Energy-saving and green curtain wall structure for building

By setting slots and clamps within the curtain wall frame, the problem of easy damage to traditional curtain wall glass is solved, achieving stable installation and protection of the glass.

CN224063757UActive Publication Date: 2026-03-31SICHUAN YUGAO ARCHITECTURAL DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional curtain wall structures lack protective mechanisms for the curtain wall glass, making the glass prone to damage during installation or when subjected to external vibrations.

Method used

The frame is equipped with a slot, a second slot, and a groove. The glass plate is fixed in the L-shaped groove by a clamping device to hold and fix the glass plate and prevent it from being bumped or knocked.

Benefits of technology

It improves the installation stability of curtain wall glass and prevents the glass from being damaged during installation or vibration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an energy-saving green building curtain wall structure which comprises a frame, a first clamping groove is formed in the top face of the frame, a second clamping groove communicated with the first clamping groove is vertically formed in the inner wall of each of the two sides of the frame, and a second groove communicated with the two second clamping grooves is formed in the bottom wall of the frame. The two second clamping grooves are each internally and movably connected with a mounting plate, a supporting rod is jointly fixed between the two mounting plates, L-shaped grooves are formed in the opposite faces of the two mounting plates, a glass plate is jointly clamped in the two L-shaped grooves, a clamping piece abutting against the glass plate is arranged in each L-shaped groove, and a pressing block is arranged in the first clamping groove. The clamping groove I, the clamping groove II and the groove II are formed in the frame, the mounting plates with the L-shaped grooves formed in the inner sides are movably connected in the two clamping grooves II respectively, the glass plate is mounted in the L-shaped grooves, and the glass plate is clamped and fixed by the clamping pieces, so that the mounting stability of the glass on the curtain wall is ensured, the glass is prevented from being collided, and the service life of the glass plate is prolonged. The glass is damaged.
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Description

Technical Field

[0001] This utility model relates to the field of building curtain wall technology, and in particular to an energy-saving and green building curtain wall structure. Background Technology

[0002] A curtain wall is a non-load-bearing exterior wall cladding for buildings, hung like a curtain, hence also called a curtain wall. It is a lightweight, decorative wall structure commonly used in modern large and high-rise buildings, composed of curtain wall glass and a restraining structural system. It is a building envelope or decorative structure that can have a certain degree of displacement relative to the main structure or a certain degree of deformation capacity, and does not bear the load of the main structure. Curtain walls are most frequently used on the exterior of energy-saving and green buildings. However, traditional curtain wall structures lack protective mechanisms for the curtain wall glass, making it easy for workers to damage the glass during installation or when exposed to external vibrations. Utility Model Content

[0003] The purpose of this utility model is to address the shortcomings of existing technologies by proposing an energy-saving and green building curtain wall structure.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: an energy-saving and green building curtain wall structure, comprising a frame, a slot 1 on the top surface of the frame, a slot 2 vertically formed on each of the inner walls of the two sides of the frame communicating with the slot 1, a groove 2 formed on the bottom wall of the frame communicating with the two slot 2, a mounting plate movably connected to each of the two slot 2, a support rod fixed between the two mounting plates, an L-shaped groove on the opposite side of each of the two mounting plates, a glass plate being clamped in both L-shaped grooves, a clamping member abutting against the glass plate in each L-shaped groove, and a pressure block in the slot 1.

[0005] As a further description of the above technical solution: each side of the frame has a horizontal countersunk hole 2 that communicates with the slot 1, and each side of the pressure block has a horizontal threaded groove. Each countersunk hole 2 has a bolt 2 that is movably connected to it, and the bolt 2 is threaded into the threaded groove.

[0006] As a further description of the above technical solution: the clamping member includes two pairs of clamping plates that fit against the front and rear sides of the glass plate. The inner wall of the L-shaped groove has multiple countersunk holes three that are distributed at equal intervals. The countersunk holes three are abutted against a limiting block. The end of the limiting block is fixedly connected to a pull rod. The pull rod moves through the countersunk holes three and is fixedly connected to the clamping plate. The outer edge of the pull rod is sleeved with a spring.

[0007] As a further description of the above technical solution: four mirror-symmetrical countersunk holes are horizontally penetrating on the front and rear sides of the frame. A receiving groove communicating with the countersunk hole is horizontally opened on the front and rear inner walls of the two slots. The countersunk hole is provided with an internal thread. A bolt is connected to the internal thread of the countersunk hole. A through hole is horizontally penetrating on the inner walls of both sides of the L-shaped groove. The bolt passes through the through hole. The end of the bolt is fixedly connected to a stop block. The stop block abuts against the outside of the clamping plate.

[0008] As a further description of the above technical solution: a guide groove is vertically opened on the inner wall of each of the two slots, a guide block is slidably connected in each guide groove, and a mounting plate is fixedly connected to the outer side of each guide block.

[0009] As a further description of the above technical solution: the top surface of one of the guide blocks has a vertically penetrating threaded hole, and a screw rod is threaded through the inside of the threaded hole. One end of the screw rod is rotatably connected to the top wall of the guide groove, and the other end rotatably penetrates the guide groove. A groove is formed on the bottom surface of the frame, and the screw rod rotatably penetrates the groove. An external hexagonal block is provided in the groove, and the external hexagonal block is fixed to the bottom surface of the screw rod. The top surface of the other guide block has a vertically penetrating guide hole, and a guide rod is axially slidably inserted into the guide hole. The guide rod is vertically fixed in the guide groove.

[0010] As a further description of the above technical solution: rubber pads are attached around the inner walls of both L-shaped grooves, and multiple protruding particles are set on the rubber pads.

[0011] This utility model has the following beneficial effects:

[0012] Compared with existing technologies, this energy-saving and green building curtain wall structure sets up slot 1, slot 2, and groove 2 within the frame, and movably connects an installation plate with an L-shaped groove on the inner side to each of the two slot 2. The glass panel is installed in the L-shaped groove and clamped and fixed with clamping components, thereby ensuring the stability of the glass installation on the curtain wall and avoiding the glass from being bumped and broken. Attached Figure Description

[0013] Figure 1 This is a perspective view of the overall structure of this utility model;

[0014] Figure 2 This is a main sectional view of the overall structure of this utility model;

[0015] Figure 3 This is a partial structural side sectional view of the present invention;

[0016] Figure 4 This utility model Figure 2Enlarged view of the structure at point A in the middle;

[0017] Figure 5 This utility model Figure 2 Enlarged view of the structure at point B;

[0018] Figure 6 This utility model Figure 2 Enlarged view of the structure at point C;

[0019] Figure 7 This utility model Figure 3 Enlarged view of the structure at point D.

[0020] Legend:

[0021] 1. Frame; 2. Slot 1; 3. Pressure block; 4. Countersunk hole 1; 5. Bolt 1; 6. Glass plate; 7. Guide groove; 8. Screw; 9. Mounting plate; 10. Groove 1; 11. External hexagonal block; 12. Groove 2; 13. Guide rod; 14. Slot 2; 15. Clamping plate; 16. Abutment block; 17. Through hole; 18. Storage groove; 19. Threaded groove; 20. Countersunk hole 2; 21. Bolt 2; 22. Guide block; 23. Threaded hole; 24. Guide hole; 25. Limiting block; 26. Countersunk hole 3; 27. Pull rod; 28. Spring. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Reference Figures 1 to 7 This utility model provides an energy-saving and green building curtain wall structure, including a frame 1, a slot 2 on the top surface of the frame 1, a slot 14 vertically on each of the inner walls of the two sides of the frame 1 communicating with the slot 2, a groove 12 on the bottom wall of the frame 1 communicating with the two slots 14, a mounting plate 9 movably connected in each of the two slots 14, a support rod fixed between the two mounting plates 9, an L-shaped groove on the opposite side of the two mounting plates 9, rubber pads pasted around the inner walls of the two L-shaped grooves, and multiple protruding particles on the rubber pads, a glass plate 6 being clamped in the two L-shaped grooves, a clamping component abutting against the glass plate 6 in each L-shaped groove, a pressure block 3 in the slot 2, a countersunk hole 20 horizontally penetrating each side of the frame 1 communicating with the slot 2, a threaded groove 19 horizontally opened on each side of the pressure block 3, a bolt 21 movably passing through each countersunk hole 20, and the bolt 21 being threadedly connected in the threaded groove 19;

[0024] The clamping component includes two pairs of clamping plates 15 that fit against the front and rear sides of the glass plate 6. The inner wall of the L-shaped groove has multiple countersunk holes 26 that are distributed at equal intervals. The countersunk holes 26 are abutted against the limiting block 25. The end of the limiting block 25 is fixedly connected to the pull rod 27. The pull rod 27 moves through the countersunk holes 26 and is fixedly connected to the clamping plate 15. The outer edge of the pull rod 27 is sleeved with a spring 28. The front and rear sides of the frame 1 each have four mirror-symmetrical countersunk holes 4 that are horizontally connected. The front and rear inner walls of the two slots 14 each have a horizontally opened storage slot 18 that communicates with the countersunk holes 4. The countersunk holes 4 have internal threads. The internal threads of the countersunk holes 4 are connected to a bolt 5. The inner walls of the two sides of the L-shaped groove each have a horizontally connected through hole 17. The bolt 5 passes through the through hole 17. The end of the bolt 5 is fixedly connected to a stop block 16. The stop block 16 abuts against the outside of the clamping plate 15.

[0025] Each of the two slots 14 has a guide groove 7 vertically opened on its inner wall. A guide block 22 is slidably connected in each guide groove 7. A mounting plate 9 is fixedly connected to the outer side of each guide block 22. The top surface of one guide block 22 is vertically connected through a threaded hole 23. A screw 8 is threaded through the inside of the threaded hole 23. One end of the screw 8 is rotatably connected to the top wall of the guide groove 7, and the other end is rotatably connected through the guide groove 7. A groove 10 is opened on the bottom surface of the frame 1. The screw 8 is rotatably connected through the groove 10. An external hexagonal block 11 is provided in the groove 10. The external hexagonal block 11 is fixed to the bottom surface of the screw 8. The top surface of the other guide block 22 is vertically connected through a guide hole 24. A guide rod 13 is axially slidably connected in the guide hole 24. The guide rod 13 is vertically fixed in the guide groove 7.

[0026] By setting slot 1 2, slot 2 14 and groove 2 12 in the frame 1, and movably connecting a mounting plate 9 with an L-shaped groove on the inner side in each of the two slots 2 14, the glass plate 6 is installed in the L-shaped groove. The glass plate 6 is clamped and fixed by the clamping device, thereby ensuring the stability of the glass installation on the curtain wall and avoiding the glass from being bumped and broken.

[0027] Working principle: First, remove the pressure block 3 from the slot 2. Then, lay the frame 1 horizontally. Next, rotate the outer hexagonal block 11, which drives the screw 8 to rotate. The screw 8 moves the guide block 22 through the threaded hole 23, causing the mounting plate 9 to move towards the slot 2 until it reaches its limit position. Then, place the glass plate 6 in the L-shaped groove between the two mounting plates 9. The clamping plate 15 in the L-shaped groove is compressed under the action of the spring 28, clamping the glass plate 6 to the outside. Then, rotate the outer hexagonal block 11 in the opposite direction. This causes the mounting plate 9, carrying the glass plate 6, to move towards the interior of the frame 1 until it reaches its limit position. Then, the frame 1 is erected, and multiple bolts 5 are rotated. Under the action of the internal threads in the countersunk hole 4, the bolts 5 move towards the slot 14. The bolts 5 drive the abutment to move towards the clamping plate 15, so that the abutment block 16 abuts against the outside of the clamping plate 15, so that the glass plate 6 is firmly clamped and fixed between the clamping plates 15 to prevent the glass plate 6 from loosening. Then, the pressure block 3 is installed into the slot 2 and fixed with bolt 21.

[0028] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An energy-saving green building curtain wall structure comprising a frame (1), characterized in that: The top surface of the frame (1) is provided with a clamping groove (2), the two side inner walls of the frame (1) are vertically provided with a clamping groove (14) which communicates with the clamping groove (2), the bottom wall of the frame (1) is provided with a recess (12) which communicates with the two clamping grooves (14), the two clamping grooves (14) are movably connected with an installation plate (9), the two installation plates (9) are fixedly connected with a support rod, the opposite sides of the two installation plates (9) are provided with an L-shaped groove, the two L-shaped grooves are movably connected with a glass plate (6), the L-shaped groove is provided with a clamping piece which abuts against the glass plate (6), and the clamping groove (2) is provided with a pressing block (3).

2. The energy-saving green building curtain wall structure according to claim 1, characterized in that: The two sides of the frame (1) are horizontally provided with a counterbore hole (20) which communicates with the clamping groove (2), the two sides of the pressing block (3) are horizontally provided with a threaded groove (19), the counterbore hole (20) is movably connected with a bolt (21), and the bolt (21) is screw-connected in the threaded groove (19).

3. The energy-saving green building curtain wall structure according to claim 1, characterized in that: The clamping piece comprises two pairs of clamping plates (15) which are attached to the front and back sides of the glass plate (6), the inner wall of the L-shaped groove is horizontally provided with a plurality of counterbore holes (26) which are equidistantly distributed, the counterbore hole (26) is abutted with a limiting block (25), the limiting block (25) is fixedly connected with a pull rod (27), the pull rod (27) is movably connected with the counterbore hole (26) and the clamping plate (15), and the pull rod (27) is sleeved with a spring (28).

4. The energy-saving green building curtain wall structure according to claim 3, characterized in that: The front and back sides of the frame (1) are horizontally provided with four mirror-symmetrical counterbore holes (4), the front and back inner walls of the two clamping grooves (14) are horizontally provided with a receiving groove (18) which communicates with the counterbore hole (4), the counterbore hole (4) is provided with an internal thread, the counterbore hole (4) is screw-connected with a bolt (5), the two side inner walls of the L-shaped groove are horizontally provided with a through hole (17), the bolt (5) passes through the through hole (17), the end of the bolt (5) is fixedly connected with an abutting block (16), and the abutting block (16) abuts against the outside of the clamping plate (15).

5. The energy-saving green building curtain wall structure according to claim 1, characterized in that: The inner walls of the two clamping grooves (14) are vertically provided with a guide groove (7), the guide groove (7) is slidably connected with a guide block (22), and the outside of the guide block (22) is fixedly connected with the installation plate (9).

6. The energy-saving green building curtain wall structure according to claim 5, characterized in that: One of the guide blocks (22) is vertically penetrated by a threaded hole (23), the inside of the threaded hole (23) is threaded to connect a screw rod (8), one end of the screw rod (8) is rotatably connected to the top wall of the guide groove (7), the other end of the screw rod (8) is rotatably penetrated through the guide groove (7), the bottom surface of the frame (1) is provided with a groove (10), the screw rod (8) is rotatably penetrated through the groove (10), the groove (10) is provided with an outer hexagonal block (11), the outer hexagonal block (11) is fixed to the bottom surface of the screw rod (8), the top surface of the other guide block (22) is vertically penetrated by a guide hole (24), the guide hole (24) is axially slidably connected to a guide rod (13), and the guide rod (13) is vertically fixed in the guide groove (7).

7. The energy-saving green building curtain wall structure according to claim 1, characterized in that: Rubber pads are attached around the inner walls of the two L-shaped grooves, and a plurality of protruding particles are arranged on the rubber pads.