Curtain wall aluminum veneer mounting structure
By designing a curtain wall aluminum veneer installation structure including track components, fastening components, connection components and telescopic components, the problems of cumbersome installation and fixing and difficult position adjustment in the prior art are solved, and flexible adjustment and stable installation of curtain wall aluminum veneer are achieved.
Patent Information
- Application Number
- CN202421359788.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-06-14
AI Technical Summary
The installation and fixing of the existing curtain wall aluminum veneer is complicated and cannot be adjusted in position, resulting in the inability to control the front and rear positions of the aluminum veneer.
A curtain wall aluminum veneer installation structure is designed, which is fixed to the building wall through track components, and the combination of fastening components, connecting components and telescopic installation of the aluminum outer panel is achieved by using the combination of fastening components, connecting components and telescopic installation of the aluminum outer panel.
The position adjustment of the curtain wall aluminum veneer is realized, the installation process is simplified, the cumbersome disassembly and assembly operations are avoided, and the installation efficiency and stability are improved.
Smart Images

Figure CN222923971U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building structures, in particular to an installation structure of curtain wall aluminum single plates. Background Art
[0002] With the continuous development of technology, the construction of urban buildings is also increasing. For some renovated or newly built buildings in cities, in order to make the appearance of the buildings more beautiful and form better protection, the external fixed frames of the buildings are made, and curtain wall plates are installed on the building frames, thereby increasing the beauty and practicality of the building exterior.
[0003] Among the installed curtain walls, aluminum single plates are mostly used. Due to requirements, the positions of the curtain walls need to be adjusted. The existing structures for installing and using curtain wall aluminum single plates are relatively cumbersome to install and fix, and the positions cannot be adjusted. The front and rear positions of the aluminum single plates cannot be controlled, resulting in the problem that the installation structure needs to be adjusted separately. Summary of the Utility Model
[0004] An embodiment of the present disclosure relates to an installation structure of curtain wall aluminum single plates. The track assembly is directly fixed on the building wall, and a fastening assembly is interactively installed on the connecting assembly. After the fastening assembly is fixed to the connecting assembly, the clamping assembly on the fastening assembly can be controlled by rotating the connecting assembly, so that the clamping assembly is deformed, facilitating the clamping of the clamping assembly on the track assembly, thereby facilitating the adjustment of the position of the connecting assembly. A telescopic assembly is fixed at the outer end of the connecting assembly. The telescopic assembly adopts a telescopic structure as a whole and can be telescopically adjusted to achieve the function of adjusting and controlling the aluminum outer plate.
[0005] The utility model provides an installation structure of curtain wall aluminum single plates, which specifically includes: a track assembly; the track assembly is directly fixed on the outer wall of the building. A clamping assembly is clamped and installed on the track assembly. A fastening assembly is arranged at the outer end of the clamping assembly. A connecting assembly is rotatably installed at the outer end of the fastening assembly. The outer end of the connecting assembly is connected and fixed to a telescopic assembly. A fixing assembly is fixed at the end of the telescopic assembly. An aluminum outer plate is installed at the outer position of the fixing assembly.
[0006] In at least some embodiments, the positioning plate of the track assembly is fixed on the outer wall of the building. The track frame of the positioning plate is set as a long and narrow trough frame structure. Positioning heads are arranged on both the track frame and the positioning plate. The positioning plate and the track frame are mutually aligned and clamped and installed through the positioning heads. A reinforcing head is additionally installed on the outer side of the back of the track frame.
[0007] In at least some embodiments, the clamping block of the clamping assembly is set as a block structure. The clamping blocks are set in two groups of symmetrical structures. The positions between the two groups of clamping blocks are connected by a connecting frame. A connecting head is arranged at the middle position of the outer end of each group of clamping blocks.
[0008] In at least some embodiments, the fastening plate of the fastening assembly is arranged in a disc-shaped structure. A connector is rotatably installed at the hole of the fastening plate. A sliding track is arranged at the outer end position of the hole of the fastening plate. A cutting surface is arranged at the position of the fastening plate corresponding to the sliding track. A positioning pin is slidably installed at the cutting surface position of the fastening plate, and a knob is screwed on the positioning pin.
[0009] In at least some embodiments, the connecting ring of the connecting assembly is arranged in an annular structure. Connecting columns are arranged on the outer wall of the connecting ring. A connecting plate is snap-fitted and installed on the connecting columns of the connecting ring. A connecting cylinder is arranged at the outer end position of the connecting plate, and the connecting cylinder is arranged in a conical structure.
[0010] In at least some embodiments, the fixed cylinder of the telescopic assembly is fixed at the outer end of the connecting cylinder. The inner sleeve of the fixed cylinder is arranged in a double-layer structure. The inner end of the fixed cylinder is a sliding rod. Concave-convex annular grooves are arranged on the inner wall of the fixed cylinder. The end position of the sliding rod is an external connecting column.
[0011] In at least some embodiments, the fixing groove of the fixing assembly is arranged to be fixed at the outer end of the telescopic assembly. The fixing groove corresponds to the edge of the aluminum outer plate. A fixing strip is snap-fitted and installed at the fixing groove, and the fixing strip is in direct contact with the aluminum outer plate on the fixing groove.
[0012] The present utility model provides a curtain wall aluminum single plate installation structure, which has the following beneficial effects:
[0013] In the present utility model, the track assembly is fixed on the outer wall of the building by bolts. The track frames of the track assembly are snap-fitted and aligned with each other through positioning heads, so that components such as the clamping assembly can slide and adjust better in the track frame. The connecting plate of the connecting assembly is fixed to the connecting ring, and the fastening plate is rotatably installed at the inner end of the connecting ring. After the fastening plate is fixed by the positioning pin, rotating the fastening plate can control the clamping assembly installed on the fastening assembly, so that the clamping assembly forms two states of contraction and expansion, realizing that the clamping assembly can be snap-fitted and installed inside the track frame, achieving the overall fixing effect of the connecting assembly. The telescopic assembly arranged at the outer end of the connecting assembly adopts a telescopic structure, and the fixing assembly at the end of the telescopic assembly can be snap-fitted and installed with the aluminum outer plate, enabling the aluminum outer plate to be adjusted as needed. It can be realized by directly rotating the connecting assembly and the telescopic assembly, avoiding cumbersome operations such as disassembling and installing bolts.
[0014] In addition, a positioning head is arranged at the outer end of the positioning plate, enabling the track frame to be installed by referring to the position of the positioning plate through the positioning head, and also fixing the position of the positioning plate. The track frame is arranged in a long and narrow trough-shaped structure, enabling the clamping assembly to slide and adjust its position on the track frame. The reinforcing head extending from the back of the track frame has the function of further reinforcing by installing bolts again, ensuring the overall stability of the track assembly.
[0015] In addition, a connector is provided in the middle of the outer end of the snap block, so that the snap assembly is connected and installed on the fastening assembly through the connector. The two snap blocks are connected by a connecting frame, enabling the two snap blocks to move telescopically through guidance. After the snap assembly is horizontally placed in the track frame, it needs to be erected so that the snap assembly is snapped into the track frame. To increase the stability between the snap assembly and the track frame, the snap blocks are directly expanded to fix the snap assembly.
[0016] In addition, a connector is rotatably installed on the hole of the fastening disk, and the connector of a group of snap blocks is slidably installed at the sliding track of the fastening disk. After rotating the fastening disk, the other group of snap blocks can be driven and controlled through the arc-shaped sliding track. A positioning pin is slidably installed at the section position of the fastening disk, enabling the positioning pin to extend and abut against the connecting component outside the fastening disk, thereby realizing the circumferential fixation between the fastening component and the connecting component. The knob screwed onto the positioning pin can fix the sliding position of the positioning pin, allowing the positioning pin to stably abut against the connecting component at the outer end of the fastening component.
[0017] In addition, the connecting ring is set as an annular structure, making it convenient to rotate on the fastening component. The connecting column of the connecting ring can correspond to the connecting disk, realizing the stable installation between the connecting disk and the connecting ring. The connecting cylinder at the outer end of the connecting disk is conical, enabling the connecting cylinder to stably connect components such as the telescopic component.
[0018] In addition, an external column is provided at the end of the sliding rod, which can facilitate the installation of the fixing component. The inner wall of the fixing cylinder is provided with concave and convex annular grooves, enabling the sliding rod and the fixing cylinder to contact through the concave and convex annular grooves. After the sliding rod extends and rotates, the inner end of the sliding rod can abut against the concave and convex annular grooves on the inner wall of the fixing cylinder for fixation. The fixing groove provided at the end of the telescopic component can correspond to the edge of the aluminum outer plate, enabling the aluminum outer plate to be stably snapped and installed on the fixing groove. The fixing strip has the function of fixing the aluminum outer plate on the fixing groove. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.
[0020] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0021] In the drawings:
[0022] Figure 1 The overall structural schematic diagram of the present application is shown;
[0023] Figure 2 The schematic diagram of the structure of the fixing component of the present application is shown;
[0024] Figure 3 Shows a schematic diagram of the track component structure of the present application;
[0025] Figure 4 Shows a schematic diagram of the structure of the clamping component and the fastening component of the present application;
[0026] Figure 5 Shows a schematic diagram of the telescopic component structure of the present application;
[0027] Figure 6 Shows a schematic diagram of the structure of the connection component and the fastening component of the present application;
[0028] Figure 7 Shows a schematic diagram of the clamping component structure of the present application;
[0029] List of reference numerals
[0030] 1. Track component; 101. Positioning plate; 102. Track frame; 103. Positioning head; 104. Reinforcement head;
[0031] 2. Clamping component; 201. Clamping block; 202. Connection head; 203. Connection frame;
[0032] 3. Fastening component; 301. Fastening disc; 302. Sliding track; 303. Positioning pin;
[0033] 4. Connection component; 401. Connection ring; 402. Connection column; 403. Connection disc; 404. Connection cylinder;
[0034] 5. Telescopic component; 501. Fixed cylinder; 502. Sliding rod; 503. External column;
[0035] 6. Fixed component; 601. Fixed groove; 602. Fixed strip;
[0036] 7. Aluminum outer plate. Detailed implementation manners
[0037] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present utility model without creative efforts shall fall within the scope of protection of the present utility model.
[0038] Embodiment 1: Please refer to Figures 1 to 7 :
[0039] The utility model provides an installation structure for curtain wall aluminum veneers, comprising: a track assembly 1; the track assembly 1 is directly fixed on the outer wall of a building, a clamping assembly 2 is clamped and installed on the track assembly 1, a fastening assembly 3 is arranged at the outer end of the clamping assembly 2, a connecting assembly 4 is rotatably installed at the outer end of the fastening assembly 3, the outer end of the connecting assembly 4 is fixedly connected to a telescopic assembly 5, a fixing assembly 6 is fixed at the end of the telescopic assembly 5, and an aluminum outer plate 7 is installed at the outer side of the fixing assembly 6.
[0040] In the embodiment of the present disclosure, as Figure 3 shown, the positioning plate 101 of the track assembly 1 is fixed on the outer wall of the building. The track frame 102 of the positioning plate 101 is arranged as a long and narrow groove frame structure. Positioning heads 103 are provided on both the track frame 102 and the positioning plate 101. The positioning plate 101 and the track frame 102 are mutually aligned and clamped through the positioning heads 103. The outer end of the positioning plate 101 is provided with a positioning head 103, enabling the track frame 102 to install by aligning with the position of the positioning plate 101 through the positioning head 103, and also fixing the position of the positioning plate 101. The track frame 102 is arranged as a long and narrow groove frame structure, allowing the position of the clamping assembly 2 to be slidably adjusted on the track frame 102. A reinforcing head 104 is additionally installed at the outer side of the back of the track frame 102. The reinforcing head 104 extending out from the back of the track frame 102 has the function of further reinforcing by installing bolts again, ensuring the overall stability of the track assembly 1.
[0041] In the embodiment of the present disclosure, as Figure 7 shown, the clamping block 201 of the clamping assembly 2 is arranged as a block structure. The clamping block 201 is arranged in two groups of symmetrical structures. The position between the two groups of clamping blocks 201 is connected by a connecting frame 203. A connecting head 202 is arranged at the middle position of the outer end of each group of clamping blocks 201. By arranging the connecting head 202 at the middle of the outer end of the clamping block 201, the clamping assembly 2 is connected and installed on the fastening assembly 3 through the connecting head 202. The two groups of clamping blocks 201 are connected by the connecting frame 203, enabling the two groups of clamping blocks 201 to move telescopically through guiding. After the clamping assembly 2 is horizontally placed into the track frame 102, it needs to be erected so that the clamping assembly 2 is clamped within the track frame 102. To increase the stability between the clamping assembly 2 and the track frame 102, the clamping block 201 is directly unfolded to fix the clamping assembly 2.
[0042] In the embodiment of the present disclosure, as Figure 4As shown in the figure, the fastening disc 301 of the fastening assembly 3 is arranged in a disc shape. A connector 202 is rotatably installed at the hole of the fastening disc 301, and a sliding track 302 is arranged at the outer end position of the hole of the fastening disc 301. The connector 202 with a set of clamping blocks 201 is slidably installed at the sliding track 302 of the fastening disc 301. After rotating the fastening disc 301, the arc-shaped sliding track 302 is used to drive and control the other set of clamping blocks 201. A cut surface is arranged at the position of the fastening disc 301 corresponding to the sliding track 302, and a positioning pin 303 is slidably installed at the cut surface position of the fastening disc 301. A knob is screwed onto the positioning pin 303. The positioning pin 303 is slidably installed at the cut surface position of the fastening disc 301, so that the positioning pin 303 can protrude and press against the connecting assembly 4 outside the fastening disc 301, realizing the circumferential fixation between the fastening assembly 3 and the connecting assembly 4. The knob screwed onto the positioning pin 303 can fix the sliding position of the positioning pin 303, so that the positioning pin 303 can stably press against the connecting assembly 4 at the outer end of the fastening assembly 3.
[0043] In the embodiment of the present disclosure, as Figure 6 shown, the connecting ring 401 of the connecting assembly 4 is arranged in a ring shape. Connecting columns 402 are arranged on the outer wall of the connecting ring 401. A connecting disc 403 is clamped and installed on the connecting columns 402 of the connecting ring 401. A connecting cylinder 404 is arranged at the outer end position of the connecting disc 403. The connecting cylinder 404 is arranged in a conical structure. The connecting ring 401 is arranged in a ring shape, enabling the connecting ring 401 to rotate conveniently on the fastening assembly 3. The connecting columns 402 of the connecting ring 401 can correspond to the connecting disc 403, realizing the stable installation between the connecting disc 403 and the connecting ring 401. The connecting cylinder 404 at the outer end of the connecting disc 403 is arranged in a conical shape, enabling the connecting cylinder 404 to stably connect components such as the telescopic assembly 5.
[0044] Embodiment 2, on the basis of Embodiment 1, as Figure 5 shown, the fixed cylinder 501 of the telescopic assembly 5 is fixed at the outer end of the connecting cylinder 404. The inner sleeve of the fixed cylinder 501 is arranged in a double-layer structure. The inner end of the fixed cylinder 501 is a sliding rod 502. Concave-convex annular grooves are arranged on the inner wall of the fixed cylinder 501. The end of the sliding rod 502 is an external connecting column 503. First, setting the external connecting column 503 at the end of the sliding rod 502 enables the external connecting column 503 to facilitate the installation of the fixing component 6. The concave-convex annular grooves arranged on the inner wall of the fixed cylinder 501 enable the sliding rod 502 and the fixed cylinder 501 to contact through the concave-convex annular grooves. After the sliding rod 502 extends and rotates, the inner end of the sliding rod 502 can press against the concave-convex annular grooves on the inner wall of the fixed cylinder 501 for fixation.
[0045] In the embodiment of the present disclosure, as Figure 2As shown, the fixing groove 601 of the fixing component 6 is set to be fixed at the outer end of the telescopic component 5. The fixing groove 601 corresponds to the edge of the aluminum outer plate 7. A fixing strip 602 is snap-fitted at the fixing groove 601. The fixing strip 602 is in direct contact with the aluminum outer plate 7 on the fixing groove 601. The fixing groove 601 provided at the end of the telescopic component 5 can correspond to the edge of the aluminum outer plate 7, enabling the aluminum outer plate 7 to be stably snap-fitted on the fixing groove 601. The fixing strip 602 has a fixing effect on the aluminum outer plate 7 on the fixing groove 601.
[0046] The working principle of this embodiment: During installation, after directly determining the position of the positioning plate 101, use bolts to directly fix the positioning plate 101. Subsequently, according to the position of the positioning plate 101 and the protruding positioning head 103, install the track frame 102 with the positioning head 103 of the positioning plate 101. At this time, also fix the outer end reinforcement head 104 of the track frame 102 to ensure the stability of the entire track component 1. At this time, install and fix the connection disk 403 with reference to the connection column 402 of the connection ring 401. Observe that the clamping component 2 on the fastening component 3 at the inner end of the connection component 4 is in a closed state. Place the two closed clamping blocks 201 at the track frame 102 and rotate the entire clamping component 2. At this time, rotate the fastening disk 301 so that the sliding track 302 of the fastening disk 301 drives one of the clamping blocks 201 to slide and expand, realizing the function of fixing the fastening component 3 on the track component 1 through the clamping component 2. After adjusting the position of the connection component 4, extend the positioning pin 303 of the fastening disk 301 and press it against the connection ring 401 for fixation. At this time, according to the position where the aluminum outer plate 7 needs to be installed, extend and rotate the telescopic component 5 on the connection component 4 for fixation, and finally fix the telescopic component 5 to the fixing component 6, and install the aluminum outer plate 7 on the fixing component 6.
[0047] In this article, the following points need attention:
[0048] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.
[0049] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0050] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A curtain wall aluminum veneer installation structure, comprising: A track assembly (1); the track assembly (1) is directly fixed on the outer wall of a building, characterized in that a clamping assembly (2) is clamped and installed on the track assembly (1), a fastening assembly (3) is arranged at the outer end of the clamping assembly (2), a connecting assembly (4) is rotatably installed at the outer end of the fastening assembly (3), the outer end of the connecting assembly (4) is connected and fixed to a telescopic assembly (5), a fixing assembly (6) is fixed at the end of the telescopic assembly (5), and an aluminum outer plate (7) is installed at the outer side of the fixing assembly (6).
2. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The positioning plate (101) of the track assembly (1) is fixed on the outer wall of the building; the track frame (102) of the positioning plate (101) is arranged as a narrow and long slot frame structure; positioning heads (103) are arranged on the track frame (102) and the positioning plate (101); the positioning plate (101) and the track frame (102) are mutually aligned and clamped and installed through the positioning heads (103); and a reinforcing head (104) is additionally installed on the outer side of the back side of the track frame (102).
3. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The clamping block (201) of the clamping assembly (2) is configured as a block structure. The clamping blocks (201) are configured as two groups of symmetrical structures. The two groups of clamping blocks (201) are connected via a connecting frame (203). A connecting head (202) is provided at the middle position of the outer end of each group of clamping blocks (201).
4. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The fastening disk (301) of the fastening assembly (3) is configured as a disk-shaped structure, a connecting head (202) is rotatably arranged at a hole of the fastening disk (301), a sliding path (302) is arranged at an outer end of the hole of the fastening disk (301), a section is arranged at a position of the fastening disk (301) corresponding to the sliding path (302), a positioning pin (303) is slidably installed at a position of the section of the fastening disk (301), and a knob is screwed onto the positioning pin (303).
5. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The connecting ring (401) of the connecting assembly (4) is configured as an annular structure, a connecting column (402) is provided on the outer wall of the connecting ring (401), a connecting disk (403) is clamped and installed on the connecting column (402) of the connecting ring (401), a connecting tube (404) is provided at the outer end of the connecting disk (403), and the connecting tube (404) is configured as a conical structure.
6. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The fixed tube (501) of the telescopic assembly (5) is fixed to the outer end of the connecting tube (404), the fixed tube (501) is sleeved inside to form a double-layer structure, the inner end of the fixed tube (501) is provided with a sliding rod (502), a concave-convex annular groove is provided on the inner wall of the fixed tube (501), and the end position of the sliding rod (502) is provided with an external connection column (503).
7. The curtain wall aluminum single panel installation structure according to claim 1, characterized in that: The fixing groove (601) of the fixing assembly (6) is arranged to be fixed on the outer end of the telescopic assembly (5), the fixing groove (601) corresponds to the edge of the aluminum outer plate (7), a fixing strip (602) is clamped and installed at the fixing groove (601), and the fixing strip (602) is directly in contact with the aluminum outer plate (7) on the fixing groove (601).