One door one scene fusion process structure

CN224770085UActive Publication Date: 2026-09-18WUYISHENJIANG DOOR CO LTD
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Patent Information

Application Number
CN202522270616.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-18
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0003]其中在门扇与门框之间的间隙中从内或从外能直接看出合页的金属部件,与门扇精心设计的艺术景观形成了严重的视觉冲突,将影响门扇与门框的美观,另外采用的外露式合页,其金属铰链和安装螺丝直接暴露在外,这构成了严重的安全缺陷,不法分子可以轻易地使用工具拆卸合页销轴或直接破坏外露的合页叶片,从而将整个门扇从门框上卸下,使得无论多坚固的门扇和多高级的门锁都形同虚设

Benefits of technology

1、连接结构完全隐藏在门框和门扇之间,由门扇的延伸边及门框遮挡,使门体表面简洁流畅,避免了传统合页的突兀感;边一和边二的垂直设计,结合直角腔和延伸边,确保了连接结构在门关闭时被全方位遮挡,即使从门缝处观察也无法看到合页,增强了整体美观性,同时连接结构隐藏在门框及门扇之间,外部工具难以插入撬动,提高了门整体安全性。

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Abstract

The utility model discloses a one door one scene fusion process structure, including door body, and the door body includes door frame and the door leaf that cooperates with door frame, and the inside of door frame has the edge one and edge two of vertical setting, the edge one has the hidden connecting structure between with door leaf, and the connecting structure includes the axis, and the blade one and blade two of rotation connection with the axis, and the door leaf edge has the extension edge for the connecting structure sheltering integrally, compared with prior art, the utility model's advantage lies in that connecting structure hides completely between door frame and door leaf, and the extension edge of door leaf and door frame shelter, make the surface of door body simple and smooth, avoid the conspicuous feeling of traditional hinge, the perpendicular design of edge one and edge two, combine right angle cavity and extension edge, have guaranteed that connecting structure is all -round sheltered when door closes, even if from the observation of door gap also can not see the hinge, has strengthened the overall aesthetic property, and connecting structure hides between door frame and door leaf, and external tool is difficult to insert and pry, has improved the door overall security.
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Description

Technical Field

[0001] This utility model relates to the field of door frame structure technology, and in particular to a process structure that integrates a door with a scene. Background Technology

[0002] In the field of modern architectural decoration, doors are not only functional components for spatial division and security, but their aesthetic value is also increasingly valued. These doors often feature unique decorative elements on their panels, enhancing the aesthetic style of the space.

[0003] The exposed metal hinge components, visible from either the inside or outside of the gap between the door leaf and the frame, create a serious visual clash with the carefully designed artistic landscape of the door leaf, affecting the aesthetics of both the door leaf and the frame. Furthermore, the exposed hinges, with their metal hinges and mounting screws directly exposed, constitute a serious security flaw. Criminals can easily use tools to disassemble the hinge pins or directly damage the exposed hinge blades, thus removing the entire door leaf from the frame, rendering even the most sturdy door leaf and the most advanced lock useless.

[0004] Secondly, existing doors often lack effective buffer structures at the contact points between the door leaf and the door frame. When the door is closed, especially with slightly greater force, the hard edge of the door leaf will collide violently and directly with the equally hard door frame, producing a loud impact sound. This noise not only disrupts the tranquility of the indoor environment and affects comfort, but in the long run, repeated rigid impacts may also cause the door leaf, door frame, or internal landscape structure to loosen, deform, or even be damaged.

[0005] In addition, the unique design of each door elevates the traditional entrance door from a single functional product to an important element that integrates aesthetics, personalization, and overall home design, unifying with the decoration style and achieving a seamless visual effect of "door and wall as one". Utility Model Content

[0006] In view of the problems mentioned above, the technical problem to be solved by this utility model is to provide a process structure that integrates a single scene with a single gate.

[0007] The technical solution adopted by this utility model to solve the above-mentioned technical problems is: a door-scene integrated process structure, including a door body, the door body including a door frame and a door leaf that cooperates with the door frame, and the inner side of the door frame has a vertically arranged side one and side two. There is a hidden connection structure between the edge and the door leaf. The connection structure includes a shaft, a blade 1 and a blade 2 that are rotatably connected to the shaft, and an extended edge integrally formed on the edge of the door leaf to cover the connection structure. A sealing structure is provided on the second side. The sealing structure includes a hollow rubber layer set on the second side and a hollow metal layer located inside the door frame. When the door is closed, the door squeezes the rubber layer, and the gas in the rubber layer moves into the metal layer.

[0008] A further preferred embodiment of this utility model is as follows: blade one is fixed and embedded in edge one, blade two is fixed and embedded in the side of the door leaf, and a right-angle cavity is provided on the inner side of the door frame, with the axis located in the right-angle cavity and the extended edge located on the outward side of the right-angle cavity.

[0009] A further preferred embodiment of this utility model is: the extension edge is made of metal and is used to cover the extension edge, and the extension edge can rotate along the axis within the right-angle cavity.

[0010] A further preferred embodiment of this utility model is: the metal layer is fixed inside the door frame, and one side of the metal layer has an integrally formed threaded tube extending therein, and the second side has a through hole penetrating the door frame, with the through hole and the threaded tube being arranged coaxially. The rubber layer is bonded to the second edge, and the bonding surface between the rubber layer and the second edge is provided with a threaded tube with a through hole. The threaded tube is connected to the interior of the rubber layer, and the threaded tube extends into the second threaded tube and is threadedly connected to the second threaded tube, for communication between the interior of the rubber layer and the interior of the metal layer.

[0011] A further preferred embodiment of this utility model is: the outer ring surface of the threaded tube one is integrally provided with a polygonal edge, the polygonal edge is located inside the through hole, and a sealing ring is provided between the polygonal edge and the metal layer to seal the edge between the threaded tube one and the threaded tube two.

[0012] A further preferred embodiment of this utility model is that the outer diameter of the polygonal side is smaller than the inner diameter of the through hole, and the thickness of the polygonal side is smaller than the depth of the through hole.

[0013] A further preferred embodiment of this utility model is that the metal layer, except for the threaded tube 2 which is connected to the outside, is a closed structure.

[0014] A further preferred embodiment of this utility model is that the rubber layer is expandable and can deform under pressure.

[0015] A further preferred embodiment of this utility model is: an exterior view layer is provided on the outside of the door frame, the exterior view layer including a frame plate fixed to the door frame and an aluminum alloy plate installed on the outside of the frame plate.

[0016] A further preferred embodiment of this utility model is: the rear end of the frame has a supporting skeleton, the frame has an installation opening, the rear end of the aluminum alloy plate has a bolt extending into the installation opening and threadedly connected to the skeleton, and the aluminum alloy plate is attached to the frame.

[0017] Compared with the prior art, the advantages of this utility model are: 1. The connecting structure is completely hidden between the door frame and the door leaf, concealed by the extended edge of the door leaf and the door frame, making the door surface clean and smooth, avoiding the abruptness of traditional hinges; the vertical design of the first and second edges, combined with the right-angle cavity and the extended edge, ensures that the connecting structure is completely concealed when the door is closed, and the hinges cannot be seen even when viewed from the door gap, enhancing the overall aesthetics. At the same time, the connecting structure is hidden between the door frame and the door leaf, making it difficult for external tools to insert and pry it, thus improving the overall security of the door.

[0018] 2. Through the sealing structure, when the door is closed, the rubber layer is squeezed so that the gas inside enters the metal layer through threaded tube one and threaded tube two, which transforms the instantaneous impact force into a smooth exhaust process, reducing the impact noise. The rubber layer can still fill the gap between the door and the door frame when the door is partially deformed, ensuring the seal and reducing the impact damage to the door structure.

[0019] 3. The rubber layer is connected by threaded tube one and threaded tube two, which facilitates the replacement of fatigued or aged rubber layers and reduces maintenance costs and time.

[0020] 4. By setting up an exterior layer, the decoration style can be directly unified, achieving a seamless visual effect of "door and wall integration". Attached Figure Description

[0021] The present invention will be further described in detail below with reference to the accompanying drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are drawn only for the purpose of explaining the preferred embodiments and therefore should not be regarded as a limitation on the scope of the present invention. In addition, unless otherwise specified, the drawings are only schematic representations of the composition or structure of the described objects and may contain exaggerated displays, and the drawings are not necessarily drawn to scale.

[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is an exploded view of the door frame and door leaf of this utility model; Figure 3 This is a partial structural diagram of the door frame of this utility model; Figure 4 This is a partial structural diagram of the door leaf of this utility model; Figure 5 This is a schematic diagram of the door frame and door leaf assembly structure of this utility model; Figure 6 This is a schematic diagram of the door leaf rotating along the connecting structure of this utility model; Figure 7 This is a schematic diagram of the sealing structure on the door frame of this utility model; Figure 8 This utility model Figure 7 A magnified schematic diagram of the structure of part A in the diagram; Figure 9 This is a schematic diagram of the polygonal side structure of this utility model; Figure 10 This is a schematic diagram of the outer layer structure of this utility model; Figure 11 This utility model Figure 10 A magnified schematic diagram of part B.

[0023] In the diagram: 1. Door body; 2. Door frame; 21. Side 1; 22. Side 2; 23. Right-angle cavity; 24. Through hole; 3. Door leaf; 31. Extended side; 4. Connecting structure; 41. Axis; 42. Blade 1; 43. Blade 2; 5. Sealing structure; 51. Rubber layer; 52. Threaded pipe 1; 53. Polygonal side; 54. Threaded pipe 2; 55. Metal layer; 6. Exterior layer; 61. Shelf; 62. Mounting port; 63. Frame; 64. Aluminum alloy plate. Detailed Implementation

[0024] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are merely descriptive and exemplary and should not be construed as limiting the scope of protection of the present invention.

[0025] It should be noted that similar labels in the following figures indicate similar items; therefore, once an item is defined in one figure, it may not be further defined and explained in subsequent figures.

[0026] This embodiment mainly describes the process structure of integrating a single gate and a single scene. Please refer to [link / reference]. Figures 1-11 Specifically, as follows: In order to better integrate the door with the scenery, it is necessary to improve the hinges of most of the existing doors so that they can be hidden between the door frame 2 and the door leaf 3 to avoid exposure. At the same time, after the door frame 2 and the door leaf 3 have been used for a long time, the rubber layer 51 between them needs to be improved to avoid producing a loud noise when the door is closed, and to avoid the door leaf 3, the door frame 2 or the internal landscape structure from becoming loose, deformed or even damaged. A door-scene integration process structure is proposed, including a door body 1, which includes a door frame 2 and a door leaf 3 that cooperates with the door frame 2. The inner side of the door frame 2 has a vertically arranged side 1 21 and side 2 22. There is a hidden connection structure 4 between the edge 21 and the door leaf 3. The connection structure 4 includes a shaft 41, a blade 42 and a blade 43 rotatably connected to the shaft 41, and the edge of the door leaf 3 has an integral extended edge 31 for covering the connection structure 4. A sealing structure 5 is provided on side 22. The sealing structure 5 includes a hollow rubber layer 51 provided on side 22 and a hollow metal layer 55 located inside the door frame 2. When the door leaf 3 is closed, the door leaf 3 squeezes the rubber layer 51, and the gas in the rubber layer 51 moves into the metal layer 55.

[0027] Specifically, by setting the door frame 2 to have side 1 21 and side 2 22, and side 1 21 to have a hidden connection structure 4 between the door leaf 3, the connection structure 4 will be hidden between the door leaf 3 and the door frame 2 when the door is closed. At the same time, even if it extends along the door seam, it will not come into contact with the connection structure 4, so that the connection structure 4 is well hidden, improving security and better conforming to the integration of one door and one scene. Secondly, the sealing structure 5 acts as a buffer for the door leaf 3 when the door is closed, minimizing the generation of excessive noise.

[0028] like Figures 3-6 As shown, blade 42 is fixed and embedded in edge 21, blade 43 is fixed and embedded in the side of door leaf 3, and a right-angle cavity 23 is provided on the inner side of door frame 2. The axis 41 is located in the right-angle cavity 23, and the extension edge 31 is located on the outward side of the right-angle cavity 23.

[0029] Specifically, the front and rear extension directions of side 21 are side 22 and extension side 31, respectively. Therefore, the front and rear extension directions of the connecting structure 4 located outside side 21 are blocked to prevent it from being seen through the door gap. At the same time, even if the door gap is extended, it will not come into contact with the connecting structure 4 and will not be easily considered damaged.

[0030] like Figure 5 As shown, the extension edge 31 is made of metal and is used to cover the extension edge 31. The extension edge 31 can rotate along the axis 41 within the right-angle cavity 23.

[0031] Specifically, the extension edge 31 is used to shield the connecting structure 4. In order to avoid affecting the rotation of the extension edge 31 and allow the door 3 to open normally, there is a gap between the extension edge 31 and the right-angle cavity 23. Due to the narrowness of the gap, even if criminals want to pry it open, it is difficult for them to extend their tools into the gap between the extension edge 31 and the right-angle cavity 23. Even if they can extend their tools into the gap between the extension edge 31 and the right-angle cavity 23, the tools may not be strong enough to deform the extension edge 31.

[0032] like Figures 7-9 As shown, the metal layer 55 is fixed inside the door frame 2. One side of the metal layer 55 has an integrally formed threaded tube 2 54 extending inside it. The side 22 has a through hole 24 penetrating the door frame 2. The through hole 24 and the threaded tube 2 54 are arranged coaxially. The rubber layer 51 is bonded to the second side 22. The bonding surface of the rubber layer 51 and the second side 22 is provided with a threaded tube 52 through a through hole 24. The threaded tube 52 communicates with the interior of the rubber layer 51. The threaded tube 52 extends into the second threaded tube 54 and is threadedly connected to the second threaded tube 54, which is used to communicate between the interior of the rubber layer 51 and the interior of the metal layer 55.

[0033] Specifically, the rubber layer 51 acts as a buffer when the door 3 is closed. At the same time, it is connected to the metal layer 55 through the threaded tube 1 52 and the threaded tube 2 54. When the rubber layer 51 is compressed, the gas inside it moves into the metal layer 55. When the door 3 is closed, a compression and exhaust process is generated. The violent and instantaneous impact force is transformed into a relatively slow and stable exhaust force, which greatly reduces the impact force and reduces the impact noise.

[0034] like Figures 8-9 As shown, the outer ring surface of threaded tube 1 52 has an integral polygonal edge 53, which is located inside the through hole 24, and a sealing ring is provided between the polygonal edge 53 and the metal layer 55 to seal the edge between threaded tube 1 52 and threaded tube 2 54.

[0035] Specifically, the polygonal edge 53 can be clamped and rotated by external equipment, so that the threaded tube 1 52 and the threaded tube 2 54 are disengaged, and the rubber layer 51 can be removed and replaced. It should be noted that when the polygonal edge 53 rotates, the rubber layer 51 also rotates. Therefore, the number of thread turns needs to be set relatively small to avoid the rubber layer 51 being difficult to restore after being twisted.

[0036] The outer diameter of the polygonal edge 53 is smaller than the inner diameter of the through hole 24, and the thickness of the polygonal edge 53 is smaller than the depth of the through hole 24. The polygonal edge 53 can be located inside the through hole 24, thus avoiding affecting the compression of the rubber layer 51. External tools can also be extended into the through hole 24 to rotate the polygonal edge 53.

[0037] Except for the threaded pipe 54 which is connected to the outside, the metal layer 55 is a closed structure.

[0038] Specifically, this allows the gas inside the rubber layer 51 to be discharged into the metal layer 55, resulting in relatively large deformation of the rubber layer 51. At the same time, even if the door leaf 3 undergoes local deformation, the rubber layer 51 can still ensure that it fills the space between the door leaf 3 and the door frame 2.

[0039] The rubber layer 51 is expandable and can be deformed under pressure. The deformation of the rubber layer 51 will result in a concave-convex shape in the local deformation of the door leaf 3, which can fill the gap between the door leaf 3 and the door frame 2.

[0040] like Figures 10-11 As shown, an exterior view layer 6 is also provided on the outside of the door frame 2. The exterior view layer 6 includes a frame plate 61 fixed to the door frame 2 and an aluminum alloy plate 64 installed on the outside of the frame plate 61.

[0041] The rear end of the frame plate 61 has a supporting skeleton 63, and the frame plate 61 has an installation port 62. The rear end of the aluminum alloy plate 64 has bolts that extend into the installation port 62 and are threadedly connected to the skeleton 63. The aluminum alloy plate 64 is attached to the frame plate 61.

[0042] Specifically, by attaching aluminum alloy plate 64 to the outside of frame plate 61, the decoration style is directly unified, achieving a seamless visual effect of "door and wall integration".

[0043] Working principle: Firstly, such as Figures 5-6 The image shows two states: open and closed. When the door is closed... Figure 5 As shown, when opening the door... Figure 6 As shown; When door 3 is closed: the connecting structure 4 is located on one side of side 21, so its inner and outer directions are blocked by side 22 and the extension side 31 respectively. The door frame 2 is directly cast and fixed to the building. The side of the connecting structure 4 blocked by side 22 cannot be broken with simple tools. On the side blocked by the extension side 31, although there is a certain gap between the extension side 31 and the right-angle cavity 23, the gap is so narrow that it is difficult to pry it open even with external tools. It should be noted that the tool that can extend to the gap between the extension side 31 and the right-angle cavity 23 needs to be relatively narrow and its strength will be limited. Therefore, even if it can extend to the gap, it is difficult to pry open the extension side 31. When the door leaf 3 is opened: the extension edge 31 rotates along the axis 41 and the extension edge 31 is located in the right-angle cavity 23. The existence of the gap will not affect the rotation. Secondly, when the door leaf 3 is opened, the connecting structure 4 is directly exposed, which makes it easy to replace the connecting structure 4.

[0044] Secondly, when the door leaf 3 is closed by impact, the door leaf 3 will push the rubber layer 51 on the second side 22, and the rubber layer 51 will deform. This process will absorb most of the impact kinetic energy generated when closing the door. Furthermore, when the door leaf 3 squeezes the hollow rubber layer 51, it will compress the air inside it. The gas enters the metal layer 55 through the first threaded pipe 52 and the second threaded pipe 54, generating a compression and exhaust process. The violent and instantaneous impact force is transformed into a relatively slow and stable exhaust, which greatly reduces the impact force and reduces the impact sound. Secondly, since the gas inside the rubber layer 51 can be discharged, the rubber layer 51 can deform over a large range, which greatly reduces the peak stress that the rubber bears at the moment of deformation. Even if the door leaf 3 undergoes local deformation, the rubber layer 51 can ensure that it fills the gap between the door leaf 3 and the door frame 2. In addition, it can be separated by the threaded tube 1 52 and the threaded tube 2 54, so that the rubber layer 51 can be quickly replaced even after fatigue.

[0045] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use. They are only for the convenience of describing this utility model 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. Therefore, they should not be construed as limitations on this utility model.

[0046] The above provides a detailed description of the integrated process structure for one door and one scene provided by this utility model. Specific examples have been used to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand this utility model and its core ideas. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A door and view one fusion process structure, comprising a door body, the door body comprising a door frame and a door leaf matched with the door frame, characterized in that, The inner side of the door frame has two vertically arranged sides, Side 1 and Side 2. There is a hidden connection structure between the edge and the door leaf. The connection structure includes a shaft, a blade 1 and a blade 2 that are rotatably connected to the shaft, and an extended edge integrally formed on the edge of the door leaf to cover the connection structure. A sealing structure is provided on the second side. The sealing structure includes a hollow rubber layer set on the second side and a hollow metal layer located inside the door frame. When the door is closed, the door squeezes the rubber layer, and the gas in the rubber layer moves into the metal layer.

2. The one-door-one-view fusion process structure according to claim 1, wherein, Leaf 1 is fixed and embedded in edge 1, leaf 2 is fixed and embedded in the side of the door leaf, and a right-angle cavity is provided on the inner side of the door frame, with the axis located in the right-angle cavity and the extended edge located on the outward side of the right-angle cavity.

3. The one-door-one-view fusion process structure according to claim 2, wherein, The extension edge is made of metal and is used to cover the extension edge. The extension edge can rotate along the axis within the right-angle cavity.

4. The integrated process structure for one gate and one scene according to claim 2, characterized in that, The metal layer is fixed inside the door frame. One side of the metal layer has an integrally formed threaded tube extending from it. The second side has a through hole that penetrates the door frame. The through hole is set coaxially with the threaded tube. The rubber layer is bonded to the second edge, and the bonding surface between the rubber layer and the second edge is provided with a threaded tube with a through hole. The threaded tube is connected to the interior of the rubber layer, and the threaded tube extends into the second threaded tube and is threadedly connected to the second threaded tube, for communication between the interior of the rubber layer and the interior of the metal layer.

5. The one-door-one-view fusion process structure of claim 4, wherein, The outer ring of threaded tube one has a polygonal edge integrally located inside the through hole, and there is a sealing ring between the polygonal edge and the metal layer to seal the edge between threaded tube one and threaded tube two.

6. The one-door-one-view fusion process structure of claim 5, wherein, The outer diameter of the polygon's side is smaller than the inner diameter of the through hole, and the thickness of the polygon's side is smaller than the depth of the through hole.

7. The one-door-one-view fusion process structure of claim 4, wherein, Except for the threaded pipe 2 which is connected to the outside, the rest of the metal layer is a closed structure.

8. The one-door-one-view fusion process structure of claim 4, wherein, The rubber layer is expandable and can deform under pressure.

9. The one-door-one-view fusion process structure of claim 1, wherein, The outside of the door frame is also provided with an exterior view layer, which includes a frame plate fixed to the door frame and an aluminum alloy plate installed on the outside of the frame plate.

10. The one-door-one-view fusion process structure of claim 9, wherein, The rear end of the frame has a supporting skeleton, and the frame has an installation opening. The rear end of the aluminum alloy plate has bolts that extend into the installation opening and are threadedly connected to the skeleton. The aluminum alloy plate is attached to the frame.