Intelligent built-in shutter glass with temperature sensing function
Through the intelligent built-in temperature and humidity sensor and motor drive system of louver glass, the opening and closing and lifting of louver blades are automatically adjusted, which solves the problem of manual adjustment of existing louver glass and achieves comfortable indoor environment control.
Patent Information
- Application Number
- CN202421879795.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing louver glass requires manual adjustment of the angle and lift of the louver, and cannot be automatically adjusted according to the indoor temperature and humidity, resulting in the indoor temperature that may be too high due to excessive exposure to the sun for too long after the owner goes out, affecting the indoor environment.
An intelligent built-in louver glass is designed, equipped with temperature and humidity sensors, controllers, micro motors, gears and belts. The indoor environment is detected through the temperature and humidity sensor and the micro motor work is controlled, and the lifting and opening and closing of the louver is automatically adjusted, combining the design of magnetic suction blocks and iron blocks to achieve stable control.
It automatically adjusts the opening and closing and lifting of the louver according to the indoor temperature and humidity, provides a comfortable indoor environment, improves the stability and operability of the system, and prevents discomforts of excessive temperature or excessive humidity.
Smart Images

Figure CN223062335U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field related to louver glass, and particularly relates to an intelligent built-in louver glass with temperature sensing. Background Art
[0002] Louver glass is a glass material that can adjust the light transmission degree. It usually consists of two layers of glass with rotatable louvers sandwiched between them. By rotating the angle of the louvers, the light transmission degree of the glass surface can be adjusted, thereby controlling the indoor light and temperature. Louver glass is often used in architectural design and home decoration, which is both beautiful and practical.
[0003] However, the existing louver glass usually needs to manually adjust the angle and lifting of the louvers, and cannot adjust the louvers according to the indoor temperature and humidity. As a result, when the household goes out, the indoor temperature may be too high due to excessive exposure to the sun for too long, affecting the indoor environment. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an intelligent built-in louver glass with temperature sensing to solve the problem that the existing louver glass usually needs to manually adjust the angle and lifting of the louvers, and cannot adjust the louvers according to the indoor temperature and humidity. As a result, when the household goes out, the indoor temperature may be too high due to excessive exposure to the sun for too long, affecting the indoor environment as mentioned in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: an intelligent built-in louver glass with temperature sensing, including an installation frame and an outer frame arranged outside the installation frame;
[0006] Magnetic attraction blocks are respectively arranged on both sides inside the outer frame. Two pieces of glass are arranged on the installation frame. Louver blades are arranged between the glasses. Multiple pull ropes are arranged on the louver blades. Two rope winding shafts are arranged at the top end inside the installation frame. Rope winders are respectively arranged at the upper two corners inside the installation frame. A cross bar is arranged between the rope winders. A regulator and a puller are respectively arranged on both sides of the installation frame. Iron blocks are arranged on the regulator and the puller. A counterweight is arranged at the bottom of the puller. Magnets are respectively arranged below the regulator and the puller;
[0007] A temperature and humidity display screen and a temperature and humidity sensor are arranged on the outer side of the bottom of the installation frame. A controller is arranged on the inner side of the bottom of the installation frame. Miniature motors are respectively arranged on both sides of the controller. Rope winding wheels are respectively arranged at the two corners of the bottom of the installation frame. Brackets are respectively arranged on both sides of the rope winding wheels. Gears are respectively arranged on the miniature motors and the rope winding wheels. A belt is arranged between the gears.
[0008] Preferably, the temperature and humidity sensor and the temperature and humidity display screen are fixedly connected to the installation frame, the controller is fixedly installed on the installation frame, and the temperature and humidity sensor is electrically connected to the controller.
[0009] Preferably, the micro motor is fixedly installed on the installation frame, the micro motor is electrically connected to the controller, and the gear is fixedly connected to the micro motor.
[0010] Preferably, the rope winding wheel is rotatably connected to the bracket, the bracket is fixedly installed on the installation frame, the gear is fixedly connected to the rope winding wheel, and the belt is engaged with the gear.
[0011] Preferably, a pull rope is provided at the bottom of the regulator and the puller, the pull rope is fixedly connected to the rope winding wheel, and the pull rope passes through the magnet at the bottom of the installation frame.
[0012] Preferably, the magnetic attraction block is slidably connected to the outer frame, the magnetic attraction block can adsorb the iron block on the regulator and the puller, and the up and down sliding of the magnetic attraction block can drive the regulator and the puller to move up and down.
[0013] Preferably, the regulator and the puller can be adsorbed to the magnet at the bottom, the regulator can adjust the angle of the louver through the pull rope, and the puller can adjust the lifting of the louver through the pull rope.
[0014] Compared with the prior art, the present utility model provides an intelligent built-in louver glass with temperature sensing, having the following beneficial effects:
[0015] Through the settings of the temperature and humidity display screen, temperature and humidity sensor, controller, micro motor, gear, belt and rope winding shaft, the temperature and humidity sensor can detect the indoor temperature and humidity, the temperature and humidity display screen can display the indoor temperature and humidity, the temperature and humidity sensor is electrically connected to the controller. When the temperature and humidity sensor detects that the indoor temperature is relatively high, it will transmit a control signal to the controller, and then control the micro motors on both sides to work through the controller, gradually winding the pull rope onto the rope winding wheel. At this time, the puller will lower the louver between the glasses, and at the same time, when the regulator is pulled down, it will close the louver, thereby blocking the external sunlight and preventing the indoor environmental temperature from being too high. When the indoor humidity is relatively high, the temperature and humidity sensor will first control the left micro motor through the controller to relax the pull rope and open the louver to allow the external sunlight to penetrate into the house and reduce the humidity inside the house. When the indoor humidity is still relatively high, the controller controls the right micro motor to lift the louver to allow the sunlight outside the glass to completely penetrate into the room and dry the room. This device can adjust the lifting and opening and closing of the louver according to the monitoring of the indoor temperature and humidity through the cooperation of devices such as the temperature and humidity sensor, controller and micro motor, so as to provide a comfortable indoor environment.
[0016] Through the design of magnetic attraction blocks and iron blocks, the opening, closing, lifting and lowering of the louver blades can be conveniently controlled. The magnet can ensure that after pulling the traction device and the regulator are completed, magnetic attraction fixation is generated with the magnet, so that the louver blades are kept in the required position and will not accidentally drop or unfold due to gravity, improving the stability and reliability of the system. Through the mutual cooperation of the magnetic attraction blocks, iron blocks and magnets, stable control and convenient operation of the louver blades can be achieved, improving the stability, operability and safety of the system, and providing users with a more convenient and reliable indoor environment control experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the present utility model.
[0018] Figure 2 It is a schematic diagram of the split structure of the outer frame of the present utility model.
[0019] Figure 3 It is a schematic diagram of the internal structure of the installation frame of the present utility model.
[0020] Figure 4 It is a schematic diagram of the rope winding shaft and the micro motor of the present utility model.
[0021] In the figure: 1. Outer frame; 2. Magnetic attraction block; 3. Pulling rope; 4. Louver blade; 5. Installation frame; 6. Glass; 7. Temperature and humidity display screen; 8. Temperature and humidity sensor; 9. Cross bar; 10. Rope winding shaft; 11. Rope winder; 12. Traction device; 13. Counterweight; 14. Magnet; 15. Gear; 16. Regulator; 17. Bracket; 18. Micro motor; 19. Controller; 20. Belt; 21. Rope winding wheel; 22. Iron block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0023] The present utility model provides an intelligent built-in louver glass with temperature sensing as shown in Figures 1-4 the figure, including an installation frame 5 and an outer frame 1 arranged outside the installation frame 5;
[0024] On both inner sides of the outer frame 1, magnetic attraction blocks 2 are respectively arranged. Two pieces of glass 6 are arranged on the installation frame 5. Between the glasses 6, there are louvers 4. Multiple pull ropes 3 are arranged on the louvers 4. At the top end inside the installation frame 5, two rope winding shafts 10 are arranged. At the upper two corners inside the installation frame 5, rope winders 11 are respectively arranged. Between the rope winders 11, there is a cross bar 9. On both sides of the installation frame 5, a regulator 16 and a puller 12 are respectively arranged. Iron blocks 22 are arranged on the regulator 16 and the puller 12. At the bottom of the puller 12, there is a counterweight 13. Magnets 14 are respectively arranged below the regulator 16 and the puller 12;
[0025] On the outer side of the bottom of the installation frame 5, a temperature and humidity display screen 7 and a temperature and humidity sensor 8 are arranged. On the inner side of the bottom of the installation frame 5, a controller 19 is arranged. On both sides of the controller 19, micro motors 18 are respectively arranged. At the two corners of the bottom of the installation frame 5, rope winding wheels 21 are respectively arranged. On both sides of the rope winding wheels 21, brackets 17 are respectively arranged. Gears 15 are respectively arranged on the micro motors 18 and the rope winding wheels 21. Between the gears 15, there is a belt 20.
[0026] In this embodiment, the working principle of the louver glass is to control the entry and blockage of light by adjusting the angle of the louvers 4 in the middle of the glass 6. The usage method of the louver glass is as follows. By sliding the magnetic attraction block 2 on the right side of the outer frame 1, the puller 12 inside the installation frame 5 can be driven to move up and down. The up and down movement of the puller 12 can drive the pull rope 3 to pull up or lower the louvers 4. The up and down movement of the magnetic attraction block 2 on the left side of the outer frame 1 can drive the regulator 16 inside the installation frame 5 to move. The regulator 16 can adjust the angle of the louvers 4 and control the opening and closing of the louvers 4.
[0027] As Figure 1 、 Figure 3 and Figure 4 shown, the temperature and humidity sensor 8 and the temperature and humidity display screen 7 are fixedly connected to the installation frame 5. The controller 19 is fixedly installed on the installation frame 5. The temperature and humidity sensor 8 is electrically connected to the controller 19. The micro motor 18 is fixedly installed on the installation frame 5. The micro motor 18 is electrically connected to the controller 19. The gear 15 is fixedly connected to the micro motor 18. The rope winding wheel 21 is rotatably connected to the bracket 17. The bracket 17 is fixedly installed on the installation frame 5. The gear 15 is fixedly connected to the rope winding wheel 21. The belt 20 is engaged with the gear 15. At the bottom of the regulator 16 and the puller 12, there is a pull rope 3. The pull rope 3 is fixedly connected to the rope winding wheel 21. The pull rope 3 passes through the magnet 14 at the bottom of the installation frame 5.
[0028] Preferably, through the settings of the temperature and humidity display screen 7, temperature and humidity sensor 8, controller 19, micro motor 18, gear 15, belt 20 and rope winding shaft 21, the temperature and humidity sensor 8 can detect the indoor temperature and humidity, and the temperature and humidity display screen 7 can display the indoor temperature and humidity. The temperature and humidity sensor 8 is electrically connected to the controller 19. When the temperature and humidity sensor 8 detects a relatively high indoor temperature, it will transmit a control signal to the controller 19, and then control the micro motors 18 on both sides to work through the controller 19. When the micro motors 18 work, they will drive the gears 15 to rotate, and then drive the gears 15 on the other side to rotate through the belt 20, so that the rope winding wheel 21 rotates between the brackets 17, and gradually winds the pulling rope 3 onto the rope winding wheel 21. At this time, the retractor 12 will lower the louver blades 4 between the glasses 6. At the same time, when the regulator 16 is pulled downward, it will close the louver blades 4, thereby blocking the external sunlight and preventing the indoor environmental temperature from being too high. When the indoor humidity is relatively high, the temperature and humidity sensor 8 will first control the left micro motor 18 through the controller 19 to relax the pulling rope and open the louver blades 4, so that the external sunlight penetrates into the house and reduces the humidity in the house. When the indoor humidity is still relatively high, the controller 19 controls the right micro motor 18 to pull up the louver blades 4, so that the sunlight outside the glass completely penetrates into the room and dries the room.
[0029] As Figure 1 , Figure 2 and Figure 3 shown, the magnetic attraction block 2 is slidably connected to the outer frame 1. The magnetic attraction block 2 can adsorb the iron blocks 22 on the regulator 16 and the retractor 12. The up and down sliding of the magnetic attraction block 2 can drive the regulator 16 and the retractor 12 to move up and down. The regulator 16 and the retractor 12 can adsorb to the bottom magnet 14. The regulator 16 can adjust the angle of the louver blades 4 through the pulling rope 3, and the retractor 12 can adjust the lifting of the louver blades 4 through the pulling rope 3.
[0030] Preferably, through the mutual cooperation of the magnetic attraction block 2 and the iron block 22, the opening, closing, lifting and lowering of the louver blades 4 inside the glass 6 can be conveniently controlled. Through the setting of the magnet 14, after the retractor 12 and the regulator 16 finish pulling, they will magnetically adsorb to the magnet 14 to fix the retractor 12 and the regulator 16, preventing the louver blades 4 from dropping or unfolding due to gravity.
[0031] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. An intelligent built-in louver glass with temperature sensing, comprising a mounting frame (5) and an outer frame (1) arranged outside the mounting frame (5); On both sides of the inner side of the outer frame (1), magnetic attraction blocks (2) are respectively arranged. Two pieces of glass (6) are arranged on the mounting frame (5). Between the glasses (6), louver blades (4) are arranged. Multiple pull ropes (3) are arranged on the louver blades (4). At the top end inside the mounting frame (5), two rope winding shafts (10) are arranged. At the two upper corners inside the mounting frame (5), rope winders (11) are respectively arranged. A cross bar (9) is arranged between the rope winders (11). On both sides of the mounting frame (5), a regulator (16) and a puller (12) are respectively arranged. Iron blocks (22) are arranged on the regulator (16) and the puller (12). A counterweight (13) is arranged at the bottom of the puller (12). Magnets (14) are respectively arranged below the regulator (16) and the puller (12); It is characterized in that: On the outer side of the bottom of the mounting frame (5), a temperature and humidity display screen (7) and a temperature and humidity sensor (8) are arranged. On the inner side of the bottom of the mounting frame (5), a controller (19) is arranged. On both sides of the controller (19), micro motors (18) are respectively arranged. At the two bottom corners of the mounting frame (5), rope winding wheels (21) are respectively arranged. On both sides of the rope winding wheels (21), brackets (17) are respectively arranged. Gears (15) are respectively arranged on the micro motors (18) and the rope winding wheels (21). A belt (20) is arranged between the gears (15).
2. The intelligent built-in louver glass with temperature sensing according to claim 1, wherein: The temperature and humidity sensor (8) and the temperature and humidity display screen (7) are fixedly connected to the mounting frame (5). The controller (19) is fixedly installed on the mounting frame (5). The temperature and humidity sensor (8) is electrically connected to the controller (19).
3. The intelligent built-in louver glass with temperature sensing according to claim 2, characterized in that: The micro motor (18) is fixedly installed on the mounting frame (5). The micro motor (18) is electrically connected to the controller (19). The gear (15) is fixedly connected to the micro motor (18).
4. The intelligent built-in louver glass with temperature sensing according to claim 3, characterized in that: The rope winding wheel (21) is rotatably connected to the bracket (17). The bracket (17) is fixedly installed on the mounting frame (5). The gear (15) is fixedly connected to the rope winding wheel (21). The belt (20) is engaged with the gear (15).
5. The intelligent built-in louver glass with temperature sensing according to claim 4, characterized in that: Pull ropes (3) are arranged at the bottoms of the regulator (16) and the puller (12). The pull ropes (3) are fixedly connected to the rope winding wheels (21). The pull ropes (3) penetrate through the magnets (14) at the bottom of the mounting frame (5).
6. The intelligent built-in louver glass with temperature sensing according to claim 1, characterized in that: The magnetic attraction blocks (2) are slidably connected to the outer frame (1). The magnetic attraction blocks (2) can be adsorbed to the iron blocks (22) on the regulator (16) and the puller (12). The up and down sliding of the magnetic attraction blocks (2) can drive the regulator (16) and the puller (12) to move up and down.
7. The intelligent built-in louver glass with temperature sensing according to claim 6, characterized in that: The regulator (16) and the puller (12) can be adsorbed to the magnets (14) at the bottom. The regulator (16) can adjust the angle of the louver blades (4) through the pull ropes (3). The puller (12) can adjust the lifting of the louver blades (4) through the pull ropes (3).