High-rise system door and window capable of preventing water seepage

By introducing fixed components and sealing components into doors and windows, the problems of unstable connections and gaps in the sealing cover plate are solved, and stable connection and sealing effects are achieved, preventing water seepage and improving sound insulation.

CN223075438UActive Publication Date: 2025-07-08JIANGSU BOCHI CONSTR TECH CO LTD
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Patent Information

Application Number
CN202422187368.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-08
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

In the prior art, the connection between the sealing cover plate and the main fixing frame is unstable, and there is a gap between the oblique support strip and the auxiliary glass, resulting in poor sealing and inconvenient cleaning.

Method used

The fixing assembly and sealing assembly are adopted. The fixing assembly realizes a stable connection between the horizontal insert and the snap groove through the fitting of the abutment member and the spring. The sealing assembly seals the gap between the oblique support strip and the built-in mechanism through the fitting of the L-shaped rod and the spring, enhancing the connection stability and sealing.

Benefits of technology

The connection stability between the sealing cover plate and the main fixing frame is improved, impurities in the gap are avoided, sealing and sound insulation are improved, and water seepage is prevented.

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Abstract

The utility model discloses a high-rise system door and window capable of preventing water seepage, which belongs to the technical field of doors and windows and comprises a main fixing frame, and a built-in mechanism is arranged in the main fixing frame. The fixing assembly is arranged, the end cover is rotated to drive the threaded disc to rotate to be away from the abutting groove, then the abutting rod is taken from the outside, the abutting rod is inserted into the abutting groove, the abutting rod pushes the edge strip to move, the edge strip moves to drive the fixing rod to move, the fixing rod moves to extrude the first spring, and then the horizontal inserting strip is movably inserted into the buckling groove. Then the abutting rod is pulled out, the first spring loses the external force and restores to the original appearance, the fixing rod is driven to be movably inserted into the fixing groove, under the cooperation of the fixing rod and the fixing groove, the horizontal inserting strip and the buckling groove can be inserted and fixed, and the connecting stability of the horizontal inserting strip and the buckling groove is guaranteed; therefore, the connection stability of the sealing cover plate and the main fixing frame can be improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of doors and windows, and particularly relates to a high-rise system door and window for preventing water seepage. Background Technique

[0002] Doors and windows are the entrances and exits of buildings, used for separating the interior and exterior, ventilation, lighting and other functions. Doors and windows usually consist of door leaves, window sashes, window frames, hardware, etc. According to different requirements and uses, the types and materials of doors and windows are also different.

[0003] Chinese Patent Application No. 202321115542.4 discloses a water-proof seepage door and window with strong sealing performance, which relates to the field of doors and windows and includes a main fixed frame. Sealing covers are evenly buckled on both sides of the main fixed frame. A main window frame body is buckled on one side of the main fixed frame. An isolation glass is fixedly clamped on the inner side of the main window frame body. A handle rod is clamped on one side of the main window frame body. A buckling side groove is opened on one side of the main fixed frame. A sealing strip is fixedly clamped on the inner side of the buckling side groove. A through side groove is opened on the side of the main fixed frame. A docking strip is fixedly clamped on the inner side of the through side groove. An inclined support strip is horizontally and fixedly clamped on the inner bottom surface of the through side groove. The adopted wrapped buckling structure effectively forms a sealing effect at the gap position with the wall, greatly reducing the risk of water seepage at the gap position. At the same time, multiple isolation and sealing structures make the overall sealing performance better.

[0004] In the above patent, the sealing cover is directly inserted and fixed with the water strip insert through the buckling groove, which easily affects the connection stability between the sealing cover and the main fixed frame, and thus easily causes the sealing cover to fall off. In addition, there is a gap between the inclined support strip and the auxiliary glass, and sundries in the external environment are likely to fall into the gap, making it inconvenient to clean the sundries later. Content of the Utility Model

[0005] To solve the problems raised in the above background technique, the utility model provides a high-rise system door and window for preventing water seepage, which has the characteristics of plug-in fixation and sealing protection.

[0006] To achieve the above object, the utility model provides the following technical solution: A high-rise system door and window for preventing water seepage, including a main fixed frame, an internal mechanism is arranged inside the main fixed frame, an inclined support strip is connected to one side of the internal mechanism inside the main fixed frame, sealing covers are arranged on both sides of the main fixed frame, a horizontal insert is connected to the side of the sealing cover close to the main fixed frame, a buckling groove is arranged inside the main fixed frame corresponding to the position of the horizontal insert, a sealing component is arranged inside the inclined support strip, and a fixing component is arranged between the horizontal insert and the buckling groove.

[0007] Preferably, the fixing component includes a side strip, an abutting member, a fixing groove, a fixing rod, a first spring and a storage groove. A storage groove is arranged inside the horizontal insertion strip, a fixing rod is inserted inside the storage groove, a first spring is connected between the fixing rod and the storage groove, a side strip is connected to the side wall of the fixing rod, a fixing groove is arranged on the inner side wall of the buckling groove at a position corresponding to the fixing rod, and an abutting member is arranged on the sealing cover plate at a position corresponding to the side strip.

[0008] Preferably, the abutting member includes an abutting groove, an end cover and a threaded disc. An abutting groove is arranged inside the sealing cover plate, a threaded disc is connected to one end inside the abutting groove, and an end cover is connected to one end of the threaded disc.

[0009] Preferably, a sealing ring is connected to one side of the end cover close to the sealing cover plate, and a sealing groove is arranged inside the sealing cover plate at a position corresponding to the sealing ring.

[0010] Preferably, the sealing component includes an L-shaped rod, a sealing plate, a moving groove and a second spring. A moving groove is arranged inside the inclined support strip, an L-shaped rod is inserted inside the moving groove, a second spring is connected between the L-shaped rod and the moving groove, and a sealing plate is connected to one end of the L-shaped rod.

[0011] Preferably, limiting sliders are connected to both sides of one end of the L-shaped rod close to the moving groove, and limiting sliding grooves are arranged on the inner side wall of the moving groove at positions corresponding to the limiting sliders.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] 1. The present utility model is provided with a fixing component. Rotate the end cover to drive the threaded disc to rotate away from the abutting groove, then take the abutting rod from the outside and insert the abutting rod into the abutting groove. The abutting rod pushes the side strip to move. The movement of the side strip drives the fixing rod to move. The movement of the fixing rod compresses the first spring. Then move the horizontal insertion strip and insert it into the buckling groove. Then pull out the abutting rod. The first spring loses the external force and returns to its original state, driving the fixing rod to move and insert into the fixing groove. With the cooperation of the fixing rod and the fixing groove, the horizontal insertion strip and the buckling groove can be inserted and fixed, ensuring the stability of the connection between the horizontal insertion strip and the buckling groove, and further improving the stability of the connection between the sealing cover plate and the main fixing frame.

[0014] 2. The present utility model is provided with a sealing component. After installing the built-in mechanism into the main fixing frame, the sealing plate is displaced under the extrusion of the built-in mechanism. The movement of the sealing plate drives the L-shaped rod to move inside the moving groove. The movement of the L-shaped rod compresses the second spring. Under the action of the sealing plate, the gap between the built-in mechanism and the inclined support strip can be sealed, preventing dust and other impurities in the subsequent external environment from falling into the gap between the built-in mechanism and the inclined support strip, causing inconvenience in subsequent cleaning. Description of the Drawings

[0015] Figure 1 is a schematic structural diagram of the present utility model;

[0016] Figure 2 is a cross-sectional view of the present utility model;

[0017] Figure 3 is the present utility model Figure 2 a magnified view of part A in;

[0018] Figure 4 is a cross-sectional view of the sealing cover plate of the present utility model;

[0019] Figure 5 is the present utility model Figure 4 a magnified view of part B in;

[0020] Figure 6 is a cross-sectional view of the inclined support bar of the present utility model;

[0021] Figure 7 is the present utility model Figure 6 a magnified view of part C in.

[0022] In the figure: 1. Sealing cover plate; 2. Main fixing frame; 3. Built-in mechanism; 4. Horizontal insertion bar; 5. Buckling groove; 6. Inclined support bar; 7. Fixing component; 71. Edge bar; 72. Abutting member; 721. Abutting groove; 722. End cover; 723. Threaded disc; 73. Fixing groove; 74. Fixing rod; 75. First spring; 76. Receiving groove; 8. Sealing component; 81. L-shaped rod; 82. Sealing plate; 83. Moving groove; 84. Second spring. Specific embodiments

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0024] Embodiment 1

[0025] Please refer to Figure 1-7, the present utility model provides the following technical solutions: A high-rise system door and window for preventing water seepage, including a main fixed frame 2, an internal mechanism 3 is arranged inside the main fixed frame 2, a diagonal support bar 6 is connected to one side of the internal mechanism 3 inside the main fixed frame 2, sealing covers 1 are arranged on both sides of the main fixed frame 2, a horizontal insertion bar 4 is connected to the side of the sealing cover 1 close to the main fixed frame 2, a buckling groove 5 is arranged inside the main fixed frame 2 at a position corresponding to the horizontal insertion bar 4, a sealing assembly 8 is arranged inside the diagonal support bar 6, and a fixing assembly 7 is arranged between the horizontal insertion bar 4 and the buckling groove 5.

[0026] Specifically, the fixing assembly 7 includes a side bar 71, an abutting member 72, a fixing groove 73, a fixing rod 74, a first spring 75 and a receiving groove 76. A receiving groove 76 is arranged inside the horizontal insertion bar 4, a fixing rod 74 is inserted into the receiving groove 76, a first spring 75 is connected between the fixing rod 74 and the receiving groove 76, a side bar 71 is connected to the side wall of the fixing rod 74, a fixing groove 73 is arranged on the inner side wall of the buckling groove 5 at a position corresponding to the fixing rod 74, and an abutting member 72 is arranged on the sealing cover 1 at a position corresponding to the side bar 71.

[0027] By adopting the above technical solutions, the abutting member 72 drives the side bar 71 to move, the side bar 71 moves to drive the fixing rod 74 to move and be received into the receiving groove 76, the fixing rod 74 moves to compress the first spring 75, then the horizontal insertion bar 4 is moved and inserted into the buckling groove 5, and then the abutting operation of the abutting member 72 on the side bar 71 is released. The first spring 75 loses the external force and returns to its original shape, driving the fixing rod 74 to move and be inserted into the fixing groove 73. With the cooperation of the fixing rod 74 and the fixing groove 73, the horizontal insertion bar 4 and the buckling groove 5 can be inserted and fixed, ensuring the stability of the connection between the horizontal insertion bar 4 and the buckling groove 5, and further improving the stability of the connection between the sealing cover 1 and the main fixed frame 2.

[0028] Specifically, the abutting member 72 includes an abutting groove 721, an end cover 722 and a threaded disc 723. An abutting groove 721 is arranged inside the sealing cover 1, a threaded disc 723 is connected to one end inside the abutting groove 721, and an end cover 722 is connected to one end of the threaded disc 723.

[0029] By adopting the above technical solutions, rotating the end cover 722 drives the threaded disc 723 to rotate away from the abutting groove 721, then a abutting rod is taken from the outside and inserted into the abutting groove 721. When the abutting rod moves and fits against the side wall of the side bar 71, the abutting rod can push the side bar 71 to move, thereby facilitating the movement operation of the fixing rod 74.

[0030] Specifically, a sealing ring is connected to the side of the end cover 722 close to the sealing cover 1, and a sealing groove is arranged inside the sealing cover 1 at a position corresponding to the sealing ring.

[0031] By adopting the above technical solution, after the threaded disc 723 is threadedly connected to the inside of the abutting groove 721, the end cover 722 moves and fits against the side wall of the sealing cover plate 1, and the sealing ring is then clamped into the sealing groove. With the cooperation of the sealing ring and the sealing groove, it is possible to prevent a gap from existing between the end cover 722 and the sealing cover plate 1, and thus it is possible to prevent external rainwater from falling into the threaded connection between the threaded disc 723 and the abutting groove 721, causing rust at the threaded connection between the threaded disc 723 and the abutting groove 721.

[0032] When this embodiment is in use, the main fixing frame 2 is fixedly installed at the inner side edge position of the window opening of a high-rise building. Then, the end cover 722 is rotated to drive the threaded disc 723 to rotate away from the abutting groove 721. Then, the abutting rod is taken from the outside and inserted into the abutting groove 721. When the abutting rod moves and fits against the side wall of the side strip 71, the abutting rod can push the side strip 71 to move. The movement of the side strip 71 drives the fixing rod 74 to move and be received into the receiving groove 76. The movement of the fixing rod 74 compresses the first spring 75. Then, the horizontal insert 4 is moved and inserted into the fastening groove 5. Then, the abutting operation of the abutting member 72 on the side strip 71 is released. The first spring 75 returns to its original shape without external force, driving the fixing rod 74 to move and be inserted into the fixing groove 73. With the cooperation of the fixing rod 74 and the fixing groove 73, the horizontal insert 4 and the fastening groove 5 can be inserted and fixed, ensuring the stability of the connection between the horizontal insert 4 and the fastening groove 5. Furthermore, the stability of the connection between the sealing cover plate 1 and the main fixing frame 2 can be improved, enabling multiple sealing cover plates 1 to be fastened and arranged at the connection gap position between the side of the window wall and the main fixing frame 2. Then, the built-in mechanism 3 is installed inside the main fixing frame 2. Under the action of the built-in mechanism 3, the sound insulation and sealing performance are further improved. At the same time, under the guidance of the inclined support strip 6 at the bottom, rainwater is drained downward, achieving the purpose of preventing water seepage.

[0033] Embodiment 2

[0034] The difference between this embodiment and Embodiment 1 is that: the sealing assembly 8 includes an L-shaped rod 81, a sealing plate 82, a moving groove 83, and a second spring 84. A moving groove 83 is provided inside the inclined support strip 6. The L-shaped rod 81 is inserted into the moving groove 83. A second spring 84 is connected between the L-shaped rod 81 and the moving groove 83. One end of the L-shaped rod 81 is connected to the sealing plate 82.

[0035] Specifically, both sides of the end of the L-shaped rod 81 close to the moving groove 83 are connected with limit sliders. Limit sliding grooves are provided on the inner side wall of the moving groove 83 at positions corresponding to the limit sliders.

[0036] By adopting the above technical solution, the movement of the L-shaped rod 81 drives the limit sliders to move inside the limit sliding grooves. When the limit sliders move and fit against the side walls of the limit sliding grooves, the limit sliders are blocked and stop moving. Furthermore, the L-shaped rod 81 can be prevented from continuing to move, avoiding the L-shaped rod 81 from disengaging from the moving groove 83.

[0037] When in use in this embodiment, after the built-in mechanism 3 is installed inside the main fixed frame 2, the sealing plate 82 is displaced under the extrusion of the built-in mechanism 3. The movement of the sealing plate 82 drives the L-shaped rod 81 to move inside the movement groove 83. The movement of the L-shaped rod 81 squeezes the second spring 84. Under the action of the sealing plate 82, the gap between the built-in mechanism 3 and the inclined support bar 6 can be sealed, preventing dust and other impurities in the subsequent external environment from falling into the gap between the built-in mechanism 3 and the inclined support bar 6, which may cause inconvenience in subsequent cleaning.

[0038] In this utility model, the structure and principle of the built-in mechanism 3 composed of the main window frame body, insulating glass, handle rod, buckling side groove, sealing strip, through side groove, docking strip, matching side frame, auxiliary glass, rotating block, moving strip, and buckling convex block have been disclosed in a waterproof and airtight window with strong sealing performance with Chinese Patent Application No. 202321115542.4. Its working principle is as follows: A buckling side groove is provided on one side edge of the main fixed frame 2, and a sealing strip is fixedly clamped on the inner side edge of the buckling side groove. A through side groove is provided on the side edge of the main fixed frame 2, and a docking strip is fixedly clamped on the inner side edge of the through side groove. The buckling side groove is opened in a square shape at the inner side edge of an opening of the main fixed frame 2. The inside of the through side groove and the buckling side groove are kept in communication with each other. The inclined support bar 6 is fixedly connected to the inner bottom surface of the through side groove. The inside of the buckling side groove is connected with the main window frame body through a hinge. The inside of the main window frame body is connected with insulating glass. A matching side frame is welded on one side edge of the main window frame body. An auxiliary glass is fixedly clamped on the inner side edge of the matching side frame. A rotating block is clamped on the inner side edge of the main window frame body. A moving strip is vertically clamped on one side edge of the main window frame body. A buckling convex block is bolted and fixed on the side edge of the moving strip away from the main window frame body. The auxiliary glass and the insulating glass are arranged in a parallel state. The rotating block is fixedly arranged at the position on the inner side of the main window frame body far from the hinge side edge, and the rotating block and the moving strip are kept in mechanical connection. The buckling convex blocks are respectively clamped inside the locking clasps on the inner side of the buckling side groove. When in use, the sound insulation and sealing performance are further improved under the isolation of the auxiliary glass. Under the guidance of the inclined support bar 6 at the bottom, rainwater is drained downward. Under the sealing structure of the sealing strip and the docking strip, the overall sealing and waterproof performance is stronger, preventing rainwater from penetrating into the internal space.

[0039] Working principle and usage process of the utility model: The utility model fixes and installs the main fixed frame 2 at the inner side edge position of the window opening of a high-rise building. Then, rotate the end cover 722 to drive the threaded disc 723 to rotate away from the abutting groove 721. Then, take the abutting rod from the outside and insert the abutting rod into the abutting groove 721. When the abutting rod moves and fits against the side wall of the side strip 71, the abutting rod can push the side strip 71 to move. The movement of the side strip 71 drives the fixed rod 74 to move and be received into the storage groove 76. The movement of the fixed rod 74 compresses the first spring 75. Then, move the horizontal insert 4 and insert it into the buckling groove 5. Then, release the abutting operation of the abutting member 72 on the side strip 71. The first spring 75 loses the external force and returns to its original state, driving the fixed rod 74 to move and be inserted into the fixed groove 73. With the cooperation of the fixed rod 74 and the fixed groove 73, the horizontal insert 4 and the buckling groove 5 can be inserted and fixed, ensuring the stability of the connection between the horizontal insert 4 and the buckling groove 5. Furthermore, the stability of the connection between the sealing cover plate 1 and the main fixed frame 2 can be improved, so that a plurality of sealing cover plates 1 are buckled and arranged at the connection gap position between the side wall of the window opening and the main fixed frame 2. Then, install the built-in mechanism 3 into the main fixed frame 2. After installing the built-in mechanism 3 into the main fixed frame 2, the sealing plate 82 is displaced under the extrusion of the built-in mechanism 3. The movement of the sealing plate 82 drives the L-shaped rod 81 to move in the movement groove 83. The movement of the L-shaped rod 81 compresses the second spring 84. Under the action of the sealing plate 82, the gap between the built-in mechanism 3 and the inclined support bar 6 can be sealed, preventing dust and other impurities in the subsequent external environment from falling into the gap between the built-in mechanism 3 and the inclined support bar 6, which may cause inconvenience in subsequent cleaning. Under the action of the built-in mechanism 3, the sound insulation and sealing performance are further improved. At the same time, under the guidance of the inclined support bar 6 at the bottom, the rainwater is guided downward for drainage, achieving the purpose of preventing water seepage.

[0040] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A high-rise system door and window for preventing water seepage, comprising a main fixed frame (2), an internal mechanism (3) is arranged inside the main fixed frame (2), a diagonal support bar (6) is connected to one side of the internal mechanism (3) inside the main fixed frame (2), sealing cover plates (1) are arranged on both sides of the main fixed frame (2), a horizontal insertion strip (4) is connected to the side of the sealing cover plate (1) close to the main fixed frame (2), and a buckling groove (5) is arranged inside the main fixed frame (2) at a position corresponding to the horizontal insertion strip (4), characterized in that: A sealing component (8) is arranged inside the inclined support bar (6), and a fixing component (7) is arranged between the horizontal insertion bar (4) and the buckling groove (5).

2. The high-rise system doors and windows for preventing water seepage according to claim 1, characterized in that: The fixing component (7) includes a side bar (71), an abutting member (72), a fixing groove (73), a fixing rod (74), a first spring (75) and a receiving groove (76). A receiving groove (76) is arranged inside the horizontal insertion bar (4), a fixing rod (74) is inserted inside the receiving groove (76), a first spring (75) is connected between the fixing rod (74) and the receiving groove (76), a side bar (71) is connected to the side wall of the fixing rod (74), a fixing groove (73) is arranged on the inner side wall of the buckling groove (5) at a position corresponding to the fixing rod (74), and an abutting member (72) is arranged on the sealing cover plate (1) at a position corresponding to the side bar (71).

3. The high-rise system doors and windows for preventing water seepage according to claim 2, characterized in that: The abutting member (72) includes an abutting groove (721), an end cover (722) and a threaded disc (723). An abutting groove (721) is arranged inside the sealing cover plate (1), a threaded disc (723) is connected to one end inside the abutting groove (721), and an end cover (722) is connected to one end of the threaded disc (723).

4. The high-rise system doors and windows for preventing water seepage according to claim 3, characterized in that: A sealing ring is connected to one side of the end cover (722) close to the sealing cover plate (1), and a sealing groove is arranged inside the sealing cover plate (1) at a position corresponding to the sealing ring.

5. A high-rise system door and window for preventing water seepage according to claim 1, characterized in that: The sealing component (8) includes an L-shaped rod (81), a sealing plate (82), a moving groove (83) and a second spring (84). A moving groove (83) is arranged inside the inclined support bar (6), an L-shaped rod (81) is inserted inside the moving groove (83), a second spring (84) is connected between the L-shaped rod (81) and the moving groove (83), and a sealing plate (82) is connected to one end of the L-shaped rod (81).

6. The high-rise system doors and windows for preventing water seepage according to claim 5, characterized in that: Limit sliders are connected to both sides of one end of the L-shaped rod (81) close to the moving groove (83), and limit sliding grooves are arranged on the inner side wall of the moving groove (83) at positions corresponding to the limit sliders.

Citation Information

Patent Citations

  • Seepage-proof door and window with high sealing performance

    CN220014880U