Building energy-saving glass curtain wall assembling structure and method

By adopting a structure including assembly frame plate, assembly and fixing mechanism, sealing strip plate and fastening crimping mechanism, the existing building energy-saving glass curtain wall assembly structure has solved the problem of poor assembly and fixing effect and lack of support and sealing when used, and the firm assembly and good sealing effect of the glass curtain wall are achieved, and the assembly safety and stability of the indoor environment are improved.

CN120061504APending Publication Date: 2025-05-30SHENYANG JIANZHU UNIVERSITY
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Patent Information

Application Number
CN202510223391.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

When used, the assembly and fixing effect of the existing building energy-saving glass curtain wall assembly structure is poor, and the problem of lack of support and sealing of glass curtain walls is lacking.

Method used

The structure is adopted that includes a glass curtain wall assembly main frame, a first glass curtain wall, a second glass curtain wall, an assembly frame plate, an assembly and fixing mechanism, a support base plate, a sealing strip plate and a fastening crimping mechanism, and the assembly frame plate is bonded through the curtain wall structure, and the assembly frame plate is fixed by the cooperation of the power column and the pushing block. The sealing effect is achieved by using the sealing strip plate and a fastening crimping mechanism, and the bottom support is provided through the support base plate.

Benefits of technology

It realizes the convenient and firm assembly of glass curtain walls, has support and sealing effects, improves the safety and sealing performance of assembly, and ensures the stability and comfort of the indoor environment.

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Abstract

The invention discloses a building energy-saving glass curtain wall assembling structure and method. The building energy-saving glass curtain wall assembling structure comprises a glass curtain wall assembling main frame, a first glass curtain wall and a second glass curtain wall. According to the building energy-saving glass curtain wall assembly structure and method, the assembly frame plates are bonded to the first glass curtain wall and the second glass curtain wall through curtain wall structural adhesive, and the assembly insertion plates on the assembly frame plates are correspondingly inserted into the insertion grooves in the inner fixing plates in the glass curtain wall assembly main frame; in the process, the power column is correspondingly inserted into the glass curtain wall assembling main frame, and the cutting inclined plane on the outer side of the power column is in contact with the cutting inclined plane of the pushing block in the inserting process of the power column, so that the pushing block is pushed to do horizontal movement, and the locking rod is driven to do synchronous movement until the locking rod is inserted into the fixing hole in the assembling inserting plate; and the clamping block is clamped with the locking groove in the end part of the locking rod, so that the assembly firmness of the first glass curtain wall and the second glass curtain wall can be ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of curtain wall assembly structures, and specifically to an energy-saving glass curtain wall assembly structure and an assembly method for buildings. Background Art

[0002] With the continuous development of modern building technology and the enhancement of people's environmental protection awareness, building energy conservation has become one of the important considerations in building design. As a commonly used external enclosure structure for modern buildings, glass curtain walls not only have the characteristics of beauty and transparency, but also can adjust indoor light, temperature and humidity to a certain extent, improving the energy efficiency of buildings. However, traditional glass curtain walls have many deficiencies in energy conservation, such as poor heat insulation performance, ineffective heat insulation effect, serious light pollution, etc. Therefore, researching and developing a new type of energy-saving glass curtain wall assembly structure and assembly method is of great significance for improving the energy efficiency of buildings, reducing energy consumption and improving the indoor environment;

[0003] Publication No. CN109057110A discloses a glass curtain wall assembly structure and an assembly method, including a column assembly and a glass assembly. The column assembly includes columns and seals. Extension parts are arranged on both sides of the columns extending outwards, and the seals are arranged inside the extension parts. A number of positioning holes are evenly spaced on the columns; the glass assembly includes glass, a sub-frame and spring pins. The outer surface of the glass is closely attached to the seals and arranged on both sides of the columns. The inner surface of the glass is connected to the sub-frame. At least two horizontally arranged positioning cylinders are arranged on the sub-frame, and the spring pins are arranged inside the positioning cylinders. The protruding ends of the spring pins inside the positioning cylinders are clamped in the positioning holes. This solution divides the glass curtain wall structure into two parts, and then quickly assembles the glass curtain wall through positioning holes, spring pins and seals, etc., with a stable structure; at the same time, the entire assembly process can be completed indoors without the need to additionally install cross beams or install glass through stainless steel bolts and bolts, improving the on-site construction efficiency and ensuring the construction quality, which is green and environmentally friendly;

[0004] When the above-mentioned prior art is in use, when assembling the glass curtain wall, it mainly uses spring pins for fixed assembly. However, for spring pin fixation, regular maintenance and upkeep are required. Due to the complex structure of the spring pins and their long-term exposure to the outdoor environment, they are easily affected by corrosion and wear. Therefore, it is necessary to regularly inspect and replace the spring pins to ensure their good working condition. However, this increases the maintenance cost, requires special personnel to be responsible, and requires a large amount of maintenance materials and tools. The fixed stability effect of a single spring pin is also limited, and the assembled glass curtain wall lacks corresponding bottom support, and its overall stability will be affected. Under the action of external factors such as wind pressure and temperature changes, the curtain wall may deform or displace, and it is more likely to be damaged or fall off when the glass curtain wall is impacted by external forces, posing a threat to the safety of personnel and property;

[0005] A building energy-saving glass curtain wall assembly structure is disclosed in the publication number CN118029593A, which relates to the technical field of assembly structures. It includes a number of longitudinal columns. Each longitudinal column body is equipped with an adjustment component for adjusting the distance between each group of curtain wall groups. One end of the adjustment component is connected to a transverse support column for cooperating with the longitudinal column to connect the curtain wall group; when the threaded hole is in threaded cooperation with the threaded rod body, the up and down position of the fine-tuning slider inside the fine-tuning groove will be adjusted, thereby adjusting the height of the transverse support column connected to the fine-tuning slider. Among them, in this application, the transverse support column is used to support the transverse part of the frame, so that the height can be adjusted by using the transverse support column, thereby meeting the reserved distances of different lengths, effectively avoiding the problems of gaps between the glass curtain wall bodies due to excessive distances or mutual extrusion of the curtain walls due to too small distances after assembly caused by the inability to adjust the assembly position;

[0006] When the above-mentioned prior art is in use, after the assembly of multiple glass curtain walls, there is a lack of sealing. In rainy and windy weather, rainwater is likely to penetrate into the room through the gaps in the curtain wall, resulting in problems such as dampness and mildew in the indoor space. This not only affects the beauty and comfort of the indoor environment, but may also cause damage to the indoor decoration and civil engineering structure. Moreover, during direct assembly, there is a lack of further limit support, resulting in the looseness or even falling of the glass curtain wall assembly under the influence of wind, affecting the safety of use. Therefore, corresponding improvements are needed. Summary of the Invention

[0007] The purpose of the present invention is to provide a building energy-saving glass curtain wall assembly structure and an assembly method to solve the problems of poor assembly and fixation effect, lack of support and sealing of the glass curtain wall in the currently available building energy-saving glass curtain wall assembly structure in use as mentioned in the above background technology.

[0008] To achieve the above purpose, the present invention provides the following technical solution: A building energy-saving glass curtain wall assembly structure includes a glass curtain wall assembly main frame, a first glass curtain wall, and a second glass curtain wall. The first glass curtain wall and the second glass curtain wall are arranged on one side of the glass curtain wall assembly main frame;

[0009] On one side of the first glass curtain wall and the second glass curtain wall, there are fixedly connected assembly frame plates, and there are assembly fixing mechanisms between the assembly frame plates and the main frame of the glass curtain wall assembly. On one side of the main frame of the glass curtain wall assembly, there is a supporting bottom plate, and there is a moving groove at the top of the supporting bottom plate. There are transmission cavities on both sides of the supporting bottom plate. Guide grooves are opened on both inner walls of the moving groove. There is a fastening and pressing mechanism inside the supporting bottom plate, and a sealing strip plate is connected to the top of the fastening and pressing mechanism. The sealing strip plate is attached to the gap where the first glass curtain wall and the second glass curtain wall are assembled. There are positioning page plates fixed on both sides of the sealing strip plate, and fixing pins are threadedly connected inside the positioning page plates. One end of each fixing pin extends to the top of the supporting bottom plate.

[0010] Preferably, an inner fixing plate is fixed at the central position inside the main frame of the glass curtain wall assembly, and there are insertion grooves on both sides at the top of the inner fixing plate. There are through holes on both sides of the inner fixing plate, and the through holes and the insertion grooves penetrate each other.

[0011] Preferably, the assembly fixing mechanism includes pushing blocks, and the pushing blocks are distributed on both sides of the inner fixing plate. The pushing blocks are arranged inside the main frame of the glass curtain wall assembly. Moving blocks are fixed at the bottom ends of the pushing blocks, and limiting columns penetrate through the moving blocks. Compression springs are connected to one side of each moving block, and the other ends of the compression springs are connected to the inner walls of the main frame of the glass curtain wall assembly.

[0012] Preferably, one side of each pushing block is inclined. There are fixing components on the other side of each pushing block. Power columns are arranged above the inclined surfaces of the pushing blocks, and the power columns are fixed at the bottom ends of the assembly frame plates. One side at the bottom end of the power column is inclined, and the inclined cutting surfaces of the power columns and the inclined cutting surfaces of the pushing blocks correspond to each other.

[0013] Preferably, the fixing components include assembly insertion plates fixed at the bottom ends of the assembly frame plates. There are two fixing holes on one side of each assembly insertion plate, and two clamping blocks are fixed inside each fixing hole. Locking rods are clamped on one side of each clamping block, and the locking rods are fixed on the outer sides of the pushing blocks.

[0014] Preferably, the cross section of each clamping block is trapezoidal. Locking grooves with trapezoidal cross sections are opened at one end of each locking rod, and the locking rods and the clamping blocks are clamped with each other.

[0015] Preferably, the fastening and pressing mechanism includes a driving block, and the driving block is fixed at the bottom end of the sealing strip plate. A rack is fixed at the bottom end of the driving block, and a driven gear is engaged with the bottom end of the rack. A driven shaft penetrates through the driven gear.

[0016] Preferably, both ends of the driven shaft extend into the interior of the transmission cavity. Belt assemblies are sleeved on the outer sides of the driven shafts, and the other ends of the belt assemblies all penetrate through the turning shafts. Support plates are rotatably connected to both sides of each turning shaft, and the support plates are all fixed to the top of the supporting bottom plate. Fastening pressing plates are sleeved on the outer sides of the turning shafts, and limiting rubber plates are fixed to one side of each fastening pressing plate. The limiting rubber plates are closely attached to the outer walls of the first glass curtain wall and the second glass curtain wall;

[0017] Among them, the belt assembly includes a driving wheel, a driven wheel and a transmission belt. The driving wheel is sleeved on the driven shaft, the driven wheel is sleeved on the turning shaft, and a transmission belt is connected between the driving wheel and the driven wheel.

[0018] Preferably, guide blocks are fixed to both sides of the driving block, and the guide blocks slide inside the guide grooves. The sealing strip plate is slidably connected to the supporting bottom plate through the driving block, the guide blocks and the guide grooves.

[0019] Another technical solution provided by the present invention is to provide an assembly method for an energy-saving glass curtain wall assembly structure of a building, including the following steps:

[0020] S1: Bond the assembly frame plate to the backs of the first glass curtain wall and the second glass curtain wall through curtain wall structural glue, and correspondingly insert the assembly insertion plate into the insertion slot. During this process, the power column is synchronously inserted into the interior of the main frame of the glass curtain wall assembly. When the power column is pushed downward, the inclined plane on its outer side contacts the inclined plane on the outer side of the pushing block, then the pushing block is pushed to move horizontally until the locking rod is inserted into the fixing hole on the assembly insertion plate to fix and limit the assembly insertion plate, so as to ensure the firmness of its insertion, thereby completing the assembly of the first glass curtain wall and the second glass curtain wall, and the operation is convenient;

[0021] S2: Slide the guide block into the guide groove, so that the driving block slides in the moving groove, and then the rack moves synchronously until the sealing strip plate fits against the connection gap between the first glass curtain wall and the second glass curtain wall, so as to realize the sealing of the assembly gap, effectively isolate the outside wind, water, air and noise, etc., significantly improve the sealing performance of the first glass curtain wall and the second glass curtain wall, ensure the stability and comfort of the indoor environment, and then fix the positioning page plate with a fixing pin to fix the position of the sealing strip plate and ensure the sealing effect;

[0022] S3: During the movement of the rack in the moving groove, it meshes with the driven gear, causing the driven gear and the driven shaft to rotate. In cooperation with the belt assembly, that is, under the combined action of the driving wheel, the driven wheel and the transmission belt, the turning shaft rotates synchronously. During the rotation of the turning shaft, the fastening pressing plate is driven to turn until the limiting rubber plate fits against the outer walls of the first glass curtain wall and the second glass curtain wall, realizing pressing and limiting, and further improving the firmness of the assembly of the first glass curtain wall and the second glass curtain wall;

[0023] S4: A supporting bottom plate is fixed at the bottom of the main frame for assembling the glass curtain wall. When assembling the first glass curtain wall and the second glass curtain wall, the supporting bottom plate can be used to support the assembled second glass curtain wall, effectively dispersing and bearing the weight and stress of the first glass curtain wall and the second glass curtain wall, and improving the safety in use.

[0024] Compared with the prior art, the beneficial effects of the present invention are as follows: The building energy-saving glass curtain wall assembly structure and assembly method can conveniently and firmly assemble the glass curtain wall during use, and have supporting and sealing effects. The specific content is as follows:

[0025] Assembly frame plates are bonded to the first glass curtain wall and the second glass curtain wall by using curtain wall structural glue, and the assembly insertion plates on the assembly frame plates are correspondingly inserted into the insertion slots on the inner fixing plates inside the main frame for assembling the glass curtain wall. During this process, the power column is correspondingly inserted into the main frame for assembling the glass curtain wall. When the power column is inserted, the inclined plane on its outer side contacts the inclined plane of the pushing block, then the pushing block is pushed to move horizontally, and the locking rod moves synchronously until the locking rod is inserted into the fixing hole on the assembly insertion plate, and the block is engaged with the locking groove at the end of the locking rod, thus ensuring the firmness of the assembly of the first glass curtain wall and the second glass curtain wall, so that the first glass curtain wall and the second glass curtain wall are not prone to loosening and falling off during long-term use, and improving the safety of the assembly of the first glass curtain wall and the second glass curtain wall;

[0026] A supporting bottom plate is correspondingly fixed at the bottom of the main frame for assembling the glass curtain wall. After the first glass curtain wall and the second glass curtain wall are assembled, the supporting bottom plate can be used to support the assembled second glass curtain wall, effectively dispersing and bearing the weight and stress of the first glass curtain wall and the second glass curtain wall, improving the safety in use, and effectively resisting the impact of extreme weather such as strong wind on the curtain wall;

[0027] The guide block is slid into the guide groove, so that the driving block slides in the moving groove, and then the rack moves synchronously until the sealing strip plate is pressed and fitted to the connection gap between the first glass curtain wall and the second glass curtain wall, thus realizing the sealing of the assembly gap, effectively isolating the outside wind, water, air and noise, etc., significantly improving the sealing performance of the first glass curtain wall and the second glass curtain wall, and playing a waterproof role, which is of great significance for protecting the building structure and interior decoration and prolonging the service life, and helps to improve the stability and comfort of the indoor environment;

[0028] During the movement of the rack in the moving groove, it meshes with the driven gear, causing the driven gear and the driven shaft to rotate. In cooperation with the belt assembly, that is, under the combined action of the driving wheel, the driven wheel, and the transmission belt, the turning shaft rotates synchronously. During the rotation of the turning shaft, the fastening pressure plate is driven to perform a turning motion until the limiting rubber plate fits against the outer walls of the first glass curtain wall and the second glass curtain wall, achieving pressing and limiting, and further improving the firmness of the assembly of the first glass curtain wall and the second glass curtain wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic top - sectional structure view of the present invention;

[0030] Figure 2 For the present invention Figure 1 An enlarged structure view of part A in it;

[0031] Figure 3 It is a schematic partial three - dimensional structure view of the present invention;

[0032] Figure 4 It is a schematic three - dimensional structure view of the present invention;

[0033] Figure 5 It is a schematic three - dimensional structure view of the present invention;

[0034] Figure 6 It is a schematic three - dimensional structure view of the fastening and crimping mechanism of the present invention;

[0035] Figure 7 It is a schematic three - dimensional structure view of the supporting bottom plate of the present invention;

[0036] Figure 8 It is a schematic three - dimensional structure view of the fastening pressure plate and the belt assembly of the present invention.

[0037] In the figure: 1, main frame for glass curtain wall assembly; 2, first glass curtain wall; 3, second glass curtain wall; 4, inner fixing plate; 401, insertion slot; 5, assembly frame plate; 6, assembly fixing mechanism; 601, pushing block; 602, moving block; 603, limiting column; 604, compression spring; 605, locking groove; 606, power column; 607, assembly insertion plate; 608, fixing hole; 609, locking rod; 610, clamping block; 7, sealing strip plate; 8, supporting bottom plate; 801, moving groove; 802, transmission inner cavity; 9, fastening pressure plate; 901, limiting rubber plate; 10, fastening and crimping mechanism; 1001, driving block; 1002, rack; 1003, driven gear; 1004, driven shaft; 1005, belt assembly; 1006, turning shaft; 1007, support plate; 11, guiding block; 12, guiding groove; 13, positioning page plate; 14, fixing pin. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0039] Please refer to Figures 1 - 8 , the present invention provides the following technical solutions:

[0040] Embodiment 1

[0041] In order to solve the problems of single assembly method and poor assembly firmness in the existing glass curtain wall assembly structure during use, the following technical solutions are disclosed. A building energy-saving glass curtain wall assembly structure and an assembly method include a main glass curtain wall assembly frame 1, a first glass curtain wall 2, and a second glass curtain wall 3. An inner fixing plate 4 is fixed at the central position inside the main glass curtain wall assembly frame 1, and insertion slots 401 are provided on both sides of the top end of the inner fixing plate 4. Through holes are provided on both sides of the inner fixing plate 4, and the through holes and the insertion slots 401 penetrate each other. On one side of the main glass curtain wall assembly frame 1, there are a first glass curtain wall 2 and a second glass curtain wall 3. Assembly frame plates 5 are fixedly connected to one side of the first glass curtain wall 2 and the second glass curtain wall 3, and assembly fixing mechanisms 6 are provided between the assembly frame plates 5 and the main glass curtain wall assembly frame 1. The assembly fixing mechanism 6 includes push blocks 601, and the push blocks 601 are distributed on both sides of the inner fixing plate 4. The push blocks 601 are arranged inside the main glass curtain wall assembly frame 1. Moving blocks 602 are fixed to the bottom ends of the push blocks 601, and limiting columns 603 penetrate through the moving blocks 602. Compression springs 604 are connected to one side of each moving block 602, and the other ends of the compression springs 604 are connected to the inner wall of the main glass curtain wall assembly frame 1. One side of each push block 601 is inclined, and fixing components are provided on the other side of each push block 601. Power columns 606 are provided above the inclined surfaces of the push blocks 601, and the power columns 606 are fixed to the bottom ends of the assembly frame plates 5. One side of the bottom end of the power column 606 is inclined, and the inclined cutting surface of the power column 606 corresponds to the inclined cutting surface of the push block 601. The fixing component includes an assembly insertion plate 607 fixed to the bottom end of the assembly frame plate 5, and two fixing holes 608 are provided on one side of the assembly insertion plate 607. Two clamping blocks 610 are fixed inside each fixing hole 608. Locking rods 609 are clamped to one side of each clamping block 610, and the locking rods 609 are fixed to the outer sides of the push blocks 601. The cross-section of the clamping block 610 is trapezoidal, and a locking groove 605 with a trapezoidal cross-section is provided at one end of each locking rod 609. The locking rod 609 and the clamping block 610 are clamped to each other;

[0042] Specifically, please refer to Figure 1 , Figure 2 , Figure 3 ,Figure 4 , Figure 5 , in the use of this embodiment, an assembly frame plate 5 is bonded to the first glass curtain wall 2 and the second glass curtain wall 3 by using curtain wall structural glue. Then, the assembly insertion plate 607 on the assembly frame plate 5 is correspondingly inserted into the insertion slot 401 on the inner fixing plate 4 inside the main glass curtain wall assembly 1. During this process, the power column 606 is correspondingly inserted into the main glass curtain wall assembly 1, and the cutting slope on its outer side contacts the cutting slope of the pushing block 601, so as to push the pushing block 601 to move horizontally, and push the locking rod 609 to move synchronously. During the movement of the locking rod 609, the limiting column 603 is used for limiting and guiding, and the compression spring 604 is in a stretched state until the locking rod 609 is inserted into the fixing hole 608 on the assembly insertion plate 607, and the clamping block 610 is clamped with the locking groove 605 at the end of the locking rod 609, which can ensure the firmness of the assembly of the first glass curtain wall 2 and the second glass curtain wall 3, so that the first glass curtain wall 2 and the second glass curtain wall 3 are not prone to loosening and falling off during long-term use, improve the safety of the assembly of the first glass curtain wall 2 and the second glass curtain wall 3, and the assembly of the first glass curtain wall 2 and the second glass curtain wall 3 can effectively isolate the external heat conduction, reduce the air-conditioning energy consumption, and improve its energy-saving effect.

[0043] Embodiment 2

[0044] This embodiment is different from the first embodiment. By setting the fastening and crimping mechanism 10, it is possible to further fix and limit the position while assembling and sealing the first glass curtain wall 2 and the second glass curtain wall 3, so as to enhance the firmness of the assembly of the first glass curtain wall 2 and the second glass curtain wall 3. Therefore, the following technical solution is disclosed. A supporting bottom plate 8 is fixed on one side of the main frame 1 for glass curtain wall assembly. A moving groove 801 is provided at the top of the supporting bottom plate 8. Transmission cavities 802 are provided on both sides of the supporting bottom plate 8. Guide grooves 12 are opened on the inner walls of both sides of the moving groove 801. A fastening and crimping mechanism 10 is arranged inside the supporting bottom plate 8. The top of the fastening and crimping mechanism 10 is connected with a sealing strip plate 7. The sealing strip plate 7 is attached to the gap where the first glass curtain wall 2 and the second glass curtain wall 3 are assembled. Positioning page plates 13 are fixed on both sides of the sealing strip plate 7. Fixing pins 14 are threadedly connected inside the positioning page plates 13. One end of each fixing pin 14 extends to the top of the supporting bottom plate 8. The fastening and crimping mechanism 10 includes a driving block 1001 which is fixed to the bottom end of the sealing strip plate 7. A rack 1002 is fixed to the bottom end of the driving block 1001. The bottom end of the rack 1002 meshes with a driven gear 1003. A driven shaft 1004 passes through the inside of the driven gear 1003. Both ends of the driven shaft 1004 extend into the transmission cavity 802. Belt assemblies 1005 are sleeved on the outer sides of the driven shafts 1004. The other ends of the belt assemblies 1005 penetrate through a turning shaft 1006. Support plates 1007 are rotatably connected to both sides of the turning shaft 1006. The support plates 1007 are fixed to the top of the supporting bottom plate 8. Fastening pressing plates 9 are sleeved on the outer sides of the turning shafts 1006. A limiting rubber plate 901 is fixed to one side of each fastening pressing plate 9. The limiting rubber plates 901 are in close contact with the outer walls of the first glass curtain wall 2 and the second glass curtain wall 3. Among them, the belt assembly 1005 includes a driving wheel, a driven wheel and a transmission belt. The driving wheel is sleeved on the driven shaft 1004, the driven wheel is sleeved on the turning shaft 1006, and a transmission belt is connected between the driving wheel and the driven wheel. Guide blocks 11 are fixed on both sides of the driving block 1001. The guide blocks 11 slide inside the guide grooves 12. The sealing strip plate 7 is slidably connected to the supporting bottom plate 8 through the driving block 1001, the guide blocks 11 and the guide grooves 12;

[0045] For details, please refer to Figure 1 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8, when this embodiment is in use, the supporting bottom plate 8 is used to support the bottom of the assembled first glass curtain wall 2 and second glass curtain wall 3, increasing the wind resistance of the assembled first glass curtain wall 2 and second glass curtain wall 3, effectively resisting the impact of extreme weather such as strong winds on the first glass curtain wall 2 and second glass curtain wall 3. Then, the guiding block 11 is slid into the guiding groove 12, and the driving block 1001 slides in the moving groove 801, thereby pushing the sealing strip plate 7 to move back and forth until the sealing strip plate 7 is tightly pressed against the gap where the first glass curtain wall 2 and second glass curtain wall 3 are assembled, realizing the sealing of the assembly of the first glass curtain wall 2 and second glass curtain wall 3, effectively isolating the outside wind, water, air, noise, etc. During the movement of the driving block 1001, the rack 1002 moves synchronously and meshes with the driven gear 1003, causing the driven gear 1003 and the driven shaft 1004 to rotate. In cooperation with the belt assembly 1005, that is, under the combined action of the driving wheel, driven wheel, and transmission belt, the turning shaft 1006 rotates synchronously. During the rotation of the turning shaft 1006, the fastening pressing plate 9 is driven to turn, causing the limiting rubber plate 901 to press against the outer walls of the first glass curtain wall 2 and second glass curtain wall 3, and cooperating with the main frame 1 of the glass curtain wall assembly to achieve further limiting, thereby improving the firmness of the assembly of the first glass curtain wall 2 and second glass curtain wall 3 and making it not prone to loosening and falling off;

[0046] In order to better demonstrate the assembly method of the building energy-saving glass curtain wall assembly structure, in this embodiment, an assembly method for a building energy-saving glass curtain wall assembly structure includes the following steps:

[0047] The first step: Bond the assembly frame plate 5 to the backs of the first glass curtain wall 2 and second glass curtain wall 3 through curtain wall structural glue, and correspondingly insert the assembly insertion plate 607 into the insertion slot 401. During this process, the power column 606 is synchronously inserted into the interior of the main frame 1 of the glass curtain wall assembly. When the power column 606 is pushed downward, the inclined plane on its outer side contacts the inclined plane on the outer side of the pushing block 601, thereby pushing the pushing block 601 to move horizontally until the locking rod 609 is inserted into the fixing hole 608 on the assembly insertion plate 607 to fix and limit the assembly insertion plate 607 to ensure the firmness of its insertion, thereby completing the assembly of the first glass curtain wall 2 and second glass curtain wall 3, with convenient operation;

[0048] Step 2: Slide the guiding block 11 into the guiding groove 12, so that the driving block 1001 slides in the moving groove 801, and then the rack 1002 moves synchronously until the sealing strip plate 7 fits against the connecting gap between the first glass curtain wall 2 and the second glass curtain wall 3, thus realizing the sealing of the assembly gap, effectively isolating the outside wind, water, air, noise, etc., significantly improving the sealing performance of the first glass curtain wall 2 and the second glass curtain wall 3, ensuring the stability and comfort of the indoor environment. Then, fix the positioning page plate 13 with the fixing pin 14 to fix the position of the sealing strip plate 7 and ensure the sealing effect;

[0049] Step 3: During the movement of the rack 1002 in the moving groove 801, it meshes with the driven gear 1003, causing the driven gear 1003 and the driven shaft 1004 to rotate. Cooperating with the belt assembly 1005, that is, under the combined action of the driving wheel, the driven wheel, and the transmission belt, the turning shaft 1006 rotates synchronously. During the rotation of the turning shaft 1006, the fastening pressing plate 9 is driven to turn until the limiting rubber plate 901 fits against the outer walls of the first glass curtain wall 2 and the second glass curtain wall 3, realizing pressing and limiting, and further improving the firmness of the assembly of the first glass curtain wall 2 and the second glass curtain wall 3;

[0050] Step 4: The supporting bottom plate 8 is fixed at the bottom of the main frame 1 for glass curtain wall assembly. When the first glass curtain wall 2 and the second glass curtain wall 3 are assembled, the supporting bottom plate 8 can be used to support the assembled second glass curtain wall 3, which can effectively disperse and bear the weight and stress of the first glass curtain wall 2 and the second glass curtain wall 3, improving the safety in use.

[0051] Although the present invention 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 perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A building energy-saving glass curtain wall assembly structure, comprising a glass curtain wall assembly main frame (1), a first glass curtain wall (2), and a second glass curtain wall (3), wherein the first glass curtain wall (2) and the second glass curtain wall (3) are arranged on one side of the glass curtain wall assembly main frame (1); Features: One side of each of the first glass curtain wall (2) and the second glass curtain wall (3) is fixedly connected with an assembly frame plate (5), and an assembly fixing mechanism (6) is provided between the assembly frame plate (5) and the glass curtain wall assembly main frame (1), one side of the glass curtain wall assembly main frame (1) is fixed with a supporting base plate (8), and a moving groove (801) is provided at the top of the supporting base plate (8), transmission inner cavities (802) are provided on both sides of the supporting base plate (8), and guide grooves (801) are provided on both inner walls of the moving groove (801). A groove (12) is formed inside the supporting bottom plate (8), a fastening and crimping mechanism (10) is provided inside the supporting bottom plate (8), and a sealing strip (7) is connected to the top of the fastening and crimping mechanism (10), and the sealing strip (7) is attached to the gap where the first glass curtain wall (2) and the second glass curtain wall (3) are assembled, positioning leaf plates (13) are fixed on both sides of the sealing strip (7), and the positioning leaf plates (13) are threadedly connected inside with fixing pins (14), and one end of the fixing pins (14) extends to the top of the supporting bottom plate (8).

2. The energy-saving glass curtain wall assembly structure of a building according to claim 1, characterized in that: An inner fixing plate (4) is fixed at the center position inside the glass curtain wall assembly main frame (1), and both sides of the top of the inner fixing plate (4) are provided with plugging grooves (401), and both sides of the inner fixing plate (4) are provided with through holes, and the through holes and the plugging grooves (401) penetrate each other.

3. The building energy-saving glass curtain wall assembly structure according to claim 1, characterized in that: The assembly fixing mechanism (6) comprises a pushing block (601), and the pushing blocks (601) are distributed on both sides of the inner fixing plate (4), the pushing blocks (601) are arranged inside the glass curtain wall assembly main frame (1), the bottom end of each pushing block (601) is fixed with a moving block (602), and the inside of each moving block (602) is penetrated by a limiting column (603), one side of each moving block (602) is connected to a compression spring (604), and the other end of each compression spring (604) is connected to the inner wall of the glass curtain wall assembly main frame (1).

4. The energy-saving glass curtain wall assembly structure of a building according to claim 3 is characterized in that: One side of the pushing block (601) is inclined, and the other side of the pushing block (601) is provided with a fixing assembly. A power column (606) is provided above the inclined surface of the pushing block (601), and the power column (606) is fixed to the bottom end of the assembly frame plate (5). One side of the bottom end of the power column (606) is inclined, and the inclined surface of the power column (606) and the inclined surface of the pushing block (601) correspond to each other.

5. The energy-saving glass curtain wall assembly structure of a building according to claim 4, characterized in that: The fixing assembly comprises an assembly plug plate (607) fixed to the bottom end of the assembly frame plate (5), and two fixing holes (608) are provided on one side of the assembly plug plate (607), and two clamping blocks (610) are fixed inside the fixing holes (608), and a locking rod (609) is clamped on one side of the clamping blocks (610), and the locking rods (609) are fixed to the outer side of the pushing block (601).

6. The building energy-saving glass curtain wall assembly structure according to claim 5, characterized in that: The clamping block (610) has a trapezoidal cross section, and one end of the locking rod (609) is provided with a locking groove (605) with a trapezoidal cross section, and the locking rod (609) and the clamping block (610) are mutually clamped.

7. The building energy-saving glass curtain wall assembly structure according to claim 1, characterized in that: The fastening and crimping mechanism (10) comprises a driving block (1001), and the driving block (1001) is fixed to the bottom end of the sealing strip plate (7), a rack (1002) is fixed to the bottom end of the driving block (1001), and a driven gear (1003) is meshed at the bottom end of the rack (1002), and a driven shaft (1004) passes through the inside of the driven gear (1003).

8. The energy-saving glass curtain wall assembly structure of a building according to claim 7, characterized in that: Both ends of the driven shaft (1004) extend into the transmission inner cavity (802), the outer side of the driven shaft (1004) is sleeved with a belt assembly (1005), and the other end of the belt assembly (1005) is penetrated by a flip shaft (1006), both sides of the flip shaft (1006) are rotatably connected with support plates (1007), and the support plates (1007) are fixed to the top of the supporting bottom plate (8), the outer side of the flip shaft (1006) is sleeved with a fastening plate (9), and a limiting rubber plate (901) is fixed on one side of the fastening plate (9), and the limiting rubber plate (901) is tightly fitted with the outer walls of the first glass curtain wall (2) and the second glass curtain wall (3); The belt assembly (1005) comprises a driving wheel, a driven wheel and a transmission belt, wherein the driving wheel is sleeved on the driven shaft (1004), the driven wheel is sleeved on the flip shaft (1006), and a transmission belt is connected between the driving wheel and the driven wheel.

9. The building energy-saving glass curtain wall assembly structure according to claim 7, characterized in that: Guide blocks (11) are fixed on both sides of the driving block (1001), and the guide blocks (11) slide inside the guide grooves (12). The sealing strip plate (7) is slidably connected to the supporting base plate (8) through the driving block (1001), the guide blocks (11) and the guide grooves (12).

10. An assembly method for the building energy-saving glass curtain wall assembly structure according to claim 1, characterized in that: The steps include: S1: The assembly frame plate (5) is bonded to the back of the first glass curtain wall (2) and the second glass curtain wall (3) by using curtain wall structural adhesive, and the assembly plug plate (607) is correspondingly inserted into the plug slot (401). During this process, the power column (606) is synchronously inserted into the interior of the glass curtain wall assembly main frame (1). During the downward pushing process of the power column (606), the outer chamfered surface of the power column (606) contacts the outer chamfered surface of the push block (601), thereby pushing the push block (601) to move horizontally until the locking rod (609) is inserted into the fixing hole (608) on the assembly plug plate (607), and the assembly plug plate (607) is fixed and limited to ensure the firmness of its plugging, thereby completing the assembly of the first glass curtain wall (2) and the second glass curtain wall (3), and the operation is convenient; S2: Slide the guide block (11) into the guide groove (12), so that the drive block (1001) slides in the movable groove (801), and then the rack (1002) moves synchronously until the sealing strip plate (7) is fitted with the connection gap between the first glass curtain wall (2) and the second glass curtain wall (3), so as to achieve sealing at the assembly gap, effectively isolate the wind, water, air and noise from the outside, significantly improve the sealing performance of the first glass curtain wall (2) and the second glass curtain wall (3), ensure the stability and comfort of the indoor environment, and then use the fixing pin (14) to fix the positioning page plate (13) to achieve the position fixing of the sealing strip plate (7), so as to ensure the sealing effect; S3: The rack (1002) meshes with the driven gear (1003) during the movement in the movable groove (801), so that the driven gear (1003) and the driven shaft (1004) perform rotational motion, and cooperate with the belt assembly (1005), that is, the turning shaft (1006) rotates synchronously under the cooperation of the driving wheel, the driven wheel and the transmission belt. During the rotation of the turning shaft (1006), the fastening pressing plate (9) is driven to perform a turning motion until the limiting rubber plate (901) is in contact with the outer wall of the first glass curtain wall (2) and the second glass curtain wall (3), so as to achieve the pressing and limiting motion, and further improve the firmness of the assembly of the first glass curtain wall (2) and the second glass curtain wall (3); S4: A supporting base plate (8) is fixed at the bottom of the glass curtain wall assembly main frame (1), so that when the first glass curtain wall (2) and the second glass curtain wall (3) are assembled, the supporting base plate (8) can be used to support the assembled second glass curtain wall (3), thereby effectively dispersing and bearing the weight and stress of the first glass curtain wall (2) and the second glass curtain wall (3), thereby improving the safety of use.

Citation Information

Patent Citations

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    CN109057110A

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    CN118029593A