Multilayer wear-resistant concrete structure floor positioning protection device

Through the combined protection device of beam positioning plates and plate positioning plates, the problem of wear-resistant concrete floor protection is solved by the problem of contamination and damage to form removal, and simplified laying and improved protection effect.

CN223269660UActive Publication Date: 2025-08-262ND CONSTR CO LTD OF CHINA CONSTR 5TH ENG BUREAU
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Patent Information

Application Number
CN202421626015.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-10
Publication Date
2025-08-26
Estimated Expiration
2034-07-10

AI Technical Summary

Technical Problem

The existing wear-resistant concrete floor protection method is prone to pollution, the floor is easily damaged when dismantling the form, and the laying method is complicated.

Method used

A protective device consisting of beam positioning plates and plate positioning plates is connected to form a protective surface through a connecting buckle, and a flame retardant blanket is used for protection, adapting to the pipeline layout.

Benefits of technology

The laying process is simplified, damage is avoided during mold removal, and protection effect and adaptability are improved.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223269660U_ABST
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Abstract

The utility model relates to the technical field of floor protection devices, in particular to a multilayer wear-resistant concrete structure floor positioning protection device which comprises a plurality of sets of beam positioning plates which are sequentially arranged in the transverse direction and the longitudinal direction. Every two adjacent beam positioning plate sets are connected end to end through a connecting buckle to form a transverse beam positioning plate set and a longitudinal beam positioning plate set, an installation area is formed between the transverse beam positioning plate set and the longitudinal beam positioning plate set, and a plurality of plate positioning plate sets are sequentially arranged in the installation area. The multiple sets of plate positioning plates are sequentially connected through the connecting buckles to form a plate positioning plate set, the plate positioning plate set abuts against the transverse beam positioning plate set and the longitudinal beam positioning plate set at the same time and is connected with the transverse beam positioning plate set and the longitudinal beam positioning plate set through the connecting buckles, a combined protection face is formed, the laying mode is simple, and omission is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor protection devices, in particular to a multi-layer wear-resistant concrete structure floor positioning protection device. Background Art

[0002] The wear-resistant concrete floor is formed once with the concrete structure and needs to be protected after forming. The current protection method is mainly to lay carpet or wood boards, or to use a combination of carpet and wood boards to form a protective surface.

[0003] The protective surface composed of carpet and wooden boards is usually large and disordered. When the protective covering is removed, it will be affected by the surrounding protective coverings, and this part is easily contaminated. In addition, when using carpet protection, small wooden pads need to be padded on the bottom plate of the formwork frame uprights, and the laying method is relatively cumbersome. When using wooden boards for protection, it is a rigid protection. When the formwork frame is dismantled, the wooden boards are easily impacted and damaged. Therefore, a multi-layer wear-resistant concrete structure floor positioning protection device is proposed. Utility Model Content

[0004] In order to solve the technical problems existing in the above-mentioned prior art, the utility model provides a multi-layer wear-resistant concrete structure floor positioning and protection device.

[0005] In order to solve the above technical problems, the utility model provides the following technical solutions: a multi-layer wear-resistant concrete structure floor positioning and protection device, including beam positioning plates, wherein the beam positioning plates are provided in several groups, and the several groups of beam positioning plates are arranged in sequence in the horizontal and vertical directions with the structural column as the origin. The two adjacent groups of beam positioning plates are connected end to end by connecting buckles to form horizontal and vertical beam positioning plate groups, and an installation area is formed between the horizontal beam positioning plate group and the longitudinal beam positioning plate group. Several groups of plate positioning plates are arranged in sequence in the installation area, and the several groups of plate positioning plates are connected in sequence by connecting buckles to form a plate positioning plate group. The plate positioning plate group is in conflict with the horizontal beam positioning plate group and the longitudinal beam positioning plate group at the same time and is connected by connecting buckles to form a combined protection surface.

[0006] Preferably, the beam positioning plate includes a beam positioning plate main body and a beam positioning plate assembly interface. The beam positioning plate assembly interface is provided in several groups. A group of beam positioning plate assembly interfaces is provided at the middle position of both ends of the beam positioning plate main body, and a group of beam positioning plate assembly interfaces is provided at the quarter point on both sides of the beam positioning plate main body.

[0007] Preferably, the plate positioning plate includes a plate positioning plate main body and a plate positioning plate assembly interface, and the plate positioning plate assembly interface is provided in several groups. A group of plate positioning plate assembly interfaces is provided at the middle position of both ends of the plate positioning plate main body, and a group of plate positioning plate assembly interfaces is provided at the quarter point on both sides of the plate positioning plate main body. The width of the plate positioning plate main body is half the length of the beam positioning plate main body.

[0008] Preferably, the beam positioning plate assembly interface and the bottom of the plate positioning plate main body are respectively glued with a beam positioning plate flame retardant blanket and a plate positioning plate flame retardant blanket, and the thickness of the beam positioning plate flame retardant blanket and the plate positioning plate flame retardant blanket are consistent. The beam positioning plate flame retardant blanket and the plate positioning plate flame retardant blanket cooperate to form a flat protective plane after the beam positioning plate assembly interface and the plate positioning plate main body are spliced.

[0009] Preferably, the connecting buckle is arranged in the beam positioning plate assembly interface and the plate positioning plate assembly interface, and the beam positioning plate assembly interface and the plate positioning plate assembly interface are both provided with transverse grooves at the ends of the beam positioning plate assembly interface and the plate positioning plate assembly interface, and nested sliders cooperating with the transverse grooves are provided on both sides of the end of the connecting buckle, and the connecting buckle is connected to the transverse groove through the nested sliders.

[0010] Preferably, the surfaces of the beam positioning plate assembly interface and the plate positioning plate assembly interface are respectively provided with a positioning line group and a longitude and latitude line group, the positioning line group is composed of several groups of symmetrical parallel lines, and the longitude and latitude line group is composed of several groups of vertically intersecting straight lines.

[0011] Preferably, a plurality of groups of pipeline corresponding components are provided on the surface of the plate positioning plate body, and the pipeline corresponding components are arranged in a rectangular array inside the plate positioning plate body.

[0012] Preferably, the pipeline corresponding component includes a positioning hole and a connecting sleeve, the positioning hole passes through the positioning plate body, the connecting sleeve is arranged inside the positioning hole, and the connecting sleeve can slide relative to the positioning hole.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] 1. The utility model is provided with beam positioning plates and plate positioning plates. An installation area is formed between the transversely arranged beam positioning plate group and the longitudinally arranged beam positioning plate group. Several groups of plate positioning plates are arranged in sequence in the installation area. Several groups of plate positioning plates are sequentially connected by connecting buckles to form a plate positioning plate group. The plate positioning plate group simultaneously contacts the transverse beam positioning plate group and the longitudinal beam positioning plate group and is connected by the connecting buckles to form a combined protective surface. The laying method is simple and there is no omission.

[0015] 2. In the present invention, a flame retardant blanket for the beam positioning plate and a flame retardant blanket for the board positioning plate are provided. By adding the flame retardant blanket, the beam positioning plate body and the board positioning plate body can be prevented from directly contacting the cast floor, thereby preventing the wooden board from impacting and damaging the floor during the demolding process. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the structure of the utility model in a flat state;

[0018] Figure 3 This is a schematic diagram of the partial structure of the beam positioning plate of the present utility model;

[0019] Figure 4 This is a partial rear view structural diagram of the beam positioning plate of the present invention.

[0020] The numbers in the figure represent:

[0021] 1. Beam positioning plate; 11. Beam positioning plate body; 12. Beam positioning plate assembly interface; 13. Beam positioning plate flame retardant blanket; 14. Positioning line group; 2. Board positioning plate; 21. Board positioning plate body; 22. Board positioning plate assembly interface; 23. Board positioning plate flame retardant blanket; 24. Warp and weft line group; 3. Connecting buckle; 4. Pipe corresponding component; 41. Positioning hole; 42. Connecting sleeve. DETAILED DESCRIPTION

[0022] The following further illustrates the above and other technical features and advantages of the present invention in conjunction with the accompanying drawings and embodiments. However, the following embodiments are merely preferred embodiments of the present invention and are not exhaustive.

[0023] Example:

[0024] like Figures 1-4 As shown, the utility model provides a multi-layer wear-resistant concrete structure floor positioning and protection device, including beam positioning plates, which are provided with several groups. The several groups of beam positioning plates are arranged in sequence in the horizontal and vertical directions with the structural column as the origin. The two adjacent groups of beam positioning plates are connected end to end by connecting buckles to form a horizontally and vertically arranged beam positioning plate group. An installation area is formed between the horizontally arranged beam positioning plate group and the vertically arranged beam positioning plate group. Several groups of plate positioning plates are arranged in sequence in the installation area. Several groups of plate positioning plates are connected in sequence by connecting buckles to form a plate positioning plate group. The plate positioning plate group is in conflict with the horizontal beam positioning plate group and the vertical beam positioning plate group at the same time and is connected by connecting buckles to form a combined protection surface.

[0025] The beam positioning plate comprises a beam positioning plate main body and a beam positioning plate assembly interface, and the beam positioning plate assembly interface is provided with several groups, and a group of beam positioning plate assembly interfaces are provided at the middle position of both ends of the beam positioning plate main body, and a group of beam positioning plate assembly interfaces are provided at a quarter point on both sides of the beam positioning plate main body, and the plate positioning plate main body comprises a plate positioning plate main body and a plate positioning plate assembly interface, and the plate positioning plate assembly interface is provided with several groups, and a group of plate positioning plate assembly interfaces are provided at the middle position of both ends of the plate positioning plate main body, and a group of plate positioning plate assembly interfaces are provided at a quarter point on both sides of the plate positioning plate main body, and the beam positioning plate main body and the beam positioning plate main body and the beam positioning plate main body are combined by connecting buckles and the beam positioning plate assembly interfaces or the plate positioning plate assembly interfaces;

[0026] The width of the plate positioning plate body is half the length of the beam positioning plate body. During assembly, the number of plate positioning plate bodies can be accurately calculated based on the number of beam positioning plate bodies used, thereby facilitating the preparation of the plate positioning plate bodies and performing precise paving.

[0027] The bottom of the beam positioning plate assembly interface and the plate positioning plate main body are respectively glued with a beam positioning plate flame retardant blanket and a plate positioning plate flame retardant blanket, and the thickness of the beam positioning plate flame retardant blanket and the plate positioning plate flame retardant blanket are consistent. The beam positioning plate flame retardant blanket and the plate positioning plate flame retardant blanket cooperate to form a flat protective plane after the beam positioning plate assembly interface and the plate positioning plate main body are spliced. The protection capability can be guaranteed by protecting the floor through the formed complete protective plane. At the same time, due to the soft characteristics of the beam positioning plate flame retardant blanket and the plate positioning plate flame retardant blanket themselves, hard damage to the floor can be avoided during installation and disassembly, thereby ensuring the integrity of the floor during installation and disassembly.

[0028] The cam is secured to the chassis and has a plurality of slots that engage with the chassis to allow the chassis to be secured to the chassis.

[0029] The surfaces of the beam positioning plate assembly interface and the plate positioning plate assembly interface are respectively provided with a positioning line group and a longitude and latitude line group. The positioning line group is composed of several groups of symmetrical parallel lines. The positioning line group can be used to assist in observing the laying position of the beam positioning plate body and realize auxiliary positioning during laying. The longitude and latitude line group is composed of several groups of vertically intersecting straight lines. The longitude and latitude line group provides position information for the installation of pipelines and longitude and latitude lines.

[0030] The surface of the plate positioning plate body is provided with a plurality of groups of pipe corresponding components, which are arranged in a rectangular array inside the plate positioning plate body. The pipe corresponding components include positioning holes and connecting sleeves. The pipe corresponding components are used for allowing pipes arranged on the floor to pass through, so that the plate positioning plate can be laid on the floor with pipes, thereby improving the adaptability to the laying site;

[0031] The positioning hole passes through the plate positioning plate body, and the connecting sleeve is arranged inside the positioning hole. The connecting sleeve can slide relative to the positioning hole. When in use, the pipeline passes through the positioning hole and the connecting sleeve at the same time. The connecting sleeve slides inside the positioning hole under the drive of the pipeline, and adjusts the setting position relative to the positioning hole, so that the plate positioning plate can better adapt to the setting position of the pipeline.

[0032] The above description is merely a preferred embodiment of the present invention and is intended to be illustrative rather than restrictive of the present invention. Those skilled in the art will appreciate that many changes, modifications, and even equivalents may be made to the present invention within the spirit and scope of the claims, and all of these changes will fall within the scope of protection of the present invention.

Claims

1. A multi-layer wear-resistant concrete structure floor positioning protection device, characterized in that: The invention comprises a beam positioning plate (1), wherein the beam positioning plate (1) is provided with a plurality of groups, wherein the plurality of groups of beam positioning plates (1) are sequentially arranged in the transverse and longitudinal directions with the structural column as the origin, and two adjacent groups of beam positioning plates (1) are connected end to end by a connecting buckle (3) to form a transverse and longitudinally arranged beam positioning plate (1) group, and an installation area is formed between the transverse beam positioning plate (1) group and the longitudinal beam positioning plate (1) group, wherein a plurality of groups of plate positioning plates (2) are sequentially arranged in the installation area, and the plurality of groups of plate positioning plates (2) are sequentially connected by a connecting buckle (3) to form a plate positioning plate (2) group, and the plate positioning plate (2) group simultaneously contacts the transverse beam positioning plate (1) group and the longitudinal beam positioning plate (1) group and is connected by the connecting buckle (3) to form a combined protective surface.

2. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 1, characterized in that: The beam positioning plate (1) comprises a beam positioning plate body (11) and a beam positioning plate assembly interface (12), wherein the beam positioning plate assembly interface (12) is provided in a plurality of groups, wherein a group of beam positioning plate assembly interfaces (12) is provided at the middle position of each end of the beam positioning plate body (11), and a group of beam positioning plate assembly interfaces (12) is provided at the quarter point position on both sides of the beam positioning plate body (11).

3. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 2, characterized in that: The plate positioning plate member (2) comprises a plate positioning plate body (21) and a plate positioning plate assembly interface (22), wherein the plate positioning plate assembly interface (22) is provided in a plurality of groups, wherein a group of plate positioning plate assembly interfaces (22) is provided at the middle position of each end of the plate positioning plate body (21), and a group of plate positioning plate assembly interfaces (22) is provided at the quarter point position on both sides of the plate positioning plate body (21), and the width of the plate positioning plate body (21) is half the length of the beam positioning plate body (11).

4. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 3, characterized in that: The bottom of the beam positioning plate assembly interface (12) is glued with a beam positioning plate flame retardant blanket (13), and the bottom of the plate positioning plate body (21) is glued with a plate positioning plate flame retardant blanket (23). The thickness of the beam positioning plate flame retardant blanket (13) and the plate positioning plate flame retardant blanket (23) are consistent. After the beam positioning plate assembly interface (12) and the plate positioning plate body (21) are spliced ​​together, the beam positioning plate flame retardant blanket (13) and the plate positioning plate flame retardant blanket (23) cooperate to form a flat protective surface.

5. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 1, characterized in that: The connecting buckle (3) is arranged in the beam positioning plate assembly interface (12) and the plate positioning plate assembly interface (22), and the ends of the beam positioning plate assembly interface (12) and the plate positioning plate assembly interface (22) are both provided with transverse grooves, and nested sliders that cooperate with the transverse grooves are provided on both sides of the end of the connecting buckle (3), and the connecting buckle (3) is connected to the transverse groove through the nested sliders.

6. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 4, characterized in that: The surfaces of the beam positioning plate assembly interface (12) and the plate positioning plate assembly interface (22) are respectively provided with a positioning line group (14) and a longitude and latitude line group (24), wherein the positioning line group (14) is composed of a plurality of groups of symmetrical parallel lines, and the longitude and latitude line group (24) is composed of a plurality of groups of vertically interlaced straight lines.

7. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 3, characterized in that: The surface of the plate positioning plate body (21) is provided with a plurality of groups of pipeline corresponding components (4), and the pipeline corresponding components (4) are arranged in a rectangular array inside the plate positioning plate body (21).

8. A multi-layer wear-resistant concrete structure floor positioning and protection device as claimed in claim 7, characterized in that: The pipeline corresponding component (4) comprises a positioning hole (41) and a connecting sleeve (42), wherein the positioning hole (41) passes through the positioning plate body (21), and the connecting sleeve (42) is arranged inside the positioning hole (41), and the connecting sleeve (42) can slide relative to the positioning hole (41).