Multifunctional aluminum alloy door and window

By designing a sliding hanging rod and knob-controlled displacement mechanism on aluminum alloy doors and windows, the problems of large spacing between curtains and doors and windows and aging of glass stickers are solved, and the curtains are easily installed and hidden, improving space utilization and convenience of use.

CN223135972UActive Publication Date: 2025-07-22ZHE JIANG SHUN YE KONG GU YOU XIAN GONG SI
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Patent Information

Application Number
CN202422399235.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

During the use of existing aluminum alloy doors and windows, the distance between the curtains and folding doors and windows is large, resulting in the curtains being unable to approach the edge of the room, insufficient space utilization, and glass stickers are prone to aging and inconvenient to replace during long-term use.

Method used

A multi-functional aluminum alloy door and window is designed, including the main frame and a slidable first hanging rod. The front and rear displacement of the hanging rod is controlled through the knob, combined with the limit edge, boost ring and elastic push member to realize the concealment and exposure of the hanging rod, and the installation and hiding of the curtains are achieved with the shielding plate.

Benefits of technology

It realizes the convenient installation and concealment of curtains on aluminum alloy doors and windows, keeps a small spacing and does not occupy indoor space, solves the interference problem between curtains and doors and windows, and avoids the aging and inconvenience of glass stickers.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223135972U_ABST
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Abstract

The utility model relates to a multifunctional aluminum alloy door and window which comprises a main frame body, a containing groove is formed in the front end of the main frame body, a first hanging rod is movably arranged in the containing groove, the first hanging rod is arranged on the main frame body in a front-back sliding mode, and a front-back displacement mechanism used for enabling the first hanging rod to slide out of or slide into the containing groove is arranged on the main frame body. According to the structure, the functionality of the aluminum alloy door and window is increased, a curtain can be directly installed on the aluminum alloy door and window, the problem of glass shielding of the aluminum alloy door and window can be solved, meanwhile, after the first hanging rod is directly installed on the aluminum alloy door and window, the curtain can be installed on the premise that the small distance is kept between the first hanging rod and the main frame body, and installation is convenient. And too much indoor space is not occupied.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum alloy doors and windows, in particular to a multifunctional aluminum alloy door and window. Background Art

[0002] Aluminum alloy doors and windows refer to doors and windows using aluminum alloy profiles as frames. At present, with the continuous improvement of people's living quality, aluminum alloy doors and windows can be used as exterior doors during decoration and are also often used for indoor area partitions.

[0003] Currently, aluminum alloy doors and windows often only have the function of isolating areas. When a resident wants to block the glass on the door and window, usually stickers are pasted on the glass or a curtain track is installed on the ceiling separately. However, for some aluminum alloy doors and windows in the form of folding doors, in order to ensure that the use of the curtain does not interfere with the folding door, the distance between the curtain track and the sliding rail of the folding door is relatively large. But in this way, the curtain cannot be close to the edge of the room, but is relatively close to the middle area of the room, which is not in line with the maximum utilization of the living space. And the glass stickers will age during long-term use, and the problem of glue residue on the glass stickers often takes a lot of time for people to deal with during the replacement process, so it is relatively inconvenient. Summary of the Utility Model

[0004] The utility model provides a multifunctional aluminum alloy door and window, which solves the above problems existing in the prior art during use.

[0005] The technical solution of the utility model is realized as follows: A multifunctional aluminum alloy door and window includes a main frame body. A receiving groove is formed at the front end of the main frame body. A first hanging rod is movably arranged in the receiving groove. The first hanging rod is slidably arranged on the main frame body in the front-back direction. A front-back displacement mechanism is arranged on the main frame body for sliding the first hanging rod out of or into the receiving groove.

[0006] The utility model is further arranged as: The front-back displacement mechanism includes a knob. The knob is rotatably arranged on the main frame body. The knob is linked with the first hanging rod. The knob changes the front-back position of the first hanging rod by rotation.

[0007] The present utility model is further configured as follows: The front-back displacement mechanism further includes a limiting edge and a boosting ring. The limiting edge is eccentrically arranged at the rear end of the knob. The boosting ring is coaxially arranged with the knob and its front end abuts against the rear end of the limiting edge. A first sliding groove for the boosting ring to slide back and forth is formed inside the main frame body. Two boosting grooves and two positioning grooves are formed at the front end of the boosting ring. Two boosting grooves and two positioning grooves are circumferentially arranged at intervals respectively. The boosting grooves and the positioning grooves are staggered and connected to each other. The boosting groove includes a spiral arc-shaped wall extending backward from the front end of the boosting ring and a vertical wall perpendicular to the front end face of the boosting ring. The rear end of the vertical wall intersects with the rear end of the spiral arc-shaped wall. The groove surface of the positioning groove is an arc surface with a middle recessed backward and symmetric arcs on both sides. An elastic pushing member for pushing the boosting ring forward is arranged at the rear end of the boosting ring. The boosting ring moves back and forth synchronously with the first hanging rod.

[0008] The present utility model is further configured as follows: The front-back displacement mechanism further includes a sliding plate sliding back and forth in the storage groove, and an extension rod coaxially arranged with the boosting ring and fixedly connected to the rear end of the boosting ring. A second sliding groove for the extension rod to slide back and forth is formed inside the main frame body. The extension rod is rotatably arranged in the second sliding groove. A connecting rod is fixedly connected between the extension rod and the sliding plate. A third sliding groove for the connecting rod to slide back and forth is formed inside the main frame body. The third sliding groove communicates the second sliding groove with the storage groove. The sliding plate is arranged at intervals behind the first hanging rod. The left and right ends of the first hanging rod are fixedly connected to the sliding plate.

[0009] The present utility model is further configured as follows: A communication groove is formed between the first sliding groove and the second sliding groove in the main frame body. The elastic pushing member abuts between the rear end of the boosting ring and the rear end of the communication groove.

[0010] The present utility model is further configured as follows: A shielding plate is arranged at intervals in front of the first hanging rod. The shielding plate is fixedly connected to the first hanging rod. The shielding plate coincides with the opening area of the storage groove.

[0011] The present utility model is further configured as follows: A second hanging rod is arranged at intervals at the front end of the shielding plate. The left and right ends of the second hanging rod are fixedly connected to the shielding plate.

[0012] In summary, the beneficial effects of the present utility model are as follows:

[0013] 1. This structure increases the functionality of the aluminum alloy doors and windows, enables the curtain to be directly installed on the aluminum alloy doors and windows, can solve the problem of glass occlusion of the aluminum alloy doors and windows. At the same time, after the first hanging rod is directly installed on the aluminum alloy doors and windows, a small distance can be maintained between the first hanging rod and the main frame body for the installation of the curtain, without occupying too much indoor space. Brief Description of the Drawings

[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0015] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;

[0016] Figure 2 It is a schematic diagram of the overall structure of the present invention;

[0017] Figure 3 It is Figure 2 a partial enlarged schematic diagram of part A in;

[0018] Figure 4 It is a schematic diagram of the overall structure of the front-back displacement mechanism in the present invention;

[0019] Figure 5 It is Figure 4 a partial enlarged schematic diagram of part B in;

[0020] Figure 6 It is Figure 4 a partial enlarged schematic diagram of part C in.

[0021] Reference numerals in the figure: 1 main frame body, 11 storage groove, 12 first sliding groove, 13 second sliding groove, 14 third sliding groove, 21 knob, 22 limiting edge, 23 boosting ring, 231 boosting groove, 232 positioning groove, 233 spiral arc wall, 234 vertical wall, 24 elastic pushing member, 25 extension rod, 26 connecting rod, 27 sliding plate, 28 first hanging rod, 29 shielding plate, 30 second hanging rod. Detailed Description of the Embodiments

[0022] The following will combine the attached Figures 1-6 drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0023] Embodiment:

[0024] As Figures 1 to 6As shown in the figure, the utility model discloses a multifunctional aluminum alloy door and window, which comprises a main frame body 1. A storage groove 11 is formed at the front end of the main frame body 1. A first hanging rod 28 is movably arranged in the storage groove 11. The first hanging rod 28 is slidably arranged on the main frame body 1 in the front-back direction. At the same time, a front-back displacement mechanism is arranged on the main frame body 1 for sliding the first hanging rod 28 out of or into the storage groove 11.

[0025] The front-back displacement mechanism comprises a knob 21. The knob 21 is rotatably arranged on the main frame body 1 and is located beside the storage groove 11. In this structure, the knob 21 is linked with the first hanging rod 28, and the knob 21 can change the front-back position of the first hanging rod 28 by rotation.

[0026] Furthermore:

[0027] The front-back displacement mechanism further comprises a limiting edge 22 and a boosting ring 23. Among them, the limiting edge 22 is eccentrically arranged at the rear end of the knob 21. The boosting ring 23 is coaxially arranged with the knob 21 and its front end abuts against the rear end of the limiting edge 22. In this structure, the boosting ring 23 is slidably arranged in the main frame body 1 in the front-back direction. And a first sliding groove 12 for the boosting ring 23 to slide back and forth is also formed inside the main frame body 1.

[0028] Two boosting grooves 231 and two positioning grooves 232 are formed at the front end of the boosting ring 23. Among them, two boosting grooves 231 and two positioning grooves 232 are both circumferentially arranged at intervals, as Figure 5 shown. The boosting grooves 231 and the positioning grooves 232 are arranged in a staggered manner and are connected to each other. The boosting groove 231 comprises a spiral arc wall 233 extending backward from the front end of the boosting ring 23 and a vertical wall 234 perpendicular to the front end face of the boosting ring 23. Among them, the rear end of the vertical wall 234 intersects with the rear end of the spiral arc wall 233, and the groove surface of the positioning groove 232 is an arc surface that is recessed backward in the middle and has symmetric arcs on both sides.

[0029] The boosting ring 23 moves back and forth synchronously with the first hanging rod 28. Specifically:

[0030] The front-back displacement mechanism further includes a sliding plate 27 that is slidably arranged in the storage groove 11 in the front-back direction, and an extension rod 25 that is coaxially arranged with the boosting ring 23 and fixedly connected to the rear end of the boosting ring 23. In this structure, a second sliding groove 13 for the extension rod 25 to slide back and forth is provided inside the main frame body 1, and the extension rod 25 is rotatably arranged in the second sliding groove 13; a connecting rod 26 is fixedly connected between the extension rod 25 and the sliding plate 27. Correspondingly, a third sliding groove 14 for the connecting rod 26 to slide back and forth is also provided inside the main frame body 1. In this structure, the third sliding groove 14 communicates with the second sliding groove 13 and the storage groove 11. Finally, the sliding plate 27 is arranged at the rear side of the first hanging rod 28 at intervals, but the left and right ends of the first hanging rod 28 are fixedly connected to the sliding plate 27.

[0031] An elastic pushing member 24 for pushing the boosting ring 23 forward is arranged at the rear end of the boosting ring 23. A communication groove 12 is provided in the main frame body 1 between the first sliding groove 12 and the second sliding groove 13, and the elastic pushing member 24 is abutted between the rear end of the boosting ring 23 and the rear end of the communication groove 12.

[0032] A shielding plate 29 is arranged at intervals in front of the first hanging rod 28. The shielding plate 29 is fixedly connected to the left and right ends of the first hanging rod 28. At the same time, the shielding plate 29 coincides with the opening area of the storage groove 11.

[0033] The working principle of the above structure is as follows: Whether the first hanging rod 28 extends out of the storage groove 11 can be achieved by rotating the knob 21. After the knob 21 rotates, the limiting edge 22 has two stopping positions. One is that after people release the knob 21, the limiting edge 22 stops in the boosting groove 231, and the elastic pushing member 24 pushes the boosting ring 23 forward, so that the groove surface of the boosting groove 231 presses on the limiting edge 22. Since the first hanging rod 28 and the boosting ring 23 move synchronously, the first hanging rod 28 extends out of the storage groove 11; the other is that the limiting edge 22 stops on the positioning groove 232. At this time, the elastic pushing member 24 is squeezed, and the first hanging rod 28 retracts into the storage groove 11. In this structure, when the aluminum alloy door and window needs to install curtains, the knob 21 can be rotated to push the first hanging rod 28 out of the storage groove 11. When the aluminum alloy door and window does not need to install curtains, continue to rotate the knob 21 in the original direction, and the limiting edge 22 can be switched from abutting against the boosting groove 231 to abutting against the positioning groove 232. At this time, the first hanging rod 28 retracts into the storage groove 11, and the shielding plate 29 will block the opening of the storage groove 11, playing a role in protecting the first hanging rod 28 and making the surface of the aluminum alloy door and window flat.

[0034] A second hanging rod 30 is arranged at intervals at the front end of the shielding plate 29. The left and right ends of the second hanging rod 30 are fixedly connected to the shielding plate 29.

[0035] This structure enables the present utility model to be selectable between installing single-layer or double-layer curtains. When installing double-layer curtains, normally rotate the knob 21 to push the first hanging rod 28 out of the storage groove 11; when only installing single-layer curtains, it is not necessary to rotate the knob 21, and the curtains can be directly installed on the second hanging rod 30.

[0036] Meanwhile, it should be pointed out that the terms used in the present utility model, such as "front", "rear", "vertical", "horizontal", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on the protection scope of the present utility model.

[0037] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A multi-functional aluminum alloy door and window, comprising a main frame body (1), characterized in that: A receiving groove (11) is formed at the front end of the main housing (1). A first hanging rod (28) is movably arranged in the receiving groove (11). The first hanging rod (28) is slidably arranged on the main housing (1) in the front-back direction. A front-back displacement mechanism is arranged on the main housing (1) for sliding the first hanging rod (28) out of or into the receiving groove (11).

2. The multifunctional aluminum alloy door and window according to claim 1, characterized in that: The front-back displacement mechanism includes a knob (21). The knob (21) is rotatably arranged on the main housing (1). The knob (21) is linked with the first hanging rod (28). The knob (21) changes the front-back position of the first hanging rod (28) by rotation.

3. A multifunctional aluminum alloy door and window according to claim 2, characterized in that: The front-back displacement mechanism further includes a limiting edge (22) and a boosting ring (23). The limiting edge (22) is eccentrically arranged at the rear end of the knob (21). The boosting ring (23) is coaxially arranged with the knob (21) and its front end abuts against the rear end of the limiting edge (22). A first sliding groove (12) for the boosting ring (23) to slide back and forth is formed inside the main housing (1). Two boosting grooves (231) and two positioning grooves (232) are formed at the front end of the boosting ring (23). The two boosting grooves (231) and the two positioning grooves (232) are both circumferentially spaced apart. The boosting grooves (231) and the positioning grooves (232) are staggered and connected to each other. The boosting groove (231) includes a spiral arc wall (233) extending backward from the front end of the boosting ring (23) and a vertical wall (234) perpendicular to the front end face of the boosting ring (23). The rear end of the vertical wall (234) intersects with the rear end of the spiral arc wall (233). The groove surface of the positioning groove (232) is an arc surface with a middle part recessed backward and symmetrical arc degrees on both sides. An elastic pushing member (24) for pushing the boosting ring (23) forward is arranged at the rear end of the boosting ring (23). The boosting ring (23) moves back and forth synchronously with the first hanging rod (28).

4. The multifunctional aluminum alloy door and window according to claim 3, characterized in that: The front-back displacement mechanism further includes a sliding plate (27) slidably arranged in the receiving groove (11) in the front-back direction, and an extension rod (25) which is coaxially arranged with the boosting ring (23) and fixedly connected to the rear end of the boosting ring (23). A second sliding groove (13) for the extension rod (25) to slide back and forth is formed inside the main housing (1). The extension rod (25) is rotatably arranged in the second sliding groove (13). A connecting rod (26) is fixedly connected between the extension rod (25) and the sliding plate (27). A third sliding groove (14) for the connecting rod (26) to slide back and forth is formed inside the main housing (1). The third sliding groove (14) communicates the second sliding groove (13) with the receiving groove (11). The sliding plate (27) is spaced behind the first hanging rod (28). The left and right ends of the first hanging rod (28) are fixedly connected to the sliding plate (27).

5. A multifunctional aluminum alloy door and window according to claim 4, characterized in that: A communication groove (12) is provided between the first sliding groove (12) and the second sliding groove (13) of the main housing (1), and the elastic pushing member (24) is abutted and arranged between the rear end of the boosting ring (23) and the rear end of the communication groove (12).

6. A multifunctional aluminum alloy door and window according to claim 5, characterized in that: A shielding plate (29) is arranged at intervals in front of the first hanging rod (28). The shielding plate (29) is fixedly connected to the first hanging rod (28), and the shielding plate (29) coincides with the opening area of the storage groove (11).

7. A multifunctional aluminum alloy door and window according to claim 6, characterized in that: Second hanging rods (30) are arranged at intervals at the front end of the shielding plate (29), and the left and right ends of the second hanging rods (30) are fixedly connected to the shielding plate (29).