Fastener applied to high-pressure cast aluminum raised floor
Through the design of fasteners on the inside supported and extruded, the gap problem at the connection of the elevated floor is solved, and the tight installation and stable connection of the high-die cast aluminum elevated floor is realized, which reduces the production and use costs and is suitable for elevated floors of a variety of structural specifications.
Patent Information
- Application Number
- CN202510969842.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2045-07-15
AI Technical Summary
There are gaps at the connections of existing elevated floors, resulting in high production accuracy and increased assembly costs, easy to accumulate and corrode on the surface and easy to loosen vibration, which increases the cost of use.
Fasteners with inner support and extrusion are adopted, and the combined structure of the bottom column, longitudinal adjustment tube and flip locking arm are used to achieve the tight installation of the high-pressure cast aluminum elevated floor, and are synchronously controlled through the worm mechanism, combining the split extrusion limit head and spring design to improve stability and applicability.
It improves the clinging and production accuracy of high-die cast aluminum elevated floors, reduces assembly costs, reduces vibration and corrosion, and is suitable for elevated floors of different structural specifications, improving the degree of modularity and use stability.
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Figure CN120465659A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fastening connectors, in particular to a fastener used for high-pressure cast aluminum elevated floors. Background Art
[0002] Raised floors, also known as dissipative static floors, are primarily assembled using a combination of adjustable brackets, beams, and panels. High-pressure cast aluminum, due to its excellent strength, toughness, and high tensile strength, is widely used in raised floors. Raised floors are suitable for a wide range of applications, including computer rooms with large servers and cabinets, and laboratory centers.
[0003] However, the current elevated floors need to be fixed to the floor with bolts, which results in a large gap at the floor connection end. This places high demands on the production precision of the floor and requires filling materials at the joints, which increases assembly costs. At the same time, the surface is prone to dirt and corrosion, and surface vibrations can easily cause fasteners to loosen, thereby increasing the cost of later use. Summary of the Invention
[0004] The technical problem to be solved by the present invention is that the current elevated floors have very high production precision requirements and require filling materials to be set at the joints, which increases the assembly cost. At the same time, the surface is prone to dirt and corrosion, and the vibration of the surface can easily cause the fasteners to loosen, thereby increasing the cost of later use.
[0005] The technical solution adopted by the present invention to solve its technical problems is: a fastener used for high-pressure cast aluminum elevated floors, including a bottom column and a high-pressure cast aluminum elevated floor body, the lower end of the bottom column is welded and fixed with a bottom mounting seat fixed with bottom bolts, a longitudinal adjustment tube is movably assembled inside the bottom column, a top support plate is axially fixed to the top end of the longitudinal adjustment tube, and four flip-type locking arms are movably mounted on the lower end of the top support plate through a lateral bracket.
[0006] An internal control screw for controlling the longitudinal adjustment tube is longitudinally assembled inside the bottom column. The bottom end of the internal control screw has a first conical tooth head with an integrated structure. The upper end of the internal control screw is inserted into the longitudinal adjustment tube and threadedly engaged with the internal threaded surface of the longitudinal adjustment tube.
[0007] An inner top adjusting worm for controlling the flip-type locking arm is movably mounted on the inner top surface of the longitudinal adjusting tube, and the bottom end of the inner top adjusting worm has a second conical tooth head with an integral structure.
[0008] The flip locking arm includes an arc-shaped flip arm axially mounted on a lateral bracket, a split extrusion limit head axially fixed to the extrusion end of the arc-shaped flip arm, and an integral control worm gear fixed to the side wall of the flip end of the arc-shaped flip arm.
[0009] The outer side of the longitudinal adjustment tube corresponds to a lateral transmission port that cooperates with the control worm gear.
[0010] The side wall of the bottom column corresponding to the first conical tooth head position and the longitudinal adjustment tube corresponding to the second conical tooth head position are both provided with lateral control through holes.
[0011] The extrusion end of the arc-shaped flip arm is provided with an end assembly socket for installing a split extrusion limit head, and the outer surface of the arc-shaped flip arm is provided with a lateral adjustment screw hole connected to the interior of the end assembly socket, and the internal thread of the lateral adjustment screw hole is inserted with a lateral locking bolt, and the inner wall of the end assembly socket is provided with an internal extrusion spring through an inner assembly shaft sleeve.
[0012] A strip-shaped limiting groove matching with the lateral locking bolt is provided on the outer side surface of the split extrusion limiting head.
[0013] A lateral limiting slot is provided at an outer opening position of the lateral control through hole, and an elastic limiting plug is inserted into the lateral limiting slot.
[0014] The elastic limiting plug includes an internal limiting plate, an internal guide tube of an integral structure fixed on the side wall of the internal limiting plate, an internal limiting tooth head elastically inserted into the internal guide tube, and a rubber fastening frame sleeved on the outer surface of the internal limiting plate.
[0015] The beneficial effects of the present invention are: (1) The fastener used for high-pressure cast aluminum elevated floor of the present invention uses an inner side support and extrusion method to extrude and limit the inner side of the high-pressure cast aluminum elevated floor body, so that adjacent high-pressure cast aluminum elevated floor bodies are installed closely, thereby greatly improving the close fit of the high-pressure cast aluminum elevated floor body and reducing the production precision of the elevated floor; (2) The flip-type locking arm is controlled by the internal top adjustment worm integrated in the longitudinal adjustment tube. The peripheral flip-type locking arm can be synchronously controlled by adjusting the internal fixed adjustment worm, making the assembly operation more convenient; (3) The entire adjustment control unit is fully integrated inside the structure, which can greatly improve the durability and stability of the adjustment mechanism; (4) The double limit mode of the worm gear mechanism and the external limit mechanism can ensure the stability and safety of the structure after adjustment; (5) By adopting a split-structure design of arc-shaped flip arm and split extrusion limit head, it can be adapted according to different elevated floor structural requirements, making it applicable to elevated floors of different structural specifications, with a high degree of modularity and a wider range of applicable scenarios; (6) The assembly section of the split extrusion limit head is equipped with an internal extrusion spring, which can improve the lateral extrusion elasticity of the elevated floor assembly section, effectively reduce the vibration transmitted from the upper end, and improve the tightness. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention will be further described below with reference to the accompanying drawings and examples.
[0017] Figure 1 It is a structural schematic diagram of the present invention.
[0018] Figure 2 It is a schematic diagram of the internal structure of the bottom column in the present invention.
[0019] Figure 3 It is a schematic diagram of the internal structure of the flip-type locking arm in the present invention.
[0020] Figure 4 It is a structural schematic diagram of the split extrusion limit head in the present invention. DETAILED DESCRIPTION
[0021] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.
[0022] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0023] Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The fastener shown is used for high-pressure cast aluminum elevated floors, including a bottom column 1 and a high-pressure cast aluminum elevated floor body 2. The lower end of the bottom column 1 is welded with a bottom mounting seat 3 fixed to the bottom surface with bolts. A longitudinal adjustment tube 4 is movably assembled inside the bottom column 1. A top support plate 5 is axially fixed to the top end of the longitudinal adjustment tube 4. Four flip-type locking arms 6 are movably mounted on the lower end of the top support plate 5 through lateral brackets.
[0024] Installation principle: people first measure and fix the bottom mounting base 3 to the ground with the bottom bolts, then lift the longitudinal adjustment tube 4 and the top support plate 5 to the specified height as required, and then place the high-pressure cast aluminum elevated floor body 2 on the upper end of the top support plate 5. Then, by controlling the flip-type locking arm 6, flip and extrude the inner wall of the high-pressure cast aluminum elevated floor body 2, so that the adjacent high-pressure cast aluminum elevated floor bodies 2 are squeezed, fitted and fixed to complete the installation. The advantage of this is that no openings and fasteners are left at the upper end, which improves durability.
[0025] In order to control the bottom end and facilitate height adjustment, an internal control screw 7 for controlling the longitudinal adjustment tube 4 is longitudinally assembled inside the bottom column 1. The bottom end of the internal control screw 7 has a first conical tooth head 71 with an integrated structure. The upper end of the internal control screw 7 is inserted into the interior of the longitudinal adjustment tube 4 and threadedly engaged with the internal threaded surface of the longitudinal adjustment tube 4.
[0026] People use an external tool, that is, an adjustment rod with a conical tooth head at the top to control the engagement and rotation of the first conical tooth head 71 at the lower end of the internal control screw 7, and then drive the longitudinal adjustment tube 4 to rise and fall at the opening position at the upper end of the bottom column 1 by rotating the internal control screw 7.
[0027] The upper end of the internal control screw rod 7 is inserted into the interior of the longitudinal adjustment tube 4 and is threadedly engaged with the internal screw hole in the longitudinal adjustment tube 4 .
[0028] In order to cooperate with the bottom control, the inner top surface of the longitudinal adjustment tube 4 is movably equipped with an inner top adjustment worm 8 for controlling the flip locking arm 6, and the bottom end of the inner top adjustment worm 8 has an integral second conical tooth head 81.
[0029] In order to cooperate with the flipping and extrusion limiting, the flipping locking arm 6 includes an arc-shaped flipping arm 61 axially mounted on a lateral bracket, a split extrusion limiting head 62 axially fixed on the extrusion end of the arc-shaped flipping arm 61, and an integrated control worm gear 63 fixed on the side wall of the flipping end of the arc-shaped flipping arm 61.
[0030] The arc-shaped flip arm 61 flips upward, driving the split extrusion limit head 62 to be inserted into the inner wall of the inner angle of the lower opening of the high-pressure cast aluminum elevated floor body 2, thereby flipping and extruding the high-pressure cast aluminum elevated floor body 2 to limit the position.
[0031] In order to cooperate with the assembly transmission, the outer side of the longitudinal adjustment tube 4 corresponds to the lateral transmission opening 41 that cooperates with the control worm gear 63.
[0032] The control worm wheel 63 passes through the lateral transmission opening 41 and meshes with the outer side of the inner top type adjusting worm 8.
[0033] In order to facilitate lateral control, lateral control through holes 100 are opened on the side wall of the bottom column 1 corresponding to the first conical tooth head 71 and on the side wall of the longitudinal adjustment tube 4 corresponding to the second conical tooth head 81.
[0034] In order to cooperate with installation and limiting, an end assembly socket 611 for installing a split extrusion limit head 62 is provided at the extrusion end of the arc-shaped flip arm 61, and a lateral adjustment screw hole connected to the interior of the end assembly socket 611 is provided on the outer surface of the arc-shaped flip arm 61. A lateral locking bolt 612 is inserted into the internal thread of the lateral adjustment screw hole, and an internal extrusion spring 614 is installed on the inner wall of the end assembly socket 611 through an inner assembly shaft 613.
[0035] An extrusion blind hole matching the inner assembly shaft 613 and the internal extrusion spring 614 is provided at the plug-in end of the split extrusion limit head 62 . The internal extrusion spring 614 is inserted into the extrusion blind hole to come into extrusion contact with the split extrusion limit head 62 .
[0036] Then people use an external tool, such as a screwdriver with a conical tooth head on the top, to insert it to engage with the second conical tooth head 81, and then rotate to control the rotation of the second conical tooth head 81, and then drive the inner top adjustment worm 8 to rotate. The inner top adjustment worm 8 adjusts the angle of the worm wheel 63 by rotating, thereby rotating the arc-shaped flip arm 61. The arc-shaped flip arm 61 then drives the split extrusion limit head 62 to flip and extrude the inner angle of the high-pressure cast aluminum elevated floor body 2, thereby controlling the adjacent high-pressure cast aluminum elevated floor bodies to be clamped and limited, completing the assembly.
[0037] In order to cooperate with lateral limiting and guiding, a strip-shaped limiting groove 621 that cooperates with the lateral locking bolt 612 is opened on the outer side surface of the split extrusion limiting head 62.
[0038] The lateral locking bolt 612 is inserted into the strip-shaped limiting groove 621 by rotating toward the inside of the lateral adjustment screw hole. At this time, the split extrusion limiting head 62 can be restricted from being separated from the end assembly socket 611, while also ensuring a certain degree of elastic shock-absorbing stroke.
[0039] In order to cooperate with the outer sealing and limiting, thereby ensuring the limiting ability of the first conical tooth head 71 or the second conical tooth head 81, a lateral limiting slot 101 is opened at the outer opening position of the lateral control through hole 100, and an elastic limiting plug 9 is inserted into the lateral limiting slot 101.
[0040] The first elastic limiting plug 901 is inserted into the lateral limiting slot corresponding to the position of the first conical tooth head 71 on the side wall of the bottom column 1, and the second elastic limiting plug 902 is inserted into the lateral limiting slot corresponding to the position of the second conical tooth head 81 on the longitudinal adjustment tube 4.
[0041] In order to improve the limiting ability in daily use, the first elastic limiting plug 901 and the second elastic limiting plug 902 both include an internal limiting plate 91, an internal guide tube 92 of an integrated structure fixed on the side wall of the internal limiting plate 91, an internal limiting tooth head 93 elastically inserted into the internal guide tube 92, and a rubber fastening frame 94 mounted on the outer surface of the internal limiting plate 91.
[0042] The internal limiting plate 91 is inserted into the lateral limiting slot 101 through the outer rubber fastening frame 94 , and then the rubber fastening frame 94 is installed and limited by the limiting blocks on the outer surface of the lateral limiting slot 101 .
[0043] By inserting the internal guide tube 92 into the lateral control hole and then using the internal limit tooth head 93 to engage with the first conical tooth head 71 or the second conical tooth head 81, the first conical tooth head 71 or the second conical tooth head 81 is locked, providing the purpose of secondary locking.
[0044] The internal limiting tooth head 93 provides sufficient extrusion force through the limiting spring inside the internal guide tube 92.
[0045] With the above-described preferred embodiments of the present invention as a guide, and with reference to the above description, relevant personnel are fully capable of making various changes and modifications without departing from the technical scope of this invention. The technical scope of this invention is not limited to the contents of the specification and must be determined according to the scope of the claims.
Claims
1. A fastener for high-pressure cast aluminum elevated floor, comprising a bottom column (1) and a high-pressure cast aluminum elevated floor body (2), characterized in that: A bottom mounting seat (3) fixed to the bottom surface with bolts is welded to the lower end of the bottom column (1), a longitudinal adjustment tube (4) is movably mounted inside the bottom column (1), a top support plate (5) is axially fixed to the top end of the longitudinal adjustment tube (4), and four flip-type locking arms (6) are movably mounted on the lower end of the top support plate (5) via lateral brackets.
2. The fastener for high-pressure cast aluminum elevated floor according to claim 1, characterized in that: An internal control screw (7) for controlling the longitudinal adjustment tube (4) is longitudinally mounted inside the bottom column (1). The bottom end of the internal control screw (7) has a first conical tooth head (71) of an integral structure. The upper end of the internal control screw (7) is inserted into the interior of the longitudinal adjustment tube (4) and is threadedly engaged with the internal threaded surface of the longitudinal adjustment tube (4).
3. The fastener for high-pressure cast aluminum elevated floor according to claim 2, characterized in that: The inner top surface of the longitudinal adjustment tube (4) is movably equipped with an inner top adjustment worm (8) for controlling the flip-type locking arm (6), and the bottom end of the inner top adjustment worm (8) has a second conical tooth head (81) of an integral structure.
4. The fastener for high-pressure cast aluminum elevated floor according to claim 1, characterized in that: The flip-type locking arm (6) comprises an arc-shaped flip arm (61) axially mounted on a lateral bracket, a split extrusion limiter (62) axially fixed to the extrusion end of the arc-shaped flip arm (61), and an integral control worm gear (63) fixed to the side wall of the flip end of the arc-shaped flip arm (61).
5. The fastener for high-pressure cast aluminum elevated floor according to claim 4, characterized in that: The outer side of the longitudinal regulating tube (4) corresponds to a lateral transmission opening (41) that cooperates with the control worm gear (63).
6. The fastener for high-pressure cast aluminum elevated floor according to claim 3, characterized in that: A lateral control through hole (100) is provided at a position of the first conical tooth head (71) on the side wall of the bottom column (1) and at a position of the second conical tooth head (81) on the longitudinal adjustment tube (4).
7. The fastener for high-pressure cast aluminum elevated floor according to claim 4, characterized in that: The extrusion end of the arc-shaped flip arm (61) is provided with an end assembly socket (611) for mounting a split extrusion limit head (62); a lateral adjustment screw hole is provided on the outer surface of the arc-shaped flip arm (61) and is connected to the interior of the end assembly socket; a lateral locking bolt (64) is inserted into the inner thread of the lateral adjustment screw hole; and an internal extrusion spring (613) is sleeved on the inner wall of the end assembly socket (611) via an inner assembly shaft (612).
8. The fastener for high-pressure cast aluminum elevated floor according to claim 7, characterized in that: A strip-shaped limiting groove (621) that matches the lateral locking bolt (64) is provided on the outer side of the split extrusion limiting head (62).
9. The fastener for high-pressure cast aluminum elevated floor according to claim 6, characterized in that: A lateral limiting slot (101) is provided at the outer opening of the lateral control through hole (100), and an elastic limiting plug (9) is inserted into the lateral limiting slot (101).
10. The fastener for high-pressure cast aluminum elevated floor according to claim 9, characterized in that: The elastic limiting plug (9) comprises an internal limiting plate (91), an internal guide tube (92) of an integral structure fixed to the side wall of the internal limiting plate (91), an internal limiting tooth head (93) elastically inserted into the internal guide tube (92), and a rubber fastening frame (94) sleeved on the outer surface of the internal limiting plate (91).
Citation Information
Patent Citations
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