Photovoltaic roof hidden frame mounting equipment

Through the modular design of the main frame and hidden frame installation components, the high-precision and stable installation of the hidden frame of the photovoltaic roof is achieved, solving the problems of low accuracy and cumbersome installation in the traditional installation methods, improving the installation efficiency and structural stability, and adapting to the installation needs under different environmental conditions.

CN120572284APending Publication Date: 2025-09-02威海丰晟新能源有限公司
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Patent Information

Application Number
CN202510902736.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

The installation of traditional photovoltaic roof hidden frames has low installation accuracy, cumbersome installation process, difficulty in taking into account both roof waterproofing and structural integrity, and lack of targeted design, which cannot meet the high efficiency needs of modern photovoltaic roof systems.

Method used

The main frame and hidden frame installation components are adopted, including lateral support components, covering components, sliding adjustment components, etc. Through modular design and close connection, precise positioning and stable installation are achieved. The sliding parts and motors are used to automatically adjust the position of the window frame to enhance structural stability and installation efficiency.

Benefits of technology

It improves installation accuracy and efficiency, enhances the stability of the structure and resistance to lateral deformation, reduces the risk of water leakage, ensures the safety and aesthetics of the installation, and adapts to installation needs under different environmental conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses photovoltaic roof hidden frame installation equipment, and belongs to the technical field of photovoltaic installation equipment. Comprising a main body frame and a hidden frame installation assembly, vertical reinforcing pieces at the bottoms of lateral supporting main pieces enhance the longitudinal stability of the lateral supporting assemblies, the structure is more stable when bearing force in the vertical direction, deformation and displacement are reduced, transverse supporting pieces at the two ends of a covering plate provide additional transverse supporting for the structure, and the structure is more stable. By means of the design of the sliding adjusting assembly, such as the cooperation of the sliding piece and the sliding base and the cooperation of the vertical sliding piece and the vertical sliding base, the position of the window frame can be accurately adjusted, the installation precision is improved, and the installation cost is reduced. The external motor drives the vertical sliding piece to move, automatic positioning and installation of the window frame are achieved, the tedious operation of manual adjustment is omitted, and the installation efficiency is greatly improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of photovoltaic installation equipment, and in particular to a photovoltaic roof hidden frame installation device. Background Art

[0002] With the rapid development of the photovoltaic industry, photovoltaic rooftop systems are becoming increasingly important in energy utilization and building integration. However, traditional installation equipment and methods have many drawbacks and are unable to meet the high precision and high efficiency requirements of modern photovoltaic rooftop systems.

[0003] In existing technologies, the installation of photovoltaic roof hidden frames often relies on complex manual operations and non-professional general equipment. This primitive installation method presents numerous problems. On the one hand, during manual operation, it is difficult to precisely control the position and angle of the hidden frame, resulting in low installation accuracy, which in turn affects the light-receiving performance and overall aesthetics of the photovoltaic modules. On the other hand, general equipment lacks targeted design and cannot efficiently adapt to the special structure of photovoltaic roof hidden frames, making the installation process cumbersome and time-consuming, making it difficult to meet the schedule requirements of large-scale photovoltaic roof construction. In addition, traditional installation methods make it difficult to balance roof waterproofing and structural integrity, posing a risk of leakage and reducing the service life and safety of the building. To this end, a photovoltaic roof hidden frame installation device is proposed. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a photovoltaic roof hidden frame installation device.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a photovoltaic roof hidden frame installation device, comprising a main frame and a hidden frame installation component, the hidden frame installation component is installed through the inner cavity of the main frame, the hidden frame installation component comprises a mounting base and lateral support components installed on both sides of the mounting base, the side end surfaces of the lateral support components are installed with a covering component, the side end surfaces of the covering component cover a horizontal plug-in, and one end of the horizontal plug-in is laterally inserted to set a sliding adjustment component.

[0006] Preferably, the lateral support assembly includes a lateral support main part and a lateral support accessory installed on one side of the lateral support main part, a vertical reinforcement piece is arranged vertically at the bottom of the lateral support main part, a connecting piece mounting plate is installed at the middle position of the side end face of the lateral support main part, a sliding channel is provided in the inner cavity of the connecting piece mounting plate, and the side end face of the connecting piece mounting plate is installed at the side end face of the mounting base. The lateral support main part serves as a basic component, and the vertical reinforcement piece arranged vertically at the bottom thereof can enhance the longitudinal stability of the entire structure, so that the lateral support assembly is more stable when subjected to vertical force and is not prone to deformation or displacement. The connecting piece mounting plate installed at the middle position of the side end face of the lateral support main part provides an installation interface for other components, which is convenient for connecting the lateral support assembly with other components such as the mounting base, thereby realizing effective integration between different components.

[0007] The sliding channel opened in the inner cavity of the connector mounting plate can form a sliding or connecting channel for installing other sliding components or connectors, thereby increasing the versatility and flexibility of the structure. The side end face of the connector mounting plate is installed on the side end face of the mounting base. This connection method can improve the reliability of the connection, ensure a close fit between the lateral support assembly and the mounting base, and transmit force and movement more stably.

[0008] Vertical reinforcements, arranged vertically at the base of the main lateral support members, significantly enhance the longitudinal stability of the lateral support assembly. When the entire structure is subjected to vertical forces, such as gravity or the vertical component of wind loads during operation, the vertical reinforcements effectively distribute and absorb these forces, minimizing deformation and displacement, and ensuring structural stability.

[0009] The connector mounting plate is installed in the middle of the side end surface of the lateral support main component, providing an important mounting interface for other components. This design allows the lateral support assembly and other components, such as the mounting base, to be tightly connected to form an integrated structure, facilitating assembly and integration of the entire equipment.

[0010] A sliding channel is created within the inner cavity of the connector mounting plate, forming a sliding or connecting channel. This channel can be used to install other sliding components or connectors, increasing the versatility and flexibility of the structure. For example, sliding brackets or connecting rods can be installed to accommodate various installation requirements and structural adjustments. The side end of the connector mounting plate is mounted to the side end of the mounting base, which improves the reliability of the connection. The tight fit and secure connection ensures more stable force transmission and more synchronized movement between the lateral support assembly and the mounting base, enhancing the stability and reliability of the entire structure.

[0011] The lateral support main component serves as the foundation, working in conjunction with the vertical reinforcements, connector mounting plates, and sliding channels to form a stable connection foundation. This foundation not only withstands forces from various directions but also provides a variety of connection and installation methods, making the entire device more structurally stable and functionally diverse. The direct interaction between the various components makes the assembly process simpler and faster. During installation, the vertical reinforcements can be installed on the lateral support main component first, followed by the connector mounting plates on the side end surfaces of the lateral support main component, and finally connected to the other components via the sliding channels. This modular design also facilitates adjustment and maintenance of the various components.

[0012] Preferably, the covering assembly includes a covering plate and a connecting hole plate provided on the side end surface of the covering plate, and transverse supports are provided at both ends of the covering plate. The side end surface of the covering plate is fitted and installed on the side end surface of the mounting base, so that the mounting base and the covering assembly are combined into a whole. The side end surface of the covering plate is fitted and installed on the side end surface of the mounting base, so that the mounting base and the covering assembly are combined into a whole, which greatly enhances the connection strength between the two. This tight connection method can effectively prevent the relative displacement or loosening of the components when subjected to force, ensuring the stability and reliability of the entire structure during long-term use. The close combination of the two significantly improves the rigidity of the entire structure, reduces the degree of deformation of the structure when subjected to load, helps maintain the accuracy and stability of the entire equipment, and is of great significance for ensuring installation accuracy and quality.

[0013] The connection holes on the side of the cover plate can be used to connect and fix other components, providing more connection points for the assembly of the entire device. This increased connection flexibility allows different components to be combined in a variety of ways, facilitating adjustment and expansion based on actual installation needs. By connecting the connection holes with other components, different functional components can be effectively integrated, making the entire device an organic whole, and improving the overall performance and functional diversity of the device.

[0014] Transverse supports at each end of the cover plate provide additional lateral support, effectively enhancing the structure's stability under lateral loads. When facing lateral wind forces or other lateral loads, the supports resist deformation, maintaining structural integrity and reducing the risk of damage. The presence of these supports gives the entire structure greater lateral rigidity, better resistance to lateral deformation, ensuring the equipment's normal operation in complex load environments and extending its service life.

[0015] The tight integration of the cover plate and mounting base, along with the lateral support provided by the lateral supports, creates a more complete and stable overall structure. This solid foundation provides reliable support for subsequent installation and operation, ensuring stability and safety for both the photovoltaic roof frame and other related components, reducing risks and difficulties during installation.

[0016] Preferably, the sliding adjustment assembly includes a sliding base and a sliding member slidably mounted on the upper end surface of the sliding base, the side end surface of the sliding member is arranged to be connected to a connecting rod, the other end of the connecting rod is connected in series with a vertical sliding member, and the side end surface of the vertical sliding member is slidably connected to one end of the vertical sliding base;

[0017] Preferably, the sliding member can move back and forth laterally along the sliding base as a path, and the vertical sliding member can move back and forth vertically along the vertical sliding base as a path;

[0018] Preferably, the outer end face of the sliding member is cross-fitted and installed in the inner cavity of the horizontal plug-in, so that the horizontal plug-in and the sliding adjustment component are combined into a whole, and the window frame to be installed is fixed on the side end face of the sliding member, and the outer wall of the window frame is fitted with the inner end wall of the sliding base. The vertical sliding member is driven by an external motor to move along the outer end wall of the vertical sliding base, and the window frame is accurately moved to the position where it needs to be installed, eliminating the tedious operation of manually adjusting the window position and greatly improving the installation speed.

[0019] The side end surface of the sliding part is used to fix the window frame, and the outer wall of the window frame fits with the inner end wall of the sliding base. This design can ensure the accurate positioning of the window frame during the installation process, reduce errors caused by manual operation, and enable the window frame to be accurately installed to the predetermined position.

[0020] The main frame is firmly installed on the wall or the edge of the window opening through expansion bolts and other fixing methods, and its horizontality and verticality are ensured to meet the requirements, providing a stable support foundation for the main equipment, thereby ensuring the stability of the entire installation process.

[0021] The provided sliding base and vertical sliding base can adjust the offset angle of the sliding member, connecting rod and vertical sliding member. When the sliding adjustment assembly is adjusted to different angles, different effects will be produced;

[0022] Properly adjusting the angle of the window frame can guide outdoor air into the room more effectively, creating good ventilation and convection. For example, tilting the window outward on the windward side allows air to flow smoothly through the window into the room, accelerating indoor air renewal and reducing indoor humidity and pollutant concentrations.

[0023] By controlling the tilt angle and direction of windows, you can achieve targeted ventilation in specific areas of the room. For example, in the kitchen or bathroom, adjust the window angle to direct airflow to these areas, promptly removing odors and moisture, and keeping the indoor air fresh.

[0024] The tilted window frame can change the propagation path of outdoor noise, causing the sound waves to be reflected and refracted during the propagation process. Part of the noise is reflected back to the outside or weakened during the propagation process, thereby reducing the amount of noise entering the room, improving the indoor acoustic environment quality, and creating a quieter resting and working space for residents.

[0025] Installing windows at different angles can change how they are affected by wind loads, and a proper design can improve a window's wind resistance. For example, in areas with strong winds or in high-rise buildings, tilting windows inward at a certain angle can reduce the impact of wind on the front of the window, reduce the stress on the window frame and glass, and enhance the window's stability and safety.

[0026] In earthquake-prone areas, the installation method of hidden window frames with a certain inclination angle can absorb and dissipate part of the seismic energy through its own flexible deformation and swing when an earthquake occurs, thereby reducing the impact on the main structure, improving the overall seismic resistance of the building, and reducing the damage to windows and buildings caused by earthquakes.

[0027] The outer end faces of the sliding elements are cross-fitted into the inner cavity of the transverse insert. This design allows the transverse insert to provide strong support for the sliding adjustment assembly, providing a stable reference surface for various movements, preventing it from shaking or shifting under load. The two work together tightly, forming a complete functional module. This not only enhances structural integrity but also ensures uniform force transmission throughout the assembly, preventing damage caused by excessive localized stress and improving the reliability and durability of the entire structure. This ensures the sliding adjustment assembly remains in the correct position during operations such as window installation, providing an accurate spatial reference for subsequent operations and reducing installation errors caused by positional deviations.

[0028] Preferably, the main frame includes a main frame vertical plate and a main frame extension plate installed on the outer end surface of the main frame vertical plate, a base support member is installed at the bottom position of the main frame extension plate, a transverse mounting plate is installed horizontally on the outer end surface of the main frame extension plate, an inner cavity support beam is arranged horizontally in the inner cavity of the transverse mounting plate, a side end vertical beam is installed vertically on the side end surface of the main frame vertical plate, the lower end surface of the inner cavity support beam is connected to the top of the mounting base, the side end surface of the sliding member is fitted to the inner end wall of the main frame extension plate, and the main frame serves as the main frame to form a stable overall structure. The lower end surface of the inner cavity support beam is connected to the top of the mounting base. This connection method stably supports the hidden frame installation assembly, ensuring that the hidden frame installation assembly has a solid foundation during the hidden frame installation operation and will not cause unnecessary displacement or shaking due to external loads or its own weight.

[0029] The structural design of the main frame enables the concealed frame installation assembly to be precisely positioned in the required spatial location. The side end surface of the sliding member fits against the inner end wall of the main frame extension plate. This not only limits the range of motion of the concealed frame installation assembly, but also ensures the accurate position of the concealed frame installation assembly within the main frame, providing an accurate spatial reference for subsequent installation operations and ensuring installation accuracy.

[0030] The concealed frame mounting assembly, when connected to the main frame, enables the main frame to actually perform concealed frame installation. The concealed frame mounting assembly can be adjusted relative to the main frame, such as by sliding the assembly's sliding structure, to accommodate concealed frame installations of varying sizes and angles. This expands the main frame's application range, transforming it from a simple support structure into a device capable of actual installation operations.

[0031] During installation, the concealed frame assembly utilizes the support and positioning provided by the main frame to perform the specific concealed frame installation operations. The various components of the concealed frame assembly, such as the mounting base, lateral support components, cover components, cross-insert components, and sliding adjustment components, work together to secure, adjust, and ultimately install the concealed frame. The main frame maintains the stability and correct position of the concealed frame assembly throughout the entire process. The two work together to complete the installation of the photovoltaic roof concealed frame.

[0032] Compared with the prior art, the present invention has the following beneficial effects:

[0033] 1. The vertical reinforcement at the bottom of the lateral support main component enhances the longitudinal stability of the lateral support assembly, making the structure more stable when subjected to vertical forces and reducing deformation and displacement. The lateral support members at both ends of the covering plate provide additional lateral support for the structure, enhancing the stability of the structure when subjected to lateral forces and improving its ability to resist lateral deformation.

[0034] 2. The tight connection between the connector mounting plate and the mounting base, as well as the fitting installation of the cover plate and the mounting base, improve the connection reliability between components, ensure the stability of force transmission and the synchronization of movement. The connection hole plate on the side end face of the cover plate provides more connection points for connection with other components, increases the flexibility of connection, and facilitates assembly and integration according to actual needs.

[0035] 3. The design of the sliding adjustment components, such as the cooperation between the sliding part and the sliding base, and the cooperation between the vertical sliding part and the vertical sliding base, can accurately adjust the position of the window frame, thereby improving the installation accuracy. By driving the vertical sliding part to move through an external motor, the automatic positioning and installation of the window frame is realized, eliminating the tedious operation of manual adjustment and greatly improving the installation efficiency.

[0036] 4. The sliding base and the vertical sliding base can adjust the offset angle of the sliding parts, connecting rods and vertical sliding parts, so that the equipment can adapt to installation requirements at different angles. The equipment can be installed under different environmental conditions, such as adjusting the installation angle of windows in strong wind areas or high-rise buildings to improve wind resistance, and absorbing earthquake energy through flexible deformation and swinging in earthquake-prone areas. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 This is a schematic diagram of the three-dimensional structure of a photovoltaic roof hidden frame installation device proposed by the present invention;

[0038] Figure 2 This is a schematic diagram of the main frame structure of a photovoltaic roof hidden frame installation device proposed by the present invention;

[0039] Figure 3 This is a schematic diagram of the structure of a hidden frame installation component of a photovoltaic roof hidden frame installation device proposed by the present invention;

[0040] Figure 4 This is a schematic diagram of the structure of a sliding adjustment component of a photovoltaic roof hidden frame installation device proposed by the present invention;

[0041] Figure 5 This is a schematic structural diagram of the lateral support assembly of a photovoltaic roof hidden frame installation device proposed by the present invention;

[0042] Figure 6 This is a schematic diagram of the combination of the covering component and the horizontal plug-in structure of the photovoltaic roof hidden frame installation device proposed by the present invention;

[0043] Figure 7 This is a schematic diagram of the covering component structure of a photovoltaic roof hidden frame installation device proposed by the present invention.

[0044] In the figure: 1. Main frame; 11. Main frame vertical plate; 12. Main frame extension plate; 13. Base support member; 14. Horizontal mounting plate; 15. Inner cavity support beam; 16. Side end vertical beam; 2. Hidden frame mounting assembly; 21. Mounting base; 22. Lateral support assembly; 221. Lateral support main member; 222. Lateral support accessories; 223. Vertical reinforcement; 224. Connector mounting plate; 225. Sliding channel; 23. Covering assembly; 231. Covering plate; 232. Connecting hole plate; 233. Horizontal support member; 24. Horizontal plug-in unit; 25. Sliding adjustment assembly; 251. Sliding base; 252. Sliding member; 253. Connecting rod; 254. Vertical sliding member; 255. Vertical sliding base. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0046] Reference Figure 1-Figure 7 Embodiment 1, a photovoltaic roof hidden frame installation device, includes a main frame 1 and a hidden frame installation component 2, the inner cavity of the main frame 1 is inserted with the hidden frame installation component 2, the hidden frame installation component 2 includes a mounting base 21 and lateral support components 22 installed on both sides of the mounting base 21, the side end surface of the lateral support component 22 is installed with a covering component 23, the side end surface of the covering component 23 covers a horizontal plug-in 24, and one end of the horizontal plug-in 24 is laterally inserted into a sliding adjustment component 25.

[0047] The lateral support assembly 22 includes a lateral support main part 221 and a lateral support attachment 222 installed on one side of the lateral support main part 221. A vertical reinforcement part 223 is arranged vertically at the bottom of the lateral support main part 221. A connector mounting plate 224 is installed in the middle of the side end face of the lateral support main part 221. A sliding channel 225 is provided in the inner cavity of the connector mounting plate 224. The side end face of the connector mounting plate 224 is installed on one side end face of the mounting base 21. The lateral support main part 221 serves as a basic component. The vertical reinforcement part 223 arranged vertically at the bottom can enhance the longitudinal stability of the entire structure, making the lateral support assembly 22 more stable when subjected to vertical forces and less prone to deformation or displacement. The connector mounting plate 224 installed in the middle of the side end face of the lateral support main part 221 provides an installation interface for other components, which facilitates the connection of the lateral support assembly 22 with other components such as the mounting base 21, thereby realizing effective integration between different components.

[0048] The sliding channel 225 opened in the inner cavity of the connector mounting plate 224 can form a sliding or connecting channel for installing other sliding components or connectors, thereby increasing the versatility and flexibility of the structure. The side end face of the connector mounting plate 224 is installed on the side end face of the mounting base 21. This connection method can improve the reliability of the connection, ensure that the lateral support assembly 22 fits tightly with the mounting base 21, and transmit force and movement more stably.

[0049] Vertical reinforcements 223, arranged vertically at the bottom of the main lateral support member 221, significantly enhance the longitudinal stability of the lateral support assembly 22. When the entire structure is subjected to vertical forces, such as gravity or the vertical component of wind loads during operation, vertical reinforcements 223 effectively disperse and absorb these forces, reducing deformation and displacement of the structure and ensuring its stability.

[0050] The connector mounting plate 224 is mounted in the middle of the side end surface of the lateral support main component 221, providing an important mounting interface for other components. This design allows the lateral support assembly 22 to be tightly connected to other components, such as the mounting base 21, forming a single structure, facilitating assembly and integration of the entire device.

[0051] In Example 2, a sliding channel 225 is provided within the inner cavity of the connector mounting plate 224, forming a sliding or connecting channel. This channel can be used to install other sliding components or connectors, increasing the versatility and flexibility of the structure. For example, a sliding bracket or connecting rod can be installed to accommodate different installation requirements and structural adjustments. The side end surface of the connector mounting plate 224 is mounted to the side end surface of the mounting base 21. This connection method can improve the reliability of the connection. The tight fit and firm connection ensure that the force transmission between the lateral support assembly 22 and the mounting base 21 is more stable and the movement is more synchronized, thereby enhancing the stability and reliability of the entire structure.

[0052] In Example 3, the lateral support main component 221 serves as the foundation component, and cooperates with the vertical reinforcement 223, the connector mounting plate 224, and the sliding channel 225 to form a stable connection foundation. This foundation can not only withstand forces in various directions, but also provide a variety of connection and installation methods, making the structure of the entire device more stable and the functions more diverse. The direct cooperation between the various components makes the assembly process simpler and faster. During the installation process, the vertical reinforcement 223 can be installed on the lateral support main component 221 first, and then the connector mounting plate 224 can be installed on the side end surface of the lateral support main component 221. Finally, it is connected to the other components through the sliding channel 225. This modular design also facilitates the adjustment and maintenance of the various components.

[0053] In Example 4, the covering assembly 23 includes a covering plate 231 and a connecting hole plate 232 opened on the side end surface of the covering plate 231. Both ends of the covering plate 231 are transversely provided with transverse support members 233. The side end surface of the covering plate 231 is fitted and installed on the side end surface of the mounting base 21, so that the mounting base 21 and the covering assembly 23 are combined into a whole. The side end surface of the covering plate 231 is fitted and installed on the side end surface of the mounting base 21, so that the mounting base 21 and the covering assembly 23 are combined into a whole, which greatly enhances the connection strength between the two. This tight connection method can effectively prevent the relative displacement or loosening of the components when subjected to force, ensuring the stability and reliability of the entire structure during long-term use. The close combination of the two significantly improves the rigidity of the entire structure, reduces the degree of deformation of the structure when subjected to load, helps to maintain the accuracy and stability of the entire equipment, and is of great significance for ensuring installation accuracy and quality.

[0054] The connection holes 232 provided on the side end of the cover plate 231 can be used to connect and secure other components, providing more connection points for assembly of the entire device. This increased connection flexibility allows different components to be combined in a variety of ways, facilitating adjustment and expansion based on actual installation requirements. By connecting the connection holes 232 with other components, different functional components can be effectively integrated, making the entire device an organic whole, and improving the overall performance and functional diversity of the device.

[0055] Transverse supports 233, positioned laterally at either end of cover plate 231, provide additional lateral support for the structure, effectively enhancing its stability when subjected to lateral forces. When faced with lateral wind forces or other lateral loads, these supports resist deformation, maintaining structural integrity and reducing the risk of damage. The presence of these supports gives the entire structure greater lateral rigidity, better resistance to lateral deformation, ensuring proper operation of the equipment in complex load environments and extending its service life.

[0056] The tight connection between the cover plate 231 and the mounting base 21, along with the lateral support provided by the lateral support members 233, creates a more complete and stable overall structure. This solid foundation provides reliable support for subsequent installation and operation, ensuring stability and safety for both the photovoltaic roof frame and other related components, reducing the risk and difficulty of installation.

[0057] In Example 5, the sliding adjustment assembly 25 includes a sliding base 251 and a sliding member 252 slidably mounted on the upper end surface of the sliding base 251. The side end surface of the sliding member 252 is connected to a connecting rod 253. The other end of the connecting rod 253 is connected in series with a vertical sliding member 254. The side end surface of the vertical sliding member 254 is slidably connected to one end of the vertical sliding base 255.

[0058] The sliding member 252 can move back and forth laterally along the sliding base 251, and the vertical sliding member 254 can move back and forth vertically along the vertical sliding base 255.

[0059] The outer end surface of the sliding member 252 is cross-fitted and installed in the inner cavity of the horizontal plug-in 24, so that the horizontal plug-in 24 and the sliding adjustment component 25 are combined into a whole. The window frame to be installed is fixed on the side end surface of the sliding member 252, and the outer wall of the window frame is fitted with the inner end wall of the sliding base 251. The vertical sliding member 254 is driven by an external motor to move along the outer end wall of the vertical sliding base 255, and the window frame is accurately moved to the position where it needs to be installed, eliminating the tedious operation of manually adjusting the window position and greatly improving the installation speed.

[0060] The side end surface of the sliding member 252 is used to fix the window frame, and the outer wall of the window frame is in contact with the inner end wall of the sliding base 251. This design can ensure the accurate positioning of the window frame during the installation process, reduce errors caused by manual operation, and enable the window frame to be accurately installed to the predetermined position.

[0061] The main frame is firmly installed on the wall or the edge of the window opening through expansion bolts and other fixing methods, and its horizontality and verticality are ensured to meet the requirements, providing a stable support foundation for the main equipment, thereby ensuring the stability of the entire installation process.

[0062] In Example 6, the sliding base 251 and the vertical sliding base 255 are capable of adjusting the offset angle of the sliding member 252, the connecting rod 253 and the vertical sliding member 254. When the sliding adjustment assembly 25 is adjusted to different angles, different effects will be produced.

[0063] Properly adjusting the angle of the window frame can guide outdoor air into the room more effectively, creating good ventilation and convection. For example, tilting the window outward on the windward side allows air to flow smoothly through the window into the room, accelerating indoor air renewal and reducing indoor humidity and pollutant concentrations.

[0064] By controlling the tilt angle and direction of windows, you can achieve targeted ventilation in specific areas of the room. For example, in the kitchen or bathroom, adjust the window angle to direct airflow to these areas, promptly removing odors and moisture, and keeping the indoor air fresh.

[0065] The tilted window frame can change the propagation path of outdoor noise, causing the sound waves to be reflected and refracted during the propagation process. Part of the noise is reflected back to the outside or weakened during the propagation process, thereby reducing the amount of noise entering the room, improving the indoor acoustic environment quality, and creating a quieter resting and working space for residents.

[0066] Example 7: Installing windows at different angles can change how wind loads act on them. Proper design can improve a window's wind resistance. For example, in areas with strong winds or in high-rise buildings, tilting windows inward at a certain angle can reduce the impact of wind on the front of the window, lowering the stress on the window frame and glass, and enhancing the window's stability and safety.

[0067] In earthquake-prone areas, the installation method of hidden window frames with a certain inclination angle can absorb and dissipate part of the seismic energy through its own flexible deformation and swing when an earthquake occurs, thereby reducing the impact on the main structure, improving the overall seismic resistance of the building, and reducing the damage to windows and buildings caused by earthquakes.

[0068] The outer end surface of the sliding member 252 is cross-fitted and mounted within the inner cavity of the transverse plug 24. This design allows the transverse plug 24 to provide strong support for the sliding adjustment assembly 25, providing a stable reference surface for various movements, preventing it from shaking or shifting when subjected to force. The two work closely together to form a complete functional module. This not only enhances the structural integrity but also ensures that force is evenly transmitted throughout the assembly, preventing damage caused by excessive local force and improving the reliability and durability of the entire structure. During operations such as window installation, this ensures that the sliding adjustment assembly 25 is always in the correct position, providing an accurate spatial reference for subsequent operations and reducing installation errors caused by positional deviations.

[0069] In Example 8, the main frame 1 includes a main frame vertical plate 11 and a main frame extension plate 12 installed on the outer end surface of the main frame vertical plate 11. A base support member 13 is installed at the bottom position of the main frame extension plate 12. A horizontal mounting plate 14 is installed horizontally on the outer end surface of the main frame extension plate 12. An inner cavity support beam 15 is arranged horizontally in the inner cavity of the horizontal mounting plate 14. A side end vertical beam 16 is installed vertically on the side end surface of the main frame vertical plate 11. The lower end surface of the inner cavity support beam 15 is connected to the top of the mounting base 21. The side end surface of the sliding member 252 is attached to the inner end wall of the main frame extension plate 12. The main frame 1 serves as the main frame to form a stable overall structure. The lower end surface of the inner cavity support beam 15 is connected to the top of the mounting base 21. This connection method stably supports the hidden frame installation component 2, ensuring that the hidden frame installation component 2 has a solid foundation during the hidden frame installation operation and will not cause unnecessary displacement or shaking due to external loads or its own weight.

[0070] The structural design of the main frame 1 enables the concealed frame mounting assembly 2 to be precisely positioned in the desired spatial location. The side end surface of the sliding member 252 is in contact with the inner end wall of the main frame extension plate 12. This not only limits the range of motion of the concealed frame mounting assembly 2, but also ensures that the concealed frame mounting assembly 2 is accurately positioned within the main frame 1, providing an accurate spatial reference for subsequent installation operations and ensuring installation accuracy.

[0071] In Example 9, the concealed frame installation assembly 2, when connected to the main frame 1, enables the main frame 1 to actually perform concealed frame installation. The concealed frame installation assembly 2 can be adjusted relative to the main frame 1, such as by using the sliding structure of the sliding adjustment assembly 25, to accommodate concealed frame installation requirements of varying sizes and angles. This expands the application range of the main frame 1, transforming it from a simple support structure into a device capable of actual installation operations.

[0072] During installation, the concealed frame mounting assembly 2 utilizes the support and positioning provided by the main frame 1 to perform the specific concealed frame installation. The various components of the concealed frame mounting assembly 2, such as the mounting base 21, lateral support assembly 22, cover assembly 23, cross-insert assembly 24, and sliding adjustment assembly 25, work together to secure, adjust, and ultimately install the concealed frame. The main frame 1 maintains the stability and correct position of the concealed frame mounting assembly 2 throughout the entire process. The two work together to complete the installation of the photovoltaic roof concealed frame.

[0073] The above is the entire working principle of the present invention.

[0074] In the present invention, the installation method, connection method or setting method of all the components mentioned above are common mechanical methods, and the specific structures, models and coefficient indicators of all its components are its own technology. As long as it can achieve its beneficial effects, it can be implemented, so it will not be elaborated on.

[0075] The above embodiments are preferred implementation modes of the present invention, but the implementation modes of the present invention are not limited to the above embodiments. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principles of the present invention should be considered as equivalent replacement methods and are included in the scope of protection of the present invention.

[0076] In the present invention, unless otherwise specified, directional words contained in terms such as "up, down, left, right, front, back, inside, outside, and vertical, horizontal" only represent the orientation of the term in normal use, or are common names understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, number series nouns such as "first", "second" and "third" do not represent specific quantities and orders, but are merely used to distinguish names. Moreover, the terms "include", "comprise" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also other elements that are not explicitly listed, or also includes elements inherent to such process, method, article or apparatus.

Claims

1. A photovoltaic roof hidden frame installation device, comprising a main frame (1) and a hidden frame installation assembly (2), characterized in that: The inner cavity of the main frame (1) is penetrated by a hidden frame installation component (2), the hidden frame installation component (2) comprises a mounting base (21) and lateral support components (22) mounted on both sides of the mounting base (21), the side end surface of the lateral support component (22) is mounted with a covering component (23), the side end surface of the covering component (23) covers a transverse plug-in component (24), and one end of the transverse plug-in component (24) is laterally inserted into a sliding adjustment component (25).

2. A photovoltaic roof hidden frame installation device according to claim 1, characterized in that: The lateral support assembly (22) includes a lateral support main component (221) and a lateral support accessory (222) installed on one side of the lateral support main component (221), a vertical reinforcement component (223) is arranged vertically at the bottom of the lateral support main component (221), a connector mounting plate (224) is installed at the middle position of the side end surface of the lateral support main component (221), a sliding channel (225) is provided in the inner cavity of the connector mounting plate (224), and the side end surface of the connector mounting plate (224) is installed on one side end surface of the mounting base (21).

3. The photovoltaic roof hidden frame installation device according to claim 1, characterized in that: The covering assembly (23) comprises a covering plate (231) and a connecting hole plate (232) provided on a side end surface of the covering plate (231), and transverse support members (233) are transversely provided at both ends of the covering plate (231).

4. The photovoltaic roof hidden frame installation device according to claim 3, characterized in that: The side end surface of the covering plate (231) is fitted onto the side end surface of the mounting base (21), so that the mounting base (21) and the covering assembly (23) are combined into a whole.

5. The photovoltaic roof hidden frame installation device according to claim 1, characterized in that: The sliding adjustment assembly (25) includes a sliding base (251) and a sliding member (252) slidably mounted on the upper end surface of the sliding base (251), the side end surface of the sliding member (252) is connected to a connecting rod (253), the other end of the connecting rod (253) is connected in series with a vertical sliding member (254), and the side end surface of the vertical sliding member (254) is slidably connected to one end of the vertical sliding base (255).

6. The photovoltaic roof hidden frame installation device according to claim 5, characterized in that: The sliding member (252) can perform transverse reciprocating movement along the sliding base (251) as a path, and the vertical sliding member (254) can perform vertical reciprocating movement along the vertical sliding base (255) as a path.

7. The photovoltaic roof hidden frame installation device according to claim 5, characterized in that: The outer end surface of the sliding member (252) is cross-fitted and installed in the inner cavity of the horizontal plug-in unit (24), so that the horizontal plug-in unit (24) and the sliding adjustment component (25) are combined into a whole.

8. The photovoltaic roof hidden frame installation device according to claim 1, characterized in that: The main frame (1) comprises a main frame vertical plate (11) and a main frame extension plate (12) installed on the outer end surface of the main frame vertical plate (11), a base support member (13) is installed at the bottom position of the main frame extension plate (12), a transverse mounting plate (14) is transversely mounted on the outer end surface of the main frame extension plate (12), an inner cavity support beam (15) is transversely arranged in the inner cavity of the transverse mounting plate (14), and a side end vertical beam (16) is vertically mounted on the side end surface of the main frame vertical plate (11).

9. The photovoltaic roof hidden frame installation device according to claim 8, characterized in that: The lower end surface of the inner cavity support beam (15) is connected to the top of the mounting base (21), and the side end surface of the sliding member (252) is attached to the inner end wall of the main frame extension plate (12).