A modular glass partition connection structure and its connection method

Through the modular glass partition connection structure, using multiple types of connectors and snap-on seals, the problems of installation difficulties, inconvenience of expansion and poor sealing of existing glass partition connection structures are solved, and efficient and flexible glass partition construction and secrecy are achieved.

CN116657797BActive Publication Date: 2025-06-24ZHEJIANG YASHA DECORATION
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Patent Information

Application Number
CN202310725569.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-19
Publication Date
2025-06-24
Estimated Expiration
2043-06-19

AI Technical Summary

Technical Problem

The existing glass partition connection structure has problems such as installation difficulties, inconvenient expansion, easy to break, lack of effective water sealing, difficulty in positioning glass panels, poor adhesion stability, inability to achieve multiple corner shapes, and lack of secrecy.

Method used

The modular glass partition connection structure is adopted, and the assembly of linear, right-angle, T-shaped and cross-shaped connectors and glass panels is combined with the design of snap-on seals and threaded holes to achieve the construction of glass partitions in various shapes and efficient sealing.

Benefits of technology

It realizes the ease of disassembly and assembly and replacement of glass partitions, improves installation efficiency and sealing effect, supports the construction of multiple corner shapes, reduces resource waste, and increases the secret of partition space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a modular glass partition connection structure and a connection method thereof. The structure is a rectangular structure assembled by connecting pieces and glass panels. The connecting pieces include linear connecting pieces, right-angle connecting pieces, T-shaped connecting pieces and cross-shaped connecting pieces. The right-angle connecting pieces are arranged at the four vertices of the rectangular structure. T-shaped connecting pieces are provided on each side of the rectangular structure. Cross-shaped connecting pieces are arranged inside the rectangular structure. Glass panels are clamped between the right-angle connecting pieces and the T-shaped connecting pieces, and between the T-shaped connecting pieces and the cross-shaped connecting pieces. A linear connecting piece is also provided for connection on the glass panel between the right-angle connecting piece and the T-shaped connecting piece on one side. The partition connecting pieces of the present invention are easy to disassemble and replace; a clamping type seal is provided, which is convenient for clamping connection and effectively increases the water isolation tightness; the connecting pieces are universal and can be adapted to glass partition panels of different moduli to form glass partition walls of different sizes; the connecting pieces are easy to be serialized and standardized in production.
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Description

Technical Field

[0001] The present invention belongs to the technical field of glass partitions, and particularly relates to a modular glass partition connection structure and a connection method thereof. Background Art

[0002] At present, a glass partition, also known as a glass partition wall, mainly serves to divide space according to requirements using glass as a partition wall, making more reasonable use of space and meeting various home and office uses. In terms of the material of the glass partition, it mainly includes three materials: steel frame, glass, and decorative panel, which can be made according to customer requirements. The glass partition has the advantages of wind pressure resistance, impact resistance, safety, firmness, and durability. At the same time, the glass partition has good lighting, good sound insulation, excellent fire prevention, environmental protection, easy installation, and the glass can be reused and mass-produced, which is significantly superior to traditional partition walls.

[0003] The installation of the existing glass partition connection structure mainly has the following defects:

[0004] 1. The connection of the existing glass partition wall is mainly bonded together by adhesives between multiple outer frames, which is not convenient for users to splice and expand the partition area; moreover, the existing glass partition wall structure has many components, is troublesome to install, inconvenient to disassemble and replace, and often requires the use of many tools during the installation process, making the installation difficult and hard to achieve quick installation and use at any time.

[0005] 2. The existing large-area glass partitions are all integrated structures. When a certain position of the glass is collided, the entire glass is easily broken under force, so the entire glass partition needs to be replaced, resulting in a large waste. Moreover, the whole large decorative glass board occupies a large space of the transportation tool during transportation, and both construction and transportation are very inconvenient.

[0006] 3. When the existing combined glass partition node structure is in use, there is a lack of an effective water isolation and sealing device between the lower side frame of the glass partition and the ground, so that water easily leaks from the lower side of the lower frame, affecting the waterproof effect of the glass partition wall.

[0007] 4. It is difficult to position between glass panels, and they are prone to displacement, with a large installation difficulty, resulting in deviation at the connection position, affecting the construction efficiency and accuracy;

[0008] 5. The glass panels are simply bonded by an adhesive method, with poor stability and firmness, and are prone to deformation, sliding, or twisting over time;

[0009] 6. The adhesive used is prone to overflow at the connection of the glass panels during the application process. On the one hand, it wastes glue and is not environmentally friendly. On the other hand, the overflowing glue affects the appearance and requires cleaning, which additionally increases the construction volume;

[0010] 7. Existing connection technologies can only form straight glass panel partitions and cannot directly achieve glass partition walls with multiple corners (such as right-angled, T-shaped, or cross-shaped), and they use more components. The components are relatively scattered and are easily lost during the handling process, resulting in waste of resources.

[0011] 8. Currently, most use transparent glass, lacking the privacy of the partitioned space.

[0012] Therefore, it is necessary to improve the existing glass partition structure and process. Summary of the Invention

[0013] In view of the above problems, the present invention provides a modular glass partition connection structure and its connection method to solve the existing problems.

[0014] To achieve the above object, the technical solution adopted by the present invention is as follows:

[0015] A modular glass partition connection structure is a rectangular glass partition structure assembled by connectors and glass panels. The connectors include linear connectors, right-angled connectors, T-shaped connectors, and cross-shaped connectors. The right-angled connectors are arranged at the four vertex positions of the rectangular structure. T-shaped connectors are arranged at corresponding positions on each side of the rectangular structure. Cross-shaped connectors are arranged inside the rectangular structure. Glass panels are snap-connected between the right-angled connectors and T-shaped connectors, and between the T-shaped connectors and cross-shaped connectors for connection. A linear connector is also arranged on the glass panel connecting the right-angled connector and T-shaped connector on one side for connection.

[0016] Further, the linear connector includes a concave connector and a convex connector that are mutually inserted and matched. The concave connector includes a first concave end and a first connection end. The convex connector includes a first convex end and a second connection end. Card slots are provided in the first connection end and the second connection end. The glass panels are respectively snap-connected into the card slots in the first connection end and the second connection end to form a linear glass partition connection structure.

[0017] Further, the right-angled connector includes a right-angle edge corner connector and a matched concave connector and convex connector. The right-angle edge corner connector includes a right-angle connection end and a second concave end and a second convex end connected to the right-angle connection end. The first concave end and the second convex end are matched and snap-connected, and the first convex end and the second concave end are matched and snap-connected. Card slots are provided in the first connection end and the second connection end. One end of the glass panels arranged on both sides of the right-angled connector is respectively snap-connected into the card slots in the first connection end and the second connection end, and is arranged at a right angle to form a right-angled glass partition connection structure.

[0018] Furthermore, the T-shaped connector includes a T-shaped corner connector, a concave connector, and a convex connector connected thereto. The T-shaped corner connector includes a T-shaped connection end, a third concave end, a fourth concave end, and a third convex end connected to the T-shaped connection end. The third concave end and the fourth concave end are respectively engaged and clamped with the first convex end, and the third convex end and the first concave end are engaged and clamped with each other. Card slots are provided in the first connection end and the second connection end. The glass panels arranged in three directions of the T-shaped connector are respectively engaged and clamped in the card slots of the first connection end and the two second connection ends on both sides, and are arranged in a T shape to form a T-shaped glass partition connection structure.

[0019] Furthermore, the cross-shaped connector includes a cross-shaped corner connector, a concave connector, and a convex connector connected to the cross-shaped corner connector. The cross-shaped corner connector includes a cross-shaped connection end in the middle and a fifth concave end, a fourth convex end, a sixth concave end, and a fifth convex end arranged in a cross shape around it. The fifth concave end and the sixth concave end are respectively engaged and clamped with the first convex end, and the fourth convex end and the fifth convex end are respectively engaged and clamped with the first concave end. Card slots are provided in the first connection end and the second connection end. The four glass panels connected by the cross-shaped connector are respectively engaged and clamped in the card slots of the two first connection ends and the two second connection ends arranged in a cross shape, and are arranged in a cross shape to form a cross-shaped glass partition connection structure.

[0020] Furthermore, the first concave end, the second concave end, the third concave end, the fourth concave end, the fifth concave end, and the sixth concave end are respectively fixedly connected to the first convex end of the convex connector by interference fit, and the first convex end, the second convex end, the third convex end, the fourth convex end, and the fifth convex end are respectively fixedly connected to the first concave end of the concave connector by interference fit.

[0021] Furthermore, a snap-in seal is provided between the glass panel and the card slot; the snap-in seals are provided in pairs and symmetrically arranged on both sides inside the card slot; snap columns penetrating up and down are provided in the card slots of the concave connector and the convex connector for snap connection with the snap-in seal.

[0022] Furthermore, the snap-in seal includes a sealing connection plate and snap claws provided on the sealing connection plate corresponding to the snap columns. The snap-in seal is snapped into the card slot through the cooperation of the snap claws and the snap columns; the glass panel is closely arranged between the sealing connection plates on both sides inside the card slot; snap-in seals are provided at both the upper and lower ends inside the card slot, and the number of snap columns and snap claws on each side inside the card slot is two.

[0023] Further, threaded holes penetrating through are provided on the outer sides of the first connection end of the concave connector and the second connection end of the convex connector, and through holes corresponding to them are provided at the ends of the glass panel for fixing the glass panel and the corresponding connector with bolts.

[0024] The connection method of the above modular glass partition connection structure includes the following steps:

[0025] S1: Interference-fit and snap-connect the concave connector and the convex connector with the right-angle corner connector, T-shaped corner connector, and cross-shaped corner connector respectively to form a right-angle connector, a T-shaped connector, a cross-shaped connector, and a linear connector, and pre-position the connectors according to the drawing.

[0026] S2: Through the cooperation of the claw and the column, sequentially install the snap-in seal into the card slots of the concave connector and the convex connector.

[0027] S3: Snap the glass panel into the corresponding card slots of the adjacent connectors and complete the installation of all the glass panels in sequence.

[0028] S4: Fix the glass panel and the corresponding connector by passing screws through the threaded holes on the outer sides of the first connection end of the concave connector and the second connection end of the convex connector.

[0029] Compared with the prior art, the technical solution of the present invention has the following beneficial effects:

[0030] 1. It is easy to disassemble, install and replace, reducing the strong dependence on manual experience and technology.

[0031] 2. A snap-in seal is provided to increase an effective water-proof sealing device.

[0032] 3. Various forms of corners of the glass partition can be realized, and it can be fixedly connected with glass partition wall panels from multiple different directions, conveniently and quickly building right-angle, linear, T-shaped or cross-shaped glass partition spaces to meet the needs of various common wall shapes.

[0033] 4. The connectors are universal and can be adapted to glass partition panels of different moduli to form glass partition walls of different sizes.

[0034] 5. The connectors are easy to be serialized and standardized in production.

[0035] 6. Glue bonding is not used, which is economical and environmentally friendly.

[0036] 7. A common edge trimmer is used to trim the glass partition, and the appearance is beautiful and generous.

[0037] 8. The glass partition uses intelligent electrochromic glass, increasing the privacy of the partition space. Description of the Drawings

[0038] Figure 1 Schematic diagram of the modular glass partition connection structure of the present invention;

[0039] Figure 2 is Figure 1 top view of;

[0040] Figure 3 Schematic diagram of the linear connector structure of the present invention;

[0041] Figure 4 Schematic diagram of the right-angle connector structure of the present invention;

[0042] Figure 5 Schematic diagram of the T-shaped connector structure of the present invention;

[0043] Figure 6 Schematic diagram of the cross-shaped connector structure of the present invention;

[0044] Figure 7 Schematic diagram of the concave connector structure of the present invention;

[0045] Figure 8 Schematic diagram of the convex connector structure of the present invention;

[0046] Figure 9 Schematic diagram of the right-angle side corner connector structure of the present invention;

[0047] Figure 10 Schematic diagram of the T-shaped corner connector structure of the present invention;

[0048] Figure 11 Schematic diagram of the cross-shaped corner connector structure of the present invention;

[0049] Figure 12 Schematic diagram of the snap-in seal of the present invention;

[0050] Figure 13 Enlarged view of the connection node between the connector and the glass panel of the present invention;

[0051] Figure 14 Schematic diagram of the concave edging member of the present invention;

[0052] Figure 15 Schematic diagram of the convex edging member of the present invention;

[0053] In the figure: 1. Linear connector; 2. Right-angle connector; 21. Right-angle connection end; 22. Second concave end; 23. Second convex end; 3. T-shaped connector; 31. T-shaped connection end; 32. Third concave end; 33. Fourth concave end; 34. Third convex end; 4. Cross-shaped connector; 41. Cross-shaped connection end; 42. Fifth concave end; 43. Fourth convex end; 44. Sixth concave end; 45. Fifth convex end; 5. Concave connector; 51. First concave end; 52. First connection end; 6. Convex connector; 61. First convex end; 62. Second connection end; 7. Card slot; 71. Card post; 8. Snap-in seal; 81. Seal connection plate; 82. Claw; 9. Threaded hole; 10. Glass panel; 11. Concave edging piece; 111. Concave edging part; 112. First edging plate; 12. Convex edging piece; 121. Convex edging part; 122. Second edging plate. Specific implementation mode

[0054] The technical solutions of the present invention will be clearly and completely described below through embodiments. 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.

[0055] As Figure 1-13 shown, a modular glass partition connection structure mainly consists of a glass panel 10, a concave connector 5, a convex connector 6, a linear connector 1, a right-angle connector 2, a T-shaped connector 3, a cross-shaped connector 4, a snap-in seal 8, etc. This structure is a rectangular glass partition structure assembled by connectors and the glass panel 10. The connectors include a linear connector 1, a right-angle connector 2, a T-shaped connector 3, and a cross-shaped connector 4. The right-angle connector 2 is arranged at the four vertex positions of the rectangular structure. T-shaped connectors 3 are arranged at corresponding positions on each side of the rectangular structure. A cross-shaped connector 4 is arranged inside the rectangular structure. The glass panel 10 is snap-connected between the right-angle connector 2 and the T-shaped connector 3, and between the T-shaped connector 3 and the cross-shaped connector 4 for connection. A linear connector 1 is also arranged on the glass panel 10 connecting the right-angle connector 2 and the T-shaped connector 3 on one side for connection. The specific structures of the above connectors are as follows:

[0056] The linear connector 1 includes a concave connector 5 and a convex connector 6 that are fitted and inserted into each other. The concave connector 5 includes a first concave end 51 and a first connection end 52. The convex connector 6 includes a first convex end 61 and a second connection end 62. Card slots 7 are formed in the first connection end 52 and the second connection end 62. The glass panels 10 are respectively clamped in the card slots 7 of the first connection end 52 and the second connection end 62, forming a linear glass partition connection structure.

[0057] The right-angle connector 2 includes a right-angle edge corner connector and a matching concave connector 5 and convex connector 6. The right-angle edge corner connector includes a right-angle connection end 21, a second concave end 22 and a second convex end 23 connected to the right-angle connection end 21. The first concave end 51 and the second convex end 23 are fitted and clamped. The first convex end 61 and the second concave end 22 are fitted and clamped. Card slots 7 are formed in the first connection end 52 and the second connection end 62. One end of the glass panels 10 arranged on both sides of the right-angle connector 2 are respectively clamped in the card slots 7 of the first connection end 52 and the second connection end 62, and are arranged at a right angle, forming a right-angle glass partition connection structure.

[0058] The T-shaped connector 3 includes a T-shaped corner connector and a connected concave connector 5 and convex connector 6. The T-shaped corner connector includes a T-shaped connection end 31, a third concave end 32, a fourth concave end 33 and a third convex end 34 connected to the T-shaped connection end 31. The third concave end 32 and the fourth concave end 33 are respectively fitted and clamped with the first convex end 61, and the third convex end 34 and the first concave end 51 are fitted and clamped. Card slots 7 are formed in the first connection end 52 and the second connection end 62. The glass panels 10 arranged in three directions of the T-shaped connector 3 are respectively clamped in the card slots 7 of the first connection end 52 and the two second connection ends 62 on both sides, and are arranged in a T shape, forming a T-shaped glass partition connection structure.

[0059] The cross-shaped connector 4 includes a cross-shaped corner connector and a concave connector 5 and a convex connector 6 connected to the cross-shaped corner connector. The cross-shaped corner connector includes a cross-shaped connection end 41 located in the middle and a fifth concave end 42, a fourth convex end 43, a sixth concave end 44 and a fifth convex end 45 arranged in a cross shape around it. The fifth concave end 42 and the sixth concave end 44 are respectively fitted and clamped with the first convex end 61, and the fourth convex end 43 and the fifth convex end 45 are respectively fitted and clamped with the first concave end 51. Card slots 7 are formed in the first connection end 52 and the second connection end 62. The four glass panels 10 connected by the cross-shaped connector 4 are respectively clamped in the card slots of the two first connection ends 52 and the two second connection ends 62 arranged in a cross shape, and are arranged in a cross shape, forming a cross-shaped glass partition connection structure.

[0060] To enhance the firmness of the connection, for the various connections described above: the first concave end 51, the second concave end 22, the third concave end 32, the fourth concave end 33, the fifth concave end 42, and the sixth concave end 44 are respectively in interference fit and fixedly connected with the first convex end 61 of the convex connector 6; the first convex end 61, the second convex end 23, the third convex end 34, the fourth convex end 43, and the fifth convex end 45 are respectively in interference fit and fixedly connected with the first concave end 51 of the concave connector 5.

[0061] To increase the waterproof sealing performance during connection, a snap-in seal 8 is provided between the glass panel 10 and the card slot 7; the snap-in seals 8 are provided in pairs and symmetrically arranged on both inner sides of the card slot 7; snap posts 71 that penetrate vertically are provided in the card slot 7 of the concave connector 5 and the convex connector 6 for snap connection with the snap-in seal 8.

[0062] The snap-in seal 8 includes a sealing connection plate 81 and snap claws 82 provided on the sealing connection plate 81 corresponding to the snap posts 71. The snap-in seal 8 is snapped into the card slot 7 through the cooperation of the snap claws 82 and the snap posts 71; the glass panel 10 is tightly arranged between the sealing connection plates 81 on both inner sides of the card slot 7.

[0063] To increase the sealing performance, snap-in seals 8 are provided at both the upper and lower ends in the card slot 7, and preferably two snap posts 71 and two snap claws 82 are provided on each side in the card slot 7.

[0064] To further fix the glass panel, through holes 9 are also provided on the outer sides of the first connection end 52 of the concave connector 5 and the second connection end 62 of the convex connector 6, and corresponding through holes are provided at the ends of the glass panel 10 for fixing the glass panel 10 and the corresponding connectors with bolts.

[0065] The connection method of the above modular glass partition connection structure includes the following steps:

[0066] S1: The concave connector 5 and the convex connector 6 are respectively in interference fit and snap-connected with the right-angle corner connector, the T-shaped corner connector, and the cross-shaped corner connector to form a right-angle connector 2, a T-shaped connector 3, a cross-shaped connector 4, and a straight connector 1, and the connectors are pre-positioned according to the drawing.

[0067] S2: Through the cooperation of the snap claws 82 and the snap posts 71, the snap-in seals 8 are sequentially installed into the card slots 7 of the concave connector 5 and the convex connector 6.

[0068] S3: The glass panel 10 is snapped into the corresponding card slots 7 of the adjacent connectors, and the installation of all the glass panels 10 is completed in sequence.

[0069] S4: Fix the glass panel 10 and the corresponding connecting member by passing a screw through the threaded hole 9 on the outer side of the first connecting end 52 of the concave connecting member 5 and the second connecting end 62 of the convex connecting member 6.

[0070] It should be noted that the number of connecting members, the types and numbers of the glass panels 10, and the specific design styles in the present invention can be selected and coordinated according to the actual situation through different types of glass partition connection structures, and are not limited to the examples listed in the present invention. Other styles of glass partitions with other shapes can be constructed using the connecting members of the present invention.

[0071] The glass panel 10 of the present invention uses intelligent fogging glass to replace traditional transparent glass, increasing the privacy of the partitioned space.

[0072] To increase the aesthetic appearance of the device structure, when the glass partition style is set to be open, edging members are required for edging. The disconnected part of the glass panel is connected to the concave connecting member 5 or the convex connecting member 6, and the corresponding convex edging member 12 and concave edging member 11 are used for edging. The structure of the edging member is as Figure 14-15 shown.

[0073] The concave edging member 11 includes a concave edging portion 111 and a first edging plate 112, and the convex edging member 12 includes a convex edging portion 121 and a second edging plate 122. The concave edging portion 111 is in interference fit connection with the first convex end 61, and the convex edging portion 121 is in interference fit connection with the first concave end 51.

[0074] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claimed rights.

Claims

1. A modular glass partition connection structure, characterized in that, It is a rectangular structure of a glass partition assembled from a connecting member and a glass panel (10). The connecting member includes a straight connecting member (1), a right-angle connecting member (2), a T-shaped connecting member (3), and a cross-shaped connecting member (4). The right-angle connecting member (2) is arranged at the four vertex positions of the rectangular structure. T-shaped connecting members (3) are arranged at corresponding positions on each side of the rectangular structure. A cross-shaped connecting member (4) is arranged inside the rectangular structure. A glass panel (10) is clamped between the right-angle connecting member (2) and the T-shaped connecting member (3), and between the T-shaped connecting member (3) and the cross-shaped connecting member (4) for connection. A straight connecting member (1) is also arranged on the glass panel (10) connecting the right-angle connecting member (2) and the T-shaped connecting member (3) on one side for connection setting; The straight connecting member (1), the right-angle connecting member (2), the T-shaped connecting member (3), and the cross-shaped connecting member (4) all include a concave connecting member (5) and a convex connecting member (6) that are mutually inserted and matched. The concave connecting member (5) includes a first concave end (51) and a first connecting end (52). The convex connecting member (6) includes a first convex end (61) and a second connecting end (62). A card slot (7) is opened in the first connecting end (52) and the second connecting end (62). The glass panel (10) is respectively clamped in the card slots (7) of the first connecting end (52) and the second connecting end (62) to form a straight glass partition connection structure; A snap-in seal (8) is arranged between the glass panel (10) and the card slot (7); the snap-in seals (8) are arranged in pairs and symmetrically arranged on both sides inside the card slot (7); A through card post (71) is arranged in the card slot (7) of the concave connecting member (5) and the convex connecting member (6) for snap-connecting with the snap-in seal (8); A through threaded hole (9) is also arranged on the outer sides of the first connecting end (52) of the concave connecting member (5) and the second connecting end (62) of the convex connecting member (6). A corresponding through hole is opened at the end of the glass panel (10) for fixing the glass panel (10) and the corresponding connecting member with bolts.

2. The modular glass partition connection structure according to claim 1, wherein The right-angle connecting member (2) includes a right-angle side corner connecting member and a matched concave connecting member (5) and convex connecting member (6). The right-angle side corner connecting member includes a right-angle connecting end (21) and a second concave end (22) and a second convex end (23) connected to the right-angle connecting end (21). The first concave end (51) and the second convex end (23) are matched and clamped, and the first convex end (61) and the second concave end (22) are matched and clamped. One ends of the glass panels (10) arranged on both sides of the right-angle connecting member (2) are respectively clamped in the card slots (7) of the first connecting end (52) and the second connecting end (62), and are arranged at a right angle to form a right-angle glass partition connection structure.

3. The modular glass partition connection structure according to claim 2, wherein The T-shaped connector (3) includes a T-shaped corner connector and a concave connector (5) and a convex connector (6) connected thereto. The T-shaped corner connector includes a T-shaped connection end (31) and a third concave end (32), a fourth concave end (33) and a third convex end (34) connected to the T-shaped connection end (31). The third concave end (32) and the fourth concave end (33) are respectively engaged and clamped with the first convex end (61), and the third convex end (34) is engaged and clamped with the first concave end (51). The three-direction glass panels (10) provided by the T-shaped connector (3) are respectively clamped in the card slots (7) of the first connection end (52) and the two second connection ends (62) on both sides, and are arranged in a T shape to form a T-shaped glass partition connection structure.

4. A modular glass partition connection structure according to claim 3, characterized in that, The cross-shaped connector (4) includes a cross-shaped corner connector and a concave connector (5) and a convex connector (6) connected to the cross-shaped corner connector. The cross-shaped corner connector includes a cross-shaped connection end (41) in the middle and a fifth concave end (42), a fourth convex end (43), a sixth concave end (44) and a fifth convex end (45) sequentially arranged in a cross shape around. The fifth concave end (42) and the sixth concave end (44) are respectively engaged and clamped with the first convex end (61), and the fourth convex end (43) and the fifth convex end (45) are respectively engaged and clamped with the first concave end (51). The four glass panels connected by the cross-shaped connector (4) are respectively clamped in the card slots (7) of the two first connection ends (52) and the two second connection ends (62) arranged in a cross shape, and are arranged in a cross shape to form a cross-shaped glass partition connection structure.

5. A modular glass partition connection structure according to claim 4, characterized in that, The first concave end (51), the second concave end (22), the third concave end (32), the fourth concave end (33), the fifth concave end (42) and the sixth concave end (44) are respectively fixedly connected with the first convex end (61) of the convex connector (6) by interference fit, and the first convex end (61), the second convex end (23), the third convex end (34), the fourth convex end (43) and the fifth convex end (45) are respectively fixedly connected with the first concave end (51) of the concave connector (5) by interference fit.

6. The modular glass partition connection structure according to claim 5, characterized in that, The snap-in seal (8) includes a seal connecting plate (81) and a claw (82) provided on the seal connecting plate (81) corresponding to the snap post (71). The snap-in seal (8) is snapped into the card slot (7) through the cooperation of the claw (82) and the snap post (71); the glass panel is tightly arranged between the seal connecting plates (81) on both sides in the card slot (7); snap-in seals (8) are provided at both the upper and lower ends in the card slot (7), and the number of snap posts (71) and claws (82) on each side in the card slot is two.

7. A connection method for the modular glass partition connection structure as described in claim 6, characterized in that, Including the following steps: S1: Press-fit and snap the concave connector (5) and the convex connector (6) with the right-angle corner connector, T-shaped corner connector, and cross-shaped corner connector respectively to form a right-angle connector (2), a T-shaped connector (3), a cross-shaped connector (4), and a linear connector (1), and pre-position the connectors according to the drawing; S2: Through the cooperation of the claw (82) and the clamping post (71), sequentially install the snap-in seal (8) into the card slots (7) of the concave connector (5) and the convex connector (6); S3: Snap the glass panel (10) into the corresponding card slots (7) of the adjacent connectors, and sequentially complete the installation of all the glass panels (10); S4: Fix the glass panel (10) and the corresponding connector by screwing through the threaded holes (9) on the outside of the first connection end (52) of the concave connector (5) and the second connection end (62) of the convex connector (6).

Citation Information

Patent Citations

  • Modular glass partition connecting structure

    CN220133197U