Electric window with shutters
By installing louvers within the sealed area of the window sash and using a rocker motor to drive the window sash to rotate, the problem of louvers being easily contaminated is solved, achieving an effective combination of electric windows and louvers, improving service life and ease of cleaning.
Patent Information
- Application Number
- CN202520269631.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Traditional electric windows and blinds are installed separately, which makes the blinds easy to be stained by oil fumes and water stains, affecting the appearance and increasing the difficulty of cleaning.
The blinds are installed within the sealed area of the window sash, and the window sash is rotated by a rocker arm motor. When used in conjunction with an electric window, this prevents direct contact with external pollutants.
It effectively protects the blinds from oil fumes and water stains, improves their service life and ease of cleaning, and enhances their sound insulation and heat preservation performance.
Smart Images

Figure CN223854095U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of electric windows, in particular to an electric window with louvers. BACKGROUND
[0002] An electric window is a modern window system that uses an electric motor to drive the opening and closing of a window. With an electric window, users can easily control the opening and closing of the window through a key, a remote control, or a smartphone, without the need for manual operation, thereby improving the convenience and comfort of life. With the widespread use of electric windows, there is still room for improvement.
[0003] Traditional electric windows and louvered windows are usually set up separately. In daily life, especially in environments such as kitchens and bathrooms, the external louver cloth often has impurities such as oil fumes and water stains attached to it. These pollutants not only affect the appearance of the louver cloth, but also shorten its service life and increase the difficulty of cleaning and maintenance. In the kitchen, due to the large amount of oil fumes generated during cooking, these oil fumes are easily attached to the surface of the louvered window, causing the louvered window to become greasy and dirty. In the bathroom, due to the humid environment, water stains and mold are more likely to grow on the louvered window, further exacerbating the pollution of the louvered window. These problems not only affect the cleanliness and aesthetics of the indoor environment, but also increase the cleaning burden and maintenance costs of users.
[0004] Therefore, it is necessary to design a new electric window structure that effectively combines the electric window and the louvered window, protects the louvered window from pollution, and ensures its normal use function, to solve the problem of louvered windows being easily polluted by oil fumes in the kitchen. SUMMARY
[0005] Therefore, it is necessary to provide an electric window with louvers to solve the above problems.
[0006] Embodiments of the present application provide an electric window with louvers, comprising:
[0007] a window frame;
[0008] a sash, the sash being rotatably connected to the window frame by a hinge assembly, the sash being provided with two glass panels, the two glass panels being spaced apart, and a sealing area being formed between the sash and the two glass panels;
[0009] a louvered window, provided in the sealing area;
[0010] a rocker motor, the rocker motor being provided on the window frame, a rocker being provided between the rocker motor and the sash, the rocker motor being drivingly connected to the window frame through the rocker, and the rocker of the rocker motor driving the sash to rotate around the window frame.
[0011] In at least one embodiment of the present application, the window frame is provided with a placing slot, the rocker motor is arranged in the placing slot, the placing slot is provided with a rotating hole, the rotating hole is connected with the outside and the placing slot, and the rocker motor extends out of the rotating hole and is connected with the rocker.
[0012] In at least one embodiment of the present application, one end of the rocker is connected with the rocker motor, and the other end of the rocker is connected with the rocker motor in a sliding manner.
[0013] In at least one embodiment of the present application, the window sash is provided with a sliding slot, and the rocker is provided with a sliding block at one end close to the window sash, the sliding block being connected with the sliding slot in a sliding manner.
[0014] In at least one embodiment of the present application, the window sash is provided with a window sash motor, the output end of the window sash motor extending into the sealing area and being connected with the shutter in a transmission manner, and the window sash motor drives the shutter to be retracted or lowered.
[0015] In at least one embodiment of the present application, the window sash is provided with a control box, the control box being electrically connected with the rocker motor and the window sash motor respectively, and the control box controls the rotation of the rocker motor and the rotation of the window sash motor respectively.
[0016] In at least one embodiment of the present application, the window sash is provided with a sealing part, the sealing part being located between two glass plates, and the glass plates being attached to the sealing part.
[0017] In at least one embodiment of the present application, the window sash is provided with a handle at one side close to the window frame, and the handle is located at one end of the window sash away from the hinge assembly.
[0018] In at least one embodiment of the present application, the shuttered electric window comprises a sliding part, the sliding part being arranged on the window frame, the sliding slot being arranged on the sliding part.
[0019] In at least one embodiment of the present application, the rocker motor is bolted in the placing slot.
[0020] The shuttered electric window provided above solves the problem that the shutter is easily polluted by oil fume when the electric window is combined with the shutter, by arranging the shutter in the sealing area of the window sash to avoid direct contact with external pollutants, and by driving the window sash to rotate relative to the window frame by the rocker motor. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural perspective view of the shuttered electric window.
[0022] Figure 2 Structure perspective view of the electric window with louvers;
[0023] Figure 3 Side sectional view of the sash;
[0024] Figure 4 Structure schematic view of the electric window with louvers;
[0025] Figure 5 Enlarged view of A part of the electric window with louvers;
[0026] Figure 6 Enlarged view of B part of the electric window with louvers;
[0027] Figure 7 Enlarged view of C part of the electric window with louvers.
[0028] Explanation of main component symbols
[0029] 100, electric window with louvers; 1, window frame; 11, placing groove; 12, rotating hole; 2, sash; 21, glass plate; 22, sealing area; 23, sliding groove; 24, sealing part; 25, sliding part; 3, louver; 4, rocker motor; 41, rocker; 42, sliding block; 5, hinge assembly; 6, sash motor; 7, control box; 8, handle. DETAILED DESCRIPTION
[0030] The embodiments of the present application will be described below in conjunction with the drawings of the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments of the present application.
[0031] It should be noted that when one component is considered to be "connected" to another component, it can be directly connected to the other component or can exist simultaneously with a middle component. When one component is considered to be "provided on" another component, it can be directly provided on the other component or can exist simultaneously with a middle component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and the like used herein are for illustrative purposes only.
[0032] The embodiments of the present application provide an electric window with louvers, comprising:
[0033] a window frame;
[0034] a sash, which is rotationally connected to the window frame through a hinge assembly, and two glass plates are provided on the sash, the two glass plates are arranged at intervals, and a sealing area is formed between the sash and the two glass plates;
[0035] a louver, which is provided in the sealing area;
[0036] A rocker motor is arranged on the window frame, a rocker is arranged between the rocker motor and the window sash, the rocker motor is in transmission connection with the window frame through the rocker, and the rocker of the rocker motor drives the window sash to rotate around the window frame. The electric window with blinds provided by the application avoids direct contact with external pollutants by arranging the blinds in the sealing area of the window sash, and the rocker motor drives the window sash to rotate relative to the window frame, thereby solving the problem that the blinds are easily polluted by oil fumes when the electric window is used in combination with the blinds.
[0037] Some embodiments of the application will be described in detail below with reference to the drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0038] Please refer to Figures 1-7 The embodiment of the application provides an electric window with blinds 100, which comprises a window frame 1, a window sash 2, blinds 3 and a rocker motor 4. The window sash 2 is in rotational connection with the window frame 1 through a hinge assembly 5. Two glass plates 21 are arranged on the window sash 2 and are spaced apart. A sealing area 22 is formed between the window sash 2 and the two glass plates 21. The blinds 3 are arranged in the sealing area 22. The rocker motor 4 is arranged on the window frame 1. A rocker 41 is arranged between the rocker motor 4 and the window sash 2. The rocker motor 4 is in transmission connection with the window frame 1 through the rocker 41. The rocker 41 of the rocker motor 4 drives the window sash 2 to rotate around the window frame 1.
[0039] Specifically, the window frame 1 is the structural body of the electric window and plays a supporting and fixing role. A stable support structure is provided to ensure that the window sash 2 can rotate and be fixed stably. The window sash 2 is in rotational connection with the window frame 1 through the hinge assembly 5 and is the main movable part of the electric window. The window sash 2 can realize opening and closing of the window and increase the ventilation effect. Two glass plates 21 are arranged on the window sash 2 and are spaced apart. The sealing area 22 formed between the two glass plates 21 can effectively insulate sound and heat and provide a better indoor environment. The sealing area 22 is formed between the window sash 2 and the two glass plates 21, and the blinds 3 are arranged in the sealing area 22. The sealing area 22 provides an independent space to protect the blinds 3 from the influence of the external environment and enhances the sound insulation and heat preservation performance. The blinds 3 are arranged in the sealing area 22 and are used for adjusting light. The blinds 3 can be used to adjust indoor light as needed and protect privacy. Since the blinds 3 are arranged in the sealing area 22, the blinds 3 are not easily polluted by dust. The rocker motor 4 is arranged on the window frame 1 and is in transmission connection with the window frame 1 through the rocker 41. The rocker motor 4 provides power to enable the window sash 2 to rotate around the window frame 1 and realize electric opening and closing of the window. The rocker 41 connects the rocker motor 4 and the window sash 2 and transmits power of the motor. The rocker 41 drives the window sash 2 to rotate stably through the driving of the rocker motor 4, thereby simplifying the operation and improving the convenience.
[0040] In a specific embodiment, the window frame 1 is provided with a placement slot 11, and the rocker motor 4 is arranged in the placement slot 11. The placement slot 11 is provided with a rotating hole 12, which is connected to the outside and the placement slot 11. The rocker motor 4 extends out of the rotating hole 12 and is in transmission connection with the rocker arm 41.
[0041] Specifically, the placement slot 11 provides a space for the rocker motor 4. The rocker motor 4 is fixed in position to be in transmission connection with the rocker arm 41 and the sash 2. The rocker motor 4 is stably installed on the window frame 1 to prevent it from moving or shaking during operation. The installation is more convenient because the rocker motor 4 can be pre-installed in the slot without additional support structure. The placement slot 11 is provided with a rotating hole 12, which is connected to the outside and the placement slot 11. In order to realize the transmission connection between the rocker motor 4 and the rocker arm 41, power is transmitted through these rotating holes 12. The rocker arm 41 or other transmission devices can pass through the slot and be connected to the output shaft of the rocker motor 4. A flexible design option is provided, which makes different types of transmission devices easily connected to the rocker motor 4. The stability and reliability of the transmission connection are ensured, thereby ensuring the normal operation of the window. The rocker motor 4 extends out of the rotating hole 12 and is in transmission connection with the rocker arm 41, which transmits the power of the rocker motor 4 to the rocker arm 41, thereby driving the movement of the sash 2. Through this connection, the sash 2 can be opened or closed according to the rotary movement of the rocker motor 4. The automation control of the electric window is realized, which improves the convenience and comfort of use. The effectiveness of the transmission connection ensures that the opening and closing actions of the sash 2 are smooth and reliable, reducing the occurrence of faults.
[0042] In a specific embodiment, one end of the rocker arm 41 is in transmission connection with the rocker motor 4, and the other end of the rocker arm 41 is in sliding connection with the rocker motor 4.
[0043] Specifically, one end of the rocker arm 41 is fixedly connected to the output shaft of the rocker motor 4. When the rocker motor 4 operates, the output shaft drives the rotation of this end of the rocker arm 41. This connection ensures that the power of the rocker motor 4 can be directly transmitted to the rocker arm 41, realizing accurate control and stable power transmission. The connection between the other end of the rocker arm 41 and the sash 2 is not fixed, but through a sliding mechanism. For example, a sliding slot 23 is provided on the sash 2, and this end of the rocker arm 41 is connected to the sliding slot 23 through a sliding block 42 or similar structure. The sliding connection allows the rocker arm 41 to move flexibly under the drive of the motor, without limiting the movement trajectory of the sash 2, so that the sash 2 can be smoothly opened and closed. The sliding connection can absorb and disperse the stress generated during the movement of the rocker arm 41, reducing the wear of the rocker arm 41, the sash 2 and the hinge assembly 5, and prolonging the service life of the entire system. The sliding connection mode can automatically adjust the angle and position between the rocker arm 41 and the sash 2, making the opening and closing of the sash 2 more smooth and accurate.
[0044] In a specific example, a sliding groove 23 is formed on the sash 2, and a sliding block 42 is rotatably connected to one end of the rocker arm 41 close to the sash 2.
[0045] Specifically, a long strip-shaped sliding groove 23 is formed on the surface or inside of the sash 2. The sliding groove 23 provides a track for the movement of the sliding block 42, making the opening and closing of the sash 2 more stable and controlled. The sliding groove 23 can reduce the friction between the sliding block 42 and the sash 2 during movement, prolonging the service life of the sash 2 and the sliding block 42. The sliding block 42 is rotatably connected to one end of the rocker arm 41 close to the sash 2. One end of the rocker arm 41 is connected to a sliding block 42 through a rotating connection, and the sliding block 42 can rotate freely. The rotating connection allows the sliding block 42 to slide freely in the sliding groove 23, while allowing it to rotate freely according to the angle change of the rocker arm 41, making the opening and closing of the sash 2 more flexible and smooth. The rotating connection reduces the stress concentration between the rocker arm 41 and the sliding block 42, reducing the friction and wear between the components. The sliding block 42 is embedded in the sliding groove 23 and can slide along the length direction of the sliding groove 23. The sliding groove 23 provides a fixed sliding path for the sliding block 42, allowing the sash 2 to move smoothly along the path of the sliding groove 23 under the drive of the rocker motor 4. The sliding connection ensures that the rocker arm 41 does not deviate from the track during the opening and closing of the sash 2, improving the stability and reliability of the entire system.
[0046] In a specific example, the sash 2 is provided with a sash motor 6, and the output end of the sash motor 6 extends into the sealing area 22 and is in transmission connection with the shutter 3. The sash motor 6 drives the shutter 3 to be retracted or lowered.
[0047] Specifically, the sash motor 6 is an electric device installed on the sash 2, usually an electric motor, used to drive the opening and closing action of the shutter 3. The output end of the sash motor 6 extends into the sealing area 22 and is in transmission connection with the shutter 3. This part describes that the output end of the sash motor 6 extends into the sealing area 22 and is in transmission connection with the shutter 3. This means that the power of the sash motor 6 can be transmitted to the shutter 3 through the output end, thereby controlling the movement of the shutter 3. The sash motor 6 drives the shutter 3 to be retracted or lowered. The sash motor 6 drives the shutter 3 to be retracted or lowered through the transmission connection. When the sash motor 6 starts, it will generate a rotating power, which is transmitted to the shutter 3 through the transmission connection, making the shutter 3 retract or lower.
[0048] In a specific example, the sash 2 is provided with a control box 7, and the control box 7 is electrically connected with the rocker motor 4 and the sash motor 6 respectively. The control box 7 controls the rotation of the rocker motor 4 and the sash motor 6 respectively.
[0049] In particular, the control box 7 is a device installed on the sash 2 for centralized control of the operation and functions of the window system. The control box 7 is electrically connected with the rocker motor 4 and the sash motor 6 respectively, which describes the electrical connection between the control box 7 and the rocker motor 4 and the sash motor 6. The control box 7 is connected to the rocker motor 4 and the sash motor 6 by wires to provide power and control signals. The control box 7 controls the rotation of the rocker motor 4 and the sash motor 6 respectively, and the design of the control box 7 enables independent control of the rotation of the rocker motor 4 and the sash motor 6. Through the control box 7, the user can control the opening and closing of the window and the folding and unfolding of the blinds 3 respectively. The control box 7 is designed with circuit systems inside, which controls the components of the window system by connecting and disconnecting the control circuit. For example, the opening and closing of the window is controlled by controlling the power supply of the motor, and various operations are realized by switches or relays in the circuit.
[0050] In a specific example, the sash 2 is provided with a sealing part 26, which is located between the two glass panels 21 and is attached to the glass panels 21.
[0051] In particular, the sealing part 26 is located between the two glass panels 21 of the sash 2, and its main function is to provide sealing. It can effectively prevent external environmental substances such as air and water vapor from entering the interior of the sash 2, and maintain the dryness and cleanliness of the interior of the window. The sealing part 26 is installed between the two glass panels 21 of the sash 2, usually at the edge or joint of the glass panels 21. The installation position can ensure that the sealing part 26 can effectively seal the gap between the glass panels 21 and achieve the sealing effect. The sealing part 26 is attached to the glass panels 21, as mentioned in the description. This means that the surface of the sealing part 26 is in contact with the surface of the glass panels 21 and is attached together. Through appropriate design and processing, the sealing part 26 can be tightly attached to the glass panels 21, so as to ensure that the sealing part 26 can effectively seal the gap between the glass panels 21 and prevent the intrusion of external environmental substances. The attachment of the sealing part 26 to the glass panels 21 forms a closed space inside the sash 2, effectively preventing the penetration of external environmental substances. This can maintain the dryness, cleanliness and comfort of the interior of the window, and also helps to improve the heat preservation performance and sound insulation effect of the window.
[0052] In a specific example, the sash 2 is provided with a handle 8 on the side close to the window frame 1, and the handle 8 is located at the end of the sash 2 away from the hinge assembly 5.
[0053] Specifically, the handle 8 is located on the side of the sash 2 close to the window frame 1, which means that the user can easily approach the side of the window frame 1 and conveniently operate the window. The user can easily push or pull the sash 2 through the handle 8 to perform the opening or closing operation. The handle 8 serves as the operating handle of the sash 2, which facilitates the user to perform the opening and closing operation of the window. The user can easily push or pull the sash 2 to the desired position by holding the handle 8, thereby controlling the opening degree of the window. The handle 8 is located at the end of the sash 2 away from the hinge assembly 5, which is designed to ensure the balance and stability of the sash 2 during opening or closing. By installing the handle 8 on the side of the sash 2 and away from the end of the hinge assembly 5, the sash 2 can maintain balance during operation, avoiding tilting or shaking of the sash 2 due to improper operation. The position of the handle 8 takes into account the user's operation habits and convenience. The installation on the side of the sash 2 close to the window frame 1 allows the user to approach the window more easily and naturally during operation, improving the comfort and convenience of operation.
[0054] In a specific example, the electric window with blinds 100 includes a sliding part 25 provided on the window frame 1, and the sliding groove 23 is formed on the sliding part 25.
[0055] In particular, the sliding part 25 is a specially designed structural component that is located on the window frame 1 and protrudes from the window frame 1. Its main function is to provide a stable and fixed support for the sliding groove 23. The design of the sliding part 25 allows the sliding groove 23 to have sufficient space and support to ensure the smooth movement of the sliding block 42 in the sliding groove 23. This structure can effectively improve the durability and stability of the electric window. The sliding part 25 is fixed on the window frame 1, which is the support point of the sliding part 25 component, ensuring the correct position of the sliding part 25 component on the window frame 1. The sliding part 25 is located on the window frame 1, which can ensure the integration of the sliding groove 23 and the window frame 1, and improve the stability of the overall structure. At the same time, the fixed position of the sliding part 25 is also helpful for installation and maintenance. The sliding part 25 protrudes from the window frame 1, so that the sliding groove 23 has a certain height or depth relative to the surface of the window frame 1, providing sufficient sliding space. This arrangement allows the sliding groove 23 to better accommodate the sliding block 42, avoiding interference between the sliding block 42 and other parts of the window frame 1, improving the smoothness and effectiveness of sliding. The sliding groove 23 is a long hole or track provided on the sliding part 25, which is specially designed for the sliding and guiding of the sliding block 42. The design of the sliding groove 23 ensures that the sliding block 42 moves in a controlled trajectory, reducing shaking and friction, and ensuring the smooth and reliable operation of the electric window during opening and closing. When the user operates the electric window through the control box 7, the control box 7 sends a signal to start the rocker arm 41 motor 4 and the window sash 2 motor. The rocker arm 41 motor 4 rotates, driving the rocker arm 41 connected to it to start moving. One end of the rocker arm 41 is connected to the sliding block 42 in the sliding groove 23. With the rotation of the rocker arm 41 motor 4, the rocker arm 41 pushes the sliding block 42 to slide in the sliding groove 23. The sliding block 42 slides in the sliding groove 23, driving the window sash 2 to rotate around the hinge assembly 5, and finally realizing the opening or closing of the window sash 2. The window sash 2 motor operates under the control of the control box 7, driving the blinds 3 to be retracted or lowered, adjusting the light and ventilation in the window.
[0056] In a specific example, the rocker arm 41 motor 4 is bolted in the placement groove 11.
[0057] Specifically, the bolt connection is a stable mechanical connection method, which firmly fixes the rocker arm 41 motor 4 in the placement groove 11 through bolts, preventing it from loosening or shifting during operation. It ensures that the rocker arm 41 motor 4 always maintains the correct position and posture during startup and operation, improving the overall stability and reliability of the electric window. The bolt connection makes the installation and removal of the rocker arm 41 motor 4 relatively simple and fast. By tightening or loosening the bolts, the installation or replacement of the motor can be easily completed. It simplifies the installation and maintenance process of the electric window, reduces the cost and time of installation and maintenance, and improves the maintainability of the electric window. The fixed position of the rocker arm 41 motor 4 has a direct impact on the accuracy and stability of the entire transmission system. The bolt connection can ensure the accurate position of the motor and transmission components, avoiding transmission errors caused by position deviation. It improves the accuracy of the rocker arm 41 motor 4 driving the window sash 2 to rotate, making the window sash 2 open and close smoothly and smoothly, and improving the user experience.
[0058] Therefore, the above-mentioned electric window 100 with blinds provided by the present application avoids direct contact with external pollutants by setting the blind window 3 in the sealing area 22 of the window sash 2, and the rocker arm 41 motor 4 drives the window sash 2 to rotate relative to the window frame 1, thereby solving the problem of easy pollution of the blind window 3 by oil fumes when the electric window is used in combination with the blind window 3.
[0059] The above is only an embodiment of the present application, and it should be noted that those skilled in the art can make improvements without departing from the inventive concept of the present application, but these all belong to the protection scope of the present application.
Claims
1. A motorized window with louvers, characterized in that, The utility model relates to a window with blind, which comprises a window frame, a window sash, two glass plates, a blind, a rocker motor, a control box, a sealing part and a handle. The window sash is rotatably connected to the window frame by a hinge assembly. The two glass plates are arranged in a spaced manner. The blind is arranged in the sealing area. The rocker motor is arranged on the window frame.
2. The motorized window with louvers according to claim 1, wherein, The rocker motor is connected to the window sash through a rocker.
3. The motorized window with louvers according to claim 1, wherein, The rocker motor is arranged in a placing groove of the window frame.
4. The motorized window with louvers according to claim 3, wherein, The rocker motor is connected to the rocker through a rotating hole of the placing groove.
5. The motorized louvered window of claim 1, wherein, One end of the rocker is connected to the rocker motor.
6. The motorized louvered window of claim 1, wherein, The other end of the rocker is slidably connected to the rocker motor.
7. The motorized louvered window of claim 1, wherein, A sliding groove is arranged on the window sash.
8. The motorized louvered window of claim 1, wherein, A sliding block is rotatably connected to the end of the rocker near the window sash.
9. The motorized window with louvers according to claim 4, wherein, The window sash is provided with a window sash motor.
10. The motorized window with louvers according to claim 2, wherein, The output end of the window sash motor is connected to the blind. The window sash motor drives the blind to be retracted or unfolded. The control box is electrically connected to the rocker motor and the window sash motor. The control box controls the rotation of the rocker motor and the window sash motor. The sealing part is arranged between the two glass plates. The handle is arranged on the side of the window sash near the window frame. The handle is arranged at the end of the window sash away from the hinge assembly. The window with blind comprises a sliding part. The sliding part protrudes from the window frame. The rocker motor is bolted in the placing groove.