Green energy-saving building curtain wall suitable for multiple sites and use method thereof

By using a combination of extrusion positioning components, limiting components, and clamping components within the installation frame, the problem of inconvenient disassembly and installation of existing green and energy-saving building curtain walls is solved, enabling rapid installation and disassembly and improving practicality and safety.

CN117188670BActive Publication Date: 2026-04-07福建宏盛建设集团有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-14
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing green and energy-saving building curtain walls are inconvenient to dismantle and install, resulting in time-consuming and labor-intensive replacement and installation, and poor practicality.

Method used

The installation uses a combination of extrusion positioning and limiting components within the frame, and achieves rapid fixing and disassembly of the curtain wall surface through screw and gear transmission. Combined with clamping components, the installation process is kept simple.

Benefits of technology

It enables rapid installation and disassembly of the curtain wall surface, shortens installation time, improves practicality, reduces high-altitude work time, and ensures the safety of workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of building curtain wall technology, specifically a green and energy-saving building curtain wall suitable for multiple sites and its application method. Addressing the problems of existing curtain walls being inconvenient to disassemble and replace, and having cumbersome, time-consuming, and labor-intensive installation processes, resulting in poor practicality, the present invention proposes the following solution: A mounting frame fixedly connected to the wall surface; multiple curtain wall layers, with positioning grooves within the mounting frame, and multiple glass frames slidably connected within these grooves, each curtain wall layer fixedly connected to one of the glass frames; a compression positioning component, located within the mounting frame, for clamping and fixing the multiple curtain wall layers; and a limiting component used in conjunction with the compression positioning component, located within the mounting frame, for limiting the position of the multiple curtain wall layers within the positioning grooves. The installation process is simple, shortening installation time and demonstrating strong practicality.
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Description

Technical Field

[0001] This invention relates to the field of building curtain wall technology, and in particular to a green and energy-saving building curtain wall suitable for use in multiple locations and its application method. Background Technology

[0002] Energy conservation and environmental protection have become two major themes in the world today, and green products have emerged and are receiving increasing attention. Building curtain walls, as the main body of building energy conservation, are no exception. Double-layer curtain walls, also known as thermal aisle curtain walls, breathing curtain walls, ventilated curtain walls, energy-saving curtain walls, etc., are composed of two facade structures, forming an air buffer layer between the interior and exterior. The outer layer can be composed of exposed frame, concealed frame, or point-supported curtain walls, while the inner layer can be composed of exposed frame, concealed frame curtain walls, or doors and windows with operable sashes and maintenance passages. Alternatively, glass panels can be set on both sides of an independent supporting structure to form a double-layer facade structure with a small spatial distance.

[0003] A search revealed that Chinese patent CN215442580U discloses a green and energy-saving building curtain wall suitable for use in multiple locations, including a wall panel A, an adjustment mechanism, and a greening mechanism. The wall panel A has adjustment mechanisms installed on its upper and lower sides. Each adjustment mechanism includes a sliding groove, a slider, a fixing bolt, a bolt groove, a screw groove A, a screw groove B, and a bolt. The upper and lower ends of the wall panel A have sliding grooves inside, and sliders are slidably mounted inside the sliding grooves. A fixing bolt is fixedly installed on the outer wall of the slider, and a bolt groove is installed inside the fixing bolt. A screw groove A is installed inside the inner end of the slider. However, this patent cannot be easily disassembled and replaced during use, and the existing building curtain walls have relatively cumbersome installation steps, which are very time-consuming and labor-intensive, resulting in poor practicality.

[0004] To address the aforementioned issues, this invention proposes a green and energy-saving building curtain wall suitable for use in multiple locations and its application method. Summary of the Invention

[0005] This invention provides a green and energy-saving building curtain wall suitable for use in multiple locations and its application method, which solves the shortcomings of existing technologies, such as the inability to easily disassemble and replace the curtain wall during use, and the cumbersome, time-consuming, and labor-intensive installation process of existing building curtain walls, resulting in poor practicality.

[0006] This invention provides the following technical solution:

[0007] A green and energy-saving building curtain wall suitable for use in multiple locations includes an installation frame fixedly connected to a wall surface; multiple curtain wall layers, wherein the installation frame has positioning grooves, and multiple glass frames are slidably connected within the positioning grooves, with each curtain wall layer fixedly connected within a glass frame; a compression positioning component, disposed within the installation frame for clamping and fixing the multiple curtain wall layers; and a limiting component used in conjunction with the compression positioning component, disposed within the installation frame for limiting the position of the multiple curtain wall layers within the positioning grooves; and a clamping component, disposed within the installation frame for clamping and positioning the curtain wall layers, wherein the clamping component and the compression positioning component are used in conjunction.

[0008] In one possible design, the limiting component includes a third groove formed within the mounting frame and communicating with the positioning groove. A limiting plate is slidably connected within the third groove. A first lead screw is rotatably connected within the mounting frame. The limiting plate is threaded to the circumferential surface of the first lead screw. A hand-tightening screw head is fixedly connected to the side end of the first lead screw.

[0009] In one possible design, the extrusion positioning assembly includes two first grooves formed within the mounting frame. Each of the two first grooves has a movable block slidably connected to it. Multiple snap-fit ​​blocks are fixedly connected to the adjacent ends of the two movable blocks. Snap-fit ​​grooves are formed at the upper and lower ends of the multiple glass frames. The multiple snap-fit ​​blocks snap into the multiple snap-fit ​​grooves respectively. Two sixth grooves are formed within the mounting frame. Each of the two sixth grooves communicates with one of the two first grooves and with a third groove. Connecting rods are slidably connected within each of the two sixth grooves. The two connecting rods are fixedly connected to the upper and lower ends of the limiting plate respectively. Extrusion plates are fixedly connected to the side ends of the two connecting rods. Inclined grooves are formed within each of the two movable blocks. The two extrusion plates contact the inclined surfaces of the two inclined grooves respectively.

[0010] In one possible design, two second grooves are provided at the adjacent ends of the two movable blocks, and a return spring is fixedly connected to each of the four second grooves. The four return springs are respectively fixedly connected to the two first grooves.

[0011] In one possible design, the clamping assembly includes two fourth grooves formed within a limiting plate, two fifth grooves formed within the limiting plate, and a pressing block slidably connected to each of the two fifth grooves. Two second lead screws are rotatably connected within the limiting plate, and the two pressing blocks are threaded to the circumferential surfaces of the two second lead screws. A second gear is fixedly connected to the circumferential surfaces of the two second lead screws. A first gear is rotatably connected to each of the two fourth grooves, and the two first gears mesh with the two second gears respectively. A drive rack is fixedly connected to each of the two third grooves, and the two first gears mesh with the two drive racks respectively.

[0012] In one possible design, both extrusion blocks have anti-slip pads on their sides.

[0013] In one possible design, two mounting blocks are fixedly connected to both the upper and lower ends of the mounting frame, and two limiting blocks are fixedly connected to the side ends of the four mounting blocks. Four limiting gaps are formed between the eight limiting blocks. An L-shaped connecting plate is slidably connected to each of the four limiting gaps. A screw is threadedly connected to each of the four L-shaped connecting plates. Multiple threaded holes are opened in each of the four mounting blocks, and the four screws are threadedly connected to the corresponding threaded holes.

[0014] A method for using green and energy-saving building curtain walls suitable for multiple sites includes the following steps:

[0015] S1. When installing the frame, you can align the screws in the L-shaped connecting plate with the corresponding threaded holes in the mounting block according to the usage requirements, tighten the screws to fix the position of the L-shaped connecting plate, fix the positions of the four L-shaped connecting plates on the same horizontal plane, and then fix the L-shaped connecting plates to the wall with bolts.

[0016] S2. When installing the curtain wall surface layer, after inserting multiple glass frames with curtain wall surface layers into the positioning groove in sequence, the first lead screw is rotated by turning the hand screw head. The rotation of the first lead screw causes the limiting plate to move in the third groove. The limiting plate moves out of the third groove to seal the positioning groove and prevent the glass frames from sliding out of the positioning groove. At the same time, the movement of the limiting plate causes the first gear to move in position. When the first gear moves, it meshes with the drive rack. The drive rack drives the first gear to rotate. The rotation of the first gear causes the second gear to rotate. The rotation of the second gear causes the second lead screw to rotate. The rotation of the second lead screw causes the pressing block to move in position. The pressing block moves in position to press the multiple curtain wall surface layers tightly and fix them.

[0017] S3. After multiple curtain wall layers are tightly fixed, the snap-fit ​​blocks and snap-fit ​​grooves in the curtain wall layers match. At the same time, the limiting plate moves, causing the connecting rod to move in the sixth groove. The connecting rod drives the extrusion plate to move, and the extrusion plate moves to extrude the inclined surface of the inclined groove. The inclined surface of the inclined groove is extruded, causing the two movable blocks to move in the direction of approach. The two movable blocks move in the direction of approach, causing multiple snap-fit ​​blocks to snap into multiple snap-fit ​​grooves respectively to fix their positions, thereby fixing the position of the curtain wall layers.

[0018] S4. When it is necessary to remove the curtain wall surface layer, after turning the hand screw head in the opposite direction to release the compression and locking, the elasticity of multiple return springs will press the two movable blocks in opposite directions. The two movable blocks will drive multiple locking blocks to leave the locking groove, and the glass frame can be moved to remove the curtain wall surface layer.

[0019] In one possible design,

[0020] It should be understood that the above general description and the following detailed description are merely exemplary and do not limit the invention.

[0021] In this invention, the screws inside the L-shaped connecting plate can be aligned with the corresponding threaded holes in the mounting block according to usage requirements. The screws are then turned to fix the position of the L-shaped connecting plate. After fixing the positions of the four L-shaped connecting plates to the same horizontal plane, the L-shaped connecting plates are fixed to the wall with bolts. The position between the curtain wall surface and the wall can be adjusted according to usage requirements for ease of use.

[0022] In this invention, after the curtain wall surface is slid into the positioning groove, it can be quickly squeezed and positioned to fix its position. The installation steps are simple, the installation time is shortened, and it has strong practicality. Shortening the installation time can reduce the time workers spend working at heights and ensure the safety of workers. Attached Figure Description

[0023] Figure 1 A front perspective view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention;

[0024] Figure 2 A partial exploded view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention;

[0025] Figure 3 A cross-sectional view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention;

[0026] Figure 4 This invention provides a green and energy-saving building curtain wall suitable for use in multiple locations. Figure 3A magnified view of a section at point A in the middle;

[0027] Figure 5 A rear-view perspective view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention;

[0028] Figure 6 This is a first partial sectional view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention.

[0029] Figure 7 This is a second partial sectional view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided in an embodiment of the present invention.

[0030] Figure 8 A third partial sectional view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided in an embodiment of the present invention;

[0031] Figure 9 This invention provides a green and energy-saving building curtain wall suitable for use in multiple locations. Figure 8 A magnified view of a section at point B in the middle;

[0032] Figure 10 This is a partial perspective view of a green and energy-saving building curtain wall suitable for use in multiple locations, provided as an embodiment of the present invention.

[0033] Figure label:

[0034] 1. Mounting frame; 2. Mounting block; 3. L-shaped connecting plate; 4. Limiting block; 5. Glass frame; 6. Curtain wall surface layer; 7. Threaded hole; 8. Screw; 9. First groove; 10. Movable block; 11. Snap-fit ​​groove; 12. Snap-fit ​​block; 13. Second groove; 14. Return spring; 15. Positioning groove; 16. Third groove; 17. Limiting plate; 18. First lead screw; 19. Hand-tightening screw head; 20. Fourth groove; 21. Drive rack; 22. First gear; 23. Second gear; 24. Second lead screw; 25. Fifth groove; 26. Extrusion block; 28. Sixth groove; 29. ​​Connecting rod; 30. Extrusion plate; 31. Angled groove. Detailed Implementation

[0035] The embodiments of the present invention will now be described with reference to the accompanying drawings.

[0036] In the description of the embodiments of the present invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connection" and "installation" should be interpreted broadly. For example, "connection" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium. Furthermore, "connection" can be a direct connection or an indirect connection through an intermediate medium. "Fixed" means that the devices are connected to each other and their relative positional relationship remains unchanged after the connection. The directional terms mentioned in the embodiments of the present invention, such as "inner," "outer," "top," and "bottom," are only for reference to the directions in the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of the present invention, and are not intended to 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 limitations on the embodiments of the present invention.

[0037] In this embodiment of the invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" and "second" may explicitly or implicitly include one or more of that feature.

[0038] In this embodiment of the invention, "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.

[0039] References to "one embodiment" or "some embodiments" as used in this specification mean that a particular feature, structure, or characteristic described in connection with that embodiment is included in one or more embodiments of the invention. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including, but not limited to," unless otherwise specifically emphasized.

[0040] Example 1

[0041] Reference Figures 1-9A green and energy-saving building curtain wall suitable for use in multiple locations includes an installation frame 1 fixedly connected to the wall surface; multiple curtain wall layers 6, with positioning grooves 15 opened in the installation frame 1, and multiple glass frames 5 slidably connected in the positioning grooves 15, with the multiple curtain wall layers 6 respectively fixedly connected in the multiple glass frames 5; a compression positioning component, which is located in the installation frame 1 for clamping and fixing the multiple curtain wall layers 6; and a limiting component used in conjunction with the compression positioning component, which is located in the installation frame 1 for limiting the position of the multiple curtain wall layers 6 in the positioning grooves 15; and a clamping component, which is located in the installation frame 1 for clamping and positioning the curtain wall layers 6, and the clamping component and the compression positioning component are used in conjunction; after the curtain wall layer 6 is slid into the positioning groove 15, it can be quickly compressed and positioned to fix its position. The installation steps are simple, the installation time is shortened, and it has strong practicality. The shortened installation time can reduce the time workers spend working at heights and ensure the safety of workers.

[0042] Reference Figure 7 and Figure 8 The limiting component includes a third groove 16 that is opened in the mounting frame 1 and communicates with the positioning groove 15. A limiting plate 17 is slidably connected in the third groove 16. A first lead screw 18 is rotatably connected in the mounting frame 1. The limiting plate 17 is threaded to the circumferential surface of the first lead screw 18. A hand-tightening screw head 19 is fixedly connected to the side end of the first lead screw 18.

[0043] Reference Figure 3The extrusion positioning assembly includes two first grooves 9 formed within the mounting frame 1. Each of the two first grooves 9 has a movable block 10 slidably connected to it. Multiple locking blocks 12 are fixedly connected to the adjacent ends of the two movable blocks 10. Multiple glass frames 5 have locking grooves 11 at their upper and lower ends, and the multiple locking blocks 12 engage with the multiple locking grooves 11 respectively. The mounting frame 1 has two sixth grooves 28 formed within it. Each of the six sixth grooves 28 communicates with one of the two first grooves 9 and with a third groove 16. Each of the six sixth grooves 28 has a connecting rod 29 slidably connected to it. The two connecting rods 29 are fixedly connected to the upper and lower ends of the limiting plate 17, and extrusion plates 30 are fixedly connected to the side ends of each of the two connecting rods 29. Two movable blocks 10... Each block 10 has a sloping groove 31, and two extrusion plates 30 contact the inclined surfaces of the two sloping grooves 31 respectively. After multiple curtain wall layers 6 are tightly fixed, the snap-fit ​​blocks 12 and the snap-fit ​​grooves 11 in the curtain wall layers 6 match. At the same time, the limiting plate 17 moves, causing the connecting rod 29 to move in the sixth groove 28. The connecting rod 29 drives the extrusion plate 30 to move, and the extrusion plate 30 moves, pressing the inclined surface of the sloping groove 31. The inclined surface of the sloping groove 31 is pressed, causing the two movable blocks 10 to move in the direction of approach. The movement of the two movable blocks 10 in the direction of approach causes multiple snap-fit ​​blocks 12 to snap into the multiple snap-fit ​​grooves 11 respectively for position fixation, thereby fixing the position of the curtain wall layers 6.

[0044] Reference Figure 4 Two second grooves 13 are provided at the ends of the two movable blocks 10 that are close to each other. Each of the four second grooves 13 is fixedly connected to a return spring 14. The four return springs 14 are respectively fixedly connected to the two first grooves 9. After turning the hand screw head 19 in the opposite direction to release the compression and locking, the elasticity of the multiple return springs 14 presses the two movable blocks 10 in opposite directions. The two movable blocks 10 drive the multiple locking blocks 12 to leave the locking groove 11, and the glass frame 5 can be moved to remove the curtain wall surface layer 6.

[0045] Refer to Figure 3 and Figure 10The clamping assembly includes two fourth grooves 20 formed within the limiting plate 17, two fifth grooves 25 formed within the limiting plate 17, and pressing blocks 26 slidably connected within each of the two fifth grooves 25. Two second lead screws 24 are rotatably connected within the limiting plate 17, and the two pressing blocks 26 are threadedly connected to the circumferential surfaces of the two second lead screws 24. Second gears 23 are fixedly connected to the circumferential surfaces of the two second lead screws 24. First gears 22 are rotatably connected within each of the two fourth grooves 20, and the two first gears 22 mesh with the two second gears 23 respectively. Drive racks 21 are fixedly connected within each of the two third grooves 16, and the two first gears 22 mesh with the two drive racks 21 respectively. Anti-slip pads are provided on the sides of each of the two pressing blocks 26. When installing the curtain wall surface layer 6, multiple glass panels with the curtain wall surface layer 6 are... After the glass frame 5 is inserted into the positioning groove 15, the first lead screw 18 is rotated by turning the hand screw head 19. The rotation of the first lead screw 18 causes the limiting plate 17 to move in the third groove 16. The limiting plate 17 moves out of the third groove 16 to seal the positioning groove 15 and prevent the glass frame 5 from sliding out of the positioning groove 15. At the same time, when the limiting plate 17 moves, it causes the first gear 22 to move in position. When the first gear 22 moves, it meshes with the drive rack 21. The drive rack 21 drives the first gear 22 to rotate. The rotation of the first gear 22 causes the second gear 23 to rotate. The rotation of the second gear 23 causes the second lead screw 24 to rotate. The rotation of the second lead screw 24 causes the pressing block 26 to move in position. The pressing block 26 moves in position to press and fix multiple curtain wall surface layers 6 tightly.

[0046] Example 2

[0047] Reference Figures 1-9 A green and energy-saving building curtain wall suitable for use in multiple locations includes an installation frame 1 fixedly connected to the wall surface; multiple curtain wall layers 6, with positioning grooves 15 provided in the installation frame 1, and multiple glass frames 5 slidably connected in the positioning grooves 15, with the multiple curtain wall layers 6 respectively fixedly connected in the multiple glass frames 5; a compression positioning component, which is disposed in the installation frame 1 for clamping and fixing the multiple curtain wall layers 6; a limiting component used in conjunction with the compression positioning component, which is disposed in the installation frame 1 for limiting the position of the multiple curtain wall layers 6 in the positioning grooves 15; and a clamping component, which is disposed in the installation frame 1 for clamping and positioning the curtain wall layers 6, and the clamping component and the compression positioning component are used in conjunction.

[0048] Reference Figure 1 and Figure 2The mounting frame 1 has two mounting blocks 2 fixedly connected to its upper and lower ends, and two limiting blocks 4 fixedly connected to the side ends of the four mounting blocks 2. Four limiting gaps are formed between the eight limiting blocks 4. L-shaped connecting plates 3 are slidably connected in the four limiting gaps. Screws 8 are threadedly connected in the four L-shaped connecting plates 3. Multiple threaded holes 7 are opened in the four mounting blocks 2. The four screws 8 are threadedly connected to the corresponding threaded holes 7. When installing the mounting frame 1, the screws 8 in the L-shaped connecting plates 3 can be aligned with the corresponding threaded holes 7 in the mounting blocks 2 according to the usage requirements. The screws 8 are turned to fix the position of the L-shaped connecting plates 3. After fixing the positions of the four L-shaped connecting plates 3 to the same horizontal plane, the L-shaped connecting plates 3 are fixed to the wall with bolts.

[0049] A method for using a green and energy-saving building curtain wall suitable for multiple sites, characterized by the following steps:

[0050] S1. When installing the frame 1, the screw 8 in the L-shaped connecting plate 3 can be aligned with the corresponding threaded hole 7 in the mounting block 2 according to the usage requirements. The screw 8 is turned to fix the position of the L-shaped connecting plate 3. After fixing the positions of the four L-shaped connecting plates 3 on the same horizontal plane, the L-shaped connecting plate 3 is fixed to the wall with bolts.

[0051] S2. When installing the curtain wall surface layer 6, after inserting multiple glass frames 5 with the curtain wall surface layer 6 into the positioning groove 15 in sequence, the first lead screw 18 is rotated by turning the hand screw head 19. The rotation of the first lead screw 18 causes the limiting plate 17 to move in the third groove 16. The limiting plate 17 moves out of the third groove 16 to seal the positioning groove 15 and prevent the glass frame 5 from sliding out of the positioning groove 15. At the same time, when the limiting plate 17 moves, it causes the first gear 22 to move in position. When the first gear 22 moves, it meshes with the drive rack 21. The drive rack 21 drives the first gear 22 to rotate. The rotation of the first gear 22 causes the second gear 23 to rotate. The rotation of the second gear 23 causes the second lead screw 24 to rotate. The rotation of the second lead screw 24 causes the pressing block 26 to move in position. The pressing block 26 moves in position to press the multiple curtain wall surface layers 6 tightly and fix them.

[0052] S3. After multiple curtain wall layers 6 are tightly fixed, the snap-fit ​​blocks 12 and the snap-fit ​​grooves 11 in the curtain wall layer 6 are matched. At the same time, the limiting plate 17 moves, causing the connecting rod 29 to move in the sixth groove 28. The connecting rod 29 drives the extrusion plate 30 to move. The extrusion plate 30 moves and extrudes the inclined surface of the inclined groove 31. The inclined surface of the inclined groove 31 is extruded, causing the two movable blocks 10 to move in the direction of approach. The two movable blocks 10 move in the direction of approach, causing multiple snap-fit ​​blocks 12 to snap into multiple snap-fit ​​grooves 11 respectively for position fixation, thereby fixing the position of the curtain wall layer 6.

[0053] S4. When it is necessary to remove the curtain wall surface layer 6, after turning the hand screw head 19 in the opposite direction to release the compression and locking, the elasticity of multiple return springs 14 presses the two movable blocks 10 in opposite directions. The two movable blocks 10 drive multiple locking blocks 12 to leave the locking groove 11, and the glass frame 5 can be moved to remove the curtain wall surface layer 6.

[0054] The working principle and usage process of this technical solution are as follows:

[0055] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. In the absence of conflict, the embodiments and features of the embodiments of the present invention can be combined with each other. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A green and energy-saving building curtain wall suitable for use in multiple locations, characterized in that, include: A mounting frame that is fixedly connected to the wall; Multiple curtain wall layers are provided, and a positioning groove is provided in the installation frame. Multiple glass frames are slidably connected in the positioning groove, and the multiple curtain wall layers are respectively fixedly connected in the multiple glass frames. The extrusion positioning component is installed within the mounting frame to snap and fix multiple curtain wall surfaces. And a limiting component used in conjunction with the extrusion positioning component, the limiting component being disposed within the mounting frame for limiting the position of multiple curtain wall surface layers within the positioning groove; A clamping assembly, disposed within an installation frame, is used to clamp and position the curtain wall surface. The clamping assembly works in conjunction with a compression positioning assembly. The compression positioning assembly includes two first grooves within the installation frame, each containing a movable block slidably connected to it. Multiple locking blocks are fixedly connected to the adjacent ends of the two movable blocks. Multiple glass frames have locking slots at their upper and lower ends, with the locking blocks engaging with these slots. Two sixth grooves are provided within the installation frame, each communicating with one of the first grooves and a third groove. Connecting rods are slidably connected to each of the six sixth grooves, fixedly connected to the upper and lower ends of a limiting plate. Compression plates are fixedly connected to the side ends of the connecting rods. Inclined grooves are provided within each of the two movable blocks, with the compression plates contacting the inclined surfaces of the two inclined grooves. Two second grooves are provided at the adjacent ends of the two movable blocks, with return springs fixedly connected to each of the four second grooves. These return springs are fixedly connected to the two first grooves.

2. The green and energy-saving building curtain wall suitable for use in multiple locations according to claim 1, characterized in that, The limiting component includes a third groove formed within the mounting frame and communicating with the positioning groove. A limiting plate is slidably connected within the third groove. A first lead screw is rotatably connected within the mounting frame. The limiting plate is threaded onto the circumferential surface of the first lead screw. A hand-tightening screw head is fixedly connected to the side end of the first lead screw.

3. A green and energy-saving building curtain wall suitable for use in multiple locations according to claim 2, characterized in that, The clamping assembly includes two fourth grooves formed within a limiting plate, two fifth grooves formed within the limiting plate, and a pressing block slidably connected to each of the two fifth grooves. Two second lead screws are rotatably connected within the limiting plate, and the two pressing blocks are threadedly connected to the circumferential surfaces of the two second lead screws. A second gear is fixedly connected to the circumferential surfaces of the two second lead screws. A first gear is rotatably connected to each of the two fourth grooves, and the two first gears mesh with the two second gears respectively. A drive rack is fixedly connected to each of the two third grooves, and the two first gears mesh with the two drive racks respectively.

4. A green and energy-saving building curtain wall suitable for use in multiple locations according to claim 3, characterized in that, Both extrusion blocks are provided with anti-slip pads on their sides.

5. A green and energy-saving building curtain wall suitable for use in multiple locations according to claim 4, characterized in that, Two mounting blocks are fixedly connected to both the upper and lower ends of the mounting frame. Two limiting blocks are fixedly connected to the side ends of the four mounting blocks. Four limiting gaps are formed between the eight limiting blocks. An L-shaped connecting plate is slidably connected to each of the four limiting gaps. A screw is threadedly connected to each of the four L-shaped connecting plates. Multiple threaded holes are opened in each of the four mounting blocks. The four screws are threadedly connected to the corresponding threaded holes.

6. The method of using a green and energy-saving building curtain wall suitable for multiple sites as described in claim 5, characterized in that, Includes the following steps: S1. When installing the frame, align the screws inside the L-shaped connecting plate with the corresponding threaded holes inside the mounting block according to the usage requirements. Tighten the screws to fix the position of the L-shaped connecting plate. After fixing the positions of the four L-shaped connecting plates on the same horizontal plane, fix the L-shaped connecting plates to the wall with bolts. S2. When installing the curtain wall surface layer, after inserting multiple glass frames with curtain wall surface layers into the positioning groove in sequence, the first lead screw is rotated by turning the hand screw head. The rotation of the first lead screw causes the limiting plate to move in the third groove. The limiting plate moves out of the third groove to seal the positioning groove and prevent the glass frames from sliding out of the positioning groove. At the same time, the movement of the limiting plate causes the first gear to move in position. When the first gear moves, it meshes with the drive rack. The drive rack drives the first gear to rotate. The rotation of the first gear causes the second gear to rotate. The rotation of the second gear causes the second lead screw to rotate. The rotation of the second lead screw causes the pressing block to move in position. The pressing block moves in position to press the multiple curtain wall surface layers tightly and fix them. S3. After multiple curtain wall layers are tightly fixed, the snap-fit ​​blocks and snap-fit ​​grooves in the curtain wall layers match. At the same time, the limiting plate moves, causing the connecting rod to move in the sixth groove. The connecting rod drives the extrusion plate to move, and the extrusion plate moves to extrude the inclined surface of the inclined groove. The inclined surface of the inclined groove is extruded, causing the two movable blocks to move in the same direction. The two movable blocks move in the same direction, causing multiple snap-fit ​​blocks to snap into the multiple snap-fit ​​grooves respectively to fix their positions, thereby fixing the position of the curtain wall layers. S4. When it is necessary to remove the curtain wall surface layer, turn the hand screw head in the opposite direction to release the compression and locking. The elasticity of multiple return springs will press the two movable blocks in opposite directions. The two movable blocks will drive multiple locking blocks to leave the locking groove. Move the glass frame to remove the curtain wall surface layer.

Citation Information

Patent Citations

  • Green energy-saving building curtain wall suitable for being used in multiple sites

    CN215442580U

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    CN113605582A