Multifunctional anti-theft heat preservation and insulation window

By designing a multi-functional anti-theft and heat-insulating window, and adopting an insulated frame, sealing box, curtain system and dynamic sealing mechanism, the problems of poor window insulation performance and insufficient anti-theft performance are solved, achieving a comprehensive effect of energy saving, safety and comfort.

CN121738461APending Publication Date: 2026-03-27TANGSHAN GEYU NEW ENERGY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-30
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing windows have poor thermal insulation performance in cold regions, resulting in high heating energy consumption, and high air conditioning energy consumption in hot regions. They also lack security features and are easily damaged, failing to meet the comprehensive requirements of energy conservation, safety and comfort in buildings.

Method used

Design a multi-functional anti-theft, heat-insulating window that uses an insulated frame, sealing box, curtain system and dynamic sealing mechanism, combined with electromagnetic drive or air sealing technology, equipped with electric roller blind device and intelligent control unit to realize automated operation and multi-functional switching of curtains.

Benefits of technology

It achieves excellent thermal insulation performance, reduces energy consumption, enhances anti-theft capabilities, adapts to different building needs, requires no large-scale renovation, is compatible with existing buildings, and improves safety and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of doors and windows, in particular to a multifunctional anti-theft heat preservation and insulation window. The system comprises a heat preservation frame, a sealing box, a curtain system and a control unit, the sealing box is arranged at the top of the heat preservation frame, an anti-theft window is arranged on the inner side of the heat preservation frame, a dynamic sealing mechanism is arranged on the outer side of the heat preservation frame, the curtain system comprises an electric roller shutter device, the electric roller shutter device comprises a shaft pipe, a roller shutter motor is arranged on the inner wall of the shaft pipe, and a functional curtain is wound on the outer wall of the shaft pipe. A balancing weight is arranged at the lower end of the functional curtain, and limiting and guiding wheels are arranged on the two sides of the lower portion of the functional curtain. The multifunctional anti-theft heat preservation and insulation window is designed into various styles including an electromagnetic electric style, an air seal curtain electric style, an air seal frame electric style and the like, and the styles can be selected according to different building requirements and use scenes. The heat preservation and insulation material has excellent heat preservation and insulation performance, and heat conduction is reduced structurally. The anti-theft window arranged on the inner side of the heat preservation frame can effectively resist external force damage and illegal invasion.
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Description

Technical Field

[0001] This invention relates to the field of door and window technology, specifically to a multifunctional anti-theft, heat-insulating window. Background Technology

[0002] In the construction industry, windows, as crucial components connecting indoor and outdoor spaces, significantly impact indoor environment and energy consumption. Currently, commonly available windows on the market, such as aluminum alloy, PVC, steel-framed, wooden, and thermally broken aluminum windows, have several shortcomings:

[0003] In cold winter regions, existing windows are insufficient to effectively prevent cold air from penetrating the glass, leading to significant heat loss from the room. To maintain indoor temperature, heating equipment consumes a large amount of energy, resulting in increased heating costs and substantial energy waste. In some frigid northern regions, heat conduction loss through ordinary windows can lead to high indoor heating energy consumption. In summer, solar radiation enters the room through windows in large quantities, raising indoor temperatures and increasing the cooling load on air conditioning, thus increasing air conditioning energy consumption.

[0004] Ordinary glass windows have a relatively simple structure and limited protective capabilities, making them vulnerable to external damage and illegal intrusion. In some burglary cases, criminals often break into homes by smashing windows, posing a serious threat to residents' lives and property. Moreover, existing window security measures often require the installation of complex and unsightly security grilles, which not only affect the window's lighting and ventilation but also increase construction costs and maintenance difficulties.

[0005] Meanwhile, the market currently lacks a window product that integrates multiple functions such as anti-theft, heat insulation, and thermal insulation, failing to meet people's comprehensive needs for building energy conservation, safety, and comfort. Therefore, developing a multifunctional window with good thermal insulation performance and reliable anti-theft function is of significant practical importance. Summary of the Invention

[0006] The purpose of this invention is to overcome the above-mentioned problems and provide a multifunctional anti-theft, heat-insulating window. To achieve the above objective, this invention adopts the following technical solution:

[0007] A multifunctional anti-theft, heat-insulating window includes an insulation frame, a sealing box, a curtain system, and a control unit. The sealing box is located on top of the insulation frame. An anti-theft window is provided on the inner side of the insulation frame, and a dynamic sealing mechanism is provided on the outer side of the insulation frame. A parallel groove is provided inside the sealing box. The curtain system includes at least two sets of electric roller blind devices arranged parallel to each other in the parallel groove. Each electric roller blind device includes a shaft tube, and a roller blind motor is provided on the inner wall of the shaft tube. A functional curtain is wound around the outer wall of the shaft tube. A counterweight is provided at the lower end of the functional curtain. Limiting and guide wheels are provided on both sides of the downward movement of the functional curtain.

[0008] As an improvement, the dynamic sealing mechanism is an electromagnetically driven sealing assembly, which includes a movable frame, an electromagnetic spring frame, and a spring sleeve. The movable frame is fitted outside the insulation frame, and the electromagnetic spring frame is located outside the movable frame. Electromagnets are evenly distributed inside the electromagnetic spring frame. The spring sleeve connects the insulation frame, the movable frame, and the electromagnetic spring frame. The spring sleeve includes a connecting shaft that passes through the movable frame. Both ends of the connecting shaft connect the insulation frame and the electromagnetic spring frame, and a compression spring is fitted onto the connecting shaft.

[0009] As an improvement, the dynamic sealing mechanism is an air-sealed curtain-type sealing assembly, which includes an air-sealed outer frame disposed outside the insulation frame, and a connecting plate is provided between the insulation frame and the air-sealed outer frame.

[0010] As an improvement, the functional curtains include heat-insulating curtains, light-transmitting and windproof transparent air-sealed curtains, and sun-shading, heat-insulating and UV-resistant air-sealed curtains. The functional curtains are provided with air-sealing strips around their perimeter, and the lower end of the air-sealing strips is provided with a remote-controlled air release valve and an intelligent air inlet.

[0011] As an improvement, the dynamic sealing mechanism is an air-sealed frame sealing assembly, which includes an air-sealed frame, which is fitted outside the insulation frame, an air-sealing strip on the inner wall of the air-sealed frame, a remote-controlled venting valve and an intelligent inflation port at the lower end of the air-sealing strip, and a connecting plate between the insulation frame and the air-sealed frame.

[0012] As an improvement, the functional curtains include heat-insulating curtains, light-transmitting and windproof transparent curtains, and sun-shading, heat-insulating and UV-protective curtains. The inner side of the parallel groove is provided with a movable side plate, and the two ends of the shaft tube of the heat-insulating curtain are installed on the movable side plate.

[0013] As an improvement, the dynamic sealing mechanism also includes an intelligent air compressor, and an air pipe is connected between the intelligent air compressor and the intelligent air inlet.

[0014] As an improvement, the inner side of the insulation frame is provided with an openable vacuum glass window.

[0015] As an improvement, the control unit includes an electric remote control box and a remote control assembly, which are disposed on one side of the insulation frame.

[0016] The advantages of this invention are:

[0017] 1. This invention relates to a multi-functional anti-theft, heat-insulating, and thermally insulating window design available in various styles, including electromagnetic electric, air-sealed curtain electric, and air-sealed frame electric models, which can be selected according to different building needs and usage scenarios. Furthermore, the design considers compatibility with existing buildings; by removing some curtain devices and installing operable vacuum glass windows, it can be directly applied to new buildings or to replace windows in existing buildings without requiring large-scale structural modifications, thus possessing broad application prospects.

[0018] 2. This invention has excellent thermal insulation performance. The insulation frame uses profiles containing insulation material, which reduces heat conduction structurally. The sunshade, heat insulation and UV protection airtight curtain can effectively block solar radiation heat from entering the room, achieving good energy-saving effect, reducing carbon emissions and meeting environmental protection requirements.

[0019] 3. The curtain system of this invention adopts an electric roller blind device, driven by a roller blind motor on the inner wall of the shaft tube. Users can conveniently remotely control the raising, lowering, and switching of the curtains through an electric remote control box and remote control kit. Whether adjusting the lighting, blocking sunlight, or opening the airtight function, it can all be easily achieved. Attached Figure Description

[0020] Figure 1 This is a structural diagram of a multifunctional anti-theft, heat-insulating window in Example 1.

[0021] Figure 2 This is a top view of a multifunctional anti-theft, heat-insulating window in Example 1.

[0022] Figure 3 This is a diagram of the internal structure of a multifunctional anti-theft, heat-insulating window in Example 1.

[0023] Figure 4 In Example 1 Figure 2 Enlarged view of point A.

[0024] Figure 5 This is a rear view structural diagram of a multifunctional anti-theft, heat-insulating window in Example 1.

[0025] Figure 6 This is a structural diagram of a multifunctional anti-theft, heat-insulating window in Example 2.

[0026] Figure 7 This is a structural diagram of the sunshade, heat insulation, and UV protection air-sealed curtain in Example 2.

[0027] Figure 8 This is a structural diagram of the thermal insulation curtain in Example 2.

[0028] Figure 9 This is a structural diagram of the light-transmitting, windproof, transparent air-sealed curtain in Example 2.

[0029] Figure 10 The structure inside the sealed box in Example 2 Figure 1 .

[0030] Figure 11 This is a rear view structural diagram of a multifunctional anti-theft, heat-insulating window in Example 2.

[0031] Figure 12 The structure inside the sealed box in Example 2 Figure 2 .

[0032] Figure 13 This is a bottom view of the structure of a multifunctional anti-theft, heat-insulating window in Example 3.

[0033] The diagram is labeled as follows:

[0034] 1. Insulation frame; 2. Sealing box; 3. Security window; 4. Parallel groove; 5. Shaft tube; 6. Roller blind motor; 7. Counterweight; 8. Limiting device; 9. Guide wheel; 10. Moving frame; 11. Electromagnetic spring frame; 12. Spring sleeve; 13. Electromagnet; 14. Connecting shaft; 15. Compression spring; 16. Air-sealed outer frame; 17. Connecting plate; 18. Insulation curtain; 19. Light-transmitting, windproof, transparent air-sealed curtain; 20. Sunshade, heat insulation, and UV protection air-sealed curtain; 21. Air seal strip; 22. Remote control air release valve; 23. Intelligent air inlet; 24. Air seal frame; 25. Insulation curtain; 26. Light-transmitting, windproof, transparent curtain; 27. Sunshade, heat insulation, and UV protection curtain; 28. Moving side panel; 29. ​​Intelligent air compressor; 30. Air pipe; 31. Electric remote control box; 32. Remote control sleeve; 33. Opening vacuum glass window. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0036] In the description of the embodiments of the present invention, it should be noted that if terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of the invention is in use, they are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. Furthermore, terms such as "first," "second," and "third" are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0037] Furthermore, the use of terms such as "horizontal," "vertical," and "sag" does not imply that the component must be absolutely horizontal or suspended, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0038] In the description of the embodiments of the present invention, "multiple" means at least two.

[0039] In the description of the embodiments of the present invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the present invention according to the specific circumstances.

[0040] The present invention will now be described in detail and specifically through specific embodiments to enable a better understanding of the invention. However, the following embodiments do not limit the scope of protection of the present invention.

[0041] Example 1

[0042] This embodiment discloses a multifunctional anti-theft, heat-insulating window.

[0043] like Figures 1 to 5 As shown, this embodiment is an electromagnetic electric type. This embodiment includes an insulation frame 1, a sealing box 2, a curtain system, and a control unit. The sealing box 2 is located on the top of the insulation frame 1. The inner side of the insulation frame 1 is provided with a burglarproof window 3, and the outer side of the insulation frame 1 is provided with a dynamic sealing mechanism. The inside of the sealing box 2 is provided with a parallel groove 4. The curtain system includes at least two sets of electric roller blind devices arranged in parallel in the parallel groove 4. The electric roller blind device includes a shaft tube 5. The inner wall of the shaft tube 5 is provided with a roller blind motor 6. The outer wall of the shaft tube 5 is used to wind a functional curtain. The lower end of the functional curtain is provided with a counterweight block 7. Limiting blocks 8 and guide wheels 9 are provided on both sides of the downward movement of the functional curtain.

[0044] The insulation frame 1 is the basic frame of the window, made of profiles containing insulation material, providing basic thermal insulation. The sealing box 2 is installed on top of the insulation frame 1 to house and protect internal components such as the parallel groove 4. The curtain system consists of at least two sets of electric roller blind devices, a key component for realizing the window's multiple functions. The roller blind motor 6 is installed on the inner wall of the shaft tube 5 in the electric roller blind device, providing power for the rolling of the curtain; functional curtains are wound around the outer wall of the shaft tube 5, with different functional curtains meeting different usage needs. The counterweight 7 at the bottom of the functional curtains ensures that the curtains remain vertical and flat when lowered, preventing wrinkles or deviation. The limiter 8 and guide wheels 9 ensure that the curtains move along the correct path during vertical movement, preventing deviation.

[0045] The burglarproof window 3, located inside the insulation frame 1, is made of high-strength materials and features a robust structural design, effectively resisting external damage and illegal intrusion. The grid density and material strength of the burglarproof window 3 are rationally designed to withstand a certain degree of impact and prying, providing reliable protection for indoor security. Simultaneously, the dynamic sealing mechanism enhances thermal insulation performance while also providing some protection for the window, making the overall window structure more robust and further improving its anti-theft capabilities. The external dynamic sealing mechanism improves the window's sealing effect, reduces heat transfer and cold air infiltration, and enhances thermal insulation performance.

[0046] The dynamic sealing mechanism is an electromagnetically driven sealing assembly, which includes a movable frame 10, an electromagnetic spring frame 11, and a spring sleeve 12. The movable frame 10 is sleeved outside the insulation frame 1, and the electromagnetic spring frame 11 is located outside the movable frame 10. Electromagnets 13 are evenly distributed inside the electromagnetic spring frame 11. The spring sleeve 12 connects the insulation frame 1, the movable frame 10, and the electromagnetic spring frame 11. The spring sleeve 12 includes a connecting shaft 14, which passes through the movable frame 10. Both ends of the connecting shaft 14 are connected to the insulation frame 1 and the electromagnetic spring frame 11. A compression spring 15 is sleeved on the connecting shaft 14.

[0047] The movable frame 10 is fitted outside the insulation frame 1 and can move relative to the insulation frame 1. An electromagnetic spring frame 11 is located outside the movable frame 10, and electromagnets 13 are distributed inside. The spring sleeve assembly 12 serves as a connection and buffer. When the electromagnets 13 inside the electromagnetic spring frame 11 are energized, a magnetic field is generated. Under the action of the magnetic field, an attractive force is generated between the electromagnetic spring frame 11 and the movable frame 10, causing the movable frame to move towards the electromagnetic spring frame, compressing the compression spring 15. This allows the movable frame 10 to create a gap for replacing the curtain. The curtain replacement function is achieved through this electromagnetic drive and spring return mechanism.

[0048] The functional curtains include heat-insulating curtains 25, light-transmitting and windproof transparent curtains 26, and sun-shading, heat-insulating and UV-protective curtains 27. The inner side of the parallel groove 4 is provided with movable side panels 28, and the two ends of the shaft tube 5 of the heat-insulating curtain 25 are installed on the movable side panels 28.

[0049] The thermal insulation curtain 25 has excellent heat insulation performance, effectively blocking indoor heat from escaping in winter, thus providing insulation, while also effectively preventing cold air from entering the room through the glass window. The light-transmitting and windproof transparent curtain 26 ensures indoor lighting while also providing some heat insulation, suitable for various weather conditions. The sunshade, heat insulation, and UV-protective curtain 27 is mainly used in summer, effectively blocking solar radiation heat from entering the room, while also blocking ultraviolet rays to prevent indoor items from aging and fading due to UV exposure, lowering indoor temperature, and reducing air conditioning energy consumption. The movable side plate 28 located inside the parallel groove 4 provides a movable installation position for the shaft tube 5 of the thermal insulation curtain 25. With both ends of the shaft tube 5 of the thermal insulation curtain 25 mounted on the movable side plate 28, the thermal insulation curtain 25, driven by the electric roller blind device, can not only roll up and down but also move laterally within the parallel groove 4, allowing users to adjust the curtain position according to their actual needs. The function of the movable side panel 28 is to move as the thermal insulation curtain is rolled up, making room for the curtain to be rolled up.

[0050] An openable vacuum glass window 33 is provided on the inner side of the insulation frame 1.

[0051] The operable vacuum glass window 33 is a high-performance insulation structure installed inside the insulation frame 1. The extremely low thermal conductivity of a vacuum environment significantly reduces heat conduction through the glass. The operable design ensures excellent thermal insulation performance while meeting the user's need for ventilation. Compared to ordinary glass windows, the operable vacuum glass window 33 effectively blocks heat exchange between the indoor and outdoor environments, preventing heat loss in winter and blocking outdoor heat in summer, further enhancing the overall thermal insulation effect of the window and reducing the building's heating and cooling energy consumption.

[0052] The control unit includes an electric remote control box 31 and a remote control kit 32, which are located on one side of the insulation frame 1.

[0053] The electric remote control box 31 is the control center of the entire window system. It integrates various control circuits and modules to receive and process signals from the remote control unit 32, and control the operation of various components according to the signal commands. For example, it controls the start, stop, forward and reverse rotation of the roller blind motor 6 in the electric roller blind device, and controls the power on and off of the electromagnet 13 in the dynamic sealing mechanism. The remote control unit 32 is the terminal device operated by the user, which usually includes a remote control. The user can send control commands remotely through the remote control unit 32 to conveniently and quickly operate various functions of the window without having to manually operate it at the window.

[0054] The electromagnetic electric control method involves activating the square electromagnetic spring frame via the remote control. Upon activation, the electromagnetic field draws the movable frame, which is stationary and attached to the square insulation frame, towards the curtain. Once the movable frame is pulled towards the square insulation frame, space is created, and the curtain is lowered using the remote control. Then, the electromagnetic field is de-energized, and the spring assembly automatically activates. The spring returns the movable frame towards the square insulation frame, simultaneously clamping the lowered curtain. These three curtain types can be used alternately.

[0055] Note: The above-mentioned outdoor anti-theft multi-functional integrated energy-saving window electromagnetic electric version removes the electric remote-controlled rolling light-transmitting and windproof transparent curtain device. An operable vacuum glass window 33 is installed on the insulation frame with the anti-theft window installed, closer to the interior. Other design elements remain unchanged. With this design change, the anti-theft multi-functional integrated energy-saving window can be directly applied to new buildings or used to replace windows in existing buildings.

[0056] Example 2

[0057] This embodiment discloses a multifunctional anti-theft, heat-insulating window.

[0058] like Figures 6 to 12 As shown, this embodiment is an electric air-sealed curtain. This embodiment includes an insulation frame 1, a sealing box 2, a curtain system, and a control unit. The sealing box 2 is located on top of the insulation frame 1. The inner side of the insulation frame 1 is provided with a burglarproof window 3, and the outer side of the insulation frame 1 is provided with a dynamic sealing mechanism. The sealing box 2 is provided with a parallel groove 4. The curtain system includes at least two sets of electric roller blind devices arranged in parallel in the parallel groove 4. The electric roller blind device includes a shaft tube 5. The inner wall of the shaft tube 5 is provided with a roller blind motor 6. The outer wall of the shaft tube 5 is used to wind a functional curtain. The lower end of the functional curtain is provided with a counterweight 7. Limiting blocks 8 and guide wheels 9 are provided on both sides of the downward movement of the functional curtain.

[0059] The dynamic sealing mechanism is an air-sealed curtain-type sealing assembly, which includes an air-sealed outer frame 16. The air-sealed outer frame 16 is located outside the insulation frame 1, and a connecting plate 17 is provided between the insulation frame 1 and the air-sealed outer frame 16.

[0060] The air-sealed outer frame 16 achieves its sealing function through inflation and deflation. When the air-sealing strip 21 is inflated, it forms a sealing barrier between the insulation frame 1 and the air-sealed outer frame 16, effectively blocking airflow and heat transfer, thus improving the window's thermal insulation performance. When deflated, the seal is released, allowing for ventilation. The connecting plate 17 connects the insulation frame 1 and the air-sealed outer frame 16, providing fixation and support, ensuring the air-sealed outer frame 16 can be stably installed on the outside of the insulation frame 1.

[0061] Functional curtains include heat-insulating curtains 18, light-transmitting and windproof transparent air-sealed curtains 19, and sun-shading, heat-insulating and UV-resistant air-sealed curtains 20. The functional curtains are equipped with air-sealing strips 21 around the perimeter, and the lower end of the air-sealing strips 21 is equipped with a remote-controlled air release valve 22 and an intelligent air inlet 23.

[0062] The remote-controlled deflation valve 22 and intelligent inflation port 23 at the lower end of the air seal strip 21 can be remotely controlled to inflate and deflate the air seal strip 21. When inflated, the air seal strip 21 expands, making the curtains fit tightly against the window frame and other parts, enhancing the sealing effect; when deflated, the air seal strip 21 contracts, facilitating the movement of the curtains or ventilation.

[0063] Thermal insulation curtain 18: It has good heat insulation performance and can effectively block indoor heat from escaping in winter, thus playing a role in heat preservation.

[0064] Transparent, windproof, and airtight curtain 19: It can ensure that indoor lighting is not greatly affected, while also having certain functions of cold and heat insulation and airtightness. It is suitable for various weather conditions and can reduce or increase heat loss while ensuring indoor lighting.

[0065] Sunshade, heat insulation, and UV protection airtight curtains (Type 20): Primarily used in hot summers, these curtains effectively block solar radiation heat from entering the room, lowering indoor temperature and reducing air conditioning energy consumption. They also block ultraviolet rays, preventing indoor items from aging and fading due to UV exposure, thus protecting interior decorations and furniture.

[0066] The dynamic sealing mechanism also includes an intelligent air compressor 29, and an air pipe 30 is provided between the intelligent air compressor 29 and the intelligent air inlet 23.

[0067] The intelligent air compressor 29 is an important auxiliary device for achieving the air-sealing function of the air-sealed curtain sealing assembly. It is connected to the intelligent inflation port 23 at the lower end of the functional curtain air-sealing strip 21 via an air pipe 30. When the air-sealing strip 21 needs to be inflated to achieve a seal, the intelligent air compressor 29 starts, delivering compressed air through the air pipe 30 to the intelligent inflation port 23, thereby inflating the air-sealing strip 21. The intelligent air compressor 29 can precisely control the inflation volume and pressure according to actual needs, ensuring that the air-sealing strip 21 achieves a suitable sealing state. Furthermore, by cooperating with the control unit, it can achieve automated and intelligent inflation operations, improving the convenience and reliability of the window sealing function.

[0068] An openable vacuum glass window 33 is provided on the inner side of the insulation frame 1.

[0069] The control unit includes an electric remote control box 31 and a remote control kit 32, which are located on one side of the insulation frame 1.

[0070] Electric operation of the airtight curtain. The airtight curtain is lowered via remote control. After lowering, the curtain sits in the space between the square insulation frame and the airtight outer frame. The curtain is then remotely inflated to achieve a seal. To alternate between curtains, deflate the airtight curtain and raise it, then remotely lower the desired curtain. Repeat the cycle. The inflation pressure is automatically set according to the desired pressure. These three types of airtight curtains can be used alternately.

[0071] Note: The above-mentioned outdoor anti-theft multi-functional integrated energy-saving window with airtight electric design removes the electric remote-controlled rolling light-transmitting and windproof transparent airtight curtain device. An openable vacuum glass window 33 is installed on the insulation frame with the anti-theft window, closer to the interior. Other design elements remain unchanged. With this design change, the anti-theft multi-functional integrated energy-saving window can be directly applied to new buildings or used to replace windows in existing buildings.

[0072] Example 3

[0073] This embodiment discloses a multifunctional anti-theft, heat-insulating window.

[0074] like Figure 13 As shown, this embodiment is an electric air-sealed frame 24. This embodiment includes an insulation frame 1, a sealing box 2, a curtain system, and a control unit. The sealing box 2 is located on the top of the insulation frame 1. The inner side of the insulation frame 1 is provided with a burglarproof window 3, and the outer side of the insulation frame 1 is provided with a dynamic sealing mechanism. The inside of the sealing box 2 is provided with a parallel groove 4. The curtain system includes at least two sets of electric roller blind devices arranged in parallel in the parallel groove 4. The electric roller blind device includes a shaft tube 5. The inner wall of the shaft tube 5 is provided with a roller blind motor 6. The outer wall of the shaft tube 5 is used to wind a functional curtain. The lower end of the functional curtain is provided with a counterweight block 7. Limiting blocks 8 and guide wheels 9 are provided on both sides of the downward movement of the functional curtain.

[0075] The dynamic sealing mechanism is a gas seal frame 24 type sealing assembly. The gas seal frame 24 type sealing assembly includes a gas seal frame 24, which is sleeved on the outside of the insulation frame 1. There are gas seal strips 21 on the inner walls of the gas seal frame 24. The lower end of the gas seal strips 21 is provided with a remote control venting valve 22 and an intelligent inflation port 23. A connecting plate 17 is provided between the insulation frame 1 and the gas seal frame 24.

[0076] The air-sealing frame 24 is fitted onto the outside of the insulation frame 1, forming a sealed space together with the insulation frame 1. The air-sealing strips 21 installed on the inner walls of the air-sealing frame 24 are key components for achieving the sealing function. The remote-controlled venting valve 22 and intelligent inflation port 23 at the lower end of the air-sealing strip 21 are used to control the inflation and deflation process of the air-sealing strip 21. The connecting plate 17 connects the insulation frame 1 and the air-sealing frame 24, ensuring the relative stability between them and providing support for the air-sealing frame 24.

[0077] When enhanced window sealing is required, air is pumped into the air seal strip 21 via the intelligent air compressor 29. The air seal strip 21 expands and tightly adheres to the insulation frame 1, effectively preventing heat transfer and air infiltration. When ventilation or other operations are needed, the gas inside the air seal strip 21 is released via the remote-controlled vent valve 22, causing the air seal strip 21 to contract and release the seal.

[0078] The functional curtains include heat-insulating curtains 25, light-transmitting and windproof transparent curtains 26, and sun-shading, heat-insulating and UV-protective curtains 27. The inner side of the parallel groove 4 is provided with movable side panels 28, and the two ends of the shaft tube 5 of the heat-insulating curtain 25 are installed on the movable side panels 28.

[0079] The dynamic sealing mechanism also includes an intelligent air compressor 29, and an air pipe 30 is provided between the intelligent air compressor 29 and the intelligent air inlet 23.

[0080] An openable vacuum glass window 33 is provided on the inner side of the insulation frame 1.

[0081] The control unit includes an electric remote control box 31 and a remote control kit 32, which are located on one side of the insulation frame 1.

[0082] The air-sealing frame electric model is operated remotely. The curtain is lowered to the space between the square insulation frame and the square air-sealing frame. The air-sealing strip on the frame is then inflated remotely to seal the curtain. To switch curtains, the air-sealing strip is deflated and the curtain is raised. The desired curtain is then lowered remotely. This cycle repeats, with the air-sealing strip automatically inflating according to the set pressure. All three curtain types can be used alternately.

[0083] Note: The above-mentioned outdoor anti-theft multi-functional integrated energy-saving window with airtight frame and electric design removes the electric remote-controlled rolling light-transmitting and windproof transparent curtain device. An operable vacuum glass window 33 is installed on the insulation frame with the anti-theft window installed, closer to the interior. Other design elements remain unchanged. With this design change, the anti-theft multi-functional integrated energy-saving window can be directly applied to new buildings or used to replace windows in existing buildings.

[0084] The specific embodiments of the present invention have been described in detail above, but they are merely examples, and the present invention is not equivalent to the specific embodiments described above. For those skilled in the art, any equivalent modifications and substitutions to the present invention are also within the scope of the present invention. Therefore, all equivalent transformations and modifications made without departing from the spirit and scope of the present invention should be covered within the scope of the present invention.

Claims

1. A multifunctional anti-theft, heat-insulating window, characterized in that, The system includes an insulation frame (1), a sealing box (2), a curtain system, and a control unit. The sealing box (2) is located on top of the insulation frame (1). The insulation frame (1) has an anti-theft window (3) on its inner side and a dynamic sealing mechanism on its outer side. The sealing box (2) has a parallel groove (4) inside. The curtain system includes at least two sets of electric roller blind devices arranged in parallel in the parallel groove (4). The electric roller blind device includes a shaft tube (5). The inner wall of the shaft tube (5) is equipped with a roller blind motor (6). The outer wall of the shaft tube (5) is used to wind a functional curtain. The lower end of the functional curtain is equipped with a counterweight (7). Limiters (8) and guide wheels (9) are provided on both sides of the downward movement of the functional curtain.

2. The multifunctional anti-theft, heat-insulating window according to claim 1, characterized in that, The dynamic sealing mechanism is an electromagnetically driven sealing assembly. The electromagnetically driven sealing assembly includes a movable frame (10), an electromagnetic spring frame (11), and a spring sleeve (12). The movable frame (10) is sleeved outside the insulation frame (1). The electromagnetic spring frame (11) is located outside the movable frame (10). Electromagnets (13) are evenly distributed inside the electromagnetic spring frame (11). The spring sleeve (12) connects the insulation frame (1), the movable frame (10), and the electromagnetic spring frame (11). The spring sleeve (12) includes a connecting shaft (14). The connecting shaft (14) passes through the movable frame (10). The two ends of the connecting shaft (14) are connected to the insulation frame (1) and the electromagnetic spring frame (11). A compression spring (15) is sleeved on the connecting shaft (14).

3. The multifunctional anti-theft, heat-insulating window according to claim 1, characterized in that, The dynamic sealing mechanism is an air-sealed curtain sealing assembly. The air-sealed curtain sealing assembly includes an air-sealed outer frame (16), which is located outside the insulation frame (1). A connecting plate (17) is provided between the insulation frame (1) and the air-sealed outer frame (16).

4. A multifunctional anti-theft, heat-insulating window according to claim 3, characterized in that, The functional curtains include heat-insulating curtains (18), light-transmitting and windproof transparent air-sealed curtains (19), and sun-shading, heat-insulating and UV-resistant air-sealed curtains (20). The functional curtains are provided with air-sealing strips (21) around their perimeter. The lower end of the air-sealing strips (21) is provided with a remote-controlled air release valve (22) and an intelligent air inlet (23).

5. A multifunctional anti-theft, heat-insulating window according to claim 1, characterized in that, The dynamic sealing mechanism is an air-sealing frame (24) type sealing assembly. The air-sealing frame (24) type sealing assembly includes an air-sealing frame (24), which is fitted outside the insulation frame (1). The air-sealing frame (24) has an air-sealing strip (21) on its inner wall. The lower end of the air-sealing strip (21) is provided with a remote-controlled venting valve (22) and an intelligent air inlet (23). A connecting plate (17) is provided between the insulation frame (1) and the air-sealing frame (24).

6. A multifunctional anti-theft, heat-insulating window according to any one of claims 2 and 5, characterized in that, The functional curtains include heat-insulating curtains (25), light-transmitting and windproof transparent curtains (26), and sun-shading, heat-insulating and UV-resistant curtains (27). The parallel groove (4) is provided with a movable side plate (28), and the two ends of the shaft tube (5) of the heat-insulating curtain (25) are installed on the movable side plate (28).

7. A multifunctional anti-theft, heat-insulating window according to any one of claims 4 and 5, characterized in that, The dynamic sealing mechanism also includes an intelligent air compressor (29), and an air pipe (30) is provided between the intelligent air compressor (29) and the intelligent air inlet (23).

8. A multifunctional anti-theft, heat-insulating window according to any one of claims 1, characterized in that, The inner side of the insulation frame (1) is provided with an openable vacuum glass window (33).

9. A multifunctional anti-theft, heat-insulating window according to claim 1, characterized in that, The control unit includes an electric remote control box (31) and a remote control kit (32), which are located on one side of the insulation frame (1).