Aluminum alloy heat insulation translation side pressing window

By adjusting the design of components and insulation chambers, the problems of poor sealing and weak insulation performance of aluminum alloy doors and windows have been solved, achieving better sealing and insulation performance and extending the service life of sealing gaskets.

CN223724438UActive Publication Date: 2025-12-26SHAANXI MINGDI ALUMINIUM CO LTD
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Patent Information

Application Number
CN202520081199.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-26
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing aluminum alloy doors and windows have a simple structure, poor sealing, weak thermal insulation performance, and the sealing strips are easily damaged, affecting their performance and insulation capabilities.

Method used

The sealing effect is improved by using the adjustment knob, active turbine, driven turbine, lead screw, sliding block and connecting plate in the adjustment assembly; vertical insulation cavity, horizontal insulation cavity and small insulation cavity are set, the internal cavity is hollow, which increases the heat insulation effect, and the protection of window frame is improved by protective layer.

Benefits of technology

It improves the sealing performance and service life of doors and windows, enhances thermal insulation performance, avoids damage from sliding friction of sealing gaskets, and improves the overall heat insulation effect and strength.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223724438U_ABST
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Abstract

The utility model relates to the technical field of aluminum alloy heat insulation translation side pressing windows, and discloses an aluminum alloy heat insulation translation side pressing window which comprises a door and window frame, grooves are formed in the two sides of the inner side of the door and window frame, moving grooves are formed in the upper end and the lower end of the inner side of the door and window frame, and a front window frame and a rear window frame are installed in inner cavities of the moving grooves in a sliding mode. The rear window frame is located at the rear end of the front window frame, an adjusting assembly is movably installed at the front end of one side of the door and window frame, and glass is fixedly installed on the inner side of the front window frame and the inner side of the rear window frame. The sealing gasket is far away from the upper end and the lower end of the frame, so that sliding friction damage to the sealing gasket is avoided, the service life of the sealing gasket can be prolonged, heat cannot be transferred through the heat preservation cavity, the heat insulation effect is achieved, and better use prospects can be brought.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aluminium alloy heat -proof translation side pressure window technical field, concretely is a kind of aluminium alloy heat -proof translation side pressure window. BACKGROUND

[0002] With the continuous improvement of people's requirement to energy saving and environmental protection, the requirement to door and window performance is also continuously promoted, and sliding window is widely applied in building because of many advantages, such as convenient use, flexible sliding and not occupying longitudinal indoor space.

[0003] But it still has some shortcomings, for example: current aluminium alloy door and window structure is single, generally sealing is not very good, and heat preservation performance is weak, cannot reach the expected effect of user, and heat insulation effect is also poor, overall strength is not enough, and further affect overall heat preservation performance, and the way of adopting sealing strip affects the flexibility of sliding, and sealing strip of increasing sealing performance is prone to relatively fast damage in use process, reduces sealing, and brings great inconvenience to people.

[0004] To solve the above problems, an aluminium alloy heat -proof translation side pressure window is proposed in the present application. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing an aluminium alloy heat -proof translation side pressure window to solve the problems of single structure and poor sealing in the prior art mentioned in the background.

[0006] To achieve the above object, the utility model provides the following technical scheme: an aluminium alloy heat -proof translation side pressure window, comprising a door and window frame, recesses are formed on both sides of the inner side of the door and window frame, moving grooves are formed on the upper and lower ends of the inner side of the door and window frame, front and rear window frames are slidably installed in the inner cavities of the moving grooves, and the rear window frame is located at the rear end of the front window frame, an adjusting assembly is movably installed at the front end of one side of the door and window frame, and glasses are fixedly installed on the inner sides of the front and rear window frames.

[0007] Preferably, sealing strips are fixedly installed on one side of the front and rear window frames respectively, and first and second sealing gaskets are movably installed at the upper and lower ends of the moving grooves respectively.

[0008] Preferably, the adjusting assembly comprises an adjusting knob, a driving turbine, a driven turbine, a lead screw, a sliding block and a connecting plate, the driving turbine is fixedly connected to one side of the adjusting knob, the driven turbines are movably installed at both ends of the driving turbine, the lead screw is fixedly connected to one side of the driven turbine, the sliding block is slidably connected to the outer wall of the lead screw, and the connecting plate is fixedly connected to one side of the sliding block.

[0009] Preferably, the rear window frame comprises an outer frame, horizontal heat preservation cavities, vertical heat preservation cavities, protective layers, small heat preservation cavities, partition frames, cavities and packaging plates, horizontal heat preservation cavities are arranged at the upper and lower ends of the inner cavity of the outer frame, vertical heat preservation cavities are arranged at the two sides of the inner cavity of the outer frame, the inner walls of the horizontal heat preservation cavities and the vertical heat preservation cavities are fixedly installed with protective layers, small heat preservation cavities are arranged at the upper and lower sides of the inner side of the outer frame, the small heat preservation cavities, the horizontal heat preservation cavities and the vertical heat preservation cavities are fixedly connected with partition frames, cavities are arranged in the inner cavity of the outer frame, and packaging plates are fixedly installed on one side of the horizontal heat preservation cavities and the vertical heat preservation cavities.

[0010] Preferably, the upper and lower ends of the front window frame and the rear window frame are slidably connected with the inner cavities of the moving grooves, one side of the front window frame and the rear window frame is movably connected with the inner cavities of the grooves, the sealing strip is located at one side of the groove, the first sealing gasket is located at the lower end of the front window frame, and the second sealing gasket is located at the lower end of the rear window frame.

[0011] Preferably, the first sealing gasket and the second sealing gasket are fixedly arranged at the two sides of the connecting plates respectively, the connecting plates are movably arranged in the inner cavities of the upper and lower ends of the door and window frame respectively, and the adjusting knob is movably arranged at one side of the front end of the door and window frame.

[0012] Preferably, the number of the horizontal heat preservation cavities and the vertical heat preservation cavities is two groups, the cavities are located between the horizontal heat preservation cavities, and the small heat preservation cavities are located at the two sides of the horizontal heat preservation cavities.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] Through the cooperation of the adjusting knob, the driving turbine, the driven turbine, the screw rod, the sliding block and the connecting plate, the sealing effect of the door and window is improved, the driving turbine is driven to rotate through the adjusting knob, the driven turbine on the two sides is driven to rotate, the connecting plate on one side of the sliding block is driven to move through the screw rod, the first sealing gasket and the second sealing gasket are sealed between the front window frame, the rear window frame and the frame body, and the service life of the sealing gasket is improved, when the sliding door and window are used, the sealing gasket is away from the upper and lower ends of the frame through adjustment, so that the sliding friction damage of the sealing gasket is avoided.

[0015] The vertical heat preservation cavity, the horizontal heat preservation cavity and the small heat preservation cavity are provided, the interiors are cavities, the internal air content is small, heat cannot be transmitted, the heat insulation effect is achieved, the partition is formed into multiple cavities, the heat preservation performance of the window frame can be improved, and the protection of the window frame is improved through the protective layer. ACCURACY OF DRAWINGS

[0016] Figure 1 It is an overall structure schematic diagram of the aluminum alloy heat insulation sliding side pressure window;

[0017] Figure 2The utility model discloses a kind of rear window frame structure schematic diagram of aluminium alloy heat insulation side pressure window of translation of the utility model;

[0018] Figure 3 The utility model discloses a kind of sealing gasket structure schematic diagram of aluminium alloy heat insulation side pressure window of translation of the utility model;

[0019] Figure 4 The utility model discloses a kind of adjusting assembly structure schematic diagram of aluminium alloy heat insulation side pressure window of translation of the utility model;

[0020] Figure 5 The utility model discloses a kind of window frame internal structure schematic diagram of aluminium alloy heat insulation side pressure window of translation of the utility model.

[0021] In the drawing: 1, door and window frame;2, recess;3, moving groove;4, front window frame;5, rear window frame;6, adjusting assembly;7, glass;8, sealing strip;9, first sealing gasket;10, second sealing gasket;601, adjusting knob;602, driving turbine;603, driven turbine;604, screw;605, sliding block;606, connecting plate;501, outer frame;502, horizontal heat preservation cavity;503, vertical heat preservation cavity;504, protective layer;505, small heat preservation cavity;506, partition frame;507, cavity;508, encapsulation plate. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0023] Please refer to Figures 1-3 The utility model provides a technical scheme: an aluminium alloy heat insulation side pressure window, including door and window frame 1, recess 2 is set up in the inside both sides of door and window frame 1, moving groove 3 is set up in the inside upper and lower ends of door and window frame 1, and the inner chamber of moving groove 3 is slidably installed with front window frame 4 and rear window frame 5, and rear window frame 5 is located at the rear end of front window frame 4, and the front end of one side of door and window frame 1 is movably installed with adjusting assembly 6, and the inside of front window frame 4 and rear window frame 5 is fixedly installed with glass 7, and one side of front window frame 4 and rear window frame 5 is fixedly installed with sealing strip 8 respectively, and the upper and lower ends of moving groove 3 are movably installed with first sealing gasket 9 and second sealing gasket 10 respectively, and the upper and lower ends of front window frame 4 and rear window frame 5 are slidably connected with the inner chamber of moving groove 3, and one side of front window frame 4 and rear window frame 5 is movably connected with the inner chamber of recess 2, and sealing strip 8 is located at one side of recess 2, and first sealing gasket 9 is located at the lower end of front window frame 4, and second sealing gasket 10 is located at the lower end of rear window frame 5, when sliding door and window, by adjusting, make sealing gasket away from the upper and lower ends of frame, to avoid sealing gasket sliding friction damage.

[0024] In the embodiment, as Figure 4As shown, the adjusting assembly 6 comprises an adjusting knob 601, a driving turbine 602, a driven turbine 603, a lead screw 604, a sliding block 605 and a connecting plate 606, one side of the adjusting knob 601 is fixedly connected with the driving turbine 602, both ends of the driving turbine 602 are movably installed with the driven turbines 603, one side of the driven turbine 603 is fixedly connected with the lead screw 604, the outer wall of the lead screw 604 is slidably connected with the sliding block 605, one side of the sliding block 605 is fixedly connected with the connecting plate 606, the first sealing gasket 9 and the second sealing gasket 10 are fixedly located at one side of the connecting plate 606, the connecting plate 606 is movably located at the inner cavities of the upper and lower ends of the door and window frame 1, the adjusting knob 601 is movably located at one side of the front end of the door and window frame 1, the mutual cooperation of the adjusting knob 601, the driving turbine 602, the driven turbine 603, the lead screw 604, the sliding block 605 and the connecting plate 606 of the adjusting assembly 6 is arranged, the sealing effect of the door and window is improved, the driving turbine 602 is driven to rotate by the adjusting knob 601, the connecting plate 606 on one side of the sliding block 605 is moved by the lead screw 604, the first sealing gasket 9 and the second sealing gasket 10 are sealed between the front window frame 4, the rear window frame 5 and the door and window frame 1, and the service life of the sealing gasket is also improved.

[0025] In the embodiment, as shown in the figure, Figure 5 As shown, the rear window frame 5 comprises an outer frame 501, a horizontal heat preservation cavity 502, a vertical heat preservation cavity 503, a protective layer 504, a small heat preservation cavity 505, a partition frame 506, a cavity 507 and an encapsulation plate 508, the horizontal heat preservation cavities 502 are arranged at the upper and lower ends of the inner cavity of the outer frame 501, the vertical heat preservation cavities 503 are arranged at the two sides of the inner cavity of the outer frame 501, the protective layer 504 is fixedly installed on the inner walls of the horizontal heat preservation cavities 502 and the vertical heat preservation cavities 503, the small heat preservation cavities 505 are arranged at the upper and lower sides of the inner side of the outer frame 501, the partition frame 506 is fixedly connected between the small heat preservation cavities 505, the horizontal heat preservation cavities 502 and the vertical heat preservation cavities 503, the cavity 507 is arranged in the inner cavity of the outer frame 501, the encapsulation plates 508 are fixedly installed on one side of the horizontal heat preservation cavities 502 and the vertical heat preservation cavities 503, the number of the horizontal heat preservation cavities 502 and the vertical heat preservation cavities 503 is two groups, the cavity 507 is located between the horizontal heat preservation cavities 502, and the small heat preservation cavities 505 are located at the two sides of the horizontal heat preservation cavities 502, the vertical heat preservation cavities 503, the horizontal heat preservation cavities 502 and the small heat preservation cavities 505 are arranged, the inner part is the cavity 507, the air content inside is small, the heat cannot be transmitted, the heat insulation effect is achieved, the partition is divided into multiple cavities, the heat preservation performance of the window frame can be improved, and the protection of the window frame is improved through the protective layer 504.

[0026] Working principle:

[0027] Through the cooperation of the adjusting knob 601, the driving turbine 602, the driven turbine 603, the screw rod 604, the sliding block 605 and the connecting plate 606 in the adjusting assembly 6, the sealing effect of the door and window is improved, the driving turbine 602 is driven to rotate by the adjusting knob 601, the driven turbine 603 on both sides is driven to rotate, the connecting plate 606 on one side of the sliding block 605 is driven to move by the screw rod 604, and the first sealing gasket 9 and the second sealing gasket 10 are sealed with the front window frame 4, the rear window frame 5 and the door and window frame 1, and the service life of the sealing gasket is also improved, when the sliding door and window are used, the sealing gasket is away from the upper and lower ends of the frame through adjustment, so that the sliding friction damage of the sealing gasket is avoided, the vertical heat preservation cavity 503, the horizontal heat preservation cavity 502 and the small heat preservation cavity 505 are provided, the inside is the cavity 507, the air content inside is small, heat cannot be transmitted, heat insulation effect is achieved, the heat preservation performance of the window frame is improved, and the protection of the window frame is improved through the protection layer 504.

[0028] Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the range protected by the utility model.

Claims

1. An aluminium alloy thermally insulated sliding side-hinged window comprising a door and window frame (1), characterised in that: The door and window frame (1) is provided with a groove (2) on both sides of the inner side, and the upper and lower ends of the inner side of the door and window frame (1) are provided with a moving groove (3), the inner cavity of the moving groove (3) is slidably connected with the front window frame (4) and the rear window frame (5), and the rear window frame (5) is located at the rear end of the front window frame (4), the front end of one side of the door and window frame (1) is movably connected with an adjusting assembly (6), and the inner side of the front window frame (4) and the rear window frame (5) is fixedly connected with a glass (7).

2. The aluminum alloy thermally-broken sliding side-hung window according to claim 1, wherein: The front window frame (4) and the rear window frame (5) are respectively fixedly connected with a sealing strip (8) on one side, and the upper and lower ends of the moving groove (3) are respectively movably connected with a first sealing gasket (9) and a second sealing gasket (10).

3. The aluminum alloy thermally-broken sliding side-hung window according to claim 2, wherein: The adjusting assembly (6) comprises an adjusting knob (601), a driving turbine (602), a driven turbine (603), a lead screw (604), a sliding block (605) and a connecting plate (606), one side of the adjusting knob (601) is fixedly connected with the driving turbine (602), both ends of the driving turbine (602) are movably connected with the driven turbine (603), one side of the driven turbine (603) is fixedly connected with the lead screw (604), the outer wall of the lead screw (604) is slidably connected with the sliding block (605), and one side of the sliding block (605) is fixedly connected with the connecting plate (606).

4. The aluminum alloy thermally-broken sliding side-hung window according to claim 3, wherein: The rear window frame (5) comprises an outer frame (501), a horizontal heat preservation cavity (502), a vertical heat preservation cavity (503), a protective layer (504), a small heat preservation cavity (505), a partition frame (506), a cavity (507) and an encapsulation plate (508), the horizontal heat preservation cavities (502) are formed in the inner cavities of the upper and lower ends of the outer frame (501), the vertical heat preservation cavities (503) are formed in the inner cavities of the two sides of the outer frame (501), the inner walls of the horizontal heat preservation cavities (502) and the vertical heat preservation cavities (503) are fixedly connected with the protective layer (504), the small heat preservation cavities (505) are formed in the inner sides of the upper and lower sides of the outer frame (501), the small heat preservation cavities (505), the horizontal heat preservation cavities (502) and the vertical heat preservation cavities (503) are fixedly connected with the partition frame (506), the inner cavity of the outer frame (501) is provided with the cavity (507), and one side of the horizontal heat preservation cavity (502) and the vertical heat preservation cavity (503) is fixedly connected with the encapsulation plate (508).

5. The aluminum alloy thermally-broken sliding side-hung window according to claim 2, wherein: The upper and lower ends of the front window frame (4) and the rear window frame (5) are slidably connected with the inner cavity of the moving groove (3), one side of the front window frame (4) and the rear window frame (5) is movably connected with the inner cavity of the groove (2), the sealing strip (8) is located on one side of the groove (2), the first sealing gasket (9) is located at the lower end of the front window frame (4), and the second sealing gasket (10) is located at the lower end of the rear window frame (5).

6. The aluminum alloy thermally-broken sliding side-hung window according to claim 3, wherein: The first sealing gasket (9) and the second sealing gasket (10) are respectively fixedly connected on one side of the connecting plate (606), the connecting plate (606) is movably arranged in the inner cavities of the upper and lower ends of the door and window frame (1), and the adjusting knob (601) is movably arranged on one side of the front end of the door and window frame (1).

7. The aluminum alloy thermally-broken sliding side-hung window according to claim 4, wherein: The transverse heat preservation cavities (502) and vertical heat preservation cavities (503) are two groups, the cavities (507) are located between the transverse heat preservation cavities (502), and the small heat preservation cavities (505) are located on both sides of the transverse heat preservation cavities (502).