Building facade connecting structure and building
By setting up support components and transparent paving components on the outside of the building foundation, the lack of lighting caused by the existing building facade connection structure is solved, better lighting effects and living comfort are achieved, and insect-proof functions are provided, which improves the aesthetics and practicality of the building.
Patent Information
- Application Number
- CN202421751013.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-07-23
AI Technical Summary
The existing building facade connection structure leads to poor lighting, affecting the lighting effect and aesthetics inside the building.
Support components are set on the outside of the building foundation, and transparent paving components are covered above the hollow area. A strip structure made of polycarbonate is adopted, combining insect-proof components and shading components to achieve stable connection and insect-proof functions of transparent paving components.
It improves the natural light inside the building, improves the lighting effect and living comfort, and has energy-saving and insect-proof functions, enhancing the aesthetics and practicality of the building.
Smart Images

Figure CN223214735U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building structures, in particular to a connection structure of building facades and a building. Background Art
[0002] With the continuous progress of society, existing building facades (such as old buildings) are facing challenges, not only in terms of facade aesthetic design but also in terms of the new lighting needs during the functional conversion of old venues. The connection structures of some original building facades were not designed with full consideration of light transmittance, resulting in poor lighting inside the buildings.
[0003] There are two common ways to fix polycarbonate panels:
[0004] 1. Use angle brackets and self-tapping screws to fix the polycarbonate sheet, and then fix the polycarbonate sheet to the keel through the angle brackets;
[0005] 2. Fix the polycarbonate sheet to the building through the frame.
[0006] The above two methods are commonly used to fix polycarbonate panels to building bodies. They are usually limited by structural requirements, are less aesthetically pleasing, have poor lighting, and affect the image of the building itself. They are passive structural connection methods. Utility Model Content
[0007] The utility model provides a connection structure of building facades and a building, which are used to solve the technical problem in the prior art that the lighting inside the building is poor due to the structural limitation of the connection structure of the building facades in the prior art.
[0008] The utility model provides a connection structure of a building facade, comprising at least one supporting assembly and at least one transparent paving assembly; the supporting assembly is arranged on the outer side of a building foundation with a hollow area; the transparent paving assembly covers the hollow area and is connected to the supporting assembly.
[0009] According to one embodiment of the present invention, the transparent pavement component is configured as a strip structure made of polycarbonate.
[0010] According to one embodiment of the present invention, the supporting assembly includes a square tube, a first corner bracket, a second corner bracket, and a connecting component; the square tube is vertically arranged on the outside of a building foundation having a hollow area, and has a first side, a second side, and a third side; the first side is arranged opposite to the second side, and the third side connects the first side and the second side; the first side is detachably arranged on the outside of the building foundation through the first corner bracket; the second side is detachably arranged on the outside of the building foundation through the second corner bracket; and the transparent paving assembly is connected to the third side through the connecting component.
[0011] According to one embodiment of the present invention, the transparent pavement assembly includes a first section and a second section; the first section and the second section are arranged in a transverse direction, and the first section and the second section are connected by a connecting component.
[0012] According to one embodiment of the present invention, a shielding component is further included, at least part of which is located outside the transparent paving component and covers the connection between the transparent paving component and the connecting component.
[0013] According to one embodiment of the present invention, the transparent pavement assembly has ventilation openings.
[0014] According to one embodiment of the present invention, an insect-proof component is provided on the transparent pavement assembly and located at the ventilation opening, and the insect-proof component has a plurality of insect-proof holes.
[0015] According to one embodiment of the present invention, the diameter of the insect-proof hole is 2.32 mm to 2.36 mm.
[0016] According to one embodiment of the present invention, the insect-proof component is embedded in the ventilation opening.
[0017] According to one embodiment of the present invention, the insect-proof component includes an embedded part, a rotating part and at least one insect-proof net; the embedded part is embedded in the ventilation opening, and the embedded part has a mounting through-hole; the shape of the rotating part matches the shape of the mounting through-hole, the rotating part is located in the mounting through-hole, and is rotatably connected to the rotating part, and the rotating part is switched between the insect-proof position and the net-changing position through the rotatable connection, and the rotating part has a ventilation hole; the insect-proof net is arranged on the rotating part and covers the ventilation hole; the insect-proof hole is opened on the insect-proof net; for example, the insect-proof net can be arranged at the end of the rotating part.
[0018] The insect-proof component of this utility model features a unique design. It consists of three main parts: an embedded component, a rotating component, and an insect-proof net, which together achieve the dual functions of ventilation and insect prevention. The embedded component is securely mounted inside the vent and is provided with mounting holes to ensure air circulation. The rotating component matches the shape of the mounting holes of the embedded component, allowing it to be rotatably installed within the holes and easily switch between insect-proof and net-changing modes. The rotating component itself is designed with ventilation holes, and the insect-proof net is tightly mounted on the rotating component, covering these holes and effectively preventing insects from entering the room while maintaining air circulation. This design cleverly improves ventilation efficiency and simplifies the process of replacing the insect-proof net through the rotating component's rotation mechanism. When the insect-proof net needs to be replaced, the user simply applies a rotational force to the rotating component from indoors to rotate the insect-proof net originally located outdoors into the room. This avoids the risks of outdoor high-altitude work and greatly reduces the difficulty and danger of replacing the insect-proof net. In addition, over time, dust and dead insects may accumulate on the insect screen. Regularly replacing the insect screen helps maintain ventilation performance and ensure indoor air quality and circulation efficiency. Understandably, after a period of use, the insect screen will accumulate a lot of dust and dead mosquitoes. If not replaced, it will affect ventilation performance.
[0019] According to one embodiment of the present invention, there are two insect-proof nets, including a first insect-proof net and a second insect-proof net; the first insect-proof net is arranged at one end of the rotating member, and the second insect-proof net is arranged at the other end of the rotating member, the first insect-proof net is located on the outdoor side, and the second insect-proof net is located on the indoor side, and the aperture of the insect-proof hole of the first insect-proof net is larger than the aperture of the insect-proof hole of the second insect-proof net.
[0020] In practice, the insect-proof component's innovation lies in its use of two insect-proof nets with different pore sizes: a first net and a second net. This design allows the insect-proof component to simultaneously meet the varying needs of both outdoor and indoor insect control and ventilation. The first net, mounted on one end of the rotating element and facing directly outdoors, features larger holes. This helps effectively block larger outdoor insects while maintaining ventilation efficiency. The second net, mounted on the other end of the rotating element and facing indoors, features smaller holes. This allows for a more precise filtering of smaller insects that might otherwise pass through the first net, while still maintaining fresh and flowing indoor air.
[0021] This dual-layer insect screen design not only improves insect control efficiency but also takes into account the differences between indoor and outdoor environments. The first outdoor screen features a larger aperture to protect against larger insects, while the second indoor screen has a smaller aperture to ensure high indoor air quality while further preventing the entry of smaller insects. The rotating mechanism allows users to easily switch between indoor and outdoor screens as needed, enabling quick replacement and maintenance of the screens, enhancing the practicality and convenience of the entire system.
[0022] The utility model also provides a building, comprising: the connection structure of the building facade according to the above embodiment.
[0023] The characteristics and advantages of the connection structure of the building facade of the utility model are:
[0024] This building facade connection structure is designed to address the problem of insufficient daylighting in existing buildings due to structural limitations. By placing support components outside the building's foundation and covering the hollowed-out areas with transparent paving components, it effectively increases natural light inside the building. This design not only improves indoor daylighting but also has the potential to provide additional benefits such as energy savings and enhanced living comfort. In short, this technology provides an innovative solution for improving daylighting through the clever combination of support and transparent materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions in the present invention or the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0026] Figure 1 It is a partial three-dimensional schematic diagram of the connection structure of the building facade of the utility model.
[0027] Figure 2 It is a partial top view of the connection structure of the building facade of the utility model.
[0028] Figure 3 It is a three-dimensional schematic diagram of the insect-proof component of the utility model.
[0029] Figure 4 It is an exploded view of the insect-proof component of the utility model.
[0030] Figure 5 It is a top view of the insect-proof component of the utility model.
[0031] Figure 6 yes Figure 5 Cross-sectional view along the AA direction.
[0032] Reference numerals:
[0033] 1000, building foundation; 100, supporting assembly; 110, square tube; 120, first corner bracket; 130, second corner bracket; 140, connecting component; 200, transparent paving assembly; 210, first section; 220, second section; 201, insect-proof component; 2011, embedded component; 2012, rotating component; 2013, insect-proof net; 300, shielding component. DETAILED DESCRIPTION
[0034] To make the purpose, technical solutions, and advantages of the present invention more clear, the following will be combined with the accompanying drawings to clearly and completely describe the technical solutions of the present invention. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] In the description of this embodiment, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this embodiment and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on this embodiment.
[0036] Furthermore, 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 the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this embodiment, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.
[0037] In this embodiment, unless otherwise specified or limited, the terms "disposed," "installed," "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed or detachable connections, or integration; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this embodiment based on specific circumstances.
[0038] In the embodiments of the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. Furthermore, a first feature being "above," "above," or "above" a second feature may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is higher in level than the second feature. A first feature being "below," "below," or "below" a second feature may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is lower in level than the second feature.
[0039] Figures 1 to 6 The figure shows the connection structure of the building facade provided by the present invention. As can be seen from the figure, the present invention provides a connection structure of the building facade, including at least one support component 100 and at least one transparent paving component 200; the support component 100 is arranged on the outside of the building foundation 1000 with a hollow area; the transparent paving component 200 covers the hollow area and is connected to the support component 100.
[0040] In specific implementation, the design of the connection structure of this building facade is intended to solve the problem of insufficient lighting in existing buildings due to structural limitations. By setting a support component 100 on the outside of the building's foundation and covering the transparent paving component 200 above the hollow area, the natural light inside the building can be effectively increased. Moreover, the transparent paving component 200 can avoid direct sunlight, and by reflecting light, it can achieve reflection, refraction or scattering of light, avoiding direct sunlight and achieving flexible light irradiation; in addition, it can also avoid the phenomenon of temperature rise caused by direct light and ensure a constant indoor temperature. This design not only improves the indoor lighting effect, but also may bring additional benefits of energy saving and improved living comfort. In short, this technology provides an innovative solution to improve lighting by cleverly combining support and transparent materials.
[0041] According to one embodiment of the present invention, the transparent pavement assembly 200 is constructed from polycarbonate strips. While the polycarbonate material provides a certain degree of shading, preventing direct sunlight, the strips also provide a further shielding effect. This material selection and strip arrangement prevent direct sunlight and the resulting temperature rise, ensuring a soft, consistent light exposure and a constant indoor temperature.
[0042] This application aims to make innovative use of polycarbonate panels, which not only takes advantage of the light-transmitting properties of the panels themselves, but also changes the connection method between the panels and the building through a new structural method, hiding the structure in the building facade design technique to achieve the purpose of beauty and lighting.
[0043] In its implementation, polycarbonate was chosen for its lightweight, high strength, and excellent light transmittance, making it an ideal material for improving daylighting in buildings. The strip-like structure allows light to penetrate the building more evenly while providing sufficient structural strength to support its own weight and potential external loads. This design not only optimizes daylighting but also enhances the building's aesthetics and modern feel, while maintaining the material's economical and durable properties.
[0044] According to one embodiment of the present invention, the support assembly 100 includes a square tube 110, a first corner code 120, a second corner code 130, and a connecting component 140; the square tube 110 is vertically arranged on the outside of a building foundation 1000 having a hollow area, and has a first side, a second side and a third side; the first side is arranged opposite to the second side, and the third side connects the first side and the second side; the first side is detachably arranged on the outside of the building foundation 1000 through the first corner code 120; the second side is detachably arranged on the outside of the building foundation 1000 through the second corner code 130; the transparent pavement assembly 200 is connected to the third side through the connecting component 140.
[0045] In specific implementation, the square tube 110 is the main part of the support assembly 100. It is arranged in the vertical direction and has three sides: a first side, a second side and a third side. The first side and the second side are arranged opposite to each other, and the third side connects the first side and the second side to ensure overall stability. The first corner code 120 and the second corner code 130 are used to detachably fix the first side and the second side of the square tube 110 to the outside of the building foundation 1000, respectively. This design allows the support assembly 100 to be flexible and convenient during installation and maintenance. The transparent pavement assembly 200 is connected to the third side of the square tube 110 through the connecting component 140, ensuring the stable fixation of the transparent pavement assembly 200 and the integrity of the overall structure. Such a design not only improves the lighting effect of the building, but also improves the adaptability of the building structure and the convenience of maintenance through modular and detachable component design.
[0046] According to one embodiment of the present invention, the transparent pavement assembly 200 includes a first section 210 and a second section 220 ; the first section 210 and the second section 220 are arranged in a transverse direction, and the first section 210 and the second section 220 are connected by a connecting component 140 .
[0047] In practice, the transparent paving assembly 200 consists of two sections: a first section 210 and a second section 220, arranged transversely along the building. The two sections of the transparent paving assembly 200 are interconnected via a connecting member 140. This segmented design not only makes the entire transparent paving assembly 200 more flexible and easier to install and maintain, but also allows for customization based on the specific needs and shape of the building to accommodate different building facades. This design allows the transparent paving assembly 200 to better integrate with the outer support assembly 100 of the building foundation 1000, ensuring the stability and aesthetics of the overall structure while maximizing the use of natural light and enhancing the lighting effect within the building.
[0048] According to one embodiment of the present invention, a shielding assembly 300 is further included, at least part of which is located outside the transparent pavement assembly 200 and covers the connection between the transparent pavement assembly 200 and the connecting component 140 .
[0049] In practice, the shielding assembly 300 is at least partially located outside the transparent paving assembly 200 and is specifically designed to cover the connection between the transparent paving assembly 200 and the connecting member 140. This design has several significant technical benefits: first, the shielding assembly 300 provides additional protection, preventing the connecting member 140 from damage due to external factors (such as bad weather, ultraviolet radiation, etc.), thereby extending the service life of the entire structure; second, the shielding assembly 300 helps to enhance the building's aesthetic appearance, making the connection more neat and coordinated.
[0050] According to one embodiment of the present invention, the transparent pavement assembly 200 has ventilation holes.
[0051] In specific implementation, the design of the vents not only improves the building's lighting performance, but also increases air circulation. The presence of vents allows fresh air to enter the interior of the building, while helping to regulate indoor temperature and humidity and improve indoor air quality. Such a design is particularly suitable for hot seasons or occasions where good ventilation is required. It can effectively reduce the temperature inside the building and reduce dependence on refrigeration equipment such as air conditioners, thereby saving energy and reducing carbon emissions. The vents of the transparent paving assembly 200 can be designed in different shapes and sizes to suit different architectural needs and aesthetic standards. They can be evenly distributed on the transparent paving assembly 200, or arranged according to specific ventilation needs. In addition, the design of the vents can also be combined with the overall style and function of the building to achieve optimal lighting and ventilation effects. In general, this design brings a healthier, energy-saving and comfortable indoor environment to the building by increasing ventilation functions while improving lighting.
[0052] According to one embodiment of the present invention, an insect-proof component 201 is provided on the transparent pavement assembly 200200 and located at the ventilation opening. The insect-proof component 201 has a plurality of insect-proof holes.
[0053] In specific implementation, insect-proof components 201 are specially designed at the vents to prevent insects from entering the interior of the building through the vents. These insect-proof components 201 are equipped with multiple insect-proof holes. The size and shape of these holes are carefully designed to ensure air circulation while effectively preventing insects from passing through. Such a design not only improves ventilation efficiency, but also takes hygiene into consideration, avoiding the inconvenience caused by insect infestation. The provision of insect-proof holes not only helps to maintain the cleanliness and comfort of the indoor environment, but also reduces dependence on chemical pesticides, making it a more environmentally friendly and healthy solution. In addition, this design may also have the function of filtering dust and impurities, further improving the cleanliness of indoor air. Overall, this technology achieves multiple functions of ventilation and insect prevention by adding an insect-proof component 201 with insect-proof holes to the transparent paving assembly 200, thereby improving the living comfort and environmental friendliness of the building.
[0054] According to one embodiment of the present invention, the diameter of the insect-proof hole is 2.32 mm to 2.36 mm.
[0055] This size range was carefully chosen during implementation, ensuring efficient ventilation while effectively preventing most insects from entering the interior. The aperture of 2.32mm to 2.36mm is small enough to intercept common small insects, yet large enough to maintain air circulation and ensure good ventilation indoors. This precise aperture design reflects in-depth consideration of architectural details, aiming to achieve a balance: without compromising the building's lighting and ventilation performance, it effectively prevents insect infestation and improves the comfort and sanitation of the indoor environment. This design results in a building facade that is not only beautiful but also practical, meeting the health, comfort, and environmental requirements of modern architecture.
[0056] In a feasible embodiment, the insect-proof component 201 may be in the shape of a plate and embedded in the ventilation opening.
[0057] In practice, the insect-proof component 201 is not simply placed over the vent, but is embedded within it. This design integrates the insect-proof component 201 with the vent, improving its structural stability and durability while also enhancing its appearance. The embedded insect-proof component 201 fits more closely against the edge of the vent, reducing the possibility of insects entering the room through gaps. Furthermore, the embedded design facilitates the installation and maintenance of the insect-proof component 201. Since the insect-proof component 201 is embedded within the vent, it is much easier to replace or clean it.
[0058] In another feasible embodiment, the insect-proof component 201 includes an embedded part 2011, a rotating part 2012 and at least one insect-proof net 2013; the embedded part 2011 is embedded in the ventilation opening, and the embedded part 2011 has a mounting hole; the shape of the rotating part 2012 matches the shape of the mounting hole, the rotating part 2012 is located in the mounting hole, and is rotatably connected to the rotating part 2012, and the rotating part 2012 is switched between the insect-proof position and the net-changing position through the rotatable connection, and the rotating part 2012 has a ventilation hole; the insect-proof net 2013 is arranged on the rotating part 2012 and covers the ventilation hole; the insect-proof hole is opened on the insect-proof net 2013; for example, the insect-proof net 2013 can be arranged at the end of the rotating part 2012.
[0059] The insect-proof component 201 of the present invention features a unique design. It consists of three main components: an insert 2011, a rotating member 2012, and an insect-proof net 2013, which together achieve the dual functions of ventilation and insect control. The insert 2011 is securely mounted within the vent and has mounting holes to ensure air circulation. The rotating member 2012, shaped to match the mounting holes of the insert 2011, can be rotatably mounted within the holes and easily switched between insect-proof and net-changing modes. The rotating member 2012 itself is designed with ventilation holes, while the insect-proof net 2013 is tightly mounted on the rotating member 2012, covering these holes and effectively preventing insects from entering the room while maintaining air circulation. This design cleverly improves ventilation efficiency and, through the rotating mechanism of the rotating member 2012, simplifies the replacement process of the insect-proof net 2013. When it's time to replace the insect screen 2013, the user simply applies a rotational force to the rotating member 2012 from indoors, moving the insect screen 2013, originally located outdoors, indoors. This avoids the risks of outdoor high-altitude work and significantly reduces the difficulty and danger of replacing the insect screen 2013. Furthermore, over time, dust and dead insects may accumulate on the insect screen 2013. Regularly replacing the insect screen 2013 helps maintain ventilation performance, ensuring indoor air quality and circulation efficiency. Understandably, after a period of use, the insect screen 2013 will accumulate dust and dead insects, which, if not replaced, can affect ventilation performance.
[0060] In this embodiment, there are two insect-proof nets 2013, including a first insect-proof net 2013 and a second insect-proof net 2013; the first insect-proof net 2013 is arranged at one end of the rotating part 2012, and the second insect-proof net 2013 is arranged at the other end of the rotating part 2012. The first insect-proof net 2013 is located on the outdoor side, and the second insect-proof net 2013 is located on the indoor side. The aperture of the insect-proof hole of the first insect-proof net 2013 is larger than the aperture of the insect-proof hole of the second insect-proof net 2013.
[0061] In practice, the novelty of insect-proof component 201 lies in its use of two insect-proof nets 2013 with different apertures: a first insect-proof net 2013 and a second insect-proof net 2013. This design allows insect-proof component 201 to simultaneously meet the varying demands for insect protection and ventilation both indoors and outdoors. The first insect-proof net 2013 is mounted on one end of the rotating member 2012, directly facing the outdoors. Its insect-proof holes have larger apertures, which helps effectively block larger outdoor insects from entering while maintaining ventilation efficiency. The second insect-proof net 2013, on the other end of the rotating member 2012, faces the indoors. Its insect-proof holes have smaller apertures, allowing for more precise filtering of smaller insects that might otherwise pass through the first layer while still maintaining fresh and airy indoor air.
[0062] This dual-layer insect screen design not only improves insect control efficiency but also takes into account the differences between indoor and outdoor environments. The first outdoor screen features larger pores to protect against larger insects, while the second indoor screen has smaller pores to ensure high indoor air quality while further preventing the entry of smaller insects. The rotating element 2012 allows users to easily switch between indoor and outdoor screens as needed, enabling quick replacement and maintenance of the screens, enhancing the practicality and convenience of the entire system.
[0063] The connection structure of the building facade based on the above embodiment not only has the above technical effects, but also is a design of the building skin. At the same time, it combines architectural design with structural design, and reasonably hides the structural design nodes under the skin, achieving the unity of form and technology, and having both technical and aesthetic effects.
[0064] The utility model also provides a building, comprising: the connection structure of the building facade according to the above embodiment.
[0065] During specific implementation, the specific structure, working principle and beneficial effects of the connection structure of the building facade are the same as those in the above-mentioned embodiment and will not be repeated here.
[0066] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "mode", "specific mode", or "some modes" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or mode are included in at least one embodiment or mode of the embodiment of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or mode. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or modes in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or modes and features of different embodiments or modes described in this specification without contradiction.
[0067] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A connection structure for building facades, characterized in that: It comprises at least one supporting component (100) and at least one transparent pavement component (200); The support assembly (100) is arranged on the outer side of a building foundation (1000) having a hollow area; The transparent paving assembly (200) covers the hollow area and is connected to the supporting assembly (100); The transparent pavement component (200) is configured as a strip structure made of polycarbonate; The support assembly (100) includes a square tube (110), a first angle bracket (120), a second angle bracket (130), and a connecting component (140); The square tube (110) is vertically arranged on the outer side of the building foundation (1000) having the hollow area, and has a first side, a second side and a third side; The first side is arranged opposite to the second side, and the third side connects the first side and the second side; The first side is detachably arranged on the outer side of the building foundation (1000) via the first corner code (120); The second side is detachably arranged on the outer side of the building foundation (1000) via the second corner bracket (130); The transparent pavement assembly (200) is connected to the third side via the connecting component (140); The transparent pavement assembly (200) includes a first section (210) and a second section (220); The first section (210) and the second section (220) are arranged in a transverse direction, and the first section (210) and the second section (220) are connected via the connecting component (140).
2. The connection structure of building facades according to claim 1, characterized in that: It also includes a shielding component (300), at least part of which is located outside the transparent paving component (200) and covers the connection between the transparent paving component (200) and the connecting component (140).
3. The connection structure of building facades according to claim 1 or 2, characterized in that: The transparent pavement component (200) has ventilation openings.
4. The connection structure of building facades according to claim 3, characterized in that: An insect-proof component is provided on the transparent pavement assembly (200) and located at the ventilation opening, and the insect-proof component has a plurality of insect-proof holes.
5. The connection structure of building facades according to claim 4, characterized in that: The aperture of the insect-proof hole is 2.32 mm to 2.36 mm.
6. The connection structure of building facades according to claim 4, characterized in that: The insect-proof component is embedded in the vent.
7. A building, characterized in that: include: The connecting structure of building facades according to any one of claims 1 to 6.