85-series four-glass heat insulation broken bridge type energy-saving window sealing structure and energy-saving window

The 85 series quad-glazed thermally broken bridge energy-saving window features multi-layer sealing and drainage design, which solves the problem of unreasonable sealing in traditional energy-saving windows. It achieves efficient heat insulation, waterproofing, dustproofing and drainage, improving building energy efficiency and living comfort.

CN120990460APending Publication Date: 2025-11-21LINYI HONGTAI DOOR & WINDOW CO LTD
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Patent Information

Application Number
CN202511251911.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Traditional energy-saving windows have poor sealing designs, which allow rainwater to seep in and dust to enter, affecting indoor air quality and living comfort. In addition, the sealant is prone to aging and cracking, reducing its sealing performance.

Method used

It adopts five series of aluminum alloy frame structures, combined with insulated glass and thermal insulation materials, and designs multi-layer sealing gaskets and water diversion structures to form a double thermal insulation system and full-path protection, and constructs a three-level drainage path.

Benefits of technology

It improves airtightness and watertightness, reduces energy consumption, prevents rainwater and dust from entering, enhances indoor comfort, avoids window frame corrosion, and meets the requirements of high performance and low energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of windows, and discloses a 85-series four-glass heat insulation broken bridge type energy-saving window sealing structure and an energy-saving window.The 85-series four-glass heat insulation broken bridge type energy-saving window sealing structure comprises five series of frames constructed by aluminum alloy, and the frames comprise a profile A, a profile B, a profile C, a profile D and a profile E. The profile A and the profile C are connected through two connecting strips; the top of the C section bar is assembled with the B section bar through a clamping groove, and the end of the A section bar and the end of the B section bar clamp the glass. Glass double wrapping is achieved through the sealing gaskets of different structures, the connecting faces of the profiles are sealed with the isolation gaskets through glue, full-path protection is formed, the air tightness and the water tightness both meet the industrial high-grade standard, rainstorm infiltration and dust and pollen entering can be effectively prevented, the sealing structure is especially suitable for rainy and dusty areas, and the indoor living comfort is greatly improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of windows, in particular to a 85 series four-glass heat-insulating broken bridge type energy-saving window sealing structure and energy-saving window. BACKGROUND

[0002] In the field of construction, energy-saving windows, as an important part of building envelope structure, directly affect the building energy consumption and indoor living comfort in terms of heat insulation, sealing, drainage and other performances. With the popularization of energy-saving concept, the traditional energy-saving window gradually exposes many technical defects in practical application, which has been difficult to meet the demand of modern buildings for high performance and low energy consumption. The specific problems are as follows:

[0003] The sealing design of traditional energy-saving window mostly depends on single sealing pad or sealing glue, and the sealing pad is often not tightly attached to the glass and profile due to unreasonable structure design. In rainy weather, rainwater is easy to seep into the room through the sealing gap, causing the wall around the window frame to be damp and moldy. In dusty environment, dust, pollen and other impurities are also easy to enter the room through the gap, affecting indoor air quality and living comfort. In addition, the sealing treatment of the profile connecting surface of some energy-saving windows is simple, and the sealing glue is easy to age and crack after long-term use, further reducing the sealing performance. Therefore, the present application provides a 85 series four-glass heat-insulating broken bridge type energy-saving window sealing structure and energy-saving window. SUMMARY

[0004] In view of the above deficiencies in the prior art, the present application provides a 85 series four-glass heat-insulating broken bridge type energy-saving window sealing structure and energy-saving window.

[0005] The present application provides the following technical scheme: a series four-glass heat-insulating broken bridge type energy-saving window sealing structure, comprising five series aluminum alloy frames, the frames are A profile, B profile, C profile, D profile and E profile, the A profile and the C profile are linked by two connecting strips, the top of the C profile is assembled with the B profile through a clamping groove, and the end of the A profile and the B profile clamps the glass;

[0006] The bottom end of the C profile is connected with the top end of the E profile through a connecting block, and the lower swing of the C profile is sealed with the side surface of the E profile through an A isolation pad;

[0007] The D profile and the E profile are connected by two clamping pieces, and the space between the two clamping pieces is filled with a heat insulation layer, the upper swing of the D profile is sealed with the lower swing of the A profile through a B isolation pad;

[0008] The space formed by the A profile, the B profile and the C profile is provided with a backing plate for supporting the glass, and a sealing layer is provided between the backing plate and the glass.

[0009] Preferably, the A profile and the C profile are provided with a heat preservation material between the two connecting strips.

[0010] Preferably, the head end of the A profile and the B profile are provided with two contact feet, and the two contact feet on the A profile are in contact with the glass through the A sealing pad, and the two A sealing pads are used to strengthen the sealing, and the two contact feet on the head end of the B profile are in contact with the glass through the B sealing pad.

[0011] Preferably, the two contact feet of the A profile form an inclined water guide bin, and the outer side of the A profile is provided with a small hole communicating with the water guide bin, and when the rainwater penetrates into the first contact foot of the A profile, the rainwater slides down along the inclined surface of the second contact foot and is discharged from the small hole.

[0012] Preferably, the inner side of the pad is designed to be inclined upward, and the pad is arranged between the A profile and the C profile, so that the rainwater falling on the pad falls on the A profile, and the A profile is provided with a hole for discharging rainwater.

[0013] Preferably, the A profile is provided with a raised line, and the bottom end of the pad is clamped on the A profile through the groove, and the raised line is used to block the rainwater from flowing into the B profile through the connecting strip.

[0014] Preferably, the outer side of the A profile is in contact with the cover plate through the sliding groove, and the top of the cover plate is in contact with the A profile through the C sealing pad, and the hole is covered by the cover plate, and the rainwater slides down along the sliding groove structure through the inner side of the cover plate.

[0015] The series four glass heat insulation broken bridge energy-saving window is constructed by the sealing structure.

[0016] Compared with the prior art, the present application has the following beneficial effects:

[0017] (1) The metal heat bridge is blocked by the heat insulation component, the heat insulation material and the heat insulation layer are matched, and the double heat insulation system is formed in combination with the hollow glass, and the heat transfer coefficient reaches the high level standard in the industry. Compared with the traditional three-glass window, the energy consumption for heating in winter and cooling in summer can be significantly reduced, and the energy expenditure of the user can be reduced in the long term.

[0018] (2) The glass is double-wrapped by different structure sealing pads, the connecting surface of the profile is sealed by glue and the isolation pad, the full-path protection is formed, the air tightness and water tightness reach the high level standard in the industry, the rainwater and dust pollen can be effectively blocked, especially suitable for rainy and dusty areas, and the indoor living comfort is greatly improved.

[0019] (3) The three-level drainage path of "outer layer interception, middle layer guidance and bottom layer discharge" is constructed, the profile water guide structure and the inclined pad are used to guide the rainwater discharge, and the drainage hole is protected by the cover plate to avoid blockage. Through simulation test, there is no rainwater wet mark in the room, and the corrosion problem caused by water accumulation in the traditional window can be effectively avoided. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The whole structure of the present application is shown in the schematic diagram.

[0021] In the figure: 1, A profile; 2, B profile; 3, C profile; 4, D profile; 5, E profile; 6, connecting strip; 7, connecting block; 8, A isolation pad; 9, clamping piece; 10, heat insulation layer; 11, B isolation pad; 12, pad plate; 51, thermal insulation material; 21, contact foot; 22, A sealing pad; 23, B sealing pad; 24, water diversion bin; 14, raised line; 13, cover plate. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the present disclosure clearer, the technical scheme of the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings of the embodiments of the present disclosure. In order to keep the following description of the embodiments of the present disclosure clear and brief, the present disclosure omits the detailed description of known functions and known components to avoid unnecessary confusion of the concept of the present invention.

[0023] Please refer to Figure 1 , the 85 series four-glass heat-insulating broken bridge energy-saving window is composed of a frame and four pieces of glass composed of a sealing structure. The sealing structure is spliced by an A profile 1, a B profile 2, a C profile 3, a D profile 4, and an E profile 5, and the A profile 1, the B profile 2, the C profile 3, the D profile 4, and the E profile 5 are made of 85 series aluminum alloy.

[0024] Two connecting strips 6 are arranged in parallel along the length direction of the A profile 1 and the C profile 3. The two ends of the connecting strip 6 are respectively embedded in the pre-set notch on the inner side of the A profile 1 and the corresponding clamping groove on the outer side of the C profile 3. The preliminary fixation is realized through the interference fit of the notch and the clamping groove, forming a longitudinal support framework of the A profile 1 and the C profile 3, and ensuring that the two are parallel and have uniform spacing.

[0025] A hollow area is reserved between the two connecting strips 6. This area is jointly enclosed with the inner side wall of the A profile 1 and the outer side wall of the C profile 3 to form a closed cavity. At the same time, through the rigid support of the connecting strip 6, the relative displacement of the A profile 1 and the C profile 3 due to external pressure is avoided.

[0026] The top end of the C profile 3 is provided with a U-shaped clamping groove, and the bottom end of the B profile 2 is correspondingly provided with a protruding buckle. The bottom end of the B profile 2 buckle is aligned with the top end U-shaped clamping groove of the C profile 3, and is pushed in along the horizontal direction until the buckle is completely embedded in the bottom of the clamping groove. The quick positioning and assembly of the B profile 2 and the C profile 3 are realized, and the clamping surface is completely attached without gap and shaking.

[0027] The two ends of the connecting block 7 are embedded in the rectangular grooves at the top end of the E-shaped profile 5 and the bottom end of the C-shaped profile 3, forming a vertical support structure of the C-shaped profile 3 and the E-shaped profile 5; at the same time, the extended edge of the lower hem of the C-shaped profile 3 is attached to the stepped surface of the side surface of the E-shaped profile 5, and the A isolation pad 8 is clamped between the attached surfaces of the two, and the A isolation pad 8 is elastically extruded to fill the small gap, thereby strengthening the sealing and buffering effects.

[0028] The connecting block 7 serves as a transition connecting piece of the C-shaped profile 3 and the E-shaped profile 5, and transmits the vertical load of the C-shaped profile 3 to the E-shaped profile 5, while ensuring that the C-shaped profile 3 and the E-shaped profile 5 remain vertically aligned after being connected, without deviation or inclination.

[0029] The two clamping pieces 9 are symmetrically distributed at the connecting interface of the D-shaped profile 4 and the E-shaped profile 5, one side of the clamping piece 9 is clamped with the side groove of the D-shaped profile 4 through the barb structure, and the other side is connected with the boss of the E-shaped profile 5 through the mortise and tenon structure, realizing the horizontal limiting of the D-shaped profile 4 and the E-shaped profile 5; a rectangular cavity is formed between the two clamping pieces 9, which together with the inner side of the D-shaped profile 4 and the outer side of the E-shaped profile 5 forms the filling space of the heat insulation layer 10, and the height of the clamping piece 9 is consistent with the connecting height of the D-shaped profile 4 and the E-shaped profile 5, ensuring that the heat insulation layer 10 does not have local depression after being filled.

[0030] The two clamping pieces 9 not only realize the horizontal connection of the D-shaped profile 4 and the E-shaped profile 5, but also determine the size of the filling space of the heat insulation layer 10, so that the heat insulation layer 10 can be completely filled between the two clamping pieces 9; and the barb and mortise and tenon structures of the clamping piece 9 are respectively formed with the D-shaped profile 4 and the E-shaped profile 5 to prevent the clamping piece 9 from loosening due to expansion or contraction after the heat insulation layer 10 is filled.

[0031] The contact of the upper hem of the D-shaped profile 4 and the contact of the lower hem of the A-shaped profile 1 are misaligned and attached, and the B isolation pad 11 completely covers the attached area of the two, so that the B isolation pad 11 is tightly extruded by the gravity of the D-shaped profile 4 and the supporting force of the A-shaped profile 1, forming a horizontal sealing band.

[0032] One end of the pad plate 12 is clamped with the raised line 14 on the A-shaped profile 1 through the bottom groove, realizing horizontal positioning; the other end is placed on the support step of the C-shaped profile 3, and the step height limits the longitudinal displacement of the pad plate 12, so that the pad plate 12 always maintains the preset angle of inclination upward, and the length of the pad plate 12 is completely matched with the spacing of the A-shaped profile 1 and the C-shaped profile 3, without end gap.

[0033] The head end of the A-shaped profile 1 and the B-shaped profile 2 is respectively provided with two contact feet 21 corresponding to claim 3, forming a "double clamping jaw" structure, and the glass edge is embedded between the gap of the two contact feet 21; wherein the two contact feet 21 on the A-shaped profile 1 are respectively in contact with the glass through the A sealing pad 22, and the two contact feet 21 at the head end of the B-shaped profile 2 are in contact with the glass through the B sealing pad 23, and the continuous clamping force is generated by the elastic deformation of the contact feet 21 to prevent the glass from loosening or displacing.

[0034] A type 1 of two feet 21 between the formation of the inclined water sump 24, water sump 24 end with A profile 1 outside the hole communication, when the rain from the first foot 21 of A profile 1 penetration into the rain, along the second foot 21 of the inclined surface into the water sump 24, and from the hole discharge.

[0035] If the water along the second foot 21 into the glass end, then the mat 12 side of the inner inclined upward design, and the mat 12 is provided between the A profile 1 and C profile 3, so that the rain on the mat 12 on the A profile 1, and A profile 1 provided with a hole for rainwater export, so that the rain from the bottom of the side of the A profile 1 export.

[0036] A profile 1 on the convex line 14 below the connecting strip 6, with the mat 12 bottom groove closely, form a transverse barrier line, prevent rain along the joint gap between the A profile 1 and C profile 3 penetration to the connecting strip 6 area, and thus avoid the rain through the connecting strip 6 into the B profile 2 inside.

[0037] In order to avoid the cold air into the cover plate 13 by the chute and A profile 1 sliding connection, cover plate 13 top by C sealing pad and A profile 1 fit, and the hole is located by cover plate 13 shielding, and rain through the inner side of the cover plate 13 along the chute structure slide, so as to the hole also for blocking.

[0038] The above examples are only exemplary embodiments of the present application, not for limiting the present application, the scope of protection of the present application is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements to the present application within the spirit and protection scope of the present application, such modification or equivalent replacement should also be considered to fall within the scope of protection of the present application.

Claims

1. 85 series four glass heat insulation broken bridge type energy saving window sealing structure, characterized in that: The application relates to a sealing structure of a four-glass heat-insulating broken bridge type energy-saving window of the 85 series, which comprises a frame constructed by five 85 series aluminum alloys, A profile (1), B profile (2), C profile (3), D profile (4) and E profile (5), the A profile (1) and the C profile (3) are connected by two connecting strips (6), the top of the C profile (3) is assembled with the B profile (2) through a clamping groove, and the end of the A profile (1) and the B profile (2) clamps glass. The bottom end of the C profile (3) is connected with the top end of the E profile (5) through a connecting block (7), and the lower swing of the C profile (3) is sealed with the side surface of the E profile (5) through an A isolation pad (8). The D profile (4) and the E profile (5) are connected through two clamping pieces (9), and the space between the two clamping pieces (9) is filled with a heat insulation layer (10), and the upper swing of the D profile (4) is sealed with the lower swing of the A profile (1) through a B isolation pad (11). The space formed by the A profile (1), the B profile (2) and the C profile (3) is provided with a pad plate (12) for supporting glass, and a sealing layer is arranged between the pad plate (12) and the glass.

2. The 85 series four glass thermally improved insulated window unit seal of claim 1, wherein: The A profile (1) and the C profile (3) are provided with heat preservation materials (51) between the two connecting strips (5).

3. The 85 series four glass thermally improved insulated window unit seal of claim 1, wherein: The head end of the A profile (1) and the B profile (2) is provided with two up-and-down contact feet (21), the two contact feet (21) on the A profile (1) are respectively contacted with glass through A sealing pads (22), the two A sealing pads (22) are used for reinforcing sealing, and the two contact feet (21) on the head end of the B profile (2) are contacted with glass through a B sealing pad (23).

4. The 85 series four glass thermally improved insulated window unit seal of claim 3, wherein: The two contact feet (21) of the A profile (1) form an inclined water guide bin (24), and a small hole is formed in the outer side of the A profile (1) and communicates with the water guide bin (24), when rainwater penetrates into the first contact foot (21) of the A profile (1), the rainwater slides along the inclined surface of the second contact foot (21) and is discharged from the small hole.

5. The 85 series four glass thermally improved, insulated window unit seal of claim 1, wherein: The inner side of the pad plate (12) is designed to be inclined upward, the pad plate (12) is arranged between the A profile (1) and the C profile (3), so that the rainwater falling on the pad plate (12) falls on the A profile (1), and the A profile (1) is provided with a hole for discharging rainwater.

6. The 85 series four glass thermally improved insulated window unit seal of claim 5, wherein: The A profile (1) is provided with a convex line (14), the bottom end of the pad plate (12) is clamped on the A profile (1) through a groove, and the convex line (14) is used for preventing rainwater from flowing into the B profile (2) through the connecting strip (6).

7. The 85 series four glass thermally improved, insulated window unit seal of claim 1, wherein: The outer side of the A profile (1) is contacted with a cover plate (13) through a sliding groove, the top of the cover plate (13) is contacted with the A profile (1) through a C sealing pad, the hole is shielded by the cover plate (13), and the rainwater slides along the sliding groove structure through the inner side of the cover plate (13).

8. The Series 85 four glass thermally improved, heat bridge broken energy saving window characterized in that, The application is constructed by the sealing structure of the four-glass heat-insulating broken bridge type energy-saving window of the 85 series according to any one of claims 1-7.