Floor structure with honeycomb sides
By designing a combination of through holes and rib beams in the floor slab structure, the problem of poor indoor ventilation caused by raised floors is solved, achieving good air circulation and cleanliness, making it suitable for computer rooms or cleanroom environments.
Patent Information
- Application Number
- CN202210469939.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-28
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2042-04-28
AI Technical Summary
Existing raised floors in buildings result in poor indoor ventilation, making it difficult to meet the air purification requirements of computer rooms or cleanrooms.
Design a floor structure with honeycomb sides, including a floor slab and ribs. The floor slab has through perforations, and the ribs are arranged on the surface of the floor slab to form multiple openings. Multiple perforations are formed by pouring cement through a molding die to ensure air circulation.
It achieves good indoor ventilation, effectively removes foreign objects and introduces clean air, meeting the cleanliness requirements of computer rooms or cleanrooms.
Smart Images

Figure CN117005598B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present invention relates to a floor structure with honeycomb sides, and more particularly, to a waffle-type floor structure with honeycomb sides. BACKGROUND
[0002] Currently, raised floors are widely used in anti-static computer rooms or dust-free rooms. The existing aluminum alloy die-cast raised floors are mainly completed through five processes of mold opening, aluminum melting, die-casting, molding, and edge trimming.
[0003] When the raised floor is erected, the flatness of the floor of each floor of the building is extremely important, so that the raised floor of the entire floor can remain flat after the raised floor is erected.
[0004] However, the floor of the building after the raised floor is erected, the indoor ventilation is poor, so that the indoor air exchange is difficult, resulting in that the indoor cleanliness cannot meet the needs of the computer room or dust-free room.
[0005] Therefore, how to overcome the above problems of the prior art has become a urgent problem to be solved at present. SUMMARY
[0006] The purpose of the present invention is to provide a floor structure with honeycomb sides to solve at least one of the above problems.
[0007] In view of the various defects of the prior art, the present invention provides a floor structure with honeycomb sides, comprising: a floor having opposite first and second surfaces, and forming a plurality of through holes penetrating the first and second surfaces, wherein the first surface of the floor is used to configure the floor; and a rib beam configured on the second surface of the floor and externally exposed to a plurality of through holes.
[0008] In the aforementioned floor structure with honeycomb sides, the floor is defined as a main chamber area, so that the plurality of through holes are located in the main chamber area. For example, the main chamber area is surrounded by four rib beams, and a plurality of openings are formed in the main chamber area, so that the plurality of through holes are exposed to the openings. Further, the depth of the opening is 230 to 300 mm.
[0009] In the aforementioned floor structure with honeycomb sides, the rib beam is a frame-shaped cross beam.
[0010] In the aforementioned floor structure with honeycomb sides, the floor is a honeycomb floor fixed to the support structure for the raised floor.
[0011] In the aforementioned floor structure with honeycomb sides, it further comprises a plurality of columns erected on the first surface of the floor, and the thickness of the floor structure with honeycomb sides is 900 to 1100 mm. For example, the column also extends through the floor to be erected on the second surface.
[0012] In the aforementioned floor structure with honeycomb sides, the forming mold for the first perforations comprises a cylinder with four circular holes and a slot connected to the cylinder, so that when the floor is formed by pouring cement, the forming mold is removed to form the first perforations and at least one opening exposing the first perforations.
[0013] In the aforementioned floor structure with honeycomb sides, the forming mold for the first perforations comprises a cylinder with four circular holes and a slot connected to the cylinder, so that when the floor is formed by pouring cement, the forming mold is removed to form the first perforations and at least one opening exposing the first perforations.
[0014] As can be seen from the above, the floor structure with honeycomb sides of the present application mainly uses the design of the plurality of perforations to allow foreign matter to be discharged to the outside of the room through the plurality of perforations after the floor is erected, and clean air to enter the room from the outside of the room through the upper part of the room. Therefore, compared with the prior art, the floor structure with honeycomb sides of the present application can effectively maintain good indoor ventilation when used to construct the indoor space of a building, so as to facilitate the replacement of clean air in the room and make the indoor cleanliness meet the needs of a machine room or a clean room. BRIEF DESCRIPTION OF DRAWINGS
[0015] FIG. 1A FIG. 1 is a partial perspective top view of a floor structure with honeycomb sides according to the present application.
[0016] FIG. 1B FIG. 2 is a bottom view of the floor structure shown in FIG. 1. FIG. 1A
[0017] FIG. 2A FIG. 3 is a partial perspective top view of another embodiment of the floor structure with honeycomb sides according to the present application. FIG. 1A
[0018] FIG. 2B FIG. 4 is a bottom view of the floor structure shown in FIG. 3. FIG. 2A
[0019] FIG. 3A to FIG. 3B FIG. 5 is a perspective top view of the floor structure shown in FIG. 3 when a raised floor is installed. FIG. 1A
[0020] FIG. 3C FIG. 6 is a perspective view of the floor shown in FIG. 5. FIG. 3A
[0021] FIG. 4A to FIG. 4B FIG. 7 is a perspective top view of the floor structure shown in FIG. 3 when a raised floor is installed. FIG. 2A
[0022] FIG. 5 FIG. 8 is a perspective view of the forming mold for the second perforations shown in FIG. 3. FIG. 1B
[0023] FIG. 6 FIG. 9 is a perspective view of the forming mold for the second perforations shown in FIG. 3.FIG. 1B Fig. 1 is a perspective view of a first forming die for a through-hole.
[0024] Reference signs are as follows:
[0025] 1, 2 floor structure having honeycomb sides
[0026] 3 support structure for raised floor
[0027] 4 honeycomb floor
[0028] 4a ground side
[0029] 4b bottom side
[0030] 5, 6 forming die
[0031] 10, 20 floor
[0032] 10a, 20a first surface
[0033] 10b, 20b second surface
[0034] 11, 21 rib
[0035] 12 column
[0036] 40 through-hole
[0037] 50, 60 round hole
[0038] 61 cylindrical hole
[0039] 62 slotted hole
[0040] 100 first through-hole
[0041] 110 second through-hole
[0042] 111 opening
[0043] 200 through-hole
[0044] A main room area
[0045] D hole diameter
[0046] F air flow direction
[0047] S empty space
[0048] X, Y, Z arrow direction DETAILED DESCRIPTION
[0049] The advantages and effects of the present application will be apparent to those skilled in the art from the following description of specific embodiments of the present application, given by way of example only.
[0050] It is to be understood that the structures, proportions, sizes, etc. shown in the drawings accompanying the present specification are merely intended to assist understanding of the content disclosed in the present specification, for the understanding and reading of those skilled in the art, and are not intended to limit the conditions for implementing the present application, and therefore do not have technical significance. Any modification of the structure, change of the proportional relationship, or adjustment of the size, without affecting the effects and purposes that can be achieved by the present application, should still fall within the scope of the technology disclosed by the present application. Meanwhile, the terms such as "upper", "lower", "left", "right", "front", "rear", "first", "second", and "one" used in the present specification are merely for the purpose of clear understanding, and are not intended to limit the scope of the present application, and the change or adjustment of the relative relationship, without substantially changing the technical content, is also considered as the scope of the present application.
[0051] FIG. 1A And FIG. 1B is a schematic view of a first embodiment of a floor structure 1 with honeycomb sides of the present application. In the present embodiment, the floor structure 1 with honeycomb sides defines the directions along its edges as left and right directions (such as arrow direction X) and front and rear directions (such as arrow direction Y), and defines the direction along the height of the floor structure 1 with honeycomb sides as upper and lower directions (such as arrow direction Z). It should be understood that the orientation is used to illustrate the configuration of the present embodiment, and is not particularly limited.
[0052] As shown in FIG. 1A and FIG. 1B , the floor structure 1 with honeycomb sides is of a waffle type, which includes at least one rib beam 11, a floor 10 provided on the rib beam 11, and a plurality of column bodies 12 erected on the floor 10.
[0053] The floor 10 is a floor body (the thickness of the floor structure 1 with honeycomb sides is 900 to 1100 mm), which has opposite first and second surfaces 10a and 10b, and forms a plurality of first perforations 100, such as circular perforations, penetrating through the first and second surfaces 10a (such as the top) and 10b (such as the bottom).
[0054] In the present embodiment, the floor 10 can define at least one main chamber area A as needed, so that a plurality of first perforations 100 are located in the main chamber area A. For example, the main chamber area A is a rectangular area.
[0055] The rib beam 11 is a floor bottom, such as a grid-shaped or lattice-shaped support, which is integrally formed on the second surface 10b (bottom) of the floor 10 as a honeycomb side, and forms a plurality of second perforations 110, such as circular perforations, penetrating through the floor 10 and the rib beam 11. The forming mold 5 of the second perforations 110 is as shown in FIG. 5The second perforations 110 are formed in the rib beams 11, so more cement is needed to increase the strength of the rib beams 11.
[0056] In this embodiment, a plurality of openings 111 (the depth of the openings 111 is 230-300 mm) are formed in the main room area A between the four rib beams 11, as shown in the rectangle in FIG. 1B The forming mold 6 of the openings 111 is shown in FIG. 6 The forming mold 6 of the openings 111 is integrally formed with the floor 10 when the cement is poured, so the diameter D of the first perforations 100 is the same as the diameter of the round holes 60 of the forming mold 6. For example, a single opening 111 corresponds to a plurality (four) of first perforations 100. Specifically, the diameter D of the first perforations 100 is the same as that of the second perforations 110 (both are 310-510 mm), but the diameters of the first perforations 100 and the second perforations 110 can be different according to special requirements. Since the first perforations 100 are not formed in the rib beams 11, more cement is not needed to increase the strength of the rib beams 11, so the use of the openings 111 can save cement.
[0057] Furthermore, the second perforations 110 are located outside the main room area A, so the second perforations 110 surround the first perforations 100.
[0058] The column 12 is an inter-floor support, as shown in the rectangular shape in FIG. 1A and FIG. 1B which is erected on the first surface 10a and the second surface 10b of the floor 10.
[0059] In this embodiment, the column 12 is arranged at the four corners of the main room area A and extends the floor 10 to be located on the second surface 10b.
[0060] In another embodiment, as shown in FIG. 2A and FIG. 2B the floor structure 2 with the honeycomb side can use a thicker floor 20 as the main body of the floor and use a beam as the rib beam 21, so that a plurality of perforations 200 are formed in the main room area A and penetrate the first surface 20a and the second surface 20b of the floor 20, and the rib beam 21 is arranged on the second surface 20b of the floor 20 along the edge of the main room area A to connect the columns 12, wherein the rib beam 21 does not need to form the above-mentioned openings 111. FIG. 1B
[0061] Next, the first perforations 100 and the second perforations 110 are formed in the openings 111, as shown in FIG. 1A and FIG. 1B As shown in the floor structure 1 with honeycomb sides, after the floor structure 1 with honeycomb sides is constructed, a plurality of support structures 3 for raised floors can be arranged on the first surface 10a of the floor 10, as shown in FIG. 3A As shown in the four orientations of the first perforations 100, a plurality of rectangular honeycomb floors 4 can be arranged on the support structures 3 for raised floors, as shown in FIG. 3A and FIG. 3B As shown, a single honeycomb floor 4 is fixed on four support structures 3 for raised floors (or a single support structure 3 for raised floors supports the corners of four honeycomb floors 4), and a hollow space S is formed between each honeycomb floor 4 and the first surface 10a of the floor 10, wherein the honeycomb floor 4 defines opposite ground sides 4a and bottom sides 4b and a plurality of through holes 40 that communicate the ground sides 4a and the bottom sides 4b, as shown in FIG. 3C
[0062] As can be understood, if the floor structure 2 with honeycomb sides shown in FIG. 2A and FIG. 2B is used as an example, after the floor structure 2 with honeycomb sides is constructed, a plurality of support structures 3 for raised floors can be arranged on the first surface 20a of the floor 20, as shown in FIG. 4A As shown in the four orientations of the perforations 200, a plurality of rectangular honeycomb floors 4 can be arranged on the support structures 3 for raised floors, as shown in FIG. 4A and FIG. 4B As shown, a hollow space S is formed between each honeycomb floor 4 and the first surface 10a of the floor 10.
[0063] FIG. 5 As shown in the floor structure 1 with honeycomb sides, after the floor structure 1 with honeycomb sides is constructed, a plurality of support structures 3 for raised floors can be arranged on the first surface 10a of the floor 10, as shown in FIG. 6 As shown, the first perforations 100 use another forming mold 6, which includes a cylinder 61 with four round holes 60 and a slot 62 that communicates the cylinder 61, so that after the floor 10 is formed by pouring cement, the formwork and the forming mold 6 are removed, and the first perforations 100 and the openings 111 are formed.
[0064] Therefore, the floor structure 1, 2 with honeycomb side of the present application is designed with a plurality of first perforations 100 (and second perforations 110) or perforations 200, so that after the elevated floor (i.e. the combination of the elevated floor support structure 3 and the honeycomb floor 4) is erected, the plurality of first perforations 100 (and second perforations 110) or perforations 200 communicate with the empty space S, so that the through holes 40 of the honeycomb floor 4 can communicate with the plurality of first perforations 100 (and second perforations 110) or perforations 200, thus when the indoor dust removal operation is performed, indoor airflow (such as clean air) can flow from top to bottom (such as the airflow direction F shown in FIG. 3B or FIG. 4B the drawing), so that foreign matter can be discharged to the outdoor through the through holes 40 and the plurality of first perforations 100 or perforations 200, and clean air can enter the indoor from the outdoor through the top of the indoor.
[0065] In summary, the floor structure 1, 2 with honeycomb side of the present application is used to construct the indoor space of a building, which can effectively maintain good indoor ventilation, so as to facilitate the replacement of clean air in the indoor, so that the indoor cleanliness meets the needs of the machine room or clean room.
[0066] The above embodiments are only used to illustrate the principles and effects of the present application, and are not used to limit the present application. Those skilled in the art can modify the above embodiments without departing from the spirit and scope of the present application. Therefore, the protection scope of the present application should be as listed in the claims.
Claims
1. A floor slab structure with honeycomb sides, comprising: A floor slab having opposing first and second surfaces defining a main room area, and forming a plurality of perforations penetrating the first and second surfaces, wherein the first surface of the floor slab is used to mount the floor, and a plurality of openings are formed within the main room area, the plurality of perforations including first and second perforations, the plurality of first perforations being located within the main room area and four of the first perforations correspondingly exposed at one of the openings, and the plurality of second perforations being located outside the main room area and surrounding the plurality of first perforations; and The ribs are disposed on the second surface of the floor slab and exposed through a plurality of second perforations penetrating the floor slab and the ribs, and the main room area is enclosed by four of the ribs.
2. The floor slab structure with honeycomb sides as described in claim 1, wherein, The depth of the opening is 230 to 300 millimeters.
3. The floor slab structure with honeycomb sides as described in claim 1, wherein, The rib is a frame-like crossbeam.
4. The floor slab structure with honeycomb sides as described in claim 1, wherein, The floor is a honeycomb floor, which is fixed to the support structure used for raised floors.
5. The floor slab structure with honeycomb sides as described in claim 1, wherein, The floor structure also includes multiple columns erected on the first surface of the floor, and the thickness of the floor structure with honeycomb sides is 900 to 1100 mm.
6. The floor slab structure with honeycomb sides as described in claim 5, wherein, The column also extends through the floor slab and stands on the second surface.
7. The floor slab structure with honeycomb sides as described in claim 1, wherein, The forming mold for perforation includes a cylinder with four holes and a slot communicating with the cylinder, so that after the cement is poured to form the floor slab, the forming mold can be removed to form the first perforation and at least one opening exposing the first perforation.
8. The floor slab structure with honeycomb sides as described in claim 1, wherein, The forming mold for the second perforation has a round hole, so that after the cement is poured to form the floor slab, the forming mold can be removed to form the second perforation.
Citation Information
Patent Citations
Standard raised floor
CN116265674A
Wafer board mould
CN206351485U
Floor structure with honeycomb side
CN217299400U
Vent construction of housing
JP1998110480A