A type of high wind pressure resistant aluminum alloy door and window
By designing anti-direct-blow ventilation panel components and limiting rod structures on aluminum alloy doors and windows, the problems of window swaying under high wind pressure and insufficient protection during ventilation are solved, achieving the effects of high wind pressure resistance and stable ventilation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGXI BALDIKE HOME TECH CO LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-05-26
AI Technical Summary
Existing aluminum alloy doors and windows are prone to swaying in high wind pressure environments, cannot effectively limit the opening angle, pose safety hazards, affect lighting, and cannot provide effective protection during ventilation.
A high wind pressure resistant aluminum alloy door and window was designed, comprising a direct-blowing ventilation panel assembly, a window assembly, and a limiting rod. Through the limiting hinge and snap-on structure, the window is stably locked and direct-blowing ventilation is achieved, enhancing the overall structural strength.
The high wind pressure improves the stability and sealing of the window, prevents wind from affecting indoor objects, and effectively prevents direct wind during ventilation, thus enhancing safety and ease of use.
Smart Images

Figure CN224282443U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of door and window devices, specifically to a high wind pressure resistant aluminum alloy door and window. Background Technology
[0002] As a key component of buildings, doors and windows possess multiple important functions, including heat insulation, sound insulation, waterproofing, fireproofing, ventilation, and lighting. Among these, windows, as the crucial link between the interior and exterior, are paramount in terms of safety and stability. With increasing building height, the wind force that windows must withstand also increases significantly. Aluminum alloy doors and windows, due to their advantages of light weight, low cost, and high rigidity, are widely used in the construction industry, especially in the enclosure of balconies in home decoration. However, current common methods for improving the wind pressure resistance of windows, such as strengthening the connection between the window frame and the wall, and the strength of the window frame itself, have certain limitations and cannot directly reduce the force exerted by airflow on the window. While some existing technologies have improved wind pressure resistance to a certain extent, they still have problems such as the inability to restrict the opening angle of the window, causing it to sway easily in windy conditions, potentially damaging the window and posing significant safety hazards; or the need for manual operation of the windproof support structure, which is difficult to respond to in a timely manner during sudden strong winds, and the deployed support structure can affect indoor lighting. Therefore, developing an aluminum alloy door and window with higher wind pressure resistance and the ability to effectively overcome the above-mentioned defects is of great practical significance.
[0003] Application number CN202323609946.1 discloses a wind-pressure resistant door and window. This wind-pressure resistant door and window includes an outer frame, with glass installed on the inner wall of the outer frame. A cleaning rod is installed on one side of the glass, and a connecting block is installed on the outer side of the cleaning rod. A fixing rod is connected to one side of the outer frame. A limiting mechanism is located on the top of the connecting block, with a limiting rod slidably connected to the inner wall of the connecting block. A connecting plate is connected to the top of the limiting rod, and a spring is installed on the outer side of the limiting rod. A pull ring is connected to the top of the connecting plate, and a limiting hole is formed on the top of the connecting block. The limiting mechanism also includes a positioning rod fixed to the top of the connecting block. This wind-pressure resistant door and window solves the problem that some existing wind-pressure resistant doors and windows require the use of wrenches or other tools to loosen the fixing bolts during the disassembly of the cleaning rod. If a person accidentally slips, the wrench or fixing bolt may fall, potentially injuring people or damaging ground facilities. However, it has a drawback: when the device is in use, such as during ventilation or when the window needs to be opened, it cannot provide protection against strong winds. Utility Model Content
[0004] The purpose of this invention is to provide a high wind pressure resistant aluminum alloy door and window, which solves the problem that when the device is in use, it cannot provide protection against strong winds when ventilation is required or the window needs to be opened.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a high wind pressure resistant aluminum alloy door and window, including a mounting frame assembly. The rear two ends of the mounting frame assembly are rotatably mounted with anti-direct-blow ventilation plate assemblies, and a window assembly one is rotatably mounted on one front side of the mounting frame assembly, while a window assembly two is rotatably mounted on the other front side of the mounting frame assembly.
[0007] The anti-direct-blow ventilation panel assembly includes a wooden louver 1 and a wooden louver 2. One side of the wooden louver 1 is connected to one side of the rear wall of the mounting frame via a limiting hinge 1, and a limiting buckle is installed at the inner end of the wooden louver 1. The wooden louver 2 is rotatably installed on the other side of the rear wall of the mounting frame via a limiting hinge 2.
[0008] Furthermore, the mounting frame assembly includes a mounting frame, wherein a second mounting groove is provided on the front side inside the mounting frame, and a first mounting groove is provided on the rear side inside the mounting frame.
[0009] Furthermore, the window assembly includes an assembled window, one side of which is connected to the outer wall of the mounting frame via a rotating hinge, and an assembly buckle is installed in the middle of the other outer wall of the assembled window.
[0010] Furthermore, an assembly groove is provided in the middle of the top of the first assembly window, and a limiting side plate is installed at the end of the first assembly window. The tempered glass is installed inside the assembly groove for limiting.
[0011] Furthermore, the second window assembly includes a second assembled window. One end of the second assembled window is connected to and installed on the outer wall of the other side of the mounting frame via a second rotating hinge. An adjustment knob is installed in the middle of the outer wall of the other side of the second assembled window. At the same time, a pressing edge plate is installed at the inner end of the second assembled window. The pressing edge plate and the limiting edge plate limit each other. A limiting rod is installed on one side of the adjustment knob. The limiting rod is correspondingly limited and installed inside the assembly buckle.
[0012] Furthermore, the second limiter of the wooden strip louver is installed on the inner side of the limiter buckle plate.
[0013] This utility model has the following beneficial effects:
[0014] (1) The present invention provides a high wind pressure resistant aluminum alloy door and window. By installing a direct-blowing ventilation plate assembly on the device, when using this device, when ventilation is needed in daily life, the direct-blowing ventilation plate assembly can prevent the displacement of indoor objects caused by the large wind force entering during ventilation.
[0015] (2) The present invention provides a high wind pressure resistant aluminum alloy door and window. By installing an assembly buckle and a limiting rod on the device, the window component one and window component two can be easily locked together when using the device, thus avoiding the traditional and more complicated mechanical locking work.
[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the overall structure of a high wind pressure resistant aluminum alloy door and window according to the present invention;
[0019] Figure 2 This is a schematic diagram of a high wind pressure resistant aluminum alloy door and window assembly according to the present invention.
[0020] Figure 3 This is a schematic diagram of the structure of a high wind pressure resistant aluminum alloy door and window assembly according to this utility model;
[0021] Figure 4 This is a schematic diagram of the structure of a high wind pressure resistant aluminum alloy door and window anti-direct wind ventilation panel assembly according to the present invention;
[0022] The attached diagram lists the components represented by each number as follows:
[0023] In the diagram: 1. Mounting frame assembly; 2. Window assembly one; 3. Window assembly two; 4. Anti-direct-blow ventilation panel assembly; 101. Mounting frame; 102. Mounting groove one; 103. Mounting groove two; 201. Assemble window one; 202. Rotating hinge one; 203. Assemble tempered glass; 204. Assemble buckle; 301. Assemble window two; 302. Control knob; 303. Limiting rod; 304. Rotating hinge two; 305. Pressed side plate; 401. Wooden slat louver one; 402. Limiting buckle plate; 403. Limiting hinge one; 404. Wooden slat louver two; 405. Limiting hinge two; 2011. Assembly groove; 2012. Limiting side plate. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1-4 As shown, this utility model is a high wind pressure resistant aluminum alloy door and window, including a mounting frame assembly 1, with anti-direct-blow ventilation plate assemblies 4 rotatably mounted on both ends of the rear side of the mounting frame assembly 1, and a window assembly 1 2 rotatably mounted on one side of the front end of the mounting frame assembly 1, while a window assembly 2 3 rotatably mounted on the other side of the front end of the mounting frame assembly 1.
[0026] The anti-direct-blow ventilation panel assembly 4 includes a wooden slat louver 401 and a wooden slat louver 404. One side of the wooden slat louver 401 is connected to one side of the rear wall of the mounting frame 101 by a limiting hinge 403, and a limiting buckle 402 is installed on the inner end of the wooden slat louver 401. The wooden slat louver 404 is rotatably installed on the other side of the rear wall of the mounting frame 101 by a limiting hinge 405.
[0027] By installing the anti-direct-blowing ventilation panel assembly 4 on the device, when using this device, the anti-direct-blowing ventilation panel assembly 4 can prevent the displacement of indoor objects caused by strong winds during ventilation.
[0028] The mounting frame assembly 1 includes a mounting frame 101. The front side of the mounting frame 101 has a second mounting groove 103, and the rear side of the mounting frame 101 has a first mounting groove 102. The high wind pressure resistant aluminum alloy doors and windows are based on the mounting frame assembly 1. The second mounting groove 103 on the front side and the first mounting groove 102 on the rear side provide stable installation space for each component and enhance the overall structural strength.
[0029] Window assembly 2 includes an assembled window 201. One side of the assembled window 201 is connected to the outer wall of the mounting frame 101 via a rotating hinge 202, and an assembly buckle 204 is installed in the middle of the outer wall of the other side of the assembled window 201.
[0030] The top center of the assembled window 201 has an assembly groove 2011, and a limiting plate 2012 is installed at the end of the assembled window 201. The assembled tempered glass 203 is installed inside the assembly groove 2011. The assembled window 201 of window assembly 2 is connected to the mounting frame 101 through a rotating hinge 202, and can be rotated around the rotating hinge 202 to open and close. The assembly groove 2011 in the middle of the top of the assembled window 201 is used to install the assembled tempered glass 203, and the limiting plate 2012 at the end mutually limits the pressing plate 305 of the assembled window 301 in window assembly 3.
[0031] Window assembly 2 3 includes assembled window 2 301. One end of assembled window 2 301 is connected to the outer wall of the mounting frame 101 via a rotating hinge 2 304. An adjustment knob 302 is installed in the middle of the outer wall of the other side of assembled window 2 301. At the same time, a pressing edge plate 305 is installed at the inner end of assembled window 2 301. The pressing edge plate 305 and the limiting edge plate 2012 limit each other. A limiting rod 303 is installed on one side of the adjustment knob 302. The limiting rod 303 is correspondingly limited and installed inside the assembly buckle 204. Assembled window 2 301 is connected to the mounting frame 101 via rotating hinge 2 304. The limiting rod 303 on one side of the adjustment knob 302 can be correspondingly limited and installed inside the assembly buckle 204 of assembled window 2 201, further fixing window assembly 2 and window assembly 2 3, enhancing the sealing effect and wind pressure resistance.
[0032] Wooden slat louver 404 is limited and installed inside the limiting plate 402. Wooden slat louver 401 in the anti-direct-blow ventilation panel assembly 4 is installed on one side of the rear wall of the mounting frame 101 via limiting hinge 403. Wooden slat louver 404 is installed on the other side of the rear wall of the mounting frame 101 via limiting hinge 405, and is limited and installed inside the limiting plate 402 of wooden slat louver 401. When ventilation is required, wooden slat louver 401 and wooden slat louver 404 can be rotated to change the blade angle and achieve ventilation.
[0033] This high wind-pressure resistant aluminum alloy door and window is based on the mounting frame assembly 1. Its internal front mounting groove 103 and rear mounting groove 102 provide stable installation space for each component, enhancing the overall structural strength. Window assemblies 1 and 2, and the anti-direct-blow ventilation panel assembly 4 are connected to the mounting frame assembly 1 via a specific connection method. These components cooperate to disperse wind pressure and achieve high wind-pressure resistance. The assembled window 201 of window assembly 2 is connected to the mounting frame 101 via a rotating hinge 202, allowing it to rotate around the hinge for opening and closing. The assembly groove 2011 at the top center of assembled window 201 is used to install tempered glass 203. The limiting side plate 2012 at the end mutually limits the pressure side plate 305 of assembled window 301 in window assembly 3. When the window is closed, the two cooperate to achieve a tight seal, blocking wind pressure. Meanwhile, the second assembled window 301 is connected to the mounting frame 101 via the second rotating hinge 304. The limiting rod 303 on one side of the control knob 302 can be correspondingly limited and installed in the assembly buckle 204 of the first assembled window 201, further fixing the first window assembly 2 and the second window assembly 3, enhancing the sealing effect and wind pressure resistance. The first wooden louver 401 in the anti-direct-blow ventilation panel assembly 4 is installed on one side of the rear wall of the mounting frame 101 via the limiting hinge 403, and the second wooden louver 404 is installed on the other side of the rear wall of the mounting frame 101 via the limiting hinge 405. The second wooden louver 404 is limited and installed inside the limiting buckle plate 402 of the first wooden louver 401.When ventilation is needed, the wooden slat louvers 401 and 404 can be rotated to change the blade angle and achieve ventilation. Simultaneously, the blade structure can change the wind direction, preventing direct airflow into the room. Furthermore, under wind pressure, the design of the limiting hinges and limiting buckles ensures the stability of the ventilation panel assembly, providing wind protection. In the workflow, the mounting frame assembly 1 is first installed at the door / window installation position. The mounting grooves 102 and 103 inside the mounting frame 101 provide space for subsequent component installations. Positioning and supporting, connect the rotating hinge 202 of window assembly 2 to the outer wall of one side of the mounting frame 101, install the tempered glass 203 into the assembly groove 2011 of the assembled window 201, completing the installation of window assembly 2. In the same way, install window assembly 3 onto the outer wall of the other side of the mounting frame 101 via rotating hinge 304. Install the wooden louver 401 of the anti-direct-blow ventilation panel assembly 4 onto the rear wall of the mounting frame 101 via limiting hinge 403, and fix it in place. Mount the buckle plate 402, then install the second wooden louver 404 on the other side of the rear wall of the mounting frame 101 via the second limiting hinge 405, and limit it inside the limiting buckle plate 402. During use, if ventilation is required, rotate the first wooden louver 401 and the second wooden louver 404 of the anti-direct-blowing ventilation panel assembly 4 to adjust the blade angle, allowing air to enter the room through the gap between the blades, while avoiding direct wind. When opening the window, rotate the assembled window 201 of the window assembly 2 around the rotating hinge 202. To open the window, rotate the assembled window 2 301 of window assembly 2 3 around the rotating hinge 2 304. To close the window, rotate assembled window 1 201 and assembled window 2 301 back to the closed position, so that the limiting side plate 2012 and the pressing side plate 305 mutually limit each other. Then, by rotating the control knob 302, the limiting rod 303 is engaged in the assembly buckle 204, completing the window closure and achieving a seal. In windy weather, the installation frame assembly 1, window assembly 1 2, window assembly 2 3, and anti-direct-blow ventilation panel assembly 4 work together to resist wind pressure. When the window is closed, the cooperation between the limiting side plate 2012 and the pressing side plate 305, as well as the connection between the limiting rod 303 and the assembly buckle 204, enhances the window's sealing and stability. The limiting hinge and limiting buckle structure of the anti-direct-blow ventilation panel assembly 4 ensures the stability of the ventilation panel under wind pressure. All components work together to achieve high wind pressure resistance.
[0034] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A high wind pressure resistant aluminum alloy door and window, comprising a mounting frame assembly (1), characterized in that: The rear ends of the mounting frame assembly (1) are rotatably mounted with anti-direct-blow ventilation plate assemblies (4), and the front side of the mounting frame assembly (1) is rotatably mounted with window assembly one (2), while the other front side of the mounting frame assembly (1) is rotatably mounted with window assembly two (3). The anti-direct-blow ventilation panel assembly (4) includes a wooden louver one (401) and a wooden louver two (404). One side of the wooden louver one (401) is connected to one side of the rear wall of the mounting frame (101) by a limiting hinge one (403), and a limiting buckle plate (402) is installed on the inner end of the wooden louver one (401). The wooden louver two (404) is rotatably installed on the other side of the rear wall of the mounting frame (101) by a limiting hinge two (405).
2. The high wind pressure resistant aluminum alloy door and window according to claim 1, characterized in that: The mounting frame assembly (1) includes a mounting frame (101), with a mounting groove 2 (103) on the front side inside the mounting frame (101) and a mounting groove 1 (102) on the rear side inside the mounting frame (101).
3. The high wind pressure resistant aluminum alloy door and window according to claim 1, characterized in that: The window assembly (2) includes an assembled window (201), one side of which is connected to the outer wall of the mounting frame (101) via a rotating hinge (202), and an assembly buckle (204) is installed in the middle of the outer wall of the other side of the assembled window (201).
4. The high wind pressure resistant aluminum alloy door and window according to claim 3, characterized in that: The top center of the assembly window (201) is provided with an assembly groove (2011), and a limiting side plate (2012) is installed at the end of the assembly window (201). The assembly groove (2011) is internally limited and installed with tempered glass (203).
5. A high wind pressure resistant aluminum alloy door and window according to claim 1, characterized in that: The second window assembly (3) includes a second assembled window (301). One end of the second assembled window (301) is connected to the outer wall of the other side of the mounting frame (101) via a rotating hinge (304). An adjustment knob (302) is installed in the middle of the outer wall of the other side of the second assembled window (301). At the same time, a pressing edge plate (305) is installed at the inner end of the second assembled window (301). The pressing edge plate (305) and the limiting edge plate (2012) limit each other. A limiting rod (303) is installed on one side of the adjustment knob (302). The limiting rod (303) is correspondingly limited and installed inside the assembly buckle (204).
6. A high wind pressure resistant aluminum alloy door and window according to claim 1, characterized in that: The second wooden louver (404) is limited and installed on the inside of the limiting buckle (402).