Energy-saving horizontal sliding window for building heat preservation

By setting the drain port on the bottom surface of the aluminum alloy door and window frame and combining the design of gear rails and sealing gaskets, the problem of insufficient sealing and waterproofing of aluminum alloy door and windows is solved, and the thermal insulation performance and waterproofing performance are improved.

CN223202978UActive Publication Date: 2025-08-08SHAANXI HISTORIC STYLE BUILDING & GARDEN CONSTR GRP CO LTD
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Patent Information

Application Number
CN202422456957.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-08-08
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

The existing aluminum alloy doors and windows have insufficient sealing and waterproofness, resulting in poor insulation performance, and rainwater can easily enter the inside of the window frame, causing indoor humidity.

Method used

An aluminum alloy door and window structure is designed, the bottom surface of the door and window frame is arranged inclined and equipped with a drain port. Combined with the use of gear rails and sealing gaskets, it ensures sealing and drainage functions, including the combination of the first sealing gasket, the second sealing gasket and the third sealing gasket.

Benefits of technology

It achieves good sealing and drainage functions, improves the insulation and waterproof performance of doors and windows, and prevents rainwater from entering the inside of the window frame.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an energy-saving horizontal sliding window for building heat preservation, which relates to the technical field of doors and windows and comprises a door and window frame and an aluminum alloy door and window body positioned in the door and window frame, the height of the bottom surface of the door and window frame is gradually reduced from the inner side to the outer side, and toothed rails corresponding to the aluminum alloy door and window body are arranged on the top surface and the bottom surface of the door and window frame. A water outlet is formed in the toothed rail; the lower half portion of a door and window frame body of the aluminum alloy door and window body is connected with a fixed covered edge, the upper half portion of the door and window frame body is connected with a lifting covered edge, a lifting adjusting assembly is arranged at the joint of the fixed covered edge and the lifting covered edge, and sliding grooves corresponding to the toothed rails are formed in the bottom face of the fixed covered edge and the top face of the lifting covered edge correspondingly. A second sealing gasket corresponding to the toothed rail is arranged on the inner wall of the sliding groove. By adopting the structure, the energy-saving horizontal sliding window for building heat preservation has good sealing performance and drainage function, and further ensures the heat preservation performance and waterproof performance of doors and windows.
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Description

Technical Field

[0001] The utility model relates to the technical field of doors and windows, in particular to an energy-saving horizontal sliding window used for building thermal insulation. Background Art

[0002] Most door and window frames are made of wood, which is not very durable. The lower end of the door and window frames, in particular, is close to the ground or windowsill, making it susceptible to water ingress and deformation. The lower end of the door frame is often stepped on and easily damaged, which urgently needs improvement. Aluminum alloy door and window structures include door and window frames fixed to the wall and openable door and window sashes. Glass or other decorative materials can be installed on the door and window sashes as needed. The door and window sashes can be made of materials such as aluminum alloy to improve durability.

[0003] Chinese patent application number CN202223074822.3 provides a quick-install aluminum alloy door and window. The quick-install aluminum alloy door and window includes a door and window frame, the inner wall of which is connected to two sets of slide rails, and two sets of aluminum alloy door and window bodies are disposed within the door and window frame. Each set of aluminum alloy door and window bodies has a through slot at the top and bottom, and a slide bar is connected within the through slot. The slide bar cooperates with a rack provided in the door and window frame. The aluminum alloy door and window body is provided with a push-pull assembly, which includes a slide bar, a first connecting block, a bolt, a push-pull plate, and a second connecting block. The above structure is connected to a threaded hole provided in the aluminum alloy door and window body by a bolt. When the bolt is rotated, the bolt body moves, thereby pushing the push-pull plate to move. The push-pull plate cooperates with the inclined surfaces provided in the first and second connecting blocks to move the two sets of slide bars up and down, thereby pushing the slide bars to connect with the slide rails provided in the door and window frame, thereby completing the installation of the aluminum alloy door and window body and enabling the aluminum alloy door and window body to be quickly replaced.

[0004] However, during use, the above structure has the following problems: 1. The sealing between the slide groove and the rack rail is not high, which results in poor thermal insulation of the doors and windows; 2. The waterproof performance is poor. After rainwater enters the bottom of the door and window frame, there is no corresponding drainage channel, causing rainwater to overflow to the inside of the door and window frame, causing indoor humidity. Utility Model Content

[0005] The purpose of the utility model is to provide an energy-saving horizontal sliding window for building insulation, which has good sealing and drainage functions, thereby ensuring the insulation performance and waterproof performance of doors and windows.

[0006] To achieve the above-mentioned object, the present invention provides an energy-saving horizontal sliding window for building insulation, comprising a door and window frame and an aluminum alloy door and window body located within the door and window frame, wherein the bottom surface height of the door and window frame gradually decreases from the inside to the outside, and the top and bottom surfaces of the door and window frame are both provided with racks corresponding to the aluminum alloy door and window body, and the racks are provided with drainage outlets;

[0007] The aluminum alloy door and window body includes a door and window frame and glass located in the door and window frame, the lower half of the door and window frame is connected to the fixed edging, and the upper half of the door and window frame is connected to the lifting edging, the lifting edging is provided with a first sealing gasket corresponding to the door and window frame, a lifting adjustment component is provided at the connection between the fixed edging and the lifting edging, the bottom surface of the fixed edging and the top surface of the lifting edging are both provided with a slide groove corresponding to the rack rail, and the inner wall of the slide groove is provided with a second sealing gasket corresponding to the rack rail.

[0008] Preferably, the side of the fixed edging opposite to the lifting edging is a slope, and the lifting adjustment assembly includes an adjustment plate, a threaded hole and an adjustment rod, the two side surfaces of the adjustment plate are adapted to the slope structure, the threaded hole is located on the door and window frame, the external thread on the adjustment rod is adapted to the threaded hole structure, and one end of the adjustment rod is provided with an adjacent knob and a limit slot, and the limit slot is rotatably connected to the axial hole on the adjustment plate.

[0009] Preferably, the fixed edging, the lifting edging and the adjustment plate are all provided with a third sealing gasket corresponding to the door and window frame.

[0010] Preferably, a guide rail is provided on the inner side or the outer side of the door and window frame, and the guide rail is adapted to the through-slot structure on the screen window frame.

[0011] Preferably, the glass is insulating glass.

[0012] Therefore, the energy-saving horizontal sliding window for building insulation using the above structure in the present invention has the following beneficial effects:

[0013] 1. The first sealing gasket can be used to ensure the sealing between the lifting edge and the door and window frame, and the second and third sealing gaskets can be used to ensure the sealing between the door and window frame and the door and window frame, thereby ensuring the thermal insulation performance of the doors and windows;

[0014] 2. The inclined bottom of the door and window frames and the drain outlet can be used to realize the drainage function of the door and window frames, thereby improving the waterproof performance of the doors and windows.

[0015] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a structural schematic diagram of an embodiment of an energy-saving horizontal sliding window for building insulation according to the utility model;

[0017] Figure 2 This is a structural schematic diagram of an embodiment of a door and window frame in an energy-saving horizontal sliding window for building insulation according to the present invention;

[0018] Figure 3 This is a structural schematic diagram of an embodiment of an aluminum alloy door and window body in an energy-saving horizontal sliding window for building insulation according to the present invention;

[0019] Figure 4 This is a structural schematic diagram of an embodiment of an adjusting rod in an energy-saving horizontal sliding window for building insulation according to the present invention.

[0020] Reference numerals

[0021] 1. Door and window frame; 2. Rack rail; 3. Drain outlet; 4. Guide rail; 5. Door and window frame; 6. Glass; 7. Fixed edging; 8. Lifting edging; 9. Slide; 10. Adjustment plate; 11. Adjustment rod; 12. External thread; 13. Knob; 14. Limit groove; 15. Third sealing gasket. DETAILED DESCRIPTION

[0022] The technical solution of the present utility model is further described below through the accompanying drawings and embodiments.

[0023] Example

[0024] like Figure 1-4 As shown, an energy-saving horizontal sliding window for building insulation includes a door and window frame 1 and an aluminum alloy door and window body positioned within the door and window frame 1. The bottom surface of the door and window frame 1 gradually decreases in height from the inside to the outside. Both the top and bottom surfaces of the door and window frame 1 are equipped with rack rails 2 corresponding to the aluminum alloy door and window body, each with a drain outlet 3. The inclined bottom surface of the door and window frame 1, in conjunction with the drain outlet 3, effectively prevents rainwater from entering the bottom of the door and window frame 1 and overflowing inside the frame, thereby causing indoor humidity. Guide rails 4 are provided on the inside or outside of the door and window frame 1, which mate with the through-slot structure on the screen frame.

[0025] The aluminum alloy door and window body includes a door and window frame 5 and glass 6 located within the frame 5. The glass 6 is hollow glass 6, which enhances the thermal insulation performance of the door and window. The lower half of the door and window frame 5 is connected to a fixed edging 7, while the upper half is connected to a lifting edging 8. The lifting edging 8 is provided with a first sealing gasket corresponding to the door and window frame 5, ensuring a tight seal between the lifting edging 8 and the door and window frame 5. The fixed edging 7 has an inclined surface on the side opposite to the lifting edging 8. Both the bottom surface of the fixed edging 7 and the top surface of the lifting edging 8 are provided with a chute 9 corresponding to the rack 2. The inner wall of the chute 9 is provided with a second sealing gasket corresponding to the rack 2. This second sealing gasket ensures a tight seal between the chute 9 and the rack 2, thereby ensuring a tight seal between the door and window frame 5 and the door and window frame 1.

[0026] A lift adjustment assembly is located at the junction of the fixed hemming 7 and the lifting hemming 8. This assembly includes an adjustment plate 10, a threaded hole, and an adjustment rod 11. The sides of the adjustment plate 10 are adapted to the inclined surface structure, and the threaded hole is located on the door and window frame 5. The external threads 12 on the adjustment rod 11 mate with the threaded hole structure. One end of the adjustment rod 11 is provided with an adjacent knob 13 and a stop slot 14. The stop slot 14 is rotatably connected to the axial hole in the adjustment plate 10. When the adjustment rod 11 is screwed in and out of the threaded hole, the adjustment plate 10 can follow the adjustment rod 11 in a left-right translational motion, thereby controlling the raising and lowering of the lifting hemming 8. A third sealing gasket 15 is provided on the fixed hemming 7, the lifting hemming 8, and the adjustment plate 10, corresponding to the door and window frame 1. This third sealing gasket 15 ensures a tight seal between the door and window frame 5 and the door and window frame 1.

[0027] During installation, the slide groove 9 on the fixed edging 7 is docked with the rack rail 2 on the door and window frame 1, and then the adjusting rod 11 is used to move the adjusting plate 10 between the lifting edging 8 and the fixed edging 7. During the movement of the adjusting plate 10, the adjusting plate 10 lifts the lifting edging 8, thereby connecting the slide groove 9 on the lifting edging 8 with the rack rail 2 on the door and window frame 1, completing the installation of the aluminum alloy door and window body. At this time, the first sealing gasket, the second sealing gasket and the third sealing gasket 15 can ensure the sealing between the aluminum alloy door and window body and the aluminum alloy door and window body and the door and window frame 1, thereby ensuring the thermal insulation performance of the doors and windows, and the coordinated use of the inclined bottom of the door and window frame 1 and the drain outlet 3 ensures the waterproof performance of the doors and windows.

[0028] Therefore, the energy-saving horizontal sliding window for building insulation using the above structure in the present invention has good sealing and drainage functions, thereby ensuring the thermal insulation and waterproof performance of doors and windows.

[0029] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that they can still modify or replace the technical solution of the present invention with equivalents, and these modifications or equivalent replacements cannot cause the modified technical solution to deviate from the spirit and scope of the technical solution of the present invention.

Claims

1. An energy-saving horizontal sliding window for building insulation, comprising a door and window frame and an aluminum alloy door and window body located within the door and window frame, characterized in that: The bottom surface height of the door and window frame gradually decreases from the inside to the outside, and the top and bottom surfaces of the door and window frame are both provided with racks corresponding to the aluminum alloy door and window body, and the racks are provided with drainage outlets; The aluminum alloy door and window body includes a door and window frame and glass located in the door and window frame, the lower half of the door and window frame is connected to the fixed edging, and the upper half of the door and window frame is connected to the lifting edging, the lifting edging is provided with a first sealing gasket corresponding to the door and window frame, a lifting adjustment component is provided at the connection between the fixed edging and the lifting edging, the bottom surface of the fixed edging and the top surface of the lifting edging are both provided with a slide groove corresponding to the rack rail, and the inner wall of the slide groove is provided with a second sealing gasket corresponding to the rack rail.

2. The energy-saving horizontal sliding window for building insulation according to claim 1, characterized in that: The side of the fixed edging opposite to the lifting edging is an inclined surface, and the lifting adjustment assembly includes an adjustment plate, a threaded hole and an adjustment rod. The two side surfaces of the adjustment plate are adapted to the inclined surface structure, the threaded hole is located on the door and window frame, the external thread on the adjustment rod is adapted to the threaded hole structure, and one end of the adjustment rod is provided with an adjacent knob and a limit slot, and the limit slot is rotatably connected to the axial hole on the adjustment plate.

3. The energy-saving horizontal sliding window for building insulation according to claim 2, characterized in that: The fixed edging, the lifting edging and the adjustment plate are all provided with a third sealing gasket corresponding to the door and window frame.

4. The energy-saving horizontal sliding window for building insulation according to claim 3, characterized in that: A guide rail is provided on the inner side or the outer side of the door and window frame, and the guide rail is adapted to the through-slot structure on the screen window frame.

5. The energy-saving horizontal sliding window for building insulation according to claim 4, characterized in that: The glass is insulating glass.

Citation Information

Patent Citations

  • Quickly-mounted aluminum alloy door and window

    CN219281574U