Totally-closed anti-seepage energy-saving building door and window

By using the interlocking mechanism of waterproof caps and snap-fit ​​components, along with a liquid guide plate design in energy-saving doors and windows, the problem of water seepage caused by sealant corrosion is solved, achieving a fully enclosed and waterproof effect.

CN223562724UActive Publication Date: 2025-11-18LIAONING MINGFAN DOORS & WINDOWS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423142510.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-11-18
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

The sealant in existing energy-saving doors and windows is prone to corrosion due to external environmental factors after long-term use, resulting in poor waterproofing between the glass and the frame and liquid seepage problems.

Method used

The waterproof cover and snap-fit ​​fitting are combined with the design of the liquid guide plate and the insulating cotton. The waterproof cover is tilted to guide rainwater out, the liquid guide plate is tilted to automatically guide the flow, and the insulating cotton is placed inside the frame to absorb the initial rainwater and ensure airtightness.

Benefits of technology

It improves the waterproofness of doors and windows, prevents damage to the sealant caused by prolonged rainwater accumulation, and achieves a fully sealed, waterproof effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy-saving doors and windows, and discloses a totally-closed water-seepage-proof building energy-saving door and window which comprises a frame, a glass layer, a packaging groove, a packaging pad, a gluing layer, a waterproof cover, a clamping piece, a clamping groove, an embedding mechanism, a fixing pad, an embedding groove and a sealing pressing pad. A waterproof cover is arranged in the frame and is arranged at an inclined angle, one side of the waterproof cover and the interior of a clamping groove are sealed and blocked through a clamping piece, and the side, facing the outside, of the waterproof cover can preliminarily absorb and isolate rainwater through the characteristics of partition cotton when the rainwater is close to the glass layer when the rainwater falls into the lower portion of the interior of the frame; and if the rainwater obliquely falls on the surface of the glass layer and flows downwards, the waterproof cover can obliquely guide and discharge the falling rainwater to one side, so that the rainwater is discharged out of the frame, the situation that the gluing layer is damaged due to long-time accumulation of the rainwater is avoided, and the waterproof performance of the energy-saving door and window is improved.
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Description

Technical Field

[0001] This utility model relates to the field of energy-saving doors and windows technology, and in particular to a fully enclosed, water-proof, energy-saving building door and window. Background Technology

[0002] Doors and windows are classified as enclosure components or partition components according to their location. They have different design requirements and must have functions such as heat preservation, heat insulation, sound insulation, waterproofing, and fireproofing. Doors and windows are essential components in buildings.

[0003] Energy-saving doors and windows consist of a glass layer and an outer frame. The corners between the glass layer and the frame are sealed with sealant. However, the sealant is prone to corrosion and other damage due to external environmental factors during long-term use, which can lead to liquid penetration between the glass and the frame and limited waterproofing effect. Therefore, we propose a fully enclosed, water-proof, energy-saving building door and window. Utility Model Content

[0004] The present invention aims to solve the technical problems existing in the prior art and provide a fully enclosed, water-proof, energy-saving building door and window.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: a fully enclosed, water-proof, energy-saving building door and window, comprising a frame and a glass layer. The top of the frame has a through-frame encapsulation groove. Both sides of the glass layer are encapsulated and fitted with the inside of the encapsulation groove by encapsulation pads. An adhesive layer is applied between the angle between the frame and the glass layer. A waterproof cover is provided on one side of the glass layer. A snap-fit ​​component is installed on one side of the waterproof cover. A slot is provided on the bottom inside of the frame. An embedding mechanism is installed on one side of the slot. A fixing pad is provided on the inside of the slot. An embedding groove is provided inside the snap-fit ​​component. A sealing pressure pad is provided on the other side of the waterproof cover.

[0006] Preferably, the waterproof cover is fitted and engaged with the embedding mechanism inside the slot through the embedding groove inside the snap-fit ​​component. After the snap-fit ​​component is installed and engaged with the slot, the sealing pad on one side of the waterproof cover is in a squeezed and sealed state with the glass layer surface.

[0007] Preferably, a rectangular groove is provided on the inner bottom side of the frame, and the interior of the rectangular groove is filled with insulating cotton, which has liquid absorption properties.

[0008] Preferably, the inner cavity of the frame is provided with a liquid guide plate, the liquid guide plate has an L-shaped structure, a connector is installed at the bottom of the liquid guide plate, a support is installed on the bottom side of the inner cavity of the frame, the connector and the support are both provided with intersecting mounting grooves, a mounting part is installed on one side of the connector and the support, and a liquid guide groove penetrating the inner cavity of the frame is provided on one side of the frame.

[0009] As preferred, the connecting piece and the support piece are cross-fitted through the mounting groove and the mounting piece, and the liquid guide plate extends to the inside of the liquid guide groove.

[0010] As preferred, the liquid guide plate is provided with a sealing gasket on one side, and the sealing gasket has a deformation property.

[0011] As preferred, the connecting piece at the bottom of the liquid guide plate is cross-fitted with the support piece, and the sealing gasket on one side of the liquid guide plate is in a pressing sealing state with the surface of the glass layer.

[0012] The utility model provides a kind of full-enclosed water seepage prevention building energy-saving door and window.It has the following beneficial effects:

[0013] 1, this full-enclosed water seepage prevention building energy-saving door and window, in this paper, the glass layer is encapsulated in the encapsulation groove in the inside of the frame after being encapsulated, and the glass layer is preliminarily sealed with the inside of the encapsulation groove through encapsulation gasket, and the frame and the glass layer are coated with a sealed glue layer at the included angle, the inside of the frame is provided with waterproof cover, the waterproof cover is provided with an inclined angle, and the waterproof cover is encapsulated and blocked with the inside of the clamping groove through the clamping piece, the side of the waterproof cover towards the outside, when the rainwater in the outside falls into the inside of the frame, the rainwater is close to the glass layer and passes through the partition cotton in the inside of the rectangular groove, and the rainwater is preliminarily absorbed and isolated by the characteristics of the partition cotton, and when the rainwater is inclined and flows down on the surface of the glass layer, the waterproof cover can guide and discharge the falling rainwater to one side, so that the rainwater is discharged from the inside of the frame, to avoid the damage of the glue layer caused by long-term accumulation of rainwater, so as to improve the waterproofness of the energy-saving door and window.

[0014] 2, this full-enclosed water seepage prevention building energy-saving door and window, the inner cavity of the frame is provided with a liquid guide plate, the connecting piece at the bottom of the liquid guide plate is embedded and cross-fitted in the mounting groove in the inside of the support piece through the mounting piece, the sealing gasket on one side of the liquid guide plate is in a pressing sealing fit with the surface of the glass layer, and the liquid guide plate is inclined, and the liquid guide groove guided by the liquid guide plate is formed on one side of the outside of the frame, if the rainwater in the outside accidentally penetrates into the inner cavity of the frame, the rainwater can first contact with the liquid guide plate when flowing down along the glass layer, so that the inclined liquid guide plate can guide the flowing rainwater to one side to the liquid guide groove, so as to achieve the effect of automatically guiding and discharging the accidentally penetrated rainwater. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed in the embodiments or the prior art description. Obviously, the drawings in the following description are only exemplary, and for those skilled in the art, other drawings can be derived from the provided drawings without creative labor.

[0016] The structures, proportions, sizes, etc. shown in the specification are only used to cooperate with the content disclosed in the specification, for understanding and reading by those skilled in the art, and are not used to limit the implementation conditions of the present application, so they do not have technical significance. Any modification of structure, change of proportion relationship or adjustment of size, which does not affect the effects and purposes of the present application, should still fall within the scope of the disclosed technology.

[0017] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0018] Figure 2 It is a schematic diagram of the overall structure of the present application Figure 1

[0019] Figure 3 It is a schematic diagram of the overall structure of the present application Figure 1

[0020] Figure 4 It is a schematic diagram of the overall structure of the present application Figure 1

[0021] Figure 5 It is a schematic diagram of the overall structure of the present application Figure 1

[0022] Legend:

[0023] 1, frame; 2, glass layer; 3, encapsulation groove; 4, encapsulation pad; 5, glue coating layer; 6, waterproof cover; 7, clamping piece; 8, clamping groove; 9, embedding mechanism; 10, fixing pad; 11, embedding groove; 12, sealing compression pad; 13, rectangular groove; 14, partition cotton; 15, liquid guide plate; 16, connecting piece; 17, supporting piece; 18, mounting groove; 19, mounting piece; 20, liquid guide groove; 21, sealing pad. DETAILED DESCRIPTION

[0024] ​​​​The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example: A fully enclosed, water-proof, energy-saving building door and window, such as... Figures 1-5 As shown, the device includes a frame 1 and a glass layer 2. A sealing groove 3 penetrating the top of the frame 1 is provided. Both sides of the glass layer 2 are sealed and fitted with the inner side of the sealing groove 3 via sealing pads 4. An adhesive layer 5 is applied between the angle between the frame 1 and the glass layer 2. A waterproof cover 6 is provided on one side of the glass layer 2, and a snap-fit ​​component 7 is installed on one side of the waterproof cover 6. A slot 8 is provided on the inner bottom side of the frame 1, and an embedding mechanism 9 is installed on one side of the slot 8. A fixing pad 10 is provided on the inner side of the slot 8. An embedding groove 11 is provided inside the snap-fit ​​component 7. A sealing pressure pad 12 is provided on the other side of the waterproof cover 6. The inner bottom side of the frame 1... A rectangular groove 13 is provided, and the interior of the rectangular groove 13 is filled with a partition cotton 14. The partition cotton 14 has liquid absorption properties. A liquid guide plate 15 is provided in the inner cavity of the frame 1. The liquid guide plate 15 has an L-shaped structure. A connector 16 is installed at the bottom of the liquid guide plate 15. A support member 17 is installed on the bottom side of the inner cavity of the frame 1. Both the connector 16 and the support member 17 have intersecting mounting grooves 18. An mounting member 19 is installed on one side of both the connector 16 and the support member 17. A liquid guide groove 20 is provided on one side of the frame 1, penetrating the inner cavity of the frame 1. A sealing gasket 21 is provided on one side of the liquid guide plate 15. The sealing gasket 21 has deformation properties.

[0026] Furthermore, the waterproof cover 6 is engaged with the inserting mechanism 9 inside the slot 8 via the inserting groove 11 inside the snap-fit ​​component 7. After the snap-fit ​​component 7 is installed and engaged inside the slot 8, the sealing pad 12 on one side of the waterproof cover 6 is in a squeezed and sealed state with the surface of the glass layer 2.

[0027] Furthermore, the connector 16 and the support 17 are interlocked by the mounting groove 18 and the mounting part 19, and one side of the liquid guide plate 15 extends into the liquid guide groove 20.

[0028] Furthermore, after the connector 16 at the bottom of the liquid guide plate 15 is connected to the support 17, the sealing gasket 21 on one side of the liquid guide plate 15 is in a squeezed and sealed state with the surface of the glass layer 2.

[0029] The working principle of this utility model:

[0030] The glass layer 2 is encapsulated with the frame 1, and the glass layer 2 is preliminarily sealed on both sides by the encapsulation pads 4 and the inside of the encapsulation groove 3, and the frame 1 and the glass layer 2 are coated with the sealing glue layer 5, the inside of the frame 1 is provided with the waterproof cover 6, the waterproof cover 6 is provided with an inclined angle, one side of the waterproof cover 6 is encapsulated and blocked by the clamping part 7 and the clamping groove 8, and the side of the waterproof cover 6 facing the outside is provided with the rectangular groove 13 and the partition cotton 14, the rainwater falling into the inside of the frame 1 is preliminarily absorbed and isolated by the partition cotton 14, and the rainwater falling on the surface of the glass layer 2 is inclined and guided to one side by the waterproof cover 6, so that the rainwater is discharged from the inside of the frame 1, the damage of the glue layer 5 caused by the long-time accumulation of the rainwater is avoided, and the waterproof performance of the energy-saving door and window is improved.

[0031] The basic principle and main features of the energy-saving door and window and the advantages of the energy-saving door and window are shown and described. It should be understood by those skilled in the art that the energy-saving door and window is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only used to illustrate the principle of the energy-saving door and window. Without departing from the spirit and scope of the energy-saving door and window, various changes and improvements can be made to the energy-saving door and window, and these changes and improvements fall within the scope of the claimed energy-saving door and window. The scope of protection of the energy-saving door and window is defined by the appended claims and their equivalents.

Claims

1. A totally closed water-tight building energy-saving door and window comprising a frame (1) and a glass layer (2), characterized in that: The top of the frame (1) is provided with an encapsulation groove (3) penetrating the frame (1), both side surfaces of the glass layer (2) are encapsulated with the encapsulation groove (3) through encapsulation pads (4), the frame (1) and the glass layer (2) are coated with a glue coating (5) at the included angle, one side of the glass layer (2) is provided with a waterproof cover (6), one side of the waterproof cover (6) is provided with a clamping piece (7), the inside bottom of the frame (1) is provided with a clamping groove (8), one side of the clamping groove (8) is provided with an embedding mechanism (9), the inside of the clamping groove (8) is provided with a fixing pad (10), the inside of the clamping piece (7) is provided with an embedding groove (11), the other side of the waterproof cover (6) is provided with a sealing pressing pad (12).

2. The fully-closed water-impervious building energy-saving door and window according to claim 1, characterized in that: The waterproof cover (6) is matched and clamped with the embedding mechanism (9) in the clamping groove (8) through the embedding groove (11) in the clamping piece (7), after the clamping piece (7) is clamped in the clamping groove (8), the sealing pressing pad (12) on one side of the waterproof cover (6) is in a pressing sealing state with the surface of the glass layer (2).

3. The fully-closed water-impervious building energy-saving door and window according to claim 1, characterized in that: The inside bottom of the frame (1) is provided with a rectangular groove (13), the rectangular groove (13) is filled with partition cotton (14), and the partition cotton (14) has liquid absorption properties.

4. The fully-enclosed water-impervious building energy-saving door and window according to claim 3, characterized in that: The inner cavity of the frame (1) is provided with a liquid guide plate (15), the bottom of the liquid guide plate (15) is provided with a connecting piece (16), the inner cavity bottom of the frame (1) is provided with a supporting piece (17), the connecting piece (16) and the supporting piece (17) are both provided with mutually intersecting mounting grooves (18) in the inside, and the connecting piece (16) and the supporting piece (17) are both provided with mounting pieces (19) on one side.

5. The energy-saving door and window of claim 4, wherein the energy-saving door and window is a fully-closed water-proof door and window. The connecting piece (16) and the supporting piece (17) are cross-clamped through the mounting grooves (18) and the mounting pieces (19), and one side of the liquid guide plate (15) extends to the inside of the liquid guide groove (20).

6. The energy-saving door and window of claim 5, wherein the energy-saving door and window is a fully-closed water-proof door and window. One side of the liquid guide plate (15) is provided with a sealing pad (21), and the sealing pad (21) has deformation properties.

7. The fully-closed water-impervious building energy-saving door and window according to claim 6, characterized in that: After the connecting piece (16) at the bottom of the liquid guide plate (15) is connected with the supporting piece (17), the sealing pad (21) on one side of the liquid guide plate (15) is in a pressing sealing state with the surface of the glass layer (2).