Floor-standing mounting structure of glass curtain wall

By integrating the stainless steel channel with the glass panel and using silicone sealant, the problems of gaps and stress concentration in traditional glass curtain walls under temperature changes and material differences are solved, achieving high stability and sealing, and ensuring safety and waterproofing.

CN224549436UActive Publication Date: 2026-07-24SUZHOU GOLD MANTIS CURTAIN WALL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU GOLD MANTIS CURTAIN WALL CO LTD
Filing Date
2025-08-15
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Traditional glass curtain wall installation structures have defects in terms of temperature changes, differences in the thermal expansion coefficients of materials, and resistance to lateral forces, resulting in gaps between the glass and the base, stress concentration, and insufficient resistance to lateral forces, which affect safety and sealing.

Method used

The system employs a floor-mounted installation structure consisting of a stainless steel channel, glass panel, transition steel plate, and concrete base. The stainless steel channel and glass panel are integrated using composite mortar and sealed with silicone sealant to enhance overall stability and resistance to deformation.

Benefits of technology

It improves the overall stability and sealing of the glass curtain wall, prevents gaps, ensures that it is not easily displaced under strong winds or earthquake loads, guarantees safety, and prevents rainwater leakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a floor type mounting structure of glass curtain wall relates to glass curtain wall technical field contains stainless steel groove, glass panel, switching steel sheet and concrete base, stainless steel groove passes through indoor terrace lengthways, and the top of stainless steel groove is flush with indoor terrace, switching steel sheet has two, and is located stainless steel groove's both sides respectively, and stainless steel groove is fixed and installed on concrete base through two switching steel sheets, stainless steel groove is U -shaped, and the lower end of glass panel is embedded in stainless steel groove, and the both sides and bottom of glass panel are all provided with flexible pad in stainless steel groove inner wall contact position, and the whole of the whole structure and stability are improved to the whole safety of the guarantee under the strong wind or earthquake load, and it is not easy to displace, and the whole safety is guaranteed, and the sealing of the connecting position is carried out to the silicone sealant, effectively avoid the generation of gap, improve the leakproofness, prevent rainwater seepage.
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Description

Technical Field

[0001] This utility model relates to a floor-mounted installation structure for glass curtain walls, belonging to the field of glass curtain wall technology. Background Technology

[0002] In building curtain wall engineering, the stability, sealing, and durability of the connection between glass and the foundation structure are key technical challenges. Traditional curtain wall glass installation often uses bolt fixing or silicone sealing, which has the following drawbacks: the bottom fixing structure is prone to deformation due to temperature changes, leading to gaps between the glass and the base and causing rainwater leakage; when the glass is in direct contact with the metal connectors, the difference in the thermal expansion coefficients of the materials can easily cause stress concentration under long-term stress, resulting in glass cracking; in addition, the existing installation structure has weak lateral force resistance and is prone to displacement under strong winds or seismic loads, affecting overall safety. Therefore, there is an urgent need for an installation structure that can achieve a tight connection between the glass, metal channel, and concrete base, while also possessing sealing, deformation resistance, and overall load-bearing performance. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a floor-mounted installation structure for glass curtain walls.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a floor-mounted installation structure for a glass curtain wall, comprising a stainless steel channel, a glass panel, a transition steel plate, and a concrete base; the stainless steel channel extends longitudinally through the indoor floor, and the top of the stainless steel channel is flush with the indoor floor; there are two transition steel plates, located on both sides of the stainless steel channel, and the stainless steel channel is fixedly installed on the concrete base by the two transition steel plates; the stainless steel channel is U-shaped, the lower end of the glass panel is embedded in the stainless steel channel, and flexible pads are provided at the contact points between the sides and bottom of the glass panel and the inner wall of the stainless steel channel; composite mortar is injected into the stainless steel channel to make the stainless steel channel and the glass panel a whole.

[0005] Preferably, the bottom of the stainless steel tank is provided with a grouting hole, through which composite mortar is injected into the stainless steel tank.

[0006] Preferably, the adapter steel plate is fixed to the stainless steel groove by stainless steel bolts, and a rigid gasket is provided between the stainless steel groove and the adapter steel plate.

[0007] Preferably, silicone sealant is applied to the contact area between the top of the stainless steel groove and the glass panel, and the top of the silicone sealant is flush with the indoor floor.

[0008] Preferably, the outer sides of both transition steel plates are provided with insulating rock wool, and the insulating rock wool on the outer sides of the two transition steel plates is symmetrically distributed.

[0009] Preferably, a passivated aluminum plate is fixedly installed on the outer side of the thermal insulation rock wool.

[0010] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art:

[0011] This utility model provides a floor-mounted installation structure for a glass curtain wall. By using composite mortar to integrate the stainless steel groove and the glass panel, the integrity and stability of the entire structure are improved. It is less prone to displacement under strong winds or earthquake loads, ensuring overall safety. At the same time, silicone sealant is used to seal the connection points, effectively preventing gaps, improving sealing performance, and preventing rainwater leakage. Attached Figure Description

[0012] The technical solution of this utility model will be further described below with reference to the accompanying drawings:

[0013] Appendix Figure 1 This is a vertical sectional view of a floor-mounted installation structure for a glass curtain wall according to the present invention.

[0014] Appendix Figure 2 For the appendix Figure 1 Enlarged view of point A in the middle.

[0015] In the diagram: 1. Stainless steel channel; 11. Grouting hole; 2. Glass panel; 3. Adapter steel plate; 4. Concrete base; 5. Indoor floor; 6. Flexible pad; 7. Stainless steel bolt; 8. Rigid gasket; 9. Silicone sealant; 10. Thermal insulation rock wool; 101. Passivated aluminum plate. Detailed Implementation

[0016] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0017] As attached Figure 1-2 As shown, the floor-mounted installation structure of the glass curtain wall of this utility model includes a stainless steel channel 1, a glass panel 2, a transition steel plate 3, and a concrete base 4.

[0018] The stainless steel channel 1 runs longitudinally through the indoor floor 5, and the top of the stainless steel channel 1 is flush with the indoor floor 5; this ensures the flatness of the indoor floor and avoids affecting people's walking or the placement of items due to the protrusion of the stainless steel channel 1; there are two transition steel plates 3, which are located on both sides of the stainless steel channel 1. The stainless steel channel 1 is fixedly installed on the concrete base 4 through the two transition steel plates 3, so as to transfer the force borne by the stainless steel channel 1 to the concrete base 4 and improve the stability of the entire installation structure.

[0019] Specifically, the adapter steel plate 3 is fixed to the stainless steel channel 1 by stainless steel bolts 7. The use of stainless steel bolts 7 can prevent the bolts from rusting and ensure the firmness and durability of the connection. At the same time, a hard shim 8 is provided between the stainless steel channel 1 and the adapter steel plate 3. The hard shim 8 can reduce the direct friction between the stainless steel channel 1 and the adapter steel plate 3, avoid damage to the components caused by friction, and also play a certain buffering role, making the connection tighter.

[0020] The stainless steel channel 1 is U-shaped, and the lower end of the glass panel 2 is embedded in the stainless steel channel 1. Flexible pads 6 are provided at the contact positions between the glass panel 2 and the inner wall of the stainless steel channel 1 on both sides and the bottom. The flexible pads 6 have good elasticity and buffering performance, which can avoid hard contact between the glass panel 2 and the stainless steel channel 1, reduce stress concentration caused by the difference in materials and thermal expansion coefficients, and thus reduce the risk of cracking of the glass panel 2.

[0021] Composite mortar is injected into the stainless steel trough 1 to make the stainless steel trough 1 and the glass panel 2 become a whole. In this embodiment, the composite mortar is an ultra-high performance injection type composite mortar, which has high strength and adhesion, and can firmly bond the stainless steel trough 1 and the glass panel 2 together, thereby improving the integrity and load-bearing capacity of the whole structure.

[0022] Furthermore, the bottom of the stainless steel tank 1 is provided with a grouting hole 11. The composite mortar is injected into the stainless steel tank 1 through the grouting hole 11. In this bottom-up injection method, since the gravity is less than the injection pressure, the composite mortar fills upwards, and the air in the stainless steel tank 1 can be squeezed out at the top. When the composite mortar overflows from the top of the stainless steel tank 1, it fills the tank densely, ensuring that there are no hollows or air bubbles in the filling, and ensuring a tight connection between the stainless steel tank 1 and the glass panel 2.

[0023] Furthermore, silicone sealant 9 is applied to the contact area between the top of the stainless steel channel 1 and the glass panel 2. The top of the silicone sealant 9 is flush with the indoor floor 5 to prevent rainwater and other liquids from seeping into the room through the gap between the stainless steel channel 1 and the glass panel 2, thus improving the sealing performance of the installation structure. At the same time, its flush with the indoor floor 5 also ensures the aesthetics of the indoor floor.

[0024] Insulating rock wool 10 is installed on the outer side of both transition steel plates 3, and the insulating rock wool 10 on the outer side of the two transition steel plates 3 is symmetrically distributed to ensure the insulation effect. Passivated aluminum plate 101 is fixedly installed on the outer side of the insulating rock wool 10. Passivated aluminum plate 101 has good corrosion resistance and oxidation resistance, which can protect the insulating rock wool 10 from the erosion of the external environment, extend the service life of the insulating rock wool 10, and also improve the appearance quality of the entire installation structure.

[0025] In summary, this application uses composite mortar to integrate the stainless steel trough 1 with the glass panel 2, thereby improving the overall integrity and stability of the structure. It is less prone to displacement under strong winds or seismic loads, ensuring overall safety. At the same time, silicone sealant 9 is used to seal the connection points, effectively preventing gaps, improving sealing performance, and preventing rainwater leakage.

[0026] The above are merely specific application examples of this utility model and do not constitute any limitation on the scope of protection of this utility model; all technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of protection of this utility model.

Claims

1. A floor-mounted installation structure for a glass curtain wall, characterized in that: It includes a stainless steel trough (1), a glass panel (2), a connecting steel plate (3), and a concrete base (4); the stainless steel trough (1) passes longitudinally through the indoor floor (5), and the top of the stainless steel trough (1) is flush with the indoor floor (5); there are two connecting steel plates (3), which are located on both sides of the stainless steel trough (1), and the stainless steel trough (1) is fixedly installed on the concrete base (4) by the two connecting steel plates (3); the stainless steel trough (1) is U-shaped, the lower end of the glass panel (2) is embedded in the stainless steel trough (1), and flexible pads (6) are provided at the contact positions between the sides and bottom of the glass panel (2) and the inner wall of the stainless steel trough (1); composite mortar is injected into the stainless steel trough (1) so that the stainless steel trough (1) and the glass panel (2) become a whole.

2. The floor-mounted installation structure for a glass curtain wall according to claim 1, characterized in that: The bottom of the stainless steel tank (1) is provided with a grouting hole (11), through which composite mortar is injected into the stainless steel tank (1).

3. The floor-mounted installation structure for a glass curtain wall according to claim 1, characterized in that: The adapter steel plate (3) is fixed to the stainless steel groove (1) by stainless steel bolts (7), and a rigid gasket (8) is provided between the stainless steel groove (1) and the adapter steel plate (3).

4. The floor-mounted installation structure for a glass curtain wall according to claim 1, characterized in that: Silicone sealant (9) is applied to the contact position between the top of the stainless steel groove (1) and the glass panel (2), and the top of the silicone sealant (9) is flush with the indoor floor (5).

5. The floor-mounted installation structure for a glass curtain wall according to claim 1, characterized in that: Both of the two transition steel plates (3) are provided with thermal insulation rock wool (10) on their outer sides, and the thermal insulation rock wool (10) on the outer sides of the two transition steel plates (3) is symmetrically distributed.

6. The floor-mounted installation structure for a glass curtain wall according to claim 5, characterized in that: A passivated aluminum plate (101) is fixedly installed on the outside of the thermal insulation rock wool (10).