Connecting structure for multi-plate multi-angle glass crossing
By adopting a multi-section multi-angle glass cross-connection structure in the special-shaped glass curtain wall node splicing system, the combination of base, adjustment screw, connecting seat, connecting head and connecting pipe is used to solve the problem of temperature deformation and processing errors in the glass plate and support structure, and the stable installation and high safety of the glass plate are achieved.
Patent Information
- Application Number
- CN202421374396.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-17
AI Technical Summary
Prior Art In the special-shaped glass curtain wall node splicing system, the glass plates and support structures are susceptible to temperature deformation and processing errors, resulting in unstable installation.
A multi-plate multi-angle glass cross-connection structure is adopted, including a base, adjustment screw, connecting seat, connecting head and connecting pipe. Through the cooperation of these components, it can be adjusted in various directions and angles to adapt to changes in the glass plate.
The influence of temperature deformation and processing errors of the glass plate and support structure is effectively adjusted, and the stable installation of the glass plate is achieved, with the advantages of convenient installation, firmness, reliability and high safety.
Smart Images

Figure CN222909169U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of architecture, in particular to a connection structure of multi-plate multi-angle glass intersections. Background Art
[0002] With the development of China's construction industry, large buildings have higher and higher requirements for facades, and heterogeneous buildings are emerging in groups. The number of multi-plate cross structures is gradually increasing. The construction of the connection nodes is more important. If the structure is unreasonable, it is easy to cause glass plate breakage and leakage problems. To this end, the Chinese utility model patent with authorization announcement number CN205935337U discloses a special-shaped glass curtain wall node splicing system, including a plurality of node splicing units arranged at the intersection of glass plates, the node splicing units are respectively connected to the square tube through adapters, and the node splicing units include a base, the base is rotatably connected to at least one aluminum connector in the circumferential direction, and the aluminum connector is provided with an angle-adjustable aluminum vertical frame assembly and laminated glass. The utility model can be used for node splicing of special-shaped curtain walls as a force bearing support, but when the structure of the utility model is actually used, the glass plates and the supporting structure are more susceptible to temperature deformation and processing errors, thereby affecting the installation of the glass plates. Utility Model Content
[0003] The purpose of the utility model is to provide a multi-panel multi-angle glass cross connection structure. The utility model can effectively adjust the influence of temperature deformation and processing errors of glass panels and supporting structures, and has the advantages of convenient installation, firmness, reliability and high safety.
[0004] The technical solution of the utility model is: a connection structure for the intersection of multiple panels and multiple angles of glass, including a base, an adjusting screw is passed through the base, a connecting seat is rotatably provided on the upper part of the adjusting screw, and a plurality of first notches are annularly distributed on the outer ring end of the connecting seat; a cover plate is provided on the connecting seat, and a plurality of second notches corresponding to the first notches are annularly distributed on the cover plate, and the first notches cooperate with the second notches to form a connecting notch; a connecting head is embedded in the connecting notch, and a connecting pipe is provided on the outer end of the connecting head through a machine screw sleeve.
[0005] In the above-mentioned multi-panel multi-angle glass cross connection structure, the upper end of the adjusting screw is provided with a ball head, the middle part of the connecting seat is provided with a ball head groove, and the ball head is embedded in the ball head groove.
[0006] In the aforementioned multi-panel multi-angle glass cross-connection structure, the end of the connecting head is provided with a chimeric body with an I-shaped cross section; the chimeric body is arranged in the connecting notch.
[0007] In the aforementioned multi-panel multi-angle glass cross connection structure, a spherical body is provided on the side of the chimeric body, and the spherical body is chiseled on the outside of the connection notch.
[0008] For the above-mentioned multi-panel multi-angle glass intersection connection structure, an adjusting nut is sleeved on the adjusting screw, and the bottom of the adjusting nut abuts against the upper part of the base.
[0009] For the above-mentioned multi-panel multi-angle glass intersection connection structure, a kidney-shaped hole is formed in the side of the connecting pipe, and the machine screw is inserted into the kidney-shaped hole.
[0010] For the above-mentioned multi-panel multi-angle glass intersection connection structure, a cap is provided on the ball head groove, and the upper part of the ball head abuts against the bottom of the cap.
[0011] Compared with the prior art, the utility model can realize the installation of various complex-shaped curtain walls or daylighting roofs, realizes the standardized construction of the components of the peripheral protection structure system of special-shaped buildings, and has strong adaptability. On the curtain wall plane, the angle change of the glass panel can be adapted by adjusting the connecting head; in the direction perpendicular to the curtain wall plane, the connection between the connecting head and the connecting seat can adapt to the change effect of the curved curtain wall from small curvature to large curvature; through the utility model, the multi-angle connection of special-shaped glass panels can be realized, and the splicing part of the glass panels is beautiful and reliable; the utility model can effectively adjust the influence of the temperature deformation and processing error of the glass panel and the supporting structure; it has the advantages of convenient installation, firmness and reliability, and high safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic structural diagram of the utility model;
[0013] Figure 2 is a longitudinal structural sectional view of the utility model.
[0014] The reference signs in the drawings are: 1 - base, 2 - adjusting nut, 3 - adjusting screw, 301 - ball head, 4 - connecting seat, 401 - ball head groove, 402 - connecting notch, 403 - first notch, 5 - cap, 6 - cover plate, 601 - second notch, 7 - connecting head, 701 - inlay, 702 - spherical body, 8 - machine screw, 9 - connecting pipe, 901 - kidney-shaped hole. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0015] The following further illustrates the utility model in conjunction with the drawings and embodiments, but it shall not be used as a basis for limiting the utility model.
[0016] Embodiment: The connection structure of multi-panel multi-angle glass intersection, the structure is as Figure 1 and Figure 2As shown in the figure, it includes a base 1, and the base 1 is welded to the main structure made of steel. The base 1 is a carbon steel base. There are first threaded holes on the base 1, and an adjusting screw 3 is passed through the base 1. The adjusting screw 3 is passed through the first threaded hole, and the adjusting screw 3 is a stainless steel adjusting screw 3. An adjusting nut 2 is sleeved on the adjusting screw 3. The adjusting nut 2 is a stainless steel adjusting nut. The bottom of the adjusting nut 2 abuts against the upper part of the base 1. The adjusting nut 2 is used to adjust the height of the adjusting screw 3 on the base 1. The upper part of the adjusting screw 3 is rotatably provided with a connecting seat 4 through a ball head 301. The connecting seat 4 is a stainless steel connecting seat; a ball head 301 is welded to the upper end of the adjusting screw 3. A ball head groove 401 is formed in the middle of the connecting seat 4, and the ball head 301 is embedded in the ball head groove 401; a cap 5 is fixed on the ball head groove 401. The cap 5 is fixed on the connecting seat 4 by a countersunk head screw. The cap 5 is a stainless steel cap. The upper part of the ball head 301 abuts against the bottom of the cap 5; the connecting seat 4 can rotate in multiple directions and angles through the cooperation of the ball head 301 and the ball head groove 401. A cover plate 6 is fixed on the connecting seat 4 by a countersunk head screw. The cover plate 6 is a stainless steel cover plate; a plurality of first notches 403 are annularly distributed at the outer ring end of the connecting seat 4. A plurality of second notches 601 corresponding to the first notches 403 are annularly distributed on the cover plate 6. The first notch 403 and the second notch 601 cooperate to form a connecting notch 402; a connecting head 7 is embedded in the connecting notch 402. The connecting head 7 is a ∅62*4 stainless steel connecting head; the angle change of the panel can be adapted by adjusting the connecting head 7; an inlay 701 with an I-shaped cross-section is provided at the end of the connecting head 7; the inlay 701 is arranged in the connecting notch 402. A spherical body 702 is provided on the side of the inlay 701. An arc groove is annularly arranged outside the connecting notch 402. The spherical body 702 is embedded in the arc groove outside the connecting notch 402. A connecting pipe 9 is sleeved on the outer end of the connecting head 7 through a machine screw 8. A second threaded hole is provided on the outside of the connecting head 7. The machine screw 8 is passed through the second threaded hole. The machine screw 8 is an M8*30 machine screw. The connecting pipe 9 is an 80*8mm fluorocarbon sprayed round pipe of connecting steel pipe. A waist-shaped hole 901 is opened on the side of the connecting pipe 9. The machine screw 8 is passed through the waist-shaped hole 901. The radial error between the connecting pipe 9 and the connecting head 7 can be adjusted by adjusting the machine screw 8 in the waist-shaped hole 901. The connecting pipe 9 can realize the installation of various complex curtain walls or daylighting roofs, realizing the standardized construction of the components of the peripheral protection structure system of special-shaped buildings, and having strong adaptability.
[0017] In this embodiment, the specifications of each component are as follows: The base 1 is a carbon steel base, the adjusting nut 2 is a stainless steel adjusting nut, the adjusting screw 3 is a stainless steel adjusting screw, the connecting seat 4 is a stainless steel connecting seat, the cap 5 is a stainless steel cap, the cover plate 6 is a stainless steel cover plate, the connector 7 is a ∅62*4 stainless steel connector, the machine screw 8 is an M8*30 machine screw, the connecting pipe 9 is a connecting steel pipe, an 80*8mm fluorocarbon sprayed round pipe, and the countersunk head screw is a stainless steel countersunk head screw.
[0018] Main installation steps: 1. Weld the carbon steel base to the main structure;
[0019] 2. Insert the ∅62*4 stainless steel connector into the 80*8mm fluorocarbon sprayed round connecting steel pipe, and use the M8*30 machine screw to fix the 80*8mm fluorocarbon sprayed round connecting steel pipe to the ∅62*4 stainless steel connector. The radial error between the 80*8mm fluorocarbon sprayed round connecting steel pipe and the stainless steel connector can be adjusted through the waist-shaped holes on the 80*8mm fluorocarbon sprayed round connecting steel pipe to form the first connection structure;
[0020] 3. Insert the stainless steel adjusting screw with a ball head into the stainless steel connecting seat, screw the stainless steel adjusting nut onto the stainless steel adjusting screw, and insert the above-connected structure into the threaded hole of the carbon steel base and fix it to the carbon steel base through the thread on the stainless steel adjusting screw to form the second connection structure;
[0021] 4. Insert the stainless steel connectors of the first connection structures in each direction into the stainless steel connecting seats of the second connection structure in sequence;
[0022] 5. Cover the stainless steel cap and the stainless steel cover plate in sequence, and use the stainless steel countersunk head screw to connect the stainless steel cover plate and the stainless steel connecting seat;
[0023] 6. After adjusting the precision in each direction through the stainless steel adjusting screw, the stainless steel adjusting nut, the M8*30 machine screw, and the stainless steel connector, fix it to complete the installation of the present utility model.
[0024] To sum up, the present utility model can realize the installation of various complex-shaped curtain walls or daylighting roofs, achieving the standardized construction of the components of the peripheral protection structure system of special-shaped buildings, with strong adaptability. On the curtain wall plane, the angle change of the glass panel can be adapted by adjusting through the connector 7; in the direction perpendicular to the curtain wall surface, the connection between the connector 7 and the connecting seat 4 can adapt to the change effect of the curved curtain wall from a small curvature to a large curvature. Through the present utility model, the multi-angle connection of special-shaped glass panels can be realized, and the splicing part of the glass panels is beautiful and reliable. In addition, the present utility model adopts standardized components, and the standardized production and application of the components greatly reduce the material mold opening cost, facilitate batch production and processing, reduce the construction difficulty, greatly improve the operation efficiency, and reduce the project cost.
Claims
1. A multi-panel multi-angle glass cross connection structure, characterized in that: The invention comprises a base (1), wherein an adjusting screw (3) is passed through the base (1), a connecting seat (4) is rotatably provided on the upper part of the adjusting screw (3), and a plurality of first notches (403) are distributed in an annular manner on the outer ring end of the connecting seat (4); a cover plate (6) is provided on the connecting seat (4), and a plurality of second notches (601) corresponding to the first notches (403) are distributed in an annular manner on the cover plate (6), and the first notches (403) and the second notches (601) cooperate to form a connecting notch (402); a connecting head (7) is embedded in the connecting notch (402), and a connecting pipe (9) is provided on the outer end of the connecting head (7) via a machine screw (8).
2. The multi-panel multi-angle glass cross-connection structure according to claim 1, characterized in that: The upper end of the adjusting screw rod (3) is provided with a ball head (301), the middle part of the connecting seat (4) is provided with a ball head groove (401), and the ball head (301) is embedded in the ball head groove (401).
3. The multi-panel multi-angle glass cross-connection structure according to claim 1, characterized in that: The end of the connector (7) is provided with a chimeric body (701) having an I-shaped cross section; the chimeric body (701) is arranged in the connecting notch (402).
4. The multi-panel multi-angle glass cross-connection structure according to claim 3, characterized in that: A spherical body (702) is provided on the side of the chimeric body (701), and the spherical body (702) is chimeric on the outside of the connecting notch (402).
5. The multi-panel multi-angle glass cross-connection structure according to claim 1, characterized in that: An adjusting nut (2) is sleeved on the adjusting screw rod (3), and the bottom of the adjusting nut (2) abuts against the upper part of the base (1).
6. The multi-panel multi-angle glass cross-connection structure according to claim 1, characterized in that: A waist-shaped hole (901) is provided on the side of the connecting pipe (9), and the machine screw (8) is inserted into the waist-shaped hole (901).
7. The multi-panel multi-angle glass cross-connection structure according to claim 2, characterized in that: A cover cap (5) is provided on the ball head groove (401), and the upper part of the ball head (301) abuts against the bottom of the cover cap (5).
Citation Information
Patent Citations
Shaped glass curtain node concatenation system
CN205935337U