Concrete block with splicing structure

By arranging splicing blocks and positioning grooves on the top and sides of the concrete block unit and utilizing the clamping structure of the positioning rod and the groove, the problems of unstable installation and low efficiency caused by complex splicing in the existing technology are solved, and fast and stable block splicing is achieved.

CN223386850UActive Publication Date: 2025-09-26NANTONG YUANYI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422623257.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-26
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

The existing concrete blocks have a complex splicing structure, which results in unstable and inefficient installation.

Method used

Splicing blocks and positioning grooves are set on the top and sides of the block unit. Rapid positioning and splicing are achieved through the clamping structure, and the positioning rods and positioning grooves are used to cooperate to achieve vertical and horizontal positioning connection.

Benefits of technology

It improves the installation stability and efficiency of concrete blocks and achieves fast and stable splicing connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a concrete block with a splicing structure, which comprises a plurality of block units connected in a splicing manner, each block unit comprises a masonry, a first splicing block and a second splicing block, the top of the masonry is provided with the first splicing block, the bottom of the masonry is provided with a first splicing groove, and the second splicing block is provided with a second splicing groove. And the two brickworks which are spliced and connected up and down are connected in a clamped mode through the first splicing blocks and the first splicing grooves. A first splicing block is arranged at the top of a masonry of a building block unit, a plurality of first positioning grooves are formed in the first splicing block, corresponding first splicing grooves are formed in the bottom of the masonry, and a plurality of corresponding first positioning rods are arranged in the first splicing grooves; according to the building block, the first splicing blocks are arranged in the first splicing grooves, so that the building block units spliced and mounted in the vertical direction are clamped in the first splicing grooves through the first splicing blocks, and meanwhile, the first positioning rods in the first splicing grooves are clamped in the corresponding first positioning grooves, so that the building block units can be quickly positioned, spliced and connected in the vertical direction, and the splicing stability and the splicing efficiency of the building block are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of concrete, in particular to a concrete building block with a splicing structure. Background Art

[0002] Masonry blocks are man-made blocks made of concrete, industrial waste (slag, fly ash, etc.) or local materials. They are larger in size than bricks and have the advantages of simple equipment and fast laying speed, which meets the requirements of wall reconstruction in the development of building industrialization.

[0003] Existing Chinese utility model patent 202222990863.0 discloses a modular concrete block splicing structure that connects multiple concrete blocks by installing I-shaped block connectors in the connecting grooves of the concrete blocks. This splicing structure is relatively complex and cannot quickly position and splice the concrete blocks, affecting the installation stability and efficiency of the concrete blocks. Utility Model Content

[0004] In view of the above-mentioned defects or deficiencies in the prior art, it is desired to provide a concrete block with a splicing structure, which can be quickly positioned and spliced, thereby improving the installation stability and efficiency of the concrete block.

[0005] According to the technical solution provided in the embodiment of the present application, a concrete block with a splicing structure includes a block unit, and a plurality of the block units are spliced ​​together;

[0006] The building block unit includes a masonry, a first splicing block and a second splicing block. The first splicing block is provided on the top of the masonry, and a first splicing groove is provided on the bottom of the masonry, so that the two masonry pieces spliced ​​together above and below are connected by clamping together through the first splicing block and the first splicing groove. The second splicing block is provided on the left side of the masonry, and the second splicing groove is provided on the other side of the masonry, so that the two adjacent masonry pieces are clamped together through the second splicing block and the second splicing groove.

[0007] Furthermore, the first splicing block is a rectangular structure, and two first positioning grooves are provided on the top of the first splicing block.

[0008] Furthermore, the first splicing groove is adapted to the first splicing block structure, and two corresponding first positioning rods are provided at the bottom thereof, so that the two first positioning rods are clamped in the corresponding first positioning grooves for positioning and splicing connection of a plurality of the building block units.

[0009] Furthermore, the second splicing block is provided with a plurality of second positioning grooves.

[0010] Furthermore, a plurality of second positioning rods are provided on the second splicing groove, and the plurality of second positioning rods are evenly arranged in the second splicing groove, and the plurality of second positioning rods on two adjacent building block units are positioned and clamped in the corresponding second positioning grooves, for positioning and connecting the two building block units connected in a horizontal splicing manner.

[0011] In summary, the beneficial effects of this application are:

[0012] 1. By arranging a first splicing block on the top of the masonry of the building block unit, and arranging a plurality of first positioning grooves on the first splicing block, and arranging a corresponding first splicing groove on the bottom of the masonry, and arranging a plurality of corresponding first positioning rods in the first splicing groove, the building block units to be spliced ​​and installed in the vertical direction are clamped in the first splicing groove through the first splicing block, and at the same time, the plurality of first positioning rods in the first splicing groove are clamped in the corresponding first positioning grooves, so that the building block units can be quickly positioned and spliced ​​in the vertical direction;

[0013] Second, by arranging a second splicing block on the side surface of the masonry of the building block unit, and arranging a plurality of second positioning grooves on the second splicing block, and arranging a corresponding second splicing groove on the other side surface of the masonry, and arranging a plurality of corresponding second positioning rods in the second splicing groove, the building block units spliced ​​and installed in the horizontal direction are clamped in the second splicing groove through the second splicing block, and at the same time, the plurality of second positioning rods in the second splicing groove are clamped in the plurality of first positioning grooves correspondingly arranged on the adjacent building block units, so that the building block units can be quickly positioned and spliced ​​in the horizontal direction, thereby improving the splicing and installation efficiency and splicing stability of the concrete blocks. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Other features, objects and advantages of the present application will become more apparent upon reading the detailed description of non-limiting embodiments made with reference to the following drawings:

[0015] Figure 1 This is a schematic diagram of the concrete block splicing structure of the utility model;

[0016] Figure 2 This is a front structural diagram of the utility model;

[0017] Figure 3 This is a rear view structural diagram of the utility model;

[0018] Figure 4 This is a schematic diagram of the bottom structure of the utility model.

[0019] Reference numerals in the figure: building block unit-100, masonry-110, first splicing groove-111, first positioning rod-1111, second splicing groove-112, second positioning rod-1121, first splicing block-120, first positioning groove-121, second splicing block-130, second positioning groove-131. DETAILED DESCRIPTION

[0020] The present application will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely for the purpose of explaining the relevant utility model and are not intended to limit the utility model. It should also be noted that, for ease of description, only the portions relevant to the utility model are shown in the accompanying drawings.

[0021] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0022] A concrete block with a spliced ​​structure, such as Figures 1-4 As shown, it includes a building block unit 100, and several building block units 100 are staggered and spliced ​​together to form a masonry wall 110; the building block unit 100 includes a masonry 110, a first splicing block 120 and a second splicing block 130. The first splicing block 120 is provided on the top of the masonry 110, and the first splicing groove 111 is provided on the bottom thereof, so that the two masonry units 110 spliced ​​together are connected by the first splicing block 120 and the first splicing groove 111, thereby completing the vertical splicing connection, and the second splicing block 130 is provided on the left side of the masonry 110, and the second splicing groove 112 is provided on the other side of the masonry 110, so that the two adjacent masonry units 110 are connected by the second splicing block 130 and the second splicing groove 112, thereby completing the horizontal splicing connection of the building block unit 100.

[0023] During the splicing installation of the concrete block units 100, the block units 100 at the bottom of the wall are snap-connected through the second splicing blocks 130 and the second splicing grooves 112 on the two adjacent block units 100, so that several block units 100 on the same horizontal line are spliced ​​and connected. During the splicing and installation of the block units 100 in the vertical direction of the wall, the first splicing grooves 111 set at the bottom of the upper block unit 100 are snap-connected with the first splicing blocks 120 on the block unit 100 below it, so that the block units 100 in the vertical direction of the wall are spliced ​​between the two horizontally spliced ​​block units 100, so that several block units 100 are spliced ​​and connected in a staggered manner, thereby improving the splicing and installation efficiency and stability of the concrete block units 100.

[0024] As a preferred embodiment, please refer to Figure 2 and Figure 4 The first splicing block 120 is a rectangular structure, and two first positioning grooves 121 are provided on its top. The first positioning groove 121 is a cylindrical structure, and the first splicing groove 111 is adapted to the structure of the first splicing block 120. Two corresponding first positioning rods 1111 are provided at its bottom, so that the two first positioning rods 1111 are clamped in the corresponding first positioning grooves 121, which are used for the vertical positioning and splicing connection of several building block units 100, thereby increasing the splicing and connection stability of the building block units 100 in the vertical direction.

[0025] As a preferred embodiment, please refer to Figure 2 and Figure 3 The second splicing block 130 is provided with a plurality of second positioning grooves 131, and the second positioning grooves 131 are cylindrical structures, and the second splicing groove 112 is provided with a corresponding plurality of second positioning rods 1121. The plurality of second positioning rods 1121 are evenly arranged in the second splicing groove 112, and the plurality of second positioning rods 1121 on two adjacent building block units 100 in the horizontal direction are positioned and clamped in the corresponding second positioning grooves 131, so that the two building block units 100 connected in a horizontal splicing manner are positioned and connected, thereby increasing the stability of the splicing connection of the building block units 100 in the horizontal direction.

[0026] The working principle of the concrete block with a splicing structure of the utility model is:

[0027] During the splicing installation of the concrete block units 100, the block units 100 at the bottom of the wall are connected by the second splicing blocks 130 and the second splicing grooves 112 on the two adjacent block units 100, so that a plurality of block units 100 on the same horizontal line are spliced ​​and connected, and a plurality of second positioning grooves 131 are provided on the second splicing blocks 130, and a corresponding plurality of second positioning rods 1121 are provided in the second splicing grooves 112. The plurality of second positioning rods 1121 are snapped into the plurality of second positioning grooves 131, so that the block units 100 spliced ​​and connected in the horizontal direction are positioned and spliced, thereby improving the splicing stability of the block units 100 in the horizontal direction. During the splicing and installation process of the block units 100 in the vertical direction of the wall, The first splicing groove 111 provided at the bottom of the upper block unit 100 is snap-connected with the first splicing block 120 on the block unit 100 below it, and a plurality of first positioning rods 1111 are provided on the first splicing groove 111, so that the first positioning rods 1111 are positioned and snap-connected in the first positioning groove 121 provided on the lower block unit 100, so that the vertical block unit 100 is positioned and connected during the process, and the splicing stability of the vertical block unit 100 is increased, and at the same time, the vertical block unit 100 on the wall is spliced ​​between the two horizontally spliced ​​block units 100, so that the plurality of block units 100 are spliced ​​and connected in a staggered manner, thereby improving the splicing and installation efficiency and the stability of the concrete block unit 100.

[0028] The beneficial effects of the concrete block with a splicing structure of the utility model are:

[0029] 1. By setting a first splicing block 120 on the top of the masonry 110 of the building block unit 100, and setting a plurality of first positioning grooves 121 on the first splicing block 120, and setting a corresponding first splicing groove 111 at the bottom of the masonry 110, and setting a corresponding plurality of first positioning rods 1111 in the first splicing groove 111, the building block unit 100 spliced ​​and installed in the vertical direction is clamped in the first splicing groove 111 through the first splicing block 120, and at the same time, the plurality of first positioning rods 1111 in the first splicing groove 111 are clamped in the corresponding first positioning groove 121, so that the building block unit 100 can be quickly positioned and spliced ​​in the vertical direction, thereby improving the vertical splicing stability and splicing efficiency of the building block unit 100;

[0030] Second, by setting a second splicing block 130 on the side of the masonry 110 of the block unit 100, and setting a plurality of second positioning grooves 131 on the second splicing block 130, and setting a corresponding second splicing groove 112 on the other side of the masonry 110, and setting a corresponding plurality of second positioning rods 1121 in the second splicing groove 112, the block unit 100 spliced ​​and installed in the horizontal direction can be clamped in the second splicing groove 112 through the second splicing block 130, and at the same time, the plurality of second positioning rods 1121 in the second splicing groove 112 are clamped in the plurality of first positioning grooves 121 correspondingly set on the adjacent block unit 100, so that the block unit 100 can be quickly positioned and spliced ​​in the horizontal direction, thereby improving the splicing and installation efficiency and splicing stability of the concrete block unit 100.

[0031] The above description is merely an illustration of the preferred embodiments of this application and the technical principles employed. Furthermore, the scope of the utility model disclosed in this application is not limited to the technical solutions formed by the specific combination of the above-mentioned technical features. It also encompasses other technical solutions formed by any combination of the above-mentioned technical features or their equivalents without departing from the concept of the utility model. For example, a technical solution formed by replacing the above-mentioned features with (but not limited to) technical features with similar functions disclosed in this application.

Claims

1. A concrete block with a splicing structure, comprising a block unit (100), wherein a plurality of the block units (100) are spliced ​​together, and wherein: The building block unit (100) comprises a masonry (110), a first splicing block (120) and a second splicing block (130); the first splicing block (120) is provided on the top of the masonry (110), and the first splicing groove (111) is provided on the bottom thereof, so that the two masonry bodies (110) spliced ​​together are connected by clamping through the first splicing block (120) and the first splicing groove (111); the second splicing block (130) is provided on the left side of the masonry (110), and the second splicing groove (112) is provided on the other side of the masonry (110), so that the two adjacent masonry bodies (110) are connected by clamping through the second splicing block (130) and the second splicing groove (112); The first splicing groove (111) is structurally compatible with the first splicing block (120), and two corresponding first positioning rods (1111) are provided at the bottom thereof, so that the two first positioning rods (1111) are clamped in the corresponding first positioning grooves (121) for positioning and splicing a plurality of the building block units (100); The second splicing block (130) is provided with a plurality of second positioning grooves (131); A plurality of second positioning rods (1121) are provided on the second splicing groove (112), and the plurality of second positioning rods (1121) are evenly arranged in the second splicing groove (112), and the plurality of second positioning rods (1121) on two adjacent building block units (100) are positioned and clamped in the corresponding second positioning grooves (131), so as to position and connect the two building block units (100) connected in a horizontal splicing manner.

2. The concrete block with a splicing structure according to claim 1, characterized in that: The first splicing block (120) is a rectangular structure, and two first positioning grooves (121) are provided on the top thereof.

Citation Information

Patent Citations

  • Splicing structure of combined concrete blocks

    CN218990642U