T-shaped closely-spliced glass brick partition system
Through the T-shaped glass brick partition system connected by embedded card mechanically, the problem of easy slipping and pollution of the glass brick partition system is solved, and the stability and environmental protection are improved.
Patent Information
- Application Number
- CN202421849727.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-01
AI Technical Summary
The existing glass brick partition system is prone to slip and contaminate during construction, and the connection method is not beautiful, affecting the spatial perception and environmental protection.
The T-shaped glass brick partition system is used with a mechanically connected card. Through the joint design of columns and glass bricks, cement or structural glue is avoided to fix the glass bricks, and stable plugging and clamping are achieved.
It improves the stability and aesthetics of the glass brick partition system, avoids space pollution, and enhances environmental protection and construction convenience.
Smart Images

Figure CN223074975U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of partition systems, and particularly relates to a T-shaped closely assembled glass brick partition system. Background Technique
[0002] Glass bricks are a novel decorative material. Glass brick partitions are increasingly favored by people for their unique transparency. They can effectively divide spaces, maintain the permeability and lighting of the spaces, make the whole space look wider and brighter, can effectively utilize natural light, and achieve the purpose of energy conservation and environmental protection. At the same time, glass brick partitions also have the properties of sound insulation, heat insulation, moisture resistance, etc., and are very suitable for the use requirements of modern homes.
[0003] As a glass product, the surface of conventional glass bricks is smooth and it is not easy to obtain friction, so they are prone to slipping and breaking. When constructing the structural design, there will be a cross gap of about 1 centimeter between glass bricks. Usually, white cement is used for caulking or structural glue is used for connection, and the visual effect needs to be improved, and it is easy to cause space pollution. Therefore, it is necessary to consider a fixing method that does not use cement caulking or structural glue connection for the installation of glass brick partitions. Content of the Utility Model
[0004] The purpose of the utility model is to provide a T-shaped closely assembled glass brick partition system, which adopts an embedded mechanical connection method and does not use cement or structural glue for fixing, avoiding space pollution and being more environmentally friendly, so as to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: a T-shaped closely assembled glass brick partition system, including a plurality of columns linearly distributed and glass brick layers. There are several layers of the glass brick layers, and several layers of the glass brick layers are arranged in sequence from bottom to top. The glass brick layer includes a plurality of glass bricks linearly distributed. The glass bricks are snap-connected between two adjacent columns on the left and right, and two adjacent glass bricks on the left and right are arranged in reverse.
[0006] Further, the cross-section of the column is square.
[0007] Further, the glass brick includes a glass brick body, and extension parts that make the whole glass brick in a "T" shape are integrally arranged at both ends of the glass brick body. A card slot for clamping the column is formed between one side of the extension part and one side of the glass brick body.
[0008] Further, the cross-section of the extension part is square, and the side length of the cross-section of the extension part is equal to the length of the cross-section of the column.
[0009] Further, the width of the card slot is equal to the sum of the side length of the cross-section of the extension part and the length of the cross-section of the column.
[0010] Further, two adjacent glass bricks above and below are arranged in opposite directions.
[0011] Further, the bottom end of the extension part is provided with equally spaced convex strips, and the top end of the extension part is provided with a number of grooves respectively matching with the convex strips.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: 1. Through the snap-in design in two directions in the vertical direction of the glass bricks, the balance is good, avoiding the overall overturning of the glass brick partition system, improving the safety, and greatly increasing the design and installation height of the glass brick system;
[0013] 2. The glass bricks are closely joined together. There are no reserved gaps in the horizontal and vertical directions in the appearance effect, enhancing the appearance perception, and improving the aesthetics and transparency;
[0014] 3. Adopting the snap-in mechanical connection method, without using cement or structural adhesive for fixation, avoiding space pollution, being more environmentally friendly, and can be immediately delivered for use after construction is completed. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0016] Figure 2 is a front view of the present utility model;
[0017] Figure 3 is a three-dimensional structural schematic diagram of the glass brick of the present utility model.
[0018] In the drawings, the list of components represented by each reference numeral is as follows:
[0019] 1. Column; 2. Glass brick layer; 3. Glass brick; 31. Glass brick body; 32. Extension part; 33. Card slot; 34. Convex strip; 35. Groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] In order to make the purpose and advantages of the present utility model clearer, the present utility model will be specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific implementation manners of the present utility model, and does not strictly limit the specific protection scope claimed by the present utility model.
[0021] As Figure 1 and 2 shown, a T-shaped closely joined glass brick partition system includes a number of linearly distributed columns 1 and glass brick layers 2. There are several layers of glass brick layers 2, and several layers of glass brick layers 2 are arranged in sequence from bottom to top. The glass brick layer 2 includes a number of linearly distributed glass bricks 3. The glass bricks 3 are snap-connected between two adjacent columns 1 on the left and right, and two adjacent glass bricks 3 on the left and right are arranged in opposite directions.
[0022] According to the above structure, when installing, the glass bricks 3 of the same layer of glass brick layer 2 are respectively clamped between two columns 1 by the method of inserting from the front and back. In the vertical direction, the glass bricks 3 are pressed together by self-overlapping, and the upper glass bricks 3 and the lower glass bricks 3 are stacked in a reverse dislocation manner to ensure that the upper and lower glass bricks 3 are clamped to the columns 1.
[0023] As Figure 2 and 3 shown, the glass brick 3 includes a glass brick body 31, and extension parts 32 that integrally make the whole glass brick 3 in a "T" shape are arranged at both ends of the glass brick body 31. A clamping groove 33 for clamping the column 1 is formed between one side of the extension part 32 and one side of the glass brick body 31.
[0024] According to the above structure, when installing, with the front-to-back direction as the positive direction, the glass brick 3 has the end without the extension part 32 as the front end. After the front end of a glass brick 3 is inserted forward between two columns 1, the column 1 is clamped inside the corresponding clamping groove 33, and the left and right adjacent and upper and lower adjacent glass bricks 3 are all inserted reversely.
[0025] As Figure 2 and 3 shown, the cross-section of the column 1 is square, the cross-section of the extension part 32 is square, the side length of the cross-section of the extension part 32 is equal to the length of the cross-section of the column 1, and the width of the clamping groove 33 is equal to the sum of the side length of the cross-section of the extension part 32 and the length of the cross-section of the column 1.
[0026] According to the above structure, after the installation is completed, ensure that the column 1 is tightly clamped inside the clamping groove 33 to prevent the glass brick 3 from shaking and improve the overall stability.
[0027] As Figure 1 and 3 shown, the two upper and lower adjacent glass bricks 3 are arranged reversely, and equidistantly distributed convex strips 34 are arranged at the bottom end of the extension part 32, and a number of grooves 35 respectively matched with the convex strips 34 are arranged at the top end of the extension part 32.
[0028] According to the above structure, when installing the two upper and lower adjacent glass bricks 3, the convex strips 34 at the bottom end of the upper glass brick 3 are respectively clamped into a number of grooves 35 inside the lower glass brick 3, so as to improve the connection stability between the two upper and lower adjacent glass bricks 3, and further improve the stability of the system.
[0029] The working principle of the present utility model is as follows: When installing, the glass bricks 3 of the same layer of glass brick layer 2 are respectively clamped between two columns 1 by means of front-back insertion from left to right. In the vertical direction, the glass bricks 3 are pressed together by self-overlapping. The upper glass bricks 3 and the lower glass bricks 3 are stacked in a reverse dislocation manner to ensure that the upper and lower glass bricks 3 are clamped to the columns 1. When installing, the front-to-back direction is defined as the positive direction, and the end of the glass brick 3 without the extension part 32 is taken as the front end. After the front end of a glass brick 3 is inserted forward between the two columns 1, the column 1 is clamped inside the corresponding card slot 33. The left and right adjacent and upper and lower adjacent glass bricks 3 are all inserted in the reverse direction. After the installation is completed, the column 1 is tightly clamped inside the card slot 33 to prevent the glass bricks 3 from shaking and improve the overall stability. When installing two adjacent upper and lower glass bricks 3, the convex strips 34 at the bottom end of the upper glass brick 3 are respectively clamped into several grooves 35 of the lower glass brick 3, thereby improving the connection stability between two adjacent upper and lower glass bricks 3 and further improving the stability of the system.
[0030] The above is only the preferred implementation mode of the present utility model. It should be pointed out that for those of ordinary skill in the art of this technology, without departing from the principle of the present utility model, several improvements and retouches can be made, and these improvements and retouches should also be regarded as the protection scope of the present utility model. The structures, devices and operation methods not specifically described and explained in the present utility model, unless otherwise specified and limited, are implemented according to the conventional means in the art.
Claims
1. A T-shaped closely assembled glass brick partition system, comprising a plurality of upright columns (1) and a glass brick layer (2) linearly distributed, characterized in that: The glass brick layer (2) has several layers, and several layers of the glass brick layer (2) are arranged in sequence from bottom to top. The glass brick layer (2) includes several glass bricks (3) arranged linearly. The glass bricks (3) are snap-connected between two adjacent columns (1) on the left and right, and two adjacent glass bricks (3) on the left and right are arranged in reverse.
2. The T-shaped closely assembled glass brick partition system according to claim 1, characterized in that: The cross-section of the column (1) is square.
3. A T-shaped closely assembled glass brick partition system according to claim 1, characterized in that: The glass brick (3) includes a glass brick body (31), and extension parts (32) that integrally form a "T" shape for the whole glass brick (3) are provided at both ends of the glass brick body (31). A card slot (33) for clamping the column (1) is formed between one side of the extension part (32) and one side of the glass brick body (31).
4. A T-shaped closely joined glass brick partition system according to claim 3, characterized in that: The cross-section of the extension part (32) is square, and the side length of the cross-section of the extension part (32) is equal to the length of the cross-section of the column (1).
5. A T-shaped closely-fitted glass brick partition system according to claim 4, characterized in that: The width of the card slot (33) is equal to the sum of the side length of the cross-section of the extension part (32) and the length of the cross-section of the column (1).
6. A T-shaped closely assembled glass brick partition system according to claim 5, characterized in that: Two adjacent glass bricks (3) up and down are arranged in reverse.
7. A T-shaped closely assembled glass brick partition system according to claim 6, characterized in that: Convex strips (34) are provided at equal intervals at the bottom end of the extension part (32), and several grooves (35) respectively matching the convex strips (34) are provided at the top end of the extension part (32).