Brand-new anti-static movable floor support
The new anti-static raised floor support system uses adjusting bolts and raised dividing lines to solve the problems of floor misalignment and wobbling, achieving stable installation and long-term use of the floor, and reducing installation and maintenance costs.
Patent Information
- Application Number
- CN202520151246.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing flooring is prone to misalignment and wobbling during installation, and it is difficult to avoid obstacles on the ground, leading to installation failure and shortened service life.
The new anti-static raised floor support system includes side beams, main beams, secondary beams, and adjusting bolts. The height of the support and the gaps between the floors are adjusted by adjusting the bolts, and the floor is fixed by using raised dividing lines to ensure that the floor is installed stably and avoids obstacles.
This ensures stable floor installation, preventing misalignment and shaking, improving installation quality and lifespan, while also saving costs.
Smart Images

Figure CN223767089U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of antistatic raised floor supports, specifically a novel antistatic raised floor support. Background Technology
[0002] Antistatic flooring, also known as dissipative static flooring, is a type of flooring that allows charge to dissipate when grounded or connected to any point of lower potential, characterized by a resistance between 10⁵ and 10⁹ ohms.
[0003] Existing floor installations involve placing the floorboards directly onto a support frame, leaving gaps between them. This can lead to misalignment during installation due to inaccurate positioning, resulting in installation failure. Furthermore, the gaps after installation can cause the baseboard to wobble. When there are obstacles of a certain height on the ground, the height of the support frame cannot be adjusted, making it impossible to install the floor. Therefore, technological innovation and design optimization are needed to achieve a new type of anti-static raised floor support. Utility Model Content
[0004] Existing floor installations involve placing the floorboards directly onto a support frame, leaving gaps between them. This can lead to misalignment during installation due to inaccurate positioning, resulting in installation failure. Furthermore, the gaps can cause the floor to wobble after installation. When obstacles of a certain height are present, the support frame height cannot be adjusted, making installation impossible. To address these issues, this application provides a novel anti-static raised floor support frame. This invention ensures stable floor installation, preventing misalignment and wobbling, and avoids obstructions. It also significantly improves the installation quality of the floor itself, maintains a good installation effect for a longer period, greatly extends the lifespan of the floor, and saves on the cost of wall edge steel supports, floor installation labor, and future maintenance.
[0005] The technical solution adopted by the embodiments of this application to solve its technical problem is:
[0006] A novel anti-static raised floor support system includes:
[0007] There are two side beam frames, and several main beam frames are set between the two side beam frames. Several secondary beam frames are set between the main beam frames and the side beam frames, as well as between the main beam frames and the secondary beam frames. A middle support frame is set at the bottom of the main beam frames, and a side support frame is set at the bottom of the side beam frames. The floor body is placed between the main beam frames and the side beam frames, as well as between the main beam frames and the secondary beam frames. After the main beam frames and secondary beam frames are assembled, the size of the internal space they form is exactly matched with the size of the floor body.
[0008] In one possible implementation, the middle support frame includes a double-wing U-shaped groove upper support head at the bottom of the main beam frame. The bottom of the double-wing U-shaped groove upper support head is provided with a middle support leg. An adjusting bolt is fixed between the middle support leg and the double-wing U-shaped groove upper support head. The height of the double-wing U-shaped groove upper support head can be adjusted by adjusting the bolt, and the main beam frame can be fitted into the double-wing U-shaped groove upper support head.
[0009] In one possible implementation, the side support frame includes a side leg U-shaped upper support head at the bottom of the side beam frame, and a side support leg is provided at the bottom of the side leg U-shaped upper support head. The side leg U-shaped upper support head and the side support leg are fixed by adjusting bolts, and the height of the side leg U-shaped upper support head can be adjusted by adjusting bolts.
[0010] In one possible implementation, a raised floor dividing line is fixed to the top of the main beam frame, a raised floor blocking line is fixed to the top of the side beam frame, and a raised floor dividing line is fixed to the top of the secondary beam frame. The raised floor dividing line, the raised floor blocking line, and the raised floor dividing line are all sandwiched between two antistatic floor panels. Their shape and size are exactly the same as the width of the gap between the two floor panels and match the angle of the inclined edge of the floor panel. When the two floor panels are joined together, they completely block the raised floor dividing line of the main beam frame, and the raised floor dividing line of the secondary beam frame also separates the two floor panels. Therefore, the floor panels on both sides cannot shift left or right, which can solve the problem of left and right misalignment and misalignment of the floor panels.
[0011] In one possible implementation, the main beam frame has a double-wing platform for connecting the main beam to the secondary beam on both sides, the secondary beam frame has a double-wing plane at the bottom of the secondary beam on both sides, and the side beam frame has a platform for connecting the side beam to the secondary beam on one side. The double-wing platform for connecting the main beam to the secondary beam facilitates the connection of the secondary beam, the double-wing plane at the bottom of the secondary beam facilitates the fixing of the side beam and the main beam, and the platform for connecting the side beam to the secondary beam facilitates the connection of the secondary beam.
[0012] In one possible implementation, the sub-beam frame is provided with through-hole fixing screws at both ends of the sub-beam frame. The sub-beam frame is fixed to the main beam frame and the side beam frame through the through-hole fixing screws at both ends of the sub-beam frame, which makes it easy to fix the sub-beam frame to the side beam frame and the main beam frame.
[0013] In one possible implementation, the double-wing U-shaped groove support head is U-shaped with double wings on both sides of the U-shaped groove. Each double-wing U-shaped groove support head has a screw hole for connecting and fixing the sub-beam. The side leg U-shaped support head is exactly half of the double-wing U-shaped groove support head. The side leg U-shaped support head also has a screw hole for connecting and fixing the sub-beam.
[0014] In one possible implementation, the bottom of the main beam frame is provided with a T-shaped groove on the bottom plane of the main beam, and the bottom of the side beam is provided with a T-shaped groove on the bottom plane of the side beam. The T-shaped groove on the bottom plane of the main beam and the upper support head of the double-wing U-shaped groove, as well as the T-shaped groove on the bottom plane of the side beam and the upper support head of the U-shaped side leg, can be fixed by T-bolts, which facilitates the fixing of the middle support leg and the main beam frame, and the fixing of the side support leg and the side beam.
[0015] In one possible implementation, the adjusting bolt includes a screw rod fixed to the bottom of the double-wing U-shaped groove support head or the side leg U-shaped support head. The screw rod is externally threaded with a nut, and a riser is provided at the bottom of the screw rod. The screw rod can be inserted into the riser, and the bottom of the riser is fixedly connected to the middle support leg or the side support leg. By rotating the nut, the height of the nut on the screw rod is changed, so that the riser supports the nut, thereby changing the height of the top of the screw rod, and thus the height of the double-wing U-shaped groove support head and the side leg U-shaped support head can be adjusted.
[0016] In summary, this utility model has at least one of the following beneficial technical effects:
[0017] 1. By fixing a raised floor dividing line at the top of the main beam frame, a raised floor blocking line at the top of the side beam frame, and a raised floor dividing line at the top of the secondary beam frame, when two floor panels are joined together, their shape and size are exactly the same as the width of the gap between the two floor panels and match the angle of the inclined edge of the floor panel. This perfectly blocks the raised floor dividing line at the top of the main beam, and the raised floor dividing line at the top of the secondary beam also separates the two floor panels. Therefore, the floor panels on both sides cannot shift left or right, which solves the problem of left and right misalignment and misalignment of the floor panels.
[0018] 2. By rotating the nut, the height of the nut on the screw is changed, so that the riser supports the nut, thereby changing the height of the top of the screw. This allows for adjustment of the height of the upper support head of the double-wing U-shaped groove and the upper support head of the side leg U-shaped groove, ultimately completing the adjustment of the height of the floor body, making it easier to avoid obstacles. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 2 for Figure 1 Enlarged schematic diagram of the structure at point A in the middle;
[0021] Figure 3 This is a side view of the overall structure of this utility model;
[0022] Figure 4 This is a partial structural side view of the present invention;
[0023] Figure 5 This is a side view of the main beam frame structure of this utility model;
[0024] Figure 6 This is a side view of the side beam frame structure of this utility model;
[0025] Figure 7 This is a side view of the sub-beam frame structure of this utility model.
[0026] Attached reference numerals: 1. Side beam frame; 2. Sub-beam frame; 3. Main beam frame; 4. Center raised floor dividing line of the sub-beam; 5. Center raised floor dividing line of the main beam; 6. Main beam double-wing overlapping sub-beam platform; 7. Through-hole fixing screws at both ends of the sub-beam; 8. Bottom double-wing plane of the sub-beam; 9. T-slot on the bottom plane of the side beam; 10. Floor body; 11. Middle support leg; 12. Side support leg; 13. Adjusting bolt; 14. U-shaped groove upper support head of the double-wing; 15. U-shaped upper support head of the side leg; 16. Center raised floor dividing line of the side beam; 17. T-slot on the bottom plane of the main beam; 18. Side beam overlapping sub-beam platform. Detailed Implementation
[0027] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The instrument placement rack involved in this utility model is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0028] This embodiment describes the specific structure of a novel antistatic raised floor support, as detailed in the following reference. Figures 1-7 As shown, a novel antistatic raised floor support includes:
[0029] Two side beam frames 1 are provided, and several main beam frames 3 are provided between the two side beam frames 1. Several secondary beam frames 2 are provided between the main beam frames 3 and the side beam frames 1, and between the main beam frames 3 and the main beam frames 3. A middle support frame is provided at the bottom of the main beam frame 3, and a side support frame is provided at the bottom of the side beam frame 1. A floor body 10 is placed between the main beam frames 3 and the side beam frames 1, and between the main beam frames 3 and the main beam frames 3. After the main beam frames 3 and the secondary beam frames 2 are assembled, the size of the space formed inside them is exactly matched with the size of the floor body 10.
[0030] The middle support frame includes a double-wing U-shaped groove upper support head 14 at the bottom of the main beam frame 3. The bottom of the double-wing U-shaped groove upper support head 14 is provided with a middle support leg 11. An adjusting bolt 13 is fixed between the middle support leg 11 and the double-wing U-shaped groove upper support head 14. The height of the double-wing U-shaped groove upper support head 14 can be adjusted by adjusting the bolt 13. The main beam frame 3 can be fitted into the double-wing U-shaped groove upper support head 14. The side support frame includes a side leg U-shaped upper support head 15 at the bottom of the side beam frame 1. The bottom of the side leg U-shaped upper support head 15 is provided with a side support leg 12. The side leg U-shaped upper support head 15 and the side support leg 12 are fixed by adjusting bolt 13. The height of the side leg U-shaped upper support head 15 can be adjusted by adjusting the bolt 13.
[0031] Furthermore, the top of the main beam frame 3 is fixed with a raised floor dividing line 5 at the center of the main beam, the top of the side beam frame 1 is fixed with a raised floor blocking line 16 at the center of the side beam, and the top of the secondary beam frame 2 is fixed with a raised floor dividing line 4 at the center of the secondary beam. The raised floor dividing line 5 at the center of the main beam, the raised floor blocking line 16 at the center of the side beam, and the raised floor dividing line 4 at the center of the secondary beam are all sandwiched between two antistatic flooring pieces. Their shape and size are exactly the same as the width of the gap between the two flooring bodies 10 and match the angle of the inclined edge of the flooring body 10. When the two flooring bodies 10 are joined together, they can just block the raised floor dividing line 5 at the center of the main beam, and the raised floor dividing line 4 at the center of the secondary beam can also just separate the two flooring bodies 10. Therefore, the flooring bodies 10 on both sides cannot move left or right, which can solve the problem of misalignment and misjoint of the flooring bodies 10.
[0032] In addition, the main beam frame 3 is provided with a main beam double-wing overlapping sub-beam platform 6 on both sides, the sub-beam frame 2 is provided with a sub-beam bottom double-wing plane 8 on both sides, and the side beam frame 1 is provided with a side beam overlapping sub-beam platform 18 on one side. The main beam double-wing overlapping sub-beam platform 6 facilitates the overlapping of sub-beams, the sub-beam bottom double-wing plane 8 facilitates the fixing of side beams and main beams, and the side beam overlapping sub-beam platform 18 facilitates the overlapping of sub-beams.
[0033] It is worth noting that both ends of the sub-beam frame 2 are provided with through holes for fixing screws 7. The sub-beam frame 2 is fixed to the main beam frame 3 and the side beam frame 1 through holes for fixing screws 7, which makes it easy to fix the sub-beam frame 2 to the side beam frame 1 and the main beam frame 3.
[0034] More importantly, the double-wing U-shaped groove upper support head 14 is U-shaped with double wings on both sides of the U-shaped groove. Each double-wing U-shaped groove upper support head 14 has a screw hole for connecting and fixing the sub-beam. The side leg U-shaped upper support head 15 is exactly half of the double-wing U-shaped groove upper support head 14. The side leg U-shaped upper support head 15 also has a screw hole for connecting and fixing the sub-beam.
[0035] Furthermore, the bottom of the main beam frame 3 is provided with a T-shaped groove 17 on the bottom plane of the main beam, and the bottom of the side beam is provided with a T-shaped groove 9 on the bottom plane of the side beam. The T-shaped groove 17 on the bottom plane of the main beam and the upper support head 14 of the double-wing U-shaped groove, as well as the T-shaped groove 9 on the bottom plane of the side beam and the upper support head 15 of the side leg, can all be fixed by T-bolts, which facilitates the fixing of the middle support leg 11 to the main beam frame 3 and the side support leg 12 to the side beam.
[0036] In addition, the adjusting bolt 13 includes a screw fixed to the bottom of the double-wing U-shaped groove support head 14 or the side leg U-shaped support head 15. The screw is threaded with a nut, and a riser is provided at the bottom of the screw. The screw can be inserted into the riser. The bottom of the riser is fixedly connected to the middle support leg 11 or the side support leg 12. By rotating the nut, the height of the nut on the screw is changed, so that the riser supports the nut, thereby changing the height of the top of the screw. In this way, the height of the double-wing U-shaped groove support head 14 and the side leg U-shaped support head 15 can be adjusted.
[0037] When the workers need to install the base plate body, first fix the middle support frame and the side support frame on the ground, then fix the main beam frame 3 and the side beam frame 1 to the middle support frame and the side support frame respectively with screws and T-bolts, then fix the secondary beam frame 2 to the main beam frame 3 and the side beam frame 1 with screws, and finally place the floor body 10 on top of the main beam frame 3 and the secondary beam frame.
[0038] When the height of the floor body 10 needs to be adjusted, rotate the nut to change the height of the nut on the screw, so that the riser supports the nut, thereby changing the height of the top of the screw. This allows for adjustment of the height of the double-wing U-shaped groove upper support head 14 and the side leg U-shaped upper support head 15, ultimately completing the adjustment of the height of the floor body 10. At the same time, the middle support frame and the side support frame can move back and forth along the length of the main beam frame 3. By moving the position, obstacles can be avoided, facilitating the installation of the floor body 10.
[0039] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. A completely new anti-static sports floor support characterized in that, The utility model relates to a floor system, which comprises: two side beam frames (1), a plurality of main beam frames (3) are arranged between the two side beam frames (1), a plurality of auxiliary beam frames (2) are arranged between the main beam frames (3) and the side beam frames (1) and between the main beam frames (3), and a floor body (10) is arranged between the main beam frames (3) and the side beam frames (1).
2. A new anti-static sports floor support as claimed in claim 1, characterized in that: The middle support frame comprises a double-wing U-shaped groove upper supporting head (14) at the bottom of the main beam frame (3), a middle support leg (11) is arranged at the bottom of the double-wing U-shaped groove upper supporting head (14), and an adjusting bolt (13) is fixed between the middle support leg (11) and the double-wing U-shaped groove upper supporting head (14).
3. A new anti-static sports floor support according to claim 2, characterized in that: The side support frame comprises a side leg U-shaped upper supporting head (15) at the bottom of the side beam frame (1), a side support leg (12) is arranged at the bottom of the side leg U-shaped upper supporting head (15), and the side leg U-shaped upper supporting head (15) and the side support leg (12) are fixed through the adjusting bolt (13).
4. The new anti-static sports floor support as claimed in claim 1, wherein: A main beam center convex floor separation line (5) is fixed at the top of the main beam frame (3), a side beam convex floor blocking line (16) is fixed at the top of the side beam frame (1), and a auxiliary beam center convex floor separation line (4) is fixed at the top of the auxiliary beam frame (2).
5. A new anti-static sports floor support as claimed in claim 1, wherein: Both sides of the main beam frame (3) are provided with a main beam double-wing lap joint auxiliary beam platform (6), both sides of the auxiliary beam frame (2) are provided with an auxiliary beam bottom double-wing plane (8), and one side of the side beam frame (1) is provided with a side beam lap joint auxiliary beam platform (18).
6. A new anti-static sports floor support as claimed in claim 1, wherein: Both ends of the auxiliary beam frame (2) are provided with auxiliary beam two-end through-hole fixing screws (7), and the auxiliary beam frame (2) is fixed through the auxiliary beam two-end through-hole fixing screws (7) between the main beam frame (3) and the side beam frame (1).
7. A new anti-static sports floor support according to claim 3, characterized in that: The double-wing U-shaped groove upper supporting head (14) is in a U-shaped groove shape and is provided with double wings on both sides of the U-shaped groove, screw holes are formed in the double-wing U-shaped groove upper supporting head (14) for connecting and fixing the auxiliary beam, the side leg U-shaped upper supporting head (15) is exactly half of the double-wing U-shaped groove upper supporting head (14), and screw holes are also formed in the side leg U-shaped upper supporting head (15) for connecting and fixing the auxiliary beam.
8. A new anti-static sports floor support as claimed in claim 1, wherein: A main beam bottom plane T-shaped groove (17) is formed at the bottom of the main beam frame (3), a side beam bottom plane T-shaped groove (9) is formed at the bottom of the side beam frame (1), and the main beam bottom plane T-shaped groove (17) and the double-wing U-shaped groove upper supporting head (14) and the side beam bottom plane T-shaped groove (9) and the side leg U-shaped upper supporting head (15) are fixed through T-shaped bolts.
9. A new anti-static sports floor support according to claim 2, characterized in that: The adjusting bolt (13) comprises a screw rod fixed at the bottom of the double-wing U-shaped groove upper supporting head (14) or the side leg U-shaped upper supporting head (15), a nut is threadedly connected to the outside of the screw rod, a stand pipe is arranged at the bottom of the screw rod, the screw rod can be inserted into the inside of the stand pipe, and the bottom of the stand pipe is fixedly connected with the middle support leg (11) or the side support leg (12).