Energy-saving glass splicing type curtain wall structure
Through innovative design of components such as fixed beams, snap-fit mechanisms, and magnets, the problems of complex installation, low flexibility, poor stability, and insufficient energy efficiency of traditional glass curtain walls have been solved. This has enabled stable installation, energy saving, and decorative protection of glass curtain walls, while improving service life and maintenance efficiency.
Patent Information
- Application Number
- CN202511275325.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2025-10-31
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional glass curtain walls are complex to install, have low flexibility, poor stability, insufficient energy efficiency, inadequate decorative protection, and are inconvenient to maintain. Furthermore, the connecting parts are prone to wear and aging, which affects their service life and maintenance costs.
By employing components such as fixed beams, fixed blocks, mounting structures, connecting blocks, snap-fit mechanisms, magnets, and decorative magnetic plates, and through screw connections, snap-fit clamping, and telescopic drive adjustment, the glass achieves stable installation and energy-saving functions.
It achieves stable installation of glass curtain walls, improves stability and safety, meets different connection requirements, has good energy-saving performance, is aesthetically pleasing and easy to operate, and reduces maintenance costs.
Smart Images

Figure CN120867459A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building curtain wall technology, and in particular to an energy-saving glass splicing curtain wall structure. Background Technology
[0002] In the field of building curtain walls, glass curtain walls are widely used due to their excellent light transmission and aesthetic appeal. However, traditional glass curtain wall structures have many problems in practical use.
[0003] Existing glass curtain wall installation structures are often complex, with cumbersome installation processes that require significant manpower and time. Most installation structures use a single connection method, which is insufficient to meet the needs of connecting two glass panels at flat or right angles in different scenarios, resulting in poor flexibility.
[0004] Traditional snap-fit mechanisms for fixing glass often fail to provide adequate clamping, leading to loosening of the glass and compromising the stability and safety of the curtain wall. Furthermore, these mechanisms typically lack effective locking and adjustment devices, making fine adjustments to the glass position inconvenient and difficult to guarantee installation accuracy.
[0005] Meanwhile, the energy-saving performance of traditional glass curtain walls needs improvement, and some structures are deficient in terms of sealing and thermal insulation, leading to increased building energy consumption. In addition, many curtain wall structures cannot balance decoration and protection; external decorative components are not securely installed and are prone to falling off, and their protective effect on the internal structure is limited.
[0006] In addition, some components in the curtain wall structure have unreasonable connection methods, which are prone to wear and aging after long-term use, reducing the service life of the curtain wall and increasing maintenance costs. There are also problems with poor tool compatibility and cumbersome operation in adjusting and fixing components, affecting installation and maintenance efficiency.
[0007] To address the problems of inconvenient installation, low flexibility, poor stability, insufficient energy efficiency, and high maintenance costs associated with traditional glass curtain wall structures, the development of an energy-efficient glass splicing curtain wall structure that is structurally sound, easy to install, highly stable, and can meet diverse installation requirements has become an urgent need in the industry. Summary of the Invention
[0008] The purpose of this invention is to provide an energy-saving glass splicing curtain wall structure to solve the above-mentioned problems, which solves the problems of complex installation, low flexibility, unstable fixing, poor energy efficiency, insufficient decorative protection and inconvenient maintenance of traditional glass curtain walls.
[0009] To address the aforementioned problems, this invention provides a technical solution: an energy-saving glass splicing curtain wall structure, comprising a fixed beam, a fixing block, an installation structure one, an installation structure two, a connecting block, a snap-fit mechanism, magnets, a decorative magnetic suction plate, and a fixing base; the fixing block is fixedly connected to the side of the fixed beam by several screws; the installation structure one is located on the side of the fixing base and is connected to the outside of the fixing block; the installation structure two is located on top of the fixing base and is connected to one side of the connecting block; the fixing base has a snap-fit mechanism inside, several magnets are located inside the right side of the fixing base, and a decorative magnetic suction plate is connected to the right side of the fixing base, with the decorative magnetic suction plate connected to the magnets.
[0010] Preferably, the first mounting structure is identical to the second mounting structure. The second mounting structure includes a connecting groove, a threaded hole, a long screw, and an insertion hole. The connecting groove is located in the center of the outside of the fixing base. A threaded hole is provided in the center of one side of the connecting groove, and an insertion hole is provided in the center of the other side of the connecting groove. The long screw is connected to the threaded hole through the insertion hole, and the outside of the long screw is connected to a through hole provided on one side of the connecting block.
[0011] Preferably, the locking mechanism includes a slide groove, a locking seat, a locking pad, a spring, a locking mechanism, and a telescopic drive mechanism; the slide groove is located inside the fixed seat, and the locking mechanism and the telescopic drive mechanism are located inside the right side of the slide groove; the locking seat is externally movably connected to the inside of the slide groove, and the locking pad is fixedly connected inside the locking seat, with the inner side of the locking pad connected to the outer edge of the glass; springs are provided between the upper inner side of the locking seat and the top surface of the slide groove; the locking mechanism and the telescopic drive mechanism are located on the left side of the right side of the locking seat.
[0012] Preferably, the locking mechanism includes a guide hole, a screw, a locking block, a locking groove, an inclined surface, an inclined surface, and a locking head. The guide hole is located inside the lower right side of the slide groove, and the screw is movably connected to the center right side of the guide hole. The locking head is fixedly connected to the right end of the screw. The locking block is laterally movably connected to the inside of the guide hole, and the lower left side of the locking block has an inclined surface. The locking groove is located on the right side of the locking seat, and the bottom surface of the locking groove has an inclined surface, which is connected to the inclined surface.
[0013] Preferably, the locking block has an internal hexagonal hole at the center of its outer side.
[0014] Preferably, the telescopic drive mechanism includes a strip, a turntable, a rotating head, a brake block, an inner cavity, an inclined block strip, a brake screw, a limiting protrusion, a limiting groove, and a connecting column; the strip is longitudinally arranged on the right side of the locking seat; the turntable is externally movably connected to the inside of the right side of the slide groove, a rotating head is fixedly connected to the central shaft on the right side of the turntable, and a connecting column is fixedly connected to the left edge of the turntable, with the connecting column located below the strip; the inner cavity is located inside the lower right side of the slide groove, a brake block is movably connected to the upper left side of the inner cavity, and the top surface of the brake block is connected to the bottom surface of the turntable, with a limiting groove formed on the left side of the inner cavity; a limiting protrusion is provided on the lower left side of the brake block, and the limiting protrusion is movably connected to the inside of the limiting groove; the inclined block is externally movably connected to the right side of the inner cavity, and the upper left inclined surface of the inclined block is connected to the lower right inclined surface of the brake block; the brake screw is movably connected to a threaded hole on the right side of the inner cavity, and the left side of the brake screw is connected to the center of the right side of the inclined block.
[0015] Preferably, an internal hexagonal hole is provided at the center of the outer side of the rotating head and at the center of the outer side of the brake screw.
[0016] Preferably, the outer side of the decorative magnetic plate is flush with the outer side of the fixing base.
[0017] The beneficial effects of the present invention are: (1) The present invention has a reasonable and simple structure, low production cost and convenient installation. Through the solid connection of the basic load-bearing components and the connecting components, it provides solid support for the overall structure, ensuring the overall frame stability of the curtain wall structure. Moreover, the coordinated work of each component realizes the stable installation and energy-saving function of the glass curtain wall.
[0018] (2) The snap-fit mechanism of the present invention can effectively clamp the glass, and the locking mechanism can further lock the position to prevent loosening, ensuring that the glass is firmly clamped, thereby improving the stability and safety of the curtain wall.
[0019] (3) The telescopic drive mechanism of the present invention facilitates the adjustment of the glass position. Once the position is determined, it can be stably fixed by the brake structure, ensuring installation accuracy and convenient operation.
[0020] (4) The present invention uses the combination of magnets and decorative magnetic plates to achieve both decoration and protection of the internal structure, and the decorative surface is flat and beautiful.
[0021] (5) The specific installation structure and connecting components provided by the present invention can meet the needs of connection and fixation in different directions, thereby meeting the needs of two glass planes or right angle installation and connection, and are highly flexible. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of the present invention.
[0023] Figure 2 for Figure 1 A sectional view.
[0024] Figure 3 This is a structural diagram of the installation structure.
[0025] Figure 4 This is a schematic diagram of the snap-fit mechanism.
[0026] Figure 5 This is a schematic diagram of the locking mechanism.
[0027] Figure 6 This is a schematic diagram of the telescopic drive mechanism.
[0028] Figure 7 for Figure 6 A magnified view of position A in the image.
[0029] 1-Fixed crossbeam; 2-Fixing block; 3-Installation structure one; 4-Installation structure two; 5-Connecting block; 6-Snap-fit mechanism; 7-Magnet; 8-Decorative magnetic plate; 9-Fixing base; 41-Connecting groove; 42-Threaded hole; 43-Long screw; 44-Insertion hole; 61-Slide groove; 62-Snap-fit base; 63-Snap-fit pad; 64-Spring; 65-Locking mechanism; 66-Telescopic drive mechanism; 651-Guide hole one ; 652-Screw 1; 653-Locking block; 654-Locking hole groove; 655-Bevel 1; 656-Bevel 2; 657-Locking head 1; 661-Strip; 662-Turntable; 663-Rotating head; 664-Brake block; 665-Inner cavity; 666-Bevel block; 661-Strip; 667-Brake screw; 668-Limiting protrusion; 669-Limiting groove; 6610-Connecting column. Detailed Implementation
[0030] like Figure 1 and Figure 2 As shown, this specific embodiment adopts the following technical solution: an energy-saving glass splicing curtain wall structure, including a fixed beam 1, a fixed block 2, an installation structure one 3, an installation structure two 4, a connecting block 5, a snap-fit mechanism 6, a magnet 7, a decorative magnetic suction plate 8, and a fixing seat 9; the fixed block 2 is fixedly connected to the side of the fixed beam 1 by several screws; the installation structure one 3 is located on the side of the fixing seat 9, and the installation structure one 3 is connected to the outside of the fixed block 2; the installation structure two 4 is located on the fixing seat 9, and the installation structure two 4 is connected to one side of the connecting block 5; the fixing seat 9 is provided with a snap-fit mechanism 6 inside, and several magnets 7 are provided inside the right side of the fixing seat 9; a decorative magnetic suction plate 8 is connected inside the right side of the fixing seat 9, and the decorative magnetic suction plate 8 is connected to the magnets 7.
[0031] like Figure 3As shown, the structure of the first mounting structure 3 is the same as that of the second mounting structure 4. The second mounting structure 4 includes a connecting groove 41, a threaded hole 42, a long screw 43, and an insertion hole 44. The connecting groove 41 is located in the center of the outside of the fixing base 9. The threaded hole 42 is provided in the center of one side of the connecting groove 41, and the insertion hole 44 is provided in the center of the other side of the connecting groove 41. The long screw 43 is connected to the threaded hole 42 through the insertion hole 44, and the outside of the long screw 43 is connected to the through hole provided on one side of the connecting block 5.
[0032] like Figure 4 As shown, the locking mechanism 6 includes a slide groove 61, a locking seat 62, a locking pad 63, a spring 64, a locking mechanism 65, and a telescopic drive mechanism 66. The slide groove 61 is located inside the fixed base 9. The locking mechanism 65 and the telescopic drive mechanism 66 are located inside the right side of the slide groove 61. The locking seat 62 is externally movably connected to the inside of the slide groove 61. The locking pad 63 is fixedly connected inside the locking seat 62, and the inner side of the locking pad 63 is connected to the outer edge of the glass. Springs 64 are provided between the upper inner side of the locking seat 62 and the top surface of the slide groove 61. The locking mechanism 65 and the telescopic drive mechanism 66 are located on the left side of the right side of the locking seat 62.
[0033] like Figure 5 As shown, the locking mechanism 65 includes a guide hole 651, a screw 652, a locking block 653, a locking groove 654, a first inclined surface 655, a second inclined surface 656, and a first locking head 657. The guide hole 651 is located inside the lower right side of the slide groove 61, and the screw 652 is movably connected to the center right side of the guide hole 651. The locking head 657 is fixedly connected to the right end of the screw 652. The locking block 653 is laterally movably connected to the inside of the guide hole 651, and the second inclined surface 656 is provided on the lower left side of the locking block 653. The locking groove 654 is located on the right side of the latch seat 62, and the first inclined surface 655 is provided on the bottom surface of the locking groove 654, and the first inclined surface 655 is connected to the second inclined surface 656.
[0034] The locking block 653 has an internal hexagonal hole at the center of its outer side.
[0035] like Figure 6 and Figure 7As shown, the telescopic drive mechanism 66 includes a strip 661, a turntable 662, a rotating head 663, a brake block 664, an inner cavity 665, an inclined block 666, a brake screw 667, a limiting protrusion 668, a limiting groove 669, and a connecting column 6610. The strip 661 is longitudinally arranged on the right side of the locking seat 62. The turntable 662 is externally and movably connected to the inside of the right side of the slide groove 61. The rotating head 663 is fixedly connected to the central shaft on the right side of the turntable 662. The connecting column 6610 is fixedly connected to the left edge of the turntable 662, and the connecting column 6610 is located below the strip 661. The inner cavity 665 is located in the slide groove 61. Inside the lower right side, a brake block 664 is movably connected to the upper left side of the inner cavity 665, and the top surface of the brake block 664 is connected to the bottom surface of the turntable 662. A limiting groove 669 is formed on the left side of the inner cavity 665. A limiting protrusion 668 is provided on the lower left side of the brake block 664, and the limiting protrusion 668 is movably connected to the inner side of the limiting groove 669. The inclined block 666 is movably connected to the right side of the inner cavity 665, and the upper left inclined surface of the inclined block 666 is connected to the lower right inclined surface of the brake block 664. The brake screw 667 is movably connected to the threaded hole on the right side of the inner cavity 665, and the left side of the brake screw 667 is connected to the center of the right side of the inclined block 666.
[0036] The rotating head 663 and the brake screw 667 both have internal hexagonal holes at their outer center; the outer side of the decorative magnetic plate 8 is flush with the outer side of the fixing base 9.
[0037] The invention is used in the following ways: It features a simple and reasonable structure, low production cost, and convenient installation. When used in an energy-saving glass splicing curtain wall structure, the fixed beam 1 serves as the basic load-bearing component of the entire structure. The fixing block 2 is securely connected to its side by screws, providing solid support for subsequent structural installation. Installation structure one 3 connects the side of the fixing seat 9 to the outside of the fixing block 2, while installation structure two 4 connects the top of the fixing seat 9 to one side of the connecting block 5. Since both structures are identical, initial positioning is achieved through the connecting groove 41. A long screw 43 passes through the insertion hole 44 and connects to the threaded hole 42, and also passes through the through hole on one side of the connecting block 5. The fixing seat 9 is firmly fixed to the fixing block 2 and the connecting block 5 respectively, ensuring the overall frame stability of the curtain wall structure. The snap-fit mechanism 6 inside the fixing seat 9 is in the working state of clamping the glass. The snap-fit seat 62 moves in the slide groove 61, and the snap-fit pad 63 inside it is closely attached to the outer edge of the glass. The spring 64 is in a compressed state, providing a continuous clamping force for the snap-fit seat 62, ensuring that the glass is firmly clamped. In the locking mechanism 65, the screw 652 is tightened in the guide hole 651, which drives the locking block 653 to move laterally, so that the inclined surface 656 on the lower left side of the locking block 653 is closely attached to the inclined surface 655 on the bottom surface of the lock hole groove 654. The locking block 653 is operated through the internal hexagonal hole to further lock the position of the locking seat 62 and prevent it from loosening. The telescopic drive mechanism 66 plays a role in adjusting the installation position of the glass. By rotating the rotating head 663 with an internal hexagonal tool, the turntable 662 is driven to rotate. The connecting column 6610 moves accordingly and pushes the strip 661, thereby driving the locking seat 62 to move in the slide 61 to adjust the glass position. After the position is determined, the brake screw 667 is rotated to push the inclined block 666 to the left in the inner cavity 665. The upper left inclined surface of the inclined block 666 pushes the brake block 664 to move upward, and the top surface of the brake block 664 makes close contact with the bottom surface of the turntable 662. The brake is applied while the limiting protrusion 668 slides within the limiting groove 669, ensuring the stable movement of the brake block 664. Several magnets 7 inside the right side of the fixing seat 9 are firmly attracted to the decorative magnetic plate 8. The outer side of the decorative magnetic plate 8 is flush with the outer side of the fixing seat 9, serving both a decorative function and protecting the internal structure. Through the coordinated work of various components, the entire structure achieves stable installation and energy-saving functions of the glass curtain wall, meeting the usage requirements. The additional installation structure 1 3, installation structure 2 4, and connecting block 5 can meet the needs of connecting and fixing the two fixing seats 9 in different directions, thus meeting the needs of connecting the two glass panels at a plane or right angle.
[0038] In the description of this invention, it should be understood that the terms "coaxial," "bottom," "one end," "top," "middle," "other end," "upper," "side," "top," "inner," "front," "center," "both ends," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.
[0039] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," "fixing," "screw connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0040] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the present invention. Various changes and modifications can be made to the present invention without departing from its spirit and scope. All such changes and modifications fall within the scope of the present invention as claimed, which is defined by the appended claims and their equivalents.
[0041] The control method of this invention is to control the device by manually starting and stopping the switch. The wiring diagram of the power element and the supply of power are common knowledge in the field. Since this invention is mainly used to protect mechanical devices, the control method and wiring layout will not be explained in detail.
Claims
1. An energy-saving glass splicing curtain wall structure, characterized in that: It includes a fixed crossbeam (1), a fixed block (2), an installation structure one (3), an installation structure two (4), a connecting block (5), a snap-fit mechanism (6), a magnet (7), a decorative magnetic suction plate (8), and a fixed base (9); The fixing block (2) is fixedly connected to the side of the fixing beam (1) by several screws; The first installation structure (3) is located on the side of the fixed base (9), and the first installation structure (3) is connected to the outside of the fixed block (2); The second installation structure (4) is mounted on the fixed base (9), and the second installation structure (4) is connected to one side of the connecting block (5); The fixing base (9) is provided with a snap-fit mechanism (6) inside. Several magnets (7) are provided inside the right side of the fixing base (9). A decorative magnetic suction plate (8) is connected inside the right side of the fixing base (9), and the decorative magnetic suction plate (8) is connected to the magnets (7).
2. The energy-saving glass splicing curtain wall structure according to claim 1, characterized in that: The first mounting structure (3) has the same structure as the second mounting structure (4). The second mounting structure (4) includes a connecting groove (41), a threaded hole (42), a long screw (43), and an insertion hole (44). The connecting groove (41) is located in the center outside the fixed base (9). A threaded hole (42) is provided in the center of one side of the connecting groove (41), and an insertion hole (44) is provided in the center of the other side of the connecting groove (41). The long screw (43) is connected to the threaded hole (42) through the insertion hole (44), and the outside of the long screw (43) is connected to the through hole provided on one side of the connecting block (5).
3. The energy-saving glass splicing curtain wall structure according to claim 1, characterized in that: The snap-fit mechanism (6) includes a slide (61), a snap-fit seat (62), a snap-fit pad (63), a spring (64), a locking mechanism (65), and a telescopic drive mechanism (66). The slide (61) is located inside the fixed base (9), and a locking mechanism (65) and a telescopic drive mechanism (66) are provided inside the right side of the slide (61). The snap-fit seat (62) is externally movably connected to the inside of the slide groove (61). The snap-fit pad (63) is fixedly connected inside the snap-fit seat (62), and the inner side of the snap-fit pad (63) is connected to the outside of the glass edge. A spring (64) is provided between the upper inside of the snap-fit seat (62) and the top surface of the slide groove (61). The locking mechanism (65) and the telescopic drive mechanism (66) are located on the left side of the card holder (62) on the right side.
4. The energy-saving glass splicing curtain wall structure according to claim 3, characterized in that: The locking mechanism (65) includes a guide hole (651), a screw (652), a locking block (653), a locking groove (654), a first inclined surface (655), a second inclined surface (656), and a first locking head (657). The first guide hole (651) is opened inside the lower right side of the slide groove (61), and the first screw (652) is movably connected to the right side of the center of the first guide hole (651). A locking head (657) is fixedly connected to the right end of the screw (652); The locking block (653) is laterally movably connected to the inside of the guide hole (651), and the lower left side of the locking block (653) is provided with a second inclined surface (656). The lock slot (654) is provided on the right side of the latch seat (62), and the bottom surface of the lock slot (654) is provided with a first inclined surface (655), and the first inclined surface (655) is connected to the second inclined surface (656).
5. The energy-saving glass splicing curtain wall structure according to claim 4, characterized in that: The locking block (653) has an internal hexagonal hole at the center of its outer side.
6. The energy-saving glass splicing curtain wall structure according to claim 3, characterized in that: The telescopic drive mechanism (66) includes a strip (661), a turntable (662), a rotating head (663), a brake block (664), an inner cavity (665), an inclined block (666), a strip (661), a brake screw (667), a limiting protrusion (668), a limiting groove (669), and a connecting column (6610). The strip (661) is longitudinally positioned on the right side of the card holder (62); The turntable (662) is externally movably connected to the inside of the right side of the slide groove (61). A rotating head (663) is fixedly connected to the central shaft on the right side of the turntable (662). A connecting column (6610) is fixedly connected to the left edge of the turntable (662), and the connecting column (6610) is located under the strip (661). The inner cavity (665) is located inside the lower right side of the slide groove (61). A brake block (664) is movably connected to the upper left side of the inner cavity (665), and the top surface of the brake block (664) is connected to the bottom surface of the turntable (662). A limiting groove (669) is opened on the left side of the inner cavity (665). The brake block (664) has a limiting protrusion (668) on its lower left side, and the limiting protrusion (668) is movably connected to the inside of the limiting groove (669); The inclined block (666) is externally movably connected to the right side of the inner cavity (665), and the upper left inclined surface of the inclined block (666) is connected to the lower right inclined surface of the brake block (664); The brake screw (667) is movably connected in the threaded hole provided on the right side of the inner cavity (665), and the left side of the brake screw (667) is connected to the center of the right side of the inclined block (666).
7. The energy-saving glass splicing curtain wall structure according to claim 6, characterized in that: The rotating head (663) and the brake screw (667) both have internal hexagonal holes at their outer center.
8. The energy-saving glass splicing curtain wall structure according to claim 1, characterized in that: The outer side of the decorative magnetic plate (8) is flush with the outer side of the fixing seat (9).