Rapidly-installed high-bearing-capacity overhead ground
By designing the support structure and connecting components, the problems of cumbersome installation and water seepage in traditional raised floors have been solved, enabling rapid installation and high load-bearing capacity of the raised floor, thus improving construction efficiency and overall performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CEEC ANHUI ELECTRICAL POWER CONSTR NO 1 CO
- Filing Date
- 2025-04-21
- Publication Date
- 2026-05-15
AI Technical Summary
The installation process of traditional raised floors is cumbersome. The connectors need to be adjusted in height and fixed in position, which makes construction inconvenient and causes water seepage between adjacent floorboards, resulting in poor overall floor consistency.
The system employs an installation support mechanism and connecting components, including support feet, threaded rods, internally threaded cylinders, support plates, adjusting cylinders, plug slots, connecting slots, and supplementary slots. It achieves rapid installation through plug-in and threaded connections, and uses sealant to fill gaps to improve connection stability and water resistance.
It enables rapid construction and installation, improves the overall consistency and water-proofing of the elevated ground, and enhances the support strength and load-bearing capacity at the gaps.
Smart Images

Figure CN224244345U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of elevated ground technology, specifically to a method for quickly installing high-load-bearing elevated ground. Background Technology
[0002] Traditional residential and office building floor construction suffers from problems such as excessive wet work, complicated construction steps, long construction time, and high construction costs. At the same time, traditional ground structures have limited effectiveness in noise isolation for residential and office buildings, especially in residential buildings where residents have significant mutual influence. Elevated floors, on the other hand, are gradually being promoted and applied due to their advantages such as convenient installation and dry construction.
[0003] According to Chinese Patent Publication No. CN216042413U, a high-load-bearing raised floor includes a floor body and support bases. The bottom surface of the floor body is prefabricated with a rectangular steel frame. One pair of parallel frame portions on the bottom surface of the rectangular steel frame has a second corrugated surface, and the other pair of parallel frame portions is flat. The top surface of the support base has a first corrugated surface that cooperates with the second corrugated surface. The four corners of the floor body are supported on four support bases. The bottom of the support base is fixed to the ground by an adjusting seat. The device has high support strength, stable support performance, reasonable structural design, and facilitates rapid on-site construction.
[0004] However, this patent has some shortcomings in practical use. The connection method still uses traditional connectors to connect the floor body to the rectangular steel frame. This requires not only adjusting the height of the adjustment seat but also fixing the floor body in place. The installation process is cumbersome and not conducive to rapid construction. In addition, there will be gaps between adjacent floor bodies. The patent does not address these gaps, resulting in poor overall floor uniformity and potential water seepage. In response, this application provides a method for quickly installing a high-load-bearing raised floor to solve the above problems. Utility Model Content
[0005] To address the shortcomings of existing technologies, this application provides a method for quickly installing high load-bearing raised floors, which has advantages such as facilitating rapid construction and installation, and solves the problem of the relatively cumbersome installation process of existing high load-bearing raised floors.
[0006] To achieve the above objectives, this application provides the following technical solution: a rapid installation of a high load-bearing capacity raised ground, comprising a plurality of raised ground main panels, wherein an installation support mechanism is installed on the outer side of the raised ground main panels, and a decorative panel is fixed between the tops of the plurality of raised ground main panels;
[0007] The installation support mechanism includes an installation component and a connecting component installed on the bottom of the elevated ground main plate; the installation component includes several support feet, anti-slip pads adhered to the bottom of the support feet, support columns fixed to the top of the support feet, threaded rods fixed to the top of the support columns, an internal threaded cylinder threaded to the outside of the threaded rod, a support plate fixed to the outside of the internal threaded cylinder, an adjusting cylinder fixed to the top of the internal threaded cylinder, an internal hexagonal groove opened on the top of the adjusting cylinder, and several insertion holes opened on the top of the elevated ground main plate;
[0008] The connecting assembly includes an insertion slot on the outside of the elevated ground main plate, a connecting slot on the outside of the elevated ground main plate, several docking cavities on the inside of the elevated ground main plate, a supplementary slot on the outside of the elevated ground main plate, an insertion plate inserted into the inside of the insertion slot, several docking blocks fixed to the bottom of the insertion plate, and a connecting plate fixed to the top of the insertion plate.
[0009] By adopting the above technical solution, it is easy to carry out construction and installation quickly, and it can also be used to reinforce the gap between adjacent elevated ground.
[0010] Furthermore, the tops of the insertion slot, the connecting slot, and the supplementary slot are all open, and the interiors of the insertion slot, the connecting slot, and the supplementary slot are all connected. The interior of the mating cavity is connected to the interior of the insertion slot.
[0011] By adopting the above technical solution, the sealant can circulate inside the insertion groove, connection groove, and mating cavity after being injected into the replenishment groove.
[0012] Furthermore, the mating block can be inserted into the inner side of the corresponding mating cavity, and the connecting plate can be inserted into the inner side of the connecting groove.
[0013] By adopting the above technical solution, the connecting plate and the docking block can connect and fix two adjacent elevated ground main panels.
[0014] Furthermore, the width of the connecting plate is equal to the width of the plug-in plate, and the width of the connecting plate is equal to 1.5 times the width of the main body plate of the elevated ground.
[0015] By adopting the above technical solution, the connecting plate and the plug-in plate can play a good plug-in shielding role at the connection between adjacent elevated ground main panels.
[0016] Furthermore, the anti-slip pad is a wear-resistant rubber pad, and the top and bottom of the internally threaded cylinder are both open.
[0017] By adopting the above technical solution, a good wear-resistant and anti-slip effect can be achieved, enabling the internally threaded cylinder to rotate normally.
[0018] Furthermore, the bottom of the adjusting cylinder is provided with a sliding groove for the threaded rod to pass through and slide, and the top of the support plate abuts against the bottom of the main body plate of the elevated ground.
[0019] By adopting the above technical solution, the end of the threaded rod can enter the interior of the sliding groove, so that the support plate can support the main plate of the elevated ground.
[0020] Furthermore, the support plate is circular in shape, and the top of the support plate is smooth. Each of the elevated ground main panels has four support feet at its bottom.
[0021] By adopting the above technical solution, the support plate can rotate smoothly.
[0022] Furthermore, each of the above-ground main panels has four insertion holes on its top, which can be used to insert corresponding adjustment cylinders.
[0023] By adopting the above technical solution, the main slab of the elevated ground can be positioned through the insertion action between the insertion hole and the adjusting cylinder.
[0024] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0025] This rapid-installation, high-load-bearing raised floor utilizes the installation support mechanism on the outer side of the main raised floor panel and the cooperation between the decorative panels to facilitate quick construction and installation. It also allows for the insertion and reinforcement of gaps between adjacent raised floor sections, ensuring a seamless connection and improving the overall consistency of the raised floor. Furthermore, it enhances the water resistance of the raised floor and strengthens the support at the gaps, thus making the raised floor easy to install while possessing extremely high load-bearing capacity, effectively improving its practicality. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of this application;
[0027] Figure 2 For the structure of this application Figure 1 Enlarged view of part A in the middle;
[0028] Figure 3 For the structure of this application Figure 1 A three-dimensional schematic diagram of the middle support leg connection structure;
[0029] Figure 4 For the structure of this application Figure 1 A top view of the connection structure between adjacent elevated ground main slabs.
[0030] In the diagram: 1. Elevated ground main panel; 200. Installation support mechanism; 201. Support foot; 202. Anti-slip mat; 203. Support column; 204. Threaded rod; 205. Internal threaded cylinder; 206. Support plate; 207. Adjusting cylinder; 208. Internal hexagonal groove; 209. Insertion hole; 210. Insertion groove; 211. Connecting groove; 212. Docking cavity; 213. Supplementary groove; 214. Insertion plate; 215. Docking block; 216. Connecting plate; 3. Decorative panel. Detailed Implementation
[0031] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0032] Please see Figures 1 to 4 This application provides a technical solution: a rapid-installation high-load-bearing raised floor, comprising several raised floor main panels 1, with an installation support mechanism 200 installed on the outer side of the raised floor main panels 1, and decorative panels 3 fixed between the tops of the several raised floor main panels 1; through the cooperative use of the installation support mechanism 200 on the outer side of the raised floor main panels 1 and the decorative panels 3, rapid construction and installation are facilitated, and the gaps between adjacent raised floors can be reinforced by interlocking, so that the gaps can be connected together, improving the overall consistency of the raised floor, while also improving the waterproofing capacity of the raised floor, and also strengthening the support strength at the gaps, thus making the raised floor easy to install while possessing extremely high load-bearing capacity, effectively improving its practicality.
[0033] In this embodiment, the installation component is a structure designed to facilitate rapid installation.
[0034] like Figure 1 , Figure 2 and Figure 3 As shown, the installation support mechanism 200 includes an installation component and a connecting component installed on the bottom of the elevated ground main plate 1; the installation component includes several support feet 201, anti-slip pads 202 bonded to the bottom of the support feet 201, support columns 203 fixed to the top of the support feet 201, threaded rods 204 fixed to the top of the support columns 203, an internal threaded cylinder 205 threaded to the outside of the threaded rod 204, a support plate 206 fixed to the outside of the internal threaded cylinder 205, an adjusting cylinder 207 fixed to the top of the internal threaded cylinder 205, an internal hexagonal groove 208 opened on the top of the adjusting cylinder 207, and several insertion holes 209 opened on the top of the elevated ground main plate 1.
[0035] It should be noted that the anti-slip pad 202 is a wear-resistant rubber pad, which can play a good role in wear resistance and anti-slip. The top and bottom of the internal threaded cylinder 205 are both open. The bottom of the adjusting cylinder 207 has a sliding groove for the threaded rod 204 to pass through and slide, so that the internal threaded cylinder 205 can rotate normally and the end of the threaded rod 204 can enter the interior of the sliding groove. Then, the adjusting cylinder 207 can be rotated through the internal hexagonal groove 208, so that the internal threaded cylinder 205 rotates outside the threaded rod 204, thereby completing the height adjustment of the main body plate 1 of the elevated ground. Specifically, the height of the two diagonally opposite internal threaded cylinders 205 and the support plate 206 can be adjusted first to determine the height of the main body plate 1 of the elevated ground, and then the other two can be adjusted to complete the stable positioning.
[0036] In addition, the top of the support plate 206 abuts against the bottom of the elevated ground main plate 1, so that the support plate 206 can support the elevated ground main plate 1. The support plate 206 is circular in shape and the top of the support plate 206 is smooth, so that the support plate 206 can be driven to rotate. Each elevated ground main plate 1 has four support feet 201 at the bottom and four insertion holes 209 at the top of each elevated ground main plate 1. The insertion holes 209 can be used to insert the corresponding adjustment cylinders 207, so that the elevated ground main plate 1 can be positioned by the insertion action between the insertion holes 209 and the adjustment cylinders 207. During the adjustment process, the adjustment cylinders 207 are always located inside the corresponding insertion holes 209.
[0037] In this embodiment, the connecting component is a structure used to connect and cover the gap at the connection point.
[0038] like Figure 1 , Figure 2 and Figure 4 As shown, the connecting assembly includes an insertion slot 210 on the outside of the elevated ground main plate 1, a connecting slot 211 on the outside of the elevated ground main plate 1, several docking cavities 212 inside the elevated ground main plate 1, a supplementary slot 213 on the outside of the elevated ground main plate 1, an insertion plate 214 inserted into the inside of the insertion slot 210, several docking blocks 215 fixed to the bottom of the insertion plate 214, and a connecting plate 216 fixed to the top of the insertion plate 214.
[0039] It should be noted that the tops of the insertion groove 210, connecting groove 211, and supplementary groove 213 are all open, and the interiors of the insertion groove 210, connecting groove 211, and supplementary groove 213 are all connected. The interior of the mating cavity 212 is connected to the interior of the insertion groove 210, so that the sealant injected into the supplementary groove 213 can flow inside the insertion groove 210, connecting groove 211, and mating cavity 212. The insertion groove 210, connecting groove 211, and supplementary groove 213 are all arranged in a ring around the outer side of the raised ground main plate 1. The inner side of the supplementary groove 213 is inclined and has a triangular cross-section. This allows the adjacent insertion groove 210, connecting groove 211, and supplementary groove 213 to be connected when two adjacent raised ground main plates 1 come into contact, facilitating the filling and flow of sealant and thus sealing the gap at the joint.
[0040] In addition, the docking block 215 can be inserted into the inner side of the corresponding docking cavity 212, and the connecting plate 216 can be inserted into the inner side of the connecting groove 211, so that the connecting plate 216 and the docking block 215 can play a role in connecting and fixing two adjacent elevated ground main panels 1.
[0041] Meanwhile, the width of the connecting plate 216 is equal to the width of the plug-in plate 214, and the width of the connecting plate 216 is equal to 1.5 times the width of the main body plate 1 of the elevated ground. Specifically, Figure 1 For example, the width of the connecting plate 216 arranged from left to right is equal to the width of the plug-in plate 214, while the length of the connecting plate 216 arranged from front to back is equal to the length of the plug-in plate 214. Furthermore, the length of the connecting plate 216 arranged from front to back is 1.5 times the length of the elevated ground main body plate 1. This allows the connecting plate 216 and the plug-in plate 214 to provide good plug-in shielding at the connection points between adjacent elevated ground main body plates 1. Figure 4 This is a schematic diagram showing the connection between four adjacent elevated ground main panels 1 and a connecting plate 216.
[0042] The working principle of the above embodiments is as follows:
[0043] During construction and installation, the support feet 201 are placed on the ground according to the preset points. The elevated ground main plate 1 is moved to the outer side of the corresponding four support feet 201, and the adjusting cylinder 207 is inserted into the inner side of the corresponding insertion hole 209, so that the bottom of the elevated ground main plate 1 abuts against the top of the corresponding four support plates 206. The height of the elevated ground main plate 1 is adjusted according to actual needs. The adjusting cylinder 207 is rotated through the internal hexagonal groove 208, so that the adjusting cylinder 207 drives the internal threaded cylinder 205 to rotate outside the threaded rod 204. This allows the internal threaded cylinder 205 to be raised and lowered outside the threaded rod 204 under the action of the threaded connection, thereby adjusting the height position of the elevated ground main plate 1. After the adjustment is completed, sealant is injected into the inside of the insertion hole 209 to complete the fixing work. After the adjacent elevated ground main plates 1 are spliced together, the two adjacent supplementary grooves 213 Two adjacent insertion slots 210 and two adjacent connecting slots 211 can be joined together to form a slot for insertion of the insertion plate 214. The sealant is injected into the slot to fill the supplementary slot 213. The insertion plate 214 is inserted into the inside of the insertion slot 210, and the mating block 215 is inserted into the inside of the corresponding mating cavity 212. When an external object enters and squeezes the sealant, the sealant can flow and fill between the outside of the insertion plate 214 and the mating block 215. The connecting plate 216 is pressed and inserted into the inside of the connecting slot 211 to complete the gap connection. This allows the adjacent raised floor main panels 1 to be connected together to form a whole, thereby improving the sealing ability and stability of the connection. This gives the raised floor a high load-bearing capacity after installation. Finally, the decorative panel 3 is fixed to the raised floor main panel 1.
[0044] Compared with existing technologies, this rapid-installation high-load-bearing raised floor facilitates rapid construction and installation through the coordinated use of the installation support mechanism 200 on the outer side of the main raised floor panel 1 and the decorative panel 3. It can also reinforce the gaps between adjacent raised floor sections by interlocking, allowing the gaps to be connected and improving the overall consistency of the raised floor. It also enhances the waterproofing of the raised floor and strengthens the support strength at the gaps. Thus, the raised floor is easy to install and has extremely high load-bearing capacity, effectively improving its practicality and solving the problem of the cumbersome installation process of existing high-load-bearing raised floors.
Claims
1. A rapid-installation high-load-bearing raised ground system, comprising several raised ground main panels (1), characterized in that: An installation support mechanism (200) is installed on the outside of the elevated ground main body plate (1), and a decorative panel (3) is fixed between the tops of several elevated ground main body plates (1). The installation support mechanism (200) includes an installation component and a connection component installed on the bottom of the elevated ground main plate (1); the installation component includes several support feet (201), anti-slip pads (202) bonded to the bottom of the support feet (201), a support column (203) fixed to the top of the support feet (201), a threaded rod (204) fixed to the top of the support column (203), an internal threaded cylinder (205) threaded to the outside of the threaded rod (204), a support plate (206) fixed to the outside of the internal threaded cylinder (205), an adjusting cylinder (207) fixed to the top of the internal threaded cylinder (205), an internal hexagonal groove (208) opened on the top of the adjusting cylinder (207), and several insertion holes (209) opened on the top of the elevated ground main plate (1); The connecting assembly includes a plug slot (210) on the outside of the elevated ground main plate (1), a connecting slot (211) on the outside of the elevated ground main plate (1), several docking cavities (212) inside the elevated ground main plate (1), a supplementary slot (213) on the outside of the elevated ground main plate (1), a plug plate (214) inserted into the inside of the plug slot (210), several docking blocks (215) fixed to the bottom of the plug plate (214), and a connecting plate (216) fixed to the top of the plug plate (214).
2. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: The tops of the plug-in groove (210), the connecting groove (211), and the supplementary groove (213) are all open. The interiors of the plug-in groove (210), the connecting groove (211), and the supplementary groove (213) are all connected. The interior of the docking cavity (212) is connected to the interior of the plug-in groove (210).
3. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: The docking block (215) can be inserted into the inner side of the corresponding docking cavity (212), and the connecting plate (216) can be inserted into the inner side of the connecting groove (211).
4. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: The width of the connecting plate (216) is equal to the width of the plug-in plate (214), and the width of the connecting plate (216) is equal to 1.5 times the width of the elevated ground main plate (1).
5. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: The anti-slip pad (202) is a wear-resistant rubber pad, and the top and bottom of the internal threaded cylinder (205) are both open.
6. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: The bottom of the adjusting cylinder (207) is provided with a sliding groove for the threaded rod (204) to pass through and slide, and the top of the support plate (206) abuts against the bottom of the overhead ground main plate (1).
7. A rapid installation high load-bearing capacity elevated ground system according to claim 1, characterized in that: The support plate (206) is circular in shape, and the top of the support plate (206) is smooth. Each of the elevated ground main plate (1) has four support feet (201) at its bottom.
8. The rapid installation of a high-bearing-capacity elevated ground according to claim 1, characterized in that: Each of the above-ground main body panels (1) has four insertion holes (209) on its top, and the insertion holes (209) can be used to insert the corresponding adjustment cylinder (207).