Building material module and showing stand

By using the socket and plug-in design of the building material modules, the problems of troublesome frame connection and insufficient load-bearing capacity of aluminum profiles are solved, achieving efficient assembly and enhanced stability.

CN223860508UActive Publication Date: 2026-02-03BEIJING ZHUANZHUAN SPIRIT TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520358297.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-02-03
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

The existing frame structure is difficult to connect, and the aluminum profile columns have poor load-bearing capacity, resulting in unsatisfactory frame stability and strength, and low assembly efficiency.

Method used

The building material module design includes a support body, a top frame, and a base. The top frame, support body, and base are detachably connected through the interlocking of the sleeve holes and kits. The hollow design of the support body reduces weight and cost, and the support strength is enhanced by the top and bottom kits.

Benefits of technology

Modular production was achieved, which improved assembly efficiency, enhanced structural stability and strength, and reduced production cycle and cost.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223860508U_ABST
    Figure CN223860508U_ABST
Patent Text Reader

Abstract

The utility model provides a building material module and a showing stand, the building material module comprises a plurality of supporting main bodies, a top frame and a base, each supporting main body is provided with a sleeve hole, and the sleeve holes penetrate through the supporting main bodies. A top sleeve piece is arranged at one end of the top frame and used for being inserted into a sleeve hole in one end of the supporting body, so that the top frame is connected to the supporting body. The base is provided with a bottom sleeve piece which is used for being inserted into a sleeve hole in the other end of the supporting body, so that the base is connected to the supporting body. The building material module is easy to assemble, and the stability and strength of the structure can be improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of building materials technology, and in particular to a building materials module and display rack. Background Technology

[0002] The island counters in shopping malls require a frame structure. This frame serves to enhance overhead lighting, display logos and signs, and showcase designs. The frame typically consists of multiple interconnected sections; for example, in related technologies, a frame may include a top frame, a bottom frame, and a central support structure.

[0003] The connection of the various frame structures in the related technologies is relatively complicated, resulting in low assembly efficiency. Moreover, the support frames in these technologies generally use aluminum profile columns, which are all European standard. The aluminum in the columns has a low density, which can reduce the weight of the support frame, but the load-bearing capacity of the aluminum profile columns is poor, resulting in the overall stability and strength of the frame being less than ideal. Utility Model Content

[0004] This application provides a building material module and a display rack. The building material module is easy to assemble and can increase the stability and strength of the structure.

[0005] This application provides a building material module, including multiple supporting bodies, a top frame and a base, each of the supporting bodies being provided with a sleeve hole that penetrates the supporting body;

[0006] A top frame, one end of which is provided with a top fitting, the top fitting being inserted into a sleeve hole at one end of the support body, thereby connecting the top frame to the support body; and

[0007] The base is provided with a bottom fitting, which is used to insert into a sleeve hole at the other end of the support body, so that the base is connected to the support body.

[0008] The building material module provided in this application is divided into an independent top frame, a supporting body, and a base. The top frame and the supporting body can be detachably connected by the insertion and engagement of the top fitting and the sleeve hole. The base and the supporting body can be detachably connected by the insertion and engagement of the bottom fitting and the sleeve hole. Thus, the entire building material module can be divided into multiple modular structures. These multiple modular structures can be manufactured separately, reducing the production cycle and increasing production efficiency. Furthermore, the top frame, the supporting body, and the base are relatively easy to connect, making the building material module easier to assemble.

[0009] Furthermore, the support body of this application is hollow by setting a sleeve hole, which can not only reduce the manufacturing cost of the support body, but also reduce the weight of the support body. Moreover, by inserting both the top and bottom kits into the sleeve hole, this application can compensate for the problem of low strength caused by the hollow support body, thereby increasing the support strength of the support body.

[0010] In one possible implementation, the support body includes an outer sleeve, with the sleeve hole extending through the outer sleeve along its length.

[0011] In one possible implementation, the building material module includes multiple top frames, which are connected end to end to form a ring structure, and the top fitting is provided at the connection position of two adjacent top frames.

[0012] In one possible implementation, the top frame includes a connecting portion, wherein the connecting portion between two adjacent top frames is detachably connected.

[0013] In one possible implementation, the supporting body is further provided with a side groove, in which a display component is inserted, and the two ends of the display component are respectively connected to the top frame and the base.

[0014] In one possible implementation, the support body further includes a plurality of external portions spaced apart around the peripheral wall of the outer sleeve, and the gap between two adjacent external portions forms the side groove.

[0015] In one possible implementation, the outer casing has a square structure, and four external connectors are provided, with the four external connectors forming side grooves on the four sides of the outer casing.

[0016] In one possible implementation, the top frame has a positioning groove at one end facing the base, and the base has an insertion groove at one end facing the top frame. The two ends of the display piece are respectively inserted into the positioning groove and the insertion groove.

[0017] In one possible implementation, the base includes a support, which is spaced apart from the bottom kit, such that when the bottom kit is inserted into the sleeve hole, the support can be inserted into the side groove, and the support has the insertion groove at one end facing the top frame.

[0018] In one possible implementation, an illumination element is also provided within the side groove, the illumination element being arranged along the opening path of the side groove. Attached Figure Description

[0019] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0020] Figure 1 An exploded view of the building material module provided in the embodiments of this application;

[0021] Figure 2 A schematic diagram of the supporting structure provided in the embodiments of this application;

[0022] Figure 3 A top view of the supporting body provided in the embodiments of this application;

[0023] Figure 4 A cross-sectional view of a portion of the structure of the building material module provided in the embodiments of this application;

[0024] Figure 5 This is a schematic diagram of the structure of the base provided in an embodiment of this application;

[0025] Figure 6 This is a structural diagram of a building material module when installing different numbers of display pieces, provided in an embodiment of this application.

[0026] Figure 7 This is a structural schematic diagram of a building material module with a support body of different heights provided in an embodiment of this application.

[0027] Explanation of reference numerals in the attached figures:

[0028] 10. Support body; 11. Outer sleeve; 111. Sleeve hole; 12. External connection part; 13. Side groove; 20. Top frame; 21. Frame body; 211. Groove; 212. Positioning groove; 213. Connecting part; 2131. Connecting end face; 22. Top sleeve; 23. Insertion part; 30. Base; 31. Base plate; 32. Support; 321. Insertion groove; 322. Protruding edge; 33. Bottom sleeve; 40. Display piece; 50. Lighting piece.

[0029] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0030] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0031] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will be described below with reference to the accompanying drawings.

[0032] This application provides a building material module and a display rack, which is used for hanging signs and displaying products. The display rack of this application includes multiple building material modules, which can be connected together to form a display rack.

[0033] See Figure 1 As shown, in one possible implementation, the building material module provided in this application includes a support body 10, a top frame 20, and a base 30, with the support body 10 serving as a support component of the building material module.

[0034] When multiple building material modules are connected to form a display rack, the support body 10 serves as a support structure for the display rack in different positions, supporting the top frame 20. In this embodiment, both the top frame 20 and the base 30 are connected to the support body 10. The top frame 20 serves as the top structure of the display rack, and the base 30 serves as the bottom structure of the display rack. The top frame 20 and the base 30 are spaced apart, and the support body 10 is located between the top frame 20 and the base 30. The base 30 is used to place on a supporting surface such as the ground, providing a contact point for the building material modules to contact the supporting surface.

[0035] The supporting body 10 of this application is provided with a sleeve hole 111, which penetrates the supporting body 10, making the supporting body 10 a hollow structure. This helps to save materials used in manufacturing the supporting body 10, reduce costs, and reduce the weight of the supporting body 10. When the supporting body 10 is located between the top frame 20 and the base 30, the end closer to the top frame 20 is used to connect to the top frame 20, and the end closer to the base 30 is used to connect to the base 30. Both ends of the supporting body 10 used to connect to the top frame 20 and the base 30 are provided with sleeve holes 111. Therefore, the supporting body 10 can not only serve to support the top frame 20, but also serve as a connecting part 213 of the building material module, connecting the top frame 20 and the base 30 together to form a building material module structure.

[0036] A top fitting 22 is provided at one end of the top frame 20. The top fitting 22 is used to be inserted into the sleeve hole 111 at one end of the support body 10, so that the top frame 20 is connected to the support body 10.

[0037] The base 30 is provided with a base kit 33, which is used to insert into the sleeve hole 111 at the other end of the support body 10, so that the base 30 is connected to the support body 10.

[0038] It should be noted that the top fitting 22 has the same external dimensions as the sleeve hole 111, so that the top fitting 22 can fit into the sleeve hole 111. The bottom fitting 33 has the same external dimensions as the sleeve hole 111, so that the bottom fitting 33 can fit into the sleeve hole 111.

[0039] When the top kit 22 of this application is inserted into the sleeve hole 111, the top frame 20 presses against the support body 10 by gravity, so that the top frame 20 is not easy to detach from the support body 10. When the bottom kit 33 is inserted into the sleeve hole 111, the gravity of the support body 10 and the top frame 20 is applied to the base 30, so that the bottom kit 33 is not easy to detach from the sleeve hole 111.

[0040] It should be noted that when the top and bottom components of this application are inserted into the sleeve holes, they extend along the opening path of the sleeve holes. The top and bottom components are inserted into the support body from opposite ends of the support body. Therefore, when the top and bottom components are inserted into the support body, they move towards each other.

[0041] When the top and bottom fittings of this application are inserted into the support body, their ends located in the sleeve holes abut against each other.

[0042] This application divides the building material module into an independent top frame 20, a support body 10, and a base 30. The top frame 20 and the support body 10 can be detachably connected by the insertion and engagement of the top fitting 22 and the sleeve hole 111. The base 30 and the support body 10 can be detachably connected by the insertion and engagement of the bottom fitting 33 and the sleeve hole 111. Thus, the entire building material module can be divided into multiple modular structures. These multiple modular structures can be manufactured separately, reducing the production cycle and increasing production efficiency. Furthermore, the top frame 20, the support body 10, and the base 30 are relatively easy to connect, making the building material module easier to assemble.

[0043] Furthermore, the support body 10 of this application is hollow by setting a sleeve hole 111, which can not only reduce the manufacturing cost of the support body 10, but also reduce the weight of the support body 10. Moreover, by inserting the top kit 22 and the bottom kit 33 into the sleeve hole 111, the length of the top kit 22 and the bottom kit 33 can be set to fill the sleeve hole, thereby compensating for the problem of low strength caused by the hollow interior of the support body 10 and increasing the support strength of the support body 10.

[0044] See Figures 1 to 3 As shown, in some possible implementations, the support body 10 includes an outer sleeve 11, which is used to connect with the top frame 20 and the base 30. The outer sleeve 11 of this application can be made of metal material by mold casting. The outer sleeve 11 can be made of aluminum material, stainless steel material, etc., and is not limited in this application.

[0045] The outer casing 11 of this application is a column structure with a certain length. While ensuring its supporting strength, its width dimension is minimized as much as possible. The length dimension of the outer casing 11 of this application is not limited and needs to be determined according to the actual product to be displayed and the actual display location. In one example, the length of the outer casing 11 is 2200mm-3000mm.

[0046] When the sleeve hole 111 passes through the outer sleeve 11, the lengths of the top sleeve 22 and the bottom sleeve 33 can be set so that the sum of the lengths of the top sleeve 22 and the bottom sleeve 33 is equal to the length of the sleeve hole 111 (or the length of the outer sleeve 11). In this way, when the top sleeve 22 and the bottom sleeve 33 are inserted into the sleeve hole 111, the end of the top sleeve 22 can abut against the end of the bottom sleeve 33.

[0047] For example, the length of the bottom fitting 33 may be different from the length of the top fitting 22, as long as the sum of their lengths is equal to the length of the sleeve hole 111.

[0048] For example, the length of the bottom fitting 33 can be equal to the length of the top fitting 22, so that when the bottom fitting 33 and the top fitting 22 are inserted into the sleeve hole 111, they can equally divide the space inside the sleeve hole 111.

[0049] In one example, the top kit 22 and the bottom kit 33 may be made of the same or different materials. To increase the strength of the top kit 22 and the bottom kit 33, they may be made of metal materials, such as stainless steel.

[0050] In order to reduce the weight of the top kit 22 and the bottom kit 33 and to reduce the production cost of the top kit 22 and the bottom kit 33, both the top kit 22 and the bottom kit 33 are set as hollow tube structures. The wall thickness of the tubes of the top kit 22 and the bottom kit 33 is set according to actual needs, for example, it can be set to 2mm.

[0051] In one example, the shape and size of the sleeve hole 111 are adapted to the shape and size of the top fitting 22 and the bottom fitting 33. The shape of the sleeve hole 111 can be a square or other polygonal structure. Therefore, the shapes of the top fitting 22 and the bottom fitting 33 can also be square or other polygonal structures. In this embodiment, the cross-section of the sleeve hole 111 is square, and the shapes of the top fitting 22 and the bottom fitting 33 are correspondingly square. By setting the top fitting 22, the bottom fitting 33, and the sleeve hole 111 to be square, when the top fitting 22 and the bottom fitting 33 are inserted into the sleeve hole 111, the top fitting 22 and the bottom fitting 33 are less likely to rotate relative to the sleeve hole 111. Therefore, the top frame 20 and the base 30 are less likely to rotate relative to the supporting body 10.

[0052] See Figure 1 As shown, in some feasible implementations, the top frame 20 is a single integral structure, with a top fitting 22 at one end. The top fitting 22 can be welded to the top frame 20. In practical applications, the display rack can be formed by connecting multiple building material modules. When setting up the building material modules, a top frame 20 can be set on one building material module. Multiple building material modules are spaced apart around an axis, and adjacent building material modules are connected together through the top frame 20.

[0053] Specifically, multiple building material modules are arranged to form a ring structure. This ring structure can be a circular ring or a square ring structure. This application does not limit the specific type of ring structure. The following description uses a square ring structure formed by multiple building material modules as an example.

[0054] When the building material modules are arranged to form a square ring, the top frames 20 can also be arranged to form a square structure. In this case, the top frame 20 itself can have a bent portion, and the bending angle is a right angle. A simple splicing module can then be formed between a top frame 20, a supporting body 10, and a base 30, creating a single integrated structure. Connecting portions 213 are provided at both ends of the length of the top frame 20. By connecting the connecting portions 213 between two adjacent top frames 20, two modules can be spliced ​​together.

[0055] Alternatively, a bent structure can be formed between two connected top frames 20. In this case, the top frame 20 can be a straight columnar structure. One end of the top frame 20 is provided with a top fitting 22, and the other end is provided with a connecting part 213. The top frame 20 is inserted into the sleeve hole 111 of the support body 10 through the top fitting 22, so that one end of the top frame 20 is connected to the support body 10. When assembling the display rack, one of the top frames 20 of two adjacent building material modules is set between the two support bodies 10, and the end of the top frame 20 away from its top fitting 22 is connected to the adjacent top frame 20 through the connecting part 213.

[0056] It should be noted that when the top frame 20 forms a ring structure, the structure of the connecting part 213 can be set according to the shape of the ring. For example, when it is a circular ring, the connecting part 213 can be an arc structure. When the ring shape enclosed by the top frame 20 is square, the connecting part 213 is set with a predetermined included angle.

[0057] Specifically, the connecting part 213 has a connecting end face 2131. When two top frames 20 are connected, the connecting end faces 2131 of the connecting part 213 are pressed together, and then the two connecting parts 213 are connected together by a structure such as snap-fit, fastening, or screws. In order to satisfy a predetermined included angle between the two connected top frames 20, for example, the included angle between the two top frames 20 is 90°, an included angle is provided between the connecting end face 2131 of the connecting part 213 and the length direction of the top frame 20. This included angle is less than 90°. When connecting two top frames 20, two top frames 20 are selected whose included angles between the connecting end face 2131 and the length direction of the top frame 20 are equal to 90° for connection.

[0058] In one example, the angle between the connecting end face 2131 of the connecting part 213 and the length direction of the frame 21 is 45°.

[0059] In some feasible ways, top fittings 22 can be provided at both ends of the top frame 20 along its length. After two adjacent top frames 20 are connected by a connecting part 213, the top fittings 22 on the two top frames 20 can be inserted together into the sleeve hole 111.

[0060] It is worth mentioning that when both ends of the top frame 20 are provided with top fittings 22, the top fittings 22 are welded to the ends of the top frame 20, and when the sleeve hole 111 is square, the top fittings 22 should also be square. Therefore, when the top frames 20 of two building material modules are connected by the end connecting parts 213, the top fittings 22 on the two top frames 20 can be combined to form a square structure. For example, the top fittings 22 on one top frame 20 and the other top frame 20 can be formed by dividing the top fittings 22 for insertion and adaptation with the sleeve hole 111. The division position can be on the diagonal of the top fitting 22, or on the straight line connecting the two opposite sides of the top fitting 22. When the two top frames 20 are connected and the top fittings 22 are inserted into the sleeve hole 111, the shape formed by splicing the two top fittings 22 is consistent with the shape of the sleeve hole 111, and the size is adapted to the size of the sleeve hole 111.

[0061] Alternatively, top fittings 22 and insertion parts 23 can be respectively provided at both ends of the top frame 20 along its length. The top fitting 22 has a hollow structure, and the insertion parts 23 can be inserted into the top fitting 22. Thus, when two building material modules are connected through the top frames 20, the insertion part 23 of one top frame 20 can be inserted into the top fitting 22 of the other top frame 20 first, and then the two top frames 20 can be fixedly connected by the connecting part 213. This can increase the stability of the connection between the two connected top frames 20, and also increase the strength of the top fitting 22.

[0062] In some possible implementations, the top frame 20 includes a frame 21, and the two opposite ends of the frame 21 are provided with connecting parts 213. The connecting parts 213 between the two top frames 20 can be detachably connected by a snap-fit ​​structure, a fastening structure or screws.

[0063] In order to reduce the material used in the frame 21 and reduce its weight, a groove 211 can be provided at one end of the frame 21 facing away from the top assembly 22 to reduce the material used in the production of the frame 21.

[0064] Alternatively, the frame 21 can be formed by bending a cold-rolled steel sheet with a thickness of 1.5 mm. Both ends of the steel sheet in the width direction are bent in the same direction to form the frame 21. To increase the stability and strength of the frame 21, reinforcing members can be provided at the two bent parts of the steel sheet. The reinforcing members can be support tube structures, and the support tubes can be metal tubes, such as steel tubes.

[0065] See Figures 1 to 4 As shown, in some feasible ways, the support body 10 is also provided with a plurality of side grooves 13, which are spaced apart around the axis of the support body 10. Display pieces 40 are inserted into the side grooves 13, and the two ends of the display pieces 40 are respectively connected to the top frame 20 and the base 30.

[0066] The display component 40 is made of tempered glass, with the glass thickness matching the width of the side groove 13. The length and width dimensions of the display component 40 are fixed; for example, the length can be 2270mm and the width 205mm. To reinforce the connection strength of the display component 40, transparent silicone sealant can be used to secure it to the supporting body 10.

[0067] It should be noted that the side groove 13 is set around the outer package 11, so the display piece 40 can be set around different positions of the outer package 11. Some eye-catching signs, slogans and other logos can be designed on the display piece 40 to display the information of the item from multiple angles.

[0068] In some feasible implementations, the side groove 13 can be directly formed on the outer sleeve 11, for example, by opening the side groove 13 on the outer sleeve 11. Alternatively, the support body 10 may also include multiple external attachments 12 connected to the outer wall of the outer sleeve 11. The multiple external attachments 12 are spaced apart around the peripheral wall of the outer sleeve 11, and the gap between two adjacent external attachments 12 forms the side groove 13. The side groove 13 extends in the opposite direction along the length of the outer sleeve 11. The external attachments 12 can be welded to the outer sleeve 11, or the external attachments 12 and the outer sleeve 11 can be integrally formed.

[0069] In some feasible implementations, the shape of the outer casing 11 is not limited; it can be cylindrical or square. In this application, a square structure of the outer casing 11 is used as an example for illustration. This application provides four side grooves 13, which are formed on the four faces of the outer casing 11.

[0070] Specifically, the external connection part 12 of this application is also provided with four parts. The four external connection parts 12 are respectively connected to the corners of the outer sleeve 11. The two ends of any one external connection part 12 are respectively connected to two adjacent sides of the outer sleeve 11. For example, the external connection part 12 may include a first sub-part and a second sub-part. One end of the first sub-part is connected to the second sub-part, and an angle of 90° is provided between the first sub-part and the second sub-part. The first sub-part and the second sub-part can respectively fit against two adjacent side walls of the outer sleeve 11.

[0071] Thus, the spacing between the sub-parts on the four sides of the outer casing 11 of the four external parts 12 can respectively form side grooves 13.

[0072] In some feasible implementations, the frame 21 of the top frame 20 has a positioning groove 212 at the end facing the base 30, corresponding to the display piece 40. The base 30 has an insertion groove 321 at the end facing the top frame 20, and both ends of the display piece 40 are inserted into the positioning groove 212 and the insertion groove 321, respectively. By providing the positioning groove 212 on the top frame 20 and the insertion groove 321 on the base 30, the display piece 40 can be connected to the top frame 20 and the base 30, thus fixing the position of the display piece 40 and increasing the connection stability between the display piece 40 and the supporting body 10.

[0073] See Figure 1 and Figure 5 As shown, in some possible implementations, the base 30 includes a base plate 31, a base kit 33 connected to the base plate 31, the end face of the base plate 31 facing away from the base kit 33 is the bottom surface of the base plate 31, the bottom surface of the base plate 31 is a planar structure, and the bottom surface of the base plate 31 is supported on the support end face.

[0074] The base plate 31 of this application can be a flat plate structure with a certain lateral dimension to maximize the contact area between the base plate 31 and the supporting end face, thereby increasing the stability of the support. The base plate 31 of this application serves as a counterweight structure to increase the stability of the base 30. For example, when the base 30 of this application is a flat plate structure, it can be a steel plate with a length of 400mm, a width of 400mm, and a thickness of 3mm.

[0075] In addition, the base plate 31 of this application can also be an irregular structure with a bottom area smaller than the top area. The top surface of the base plate 31 is the end face that connects to the base kit 33, and the bottom surface of the base plate 31 is the end face that faces away from the top surface. The cross-sectional area of ​​the base plate 31 gradually increases in the direction from the top surface to the bottom surface. In this way, the base plate 31 can form a structure that is smaller at the top and larger at the bottom, so that the support effect of the base plate 31 is better.

[0076] The base 30 of this application also includes a support 32 for connecting the display component 40. The support 32 can be a plate-like structure. The support 32 and the base kit 33 are spaced apart, and the positions of the support 32 and the side groove 13 correspond. The support 32 has a protruding edge 322 on the side facing the base kit 33, so that when the base kit 33 is inserted into the sleeve hole 111, the support 32 can be inserted into the side groove 13 through the protruding edge 322. By spaced apart from the base kit 33, and by allowing the support 32 to be inserted into the side groove 13, the connection strength between the base 30 and the support body 10 can be increased.

[0077] The support 32 has a slot 321 at the end facing away from the base 30, and one end of the display piece 40 can be inserted into the slot 321.

[0078] In some feasible ways, the building material module can choose whether to set the display component 40 on the supporting body 10 according to actual needs or aesthetic requirements. For example, in practical applications, the length of the supporting body 10 can be 2200mm to 3000mm. The length of the supporting body 10 determines the height of the building material module. When the length of the supporting body 10 is less than 2400mm and greater than 2200mm, the height of the building material module is relatively low. When the length of the supporting body 10 is greater than 2800mm and less than 3000mm, the height of the building material module is relatively high. The building material modules with low and high lengths are not suitable for setting the display component 40, so the display component 40 can be omitted.

[0079] When the length of the support body 10 is between 2400mm and 2800mm, the number of display pieces 40 can be selected on the support body 10 according to actual needs, for example, see Figure 6 As shown, Figure 6Figure a shows the structure of the building material module without display component 40, Figure b shows the structure of the building material module with one display component 40, and Figure c shows the structure of the building material module with two display components 40.

[0080] The display racks in some shopping malls are of varying heights, requiring the assembly of building material modules of different heights. The display pieces 40 installed on the building material modules of different heights have different lengths, requiring the customization of display pieces 40 of corresponding sizes according to the building material modules of different heights. This increases the overall cost of the building material modules. Furthermore, when the display piece 40 is made of tempered glass, customizing the size of the display piece 40 requires a long tempering cycle, resulting in low efficiency and failing to meet the needs of high-speed assembly of building material modules.

[0081] In this application, the display component 40 in the building material module has a fixed size; for example, the length of the display component 40 can be 2270mm and the width can be 205mm. The two ends of the display component 40 along its length are respectively connected to the supports 32 of the top frame 20 and the base 30. Furthermore, the base 30 and the supporting body 10 are detachably connected. This allows for the setting of different types of bases 30, such as setting the supports 32 on the base 30 to have different heights to accommodate the installation of the display component 40 on supporting bodies 10 of different heights. That is to say, the position of the top frame 20 for connecting the display component 40 remains unchanged; when the length of the supporting body 10 changes, only a suitable base 30 needs to be selected so that the distance between the end face of the support 32 of the base 30 facing the top frame 20 and the top frame 20 can be adapted to connect the display component 40.

[0082] for example Figure 7 As shown, Figure 7 Figures a, b, and c are structural diagrams when the height of the supporting body 10 is 2400mm, 2600mm, and 2800mm, respectively. As can be seen from the figures, when the supporting body 10 of different lengths is adapted to the display piece 40 of the same size, the height of the base 30 support 32 needs to be changed.

[0083] Therefore, by setting different heights for the supports 32, this application can accommodate the installation of display components 40 on support bodies 10 of different lengths. This allows the display components 40 to be set to a fixed size, facilitating uniformity and avoiding the need to customize corresponding display components 40 for building material modules of different sizes, thus enabling mass production of the display components 40.

[0084] It should be noted that the support 32 of this application can also be detachably connected to the base plate 31, for example, by using screws. In this way, the display piece 40 can be installed on the support body 10 of different lengths simply by replacing the support 32 of different heights.

[0085] In some feasible implementations, an illumination element 50 is also provided within the side groove 13. The illumination element 50 is arranged along the opening path of the side groove 13. By providing the illumination element 50 within the side groove 13, the illumination element 50 can illuminate the display piece 40. When the light passes through the display piece 40, it can illuminate the markings on the display piece 40 to achieve a striking effect. The illumination element 50 of this application can be multiple LED (light-emitting diode) lights arranged at intervals along the side groove 13 on the support body 10, or it can be an LED light strip directly connected within the side groove 13.

[0086] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the utility models disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.

[0087] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. A building material module, characterized in that, include: A supporting body, wherein the supporting body is provided with a sleeve hole that penetrates the supporting body; A top frame, one end of which is provided with a top fitting, which is used to be inserted into a sleeve hole at one end of the support body, so that the top frame is connected to the support body; The base is provided with a bottom fitting, which is used to be inserted into a sleeve hole at the other end of the support body, so that the base is connected to the support body; Both the top and bottom fittings are arranged along the opening path of the sleeve holes.

2. The building material module according to claim 1, characterized in that, The support body includes an outer sleeve, and the sleeve hole extends through the outer sleeve along its length.

3. The building material module according to claim 2, characterized in that, The top frame includes two sub-parts connected to each other. One of the sub-parts is provided with the top kit, and the other sub-part is provided with a plug-in part, which is plugged into the top kit.

4. The building material module according to claim 3, characterized in that, The top frame includes a connecting part, and the two sub-parts are detachably connected through the connecting part.

5. The building material module according to claim 2, characterized in that, The supporting body is also provided with a side groove, in which a display component is inserted. The two ends of the display component are respectively connected to the top frame and the base.

6. The building material module according to claim 5, characterized in that, The support body also includes a plurality of external parts, which are spaced apart around the peripheral wall of the outer sleeve, and the gap between two adjacent external parts forms the side groove.

7. The building material module according to claim 6, characterized in that, The outer casing has a square structure, and four external connecting parts are provided. The four external connecting parts form side grooves on the four sides of the outer casing.

8. The building material module according to claim 5, characterized in that, The top frame has a positioning groove at one end facing the base, and the base has an insertion groove at one end facing the top frame. The two ends of the display piece are respectively inserted into the positioning groove and the insertion groove.

9. The building material module according to claim 8, characterized in that, The base includes a support, and the support and the bottom kit are spaced apart so that when the bottom kit is inserted into the sleeve hole, the support can be inserted into the side groove. The support has the insertion groove at one end facing the top frame.

10. A display rack, characterized in that, It includes multiple building material modules as described in any one of claims 1-9, and the multiple building material modules are connected to each other through the top frame.