Enclosing wall and preparation mold

By using side design and mold manufacturing technology for the wall units, the problems of low structural strength and connection strength of the wall were solved, resulting in a stable wall structure and a convenient assembly process.

CN223577382UActive Publication Date: 2025-11-21SHANDONG TONGYUAN DESIGN GRP +1
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Patent Information

Application Number
CN202422609092.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-11-21
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The existing walls have low structural strength and connection strength, and poor splicing stability.

Method used

The side of the wall unit is designed as a first connecting side and a second connecting side, with a first connecting platform and a second connecting groove respectively. The splicing and base connection are achieved through hollow holes and connecting sleeves, and a stable wall structure is formed by combining mold preparation technology.

Benefits of technology

It improves the stability and splicing stability of the wall, reduces the weight and increases the strength of the wall units, ensures the connection stability with the base, and enhances the ease of wall assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the enclosing wall and the preparation mold, the side edges of every two adjacent enclosing wall units are mutually spliced, and the corresponding splicing structures are arranged in the multiple positions in the vertical direction, so that the splicing stability of every two adjacent enclosing wall units is guaranteed under the multiple splicing structures, the stability of the enclosing wall is guaranteed, and meanwhile, the production efficiency of the enclosing wall is improved. The enclosing wall units are hollowed out at intervals so that the weight of the enclosing wall units can be reduced, the strength of the enclosing wall units can be guaranteed, connecting sleeves are integrally embedded in the bottoms of the enclosing wall units, the enclosing wall units are connected to a base through the connecting sleeves, and therefore the enclosing wall units can be connected to the base through the connecting sleeves. According to the enclosure wall, the connection stability of the enclosure wall units and the base is guaranteed, the splicing stability of every two adjacent enclosure wall units is guaranteed, the multiple enclosure wall units are fully utilized, the enclosure wall is formed by the enclosure wall units, and the assembly convenience and stability of the enclosure wall are guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fences, in particular to a fence and a preparation mold. BACKGROUND

[0002] With the development of science and technology, fences are gradually applied to people's lives. The fence is composed of multiple fence units, and the opposite two side walls of adjacent two fence units are connected by fitting. However, such a fence has low structural strength and connection strength, and poor splicing stability. CONTENT OF THE UTILITY MODEL

[0003] The present application aims to provide a fence and a preparation mold and method to solve at least part of the above problems.

[0004] To achieve the above purpose, the present application provides the following technical solutions:

[0005] A fence comprises multiple fence units, and the side edges of adjacent two fence units are spliced with each other. The fence units are spaced apart and hollowed out, and a connecting sleeve is integrally embedded at the bottom for connecting a base.

[0006] Optionally, the two side edges of the fence unit are a first connecting side edge and a second connecting side edge. The first connecting side edge is spaced apart and layered from top to bottom to form a first connecting platform and a first connecting groove. The second connecting side edge is provided with a second connecting groove at the same height as the first connecting platform, and the second connecting side edge is provided with a second connecting platform at the same height as the first connecting groove.

[0007] The first connecting platform and the second connecting groove at the same height are shape matched, and the second connecting platform and the first connecting groove at the same height are shape matched, so that the first connecting edge of the fence unit and the second connecting edge of the adjacent fence unit are adapted and embeddedly connected.

[0008] Optionally, the first connecting platform and the second connecting platform are solid structures, and multiple solid support bodies are uniformly arranged on the same height layer of the first connecting platform and the second connecting platform on the fence unit.

[0009] A mold for preparing a fence, the mold is provided with a bottom mold plate, a module unit, and a fence;

[0010] The bottom mold plate is provided with a unit hole position corresponding to the module unit.

[0011] The module unit matches the corresponding unit hole position and is located in the internal space of the bottom mold plate.

[0012] The enclosure is arranged outside the module monomer relative to the outer contour of the bottom mold plate, and has a pouring gap between the enclosure and the module monomer, at this time, concrete pouring is carried out along the pouring gap, and the enclosure wall unit is formed, and is separated from the module monomer after molding.

[0013] The enclosure wall is formed based on the connection of a plurality of the enclosure wall units.

[0014] Optionally, the module monomer is a silica gel block, and is pre-cast molded by using a molding mold.

[0015] Optionally, a plurality of the module monomers are arranged in a flush manner, and the outer surfaces of each module monomer away from the side of the bottom mold plate are connected to each other by connecting rods.

[0016] Optionally, the enclosure is connected with a connecting sleeve, and the connecting sleeve is arranged in the pouring gap.

[0017] After the enclosure wall unit is molded, the connecting sleeve is embedded in the enclosure wall unit.

[0018] Compared with the prior art, the application has the following beneficial effects:

[0019] The side edges of two adjacent enclosure wall units are spliced with each other, and corresponding splicing structures are arranged along a plurality of positions in the up-down direction, so as to ensure the splicing stability of the two adjacent enclosure wall units under the plurality of splicing structures, thereby ensuring the stability of the enclosure wall. Meanwhile, the enclosure wall units are arranged in a spaced-apart manner and are hollowed out, so as to reduce the weight of the enclosure wall units and ensure the strength of the enclosure wall units. The connecting sleeve is integrally embedded at the bottom of the enclosure wall unit, and is used to connect the enclosure wall unit to the base through the connecting sleeve. The enclosure wall unit is connected to the base through the connecting sleeve, so as to ensure the connection stability of the enclosure wall unit and the base and the splicing stability of the two adjacent enclosure wall units. The plurality of enclosure wall units are fully utilized, and the enclosure wall is formed by the enclosure wall units, so as to ensure the assembly convenience and stability of the enclosure wall. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0021] In order to more completely understand the application and its beneficial effects, the following will be described with reference to the drawings. In the following description, the same reference numerals represent the same parts.

[0022] Figure 1 is a schematic view of a fence in an embodiment of the present application;

[0023] Figure 2 is a schematic view of a fence unit in an embodiment of the present application;

[0024] Figure 3 is a schematic view of a mold in an embodiment of the present application (without module unit);

[0025] Figure 4 is an exploded view of a mold in an embodiment of the present application;

[0026] Figure 5 is a partial enlarged view of Figure 4 ;

[0027] Figure 6 is a schematic view of a mold assembly in another embodiment of the present application;

[0028] Figure 7 is a schematic view of a fence unit in an embodiment of the present application;

[0029] Figure 8 is a partial enlarged view of Figure 7 ;

[0030] Figure 9 is a schematic view of a mold in an embodiment of the present application in a pouring completion state;

[0031] Figure 10 is a flowchart of a method for preparing a fence in an embodiment of the present application.

[0032] Reference signs

[0033] 100, fence;

[0034] 10, fence unit; 11, first connecting side; 111, first connecting platform; 112, first connecting groove; 12, second connecting side; 121, second connecting groove; 122, second connecting platform; 13, solid support body; 13a, hollow hole;

[0035] 200, mold; 210, bottom mold plate; 220, module unit; 221, unit hole site; 230, fence; 240, connecting sleeve; 250, connecting rod. DETAILED DESCRIPTION

[0036] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0037] Please refer to the drawings of the embodiments of the present application Figures 1-5 The present application provides a fence 100, which is a kind of wall and is applied to people's life. The fence 100 comprises a plurality of fence units 10, which are sub-units in the fence 100. The side edges of adjacent two fence units 10 are spliced with each other, so as to splice the adjacent two fence units 10 along the horizontal direction, thereby ensuring the splicing stability of the adjacent two fence units 10.

[0038] Meanwhile, the corresponding splicing structures are arranged at a plurality of positions in the up-down direction between the adjacent two fence units 10, so as to ensure the splicing stability of the adjacent two fence units 10 under the plurality of splicing structures, thereby ensuring the stability of the fence 100. The adjacent two fence units 10 are limited in multiple directions in the splicing state, and the splicing stability of the adjacent two fence units 10 is ensured.

[0039] Please refer to the drawings of the embodiments of the present application Figures 1-2 In the embodiments of the present application, the two side edges of the fence unit 10 are respectively a first connecting side edge 11 and a second connecting side edge 12. The first connecting side edge 11 is provided with a first connecting platform 111 and a first connecting groove 112 which are spaced apart from each other from top to bottom. The second connecting side edge 12 is provided with a second connecting groove 121 at the same height as the first connecting platform 111, and a second connecting platform 122 at the same height as the first connecting groove 112.

[0040] At this time, the first connecting platform 111 at the same height layer is matched with the second connecting groove 121 in shape, so as to splice the first connecting platform 111 with the second connecting groove 121, thereby forming the corresponding splicing structure. In addition, the second connecting platform 122 at the same height layer is matched with the first connecting groove 112 in shape, so as to splice the second connecting platform 122 with the first connecting groove 112, thereby forming the corresponding splicing structure. At this time, the plurality of splicing structures are arranged in sequence along the up-down direction and staggered, so as to splice the adjacent two fence units 10 through the plurality of splicing structures, thereby ensuring the splicing stability of the adjacent two fence units 10. The fence 100 is formed by the plurality of fence units 10, thereby ensuring the stability of the fence 100.

[0041] Therefore, the first connecting platform 111 at the same height layer is matched with the second connecting groove 121, and the second connecting platform 122 at the same height layer is matched with the first connecting groove 112, so that the first connecting edge of the fence unit 10 is matched with the second connecting edge of the adjacent fence unit 10 and connected.

[0042] Please refer to the accompanying drawings Figures 1-2 In the embodiment of the present application, the first connecting platform 111 and the second connecting platform 122 are solid structures, and a plurality of solid support bodies 13 are uniformly arranged on the same height layer of the first connecting platform 111 and the second connecting platform 122 on the fence unit 10, so as to form hollow holes 13a between the plurality of solid support bodies 13, and the adjacent two hollow holes 13a are arranged at intervals, so that the fence unit 10 is arranged at intervals, so as to reduce the weight of the fence unit 10 and ensure the strength of the fence unit 10.

[0043] In addition, the plurality of solid support bodies 13 are arranged at intervals along the horizontal direction or the vertical direction and serve as support components of the fence unit 10, so as to ensure the strength of the fence unit 10 through the plurality of solid support bodies 13 and improve the load of the fence unit 10, thereby improving the overall load and overall strength of the fence 100.

[0044] In the embodiment of the present application, the adjacent two fence units 10 are spliced through the splicing structure and spliced along the horizontal direction, and the connection sleeve is integrally embedded at the bottom of each fence unit 10 and used to connect the base, so that each fence unit 10 is connected to the base, thereby constructing the connection state of each fence unit 10 and the base, so as to ensure that each fence unit 10 has a connection force in the horizontal direction and the vertical direction, thereby ensuring the stability of each fence unit 10 in multiple directions.

[0045] Therefore, the connection stability of the fence unit 10 and the base is ensured, and the splicing stability of the adjacent two fence units 10 is ensured, the plurality of fence units 10 are fully utilized, and the fence 100 is constructed by the fence units 10, thereby ensuring the assembly convenience and stability of the fence 100.

[0046] In addition, in the structure of the fence 100, the required area of the user is collected, and a plurality of sub-areas are defined based on the required area of the user and the area template of the fence unit 10, and the corresponding fence unit 10 is matched based on the plurality of sub-areas, so as to control the overall area required by the user, thereby defining a plurality of sub-areas based on the area required by the user and the area template of the fence unit 10.

[0047] At this time, a plurality of sub-areas are introduced, and corresponding wall units 10 are matched for the plurality of sub-areas, so as to size the wall units 10 and ensure the size uniformity of the plurality of wall units 10, thereby reasonably arranging the plurality of wall units 10.

[0048] Therefore, in the wall 100, the area template of the wall unit 10 is collected, and the area comparison is performed according to the plurality of area templates and the area required by the user, so as to define a plurality of sub-areas, and the plurality of sub-areas correspond to the area template respectively. At this time, the area template of the wall unit 10 is matched with the corresponding standard wall unit 10, and the wall 100 is constructed based on the plurality of standard wall units 10.

[0049] According to the standard wall unit 10, the area template of the wall unit 10 is controlled, so as to standardize the wall unit 10, further ensure the size uniformity of the plurality of wall units 10, and further standardize the wall unit 10, so as to avoid the splicing of the plurality of wall units 10 with different sizes, and ensure the standardization and production convenience of the plurality of wall units 10.

[0050] In the embodiment of the present application, the connection nodes of the wall 100 are defined based on the connection between the first connecting table 111 and the second connecting groove 121, and the connection between the second connecting table 122 and the first connecting groove 112, so as to present a splicing structure based on the connection nodes. A plurality of connection nodes are introduced, and the plurality of connection nodes are controlled, thereby optimizing the position distribution of the plurality of connection nodes and ensuring the splicing stability of the two adjacent wall units 10.

[0051] At this time, a plurality of connection nodes are collected, and a connection node distribution map is defined based on the plurality of connection nodes and the three-dimensional model of the wall 100. The node distribution map is traversed, and the connection force distribution of the plurality of connection nodes is triggered. The mechanical distribution map of the wall 100 is constructed according to the connection force distribution of the plurality of connection nodes, thereby performing mechanical detection on the wall 100, so as to control the connection force distribution of the plurality of connection nodes, and further control the mechanical system of the wall 100 according to the connection force distribution of the plurality of connection nodes. Optionally, each connection node is positioned, and stress analysis is performed on each connection node, so as to determine the connection force of each connection node, thereby controlling the connection force of each connection node. At the same time, the relative arrangement between each connection node is introduced, and the connection force size relationship of different connection nodes is defined according to the relative arrangement between each connection node and the connection force size of each connection node, thereby presenting the connection state of different connection nodes.

[0052] Therefore, the mechanical distribution diagram is traversed, and the mechanical abnormality of the mechanical distribution diagram is defined, and the dynamic optimization of the plurality of connection nodes is triggered based on the mechanical abnormality of the mechanical distribution diagram, so as to further optimize the position part of the plurality of connection nodes, thereby ensuring the rationality of the mechanical distribution diagram, and further optimizing the mechanical abnormality of the mechanical distribution diagram, reducing the mechanical influence of the mechanical abnormality of the mechanical distribution diagram on the enclosing wall 100, and ensuring the stability of the enclosing wall 100. Optionally, the mechanical distribution diagram is traversed, and a connection force threshold is introduced. The connection force of each connection node is compared with the connection force threshold. If the connection force of the connection node is less than the connection force threshold, the corresponding connection node is defined as an abnormal node, and the mechanical abnormality of the connection node is defined, so as to trigger the mechanical optimization of the connection node according to the mechanical abnormality of the connection node. The mechanical optimization mode is to increase the connection force of the corresponding connection node, such as modifying the size of the connection part, the connection matching length, etc., until the connection force threshold is reached.

[0053] Please refer to the accompanying Figures 3-9 The embodiment of the application provides a mold 200 for preparing the enclosing wall 100. The mold 200 is used to prepare the enclosing wall 100. The mold 200 comprises a bottom mold plate 210, a module monomer 220 and a surrounding fence 230.

[0054] The bottom mold plate 210 is provided with a monomer hole position corresponding to the module monomer 220. The module monomer 220 matches the corresponding monomer hole position 221 and is located in the internal space of the bottom mold plate 210. The surrounding fence 230 is located outside the module monomer 220 and is arranged relative to the external contour of the bottom mold plate 210. The surrounding fence 230 and the module monomer 220 have a pouring gap therebetween. At this time, the concrete is poured along the pouring gap to form the enclosing wall unit 10, which is separated from the module monomer 220 after several hours of molding. The enclosing wall 100 is formed by connecting a plurality of enclosing wall units 10, thereby realizing the formation of the enclosing wall 100.

[0055] Further, the monomer hole position 221 of the bottom mold plate 210 is fully utilized, and the module monomer 220 is matched with the monomer hole position 221, so as to ensure the dimensional stability of the module monomer 220 and limit the shape of the module monomer 220 based on the monomer hole position 221.

[0056] In addition, the surrounding fence 230 and the module monomer 220 have a pouring gap therebetween, so as to pour the concrete into the pouring gap to form the enclosing wall unit 10, thereby ensuring the concrete molding of the enclosing wall unit 10 and ensuring the dimensional stability of the enclosing wall unit 10. Optionally, the module monomer 220 is a silica gel block and is pre-molded by using the molding mold 200.

[0057] The plurality of module units 220 are arranged in flush, and the outer surfaces of each module unit 220 away from the side of the bottom template are connected to each other through the connecting rods 250. The connecting of each module unit 220 through the connecting rods 250 can ensure the relative position stability between each module unit 220 to form a whole, and the connecting force of the adjacent module units 220 can fix the single module unit 220 to avoid the shaking in the liquid pouring material. The connection of each module unit 220 into a whole structure can make the slight floating be the whole linkage, so as to avoid the irregular floating of each module unit 220 up and down and left and right during pouring to cause the serious deformation or the specification size change of the final pouring forming demolding product.

[0058] After the forming for several hours, the module units 220 are separated from the mold; the surrounding walls 100 are formed based on the connection of the plurality of surrounding wall units 10, so as to realize the formation of the surrounding walls 100.

[0059] In addition, the surrounding barriers 230 are connected with the connecting sleeves 240, and the connecting sleeves 240 are in the pouring gap; after the forming of the surrounding wall units 10, the connecting sleeves 240 are embedded in the surrounding wall units 10, at this time, the connecting sleeves 240 are at the bottom of the surrounding wall units 10, and the connecting sleeves 240 are used to connect the base through the connecting sleeves 240, so as to connect the surrounding wall units 10 to the base, so as to construct the connection state of the surrounding wall units 10 and the base, so as to ensure that the surrounding wall units 10 have the connecting force in the horizontal direction and the up and down direction, and further ensure the stability of the surrounding wall units 10 in multiple directions.

[0060] Please refer to the accompanying drawings Figure 10 The embodiment of the application provides a method for preparing a surrounding wall, which comprises the following steps:

[0061] S10, matching the module units 220 to the unit hole positions 221 of the bottom template;

[0062] S20, sequentially sorting the plurality of module units 220 in the internal space of the bottom template;

[0063] S30, arranging the surrounding barriers on the outer side of the module units 220, and the surrounding barriers and the module units 220 have the pouring gap therebetween;

[0064] S40, pouring the concrete along the pouring gap to form the surrounding wall units;

[0065] S50, connecting the plurality of surrounding wall units to form the surrounding walls.

[0066] The application provides a fence 100 and a preparation mold 200 and a method, side edges of two adjacent fence units 10 are spliced with each other, corresponding splicing structures are arranged at multiple positions in the up-down direction, so that the splicing stability of the two adjacent fence units 10 is ensured at the multiple splicing structures, thereby ensuring the stability of the fence 100, meanwhile, the fence units 10 are arranged at intervals and are hollowed out, so that the weight of the fence units 10 is reduced, and the strength of the fence units 10 is ensured, a connecting sleeve 240 is integrally embedded at the bottom of the fence unit 10, the fence unit 10 is arranged on the base through the connecting sleeve 240, so that the fence unit 10 is arranged on the base through the connecting sleeve 240, the connection stability of the fence unit 10 and the base is ensured, and the splicing stability of the two adjacent fence units 10 is ensured, the multiple fence units 10 are fully utilized, and the fence 100 is formed by the fence units 10, so that the assembly convenience and the stability of the fence 100 are ensured.

[0067] In the description of the application, the terms "first", "second" are only used for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more features.

[0068] The principles and implementation modes of the application are described by using specific examples in the present application, and the above example descriptions are only used to help understand the method of the application and its core idea; meanwhile, for those skilled in the art, according to the idea of the application, the specific implementation modes and application ranges will have changes, and on the basis of the above, the content of the specification should not be understood as the limitation of the application.

Claims

1. A fence, characterized in that The wall comprises a plurality of wall units, the side edges of two adjacent wall units are spliced with each other, and the wall units are spaced apart and provided with a hollow structure, and a connecting sleeve is integrally embedded at the bottom of the wall unit for connecting a base through the connecting sleeve; The two side edges of the wall unit are a first connecting side edge and a second connecting side edge, the first connecting side edge is provided with a first connecting platform and a first connecting groove at different heights from top to bottom, the second connecting side edge is provided with a second connecting groove at the same height as the first connecting platform, and the second connecting side edge is provided with a second connecting platform at the same height as the first connecting groove. The first connecting platform and the second connecting groove at the same height are matched in shape, and the second connecting platform and the first connecting groove at the same height are matched in shape, so that the first connecting edge of the wall unit is matched with the second connecting edge of the adjacent wall unit and is connected by fitting.

2. The wall according to claim 1, wherein The first connecting platform and the second connecting platform are solid structures, and a plurality of solid support bodies are uniformly arranged at the same height as the first connecting platform and the second connecting platform on the wall unit.

3. A mold for making a fence, characterized in that, The mold is provided with a bottom mold plate, a module unit and a fence; The bottom mold plate is provided with a single hole position corresponding to the module unit; The module unit matches the corresponding single hole position and is located in the internal space of the bottom mold plate; The fence is located outside the module unit and is arranged relative to the outer contour of the bottom mold plate, and the fence and the module unit have a pouring gap therebetween, at this time, concrete is poured along the pouring gap, and the wall unit is formed, and after molding, it is separated from the module unit; The wall is formed based on the connection of a plurality of wall units.

4. The mold for making a fence of claim 3, wherein, The module unit is a silica gel block and is pre-molded by a molding mold.

5. The mold for making a fence of claim 3 wherein, The module unit has a plurality of module units arranged in a flush manner, and the outer surfaces of the module units away from the bottom mold plate are connected to each other by connecting rods.

6. The mold for making a fence of claim 3, wherein, The fence is connected with a connecting sleeve, and the connecting sleeve is located in the pouring gap; After the wall unit is formed, the connecting sleeve is embedded in the wall unit.