Aluminum component convenient to connect and used for pseudo-classic architecture

By using a boltless interlocking structure and the combination of a rotating shaft, plug-in blocks, and springs, the problem of complicated and aesthetically pleasing connections for aluminum components in antique-style buildings is solved, enabling quick and stable connection and disassembly while maintaining the aesthetic effect of antique-style buildings.

CN224227975UActive Publication Date: 2026-05-12ANHUI WEIMING ANCIENT GARDEN ARCHITECTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI WEIMING ANCIENT GARDEN ARCHITECTURE CO LTD
Filing Date
2025-05-29
Publication Date
2026-05-12

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Abstract

The utility model relates to the technical field of pseudo-classic buildings, and discloses a convenient-to-connect aluminum component for pseudo-classic buildings, which comprises an aluminum material, a sliding groove and a rotating groove are arranged on the aluminum material, a rotating shaft and an inserting block are respectively mounted in the sliding groove and the rotating groove, an unlocking mechanism is connected to the tail end of the rotating shaft, and clamping blocks are connected to two sides of the inserting block. A connecting groove used for being connected with another aluminum material is formed in the aluminum material, and two clamping grooves are symmetrically formed in the side wall of the connecting groove. A bolt-free interlocking structure is adopted, rapid mounting and dismounting are achieved through cooperation of the rotating shaft, the inserting block and the spring, tools are not needed, operation is easy and convenient, the unlocking mechanism is designed in a hidden mode, surface flatness is guaranteed, the aesthetic effect of the pseudo-classic architecture is restored, stable connection is guaranteed through spring reset and a guide structure, mistaken touch is prevented, and functions and attractiveness are both considered.
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Description

Technical Field

[0001] This utility model belongs to the field of antique building technology, specifically, it relates to an aluminum component for antique buildings that is easy to connect. Background Technology

[0002] As an important carrier of traditional culture, the design of components for antique-style buildings needs to take into account both structural stability and the restoration of traditional aesthetics. In the construction process of antique-style buildings, aluminum components have gradually become an ideal substitute for traditional wood due to their lightweight, corrosion resistance and ease of processing. However, how to maintain the appearance of antique-style buildings while meeting the requirements of modern engineering mechanics has become a key challenge in the design of aluminum component connections.

[0003] Currently, most aluminum components in antique-style buildings are connected by bolts, which requires tools, is cumbersome to operate, and the protruding bolts at the interface detract from the aesthetics. In some boltless mechanical locking structures, the unlocking mechanism is prone to protruding from the surface, affecting the visual effect, and may also cause wear or accidental unlocking due to exposure.

[0004] In view of this, this utility model is proposed. Utility Model Content

[0005] To address the current issues of bolt-fastened aluminum components in antique-style buildings, which require tools, are cumbersome to operate, and have protruding bolts that detract from the aesthetics, and the tendency of boltless mechanical locking mechanisms to protrude from the surface, affecting visual appeal and potentially leading to wear or accidental unlocking due to exposure, the basic concept of this utility model is as follows:

[0006] An aluminum component for antique-style buildings that is easy to connect includes an aluminum material. The aluminum material has a sliding groove and a rotating groove. A rotating shaft and a plug-in block are respectively installed in the sliding groove and the rotating groove. An unlocking mechanism is connected to the end of the rotating shaft. A locking block is connected to both sides of the plug-in block. The aluminum material has a connecting groove for connecting with another aluminum material. Two locking slots are symmetrically opened on the side wall of the connecting groove.

[0007] In a preferred embodiment of this utility model, the card block is adapted to the card slot.

[0008] In a preferred embodiment of this utility model, the unlocking mechanism includes a pressing block, a guide post, and a guide groove. An installation groove is provided on the aluminum material, the pressing block is installed in the installation groove, the pressing block is provided with a guide groove, and a guide post is connected in the installation groove. The guide post is adapted to the guide groove.

[0009] In a preferred embodiment of this utility model, the end of the rotating shaft is slidably mounted in the sliding groove, the plug block is rotatably mounted in the rotating groove, and the plug block is mounted on the rotating shaft.

[0010] In a preferred embodiment of the present invention, a spring is movably sleeved on the rotating shaft, with one end of the spring attached to the side wall of the insertion block and the other end attached to the side wall of the rotating groove.

[0011] In a preferred embodiment of this utility model, the aluminum material is disposed at the connection between the two connectors.

[0012] Compared with the prior art, the present invention has the following advantages:

[0013] This utility model adopts a boltless interlocking structure, which enables quick installation and disassembly through the cooperation of a rotating shaft, plug-in block and spring. It requires no tools and is easy to operate. The unlocking mechanism is hidden to ensure a flat surface and restore the aesthetic effect of antique architecture. The spring reset and guide structure ensure stable connection and prevent accidental contact, thus balancing functionality and aesthetics.

[0014] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description

[0015] In the attached diagram:

[0016] Figure 1 A 3D model of an aluminum component for antique-style buildings that is easy to connect;

[0017] Figure 2 A cross-sectional view of an aluminum component for antique-style buildings that is easy to connect;

[0018] Figure 3 A schematic diagram of the connection of an aluminum component for antique-style buildings that is easy to connect. Figure 1 ;

[0019] Figure 4 A schematic diagram of the connection of an aluminum component for antique-style buildings that is easy to connect. Figure 2 ;

[0020] Figure 5 A schematic diagram of the internal structure of an aluminum component for antique-style buildings that is easy to connect;

[0021] Figure 6 A schematic diagram of an unlocking mechanism for an aluminum component used in antique-style buildings that is easy to connect;

[0022] Figure 7 An aluminum component for antique-style buildings that is easy to connect Figure 6 Enlarged view of point A in the middle.

[0023] In the diagram: 1. Aluminum material; 2. Sliding groove; 3. Rotating shaft; 4. Rotating groove; 5. Insertion block; 6. Connecting groove; 7. Slot; 8. Slot; 9. Spring; 10. Mounting groove; 11. Pressing block; 12. Guide post; 13. Guide groove. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model.

[0025] like Figures 1 to 7 As shown, an aluminum component for antique-style buildings that is easy to connect includes an aluminum material 1. The aluminum material 1 has a sliding groove 2 and a rotating groove 4. A rotating shaft 3 and a plug-in block 5 are respectively installed in the sliding groove 2 and the rotating groove 4. An unlocking mechanism is connected to the end of the rotating shaft 3. A locking block 8 is connected to both sides of the plug-in block 5. The aluminum material 1 has a connecting groove 6 for connecting with another aluminum material 1. Two locking slots 7 are symmetrically opened on the side wall of the connecting groove 6. In this configuration, aluminum material 1 serves as the basic load-bearing component, providing the mounting carrier for the connection structure. The sliding groove 2 limits the sliding trajectory of the rotating shaft 3, ensuring that it moves in a preset direction. The rotating groove 4 provides rotation space for the plug-in block 5, allowing it to rotate with the rotating shaft 3 to achieve engagement or unlocking. The rotating shaft 3 is connected to the unlocking mechanism, transmitting pressing or elastic force to drive the plug-in block 5 to rotate. The plug-in block 5, through rotation, drives the locking block 8 to insert into or disengage from the locking groove 7, achieving mechanical locking of the two aluminum materials. The locking block 8 and the locking groove 7 cooperate to form an interlocking structure, preventing the aluminum materials from separating. The connecting groove 6 allows the plug-in block 5 of another aluminum material to be inserted, positioning the connection position. The locking groove 7 is adapted to the locking block 8, providing a locking position.

[0026] like Figures 1 to 7 As shown, in a specific embodiment, the locking block 8 is adapted to the locking slot 7. In this configuration, the locking block 8 is embedded into the locking slot 7 by adapting its shape, and the connection is secured by mechanical interlocking to prevent the aluminum material 1 from falling off.

[0027] like Figures 1 to 7 As shown, the unlocking mechanism further includes a pressing block 11, a guide post 12, and a guide groove 13. An installation groove 10 is provided on the aluminum material 1, and the pressing block 11 is installed in the installation groove 10. The pressing block 11 has a guide groove 13, and the guide post 12 is connected to the installation groove 10. The guide post 12 is adapted to the guide groove 13. In this configuration, the pressing block 11 receives external pressing force. Through the cooperation of the guide groove 13 and the guide post 12, linear motion is converted into rotational motion, driving the rotating shaft 3 to rotate. The guide post 12 is fixed in the installation groove 10, cooperating with the guide groove 13 of the pressing block 11 to limit the movement trajectory of the pressing block 11 and guide its rotation. The installation groove 10 accommodates the pressing block 11, providing its installation space and limiting its range of motion.

[0028] like Figures 1 to 7As shown, further, the end of the rotating shaft 3 is slidably installed in the sliding groove 2, and the plug-in block 5 is rotatably installed in the rotating groove 4, with the plug-in block 5 mounted on the rotating shaft 3. In this configuration, the end of the rotating shaft 3 slides within the sliding groove 2, converting the elastic force of the spring 9 into axial movement force, while simultaneously providing a rotational fulcrum for the plug-in block 5. The plug-in block 5 can rotate around the rotating shaft 3, changing the posture of the locking block 8 through rotation. The connection between the rotating shaft 3 and the plug-in block 5 transmits rotational motion, allowing the locking block 8 to rotate with the rotating shaft 3 to achieve locking or unlocking.

[0029] like Figures 1 to 7 As shown, a spring 9 is movably sleeved on the rotating shaft 3. One end of the spring 9 is attached to the side wall of the insertion block 5, and the other end is attached to the side wall of the rotating groove 4. In this configuration, the spring 9 provides elastic restoring force. When the locking block 8 is inserted into the locking groove 7, it pushes the rotating shaft 3 to move and drives the insertion block 5 to rotate, so that the locking block 8 is locked into the end of the locking groove 7. The two ends of the spring 9 are attached, with one end abutting against the insertion block 5 and the other end abutting against the side wall of the rotating groove 4, ensuring that the elastic force is transmitted axially along the rotating shaft 3.

[0030] like Figures 1 to 7 As shown, aluminum material 1 is further disposed at the connection between the two connectors. In this configuration, aluminum material 1 serves as the connection hub between the two connectors, achieving boltless and rapid connection between adjacent components through its own structure, ensuring a continuous force transmission path and a smooth appearance.

[0031] The implementation principle of an easily connectable aluminum component for antique-style buildings in this embodiment is as follows: Align the aluminum materials 1 of the two connectors that need to be connected. First, rotate the two plug-in blocks 5 to a horizontal state. At this time, the spring 9 is in a compressed state. Then, insert the plug-in block 5 and the locking block 8 of the first aluminum material 1 into the connecting groove 6 and the locking groove 7 of the second aluminum material 1, respectively. At the same time, the plug-in block 5 and the locking block 8 of the second aluminum material 1 will also be inserted into the connecting groove 6 and the locking groove 7 of the first aluminum material 1. After the locking block 8 is inserted with the locking groove 7, when the locking groove 7 can no longer block the rotation of the locking block 8, the spring 9 will push the rotating shaft 3 to move. The rotating shaft 3 drives... The pressing block 11 moves synchronously, and the guide groove 13 on the pressing block 11 cooperates with the guide post 12 to make the pressing block 11 rotate, which in turn drives the rotating shaft 3 to rotate, and finally makes the plug block 5 and the locking block 8 rotate to the locking position at the end of the slot 7. At this time, the two aluminum materials 1 cannot be pulled out due to the interlocking structure of the locking block 8 and the slot 7. When unlocking, the pressing blocks 11 on the two aluminum materials 1 need to be pressed at the same time. The pressing block 11, through the cooperation of the guide groove 13 and the guide post 12, drives the rotating shaft 3 and the plug block 5 to rotate, so that the locking block 8 rotates to a horizontal state in the slot 7, and can be pulled out directly to complete the separation, which also avoids accidental contact.

Claims

1. An easily connectable aluminum component for antique-style buildings, comprising aluminum material (1), characterized in that, The aluminum material (1) is provided with a sliding groove (2) and a rotating groove (4). A rotating shaft (3) and a plug-in block (5) are respectively installed in the sliding groove (2) and the rotating groove (4). An unlocking mechanism is connected to the end of the rotating shaft (3). A locking block (8) is connected to both sides of the plug-in block (5). A connecting groove (6) for connecting with another aluminum material (1) is provided on the aluminum material (1). Two locking slots (7) are symmetrically opened on the side wall of the connecting groove (6).

2. The aluminum component for antique-style buildings that is easy to connect according to claim 1, characterized in that, The card block (8) is adapted to the card slot (7).

3. The aluminum component for antique-style buildings that is easy to connect according to claim 1, characterized in that, The unlocking mechanism includes a pressing block (11), a guide post (12), and a guide groove (13). An installation groove (10) is provided on the aluminum material (1). The pressing block (11) is installed in the installation groove (10). A guide groove (13) is provided on the pressing block (11). A guide post (12) is connected in the installation groove (10). The guide post (12) is adapted to the guide groove (13).

4. The aluminum component for antique-style buildings that is easy to connect according to claim 1, characterized in that, The end of the rotating shaft (3) is slidably installed in the sliding groove (2), the plug block (5) is rotatably installed in the rotating groove (4), and the plug block (5) is installed on the rotating shaft (3).

5. The aluminum component for antique-style buildings that is easy to connect according to claim 1, characterized in that, A spring (9) is movably sleeved on the rotating shaft (3). One end of the spring (9) is attached to the side wall of the plug block (5), and the other end is attached to the side wall of the rotating groove (4).

6. The aluminum component for antique-style buildings that is easy to connect according to claim 1, characterized in that, The aluminum material (1) is disposed at the connection of the two connectors.