受光姿态,制约了太阳能吸收效率,无法较好的根据阳光照射角度,进行角度微调,调整适配性与安装便利性不够好,导致后期维护或角度优化时耗时费力,为此我们提出用于零碳建筑的光伏幕墙安装结构来解决上述问题

Benefits of technology

[0013]与现有技术相比,本实用新型的优点和积极效果在于:

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Abstract

The utility model relates to curtain wall mounting structure technical field discloses photovoltaic curtain wall mounting structure for zero carbon building, including photovoltaic curtain wall main part and thermal -insulated wall main part, the inside of thermal -insulated wall main part is inserted with the wall body bolted frame of fixed installation in building outer wall, the utility model discloses, through wall body bolted frame laying and pasting in building outer wall department, can support fixed thermal -insulated wall main part and support mounting plate, the inner side of the top hanging fastener of hanging support hook can be correspondingly hung and connected, the inner side of anti -migration sleeve can be stably sleeved in abutment fixing part, the dismounting of photovoltaic curtain wall main part is convenient, operating angle adjustment air cylinder, can push photovoltaic curtain wall main part sector angle adjustment, adapt to sunlight irradiation angle, corrosion -resistant protection inner cover plays the dampproof protection function to component, makes device installation loading more simple and convenient, and it is convenient to early installation and later maintenance, and can adjust according to sunlight irradiation angle change, and the adjustment adaptation effect is good, and installation is stable and not easy to fall.
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Description

Technical Field

[0001] This utility model relates to the field of curtain wall installation structure technology, and in particular to a photovoltaic curtain wall installation structure for zero-carbon buildings. Background Technology

[0002] Against the backdrop of the global push for carbon neutrality and the increasing demand for energy-efficient buildings, zero-carbon buildings have become an important development direction for the construction industry. Photovoltaic curtain walls, as a core component for achieving energy self-sufficiency in zero-carbon buildings, can directly convert solar energy into electricity, effectively reducing the building's dependence on traditional energy sources. The installation structure of photovoltaic curtain walls used in zero-carbon buildings is a crucial support system connecting photovoltaic curtain wall components to the main building structure. Its core function is to provide a stable mounting foundation for the photovoltaic curtain wall components, enabling precise positioning and fixation of the photovoltaic modules. It is an important component in ensuring the safe and efficient operation of photovoltaic curtain walls in zero-carbon buildings and promoting the transition of building energy systems to zero carbon.

[0003] In existing technologies, the installation of photovoltaic curtain walls in zero-carbon buildings typically employs bolted connections. Fixing external wall components often relies on multiple sets of bolts, requiring the individual disassembly of fasteners and calibration of transmission components during installation and disassembly. This cumbersome process increases the difficulty of initial installation and subsequent maintenance, resulting in relatively insufficient installation convenience and stability. Furthermore, once the photovoltaic curtain wall components are directly locked to the building structure via brackets, their installation angle cannot be adjusted according to changes in sunlight angle. This makes it difficult for the photovoltaic components to maintain optimal light-receiving posture in different seasons and at different times, limiting solar energy absorption efficiency. The inability to effectively fine-tune the angle based on sunlight angle further hinders adaptability and installation convenience, leading to time-consuming and labor-intensive maintenance or angle optimization. Therefore, we propose a photovoltaic curtain wall installation structure for zero-carbon buildings to address these issues. Utility Model Content

[0004] In response to the problems raised, this utility model provides a photovoltaic curtain wall installation structure for zero-carbon buildings to solve the aforementioned problems.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A photovoltaic curtain wall installation structure for zero-carbon buildings includes a photovoltaic curtain wall body and an insulation wall body, wherein a wall bolt frame for fixing and installing on the exterior wall of the building is inserted inside the insulation wall body. The wall mounting bracket is bolted to a support plate on the side away from the exterior wall. The support plate is provided with a top hook and abutment fastener on the side away from the main body of the insulation wall. The photovoltaic curtain wall body is provided with a hanging support hook attached to the top hook on the side near the main body of the insulation wall. An anti-deviation sleeve is installed on the side of the photovoltaic curtain wall body and positioned outside the abutment fastener. A corrosion-resistant protective inner cover is provided on the side of the photovoltaic curtain wall body near the main body of the insulation wall and fitted onto the support mounting plate. An angle adjustment cylinder is integrally hinged to the outer side of the anti-deviation sleeve and the abutment fastener.

[0006] Preferably, a moisture-proof and waterproof board is provided on the side of the main body of the insulation wall away from the building exterior wall, and a moisture-proof and leak-proof frame is integrally filled on the main body of the insulation wall and the moisture-proof and waterproof board, and the wall bolt bracket is inserted and installed inside the moisture-proof and leak-proof frame.

[0007] Preferably, the wall bolt bracket is an H-shaped mounting bracket, with both ends of the wall bolt bracket fixedly installed on the building exterior wall and the supporting mounting plate, respectively. The main body of the insulation wall is fixedly supported by multiple wall bolt brackets, and the supporting mounting plate is vertically installed on the wall bolt bracket.

[0008] Preferably, the two top hooks and one abutment fastener are arranged in an inverted triangle shape. The top hook includes a bolted mounting plate and an anti-fall hook. Adjacent bolted mounting plates and anti-fall hooks are welded and fixed together. The bolted mounting plate is bolted and fixed to the support mounting plate. The lifting support hook is U-shaped and is hung and installed on the anti-fall hook.

[0009] Preferably, the abutting fastener includes a fixing plate and a semi-circular limiting block, the fixing plate and the semi-circular limiting block are an integral unit, the fixing plate is fixedly installed on the bottom of the supporting mounting plate on the side away from the main body of the insulation wall, the anti-deviation sleeve is fitted and sleeved on the outside of the semi-circular limiting block, and the two ends of the angle adjusting cylinder are respectively installed and fixed on the fixing plate and the anti-deviation sleeve.

[0010] Preferably, a reinforcing plate is fixedly installed on the side of the photovoltaic curtain wall body close to the insulation wall body, and the corrosion-resistant protective inner cover, the lifting support hook and the anti-deviation sleeve are all installed on the reinforcing plate. The corrosion-resistant protective inner cover is a corrosion-resistant elastic rubber cover.

[0011] Preferably, a plurality of the wall bolt brackets are installed in a rectangular shape on the side of the support mounting plate, and an anti-wear rubber strip is attached to the outer side of the support mounting plate, and the corrosion-resistant protective inner cover is sleeved on the anti-wear rubber strip.

[0012] Preferably, the angle adjustment cylinder includes two hinged mounting ends and a control cylinder body. The two hinged mounting ends are fixedly mounted on both ends of the control cylinder body. Each of the two hinged mounting ends is fixedly mounted with a screw fixing seat on the side away from the control cylinder body. The control cylinder body is hingedly connected to the screw fixing seat by the hinged mounting ends. The two screw fixing seats are respectively fixedly mounted on the outside of the anti-displacement sleeve and the abutment fixing member. The anti-displacement sleeve is pushed and displaced by the control cylinder body.

[0013] Compared with the prior art, the advantages and positive effects of this utility model are as follows: 1. This photovoltaic curtain wall installation structure for zero-carbon buildings, by laying and attaching the wall bolt bracket to the exterior wall of the building, can support and fix the main body of the thermal insulation wall and the mounting plate, ensuring that the main body of the thermal insulation wall plays its role in thermal insulation and moisture prevention. The mounting plate can install and support the top hook and the abutment fixing part. The side of the main body of the photovoltaic curtain wall is equipped with a hanging support hook and an anti-offset sleeve. First, the hanging support hook can be hung and installed on the inner side of the top hook, and the anti-offset sleeve can be stably fitted on the inner side of the abutment fixing part, playing a fixing and locking role, which facilitates the stable hanging and installation of the main body of the photovoltaic curtain wall, making the installation and mounting of the device relatively simple and convenient, and facilitating the initial installation and subsequent maintenance.

[0014] 2. This photovoltaic curtain wall installation structure for zero-carbon buildings features an angle adjustment cylinder integrally hinged to the outside of the anti-offset sleeve and the abutment fixing component. The operating angle adjustment cylinder can push the main body of the photovoltaic curtain wall to make fan-shaped angle adjustments around the connection point of the top hook and the hanging support hook, which is convenient for adjustment according to changes in the angle of sunlight. The corrosion-resistant protective inner cover provides moisture protection for the components. The anti-offset sleeve and the abutment fixing component are interlocked and not easy to disengage, and the movement limit is stable, allowing the device to be adjusted according to changes in the angle of sunlight. The adjustment and adaptation effect is good, and the installation is stable and not easy to fall off. Attached Figure Description

[0015] Figure 1 A frontal perspective three-dimensional schematic diagram of a photovoltaic curtain wall installation structure for zero-carbon buildings proposed in this utility model; Figure 2 This utility model provides a front view sectional perspective view of a photovoltaic curtain wall installation structure for zero-carbon buildings. Figure 3 A side-view perspective schematic diagram of a photovoltaic curtain wall installation structure for zero-carbon buildings proposed in this utility model; Figure 4 This is a three-dimensional front view of the corrosion-resistant protective inner cover of this utility model after removal. Figure 5 This is a three-dimensional front view of the main body of the photovoltaic curtain wall and the corrosion-resistant protective inner cover of this utility model after removal; Figure 6This utility model presents a three-dimensional side view sectional view of a photovoltaic curtain wall installation structure for zero-carbon buildings.

[0016] In the diagram: 1. Main body of photovoltaic curtain wall; 2. Main body of thermal insulation wall; 201. Moisture-proof and waterproof board; 202. Moisture-proof and leak-proof frame; 3. Wall bolt bracket; 4. Support mounting plate; 401. Wear-resistant rubber strip; 5. Top hook fastener; 501. Bolted mounting plate; 502. Anti-fall hook; 6. Abutment fixing component; 601. Fixing plate; 602. Semi-circular limit block; 7. Lifting support hook; 8. Anti-deviation sleeve; 9. Corrosion-resistant protective inner cover; 901. Reinforcing plate; 10. Angle adjustment cylinder; 101. Hinge mounting end; 102. Control cylinder body; 103. Screw fixing seat. Detailed Implementation

[0017] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0018] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0019] Please see Figures 1-6 A photovoltaic curtain wall installation structure for zero-carbon buildings includes a photovoltaic curtain wall body 1 and an insulation wall body 2. The insulation wall body 2 has a wall bolt frame 3 that is fixedly installed on the exterior wall of the building. A support mounting plate 4 is bolted to the side of the wall bolt bracket 3 away from the outer wall. The support mounting plate 4 is provided with a top hook 5 and an abutment fixing part 6 on the side away from the main body of the insulation wall 2. The photovoltaic curtain wall body 1 is provided with a hanging support hook 7 that is suspended from the top hook 5 on the side close to the main body of the insulation wall 2. An anti-displacement sleeve 8 is installed on the side of the photovoltaic curtain wall body 1 and positioned outside the abutment fixing part 6. A corrosion-resistant protective inner cover 9 is provided on the side of the photovoltaic curtain wall body 1 close to the main body of the insulation wall 2 and fitted onto the support mounting plate 4. An angle adjustment cylinder 10 is integrally hinged to the outer side of the anti-displacement sleeve 8 and the abutment fixing part 6. The beneficial effects that this plan aims to achieve are: By laying and attaching the wall bolt bracket 3 to the exterior wall of the building, the main body of the thermal insulation wall 2 and the support mounting plate 4 can be supported and fixed, so that the main body of the thermal insulation wall 2 can play a role in thermal insulation and moisture prevention. The support mounting plate 4 can install and support the top hook 5 and the abutment fixing part 6. The side of the photovoltaic curtain wall main body 1 is provided with a hanging support hook 7 and an anti-offset sleeve 8. First, the hanging support hook 7 can be hung and installed on the inner side of the top hook 5, and the anti-offset sleeve 8 can be stably sleeved on the inner side of the abutment fixing part 6, so as to play a role in fixing and locking, and facilitate the stable hanging and installation of the photovoltaic curtain wall main body 1. An angle adjustment cylinder 10 is integrally hinged to the outer side of the anti-offset sleeve 8 and the abutment fixing part 6. The operating angle adjustment cylinder 10 can push the photovoltaic curtain wall body 1 to make fan-shaped angle adjustments with the connection point of the top hook 5 and the hanging support hook 7 as the axis, which is convenient to adjust according to the change of sunlight angle. The corrosion-resistant protective inner cover 9 provides moisture protection for the components. The anti-offset sleeve 8 and the abutment fixing part 6 are interlocked and not easy to disengage. The movement limit is stable, making the installation and mounting of the device simple and convenient. It is convenient for early installation and later maintenance. It can be adjusted according to the change of sunlight angle, with good adjustment and adaptation effect, and the installation is stable and not easy to fall off.

[0020] Furthermore, a moisture-proof and waterproof board 201 is provided on the side of the insulation wall body 2 away from the building exterior wall. A moisture-proof and leak-proof frame 202 is integrally filled on the insulation wall body 2 and the moisture-proof and waterproof board 201. The wall bolt bracket 3 is inserted and installed inside the moisture-proof and leak-proof frame 202. Specifically, the side of the insulation wall body 2 away from the building's exterior wall is provided with a moisture-proof and waterproof board 201. While the insulation wall body 2 provides insulation, the moisture-proof and waterproof board 201 also provides moisture-proof and corrosion-resistant properties, exhibiting excellent moisture-proof and insulation capabilities. Furthermore, a moisture-proof and leak-proof frame 202 is integrally filled on the insulation wall body 2 and the moisture-proof and waterproof board 201, allowing the wall bolting frame 3 to pass through the moisture-proof and leak-proof frame 202. This prevents water leakage and moisture absorption at the connection between the insulation wall body 2, the moisture-proof and waterproof board 201, and the wall bolting frame 3, resulting in good corrosion resistance.

[0021] Furthermore, the wall bolt bracket 3 is an H-shaped mounting bracket. The two ends of the wall bolt bracket 3 are fixedly installed on the building exterior wall and the supporting mounting plate 4, respectively. The main body of the insulation wall 2 is fixedly supported by multiple wall bolt brackets 3, and the supporting mounting plate 4 is vertically installed on the wall bolt bracket 3. Specifically, the wall bolt bracket 3 is an H-shaped mounting bracket, which is convenient to install on the building exterior wall and the supporting mounting plate 4. The main body of the insulation wall 2 is fixed and supported by multiple wall bolt brackets 3, which provides stable installation and support, high load-bearing strength, and facilitates the installation and fixing of the supporting mounting plate 4, ensuring stable load-bearing.

[0022] Furthermore, the two top hooks 5 and one abutment fixing member 6 are arranged in an inverted triangle shape. The top hook 5 includes a bolt mounting plate 501 and an anti-fall hook 502. Adjacent bolt mounting plates 501 and anti-fall hooks 502 are welded and fixed together. The bolt mounting plate 501 is bolted and fixed to the support mounting plate 4. The lifting support hook 7 is U-shaped and is hung and installed on the anti-fall hook 502. Specifically, the two top hooks 5 and one abutment fixing piece 6 are arranged in an inverted triangle shape, which facilitates the stable installation and placement of the photovoltaic curtain wall body 1 and ensures stable load-bearing capacity. The bolted mounting plate 501 can be stably installed on the support mounting plate 4 and is suspended by the anti-fall hook 502 and the suspension support hook 7. The suspension support hook 7 is U-shaped and provides stable support. When the photovoltaic curtain wall body 1 moves in a fan shape, its axis is located at the connection between the anti-fall hook 502 and the suspension support hook 7, ensuring stable load-bearing capacity and good support adaptability.

[0023] Furthermore, the abutting fastener 6 includes a fixing plate 601 and a semi-circular limiting block 602. The fixing plate 601 and the semi-circular limiting block 602 are an integral unit. The fixing plate 601 is fixedly installed on the bottom of the supporting mounting plate 4 on the side away from the main body of the insulation wall 2. The anti-deviation sleeve 8 is fitted and sleeved on the outside of the semi-circular limiting block 602. The two ends of the angle adjusting cylinder 10 are respectively installed and fixed on the fixing plate 601 and the anti-deviation sleeve 8. Specifically, the fixing plate 601 is fixedly installed on the support mounting plate 4, and the anti-offset sleeve 8 is fitted and sleeved on the outside of the semi-circular limit block 602. The fit is stable, and the extension thread length of the angle adjustment cylinder 10 is less than the length of the semi-circular limit block 602, so it is not easy to detach when moving, and the engagement is stable.

[0024] Furthermore, a reinforcing plate 901 is fixedly installed on the side of the photovoltaic curtain wall body 1 close to the thermal insulation wall body 2. The corrosion-resistant protective inner cover 9, the hanging support hook 7 and the anti-deviation sleeve 8 are all installed on the reinforcing plate 901. The corrosion-resistant protective inner cover 9 is a corrosion-resistant elastic rubber cover. Specifically, a reinforcing plate 901 is fixedly installed on the side of the photovoltaic curtain wall body 1 closest to the insulation wall body 2, which plays a good role in strengthening and fixing the photovoltaic curtain wall body 1. The corrosion-resistant protective inner cover 9, the hanging support hook 7 and the anti-deviation sleeve 8 are all installed on the reinforcing plate 901, which ensures stable installation and support. The photovoltaic curtain wall body 1 has a good hanging effect and high load-bearing strength. In addition, the corrosion-resistant protective inner cover 9 is a corrosion-resistant elastic rubber cover with good elastic fitting effect and excellent adaptability.

[0025] Furthermore, multiple wall bolt brackets 3 are installed in a rectangular shape on the side of the support mounting plate 4, and an anti-wear rubber strip 401 is attached to the outer side of the support mounting plate 4, and a corrosion-resistant protective inner cover 9 is sleeved on the anti-wear rubber strip 401. Specifically, the wall bolt bracket 3 is installed in a rectangular shape on the side of the support mounting plate 4. The support mounting plate 4 is stably stressed during installation, and the wear-resistant rubber strip 401 can stably fit the sleeve of the corrosion-resistant protective inner cover 9, resulting in a good sealing and adjustment effect.

[0026] Furthermore, the angle adjustment cylinder 10 includes two hinged mounting ends 101 and a control cylinder body 102. The two hinged mounting ends 101 are fixedly mounted at both ends of the control cylinder body 102. Screw fixing seats 103 are fixedly mounted on the side of each hinged mounting end 101 away from the control cylinder body 102. The control cylinder body 102 is hingedly connected to the screw fixing seats 103 by the hinged mounting ends 101. The two screw fixing seats 103 are fixedly mounted on the outside of the anti-displacement sleeve 8 and the abutment fixing member 6, respectively. The anti-displacement sleeve 8 is pushed and displaced by the control cylinder body 102. Specifically, the hinged mounting end 101 can be installed and connected to the screw fixing seat 103, which is convenient for installation between the anti-displacement sleeve 8 and the abutment fixing member 6. The main body 102 of the operation control cylinder can be hinged to move and push the anti-displacement sleeve 8, thereby pushing the photovoltaic curtain wall main body 1 to move and shift, with good movement effect.

[0027] How to use and how to work this device: By riveting and fixing the wall bolt bracket 3 to the exterior wall of the building, the main body of the insulation wall 2 is laid and adhered to the exterior wall of the building. It is evenly supported by multiple wall bolt brackets 3, which maintains the stable laying of the main body of the insulation wall 2. It has good heat preservation, moisture-proof and sound insulation effects. The side of the wall bolt bracket 3 away from the exterior wall can be fixed to the support mounting plate 4, which can be used as an external frame for installation. The support mounting plate 4 is equipped with top hook fasteners 5 and abutment fixing parts 6. The two top hook fasteners 5 and one abutment fixing part 6 are arranged in an inverted triangle shape, which can facilitate the stable support after the photovoltaic curtain wall main body 1 is hung and assembled. The side of the photovoltaic curtain wall main body 1 is equipped with hanging support hooks 7 and anti-displacement sleeves 8. The two hanging support hooks 7 can be hung and moved on the inner side of the top hook fasteners 5, which can be hinged and hung for positioning. The anti-displacement sleeve 8 can be stably sleeved on the inner side of the abutment fixing part 6, which can play a fixing and locking role, which can facilitate the stable hanging and installation of the photovoltaic curtain wall main body 1 and make the installation operation convenient. An angle adjustment cylinder 10 is integrally hinged to the outer side of the anti-offset sleeve 8 and the abutment fixing part 6. The angle adjustment cylinder 10 can push the photovoltaic curtain wall body 1 to adjust the fan-shaped angle. The fan-shaped angle axis of the photovoltaic curtain wall body 1 is located at the connection point of the top hook 5 and the hanging support hook 7. The fan-shaped adjustment is convenient and can be adjusted according to the change of sunlight angle. The corrosion-resistant protective inner cover 9 is sleeved on the outer side of the support mounting plate 4 to play a role in moisture protection. Long-term outdoor exposure is not easy to damage the internal components, and the damage resistance is good. Moreover, the extension thread length of the angle adjustment cylinder 10 is less than the internal groove length of the anti-offset sleeve 8, so that when the angle adjustment cylinder 10 moves to the longest distance, the anti-offset sleeve 8 and the abutment fixing part 6 are locked together and not easy to disengage. The movement limit is stable, the adjustment and adaptation effect is good, and the installation is stable and not easy to fall off. A moisture-proof and waterproof board 201 is provided on the side of the thermal insulation wall body 2 away from the building exterior wall. While the thermal insulation wall body 2 provides thermal insulation, the moisture-proof and waterproof board 201 can also provide moisture-proof and corrosion-resistant functions. It has excellent moisture-proof and thermal insulation capabilities. Furthermore, a moisture-proof and leak-proof frame 202 is integrally filled on the thermal insulation wall body 2 and the moisture-proof and waterproof board 201, so that the wall bolting frame 3 can pass through the thermal insulation wall body 2 and the moisture-proof and waterproof board 201 through the moisture-proof and leak-proof frame 202. This makes the connection between the thermal insulation wall body 2 and the moisture-proof and waterproof board 201 and the wall bolting frame 3 less prone to water leakage and moisture, and has good corrosion resistance. The wall bolt bracket 3 is an H-shaped mounting bracket, which is convenient to install on the building exterior wall and the supporting mounting plate 4. The main body of the insulation wall 2 is fixed and supported by multiple wall bolt brackets 3, which provides stable installation and support, high load-bearing strength, and facilitates the installation and fixing of the supporting mounting plate 4, ensuring stable load-bearing. Two top hooks 5 and one abutment fixing piece 6 are arranged in an inverted triangle shape, which facilitates the stable installation and placement of the photovoltaic curtain wall body 1 and ensures stable load bearing. The top hooks 5 include a bolted mounting plate 501 and an anti-fall hook 502. The bolted mounting plate 501 can be stably installed on the support mounting plate 4 and is suspended by the anti-fall hook 502 and the suspension support hook 7. The suspension support hook 7 is U-shaped and the suspension support is stable. When the photovoltaic curtain wall body 1 moves in a fan shape, its axis is located at the connection between the anti-fall hook 502 and the suspension support hook 7, and the connection load bearing is stable and the support adaptability is good. The abutting fastener 6 includes a fixing plate 601 and a semi-circular limiting block 602. The fixing plate 601 is fixedly installed on the supporting mounting plate 4. The anti-offset sleeve 8 fits snugly on the outside of the semi-circular limiting block 602, and the fit is stable. Moreover, the extension thread length of the angle adjustment cylinder 10 is less than the length of the semi-circular limiting block 602, so it is not easy to disengage when moving, and the engagement is stable. A reinforcing plate 901 is fixedly installed on the side of the photovoltaic curtain wall body 1 close to the thermal insulation wall body 2, which plays a good role in strengthening and fixing the photovoltaic curtain wall body 1. The corrosion-resistant protective inner cover 9, the hanging support hook 7 and the anti-deviation sleeve 8 are all installed on the reinforcing plate 901, which ensures stable installation and support. The photovoltaic curtain wall body 1 has a good hanging effect and high load-bearing strength. In addition, the corrosion-resistant protective inner cover 9 is a corrosion-resistant elastic rubber cover with good elastic fitting effect and excellent adaptability. The wall bolt bracket 3 is installed in a rectangular shape on the side of the support mounting plate 4. The support mounting plate 4 is installed under stable force. The wear-resistant rubber strip 401 can be stably adapted to the sleeve of the corrosion-resistant protective inner cover 9, and the sealing adjustment effect is good. The angle adjustment cylinder 10 has two hinged mounting ends 101 and a control cylinder body 102. The hinged mounting ends 101 can be connected to the screw fixing seat 103 for easy installation between the anti-offset sleeve 8 and the abutment fixing member 6. The control cylinder body 102 can be hinged to move and push the anti-offset sleeve 8, thereby pushing the photovoltaic curtain wall body 1 to move and displace, resulting in good movement effect. This makes the installation and mounting of the device simple and convenient, facilitating both initial installation and subsequent maintenance. It can also be adjusted according to changes in the angle of sunlight, resulting in good adaptation and stable installation that is not prone to falling off.

[0028] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A photovoltaic curtain wall installation structure for zero-carbon buildings, comprising a photovoltaic curtain wall body (1) and an insulation wall body (2), characterized in that: The interior of the thermal insulation wall body (2) is interspersed with wall bolt brackets (3) that are fixedly installed on the exterior wall of the building. The wall bolt bracket (3) is bolted to a support mounting plate (4) on the side away from the outer wall. The support mounting plate (4) is provided with a top hook (5) and an abutment fixing piece (6) on the side away from the thermal insulation wall body (2). The photovoltaic curtain wall body (1) is provided with a hanging support hook (7) that is suspended from the top hook (5) on the side close to the thermal insulation wall body (2). The photovoltaic curtain wall body (1) is provided with an anti-offset sleeve (8) that is sleeved and positioned outside the abutment fixing piece (6) on the side. The photovoltaic curtain wall body (1) is provided with a corrosion-resistant protective inner cover (9) that is sleeved on the support mounting plate (4) on the side close to the thermal insulation wall body (2). An angle adjustment cylinder (10) is integrally hinged to the outer side of the anti-offset sleeve (8) and the abutment fixing piece (6).

2. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: The main body of the thermal insulation wall (2) is provided with a moisture-proof and waterproof board (201) on the side away from the building exterior wall. A moisture-proof and leak-proof frame (202) is integrally filled on the main body of the thermal insulation wall (2) and the moisture-proof and waterproof board (201). The wall bolt bracket (3) is inserted and installed inside the moisture-proof and leak-proof frame (202).

3. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: The wall bolt bracket (3) is an H-shaped mounting bracket. The two ends of the wall bolt bracket (3) are fixedly installed on the building exterior wall and the support mounting plate (4) respectively. The insulation wall body (2) is fixedly supported by multiple wall bolt brackets (3). The support mounting plate (4) is vertically installed on the wall bolt bracket (3).

4. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: Two top hooks (5) and one abutment fastener (6) are arranged in an inverted triangle shape. The top hook (5) includes a bolted mounting plate (501) and an anti-fall hook (502). Adjacent bolted mounting plates (501) and anti-fall hooks (502) are welded and fixed together. The bolted mounting plate (501) is bolted and fixed to the support mounting plate (4). The lifting support hook (7) is U-shaped and is hung on the anti-fall hook (502).

5. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: The abutting fastener (6) includes a fixing plate (601) and a semi-circular limiting block (602). The fixing plate (601) and the semi-circular limiting block (602) are an integral unit. The fixing plate (601) is fixedly installed on the bottom of the support mounting plate (4) away from the main body of the insulation wall (2). The anti-deviation sleeve (8) is fitted and sleeved on the outside of the semi-circular limiting block (602). The two ends of the angle adjustment cylinder (10) are respectively installed and fixed on the fixing plate (601) and the anti-deviation sleeve (8).

6. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: The photovoltaic curtain wall body (1) is fixedly installed with a reinforcing plate (901) on the side close to the thermal insulation wall body (2). The corrosion-resistant protective inner cover (9), the lifting support hook (7) and the anti-deviation sleeve (8) are all installed on the reinforcing plate (901). The corrosion-resistant protective inner cover (9) is a corrosion-resistant elastic rubber cover.

7. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: Multiple wall bolt brackets (3) are installed in a rectangular shape on the side of the support mounting plate (4). The outer side of the support mounting plate (4) is fitted with an anti-wear rubber strip (401), and the corrosion-resistant protective inner cover (9) is sleeved on the anti-wear rubber strip (401).

8. The photovoltaic curtain wall installation structure for zero-carbon buildings according to claim 1, characterized in that: The angle adjustment cylinder (10) includes two hinged mounting ends (101) and a control cylinder body (102). The two hinged mounting ends (101) are fixedly mounted on both ends of the control cylinder body (102). Screw fixing seats (103) are fixedly mounted on the side of the two hinged mounting ends (101) away from the control cylinder body (102). The control cylinder body (102) is hingedly connected to the screw fixing seats (103) by the hinged mounting ends (101). The two screw fixing seats (103) are fixedly mounted on the outside of the anti-offset sleeve (8) and the abutment fixing member (6) respectively. The anti-offset sleeve (8) is pushed and displaced by the control cylinder body (102).