Light-shading and cooling metal building window structure

Through the coordination of misaligned installation and driving components, the stable lifting of the metal sun visor and the flexible opening and closing of the windows are achieved, which solves the problem of moving the sun visor in the existing window structure, and improves the convenience of the window and the shading effect.

CN223164430UActive Publication Date: 2025-07-29NINGBO CHUANGLIAN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422123868.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-29
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing building window structure needs to move the sunshade structure when opening and closing the window, resulting in poor convenience and flexibility of use, affecting the sunshade effect and practicality.

Method used

The misaligned installation method is adopted, and the connecting rod is driven to slide in the slide chute, and the window is moved simultaneously, and the driving component is used to drive the screw to rotate, so as to achieve lifting and stable adjustment of the metal sun visor, combining the guide rails and positioning components to ensure the stability and position fixation of the sun visor.

Benefits of technology

It realizes flexible opening and closing of windows without moving the sun visor, improves the convenience of window usage and sunshade effect, and enhances the practical value of window structure.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223164430U_ABST
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Abstract

The utility model relates to the technical field of metal building window structures, in particular to a shading and cooling metal building window structure which comprises a building wall, a window body, a first containing groove, a window, a connecting rod, a handle, a second containing groove, a lead screw, a guide rail, a metal sun shield and a driving assembly. A window body is formed in one side of the building wall, a first storage groove is formed in one side of the building wall, a window is arranged on the inner side of the first storage groove, a connecting rod is arranged on one side of the window, a handle is arranged at one end of the connecting rod, a second storage groove is further formed in the inner side of the building wall, and a lead screw is arranged on the inner side of the second storage groove. A driving assembly is arranged on the outer side of the lead screw, a guide rail is further arranged on the inner side of the second storage groove, and a metal sun shield is arranged on one side of the guide rail. By means of the staggered installation mode, the sunshade height can be flexibly adjusted, meanwhile, opening and closing of the window can be conducted without moving the sunshade plate, the using convenience of the window is improved, and the practical value of the window structure is enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of building window structures, in particular to a light-shielding and cooling metal building window structure. Background Art

[0002] Metal materials are often used in modern building window structures. This design of the building window structure aims to reduce the heat absorption inside the building by using metal materials, and at the same time provide a light-shielding effect to maintain the comfort of the indoor environment.

[0003] The current sunshade structure of the building window structure is relatively simple. When opening and closing the window, it is necessary to move the sunshade structure, resulting in inconvenient opening and closing of the window, poor usability and flexibility, and affecting the window sunshade effect and practicality.

[0004] Therefore, aiming at the situation that the existing building window structure needs to move the sunshade structure when opening and closing the window, which is inconvenient to use, a light-shielding and cooling metal building window structure can be designed. By means of dislocation installation, the sunshade height can be flexibly adjusted, and at the same time, the window can be opened and closed without moving the sunshade panel, improving the usability of the window and enhancing the practical value of the window structure. Summary of the Utility Model

[0005] In order to overcome the problem that most building window structures often need to move the sunshade structure when opening and closing the window, resulting in inconvenient opening and closing of the window, poor usability and flexibility, and affecting the window sunshade effect and practicality.

[0006] The technical solution of the utility model is: a light-shielding and cooling metal building window structure, including a building wall, a window main body, a first storage groove, a window, a connecting rod, a handle, a first sliding groove, a moving component, a second storage groove, a lead screw, a guide rail, a metal sunshade panel, a driving component and a positioning component; a window main body is opened on one side of the building wall, a first storage groove is opened on one side of the building wall, a window is arranged inside the first storage groove, a connecting rod is arranged on one side of the window, a moving component is arranged on one side of the connecting rod, a handle is arranged at one end of the connecting rod, a first sliding groove is opened inside the building wall, a second storage groove is also opened inside the building wall, a lead screw is arranged inside the second storage groove, a driving component is arranged on the outer side of the lead screw, a guide rail is also arranged inside the second storage groove, a metal sunshade panel is arranged on one side of the guide rail, and a positioning component is arranged on one side of the metal sunshade panel.

[0007] Preferably, by setting the building wall to clarify the position of the window body, the handle is used to drive the connecting rod to slide in the first chute, driving the moving component to move synchronously, so as to flexibly move the window, move the window out of the first storage groove, flexibly open and close the window body, drive the screw rod to rotate through the driving component, rotate the screw rod to drive the metal sunshade to lift and lower, ensure the stable lifting and lowering of the metal sunshade through the guide rail, move the metal sunshade out of the second storage groove for shading and cooling operations, clarify the closing position of the metal sunshade through the positioning component, so as to realize the flexible adjustment of the sunshade height, improve the convenience of window use, and enhance the practical value of the window structure.

[0008] Preferably, two groups of first storage grooves are provided, and the first storage grooves are symmetrically arranged on both sides of the window body. The handle is arranged on the outer side of the building wall. The first chute is connected to the first storage groove in a penetrating manner, and the connecting rod slides in the first chute; the window is stored through the first storage groove, the handle is controlled to drive the connecting rod to move, so that the connecting rod slides along the first chute, and the window is fixedly connected through the connecting rod, so as to realize the effect of flexibly opening and closing the window.

[0009] Preferably, the moving component includes a second chute, a slider and a third chute; a second chute is also provided on the inner side of the building wall, a slider is arranged on the outer side of the connecting rod, and a third chute is arranged on one side of the window body; move the connecting rod, thereby driving the slider to slide in the second chute. Two groups of third chutes are provided, and the moving path of the window is clarified by using the third chute.

[0010] Preferably, the second chute is connected to the first chute in a penetrating manner, the slider slides in the second chute, and the bottom surface of the window fits and slides in the third chute; move the handle along the first chute, use the slider to fit and slide in the second chute, and the bottom surface of the window slides along the third chute, so as to realize the effect of stably opening and closing and moving the window through the handle.

[0011] Preferably, two groups of guide rails are provided, and the guide rails are symmetrically arranged on both sides of the screw rod. One end of the guide rail is arranged at the top inside the second storage groove, and the other end of the guide rail is arranged at the bottom surface of the window body; the stable lifting and lowering of the metal sunshade is ensured through the guide rail, and the metal sunshade is stored by using the second storage groove.

[0012] Preferably, the driving component includes a servo motor, a connecting plate and a fixing block; a servo motor is arranged on the bottom surface of the top of the window body, the output end of the servo motor is connected to the screw rod, a connecting plate is arranged on the outer side of the screw rod, a metal sunshade is arranged on one side of the connecting plate, a fixing block is arranged on the inner side of the metal sunshade, the fixing block is arranged at both ends of the connecting plate, and the fixing block is slidably connected to the guide rail; the screw rod is driven to rotate through the servo motor, the rotating screw rod drives the connecting plate to lift and lower, the metal sunshade is fixedly connected by using the connecting plate, and the fixing block slides along the guide rail, so as to ensure the stable lifting and lowering of the metal sunshade.

[0013] Preferably, the positioning component includes a card slot and a card strip; a card slot is formed on the inner bottom surface of the window body, a card strip is arranged on the bottom surface of the metal sunshade, and the card strip and the card slot are mutually engaged; the engagement position of the card strip is determined by the card slot, and the card strip is inserted into the card slot, so as to ensure the stable closing of the metal sunshade.

[0014] The beneficial effects of the utility model are as follows:

[0015] 1. Compared with the traditional building window structure, most of which use sunshades for shading and temperature reduction operations, the sunshade structure is relatively simple. When opening and closing the window, it is necessary to move the sunshade structure, resulting in inconvenient opening and closing of the window, poor usability and flexibility. By means of staggered installation, the shading height can be flexibly adjusted. At the same time, the window can be opened and closed without moving the sunshade, improving the usability of the window and enhancing the practical value of the window structure;

[0016] 2. When lifting and lowering the metal sunshade, rotate the screw rod to drive the metal sunshade to lift and lower, so that the metal sunshade moves out of the second storage groove, and the metal sunshade is adjusted to a suitable height to flexibly block the sunlight of the window body. When opening and closing the window, pull the handle on one side of the building wall to flexibly move the window, so as to solve the problem that most building window structures need to move the sunshade structure when opening and closing the window, which is inconvenient to use, and enhance the flexibility of the window structure;

[0017] 3. Use the guide rail to ensure the stable lifting and lowering of the metal sunshade, connect and fix the window through the connecting rod, pull the handle to drive the position movement of the connecting rod, slide the connecting rod in the first chute, so as to stably move the window, and flexibly move the window in and out of the first storage groove. Description of the drawings

[0018] Figure 1 Shown is a three-dimensional structural schematic diagram of a light-shielding and temperature-reducing metal building window structure of the utility model;

[0019] Figure 2 Shown is a three-dimensional sectional structural schematic diagram of the window body of a light-shielding and temperature-reducing metal building window structure of the utility model;

[0020] Figure 3 Shown is a three-dimensional structural schematic diagram of the window of a light-shielding and temperature-reducing metal building window structure of the utility model;

[0021] Figure 4 Shown is a three-dimensional structural schematic diagram of the metal sunshade of a light-shielding and temperature-reducing metal building window structure of the utility model;

[0022] Figure 5 Shown is a three-dimensional structural schematic diagram of the building wall of a light-shielding and temperature-reducing metal building window structure of the utility model.

[0023] Description of reference numerals: 1, building wall; 2, window main body; 3, first storage groove; 301, window; 302, connecting rod; 303, handle; 304, first sliding groove; 401, second sliding groove; 402, slider; 403, third sliding groove; 501, second storage groove; 502, lead screw; 503, guide rail; 6, metal sunshade; 601, servo motor; 602, connecting plate; 603, fixing block; 701, card slot; 702, card strip. Detailed implementation manner

[0024] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0025] Please refer to Figures 1 - 5 , the present utility model provides an embodiment: a light-shielding and temperature-reducing metal building window structure, including a building wall 1, a window main body 2, a first storage groove 3, a window 301, a connecting rod 302, a handle 303, a first sliding groove 304, a moving component, a second storage groove 501, a lead screw 502, a guide rail 503, a metal sunshade 6, a driving component and a positioning component; a window main body 2 is provided on one side of the building wall 1, a first storage groove 3 is provided on one side of the building wall 1, a window 301 is arranged inside the first storage groove 3, a connecting rod 302 is arranged on one side of the window 301, a moving component is arranged on one side of the connecting rod 302, a handle 303 is arranged at one end of the connecting rod 302, a first sliding groove 304 is arranged inside the building wall 1, a second storage groove 501 is further arranged inside the building wall 1, a lead screw 502 is arranged inside the second storage groove 501, a driving component is arranged on the outer side of the lead screw 502, a guide rail 503 is further arranged inside the second storage groove 501, a metal sunshade 6 is arranged on one side of the guide rail 503, and a positioning component is arranged on one side of the metal sunshade 6.

[0026] Please refer to Figures 1 - 5, in this embodiment, two sets of first storage grooves 3 are provided. The first storage grooves 3 are symmetrically provided on both sides of the window main body 2. The handle 303 is arranged on the outer side of the building wall 1. The first sliding groove 304 is connected to the first storage groove 3 in a penetrating manner. The connecting rod 302 slides in the first sliding groove 304. The window 301 is stored in the first storage groove 3. By controlling the handle 303 to drive the connecting rod 302 to move, the connecting rod 302 slides along the first sliding groove 304. The window 301 is connected and fixed by the connecting rod 302, so as to achieve the effect of flexibly opening and closing the window 301; The moving component includes a second sliding groove 401, a slider 402 and a third sliding groove 403; A second sliding groove 401 is further provided on the inner side of the building wall 1. A slider 402 is arranged on the outer side of the connecting rod 302. A third sliding groove 403 is provided on one side of the window main body 2. By moving the connecting rod 302, the slider 402 is driven to slide in the second sliding groove 401, and the moving path of the window 301 is defined by the third sliding groove 403, so as to achieve the effect of stably opening and closing the moving window 301 by the handle 303; The second sliding groove 401 is connected to the first sliding groove 304 in a penetrating manner. The slider 402 slides in the second sliding groove 401. The bottom surface of the window 301 fits and slides in the third sliding groove 403. By moving the handle 303 along the first sliding groove 304, and using the slider 402 to fit and slide in the second sliding groove 401, two sets of third sliding grooves 403 are provided, and the bottom surface of the window 301 slides along the third sliding groove 403, so as to achieve the effect of stably opening and closing the moving window 301 by the handle 303;

[0027] There are two sets of guide rails 503, which are symmetrically arranged on both sides of the lead screw 502. One end of the guide rail 503 is arranged at the top inside the second storage groove 501, and the other end of the guide rail 503 is arranged at the bottom surface of the window body 2. The stable lifting of the metal sunshade 6 is ensured by the guide rail 503, and the metal sunshade 6 is stored in the second storage groove 501; The driving assembly includes a servo motor 601, a connecting plate 602 and a fixing block 603; A servo motor 601 is arranged on the bottom surface of the top of the window body 2. The output end of the servo motor 601 is connected to the lead screw 502. A connecting plate 602 is arranged on the outer side of the lead screw 502. A metal sunshade 6 is arranged on one side of the connecting plate 602. A fixing block 603 is arranged on the inner side of the metal sunshade 6. The fixing block 603 is arranged at both ends of the connecting plate 602. The fixing block 603 is slidably connected to the guide rail 503. The lead screw 502 is driven to rotate by the servo motor 601. The rotating lead screw 502 drives the connecting plate 602 to lift. The metal sunshade 6 is connected and fixed by the connecting plate 602. The fixing block 603 slides along the guide rail 503, so as to ensure the stable lifting of the metal sunshade 6; The positioning assembly includes a card slot 701 and a card strip 702; A card slot 701 is opened on the bottom surface inside the window body 2. A card strip 702 is arranged on the bottom surface of the metal sunshade 6. The card strip 702 is fitted with the card slot 701. The fitting position of the card strip 702 is determined by the card slot 701. The card strip 702 is embedded in the card slot 701, so as to ensure the stable closing of the metal sunshade 6.

[0028] When lifting the metal sunshade 6, the lead screw 502 is driven to rotate by the servo motor 601. The rotating lead screw 502 drives the connecting plate 602 to lift, so that the fixing block 603 slides along the guide rail 503, thereby moving the metal sunshade 6 out of the second storage groove 501 and adjusting the metal sunshade 6 to a suitable height. When the window body 2 is completely closed, the card strip 702 is embedded in the card slot 701 to completely close the window body 2 with the metal sunshade 6;

[0029] When opening and closing the window 301, pull the handle 303 on one side of the building wall 1 to drive the connecting rod 302 to slide in the first sliding groove 304, so that the slider 402 on the connecting rod 302 slides in the second sliding groove 401, thereby driving the window 301 to move along the third sliding groove 403 and flexibly moving the window 301 out of the first storage groove 3.

[0030] Through the above steps, the position of the window main body 2 is determined by setting the building wall 1. The handle 303 is used to drive the connecting rod 302 to slide in the first chute 304, driving the synchronous movement of the moving component, so as to flexibly move the window 301, move the window 301 out of the first storage groove 3, and flexibly open and close the window main body 2. The driving component drives the screw rod 502 to rotate, and the rotation of the screw rod 502 drives the metal sunshade 6 to lift and lower. The guide rail 503 ensures the stable lifting and lowering of the metal sunshade 6, moves the metal sunshade 6 out of the second storage groove 501 for shading and cooling operations, and determines the closing position of the metal sunshade 6 through the positioning component.

[0031] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. A light-shielding and temperature-reducing metal building window structure, comprising a building wall (1) and a window main body (2); characterized in that: It further includes a first storage groove (3), a window (301), a connecting rod (302), a handle (303), a first sliding groove (304), a moving component, a second storage groove (501), a lead screw (502), a guide rail (503), a metal sunshade (6), a driving component and a positioning component; a window main body (2) is provided on one side of a building wall (1), a first storage groove (3) is provided on one side of the building wall (1), a window (301) is arranged inside the first storage groove (3), a connecting rod (302) is arranged on one side of the window (301), a moving component is arranged on one side of the connecting rod (302), a handle (303) is arranged at one end of the connecting rod (302), a first sliding groove (304) is provided inside the building wall (1), a second storage groove (501) is further provided inside the building wall (1), a lead screw (502) is arranged inside the second storage groove (501), a driving component is arranged on the outer side of the lead screw (502), a guide rail (503) is further provided inside the second storage groove (501), a metal sunshade (6) is arranged on one side of the guide rail (503), and a positioning component is arranged on one side of the metal sunshade (6).

2. The light-shielding and cooling metal building window structure according to claim 1, wherein: Two groups of first storage grooves (3) are provided, and the first storage grooves (3) are symmetrically provided on both sides of the window main body (2). The handle (303) is arranged on the outer side of the building wall (1). The first sliding groove (304) is connected to the first storage groove (3) in a penetrating manner, and the connecting rod (302) slides in the first sliding groove (304).

3. The light-shielding and temperature-reducing metal building window structure according to claim 2, wherein: The moving component includes a second sliding groove (401), a slider (402) and a third sliding groove (403); a second sliding groove (401) is further provided inside the building wall (1), a slider (402) is arranged on the outer side of the connecting rod (302), and a third sliding groove (403) is provided on one side of the window main body (2).

4. A light-shielding and cooling metal building window structure according to claim 3, characterized in that: The second sliding groove (401) is connected to the first sliding groove (304) in a penetrating manner. The slider (402) slides in the second sliding groove (401). Two groups of third sliding grooves (403) are provided, and the bottom surface of the window (301) fits and slides in the third sliding groove (403).

5. A light-shielding and cooling metal building window structure according to claim 3, characterized in that: Two groups of guide rails (503) are provided, and the guide rails (503) are symmetrically arranged on both sides of the lead screw (502). One end of the guide rail (503) is arranged at the top inside the second storage groove (501), and the other end of the guide rail (503) is arranged at the bottom surface of the window main body (2).

6. The light-shielding and heat-reducing metal building window structure according to claim 5, wherein: The driving component includes a servo motor (601), a connecting plate (602) and a fixing block (603); a servo motor (601) is arranged on the bottom surface of the top of the window main body (2). The output end of the servo motor (601) is connected to the lead screw (502). A connecting plate (602) is arranged on the outer side of the lead screw (502). A metal sunshade (6) is arranged on one side of the connecting plate (602). A fixing block (603) is arranged inside the metal sunshade (6). The fixing blocks (603) are arranged at both ends of the connecting plate (602), and the fixing blocks (603) are slidably connected to the guide rails (503).

7. A light-shielding and temperature-reducing metal building window structure according to claim 6, characterized in that: The positioning component includes a clamping groove (701) and a clamping strip (702); a clamping groove (701) is formed on the inner bottom surface of the window body (2), a clamping strip (702) is arranged on the bottom surface of the metal sunshade (6), and the clamping strip (702) is mutually engaged with the clamping groove (701).