Hidden electric folding gauze door
Through the combination of hidden design and buffer components, the problems of aesthetics and space occupation of traditional mesh doors are solved, the storage and buffering effects of electric mesh doors are achieved, and the usage experience and lifespan are improved.
Patent Information
- Application Number
- CN202422294379.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Traditional screen doors are exposed outside when not in use, which affects the appearance, takes up space and is easy to accumulate dust. In addition, they have a strong impact and are noisy when closed.
A hidden electric folding screen door is designed, which uses a storage component to store the screen door in the door frame and is equipped with a buffer component to reduce the impact and noise when merging.
Keep the door appearance neat, save space, extend service life, reduce impact and noise during merging, and improve the user experience.
Smart Images

Figure CN223330484U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric folding screen doors, in particular to a hidden electric folding screen door. Background Art
[0002] Electric folding screen doors are a combination of modern technology and home design. They utilize an electric drive to control the opening and closing of the screen, creating a convenient and practical design. These doors are commonly used in areas like balconies, terraces, and gardens where ventilation is crucial while preventing the entry of insects.
[0003] However, commonly used screen doors are mostly installed on the surface of the door frame. Whether the screen door is used or not, the screen door is exposed to the outside, which seriously affects the appearance of the door. When not in use in winter, there will be a thick layer of dust on the screen door, and it also takes up the door space. If it is removed in winter, it will be difficult to find a place to put it, and it will be installed again in the summer of the following year. The screw holes for installing the screen door will also be exposed on the door frame. Therefore, the utility model provides a concealed electric folding screen door to meet the needs. Utility Model Content
[0004] In order to solve the above technical problems, the present invention provides the following technical solutions:
[0005] A hidden electric folding mesh door comprises a door frame and a wall, wherein the door frame is fixedly connected to the inside of the wall, the top of the door frame is fixedly connected to a door head, a main door is hinged on the inner wall of the door frame facing the room, and guide rails are provided on the top and bottom of the inner cavity of the door frame facing the outdoors, and an electric folding mesh door body is provided on the guide rails; a storage component, which is used to realize the storage of the electric folding mesh door body and is connected to the door frame; a buffer component, which is used to reduce the impact force when two mesh doors are merged and is connected to the electric folding mesh door body.
[0006] Optionally, the storage assembly includes storage cavities opened on both sides of the inner cavity of the door frame, the two storage cavities are respectively located at the two ends of the guide rail, and dustproof grooves are opened at the openings of the storage cavities.
[0007] Optionally, the buffer assembly includes a sealing plate arranged on the merging end of the electric folding mesh door body, and the top and bottom of the sealing plate are provided with guide grooves adapted to the guide rails, and the shape of the sealing plate is adapted to the shape of the dustproof groove.
[0008] Optionally, buffer cavities are opened inside the four corners of the sealing plate, and the top and bottom of the inner cavity of the buffer cavity are fixedly connected with guide plates arranged in the same direction as the buffer cavity. Sliding plates are provided on the opposite surfaces of the two guide plates, and the two ends of the sliding plates are respectively slidably connected to the outside of the two guide plates.
[0009] Optionally, buffer columns are fixedly connected to both sides of the sliding plate, side plates are fixedly connected to the openings at both ends of the buffer cavity, and guide holes that match the cross-sections of the buffer columns are opened inside the side plates.
[0010] Optionally, a buffer spring is fixedly connected between each of the side plates and the sliding plate, and the buffer spring is sleeved on the outside of the buffer column, and the dustproof groove is located on the movement trajectory of the buffer column.
[0011] Optionally, a deformable plate is fixedly connected to both sides of the inner cavity of the buffer cavity, one side of the deformable plate is in contact with one side of the sliding plate, deformation grooves are provided at the bottom of both sides of the deformable plate, and a deformation cavity is provided inside the contact part between the deformable plate and the sliding plate.
[0012] Compared with the prior art, the present invention has at least the following beneficial effects:
[0013] In the above scheme, by setting up a storage component, the electric folding mesh door body can be completely stored in the storage cavity inside the door frame when not in use, and a dustproof groove is provided at the opening of the storage cavity to effectively prevent dust accumulation, while keeping the appearance of the door neat and beautiful, avoiding the impact of the traditional mesh door exposed to the outside on the appearance of the door. Since the mesh door can be stored inside the door frame when not in use, it will not occupy the space outside the door, avoiding the problem of additional storage after removing the mesh door in winter, and avoiding exposed screw holes on the door frame, making the overall design more compact and efficient.
[0014] The buffer components include sealing plates, buffer chambers, guide plates, sliding plates, buffer columns, buffer springs and deformation plates. These structures work together to significantly reduce the impact force when the mesh doors are merged, protecting the mesh door body and door frame from damage, while also reducing noise. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of a hidden electric folding screen door;
[0016] Figure 2 This is a schematic diagram of the three-dimensional structure of the concealed electric folding screen door;
[0017] Figure 3 Schematic diagram of the three-dimensional structure of the sealing plate;
[0018] Figure 4 for Figure 3 A magnified schematic diagram of point A;
[0019] Figure 5 Schematic diagram of the three-dimensional structure of the buffer component.
[0020] [reference numerals]
[0021] 1. Door frame; 101. Guide rail; 102. Storage cavity; 103. Dustproof groove; 2. Wall; 3. Electric folding mesh door body; 301. Sealing plate; 302. Guide groove; 303. Buffer cavity; 304. Guide plate; 305. Sliding plate; 306. Buffer column; 307. Buffer spring; 308. Deformation plate; 309. Side panel; 4. Door head. DETAILED DESCRIPTION
[0022] The following is a detailed description of a hidden electric folding screen door provided by the present invention in conjunction with the accompanying drawings and specific embodiments; at the same time, it is explained here that in order to make the embodiments more detailed, the following embodiments are preferred embodiments, and for some well-known technologies, those skilled in the art may also adopt other alternative methods.
[0023] like Figures 1 to 5 As shown, the embodiment of the present invention provides a hidden electric folding screen door, including a door frame 1 and a wall 2, the door frame 1 is fixedly connected to the inside of the wall 2, the top of the door frame 1 is fixedly connected to a door head 4, a door is hinged on the inner wall of the door frame 1 facing the room, and the top and bottom of the inner cavity of the door frame 1 facing the outside are provided with guide rails 101, an electric folding screen door body 3 and a storage component are provided on the guide rails 101, the storage component is used to realize the storage of the electric folding screen door body 3, the storage component is connected to the door frame 1, the storage component includes storage chambers 102 opened on both sides of the inner cavity of the door frame 1, the two storage chambers 102 are respectively located at the two ends of the guide rails 101, and a dustproof groove 103 is opened at the opening of the storage chamber 102, the buffer component includes a sealing plate 301 arranged on the merging end of the electric folding screen door body 3, the top and bottom of the sealing plate 301 are provided with guide grooves 302 adapted to the guide rails 101, the sealing plate 3 The shape of 01 is adapted to the shape of the dustproof groove 103. When ventilation is needed or mosquitoes are prevented from entering, the electric folding screen door body 3 slides outward along the guide rail 101 under the drive of the electric drive device until it completely covers the opening part of the door frame 1. When the screen door is not needed, the electric folding screen door body 3 slides inward along the guide rail 101 under the drive of the electric drive device, and gradually enters the storage cavity 102 on both sides of the inner cavity of the door frame 1. When the screen door is completely stored in the storage cavity 102, its opening is covered by the sealing plate 301, which effectively prevents dust from entering the storage cavity 102 and keeps the screen door clean. When not in use, the screen door can be completely stored in the door frame 1 without occupying external space, thereby improving space utilization. The design of the dustproof groove 103 effectively prevents dust accumulation, extends the service life of the screen door, and maintains the overall cleanliness. After the screen door is stored, the appearance of the door is neat and beautiful and is not affected.
[0024] like Figures 1 to 5As shown, the buffer assembly is used to reduce the impact force when the two screen doors are merged. The buffer assembly is connected to the electric folding screen door body 3. The buffer assembly includes a sealing plate 301 arranged on the merging end of the electric folding screen door body 3. The top and bottom of the sealing plate 301 are provided with a guide groove 302 adapted to the guide rail 101. The shape of the sealing plate 301 is adapted to the shape of the dustproof groove 103. Buffer cavities 303 are opened inside the four corners of the sealing plate 301. The top and bottom of the inner cavity of the buffer cavity 303 are fixedly connected with a guide plate 304 arranged in the same direction as the buffer cavity 303. Sliding plates 305 are provided on the opposite surfaces of the two guide plates 304. The two ends of the sliding plate 305 are respectively slidably connected to the outside of the two guide plates 304. Both sides of the sliding plate 305 are fixedly connected with buffer The punch column 306 and the openings at both ends of the buffer cavity 303 are fixedly connected with side panels 309, and the interior of the side panels 309 is provided with guide holes adapted to the cross-section of the buffer column 306. A buffer spring 307 is fixedly connected between each side panel 309 and the sliding plate 305, and the buffer spring 307 is sleeved on the outside of the buffer column 306. The dustproof groove 103 is on the movement trajectory of the buffer column 306. Deformation plates 308 are fixedly connected on both sides of the inner cavity of the buffer cavity 303. One side of the deformation plate 308 is fitted with one side of the sliding plate 305. Deformation grooves are provided at the bottom of both sides of the deformation plate 308. A deformation cavity is provided inside the contact part between the deformation plate 308 and the sliding plate 305. When the two electric folding mesh door bodies 3 begin to merge on the guide rail 101, the sealing plate 301 contacts first. The guide grooves 302 on the sealing plate 301 ensure smooth sliding on the guide rails 101, providing guidance for the merging process. As the two doors continue to merge, the buffer assemblies at the four corners of the sealing plate 301 begin to operate. The buffer columns 306 in the two buffer assemblies first come into contact, generating a mutual squeezing force. This squeezing force causes the two buffer springs 307 to begin to compress inward. Simultaneously, the buffer column 306 slides within the guide through-hole, with one end being received within the buffer cavity 303 and the other end extending through and out of the buffer cavity 303. As the buffer column 306 moves, the sliding plate 305 compresses the deformation plate 308. The contact area between the deformation plate 308 and the sliding plate 305 is deformed. The design of the deformation groove and the deformation cavity makes the deformation process smoother and effectively disperses the impact force. The deformation of the deformation plate 308 not only enhances the buffering effect, but also enables the sliding plate 305 to move smoothly from one side of the deformation plate 308 to the other side, providing a buffer for the subsequent complete fit. When the two electric folding mesh door bodies 3 are completely merged, the sealing plate 301 fits tightly, and the buffer spring 307 in the buffer assembly maintains a certain compression state, providing a buffer preparation for possible impact again. When the electric folding mesh door body 3 is to be stored, the buffer column 306 at the other end will contact the dustproof groove 103.Due to the presence of the buffer assembly, this contact process will also be buffered, reducing the impact force during storage. The buffer assembly effectively reduces the impact force when the two screen doors are merged through the dual effects of the buffer spring 307 and the deformation plate 308, protecting the door body and the guide rail 101 from damage. The smooth buffering process reduces the noise and vibration generated during merging, and improves the user experience. By absorbing the impact force and slowing down the merging speed, the buffer assembly extends the service life of the screen door and its related components. The deformation groove and deformation cavity design of the deformation plate 308 make the deformation process smoother and enhance the stability during the merging process. During the storage process, the contact between the buffer column 306 and the dustproof groove 103 is also buffered.
[0025] The working principle provided by the present invention is as follows: when ventilation is needed or mosquitoes are prevented from entering, the electric folding screen door body 3 slides outward along the guide rail 101 under the drive of the electric drive device until it completely covers the opening part of the door frame 1; when the screen door is not needed, the electric folding screen door body 3 slides inward along the guide rail 101 under the drive of the electric drive device, and gradually enters the storage cavity 102 on both sides of the inner cavity of the door frame 1; when the screen door is completely stored in the storage cavity 102, its opening is covered by the sealing plate 301, which effectively prevents dust from entering the storage cavity 102 and keeps the screen door clean; when not in use, the screen door can be completely stored in the door frame 1, does not occupy external space, and improves space utilization; when the two electric folding screen door bodies 3 begin to merge on the guide rail 101, the sealing plate 301 contacts first. The guide grooves 302 on the sealing plate 301 ensure smooth sliding on the guide rails 101, providing guidance for the merging process. As the two doors continue to merge, the buffer assemblies at the four corners of the sealing plate 301 begin to operate. The buffer columns 306 in the two buffer assemblies first come into contact, generating a mutual squeezing force. This squeezing force causes the two buffer springs 307 to begin to compress inward. Simultaneously, the buffer column 306 slides within the guide through-hole, with one end being received within the buffer cavity 303 and the other end extending through and out of the buffer cavity 303. As the buffer column 306 moves, the sliding plate 305 compresses the deformation plate 308. The contact area between the deformation plate 308 and the sliding plate 305 is deformed. The design of the deformation groove and the deformation cavity makes the deformation process smoother and effectively disperses the impact force. The deformation of the deformation plate 308 not only enhances the buffering effect, but also enables the sliding plate 305 to move smoothly from one side of the deformation plate 308 to the other side, providing a buffer for the subsequent complete fit. When the two electric folding mesh door bodies 3 are completely merged, the sealing plate 301 fits tightly, and the buffer spring 307 in the buffer assembly maintains a certain compression state, providing a buffer preparation for possible impact again. When the electric folding mesh door body 3 is to be stored, the buffer column 306 at the other end will contact the dustproof groove 103. Due to the presence of the buffer component, this contact process will also be buffered, reducing the impact force during storage. The buffer component effectively reduces the impact force when the two mesh doors are merged through the dual effects of the buffer spring 307 and the deformation plate 308, protecting the door body and the guide rail 101 from damage. The smooth buffering process reduces the noise and vibration generated during the merging, thereby improving the user experience.
[0026] The present invention covers any substitution, modification, equivalent method and scheme made on the essence and scope of the present invention; in order to make the public have a thorough understanding of the present invention, specific details are described in detail in the above preferred embodiments of the present invention, and those skilled in the art can fully understand the present invention without the description of these details.
[0027] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A hidden electric folding screen door, comprising a door frame (1) and a wall (2), characterized in that: The door frame (1) is fixedly connected to the inside of the wall (2); a door head (4) is fixedly connected to the top of the door frame (1); a door is hingedly connected to the inner wall of the door frame (1) facing the indoor room; guide rails (101) are provided on the top and bottom of the inner cavity of the door frame (1) facing the outdoor room; and an electric folding screen door body (3) is provided on the guide rails (101); A storage assembly, the storage assembly being used to store the electric folding screen door body (3), the storage assembly being connected to the door frame (1); A buffer component is provided, which is used to reduce the impact force when two screen doors are combined, and the buffer component is connected to the electric folding screen door body (3).
2. A hidden electric folding screen door according to claim 1, characterized in that: The storage assembly comprises storage cavities (102) opened on both sides of the inner cavity of the door frame (1), the two storage cavities (102) are respectively located at the two ends of the guide rail (101), and a dustproof groove (103) is opened at the opening of the storage cavity (102).
3. A hidden electric folding screen door according to claim 2, characterized in that: The buffer assembly comprises a sealing plate (301) arranged on the merging end of the electric folding screen door body (3); the top and bottom of the sealing plate (301) are both provided with guide grooves (302) adapted to the guide rail (101); the shape of the sealing plate (301) is adapted to the shape of the dustproof groove (103).
4. A hidden electric folding screen door according to claim 3, characterized in that: Buffer cavities (303) are provided inside the four corners of the sealing plate (301), and the top and bottom of the inner cavity of the buffer cavity (303) are fixedly connected to guide plates (304) arranged in the same direction as the buffer cavity (303), and sliding plates (305) are provided on the opposite surfaces of the two guide plates (304), and the two ends of the sliding plate (305) are respectively slidably connected to the outside of the two guide plates (304).
5. The hidden electric folding screen door according to claim 4, characterized in that: Buffer columns (306) are fixedly connected to both sides of the sliding plate (305), and side plates (309) are fixedly connected to the openings at both ends of the buffer cavity (303). A guide through hole matching the cross section of the buffer column (306) is provided inside the side plate (309).
6. The hidden electric folding screen door according to claim 5, characterized in that: A buffer spring (307) is fixedly connected between each side plate (309) and the sliding plate (305), and the buffer spring (307) is sleeved on the outside of the buffer column (306), and the dustproof groove (103) is located on the movement track of the buffer column (306).
7. The hidden electric folding screen door according to claim 6, characterized in that: Deformable plates (308) are fixedly connected to both sides of the inner cavity of the buffer cavity (303), one side of the deformable plate (308) is in contact with one side of the sliding plate (305), and the bottoms of both sides of the deformable plate (308) are provided with deformation grooves, and a deformation cavity is provided inside the contact portion between the deformable plate (308) and the sliding plate (305).