Integral insertion structure for aluminum alloy plates

By adopting arc-correcting blocks and interleaving blocks in the plug structure of aluminum alloy sheets, combined with the locking mechanism of shafts and extension plates, the loosening or displacement problems caused by shaking during plug-in installation are solved, and the stability of the plug-in and support of the overall structure is improved.

CN223019133UActive Publication Date: 2025-06-24WUHAN GUANGSHENG ALUMINUM CO LTD
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Patent Information

Application Number
CN202422187781.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-06-24
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

During the plug-in installation process, the plate shakes due to accidental impact or equipment vibration, causing loose or displaced at the plug-in connection, affecting the stability and support of the plate.

Method used

The connecting assembly is adopted, including a plug and a positioning groove provided outside the connector, through the arc-shaped plug and the embedding of the corrected block, and the locking of the shaft through and the extension plate, the stability of the plug is improved.

Benefits of technology

By correcting the interlaced distribution of blocks and inserts, the angular positioning and stability of the plug are ensured, and the locking mechanism of the shaft and extension plate can avoid displacement or loosening caused by shaking, thereby improving the stability of the overall plug structure of aluminum alloy sheets.

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Abstract

The utility model relates to the technical field of aluminum alloy plates, in particular to an aluminum alloy plate integral inserting structure which comprises a plate and a connecting piece, a connecting assembly used for inserting and installing the plate is arranged outside the connecting piece, the connecting assembly comprises a plurality of positioning grooves and inserting blocks, and the positioning grooves and the inserting blocks are arranged on the inner wall of the connecting piece. Correcting blocks are arranged on the outer walls of the multiple inserting blocks, through holes are formed in the multiple inserting blocks, multiple lock holes are formed in one ends of the inner walls of the through holes, multiple extending plates are arranged at the other ends of the inner walls of the through holes, protruding blocks are arranged on the outer walls of the extending plates, and shaft rods are arranged in the through holes. According to the utility model, the arc-shaped correction blocks are additionally arranged outside the insertion blocks to position the angle when the aluminum alloy plate is assembled, and the plurality of insertion blocks are embedded and locked through the convex blocks when the shaft rod penetrates through the insertion blocks, so that the insertion stability is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum alloy plates, and specifically relates to an integral plug-in structure for aluminum alloy plates. Background Technique

[0002] An aluminum alloy plate is a plate-shaped material made of aluminum alloy, and is usually used in fields such as construction, automobile manufacturing, and aerospace. Aluminum alloy plates have many advantages, such as being lightweight, corrosion-resistant, and high in strength, so they are widely used in various application scenarios. The plug-in structure of aluminum alloy plates refers to a structure in which aluminum alloy plates of different specifications are connected together by plugging to form an integral structure.

[0003] However, in the prior art at present, during the plug-in installation process of aluminum alloy plates, when personnel accidentally touch or the equipment vibrates, since it contacts the aluminum alloy plates, it will act on the plates, causing the plates to shake, resulting in loosening or displacement at the plug-in connection of the plates, reducing the stability and support of the aluminum alloy plates, and affecting the installation quality of the plates. Content of the Utility Model

[0004] The purpose of the utility model is to provide an integral plug-in structure for aluminum alloy plates to solve the problems put forward in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] An integral plug-in structure for aluminum alloy plates includes plates and connectors. A connection component for plugging and installing the plates is arranged outside the connectors. The connection component includes a plurality of positioning grooves and plug blocks arranged on the inner wall of the connectors. Correction blocks are arranged on the outer walls of the plurality of plug blocks, through holes are arranged inside the plurality of plug blocks, a plurality of locking holes are arranged at one end of the inner wall of the through holes, a plurality of extension plates are arranged at the other end, protrusions are arranged on the outer walls of the plurality of extension plates, and a shaft rod is arranged inside the through holes.

[0007] As a preferred scheme of the utility model, the connectors are connected to the outer walls of the plates by bolts. The plurality of plug blocks and positioning grooves are both arranged in an array on the outer walls of the connectors, and the plug blocks and positioning grooves are cross-distributed.

[0008] As a preferred scheme of the utility model, the plug blocks and positioning grooves on the connectors outside the two plates are staggered, and the plug blocks on the connectors are slidably plugged in a staggered manner. After the plug blocks are plugged in, the through holes inside are parallel.

[0009] As a preferred scheme of the utility model, both the correction blocks and the positioning grooves are arc-shaped structures. The correction blocks are integrally formed with the outer walls of the plug blocks and are embedded in the positioning grooves of the connectors when the plug blocks are plugged and assembled.

[0010] As a preferred solution of the present utility model, multiple said lock holes and extension plates are annularly distributed on the inner wall of the through hole, and are respectively located at both ends of the through hole. Multiple said extension plates are rotatably connected to the inner wall of the through hole through damping shafts.

[0011] As a preferred solution of the present utility model, the convex block is connected to the outer wall of the extension plate by welding. In the normal state, the extension plate rotates and contracts in the through hole. After the connection components are docked, the shaft rod penetrates through the through hole of the insertion block to lock the connection components.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: In response to the problems raised in the background art, the present application adopts a connection component. By connecting the connection component to the outside of the plate, when assembling the aluminum alloy plate, the insertion blocks on the outside of the connection component are arc-shaped and inserted correspondingly. The correction blocks on the outer wall of the insertion block are embedded in the positioning grooves of the connection component, which can cooperate with the abutting surface of the insertion block to correct and position the angle during the assembly of the plate. After insertion, the shaft rod penetrates through the connection components of the two plates to lock them. When the shaft rod penetrates through the through hole of the insertion block, the extension plate in the through hole can be pushed to rotate and extend out of the through hole and rotate into the through hole of another insertion block. At the same time, the convex block on the outer wall of the extension plate is embedded in the lock hole of the through hole, thereby improving the stability of the connection component insertion and avoiding displacement or loosening caused by shaking.

[0013] The present utility model positions the angle during the assembly of the aluminum alloy plate by adding an arc-shaped correction block outside the insertion block, and when the shaft rod penetrates, the multiple insertion blocks are locked by the convex blocks being fitted together, improving the stability of the insertion. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional view of the overall structure of the present utility model;

[0015] Figure 2 is a structural diagram of the insertion block outside the connection component of the present utility model;

[0016] Figure 3 is a cross-sectional view of the inside of the through hole of the insertion block of the present utility model;

[0017] Figure 4 is a structural diagram of the outside of the extension plate of the present utility model.

[0018] In the figure: 1, plate; 2, connection component; 3, positioning groove; 4, insertion block; 401, correction block; 5, through hole; 6, lock hole; 7, extension plate; 701, convex block; 8, shaft rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the embodiments of the present utility model. Embodiment

[0020] Please refer to Figures 1-4, the present utility model provides a technical solution: an integral plug-in structure for aluminum alloy plates, including a plate 1 and a connecting member 2. The connecting member 2 is fixed at a position where it can be assembled with the plate 1 through bolts, so as to position the assembly position. A connecting component for plugging and installing the plate 1 is arranged outside the connecting member 2. The connecting component includes a plurality of positioning grooves 3 and plug blocks 4 arranged on the inner wall of the connecting member 2. When the plate 1 is assembled, the plug blocks 4 outside the connecting member 2 are inserted and spliced alternately. While achieving splicing, the plug blocks 4 can be parallel in angle to make the plugging joint abut and close, so as to make the plugging joint beautiful and avoid the generation of pits; when the plug blocks 4 are inserted, the correcting blocks 401 outside the plug blocks 4 can be embedded into the positioning grooves 3 on the outer wall of the connecting member 2, and the angle during the assembly of the plate 1 can be corrected and positioned through the arc angle matching the fitting of the plug blocks 4. A correcting block 401 is arranged on the outer wall of each of the plurality of plug blocks 4, and a through hole 5 is arranged inside each of the plurality of plug blocks 4, which is convenient for the shaft rod 8 to penetrate after the plug blocks 4 are inserted, further improving the stability after insertion. One end of the inner wall of the through hole 5 is provided with a plurality of locking holes 6, and the other end is provided with a plurality of extension plates 7. A convex block 701 is arranged on the outer wall of each of the plurality of extension plates 7. A shaft rod 8 is arranged inside the through hole 5. When the shaft rod 8 penetrates the through hole 5 and passes through the area of the extension plate 7 of the through hole 5, the extension plate 7 is pushed to rotate and extend out of the through hole 5 (since the plug blocks 4 are fitted, the extended extension plate 7 will rotate into the through hole 5 of the lower plug block 4 after extension. At the same time, the convex block 701 on the outer wall of the extension plate 7 is embedded into the locking hole 6 at the top of the through hole 5 of the lower plug block 4, so that the plug blocks 4 are locked before, increasing the stability when the plug blocks 4 are inserted).

[0021] In this embodiment, all electrical components are controlled by a conventional controller.

[0022] For the embodiment, please refer to Figures 1-4, the connecting member 2 is connected to the outer wall of the plate 1 by bolts. A plurality of the insertion blocks 4 and the positioning grooves 3 are both arranged in an array on the outer wall of the connecting member 2, and the insertion blocks 4 and the positioning grooves 3 are distributed in a cross pattern. The insertion blocks 4 and the positioning grooves 3 on the connecting members 2 outside the two plates 1 are staggered. And the insertion blocks 4 on the connecting member 2 are slidably inserted in a staggered manner. After the insertion blocks 4 are inserted, the through holes 5 inside are parallel. Both the correction block 401 and the positioning groove 3 are arc-shaped structures. The correction block 401 is integrally formed with the outer wall of the insertion block 4 and is embedded in the positioning groove 3 of the connecting member 2 when the insertion block 4 is assembled by insertion. A plurality of the locking holes 6 and the extension plates 7 are both annularly distributed on the inner wall of the through hole 5 and are respectively located at both ends of the through hole 5. A plurality of the extension plates 7 are rotatably connected to the inner wall of the through hole 5 through damping shafts. The convex block 701 is connected to the outer wall of the extension plate 7 by welding. In the normal state, the extension plate 7 rotates and contracts inside the through hole 5. After the connecting members 2 are butted, the shaft rod 8 passes through the through hole 5 of the insertion block 4 to lock the connecting member 2. When in use, first align the two plates 1 through the connecting member 2. At the same time, the insertion blocks 4 outside the connecting member 2 are inserted and fitted in an arc-shaped and staggered manner. And the correction block 401 on the outer wall of the insertion block 4 is embedded in the positioning groove 3 outside the connecting member 2. When being squeezed, the insertion blocks 4 on the connecting member 2 are closely fitted. At the same time, the through holes 5 in the plurality of insertion blocks 4 are parallel. Then pass the shaft rod 8 through the through hole 5. When the shaft rod 8 is inserted, the extension plate 7 at the bottom of the through hole 5 of the insertion block 4 can be pushed to extend into the through hole 5 of the lower insertion block 4. And the convex block 701 on the outer wall of the extension plate 7 is embedded in the locking hole 6 of the through hole 5, so that the insertion blocks 4 are clamped and locked before.

[0023] The working process of the present utility model: When in use, first align the two plates 1 through the connecting member 2. At the same time, the insertion blocks 4 outside the connecting member 2 are inserted and fitted in an arc-shaped and staggered manner. And the correction block 401 on the outer wall of the insertion block 4 is embedded in the positioning groove 3 outside the connecting member 2. When being squeezed, the insertion blocks 4 on the connecting member 2 are closely fitted. At the same time, the through holes 5 in the plurality of insertion blocks 4 are parallel. Then pass the shaft rod 8 through the through hole 5. When the shaft rod 8 is inserted, the extension plate 7 at the bottom of the through hole 5 of the insertion block 4 can be pushed to extend into the through hole 5 of the lower insertion block 4. And the convex block 701 on the outer wall of the extension plate 7 is embedded in the locking hole 6 of the through hole 5, so that the insertion blocks 4 are clamped and locked before. The present utility model positions the angle during the assembly of the aluminum alloy plates by adding an arc-shaped correction block outside the insertion block, and makes the plurality of insertion blocks be locked by fitting with the convex blocks when the shaft rod passes through, improving the stability of the insertion.

[0024] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. An integral plug-in structure of an aluminum alloy plate, comprising a plate (1) and a connector (2), wherein a connecting component for plugging and installing the plate (1) is disposed outside the connector (2), characterized in that: The connection assembly comprises a plurality of positioning grooves (3) and plug blocks (4) arranged on the inner wall of the connection member (2); the outer walls of the plurality of plug blocks (4) are each provided with a correction block (401); the interior of the plurality of plug blocks (4) is each provided with a through hole (5); one end of the inner wall of the through hole (5) is provided with a plurality of locking holes (6); the other end is provided with a plurality of extension plates (7); the outer walls of the plurality of extension plates (7) are each provided with a protrusion (701); and the interior of the through hole (5) is provided with a shaft rod (8).

2. The integral plug-in structure of aluminum alloy plates according to claim 1, characterized in that: The connecting piece (2) is connected to the outer wall of the plate (1) by means of bolts, and a plurality of the insert blocks (4) and the positioning grooves (3) are distributed in an array on the outer wall of the connecting piece (2), and the insert blocks (4) and the positioning grooves (3) are distributed crosswise.

3. The integral plug-in structure of aluminum alloy plates according to claim 1, characterized in that: The insert blocks (4) and the positioning grooves (3) on the connecting pieces (2) outside the two plates (1) are arranged in an alternating manner, and the insert blocks (4) on the connecting pieces (2) are inserted in an alternating manner and slidably connected, and the internal through holes (5) are parallel after the insert blocks (4) are inserted.

4. The aluminum alloy plate integral plug-in structure according to claim 1, characterized in that: The correction block (401) and the positioning groove (3) are both arc-shaped structures; the correction block (401) is integrally formed with the outer wall of the plug block (4) and is embedded in the positioning groove (3) of the connector (2) when the plug block (4) is plugged and assembled.

5. The aluminum alloy plate integral plug-in structure according to claim 1, characterized in that: The plurality of locking holes (6) and extension plates (7) are distributed in an annular manner on the inner wall of the through hole (5) and are respectively located at two ends of the through hole (5); the plurality of extension plates (7) are rotatably connected to the inner wall of the through hole (5) via a damping shaft.

6. The aluminum alloy plate integral plug-in structure according to claim 1, characterized in that: The protrusion (701) is connected to the outer wall of the extension plate (7) by welding. In a normal state, the extension plate (7) rotates and contracts in the through hole (5). After the connecting piece (2) is docked, the shaft rod (8) passes through the through hole (5) of the insert block (4) to lock the connecting piece (2).