Multi-layer building ground module capable of being spliced
Through the splicable multi-level building ground module, the professionalism and pollution problems of traditional ground decoration are solved, and rapid and dust-free construction and dismantling are achieved, diversified application scenarios are supported and resources are saved.
Patent Information
- Application Number
- CN202421207506.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-30
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-05-30
AI Technical Summary
Traditional ground decoration technology requires cooperation from multiple people, which is highly professional, and will cause dust and noise pollution during secondary construction, resulting in serious waste of resources, making it difficult to quickly disassemble and reconstruct.
It adopts splicable multi-level building ground modules, including base, base cover and surface layer. The rotatable adjustable disc and connection device are used to achieve rapid splicing and disassembly of the module. It has built-in sound insulation and thermal insulation materials. The module is fixed through screw holes, supporting millimeter-level leveling and internal pipe wiring.
It realizes rapid and dust-free assembly and disassembly, reduces construction waste, protects the environment, and supports later pipeline changes and diversified application scenarios, such as ground-type air conditioners and food transmission.
Smart Images

Figure CN223075094U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of building material manufacturing, and particularly relates to a splicable multi-layer building ground module. Background Art
[0002] The floor of a house, as a direct contact surface, is the most used area and an indispensable area in decoration. The traditional way is to first lay pipes and wires on the rough ground, then fill and or level with cement and yellow sand, and finally lay floor tiles or floors. This decoration process has been continued for many years. There are also professional requirements for construction personnel. It must be completed by multiple people such as plumbers, bricklayers, etc. It is difficult for ordinary people to complete it alone. At the same time, there is a problem that this kind of floor is like a one-time. If you want to redecorate or restore the house to its original state, due to the characteristics of cement and yellow sand, you can only cut and smash the ground, and dust, noise, and construction waste will pollute the urban environment. Such secondary construction, labor and materials are a waste. If there is a kind of floor, you can quickly build the floor with simple and easy assembly and splicing, and you can lay water and electricity without grooving on the rough ground. At the same time, it can be quickly disassembled and removed without dust and traces. Save construction costs, reduce construction waste, and protect the urban environment. This is the original intention of our design. Utility Model Content
[0003] The purpose of the utility model is to solve the above-mentioned problems and to provide a splicable multi-level building ground module.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a splicable multi-level building ground module, which includes a base, a base cover and a surface layer; the lower surface of the base is built with a plurality of rotatable adjustment disks for adjusting the module height and / or adjusting the ground level; the upper surface of the base is built with a partition, and the partition can be installed with sound insulation material; the four corners of the upper surface of the base are preset with bases, and the base is preset with screw holes for screwing screws through the screw holes and screwing into the rough ground to achieve the installation and fixation of the module and the rough ground; the base is built with a connecting device, including Including: connecting rods and connectors for splicing or disassembling modules; the base has a number of concave and convex shapes for engaging and fixing with the base cover; the lower surface of the base cover has a built-in interlayer, and the interlayer can be installed with thermal insulation materials; the base cover has a number of concave and convex shapes for engaging and fixing with the base; the four corners of the upper surface of the surface layer are preset with screw holes for screwing in screws through the screw holes of the base of the base and screwing into the rough ground to achieve the installation and fixation of the module and the rough ground; the lower surface of the surface layer has a built-in interlayer, and the interlayer can be installed with thermal insulation materials.
[0005] In summary, due to the adoption of the above technical solution, the beneficial effects of the utility model are:
[0006] 1. In the present utility model, through the quick splicing or disassembly between modules, the splicing is dust-free and the disassembly leaves no trace, maintaining zero pollution at the decoration site.
[0007] 2. In the present utility model, through millimeter-level floor leveling.
[0008] 3. In the present utility model, through the multi-level structure of the module, pipe routing and wiring can be realized inside the module. Later, according to the usage needs, the water and electricity pipelines can be modified, increased or decreased, and more application scenarios can be added, such as: floor-mounted air conditioners and / or fresh air outlets, underground hidden transmission devices. In the kitchen for an unmanned restaurant, the food is automatically delivered to the user's table through a conveyor belt. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 is a schematic diagram of the overall structure of a spliceable multi-level building floor module Figure 1 .
[0010] Figure 2 is a schematic diagram of the overall structure of a spliceable multi-level building floor module Figure 2 .
[0011] Figure 3 is an exploded view of a spliceable multi-level building floor module Figure 1 .
[0012] Figure 4 is an exploded view of a spliceable multi-level building floor module Figure 2 .
[0013] Figure 5 is a node diagram of a spliceable multi-level building floor module.
[0014] Figure 6.1 is Figure 5 a partial enlarged view of part A in
[0015] Figure 6.2 is a schematic diagram of the structure of the connector between the bases in a spliceable multi-level building floor module.
[0016] LEGEND:
[0017] 1. Rotatable adjustment disc; 2. Base; 3. Sound insulation material for the base; 4. Thermal insulation material for the base cover; 5. Base cover; 6. Thermal insulation material for the surface layer; 7. Surface layer. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0019] Please refer to Figure 1 - 6.2, the present utility model provides a technical solution: a splicable multi-level building floor module, which includes a base 2, a base cover plate 5 and a surface layer 7. A number of rotatable adjustment discs 1 are built into the lower surface of the base 2, with screws built into their centers and corresponding nuts built into the lower surface of the base 2. By rotating the adjustment discs, the height of the floor module can be adjusted and / or the floor level can be adjusted. When the height difference between the construction floor and the threshold or other reference objects is within the normal value, the adjustment discs do not need to be rotated and can be kept on the lower surface of the base 2. When the height difference between the construction floor and the threshold or other reference objects is relatively large, the adjustment discs can be rotated clockwise so that they are exposed and sink on the lower surface of the base 2 to achieve real-time adjustment of the height of the floor module. When the construction floor levels are inconsistent, the fine adjustment sinking of several adjustment discs can be rotated respectively. Since it is a screw-nut structure, millimeter-level floor leveling can be achieved; A partition layer is built into the upper surface of the base 2, and sound insulation materials can be installed in the partition layer to achieve sound insulation between upper and lower floors, effectively protecting privacy and reducing interference; Four corners of the upper surface of the base 2 are preset with bases, and the bases are preset with screw holes for screwing screws through the screw holes and into the construction floor to achieve the installation and fixation of the floor module and the construction floor. A connecting device is built into the base, including: a connecting rod and a connector, which are used for splicing or disassembling floor modules with each other. The connecting rod is fixedly implanted inside the base and does not protrude from the surface of the base. When splicing floor modules with each other, first rotate and screw the connector of one floor module from the outside of this floor module into the connecting rod until it does not protrude from the surface of the base, then bring another floor module into contact and fit with each other at an angle where the connecting rods are aligned with the connecting rods, and then rotate and screw out the connector through the installation port until the connector penetrates through the two connecting rods. Each base is operated in the same way to complete the splicing of floor modules with each other. If it is to be disassembled, perform the reverse operation as above. The base presents several concave and convex shapes for snap-fitting and fixing with the base cover plate 5. A partition layer is built into the lower surface of the base cover plate 5, and heat insulation materials can be installed in the partition layer to effectively slow down the penetration of environmental temperature below the ground, achieve no heat loss, and achieve good heat insulation effect; The base cover plate 5 presents several concave and convex shapes for snap-fitting and fixing with the base 2. Screw holes are preset at four corners of the upper surface of the surface layer 7 for screwing screws through the screw holes of the base of the base 2 and into the construction floor to achieve the installation and fixation of the floor module and the construction floor. In practical applications, the surface layer 7 can be selectively installed. Suppose that after the floor modules are spliced, it is required to lay engineered wood flooring. If the height difference between the construction floor and the threshold or other reference objects is relatively small, the surface layer 7 can not be used at this time, effectively reducing the floor height, and a floor moisture-proof pad can be directly laid on the upper surface of the base cover plate 5, and then engineered wood flooring can be laid. Suppose that after the floor modules are spliced, it is required to lay floor tiles.At this time, floor tiles can be directly placed on the surface layer 7. Through the dry-hanging construction process, first cut seams and grooves at corresponding positions around the floor tiles, then insert one end of the fitting into the groove, and then screw the other end of the fitting into the screw to fix it on the surface layer 7, realizing the installation and fixation of the floor tiles without the use of cement, yellow sand or tile adhesive. The gaps between the floor tiles can be filled with beauty joints or other materials. When disassembling or replacing the floor tiles, only need to use a high-temperature torch or related tools to remove the beauty joints or other materials, and then the screws fixing the floor tiles and the surface layer 7 will be exposed. Unscrew the screws to replace the floor tiles without smashing or cutting the floor tiles.
[0020] The traditional floor decoration method is to first lay pipes and wires on the construction floor, then fill and / or level with cement and yellow sand, and finally lay floor tiles or floors. This decoration process has continued for many years. There are also professional requirements for construction workers, and it must be completed by multiple people such as electricians and bricklayers. It is very difficult for ordinary people to complete it alone. At the same time, there is a problem that this kind of floor is like a one-time thing. If you want to redecorate or restore the house to its original state, due to the solidification characteristics of cement and yellow sand, you can only cut and smash the floor, and the dust, noise and construction waste pollute the urban environment. Such secondary construction is a waste of both labor and materials. For the floor module, first place the base 2 on the construction floor, and complete the floor height and / or floor leveling by rotating the adjustment disc. There is no need for cement and yellow sand at the construction site, realizing dust-free construction and saving cement and yellow sand. Only the adjustment disc is needed to raise the floor. The base 2 is screwed into the screw through the screw hole and fixed to the construction floor. Further, the other bases 2 are installed in the same way to quickly complete the laying of the base 2. Then, at the positions where pipes need to be laid and wires need to be routed, directly place pipes such as cold / hot water pipes, strong electric pipes, and weak electric pipes on the upper surface of the base 2, which can be bent or straight. Then the base cover plate 5 is bite-fixed with the base 2. At this time, the floor is basically completed. The surface layer 7 can be selectively installed according to the site conditions. Later, if you want to modify or add / remove pipelines, you only need to remove the floor or floor tiles and remove the base cover plate 5 upward, and then you can route the pipes and wires again without damage. If you want to install a floor-mounted air conditioner and / or a fresh air outlet, you only need to remove the base cover plate 5 upward, place the ventilation pipe on the base 2, and then cut a slot in the base cover plate 5 according to the size of the air outlet. If it is used for delivering meals from the kitchen to the customer's table in a self-service restaurant, only need to vertically install a transmission device on the upper surface of the base 2, similar to erecting an elevated road on an urban road. Through the conveyor belt assembly line, in a hidden way along the floor, the meals are smoothly conveyed to the table floor and then rise to the table top to complete the serving of the meals. The floor module can be quickly disassembled and removed, without dust and traces, reducing construction waste and protecting the urban environment. It can be recycled and resources can be saved.
[0021] The above are only the preferred specific embodiments of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, making equivalent replacements or changes, shall be covered by the protection scope of the present utility model.
Claims
1. A spliceable multi-level building floor module, characterized in that: It includes a base, a base cover plate and a surface layer; several rotatable adjustment discs are built in the lower surface of the base for adjusting the module height and / or leveling the ground; a partition layer is built in the upper surface of the base, and the partition layer can be installed with sound insulation materials; pedestals are preset at the four corners of the upper surface of the base, and screw holes are preset in the pedestals for screwing screws through the screw holes into the rough ground to achieve the installation and fixation of the module and the rough ground. A connecting device is built in the pedestal, including: a connecting rod and a connector for splicing or disassembling modules; the pedestal presents several concave-convex shapes for engaging and fixing with the base cover plate; a partition layer is built in the lower surface of the base cover plate, and the partition layer can be installed with heat insulation materials; the base cover plate presents several concave-convex shapes for engaging and fixing with the base; screw holes are preset at the four corners of the upper surface of the surface layer for screwing screws through the screw holes of the pedestal of the base into the rough ground to achieve the installation and fixation of the module and the rough ground; a partition layer is built in the lower surface of the surface layer, and the partition layer can be installed with heat insulation materials.