Groove type fixing seat assembly and composite shockproof raised floor supporting device

By designing the groove-type fixed seat assembly, the problem of the overhead floor support device being difficult to maintain flatness when assembling floors of different weights or thicknesses is solved, achieving a more stable and convenient assembly effect.

CN223018072UActive Publication Date: 2025-06-24HUIYA SCI & TECH SUZHOU CO LTD
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Patent Information

Application Number
CN202421616410.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-06-24
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

When assembling flooring of different weights or thicknesses, existing elevated floor support devices are difficult to maintain surface flatness, resulting in vibration and inconvenient use.

Method used

A groove-type fixed seat assembly is designed to connect the first cross beam connector around the base to form a stable groove structure, enhance the overall stability and load-bearing capacity, and set up connections and positioning parts of different heights according to the different floor structures.

Benefits of technology

It realizes that when assembling floors of different weights or thicknesses, maintain surface flatness, reduce vibration, and improve use convenience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a groove type fixing seat assembly and a composite type shockproof raised floor supporting device. The groove type fixing seat assembly comprises at least one groove type fixing seat assembly, a plurality of cross beams and a plurality of first type floors. The at least one groove type fixing seat assembly comprises a base and at least two first cross beam connecting pieces, and the first cross beam connecting pieces are connected to the periphery of the base. The base comprises a surface, an extending outer surface and a bottom surface, the surface and the bottom surface are two opposite surfaces of the base, and the extending outer surface is bent from the periphery of the surface and extends for a certain distance, so that the extending outer surface and the bottom surface jointly form a groove body; the cross beams are used for connecting the groove type fixing base assemblies, and the first cross beam connecting pieces are connected with the corresponding cross beams respectively. The four corners of each first type floor are respectively provided with a groove, and the grooves abut against the surfaces of the corresponding bases. In addition, the utility model also provides a groove type fixing seat assembly.
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Description

Technical Field

[0001] The utility model relates to a supporting device, in particular to a trough type fixing seat assembly and a composite shock-proof elevated floor supporting device. Background Art

[0002] Elevated floors (also known as raised floors or access floors) have multiple uses and are mainly applied to high-tech factories, modern buildings, or office working environments. The main uses of elevated floors can be used as air supply or return air channels for air conditioning systems, which helps to improve indoor air circulation. It can also be used for line management, providing space for arranging power, network, communication and other lines, facilitating the installation, maintenance and update of lines, thereby providing a space for flexible layout. Floor modules can be easily replaced or moved according to needs, beautifying the indoor environment, hiding various pipelines and equipment, or providing functions such as moisture-proof, anti-static, and sound insulation in specific environments. It can be seen that the versatility and flexibility of elevated floors provide more design and function options in high-tech factories, modern buildings, or office working environments.

[0003] Chinese Patent Publication No. CN215858845U discloses a supporting device for an elevated floor. When installing the floor, since the floor is laid manually, workers often cannot lay multiple floors flat, resulting in inconsistent gaps between the floors, which causes the floors to easily warp and the ground to be uneven. The support seat is a rectangular plate for installing the elevated floor, and the bearing member is used to connect the cross beam. However, the bearing member is located between the support seat and the round tube and is not connected to the support seat together. This makes the bearing member, which is a cross beam connecting piece, separated from the support seat, resulting in an unstable structure of the elevated floor and vibrations.

[0004] In addition, elevated floors can be installed with floors of different weights or materials according to the actual environment and then assembled. For example, in a high-tech factory, machines need to be placed. The floor corresponding to the position of the machine can be installed with a floor that can bear a heavier weight, and the floors in other positions can use relatively light-weight floors, thereby reducing the assembly cost and the overall weight.

[0005] However, for floors of different weights or thicknesses, their thicknesses are also different. Traditionally, elevated floors use feet with the same height to keep the assembled elevated floor flat. Therefore, how to keep the surface of the elevated floor flat after assembling floors of different weights or thicknesses, and avoid affecting the convenience and safety of people moving and transporting items on the elevated floor due to uneven surfaces. Summary of the Utility Model

[0006] The object of the present utility model is to provide a trough-type fixing seat assembly and a composite shock-proof elevated floor support device. By fixing the crossbeams at the four corners of the trough-type fixing seat assembly, vibration can be prevented.

[0007] The present utility model provides a trough-type fixing seat assembly, which includes a base, at least two first crossbeam connectors, a central hole, four floor fixing holes, and at least one positioning member. The base is a rectangular body, and the base includes a surface, an extended outer surface, an extended inner surface, a bottom surface, and an extended upper surface. The surface and the bottom surface are the two opposite sides of the base. The extended outer surface is connected to the periphery of the surface and extends in one direction. The extended inner surface is connected to the periphery of the bottom surface and extends in one direction. The extended outer surface is bent from the periphery of the surface, and the extended inner surface is bent from the periphery of the bottom surface and extends in a direction normal to the bottom surface by a certain distance. The extended upper surface is connected to the extended outer surface and the extended inner surface, so that the surface, the extended outer surface, the extended inner surface, the bottom surface, and the extended upper surface together form a trough. These crossbeam connectors are respectively connected to the periphery of the base. The crossbeam connector includes a crossbeam connecting piece and a connecting portion. The connecting portion is connected to the extended upper surface and the crossbeam connecting piece. The connecting portion extends a certain distance from the extended upper surface, and an extending direction of the crossbeam connecting piece is perpendicular to an extending direction of the connecting portion. The central hole is located at a central position of the surface of the base, and the central hole is a hole penetrating the base. The four floor fixing holes are equidistant from the center of the central hole respectively, and these floor fixing holes are respectively penetrated through the corners of the base, so that the four floor fixing holes are respectively located around the central hole. At least one positioning member protrudes from the surface of the base respectively, and at least one positioning member is adjacent to the corresponding floor fixing hole respectively. The positioning member is used for supporting a corner of the corresponding four floors respectively to position the positions of these four floors.

[0008] In an embodiment, the depth of the above trough ranges between 13 mm and 16 mm. The depth is defined as the vertical distance from the surface of the base to the extended outer surface along a vertical extending direction.

[0009] In an embodiment, the above trough-type fixing seat assembly includes a screw and a base. The screw is arranged at the bottom of the base. The base includes a hollow circular tube with an opening, a tube cap, a nut, at least one locking hole, at least one locking member, and a bottom plate. At least one locking hole is penetrated through the side surface of the hollow circular tube. The tube cap covers the opening at the upper end of the hollow circular tube. The nut is used for sleeving on the screw, and the nut is located above the tube cap. One end of the screw is sequentially penetrated through a screw hole in the tube cap and into the interior of the hollow circular tube. The screw is locked to the tube cap by using the nut, and the tube cap is fixed by using at least one locking member to penetrate through and lock to at least one locking hole.

[0010] The present utility model further provides a composite shock-proof elevated floor support device, which includes at least one trough-type fixing base assembly, a plurality of cross beams, and a plurality of first-type floors. At least one trough-type fixing base assembly includes a base, at least two first cross beam connectors, and these first cross beam connectors are respectively connected around the base. Among them, the base includes a surface, an extended outer surface, an extended inner surface, a bottom surface, and an extended upper surface. The surface and the bottom surface are two opposite sides of the base. The extended outer surface is bent from the periphery of the surface and the extended inner surface is simultaneously bent from the periphery of the bottom surface and extends a distance in a normal direction of the bottom surface. The extended upper surface is connected to the extended outer surface and the extended inner surface, so that the surface, the extended outer surface, the extended inner surface, the bottom surface, and the extended upper surface together form a trough. The cross beams are used to connect the trough-type fixing base assemblies, and these first cross beam connectors are respectively connected to the corresponding cross beams. Each of the four corners of the first-type floor has a groove, and these grooves are supported on the corresponding surface of the base.

[0011] In one embodiment, the depth of the above-mentioned trough ranges from 13 mm to 16 mm, and the depth is defined as the vertical distance from the surface of the base to the extended outer surface along a vertical extension direction.

[0012] In one embodiment, the above-mentioned first cross beam connector includes a cross beam connecting piece and a connecting part. The connecting part is connected to the extended outer surface and the cross beam connecting piece. The connecting part extends a distance from the extended outer surface. The cross beam connecting piece extends a distance from one end of the connecting part, and the extending direction of the cross beam connecting piece is different from the extending direction of the connecting part, and these first cross beam connectors are respectively integrally formed with the base.

[0013] In one embodiment, the thickness of the above-mentioned cross beam connecting piece ranges from 4.5 to 4.85 mm.

[0014] In one embodiment, the above-mentioned at least one trough-type fixing base assembly further includes at least one positioning member. The at least one positioning member respectively protrudes from the surface of the base, and the at least one positioning member is respectively used to position the position of the first-type floor. The above-mentioned positioning members respectively include a first convex part, a second convex part, and a concave part. The first convex part is connected to the corresponding second convex part, and a concave part is formed at the intersection of the first convex part and the corresponding second convex part.

[0015] In one embodiment, the above-mentioned at least one trough-type fixing base assembly includes a plurality of floor fixing holes, a central hole, and a threaded rod member. These floor fixing holes respectively penetrate through the base, and at least one positioning member is adjacent to the corresponding floor fixing hole. The central hole penetrates through the base, and these floor fixing holes are respectively located around the central hole. One end of the threaded rod member is inserted into the central hole, and the threaded rod member is arranged at the bottom of the base.

[0016] In one embodiment, the at least one grooved fixing seat assembly includes: at least one second crossbeam connecting member and at least one grooved opening. The at least one second crossbeam connecting member is disposed inside the base, and these second crossbeam connecting members are respectively connected to the corresponding crossbeams. One surface of the at least one second crossbeam connecting member is recessed from the surface of the base. A crossbeam connecting piece of each of these first crossbeam connecting members is lower than the surface of the base and the surface of the second crossbeam connecting member. The at least one grooved opening is disposed in the base.

[0017] In one embodiment, the above-mentioned first type of floor is disposed in a first area. The composite shock-proof elevated floor support device further includes a plurality of second type of floors, and the second type of floors are disposed in a second area. The second area is disposed around the first area. One corner of each of four second type of floors among these second type of floors is respectively abutted against a standard fixing seat.

[0018] In one embodiment, the at least one grooved fixing seat assembly includes a first type of grooved fixing seat, which respectively supports one corner of four first type of floors. The first type of grooved fixing seat includes the base, four first crossbeam connecting members. The four first crossbeam connecting members are respectively connected around the base, and four positioning members respectively protrude from the surface of the base.

[0019] In one embodiment, the at least one grooved fixing seat assembly includes a second type of grooved fixing seat, which respectively supports one corner of two first type of floors and two second type of floors. The second type of grooved fixing seat includes a base, three first crossbeam connecting members, a second crossbeam connecting member, and a grooved opening. The grooved opening is disposed in the base. The second crossbeam connecting member is disposed inside the base, and the second crossbeam connecting member is disposed within the grooved opening. The three first crossbeam connecting members are respectively connected around the base, and two positioning members respectively protrude from the surface of the base.

[0020] In one embodiment, the at least one grooved fixing seat assembly includes a third type of grooved fixing seat, which respectively supports one corner of one first type of floor and three second type of floors. The third type of grooved fixing seat includes the base, two first crossbeam connecting members, two second crossbeam connecting members, and two grooved openings. These grooved openings are respectively disposed in the base. The two second crossbeam connecting members are respectively disposed inside the base, and the second crossbeam connecting members are disposed within the grooved openings. The two first crossbeam connecting members are respectively connected around the base, and a positioning member protrudes from the surface of the base.

[0021] In one embodiment, the at least one grooved fixing seat assembly is disposed on a base. The base includes a vertical pipe member, a pipe cap, a nut, a locking hole, and a locking accessory. The vertical pipe member is a hollow circular pipe with an opening. One end of a tooth rod member of the grooved fixing seat assembly is sequentially passed through an internal threaded hole of the pipe cap and passed through the inside of the vertical pipe member.

[0022] Based on the above, in the present utility model, the first crossbeam connecting member is connected around the base instead of being separately arranged. The base and the first crossbeam connecting member are connected together, which can enhance the stability of the overall trough-type fixing seat assembly and will not cause vibration due to the separate bearing of weight by the first crossbeam connecting member or the base.

[0023] Furthermore, the base of the present utility model is a trough-type base. Since the four sides of the base are bent at a certain angle (such as 90 degrees) to form an extended outer surface and a trough body with a certain depth, the bearing weight of the trough-type fixing seat assembly is enhanced.

[0024] In addition, according to the different floor structures (such as thickness) to be supported, the trough-type fixing seat assembly with connecting members and positioning members of different heights can be correspondingly set, whereby a composite anti-vibration elevated floor support device can be flexibly assembled.

[0025] To make the present utility model more obvious and understandable, specific embodiments are hereinafter given and detailed descriptions are made in conjunction with the accompanying drawings as follows. Description of the Drawings

[0026] Figure 1 It is a three-dimensional schematic diagram of the first-type trough-type fixing seat according to the present utility model.

[0027] Figure 2 It is a side schematic diagram of the first-type trough-type fixing seat according to the present utility model.

[0028] Figure 3 It is a three-dimensional schematic diagram of the first-type trough-type fixing seat from another perspective according to the present utility model.

[0029] Figure 4 It is a top-down view schematic diagram of the first-type trough-type fixing seat according to the present utility model.

[0030] Figure 5A It is a top-down view schematic diagram of an embodiment of the first-type trough-type fixing seat connected to a crossbeam according to the present utility model.

[0031] Figure 5B It is a side schematic diagram of an embodiment of the crossbeam according to the present utility model.

[0032] Figure 6 It is a side schematic diagram of an embodiment of the first-type trough-type fixing seat according to the present utility model.

[0033] Figure 7 It is a three-dimensional schematic diagram of the second-type trough-type fixing seat according to the present utility model.

[0034] Figure 8 It is a side schematic diagram of the second-type trough-type fixing seat according to the present utility model.

[0035] Figure 9It is a three-dimensional schematic diagram of another perspective of the second-type groove fixing base according to the present utility model.

[0036] Figure 10 It is a side schematic diagram of an embodiment of the second-type groove fixing base according to the present utility model.

[0037] Figure 11 It is a three-dimensional schematic diagram of the third-type groove fixing base according to the present utility model.

[0038] Figure 12 It is a three-dimensional schematic diagram of another perspective of the third-type groove fixing base according to the present utility model.

[0039] Figure 13 It is an exploded schematic diagram of the standard fixing base and the base according to the present utility model.

[0040] Figure 14 It is a schematic diagram of the standard fixing base assembled on the base according to the present utility model.

[0041] Figure 15 It is a schematic diagram of an embodiment of the combined cross beam of the groove fixing base assembly and the standard fixing base according to the present utility model.

[0042] Figure 16 According to Figure 15 It is a side schematic diagram of an embodiment of the combined cross beam of the groove fixing base assembly and the standard fixing base of the present utility model.

[0043] Figure 17 It is a top view schematic diagram of an embodiment of the composite shock-proof elevated floor support device according to the present utility model.

[0044] Description of reference numerals: 40 - base; 41 - vertical pipe fitting; 42 - pipe cap; 43 - nut; 44 - locking hole; 45 - locking accessory; 46 - fixing hole; 47 - bottom plate; 50A - first area; 50B - second area; 100 - composite shock - proof elevated floor support device; 110 - channel - type fixing seat assembly; 110A - first - type channel - type fixing seat; 110B - second - type channel - type fixing seat; 110C - third - type channel - type fixing seat; 111 - threaded rod member; 112 - base; 112A - surface; 112B - extended outer surface; 112C - bottom surface; 112D - extended inner surface; 112E - extended upper surface; 113 - hex nut; 114 - first cross - beam connecting member; 114A - cross - beam connecting piece; 114B - connecting part; 115 - second cross - beam connecting member; 115A - slot; 115B - surface; 116 - positioning member; 116A - first convex part; 116B - second convex part; 117 - anti - lifting nut; 118 - central hole; 120 - cross - beam; 121 - cross - beam body; 121A - top; 121B - bottom; 122 - fixing hole; 123 - inclined surface; 140A - first - type floor; 140B - second - type floor; 142 - first floor panel; 143 - second floor panel; 144 - first side panel; 145 - second side panel; 146 - groove; 150 - standard - type fixing seat; 152 - base body; 154 - connecting part; 156 - threaded rod member; 158 - central hole; 160 - support leg; A1 - included angle; A2 - bevel angle; D1 - depth; D2 - thickness; D3 - height; L1 - vertical extension direction; L2 - extended extension direction; H1, H2 - thickness; MA - concave part; GA - floor fixing hole; GB - cross - beam fixing hole. Detailed implementation manners

[0045] Examples are listed below and described in detail in conjunction with the accompanying drawings. However, the provided examples are not intended to limit the scope covered by the present utility model. In addition, the drawings are for illustrative purposes only and are not drawn to the original size. For ease of understanding, the same elements will be denoted by the same reference numerals in the following description.

[0046] The terms "including", "comprising", "having", etc. mentioned in the present utility model are open - ended terms, that is, "including but not limited to".

[0047] In the description of each embodiment, when using terms such as "first", "second", "third", "fourth", etc. to describe elements, it is only used to distinguish these elements from each other and does not limit the order or importance of these elements.

[0048] In the description of each embodiment, the so-called "coupling" or "connection" may mean that two or more elements are in direct physical or electrical contact with each other, or are in indirect physical or electrical contact with each other, and "coupling" or "connection" may also mean that two or more elements operate or act on each other.

[0049] Figure 1 It is a perspective view of the first type of groove fixing base according to the present utility model. Figure 2 It is a side view of the first type of groove fixing base according to the present utility model. Figure 3 It is a perspective view of the first type of groove fixing base from another perspective according to the present utility model. Figure 4 It is a top view of the first type of groove fixing base according to the present utility model. Figure 5A It is a top view of an embodiment of the first type of groove fixing base connecting cross beam according to the present utility model. Figure 5B It is a side view of an embodiment of the cross beam according to the present utility model. Figure 6 It is a side view of an embodiment of the first type of groove fixing base according to the present utility model.

[0050] The groove fixing base assembly 110 of the present utility model can be designed with different types of groove fixing bases according to actual situations, where the "groove" is defined as an object having a groove shape or a trench shape; a component is a plurality of independent elements that form a larger system or product. Please refer to Figures 1 to 2 , the first type of groove fixing base 110A in the groove fixing base assembly 110 of the present utility model is a groove body B1 with a certain depth. The first type of groove fixing base 110A includes a base 112, four first cross beam connectors 114, four cross beam fixing holes GB, and a groove body B1. It should be noted that the "depth" is defined as the depth in geometry and physics, referring to the distance or dimension of an object extending in one direction in three-dimensional space, such as the distance from the surface of the object to the farthest end (such as the bottom).

[0051] The base 112 is, for example, a rectangular body, which includes a surface 112A, an extended outer surface 112B, an extended inner surface 112D, a bottom surface 112C, and an extended upper surface 112E. The surface 112A and the bottom surface 112C are two opposite sides of the base 112. The extended outer surface 112B is connected around the surface 112A and extends in one direction. The extended inner surface 112D is connected around the bottom surface 112C and extends in one direction. That is, the extended outer surface 112B is bent from around the surface 112A and the extended inner surface 112D is bent from around the bottom surface 112C at the same time, and extends a distance in the normal direction of the bottom surface 112C. The extended upper surface 112E is connected to the extended outer surface 112B and the extended inner surface 112D, so that the surface 112A, the extended outer surface 112B, the extended inner surface 112D, the bottom surface 112C, and the extended upper surface 112E together form a groove body B1, wherein the normal direction of the bottom surface 112C is defined as a straight line perpendicular to the bottom surface 112C; the groove body B1 is defined as a structure with a U-shaped cross-section, which is formed by the walls of the surface 112A, the bottom surface 112C, the extended outer surface 112B, the extended inner surface 112D, and the extended upper surface 112E. Through the feature that the groove body B1 has a certain depth, it serves as an element for structural support or protection.

[0052] The depth D1 of the groove body B1 ranges between 13 mm and 16 mm. It can be seen from this that the base 112 of the present utility model is defined as a groove-type base. Because the periphery of the surface 112A of the base 112 is bent at a certain angle (such as 90 degrees) and extends a distance to form the extended outer surface 112B, a groove body B1 with a certain depth D1 is formed to enhance the load-bearing capacity of the groove-type fixing seat assembly 110, wherein the depth D1 is defined as the vertical distance along a vertical extension direction L1 from the surface 112A to the extended upper surface 112E (on the side opposite to the surface 112A) of the extended outer surface 112B.

[0053] In a processing embodiment, the present utility model can be processed by stamping. From the periphery of the surface 112A of the base 112, it is bent and extends a distance in the direction of the bottom surface 112C to form the extended outer surface 112B and the extended inner surface 112D. The extended outer surface 112B and the extended inner surface 112D are substantially perpendicular to the bottom surface 112C. Since stamping is a processing method that uses a mold installed on a punching press to apply an external force to metal plates, sheets, pipes, etc., so that the metal plates, sheets, pipes subjected to the external force undergo plastic deformation or separation, thereby obtaining workpieces with the required shapes and sizes. The present utility model can make the base 112 with the extended outer surface 112B and the extended inner surface 112D of a certain depth according to the actual situation through stamping, which can reduce the processing difficulty of the groove-type fixing seat.

[0054] Four first crossbeam connectors 114 are respectively connected around the base 112, and the four first crossbeam connectors 114 are integrally formed with the base 112. For example, the extending upper surfaces 112E connected to the four sides of the base 112 are respectively connected to the first crossbeam connectors 114. Each first crossbeam connector 114 is provided with a crossbeam fixing hole GB for the crossbeam 120 as shown in Figure 5A to pass through and be fixed.

[0055] For example, the first crossbeam connector 114 includes a crossbeam connecting piece 114A and a connecting portion 114B. The connecting portion 114B is connected to the extending upper surface 112E and the crossbeam connecting piece 114A. The connecting portion 114B extends a certain distance from the extending upper surface 112E. The crossbeam connecting piece 114A extends a certain distance from one end of the connecting portion 114B. The extending direction of the crossbeam connecting piece 114A is different from that of the connecting portion 114B, and the two extending directions are perpendicular. The extending direction is defined as the direction in which a structure or component can expand or extend in space, and is used to describe how a structure or component extends or grows in a specific direction.

[0056] Take Figure 2 as an example. The extending direction of the connecting portion 114B is the same as that of the extending outer surface 112B, both along the vertical extending direction L1. The crossbeam connecting piece 114A is formed by bending a certain angle (such as 90 degrees) from one side of the connecting portion 114B, that is, the crossbeam connecting piece 114A extends along an extended extending direction L2 from one side of the connecting portion 114B. The extended extending direction L2 is perpendicular to the vertical extending direction L1, and the extended extending direction L2 is defined as the direction towards the outside of the periphery of the base 112.

[0057] It can be seen therefrom that the first crossbeam connectors 114 are connected around the base 112 of the present utility model, rather than being separately arranged. The base 112 and the first crossbeam connectors 114 are connected together, which can enhance the stability of the overall trough fixing seat assembly 110, and vibration will not be generated due to the first crossbeam connectors 114 or the base 112 separately bearing the weight. It should be noted that the separate arrangement means that two structures or elements are not directly connected to each other, and the functions of the two structures or elements are separated and separately configured or arranged.

[0058] Furthermore, the thickness D2 of the crossbeam connecting piece 114A ranges from 4.5 to 4.85 mm, which can reduce the overall thickness. Overall, the trough fixing seat assembly 110 of the present utility model can not only increase the strength and stability, but also reduce the manufacturing cost.

[0059] In addition, the crossbeam connecting pieces 114A of the four first crossbeam connectors 114 and the surface 112A of the base 112 are at different heights, where the height refers to the vertical distance of an object or shape from the bottom to the top, and different heights mean the position differences of two or more components in the vertical direction, that is, the crossbeam connecting pieces 114A and the surface 112A of the base 112 have position differences in the vertical direction (such as Figure 2 the vertical extension direction L1 shown). For example, there is a height D3 between the bottom of the crossbeam connecting piece 114A and the surface 112A of the base 112, and the height D3 is, for example, 26 mm.

[0060] Furthermore, please also refer to Figures 3 to 4 . The first grooved fixing base 110A of the present utility model further includes four positioning members 116, a central hole 118, and four floor fixing holes GA. The central hole 118 is located at the central position of the surface 112A of the base 112, and the central hole 118 is a hole penetrating through the base 112; the four floor fixing holes GA are respectively equidistant from the center of the central hole 118, and the four floor fixing holes GA are respectively disposed at different positions (such as corners) of the base 112, so that the four floor fixing holes GA are located around the central hole 118, and these floor fixing holes GA are respectively holes penetrating through the base 112.

[0061] The four positioning members 116 respectively protrude from the surface 112A of the base 112, and the four positioning members 116 are respectively adjacent to the corresponding floor fixing holes GA. The positioning members 116 are used for a corner of each of the corresponding four floors to rest against, so as to position the floor, and the floor is locked through the floor fixing holes GA. It should be noted that the "resting against" means a way that an object or component supports or fixes another object or component through direct contact, that is, through the way that the floor contacts the positioning members 116 to support or fix the floor, thereby restricting the position of the floor to achieve the purpose of positioning the floor.

[0062] For example, the positioning member 116 includes a first convex portion 116A, a second convex portion 116B, and a concave portion MA. The first convex portion 116A is connected to the second convex portion 116B, and a concave portion MA is formed at the intersection of the first convex portion 116A and the second convex portion 116B. The position of the floor is positioned by resting against the floor boundary through the concave portion MA. There is an included angle A1 between the first convex portion 116A and the second convex portion 116B. The definition of the included angle A1 is the opening of the concave portion MA, and the included angle A1 is, for example, 90 degrees, that is, the first convex portion 116A and the second convex portion 116B are vertically connected.

[0063] In an embodiment, as Figure 5A and Figure 5BAs shown, the cross beam 120 has a square structure and can be made of aluminum extrusion material. The cross beam 120 includes a cross beam body 121, inclined surfaces 123 provided at both ends of the cross beam body 121, and fixing holes 122. The cross beam body 121 is, for example, a rod member. The cross beam body 121 includes an opposite top 121A and bottom 121B. The fixing holes 122 penetrate through the top 121A. Both ends of the cross beam body 121 are inclined surfaces 123, and an inclined angle A2 is provided on the inclined surface 123. The inclined angle A2 is defined as the angle between one end of the bottom 121B of the cross beam body 121 and the inclined surface 123, which is beneficial for inserting and fixing the first cross beam connecting member 114.

[0064] In this way, after the first cross beam connecting member 114 is inserted from the inclined surface 123 of the cross beam 120, the top 121A of the cross beam body 121 abuts against the first cross beam connecting member 114, and the cross beam fixing hole GB communicates with the fixing hole 122, as Figure 5A shown. The fixing hole 122 is an elongated hole, and the fixing hole 122 exposes the cross beam fixing hole GB. The cross beam 120 is fixed to the first cross beam connecting member 114 through the cross beam fixing hole GB and the fixing hole 122. Since the first cross beam connecting member 114 is connected to the base 112, when the first cross beam connecting member 114 bears weight, the weight can be shared through the base 112, reducing the generation of vibration, thereby enhancing the stability of the overall channel fixing seat assembly 110.

[0065] In an embodiment, as Figure 6 and Figure 1 shown, the first type channel fixing seat 110A in the channel fixing seat assembly 110 further includes a threaded rod member 111, a hexagonal nut 113, and a lifting prevention nut 117. The threaded rod member 111 is, for example, a screw rod, and the threaded rod member 111 is provided at the bottom of the base 112.

[0066] In the present utility model, the upper end of the threaded rod member 111 is fixed to the bottom of the base 112, thereby increasing the strength of the channel fixing seat assembly 110. For example, one end of the threaded rod member 111 is thinner. After being inserted into the central hole 118 and tightly fitted with the central hole 118, the threaded rod member 111 is welded to the bottom of the base 112, thereby increasing the strength of the channel fixing seat assembly 110. Both the hexagonal nut 113 and the lifting prevention nut 117 are fasteners. The hexagonal nut 113 and the lifting prevention nut 117 are respectively screwed onto the threaded rod member 111. Among them, the outer shape of the hexagonal nut 113 is hexagonal, and there is a thread inside the hexagonal nut 113 that matches the threaded rod member 111; the bottom of the lifting prevention nut 117 has a special convex or concave design, which can form a locking effect with a matching washer or fixing surface. The lifting prevention nut 117 is used to prevent the hexagonal nut 113 from loosening under vibration or other external forces.

[0067] Figure 7Schematic perspective view of the second type of groove - type fixing seat according to the present utility model. Figure 8 Schematic side view of the second type of groove - type fixing seat according to the present utility model. Figure 9 Schematic perspective view of the second type of groove - type fixing seat from another perspective according to the present utility model. Figure 10 Schematic side view of an embodiment of the second type of groove - type fixing seat according to the present utility model. In addition to the aforementioned first - type groove - type fixing seat 110A, the groove - type fixing seat assembly 110 of the present utility model can be designed in another form, namely the second - type groove - type fixing seat 110B, according to actual situations. The differences between the second - type groove - type fixing seat 110B and the first - type groove - type fixing seat 110A are as follows: the number of first cross - beam connectors 114 connected to the base 112 is three; around the base 112 where the first cross - beam connectors 114 are not connected, second cross - beam connectors 115 are provided instead; and the number of positioning members 116 is two. The rest is the same as the first - type groove - type fixing seat 110A and will not be repeated here.

[0068] Please first refer to Figures 7 to 9 , the second - type groove - type fixing seat 110B includes a base 112, three first cross - beam connectors 114, four cross - beam fixing holes GB, one second cross - beam connector 115, two positioning members 116, four floor fixing holes GA, four cross - beam fixing holes GB, a central hole 118, and a groove B1. The positioning member 116 has a concave portion MA. The extended outer surface 112B is connected to the surrounding of the surface 112A and bends, and the extended inner surface 112D also bends from the surrounding of the bottom surface 112C and extends a distance in the normal direction of the bottom surface 112C. The extended upper surface 112E is connected to the extended outer surface 112B and the extended inner surface 112D, so that the surface 112A, the extended outer surface 112B, the extended inner surface 112D, the bottom surface 112C, and the extended upper surface 112E together form a groove B1. The depth D1 of the groove B1 ranges from 13 mm to 16 mm, so that the base 112 forms a groove - type base. Since the four sides of the base 112 are bent at a certain angle (such as 90 degrees) to form a groove B1 with a certain depth D1, it is composed of the walls of the surface 112A, the bottom surface 112C, the extended outer surface 112B, the extended inner surface 112D, and the extended upper surface 112E.

[0069] These three first cross - beam connectors 114 are respectively connected to the base 112, and the second cross - beam connector 115 is connected to the inside of the base 112, as shown in Figure 7 or Figure 9As shown, the thickness D2 of the beam connecting piece 114A in the first beam connecting member 114 ranges from 4.5 to 4.85 mm. The beam connecting pieces 114A of these three first beam connecting members 114 and the surface 112A of the base 112 are at different heights. For example, there is a height D3 between the bottom of the beam connecting piece 114A and the surface 112A of the base 112, and the height D3 is, for example, 26 mm. In addition, with the surface 112A of the base 112 as a reference, the surface 115B of the second beam connecting member 115 is recessed from the surface 112A of the base 112, and the beam connecting pieces 114A of the first beam connecting members 114 are respectively lower than the surface 112A of the base 112 and the surface 115B of the second beam connecting member 115.

[0070] The second type of grooved fixing base 110B further includes two slots 115A. The slots 115A are groove bodies formed by slotting the base 112. The second beam connecting member 115 is located between the two slots 115A, such that the two sides of the second beam connecting member 115 are provided with the slots 115A. The slots 115A are for inserting the beam 120 (as Figure 5B shown), and in order to avoid interference with the floor, there is no need to provide the positioning member 116 at the place adjacent to the slots 115A. Each of the first beam connecting member 114 and the second beam connecting member 115 is provided with a beam fixing hole GB, and the beam fixing hole GB is used for Figure 5B the beam 120 to pass through and be fixed.

[0071] In an embodiment, similar to Figure 6 , Figure 10 the second type of grooved fixing base 110B also includes a threaded rod member 111, a hexagonal nut 113, and a lifting-resistant nut 117.

[0072] Figure 11 FIG. is a three-dimensional schematic view of the third type of grooved fixing base according to the present invention. Figure 12 FIG. is a three-dimensional schematic view of the third type of grooved fixing base from another perspective according to the present invention. In addition to the aforementioned first type of grooved fixing base 110A and the second type of grooved fixing base 110B, the grooved fixing base assembly 110 of the present invention can be designed with another form of the third type of grooved fixing base 110C according to actual situations. The difference between the third type of grooved fixing base 110C and the second type of grooved fixing base 110B (or the first type of grooved fixing base 110A) lies in the number of the positioning member 116, the first beam connecting member 114, and the second beam connecting member 115.

[0073] The third type of groove-type fixing base 110C includes a base 112, two first crossbeam connectors 114, two second crossbeam connectors 115, a positioning member 116, four floor fixing holes GA, four crossbeam fixing holes GB, a central hole 118, and a groove body B1. The positioning member 116 has a concave portion MA. The extended outer surface 112B is connected to the surface 112A around the bending and the extended inner surface 112D is bent from the periphery of the bottom surface 112C at the same time, extending a distance in the normal direction of the bottom surface 112C. The extended upper surface 112E is connected to the extended outer surface 112B and the extended inner surface 112D, so that the surface 112A, the extended outer surface 112B, the extended inner surface 112D, the bottom surface 112C and the extended upper surface 112E together form a groove body B1. It can be seen from this that compared with the second type of groove-type fixing base 110B (or the first type of groove-type fixing base 110A), the number of the first crossbeam connectors 114 connected to the base 112 is two, the other two circumferences of the base 112 not connected to the first crossbeam connectors 114 are provided with the second crossbeam connectors 115, and the number of the positioning members 116 is one. The rest is the same as that of the first type of groove-type fixing base 110A and will not be repeated.

[0074] As can be seen from the above, the groove-type fixing base assembly 110 can be correspondingly provided with the first crossbeam connectors 114, the second crossbeam connectors 115, and the positioning members 116 according to the different floors (such as Figure 16 or Figure 17 the first type of floor 140A or the second type of floor 140B in Figures 13 to 14 ) to be supported. In this way, it can be flexibly used. Furthermore, a standard-type fixing base 150 can be provided, as shown in Figure 13 . Figure 14 FIG. is an exploded view of the standard-type fixing base and the base according to the present invention. Figure 13 , Figure 14 As shown in FIG., the standard-type fixing base 150 is different from the aforementioned groove-type fixing base assembly 110. The standard-type fixing base 150 does not have a groove body.

[0075] The support leg 160 includes a standard fixing base 150. The standard fixing base 150 includes a base body 152, four connecting parts 154, four floor fixing holes GA, a central hole 158, four crossbeam fixing holes GB, and a threaded rod member 156. The central hole 158 is located at the central position of the surface of the base body 152 in the standard fixing base 150, and the central hole 158 is a hole of the base body 152. Centered on the central hole 158, these four floor fixing holes GA are respectively penetrated through different positions of the base body 152, so that these floor fixing holes GA are located around the central hole 158, and these floor fixing holes GA are respectively holes that penetrate through the base body 152 in the standard fixing base 150. The connecting part 154 includes a crossbeam fixing hole GB, and the crossbeam fixing hole GB is used for the crossbeam 120 as shown in Figure 5B to pass through and be fixed, so that the connecting part 154 connects the crossbeam 120.

[0076] In addition, the threaded rod member 156 is arranged at the bottom of the base body 152, and the threaded rod member 156 is, for example, a screw rod. The support leg 160 further includes a base 40. A plurality of fixing holes 46 are provided at the bottom of the base 40, and the base 40 is fixed and arranged on the floor or ground through these fixing holes 46. The base 40 can be adjusted according to actual situations. For example, the base 40 includes a vertical pipe member 41, a pipe cap 42, a nut 43, a locking hole 44, a locking member 45, and a bottom plate 47. The vertical pipe member 41 is, for example, a hollow circular pipe with an opening. At least one locking hole 44 is penetrated through the side surface of the vertical pipe member 41 (such as the hollow circular pipe). The pipe cap 42 covers the opening at the upper end of the vertical pipe member 41 (such as the hollow circular pipe). The nut 43 is used to sleeve the threaded rod member 156, and the nut 43 is located above the pipe cap 42. One end of the threaded rod member 156 sequentially passes through the internal thread hole in the pipe cap 42, passes through the inside of the vertical pipe member 41 (such as the hollow circular pipe), and the nut 43 is used to lock the threaded rod member 156 (such as the screw rod) to the pipe cap 42. The pipe cap 42 is fixed by using the locking member 45 to pass through and be locked in the locking hole 44.

[0077] In other embodiments, the first type of groove fixing base 110A, the second type of groove fixing base 110B, and the third type of groove fixing base 110C in the groove fixing base assembly 110 of the present utility model can also be arranged on the base 40, that is, the threaded rod member 111 (such as the screw rod) is arranged at the bottom of the base 112, and the base 40 can be fixed by using the threaded rod member 111 to form a support leg.

[0078] Figure 15 It is a schematic diagram of an embodiment of combining a crossbeam with a groove fixing base assembly and a standard fixing base according to the present utility model. Please refer to Figure 15, taking a first - type grooved fixing base 110A, two second - type grooved fixing bases 110B, and two standard fixing bases 150 as examples. With the first - type grooved fixing base 110A as the center, the second - type grooved fixing bases 110B are arranged on both sides of it. On the other side of the second - type grooved fixing base 110B (the side opposite to the first - type grooved fixing base 110A), the standard fixing bases 150 are respectively arranged. Of course, these arrangements are adjusted according to the different types of floors to be supported (such as Figure 16 or Figure 17 the first - type floor 140A or the second - type floor 140B in

[0079] The first cross - beam connectors 114 on both sides of the first - type grooved fixing base 110A are respectively connected to the cross - beam 120; the first cross - beam connector 114 on one side of the second - type grooved fixing base 110B is connected to the cross - beam 120 connected to the first - type grooved fixing base 110A, and the second cross - beam connector 115 on the other side of the second - type grooved fixing base 110B is connected to the other cross - beam 120; the connecting part 154 of the standard fixing base 150 is connected to the cross - beam 120 connected to the second - type grooved fixing base 110B.

[0080] Figure 16 It is a side schematic view of an embodiment of the combination of the grooved fixing base assembly of the present utility model in accordance with Figure 15 and the cross - beam of the standard fixing base. Please refer to Figure 15 and Figure 16 . The tooth rods 111, 156 are respectively fixed within the corresponding bases 40. The specific structure of the base 40 can be referred to Figure 13 and Figure 14 . Each of the four corners of the first - type floor 140A has a groove 146. The first - type grooved fixing base 110A respectively supports one corner of the four first - type floors 140A. The first - type floor 140A includes a first floor board 142, a first side board 144, and the groove 146. The first floor board 142 is arranged on the first side board 144. The groove 146 is arranged at the four corners of the first - type floor 140A and is located on the bottom side of the first side board 144, so that the first - type floor 140A is a grooved floor. The groove 146 abuts against the surface of the base 112 of the first - type grooved fixing base 110A, and the first side board 144 is located above the cross - beam 120. In addition, the other side of the cross - beam 120 connecting the first - type floor 140A is connected to the second - type grooved fixing base 110B, and the groove 146 abuts against the surface of the base 112 of the second - type grooved fixing base 110B.

[0081] On the other hand, the second type of floor 140B includes a second top board 143 and second side boards 145. The second top board 143 is disposed above the second side boards 145, such that the second type of floor 140B is a floor without grooves, and the thickness H2 of the second type of floor 140B is less than the thickness H1 of the first type of floor 140A. One corner on one side of the second type of floor 140B directly abuts against the surface of the base 112 of the second type of grooved fixing seat 110B, and the other corner on the other side of the second type of floor 140B directly abuts against the surface of the base body 152 of the standard fixing seat 150.

[0082] Figure 17 It is a top view schematic diagram of an embodiment of a composite anti-vibration elevated floor support device according to the present utility model. Please refer to Figure 17 , the composite anti-vibration elevated floor support device 100 of the present utility model is adapted to be provided in high-tech factories, modern buildings, or office working environments. The composite anti-vibration elevated floor support device 100 includes a plurality of first type of grooved fixing seats 110A, a plurality of second type of grooved fixing seats 110B, a plurality of third type of grooved fixing seats 110C and other grooved fixing seat assemblies 110, a plurality of standard fixing seats 150, a plurality of cross beams 120, a plurality of first type of floors 140A, and a plurality of second type of floors 140B. Among them, the composite anti-vibration elevated floor support device 100 can be divided into a first area 50A and a second area 50B according to different process equipment in actual high-tech factories, modern buildings, or office working environments, or can be set only with the first area 50A or only with the second area 50B according to actual conditions. In addition, the quantities of the first type of grooved fixing seats 110A, the second type of grooved fixing seats 110B, the third type of grooved fixing seats 110C, and the standard fixing seats 150 can be adjusted according to actual situations.

[0083] For example, taking Figure 17 as an example, for instance, for the composite anti-vibration elevated floor support device 100 provided in a high-tech factory, a machine can be placed on the first area 50A, and the second area 50B is disposed around the first area 50A. The second area 50B can be used for transporting items or allowing operators to walk, for example. The first type of floor 140A is arranged within the first area 50A, and the second type of floor 140B is arranged within the second area 50B. Among them, the first type of floor 140A is, for example, of the 3000 type and can carry process equipment weighing more than 3000 kg to support the weight of the machine; the second type of floor 140B is, for example, of the 1500 type and can carry a load of more than 1500 kg. The weight or thickness of the first type of floor 140A is greater than the weight or thickness (foot height) of the second type of floor 140B. The thickness (foot height) of the first type of floor 140A is 72 mm or more, and the thickness (foot height) of the second type of floor 140B is 56 mm or more.

[0084] For another example, in the office working environment, desks or storage cabinets can be placed above the first area 50A. The second area 50B is located around the first area 50A. The second area 50B can be used for office staff to walk, for example. Of course, the division between the first area 50A and the second area 50B can be adjusted according to the actual situation.

[0085] The first type of grooved fixing base 110A, the second type of grooved fixing base 110B, and the third type of grooved fixing base 110C are respectively located within the first area 50A. And four cross beams 120 are respectively connected correspondingly between the first type of grooved fixing base 110A, the second type of grooved fixing base 110B, and the third type of grooved fixing base 110C. That is to say, the cross beams 120 are used to connect these grooved fixing base components 110. The first type of floor 140A is placed around the first type of grooved fixing base 110A. The first type of grooved fixing base 110A respectively supports a corner of four first type of floors 140A. Among them, as Figure 3 shown, the concave part MA is used for the first type of floor 140A as shown in Figure 17 to rest and be positioned, so that four first type of floors 140A as shown in Figure 17 respectively rest on the corresponding concave part MA of the positioning part 116 as shown in Figure 3 and fix the position of the first type of floor 140A through the floor fixing hole GA.

[0086] Around the second type of grooved fixing base 110B are two side-by-side first type of floors 140A and another two side-by-side second type of floors 140B. The second type of grooved fixing base 110B respectively supports a corner of two first type of floors 140A and two second type of floors 140B. Among them, as Figure 9 shown, the concave part MA is used for the first type of floor 140A as shown in Figure 17 to rest and be positioned, so that two first type of floors 140A as shown in Figure 17 respectively rest on the corresponding concave part MA as shown in Figure 9 , and two second type of floors 140B as shown in Figure 17 respectively rest on the corresponding base 112 position, and fix the positions of the first type of floor 140A and the second type of floor 140B through the floor fixing hole GA.

[0087] Around the third type of grooved fixing base 110C are three second type of floors 140B and one first type of floor 140A. The third type of grooved fixing base 110C respectively supports a corner of one first type of floor 140A and three second type of floors 140B. This is because the third type of grooved fixing base 110C and the second type of grooved fixing base 110B are located at the junction inside the first area 50A and the second area 50B, so they will support both the first type of floor 140A and the second type of floor 140B at the same time. Among them, as Figure 12The concave part MA shown is used for the first type of floor 140A as shown in Figure 17 to rest and be positioned, so that a first type of floor 140A as shown in Figure 17 rests on the corresponding concave part MA as shown in Figure 12 respectively, and three second type of floors 140B as shown in Figure 17 rest on the corresponding positions of the base 112 respectively, and the first type of floor 140A and the second type of floor 140B are fixed in position through the floor fixing holes GA.

[0088] In this way, through the groove body B1 structural forms of the first type of grooved fixing seat 110A, the second type of grooved fixing seat 110B, and the third type of grooved fixing seat 110C, the load-bearing weight of the grooved fixing seat assembly 110 is increased.

[0089] In addition, for the standard fixing seat 150 located outside the second area 50B, one corner of four second type of floors 140B rests on the standard fixing seat 150 respectively.

[0090] To sum up, in the present utility model, the periphery of the base is connected to the first crossbeam connecting piece instead of being separately arranged. The base and the first crossbeam connecting piece are connected together, which can enhance the stability of the overall grooved fixing seat assembly, and there will be no vibration caused by the first crossbeam connecting piece or the base separately bearing the weight.

[0091] Furthermore, the base of the present utility model is a grooved base. Since the four sides of the base are bent at a certain angle (such as 90 degrees) to form an extended outer surface and an extended inner surface, and a groove body with a certain depth is formed to enhance the load-bearing weight of the grooved fixing seat assembly.

[0092] In addition, the thickness range of the crossbeam connecting piece of the present utility model is between 4.5 and 4.85 mm, which can reduce the overall thickness. Generally speaking, the grooved fixing seat assembly of the present utility model can not only increase the strength and stability, but also reduce the manufacturing cost.

[0093] In addition, according to the different floor structures (such as thickness) to be supported, the present utility model can correspondingly set the grooved fixing seat assembly with different heights of connecting pieces and positioning pieces, thereby flexibly assembling and forming a composite anti-seismic raised floor support device. Further, it can also be combined with the standard fixing seat to form different types of composite anti-seismic raised floor support devices.

[0094] Although the present utility model has been disclosed as above by the above embodiments, it is not intended to limit the present utility model. Any general technician with ordinary knowledge in the technical field can make some changes and modifications without departing from the spirit and scope of the present utility model, and all belong to the protection scope of the present utility model.

Claims

1. A slotted fixing seat assembly, characterized in that: include: A base is a rectangular body, the base includes a surface, an extended outer surface, an extended inner surface, a bottom surface and an extended upper surface, the surface and the bottom surface are two opposite surfaces of the base, the extended outer surface is connected to the periphery of the surface and extends in one direction, the extended inner surface is connected to the periphery of the bottom surface and extends in one direction, the extended outer surface is bent from the periphery of the surface and the extended inner surface is bent from the periphery of the bottom surface at the same time, and extends a distance in a normal direction of the bottom surface, the extended upper surface is connected to the extended outer surface and the extended inner surface, so that the surface, the extended outer surface, the extended inner surface, the bottom surface and the extended upper surface together constitute a slot body; At least two beam connectors, including a beam connector plate and a connector portion, the connector portion being connected to the extended upper surface and the beam connector plate, wherein the connector portion extends a distance from the extended upper surface, and an extension direction of the beam connector plate and an extension direction of the connector portion are perpendicular to each other, and the beam connectors are respectively connected to the periphery of the base; A central hole is located at a central position of the surface of the base, and the central hole is a hole that passes through the base; Four floor fixing holes are equidistant from the center of the central hole, and the four floor fixing holes are respectively penetrated through the corners of the base, so that the four floor fixing holes are respectively located around the central hole; and At least one positioning piece protrudes from the surface of the base, and the at least one positioning piece is adjacent to the corresponding floor fixing hole. The positioning piece is used for supporting a corner of four floors to locate the positions of the four floors.

2. The slotted fixing seat assembly according to claim 1, characterized in that: The depth of the groove body ranges from 13 mm to 16 mm, and the depth is defined as a vertical distance from the surface of the base to the extended outer surface along a vertical extension direction.

3. The slotted fixing seat assembly according to claim 1, characterized in that: Also includes: A screw rod is disposed at the bottom of the base; as well as A base includes a hollow circular tube with an opening, a tube cover, a nut, at least one locking hole, at least one locking accessory, and a bottom plate, wherein the at least one locking hole is penetrated through a side surface of the hollow circular tube, the tube cover is covered with the opening at the upper end of the hollow circular tube, the nut is used to be sleeved on the screw rod, and the nut is located above the tube cover, and one end of the screw rod is sequentially penetrated through a screw hole in the tube cover and penetrated through the interior of the hollow circular tube, the nut is used to lock the screw rod to the tube cover, and the at least one locking accessory is penetrated through and locked to the at least one locking hole to fix the tube cover.

4. A composite earthquake-proof elevated floor support device, characterized in that: include: At least one slot-type fixing seat assembly, comprising a base, at least two first cross-beam connecting members, the at least two first cross-beam connecting members are respectively connected to the periphery of the base, wherein the base comprises a surface, an extended outer surface, an extended inner surface, a bottom surface and an extended upper surface, the surface and the bottom surface are two opposite surfaces of the base, the extended outer surface is bent from the periphery of the surface and the extended inner surface is bent from the periphery of the bottom surface at the same time, and extends a distance in a normal direction of the bottom surface, the extended upper surface is connected to the extended outer surface and the extended inner surface, so that the surface, the extended outer surface, the extended inner surface, the bottom surface and the extended upper surface together constitute a slot body; A plurality of cross beams, used to connect each of the slot type fixing seat components, wherein the at least two first cross beam connecting members are respectively connected to the corresponding plurality of cross beams; as well as A plurality of first-type floors have four corners each having a groove, and the four grooves are supported on the surface of the corresponding base.

5. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: The depth of the groove body ranges from 13 mm to 16 mm, and the depth is defined as a vertical distance from the surface of the base to the extended outer surface along a vertical extension direction.

6. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: Each of the first beam connecting members includes a beam connecting plate and a connecting portion, the connecting portion is connected to the extended outer surface and the beam connecting plate, the connecting portion extends a distance from the extended outer surface, the beam connecting plate extends a distance from one end of the connecting portion, and an extension direction of the beam connecting plate is different from an extension direction of the connecting portion, and the at least two first beam connecting members are respectively integrally formed with the base.

7. The composite anti-seismic elevated floor support device according to claim 6, characterized in that: The thickness of the cross beam connecting piece ranges from 4.5 to 4.85 mm.

8. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: The at least one slot-type fixing seat assembly also includes: at least one positioning member, which protrudes from the surface of the base respectively, and is used to locate the positions of the multiple first-type floor panels respectively, wherein each of the positioning members includes a first convex portion, a second convex portion, and a concave portion, each of the first convex portion is connected to the corresponding second convex portion, and the concave portion is formed at the intersection of each of the first convex portion and the corresponding second convex portion.

9. The composite anti-seismic elevated floor support device according to claim 8, characterized in that: The at least one slot-type fixing seat assembly includes: a plurality of floor fixing holes, a central hole, and a tooth rod member, the plurality of floor fixing holes are respectively penetrated through the base, the at least one positioning member is adjacent to the corresponding floor fixing hole, the central hole is penetrated through the base, the plurality of floor fixing holes are respectively located around the central hole, and one end of the tooth rod member is inserted into the central hole to be fixed to the bottom of the base.

10. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: The at least one slot-type fixing seat assembly includes: at least one second beam connecting member, and at least one slot, the at least one second beam connecting member is arranged inside the base, the at least one second beam connecting member is respectively connected to the corresponding multiple beams, a surface of the at least one second beam connecting member is recessed in the surface of the base, a beam connecting piece of the at least two first beam connecting members is respectively lower than the surface of the base and the surface of the second beam connecting member, and the at least one slot is arranged on the base.

11. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: The plurality of first-type floors are arranged in a first area, and the composite anti-seismic elevated floor supporting device further comprises: A plurality of second-type floors are arranged in a second area, and the second area is arranged around the first area. A corner of four of the plurality of second-type floors is respectively supported on a standard fixing seat.

12. The composite anti-seismic elevated floor support device according to claim 4, characterized in that: The at least one slot-type fixing seat assembly includes a first type slot-type fixing seat, which respectively supports a corner of four first type floors, and the first type slot-type fixing seat includes the base, four first beam connecting members, the four first beam connecting members are respectively connected to the periphery of the base, and four positioning members respectively protrude from the surface of the base.

13. The composite anti-seismic elevated floor support device according to claim 11, characterized in that: The at least one slot-type fixing seat assembly includes a second type slot-type fixing seat, which respectively supports a corner of two of the first type floors and two of the second type floors, and the second type slot-type fixing seat includes the base, three of the first beam connecting members, a second beam connecting member, and a slot, the slot is arranged on the base, the second beam connecting member is arranged inside the base, and the second beam connecting member is arranged inside the slot, the three first beam connecting members are respectively connected to the periphery of the base, and two positioning members are respectively protruded from the surface of the base.

14. The composite anti-seismic elevated floor support device according to claim 11, characterized in that: The at least one slot-type fixing seat assembly includes a third type slot-type fixing seat, which respectively supports a corner of one of the first type floors and three of the second type floors, and the third type slot-type fixing seat includes the base, two first beam connectors, two second beam connectors, and two slots, the two slots are respectively arranged on the base, the two second beam connectors are respectively arranged inside the base, and each second beam connector is arranged in the corresponding slot, the two first beam connectors are respectively connected to the periphery of the base, and a positioning member protrudes from the surface of the base.