A splicing structure and a new type of sintered brick using this structure
By designing arc grooves and connection grooves on the sintered brick body, and using embedded pipes and connecting cables to achieve pulling and splicing of brick body, the problem of connecting parts affecting masonry stability in the prior art is solved, and the stability and safety are improved.
Patent Information
- Application Number
- CN202210328846.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2042-03-30
AI Technical Summary
In the prior art, preset connections of sintered bricks during building masonry cause the brick clearance to increase, affecting the stability and safety of the masonry structure.
The brick body designed with arc-shaped grooves and connecting grooves is designed to achieve the pulling and splicing of the brick body through embedded pipes and connecting cables, combining adjustment components and retaining joints to enhance the stability and safety between the bricks.
It improves the stability and safety of brick splicing, is simple to operate and has strong adaptability, and is suitable for masonry needs of different sizes and shapes.
Smart Images

Figure CN114592639B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building materials, and specifically relates to a splicing structure and a new type of sintered brick using this structure. Background Art
[0002] Sintered bricks are bricks fired at high temperatures, and their use strength is higher than that of other types of bricks. Currently, they are still the core bricks for building masonry. In the prior art, when considering the convenience of installing building facades or interior decoration during the building masonry process, a connecting piece needs to be preset. However, when presetting, the gap between the two side bricks often increases. If there are more preset connecting pieces, it will affect the stability and safety of the overall masonry structure, thus posing a certain safety risk. Summary of the Invention
[0003] The purpose of the present invention is to provide a splicing structure and a new type of sintered brick using this structure to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A splicing structure, the splicing structure includes:
[0005] Two brick bodies, on the opposite sides of the two brick bodies, arc-shaped grooves are respectively provided;
[0006] A pre-embedded pipe, the pre-embedded pipe is inserted and arranged between the two arc-shaped grooves through a connecting component, the connecting component is sleeved on the pre-embedded pipe, and the connecting component includes a number of first connecting cables and a number of second connecting cables;
[0007] A control component, the control component is inserted and arranged on both sides of the pre-embedded pipe through an adjusting component, and the adjusting component includes four adjusting brackets and an adjusting rod;
[0008] A reserved joint, the reserved joint is inserted and arranged on one side of the pre-embedded pipe.
[0009] Preferably, on the opposite sides of the two brick bodies, a number of first connecting grooves and a number of second connecting grooves are respectively symmetrically provided, and the number of first connecting grooves and the number of second connecting grooves are arranged alternately.
[0010] Preferably, damping sleeves are movably sleeved on one side of the pre-embedded pipe for both the first connecting cable and the second connecting cable. Pulling blocks are provided on one side of the first connecting cable and the second connecting cable. The pulling blocks of the number of first connecting cables and the number of second connecting cables are respectively inserted into the number of first connecting grooves and the number of second connecting grooves, and both the first connecting groove and the second connecting groove are arranged in an arc-shaped structure.
[0011] Preferably, limiting grooves are respectively formed through the arc grooves on one sides of the first connection groove and the second connection groove. One sides of the first connection cable and the second connection cable, where pulling blocks are arranged, respectively penetrate through and are inserted into the limiting grooves. One side of the damping sleeve is inserted into the limiting groove, and the diameter of one side of the damping sleeve placed inside the arc groove is larger than the width of the limiting groove.
[0012] Preferably, the control assembly includes two control plates. Receiving grooves are respectively formed on the upper and lower sides of the embedded pipe. The two control plates are respectively inserted into the receiving grooves, and both the control plates and the receiving grooves are arranged in an arc structure.
[0013] Preferably, an adjusting cavity is arranged inside the embedded pipe. The adjusting rod is horizontally inserted into the adjusting cavity of the embedded pipe through a bearing. A strip-shaped groove is formed through the two receiving grooves inside the embedded pipe, and one sides of the four adjusting frames are respectively symmetrically inserted into the two strip-shaped grooves.
[0014] Preferably, each adjusting frame includes two adjusting plates and two adjusting arms. The centers of the upper ends of the two adjusting plates are respectively connected to one sides of the two adjusting arms through first connection pins. The two adjusting arms are respectively connected to one side of the control plate through second connection pins, and the two adjusting arms are inclined relatively.
[0015] Preferably, the adjusting rod is provided with an external thread. Threaded grooves are arranged at the lower ends of the adjusting plates of the four adjusting frames. The adjusting plates are all arranged in an arc structure. The eight adjusting plates are respectively in contact with the external thread on one side of the adjusting rod through the threaded grooves, and the threads of the threaded grooves arranged on the two adjusting plates of the adjusting frame are arranged in opposite directions. A plurality of balls are symmetrically arranged on both sides of the two strip-shaped grooves inside the adjusting cavity, and the plurality of adjusting plates are respectively in contact with a plurality of balls on one side.
[0016] Preferably, an adjusting disc is arranged on one side of the adjusting rod penetrating through the embedded pipe. One side of the reserved joint is inserted into one side of the embedded pipe through a threaded ring. A groove is formed in the center of one side of the reserved joint inserted into the embedded pipe. The adjusting disc is inserted into the groove, and the length of the reserved joint is greater than the thickness of the wall cement surface.
[0017] A new type of sintered brick has the above splicing structure.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] When it is necessary to preset an auxiliary connecting piece during the masonry process, by selecting a brick body with an arc groove and a connection groove at this place, then inserting the embedded pipe between two relatively arranged arc grooves and inserting a plurality of pulling blocks into the connection grooves of the corresponding bricks respectively, through the adjustment and control of the control plate by the adjusting rod, the pulling blocks on both sides pull and splice the two bricks, improving the stability and safety between the two bricks. In addition, the detachable and installable reserved joint facilitates the targeted selection of suitable sizes and shapes, with simple operation and convenient use. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of the present invention;
[0021] Figure 2 is a schematic diagram of the connection structure of the present invention;
[0022] Figure 3 is a schematic diagram of the internal structure of the embedded pipe of the present invention;
[0023] Figure 4 is a schematic diagram of the brick structure of the present invention;
[0024] Figure 5 is a schematic diagram of the connection structure of the connecting cable of the present invention;
[0025] Figure 6 is a schematic diagram of the connecting cable structure of the present invention;
[0026] Figure 7 is a schematic diagram of the control board structure of the present invention;
[0027] Figure 8 is a schematic diagram of the installation structure of the adjusting frame of the present invention;
[0028] Figure 9 For the present invention Figure 2 schematic diagram of part A;
[0029] Figure 10 For the present invention Figure 3 schematic diagram of part B.
[0030] In the figure: brick body 1, arc groove 2, embedded pipe 3, first connecting cable 4, second connecting cable 5, adjusting frame 6, adjusting rod 7, first connecting groove 8, second connecting groove 9, damping sleeve 10, pulling block 11, limiting groove 12, control board 13, storage groove 14, strip groove 15, adjusting plate 16, adjusting arm 17, first connecting pin 18, second connecting pin 19, adjusting cavity 20, internal thread groove 21, ball 22, adjusting disc 23, reserved joint 24, thread ring 25. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0032] Please refer to Figures 1-10 , the present invention provides a splicing structure: the splicing structure includes:
[0033] Two brick bodies 1 are provided. Arc-shaped grooves 2 are formed on the opposite sides of the two brick bodies 1. A number of first connection grooves 8 and a number of second connection grooves 9 are symmetrically arranged on the opposite sides of the two brick bodies 1 respectively, and the number of first connection grooves 8 and the number of second connection grooves 9 are arranged in an alternating manner.
[0034] An embedded pipe 3 is provided. The embedded pipe 3 is inserted and arranged between the two arc-shaped grooves 2 through a connection component. The connection component is sleeved on the embedded pipe 3. The connection component includes a number of first connection cables 4 and a number of second connection cables 5. Damping sleeves 10 are movably sleeved on one side of the embedded pipe 3 where the first connection cable 4 and the second connection cable 5 are sleeved. Pulling blocks 11 are provided on one side of the first connection cable 4 and the second connection cable 5. The pulling blocks 11 of the number of first connection cables 4 and the number of second connection cables 5 are respectively inserted into the number of first connection grooves 8 and the number of second connection grooves 9. Both the first connection groove 8 and the second connection groove 9 are arranged in an arc-shaped structure. Limiting grooves 12 are respectively formed through the arc-shaped grooves on one side of the first connection groove 8 and the second connection groove 9. The sides of the first connection cable 4 and the second connection cable 5 where the pulling blocks 11 are provided respectively penetrate and are inserted into the limiting grooves 12. One side of the damping sleeve 10 is inserted into the limiting groove 12, and the diameter of the side of the damping sleeve 10 placed in the arc-shaped groove 2 is greater than the width of the limiting groove 12.
[0035] A control component is provided. The control component is inserted and arranged on both sides of the embedded pipe 3 through an adjusting component. The adjusting component includes four adjusting frames 6 and an adjusting rod 7. The control component includes two control plates 13. Receiving grooves 14 are respectively formed on the upper and lower sides of the embedded pipe 3. The two control plates 13 are respectively inserted into the receiving grooves 14. Both the control plate 13 and the receiving groove 14 are arranged in an arc-shaped structure. An adjusting cavity 20 is provided in the embedded pipe 3. The adjusting rod 7 is horizontally inserted into the adjusting cavity 20 of the embedded pipe 3 through a bearing. A strip-shaped groove 15 is formed through the two receiving grooves 14 in the embedded pipe 3. One side of the four adjusting frames 6 is symmetrically inserted into the two strip-shaped grooves 15 respectively. Each adjusting frame 6 includes two adjusting plates 16 and two adjusting arms 17. The centers of the upper ends of the two adjusting plates 16 are respectively connected to one side of the two adjusting arms 17 through first connection pins 18. The two adjusting arms 17 are respectively connected to one side of the control plate 13 through second connection pins 19. The two adjusting arms 17 are inclined relatively. The adjusting rod 7 is provided with an external thread. Internal thread grooves 21 are provided at the lower ends of the adjusting plates 16 of the four adjusting frames 6. The eight adjusting plates 16 are respectively in contact with the external thread on one side of the adjusting rod 7 through the internal thread grooves 21. The threads of the internal thread grooves 21 provided on the two adjusting plates 16 of the adjusting frame 6 are arranged in the opposite direction. A number of balls 22 are symmetrically arranged on both sides of the two strip-shaped grooves 15 in the adjusting cavity 20. The number of adjusting plates 16 is respectively in contact with a number of balls 22 on one side.
[0036] A connection 24 is reserved. The connection 24 is arranged on one side of the inserted pre-embedded pipe 3. The adjusting rod 7 passes through one side of the pre-embedded pipe 3 and is provided with an adjusting disc 23. One side of the connection 24 is arranged by inserting the pre-embedded pipe 3 through a threaded ring 25. A groove is formed in the center of one side of the connection 24 where it is inserted into the pre-embedded pipe 3. The adjusting disc 23 is inserted into the groove. And the length of the connection 24 is greater than the thickness of the wall cement surface.
[0037] A new type of sintered brick has the above splicing structure.
[0038] Working principle: When it is necessary to preset an auxiliary connector during the masonry process, select a brick body 1 with an arc-shaped groove 2, a plurality of first connection grooves 8 and a second connection groove 9 at this place. Then insert the pre-embedded pipe 3 between two relatively arranged arc-shaped grooves 2. A plurality of pulling blocks 11 are respectively rotated and inserted into the first connection groove 8 and the second connection groove 9 of the corresponding brick body 1. Then drive the adjusting rod 7 by rotating the adjusting disc 23, so that the two adjusting plates 16 of the four adjusting frames 6 walk towards each other at the same time, and then push the adjusting arm 17 to jack up the control plate 13. Then simultaneously expand the diameters of the first connecting cable 4 and the second connecting cable 5 sleeved on the pre-embedded pipe 3, and then pull the first connecting cable 4 and the second connecting cable 5 on one side of the inserted damping sleeve 10, so that the pulling plate 11 drags the two side brick bodies 1 to approach and splice towards one side of the pre-embedded pipe 3, and under the action of the first connecting cable 4 and the second connecting cable 5 made of metal, improve the splicing stability of the brick body 1 and strengthen the safety of the wall masonry structure. After that, select a connection 24 with an appropriate length, insert it into one side of the pre-embedded pipe 3 through a threaded ring 25, and cover the adjusting disc 23. Then install the exterior insulation layer or indoor facilities through the side of the connection 24 protruding from the wall. The operation is simple and the use is convenient.
[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A splicing structure, characterized in that: The splicing structure includes: Two brick bodies (1), and arc-shaped grooves (2) are formed on one side of each of the two brick bodies (1) facing each other; A pre-embedded pipe (3), the pre-embedded pipe (3) is arranged between the two arc-shaped grooves (2) through a connection component in an inserted manner, the connection component is sleeved on the pre-embedded pipe (3), and the connection component includes a plurality of first connection cables (4) and a plurality of second connection cables (5); A control component, the control component is arranged on both sides of the pre-embedded pipe (3) through an adjustment component in an inserted manner, and the adjustment component includes four adjustment frames (6) and an adjustment rod (7); A reserved joint (24), the reserved joint (24) is arranged on one side of the pre-embedded pipe (3) in an inserted manner; On one side of each of the two brick bodies (1) facing each other, a plurality of first connection grooves (8) and a plurality of second connection grooves (9) are symmetrically arranged respectively, and the plurality of first connection grooves (8) and the plurality of second connection grooves (9) are arranged in a staggered manner; Damping sleeves (10) are movably sleeved on one side of the pre-embedded pipe (3) where the first connection cables (4) and the second connection cables (5) are sleeved, pulling blocks (11) are arranged on one side of the first connection cables (4) and the second connection cables (5), and the pulling blocks (11) of the plurality of first connection cables (4) and the plurality of second connection cables (5) are respectively inserted into the plurality of first connection grooves (8) and the plurality of second connection grooves (9), and both the first connection grooves (8) and the second connection grooves (9) are arranged in an arc-shaped structure; Limiting grooves (12) are respectively formed through the arc-shaped grooves on one side of the first connection grooves (8) and the second connection grooves (9), the sides of the first connection cables (4) and the second connection cables (5) where the pulling blocks (11) are arranged respectively penetrate and are inserted into the limiting grooves (12), one side of the damping sleeve (10) is inserted into the limiting groove (12), and the diameter of the side of the damping sleeve (10) placed in the arc-shaped groove (2) is larger than the width of the limiting groove (12); The control component includes two control plates (13), receiving grooves (14) are respectively formed on the upper and lower sides of the pre-embedded pipe (3), the two control plates (13) are respectively inserted into the receiving grooves (14), and both the control plates (13) and the receiving grooves (14) are arranged in an arc-shaped structure; An adjustment cavity (20) is arranged in the pre-embedded pipe (3), the adjustment rod (7) is horizontally inserted into the adjustment cavity (20) of the pre-embedded pipe (3) through a bearing, a strip-shaped groove (15) is formed through the two receiving grooves (14) in the pre-embedded pipe (3), and one side of each of the four adjustment frames (6) is symmetrically inserted into the two strip-shaped grooves (15); Each of the adjustment frames (6) includes two adjustment plates (16) and two adjustment arms (17), the centers of the upper ends of the two adjustment plates (16) are respectively connected to one side of the two adjustment arms (17) through first connection pins (18), the two adjustment arms (17) are respectively connected to one side of the control plates (13) through second connection pins (19), and the two adjustment arms (17) are arranged in a relatively inclined manner; The adjusting rod (7) is provided with an external thread, and the lower ends of the adjusting plates (16) of the four adjusting frames (6) are each provided with an internal thread groove (21). The adjusting plates (16) are all arranged in an arc-shaped structure. The eight adjusting plates (16) are respectively in contact with the external thread side of the adjusting rod (7) through the internal thread grooves (21), and the threads of the internal thread grooves (21) provided on the two adjusting plates (16) of the adjusting frame (6) are arranged in the opposite direction. A number of balls (22) are symmetrically arranged on both sides of the two strip-shaped grooves (15) in the adjusting cavity (20), and the number of adjusting plates (16) are respectively in contact with a number of balls (22) on one side; The adjusting rod (7) penetrates through one side of the embedded pipe (3) and is provided with an adjusting disk (23). One side of the reserved joint (24) is inserted into one side of the embedded pipe (3) through a threaded ring (25). A groove is formed in the center of one side of the reserved joint (24) where it is inserted into the embedded pipe (3), and the adjusting disk (23) is inserted into the groove. Moreover, the length of the reserved joint (24) is greater than the thickness of the wall cement surface.
2. A new type of sintered brick, characterized in that: The novel sintered brick has the splicing structure described in claim 1 above.
Citation Information
Patent Citations
Circular tube splicing, positioning and fixing device
CN211136145U
Building structure integrated mounting and connecting mechanism
CN213709964U