Novel temperature locking door and window

By integrating an automated sunshade system and efficient thermal insulation design in doors and windows, the problem of insufficient sunshade and thermal insulation is solved, intelligent adjustment and energy-saving effects are achieved, and the comfort and practicality of the living environment are improved.

CN223119817UActive Publication Date: 2025-07-18GUIZHOU BAIZI DOOR & WINDOW TECH CO LTD
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Patent Information

Application Number
CN202422258935.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-18
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Existing doors and windows have shortcomings in sunshade and insulation, especially when direct sunlight is exposed to direct sunlight, which requires manual operation of the curtains, which leads to an increase in the indoor temperature and is poor in practicality.

Method used

A new type of temperature locking doors and windows were designed, integrating automated sunshade function, and real-time monitoring of light intensity through a built-in solar radiometer, controlling the opening and closing of lifting curtains, combining broken bridge aluminum and inert gas-filled double-layer glass to build a thermal insulation barrier to achieve intelligent adjustment.

Benefits of technology

It significantly improves the comfort and energy efficiency of the living environment. Automatic curtain adjustment does not require manual operation, reduces indoor temperatures and extends product life, and is suitable for a variety of climatic conditions.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223119817U_ABST
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Abstract

The utility model relates to the technical field of door and window accessory devices, in particular to a novel temperature locking door and window which can automatically detect sunlight when sunlight is directly irradiated in summer and open and close a curtain according to detected data so as to prevent the indoor temperature from rising due to the sunlight directly irradiated and prevent the indoor temperature from being damaged. Therefore, the practicability is enhanced. Comprising a window frame, a glass fixing frame, a supporting frame, double-layer glass and protective glass, the inner end of the window frame is connected with the glass fixing frame in a sleeved mode, a cavity is formed in the glass fixing frame, a cover plate assembly is arranged at the right end of the glass fixing frame, the supporting frame is arranged at the front end of the glass fixing frame and connected with the double-layer glass, and inert gas is arranged in the double-layer glass. The double-layer glass box and the front end of the glass fixing frame are fixed through glass cement, and a lifting curtain assembly is arranged in the cavity.
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Description

Technical Field

[0001] The utility model relates to the technical field of window and door accessory devices, in particular to a novel temperature-locking window and door. Background Art

[0002] Currently, the main materials for doors and windows in the market are wood, aluminum alloy, PVC, etc. Although these materials have their own advantages, their performance in heat insulation varies. For example, metal materials have high thermal conductivity, resulting in easy heat loss; while PVC has certain heat insulation effects, but it lacks in strength and durability. In addition, although the existing double-layer or triple-layer glass can provide certain heat insulation effects, in terms of sunshading, it still requires manual methods by people to block through curtains, and if the sun shines directly, it will also increase the indoor temperature, thus having poor practicability. Summary of the Utility Model

[0003] To solve the above technical problems, the utility model provides a novel temperature-locking window and door that can automatically detect sunlight when the sun shines directly in summer, and open and close the curtain according to the detected data, so as to prevent the indoor temperature from rising due to direct sunlight, thereby enhancing practicability.

[0004] A novel temperature-locking window and door of the utility model includes a window frame, which includes a glass fixing frame, a support frame, double-layer glass, and protective glass. The inner end of the window frame is sleeved and connected with the glass fixing frame. A chamber is provided in the glass fixing frame. A cover plate assembly is provided at the right end of the glass fixing frame. A support frame is provided at the front end of the glass fixing frame. The support frame is connected with the double-layer glass. Inert gas is provided in the double-layer glass. The front ends of the double-layer glass box and the glass fixing frame are fixed by glass glue. A lifting curtain assembly is provided in the chamber. The rear end of the chamber is connected with the protective glass. A sunlight detection assembly is provided at the bottom end of the chamber.

[0005] Preferably, the lifting curtain assembly includes a small motor, a first gear, and a rotating rod. The top end of the chamber is connected with the small motor. The output end of the small motor is connected with the first gear. The right end of the rotating rod is connected with the chamber by a bearing. A second gear is provided on the rotating rod. The second gear meshes with the tooth surface of the first gear. A light-shielding curtain is provided on the rotating rod. Sliding guiding assemblies are respectively provided at the left end and the right end of the light-shielding curtain.

[0006] Preferably, the cover plate assembly includes a cover plate and four groups of screws. A hidden groove is provided at the left end of the glass fixing frame. The hidden groove is communicated with the chamber. Four groups of installation threaded holes are provided at the left end of the hidden groove. Four groups of installation through holes are provided at the right end of the cover plate. The four groups of screws are respectively threadedly connected with the installation threaded holes through the installation through holes. A rotating hole is provided at the right end of the cover plate. The rotating hole is sleeved and clamped with the rotating rod.

[0007] Preferably, the sliding guide assembly includes two sets of clamping sliders and a support rod. Guide chutes are respectively arranged at the right ends of the chamber and the cover plate. The two guide chutes are respectively slidably clamped with the clamping sliders. The bottom end of the light-shielding curtain is connected to the support rod, and the left and right ends of the support rod are respectively connected to the clamping sliders.

[0008] Preferably, the sunlight detection assembly includes a pyranometer. The bottom end of the chamber is connected to the pyranometer, and the detection head of the pyranometer is arranged at the rear end of the glass fixing frame.

[0009] Preferably, a sealing clamping frame and a first sealing strip are arranged at the rear end of the window frame. A sealing plate is arranged on the outer wall of the glass fixing frame, and a second sealing strip is arranged at the rear end of the sealing plate.

[0010] Preferably, both the window frame and the glass fixing frame are made of broken bridge aluminum.

[0011] Preferably, nano-scale heat insulation coatings are applied on the surfaces of the window frame, the glass fixing frame, the protective glass and the double-layer glass.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The automatic sunshade and temperature-locking doors and windows designed by the present utility model integrate a number of innovative technologies, significantly improving the comfort of the living environment and energy efficiency. Its automatic curtain adjustment function can real-time monitor the external light intensity through the built-in pyranometer, and intelligently adjust the opening and closing state of the curtain without manual operation, which is both convenient and energy-saving. The door and window frame is made of broken bridge aluminum, combined with double-layer glass filled with inert gas, constructing an excellent heat insulation and heat preservation barrier, greatly reducing the influence of the external environment on the indoor temperature and effectively reducing energy consumption. In addition, the doors and windows take into account strength, durability and aesthetic appearance, are suitable for a variety of climate conditions, extend the product life, and prevent the indoor temperature from rising due to direct sunlight, thus enhancing the practicability. Description of the Drawings

[0013] Figure 1 is a schematic diagram of the connection structure of the present utility model;

[0014] Figure 2 is a schematic diagram of the structure of the cover plate and the glass fixing frame of the present utility model;

[0015] Figure 3 is a schematic diagram of the meshing structure of the tooth surfaces of the first gear and the second gear of the present utility model;

[0016] Figure 4 is a schematic diagram of the connection structure of the pyranometer and the chamber of the present utility model;

[0017] Reference numerals in the drawings: 1, window frame; 2, glass fixing frame; 3, chamber; 4, support frame; 5, double glazing; 6, protective glass; 7, small motor; 8, first gear; 9, rotating rod; 10, second gear; 11, light-shielding curtain; 12, cover plate; 13, screw; 14, clamping slider; 15, support rod; 16, pyranometer; 17, sealing and clamping frame; 18, first sealing strip; 19, sealing plate; 20, second sealing strip. Detailed implementation mode

[0018] The following combines the drawings and embodiments to further describe in detail the specific implementation mode of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0019] As Figures 1 to 4 shown, a new type of temperature-locking door and window of the present utility model includes a window frame 1, including a glass fixing frame 2, a support frame 4, double glazing 5 and protective glass 6. The inner end of the window frame 1 is sleeved and connected with the glass fixing frame 2. A chamber 3 is arranged in the glass fixing frame 2. A cover plate 12 assembly is arranged at the right end of the glass fixing frame 2. A support frame 4 is arranged at the front end of the glass fixing frame 2. The support frame 4 is connected with the double glazing 5. An inert gas is arranged in the double glazing 5. The front end of the double glazing 5 and the glass fixing frame 2 are fixed by glass glue. A lifting curtain assembly is arranged in the chamber 3. The rear end of the chamber 3 is connected with the protective glass 6. A sunlight detection assembly is arranged at the bottom end of the chamber 3; The automated sunshade and temperature-locking door and window designed by the present utility model integrates a number of innovative technologies, significantly improving the comfort and energy efficiency of the living environment. Its automated curtain adjustment function monitors the external light intensity in real time through the built-in pyranometer and intelligently adjusts the opening and closing state of the curtain without manual operation, which is both convenient and energy-saving. The door and window frame is made of broken bridge aluminum, combined with double glazing filled with inert gas, constructing an excellent heat insulation barrier, greatly reducing the influence of the indoor temperature by the outside world and effectively reducing energy consumption. In addition, the door and window takes into account strength, durability and aesthetic appearance, is suitable for a variety of climate conditions, and extends the product life, so as to prevent the indoor temperature from rising due to direct sunlight, thereby enhancing the practicability.

[0020] As a preference of the above embodiment, the lifting curtain assembly includes a pin-type motor, a first gear 8 and a rotating rod 9. The top end of the chamber 3 is connected with a small motor 7. The output end of the small motor 7 is connected with the first gear 8. The right end of the rotating rod 9 is connected with the chamber 3 by a bearing. A second gear 10 is arranged on the rotating rod 9. The second gear 10 is in meshing engagement with the tooth surface of the first gear 8. A light-shielding curtain 11 is arranged on the rotating rod 9. Sliding guiding assemblies are respectively arranged at the left end and the right end of the light-shielding curtain 11; A chamber is reserved in the glass fixing frame of the window frame, and a small motor, a gear system and a rotating rod are installed. The motor drives the rotating rod to rotate by receiving the signal of the pyranometer, so as to control the lifting of the light-shielding curtain and realize automated sunshading, thereby enhancing the practicability.

[0021] Preferably, as in the above embodiment, the cover plate 12 assembly includes a cover plate 12 and four sets of screws 13. A hidden groove is provided at the left end of the glass fixing frame 2. The hidden groove communicates with the chamber 3. Four sets of mounting threaded holes are provided at the left end of the hidden groove. Four sets of mounting through holes are provided at the right end of the cover plate 12. The four sets of screws 13 are respectively threadedly connected to the mounting threaded holes through the mounting through holes. A rotating hole is provided at the right end of the cover plate 12. The rotating hole and the rotating rod 9 are sleeved and clamped in the hidden groove provided on the left side of the glass fixing frame. The cover plate assembly is installed and fastened by four sets of screws, which not only protects the internal mechanical structure from external factors but also facilitates later maintenance and component replacement, thereby enhancing the practicality.

[0022] Preferably, as in the above embodiment, the sliding guide assembly includes two sets of clamping sliders 14 and a support rod 15. Guide sliding grooves are respectively provided at the right end of the chamber 3 and the right end of the cover plate 12. The two sets of guide sliding grooves are respectively slidably clamped with the clamping sliders 14. The bottom end of the light-shielding curtain 11 is connected to the support rod 15. The left end and the right end of the support rod 15 are respectively connected to the clamping sliders 14. The clamping sliders and the support rod can ensure that the light-shielding curtain slides smoothly during the lifting process, and the support rod ensures the straightness of the bottom of the curtain, avoiding the curtain from wrinkling or shifting, thereby enhancing the practicality.

[0023] Preferably, as in the above embodiment, the sunlight detection assembly includes a pyranometer 16. The bottom end of the chamber 3 is connected to the pyranometer 16. The detection head of the pyranometer 16 is provided at the rear end of the glass fixing frame 2. The pyranometer is installed in the chamber at the lower part of the door or window, and its detection head faces the outside, continuously monitoring the solar radiation intensity, providing real-time data support for the automatic curtain adjustment, thereby enhancing the practicality.

[0024] Preferably, as in the above embodiment, a sealing clamping frame 17 and a first sealing strip 18 are provided at the rear end of the window frame 1. A sealing plate 19 is provided on the outer wall of the glass fixing frame 2. A second sealing strip 20 is provided at the rear end of the sealing plate 19. The sealing clamping frame and the first sealing strip are provided at the rear end of the window frame, and cooperate with the sealing plate and the second sealing strip on the glass fixing frame to ensure good airtightness and watertightness of the door or window in the closed state, thereby enhancing the practicality.

[0025] Preferably, as in the above embodiment, both the window frame 1 and the glass fixing frame 2 are made of broken bridge aluminum. The broken bridge aluminum has good heat insulation function, thereby enhancing the practicality.

[0026] Preferably, as in the above embodiment, nano-scale heat insulation coatings are applied on the surfaces of the window frame 1, the glass fixing frame 2, the protective glass 6, and the double-layer glass 5. By spraying nano-scale heat insulation coatings on the outer surfaces of the window frame, the glass fixing frame, the protective glass, and the double-layer glass, the transfer of heat radiation can be reduced, further enhancing the heat preservation effect of the door or window, thereby enhancing the practicality.

[0027] A new type of heat-preserving door and window of the present utility model has the following working principle. When it is working, first, it is necessary to ensure the firm connection between the window frame and the support structure. All fasteners must be tightened. Check that the seal between the window frame and the glass fixing frame is intact. Subsequently, verify the filling condition of the inert gas in the double-glazed glass, confirm that the glass glue bonding has no leakage, and the protective glass fits tightly with the chamber. At the same time, test the installation firmness of the cover plate assembly to ensure that the internal components are properly protected. Then, before activating the device, connect the power supply of the small motor, confirm that the connection between the motor and the control system circuit is correct, and start the solar radiometer for calibration to ensure accurate monitoring of the light intensity. Then, set the light threshold for the automatic opening and closing of the curtain through the user interface or remote control to achieve intelligent curtain adjustment. In daily use, the solar radiometer continuously monitors the external light. When the light intensity reaches the preset value, the control system automatically starts the motor, drives the rotating rod through the gear system, and controls the lifting of the light-shielding curtain. The sliding guide assembly ensures the smooth operation of the curtain, and the support rod keeps the curtain flat. The double-glazed glass, together with the broken bridge aluminum, inert gas filling, and nano-level heat insulation coating, works together to effectively reduce heat conduction, reflect heat radiation, reduce indoor temperature fluctuations, and save energy consumption. The sealing design of the door and window, including the sealing clamping frame, sealing strip, and sealing plate, ensures the airtightness and watertightness of the door and window, and can keep the indoor environment stable even under harsh weather conditions. Then, for the long-term stable operation of the device, regularly clean the surface of the door and window, especially the nano-level heat insulation coating, to avoid dust affecting the heat insulation effect. Regularly check the wear of the motor, gear system, and sliding guide assembly, and lubricate or replace them in a timely manner. Conduct a comprehensive inspection of the sealing performance of the door and window at least once a year, and update the aging or damaged sealing materials in a timely manner to maintain the best state of the door and window.

[0028] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0029] The "first", "second", "third" described in the present utility model do not represent specific quantities and sequences, but are only used for name distinction.

[0030] The above is only the preferred embodiment of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A new type of heat-insulating door and window, comprising a window frame (1); characterized in that, It includes a glass fixing frame (2), a support frame (4), a double-layer glass (5) and a protective glass (6). The inner end of the window frame (1) is sleeved and connected with the glass fixing frame (2). A chamber (3) is arranged in the glass fixing frame (2). A cover plate (12) assembly is arranged at the right end of the glass fixing frame (2). The front end of the glass fixing frame (2) is the support frame (4). The support frame (4) is connected with the double-layer glass (5). An inert gas is arranged in the double-layer glass (5). The front ends of the double-layer glass (5) box and the glass fixing frame (2) are fixed by glass glue. A lifting curtain assembly is arranged in the chamber (3). The rear end of the chamber (3) is connected with the protective glass (6). A sunlight detection assembly is arranged at the bottom end of the chamber (3).

2. The novel temperature-insulating doors and windows according to claim 1 are characterized in that, The lifting curtain assembly includes a pin motor, a first gear (8) and a rotating rod (9). The top end of the chamber (3) is connected with a small motor (7). The output end of the small motor (7) is connected with the first gear (8). The right end of the rotating rod (9) is connected with the chamber (3) by a bearing. A second gear (10) is arranged on the rotating rod (9). The second gear (10) is meshed with the first gear (8) on the tooth surface. A light-shielding curtain (11) is arranged on the rotating rod (9). Sliding guide assemblies are respectively arranged at the left end and the right end of the light-shielding curtain (11).

3. The novel heat-insulating doors and windows according to claim 2, characterized in that The cover plate (12) assembly includes a cover plate (12) and four groups of screws (13). A hidden groove is arranged at the left end of the glass fixing frame (2). The hidden groove is communicated with the chamber (3). Four groups of installation threaded holes are arranged at the left end of the hidden groove. Four groups of installation through holes are arranged at the right end of the cover plate (12). The four groups of screws (13) are respectively threadedly connected with the installation threaded holes through the installation through holes. A rotating hole is arranged at the right end of the cover plate (12). The rotating hole is sleeved and clamped with the rotating rod (9).

4. The novel heat-insulating doors and windows according to claim 3, characterized in that, The sliding guide assembly includes two groups of clamping sliders (14) and a support rod (15). Guide chutes are respectively arranged at the right end of the chamber (3) and the right end of the cover plate (12). The two groups of guide chutes are respectively slidably clamped with the clamping sliders (14). The bottom end of the light-shielding curtain (11) is connected with the support rod (15). The left end and the right end of the support rod (15) are respectively connected with the clamping sliders (14).

5. The novel heat-insulating doors and windows according to claim 4, characterized in that, The sunlight detection assembly includes a pyranometer (16). The bottom end of the chamber (3) is connected with the pyranometer (16). The detection head of the pyranometer (16) is arranged at the rear end of the glass fixing frame (2).

6. The novel heat-insulating doors and windows according to claim 5, characterized in that, A sealing clamping frame (17) and a first sealing strip (18) are arranged at the rear end of the window frame (1). A sealing plate (19) is arranged on the outer wall of the glass fixing frame (2). A second sealing strip (20) is arranged at the rear end of the sealing plate (19).

7. The novel heat-insulating door and window according to claim 6, characterized in that, Both the window frame (1) and the glass fixing frame (2) are made of broken bridge aluminum profiles.

8. The novel heat-insulating doors and windows according to claim 7, characterized in that, Nano-scale heat insulation coatings are applied on the surfaces of the window frame (1), the glass fixing frame (2), the protective glass (6) and the double-layer glass (5).