Glass curtain wall with stand column structure

By designing a composite column structure and protective panels, the problem of insufficient rigidity in the glass curtain wall column structure is solved, improving the rigidity and strength of the glass curtain wall, enhancing safety and thermal insulation performance, and extending its service life.

CN223535933UActive Publication Date: 2025-11-11SHENZHEN PASON ALUMINUM IND SCI & TECH CO LTD
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Patent Information

Application Number
CN202422987040.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-11-11
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

The existing glass curtain wall column structure lacks rigidity, resulting in instability under external forces such as wind pressure and earthquakes, causing severe deformation, reducing service life and safety.

Method used

The composite column structure includes a column and a core, with a protective plate and a thick nylon sheet in the middle. The bottom of the column has a fixing component, the inside of the core, the surface of the protective plate has an adhesive layer, and the outer surface of the thick nylon sheet has an anti-slip layer, which enhances the stability and rigidity of the connection.

Benefits of technology

It improves the rigidity and strength of glass curtain walls, reduces deformation, extends service life, enhances safety, improves heat insulation and sealing performance, reduces corrosion risk, and improves overall stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223535933U_ABST
Patent Text Reader

Abstract

The glass curtain wall with the stand column structure comprises a stand column, a thick nylon sheet, a protection sheet and an insertion core, the bottom face of the stand column is provided with a fixing piece extending outwards, the fixing piece is used for fixing glass, the insertion core is located in the stand column, and the protection sheet is arranged between the insertion core and the stand column. The surface of the protection sheet is provided with an adhesive layer used for bonding the stand column and the insertion core, the thickness of the protection sheet close to the bottom face of the stand column is larger than that of the protection sheet close to the side face of the stand column, the thick nylon sheet is connected to the side face of the stand column, the face, away from the side face of the stand column, of the thick nylon sheet is connected with the cross beam, and the outer surface of the thick nylon sheet is provided with an anti-skid layer. The safety of the glass curtain wall is improved.
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Description

Technical Field

[0001] This application relates to the field of curtain wall technology, specifically to a glass curtain wall with a column structure. Background Technology

[0002] Glass curtain walls are one of the most commonly used forms of building curtain wall systems. Existing glass curtain walls are usually fixed with a column structure. However, the existing column structure is not rigid enough, which makes the glass curtain wall unstable when subjected to external forces such as wind pressure and earthquakes, resulting in serious deformation. This leads to a reduction in the service life of the glass curtain wall and a decrease in its safety. Utility Model Content

[0003] In view of this, this application provides a glass curtain wall with a column structure to improve the safety of the glass curtain wall.

[0004] This application provides a glass curtain wall with a column structure, including columns, thick nylon sheets, protective sheets, and inserts. The bottom surface of the column has a fixing member extending outward for fixing the glass. The insert is located inside the column. The protective sheet is disposed between the insert and the column. The surface of the protective sheet is provided with an adhesive layer for bonding the column and the insert. The thickness of the protective sheet located near the bottom surface of the column is greater than the thickness of the protective sheet located near the side surface of the column. The thick nylon sheet is connected to the side surface of the column. The side of the thick nylon sheet facing away from the side surface of the column is connected to a crossbeam. The outer surface of the thick nylon sheet has an anti-slip layer.

[0005] In some embodiments, the protective sheet includes a first protective layer, a second protective layer, a third protective layer, and a fourth protective layer. The bottom surface, two side surfaces, and the top surface of the insert are respectively disposed corresponding to the bottom surface, two side surfaces, and the top surface of the post. The first protective layer is disposed between the bottom surface of the insert and the bottom surface of the post. The second and third protective layers are respectively located between the two side surfaces of the insert and the two side surfaces of the post. The fourth protective layer is disposed between the top surface of the insert and the top surface of the post. The thick nylon sheet is disposed opposite to the second and third protective layers. The thickness of the first and fourth protective layers is greater than the thickness of the second and third protective layers, and the length of the second and third protective layers is greater than the length of the first and fourth protective layers.

[0006] In some embodiments, the cross-sectional shape of the column has a honeycomb structure.

[0007] In some embodiments, the outer sides of the first protective layer, the second protective layer, the third protective layer, and the fourth protective layer are each provided with an adhesive layer, which is used to fix the post to the insert.

[0008] In some embodiments, the glass curtain wall further includes at least two spaced fasteners that pass sequentially from one side of the column through a thick nylon sheet, one side of the column, the second protective layer, one side of the insert, the other side of the insert, the third protective layer, the other side of the column, and another thick nylon sheet, and are inserted into the crossbeam.

[0009] In some embodiments, the insert includes a plurality of reinforcing cores, the diameters of which decrease sequentially from the direction of the insert near the post toward the direction of the insert away from the post, and a protective sheet is provided between every two adjacent reinforcing cores.

[0010] In some embodiments, a sealing strip is provided between the thick nylon sheet and the crossbeam.

[0011] In some embodiments, a damping layer is provided between the thick nylon sheet and the crossbeam, and the elastic modulus of the damping layer is greater than that of the thick nylon sheet.

[0012] In some embodiments, the fastener includes a first fixing part, a second fixing part, and a third fixing part that extend in the same direction and are spaced apart. The first fixing part and the third fixing part are respectively located on both sides of the second fixing part. The end of the second fixing part away from the insert is connected to the decorative component. The first fixing part and the third fixing part form a clamping opening with the decorative component. The clamping opening is used to fix the glass.

[0013] In some embodiments, the glass curtain wall further includes an adapter connected to the first fixing portion and the end of the third fixing portion opposite to the insert to form the clamping opening with the decorative assembly.

[0014] In some embodiments, the decorative component includes a clamping component and a cover component spaced apart. The cover component is located on the side of the clamping component away from the column. The clamping component forms the clamping opening between itself, the first fixing part, and the third fixing part. The clamping component and the cover component are connected by a steel connector, and the steel connector is connected to the second fixing part to connect the decorative component to the column.

[0015] This application provides a glass curtain wall with a column structure, including columns, thick nylon sheets, protective sheets, and inserts. The bottom surface of the column has a fixing member extending outward for fixing the glass. The insert is located inside the column. The protective sheet is disposed between the insert and the column. The surface of the protective sheet is provided with an adhesive layer for bonding the column and the insert. The thickness of the protective sheet located near the bottom surface of the column is greater than the thickness of the protective sheet located near the side surface of the column. The thick nylon sheet is connected to the side surface of the column. The side of the thick nylon sheet facing away from the side surface of the column is connected to a crossbeam. The outer surface of the thick nylon sheet has an anti-slip layer to improve the safety of the glass curtain wall. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a structural schematic diagram of the glass curtain wall provided in this application;

[0018] Figure 2 yes Figure 1 An enlarged structural diagram of the glass curtain wall at point A.

[0019] Figure label:

[0020] 10. Glass curtain wall; 100. Column; 110. First fixing part; 120. Second fixing part; 130. Third fixing part; 200. Thick nylon sheet; 300. Protective sheet; 310. First protective layer; 320. Second protective layer; 330. Third protective layer; 340. Fourth protective layer; 400. Insert; 500. Fastener; 600. Adapter; 700. Clamping assembly; 800. Cover assembly; 900. Steel connector; 1000. Horizontal beam. Detailed Implementation

[0021] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application. In the absence of conflict, the following embodiments and their technical features can be combined with each other.

[0022] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified. In the description of this application, "several" means at least one, such as one, two, etc., unless otherwise explicitly specified.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items. The terms "connection," "electrical connection," and "electrical link" as used herein include any direct and indirect electrical or structural connection means. Therefore, if a first device is described herein as coupled / connected / electrically connected to a second device, it means that the first device can be directly electrically / structurally connected to the second device, or indirectly electrically / structurally connected to the second device through other means or connection methods.

[0024] This application provides a glass curtain wall with a column structure, including a column, a thick nylon sheet, a protective sheet, and a core. The bottom surface of the column has a fastener extending outward for fixing the glass. The core is located inside the column. The protective sheet is disposed between the core and the column. The surface of the protective sheet is provided with an adhesive layer for bonding the column and the core. The thickness of the protective sheet located near the bottom surface of the column is greater than the thickness of the protective sheet located near the side surface of the column. The thick nylon sheet is connected to the side surface of the column. The side of the thick nylon sheet facing away from the side surface of the column is connected to a crossbeam. The outer surface of the thick nylon sheet has an anti-slip layer.

[0025] In this application, the column structure is composed of columns and inserts inserted into the columns, transforming the column structure from a single structure into a composite structure. A protective sheet is installed between the inserts and the columns to improve the rigidity and strength of the entire glass curtain wall and reduce the possibility of damage between the columns and inserts, thereby improving the safety and thermal insulation performance of the glass curtain wall. At the same time, an anti-slip layer is installed on the outer surface of the thick nylon sheet to increase the friction with the contact surfaces of the columns and beams, further preventing the risk of slippage or loosening, thereby further improving the connection stability between the two and the sealing effect of the glass curtain wall, thus further improving the safety of the glass curtain wall.

[0026] Please see Figure 1 and Figure 2 , Figure 1 This is a structural schematic diagram of the glass curtain wall provided in this application; Figure 2 yes Figure 1An enlarged structural diagram of the glass curtain wall at point A is shown in the image. This application provides a glass curtain wall 10 with a column 100 structure, including a column 100, a thick nylon sheet 200, a protective sheet 300, and a core 400. The bottom surface of the column 100 has a fixing member extending outward for fixing the glass. The core 400 is located inside the column 100. The protective sheet 300 is disposed between the core 400 and the column 100. The surface of the protective sheet 300 is provided with an adhesive layer for bonding the column 100 and the core 400. The thickness of the protective sheet 300 located near the bottom surface of the column 100 is greater than the thickness of the protective sheet 300 located near the side surface of the column 100. The thick nylon sheet 200 is connected to the side surface of the column 100. The side of the thick nylon sheet 200 facing away from the side surface of the column 100 is connected to a crossbeam 1000. The outer surface of the thick nylon sheet 200 has an anti-slip layer. Specifically, the column 100 includes a bottom surface, a top surface opposite to the bottom surface, and two side surfaces connecting the bottom and top surfaces. The bottom surface of the column 100 has a fastener extending outward for fixing the glass. The column 100 has a square planar structure and is made of aluminum alloy or steel. The insert 400 has a matching square planar structure, with a diameter smaller than that of the column 100. The insert 400 is located inside the column 100 and has a bottom surface, a top surface opposite to the bottom surface, and two side surfaces connecting the bottom and top surfaces. The bottom surface, side surfaces, and top surface of the insert 400 correspond to the bottom surface, side surfaces, and top surface of the column 100, respectively. The tensile strength of the insert 400 is 270-3. The core 400 has a strength of 10 MPa and is made of high-strength aluminum alloy or hot-dip galvanized steel. The coefficient of thermal expansion of the core 400 differs from that of the column 100, meaning the materials forming the core 400 and the column 100 are different. The core 400 is located inside the column 100. The protective sheet 300 has a certain degree of elasticity and toughness and is positioned between the core 400 and the column 100. The surface of the protective sheet 300 has an adhesive layer for bonding the column 100 and the core 400. The thickness of the protective sheet 300 located near the bottom of the column 100 is greater than that located near the side of the column 100, further reducing the risk of corrosion, wear, or stress concentration due to direct contact and improving thermal insulation performance. Optionally, the protective sheet 300 can be a polyvinyl chloride layer, meaning it is formed of polyvinyl chloride. The adhesive layer can be polyurethane adhesive, acrylic adhesive, epoxy resin adhesive, or cyanoacrylate adhesive, but is not limited to these. The thick nylon sheet 200 is connected to the side of the column 100. The side of the thick nylon sheet 200 facing away from the side of the column 100 is connected to the crossbeam 1000. The outer surface of the thick nylon sheet 200 has an anti-slip layer. The length of the thick nylon sheet 200 is less than the length of the column 100 and the insert 400.Optionally, the anti-slip layer can be a polyurethane (PU) coating, a rubber coating, a PTFE coating (polytetrafluoroethylene) coating, or a silicone coating, but is not limited to these.

[0027] In this application, the column 100 structure is composed of the column 100 and the insert 400 inserted into the column 100, transforming the column 100 structure from a single structure into a composite structure. By having the column 100 and the insert 400 share the stress and pressure, the bending and shear resistance of the column 100 structure is enhanced, thereby improving the stiffness and strength of the entire glass curtain wall 10. This makes the glass curtain wall 10 more stable under external forces such as wind pressure and earthquakes, reducing deformation and extending the structural service life. Simultaneously, it can bear greater loads, thus reducing the impact of loads on the structure. The buckling and deformation caused by this structure improves the safety of the glass curtain wall 10. In addition, the insertion core 400 inside the column 100 can effectively distribute the external force to the entire inner wall of the structure, reduce the stress concentration problem caused by single-point force, and reduce the risk of damage or breakage of the column 100 due to uneven force. Furthermore, the thermal expansion coefficients of the insertion core 400 and the column 100 are set to be different to offset or reduce the difference in thermal expansion and contraction caused by temperature changes, and avoid cracking, warping and other problems caused by temperature difference changes in the glass curtain wall 10, thereby further improving the safety of the glass curtain wall 10.

[0028] In this application, by providing a protective plate 300 between the insert 400 and the column 100, corrosion, wear, or stress concentration caused by direct contact between the column 100 and the insert 400 are avoided. Simultaneously, it blocks heat transfer between them, reducing the thermal bridging effect and further improving the safety and thermal insulation performance of the glass curtain wall 10. Furthermore, providing the protective plate 300 between the insert 400 and the column 100 improves the sealing effect, preventing moisture and air penetration and ensuring that the connection between the column 100 and the insert 400 is leak-proof, thus ensuring the waterproof performance of the glass curtain wall 10. At the same time, through its waterproofing and isolation functions, the protective plate 300 can reduce the impact on the column 100. The internal structure of column 100 comes into contact with the external environment (such as moisture, oxygen in the air, and pollutants), thereby slowing down the corrosion and aging of the metal parts and further improving the safety of glass curtain wall 10. Because the protective plate 300 has a certain degree of elasticity and toughness, it can absorb a certain amount of vibration and impact, reduce the relative movement between column 100 and insert 400, reduce the impact of vibration caused by factors such as wind, earthquake, or temperature difference on glass curtain wall 10, and improve the sound insulation performance of glass curtain wall 10. The setting of protective plate 300 can play a buffering role, further reduce stress concentration, further extend the service life of the system, and further improve the safety of glass curtain wall 10.

[0029] In this application, by providing an adhesive layer on the outer surface of the protective sheet 300, the connection stability between the column 100 and the insert 400 is improved, reducing the risk of relative movement between the two, thereby further improving the sealing effect, preventing moisture and air penetration, and thus ensuring the waterproof and sound insulation performance of the glass curtain wall 10. At the same time, it further slows down the corrosion and aging of the metal parts, thereby further improving the safety of the glass curtain wall 10.

[0030] In this application, by providing a thick nylon sheet 200 between the column 100 and the beam 1000, corrosion, wear, or stress concentration caused by direct contact between the column 100 and the beam 1000 are avoided, and the thermal bridging effect is reduced, thereby further improving the safety and thermal insulation performance of the glass curtain wall 10. In addition, providing a thick nylon sheet 200 between the insert 400 and the column 100 can further improve the sealing effect, further prevent moisture and air penetration, thereby ensuring the waterproof and sound insulation performance of the glass curtain wall 10. At the same time, it can absorb more vibration and impact, further reduce stress concentration, and further extend the service life of the system, thereby further improving the safety of the glass curtain wall 10.

[0031] In this application, by providing an anti-slip layer on the outer surface of the thick nylon sheet 200, the friction between the contact surfaces with the column 100 and the beam 1000 is increased, further preventing the risk of slippage or loosening, thereby further improving the connection stability between the two and improving the sealing effect of the glass curtain wall 10, thus further improving the safety of the glass curtain wall 10.

[0032] In one embodiment, the protective sheet 300 includes a first protective layer 310, a second protective layer 320, a third protective layer 330, and a fourth protective layer 340. The bottom surface, two side surfaces, and the top surface of the insert 400 are respectively disposed corresponding to the bottom surface, two side surfaces, and the top surface of the post 100. The first protective layer 310 is disposed between the bottom surface of the insert 400 and the bottom surface of the post 100. The second protective layer 320 and the third protective layer 330 are respectively located between the two side surfaces of the insert 400 and the two side surfaces of the post 100. The fourth protective layer 340 is disposed between the top surface of the insert 400 and the top surface of the post 100. The thick nylon sheet 200 is disposed opposite to the second protective layer 320 and the third protective layer 330. The thickness of the first protective layer 310 and the fourth protective layer 340 is greater than the thickness of the second protective layer 320 and the third protective layer 330, and the length of the second protective layer 320 and the third protective layer 330 is greater than the length of the first protective layer 310 and the fourth protective layer 340, so as to further avoid corrosion, wear or stress concentration caused by direct contact between the two, further improve the safety of the glass curtain wall 10, and at the same time improve the heat insulation performance, sealing performance and sound insulation performance of the glass curtain wall 10.

[0033] In one embodiment, the cross-sectional shape of the column 100 has a honeycomb structure, which further improves the bending and torsional resistance of the insert 400 while reducing its weight.

[0034] In one embodiment, the outer sides of the first protective layer 310, the second protective layer 320, the third protective layer 330 and the fourth protective layer 340 are all provided with adhesive layers. The adhesive layers are used to fix the column 100 and the insert 400 to further improve the connection stability between the column 100 and the insert 400, and at the same time improve the heat insulation performance, sealing performance and sound insulation performance of the glass curtain wall 10.

[0035] In one embodiment, the glass curtain wall 10 further includes at least two spaced fasteners 500. The fasteners 500 pass sequentially from one side of the column 100 through a thick nylon sheet 200, one side of the column 100, a second protective layer 320, one side of the insert 400, the other side of the insert 400, a third protective layer 330, the other side of the column 100, and another thick nylon sheet 200, and are inserted into the crossbeam 1000. That is, the fasteners 500 not only pass through the entire insert 400 and the column 100, but also through the third protective layer 330 and the second protective layer 320 located between the column 100 and the insert 400, as well as the thick nylon sheet 200 located on the outside of the column 100, and are inserted into the crossbeams 1000 located on both sides of the column 100, so as to further improve the connection stability between the column 100 structure and the crossbeam 1000, and at the same time improve the heat insulation performance, sealing performance and sound insulation performance of the glass curtain wall 10.

[0036] In another embodiment, the insert 400 includes multiple reinforcing cores. The diameters of the multiple reinforcing cores decrease sequentially from the direction from the insert 400 near the column 100 toward the direction from the insert 400 away from the column 100. A protective plate 300 is provided between each pair of adjacent reinforcing cores to further improve the rigidity and strength of the entire glass curtain wall 10. At the same time, it further reduces buckling and deformation caused by load, and further reduces the risk of damage or breakage of the column 100 due to uneven stress. It also avoids cracking, warping and other problems caused by temperature differences in the glass curtain wall 10, thereby further improving the safety of the glass curtain wall 10.

[0037] In another embodiment, a sealing strip is provided between the thick nylon sheet 200 and the crossbeam 1000 to further prevent the risk of slippage or loosening, thereby further improving the connection stability between the two and the sealing effect of the glass curtain wall 10, thereby further improving the safety of the glass curtain wall 10.

[0038] In another embodiment, a damping layer is provided between the thick nylon sheet 200 and the crossbeam 1000. The elastic modulus of the damping layer is greater than that of the thick nylon sheet 200, so that it can absorb more vibration and impact force and further reduce stress concentration, thereby further improving the safety, waterproof performance and sound insulation performance of the glass curtain wall 10.

[0039] In one embodiment, the fastener includes a first fixing part 110, a second fixing part 120, and a third fixing part 130 that extend in the same direction and are spaced apart. The first fixing part 110 and the third fixing part 130 are respectively located on both sides of the second fixing part 120. The end of the second fixing part 120 facing away from the insert 400 is connected to the decorative component. The first fixing part 110 and the third fixing part 130 form a clamping opening with the decorative component. The clamping opening is used to fix the glass, so as to facilitate the assembly and disassembly of the fixed glass. At the same time, it improves the stability of the fixed glass, thereby further improving the safety of the glass curtain wall 10.

[0040] In one embodiment, the glass curtain wall 10 further includes an adapter 600, which is connected to the end of the first fixing part 110 and the third fixing part 130 away from the insert 400 to form a clamping opening with the decorative component, thereby improving the stability of the fixed glass and further improving the safety of the glass curtain wall 10.

[0041] In one embodiment, the decorative component includes a clamping component 700 and a cover component 800 spaced apart. The cover component 800 is located on the side of the clamping component 700 away from the column 100. The clamping component 700 forms a clamping opening with the first fixing part 110 and the third fixing part 130. The clamping component 700 and the cover component 800 are connected by a steel connector 900, and the steel connector 900 is connected to the second fixing part 120 to connect the decorative component to the column 100. The clamping component 700 is used to fix and connect the glass to ensure structural stability and sealing. The cover component 800 is used to decorate, cover and protect the connection points of the glass curtain wall 10, further improving the waterproof, dustproof and corrosion-resistant performance, while also enhancing the aesthetics.

[0042] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, such as the combination of technical features between embodiments, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A glass curtain wall with a column structure, characterized in that, The device includes a column, a thick nylon sheet, a protective sheet, and a insert. The bottom surface of the column has a fixing member extending outward for fixing the glass. The insert is located inside the column. The protective sheet is disposed between the insert and the column. The surface of the protective sheet is provided with an adhesive layer for bonding the column and the insert. The thickness of the protective sheet located near the bottom surface of the column is greater than the thickness of the protective sheet located near the side surface of the column. The thick nylon sheet is connected to the side surface of the column. The side of the thick nylon sheet facing away from the side surface of the column is connected to a crossbeam. The outer surface of the thick nylon sheet has an anti-slip layer.

2. The glass curtain wall with a column structure according to claim 1, characterized in that, The protective sheet includes a first protective layer, a second protective layer, a third protective layer, and a fourth protective layer. The bottom surface, two side surfaces, and the top surface of the insert are respectively disposed corresponding to the bottom surface, two side surfaces, and the top surface of the post. The first protective layer is disposed between the bottom surface of the insert and the bottom surface of the post. The second and third protective layers are respectively located between the two side surfaces of the insert and the two side surfaces of the post. The fourth protective layer is disposed between the top surface of the insert and the top surface of the post. The thick nylon sheet is disposed opposite to the second and third protective layers. The thickness of the first and fourth protective layers is greater than the thickness of the second and third protective layers, and the length of the second and third protective layers is greater than the length of the first and fourth protective layers.

3. The glass curtain wall with a column structure according to claim 1, characterized in that, The cross-sectional shape of the column has a honeycomb structure.

4. The glass curtain wall with a column structure according to claim 2, characterized in that, The outer sides of the first protective layer, the second protective layer, the third protective layer, and the fourth protective layer are all provided with adhesive layers, which are used to fix the column to the insert.

5. The glass curtain wall with a column structure according to claim 2, characterized in that, The glass curtain wall also includes at least two spaced fasteners, which pass sequentially from one side of the column through a thick nylon sheet, one side of the column, the second protective layer, one side of the insert, the other side of the insert, the third protective layer, the other side of the column, and another thick nylon sheet, and are inserted into the crossbeam.

6. The glass curtain wall with a column structure according to claim 1, characterized in that, The insert includes multiple reinforcing cores. The diameters of the multiple reinforcing cores decrease sequentially from the direction of the insert near the post to the direction of the insert away from the post. A protective plate is provided between every two adjacent reinforcing cores.

7. The glass curtain wall with a column structure according to claim 1, characterized in that, A damping layer is provided between the thick nylon sheet and the crossbeam, and the elastic modulus of the damping layer is greater than that of the thick nylon sheet.

8. The glass curtain wall with a column structure according to claim 1, characterized in that, The fastener includes a first fixing part, a second fixing part, and a third fixing part that extend in the same direction and are spaced apart. The first fixing part and the third fixing part are located on both sides of the second fixing part. The end of the second fixing part away from the insert is connected to the decorative component. The first fixing part and the third fixing part form a clamping opening with the decorative component. The clamping opening is used to fix the glass.

9. The glass curtain wall with a column structure according to claim 8, characterized in that, The glass curtain wall also includes an adapter, which is connected to the end of the first fixing part and the third fixing part away from the insert to form the clamping opening with the decorative component.

10. The glass curtain wall with a column structure according to claim 8, characterized in that, The decorative component includes a clamping component and a cover component spaced apart. The cover component is located on the side of the clamping component away from the column. The clamping component forms the clamping opening between itself, the first fixing part, and the third fixing part. The clamping component and the cover component are connected by a steel connector, and the steel connector is connected to the second fixing part to connect the decorative component to the column.