Heat-insulated inside-outside translation left-right push-pull closed window
By installing thermal insulation cotton and sealing strips on the window frame and operable sash, combined with thermally broken frame profiles and thermal break strips, the problems of inward-opening windows occupying indoor space and sliding windows having poor performance are solved, achieving efficient airtightness, watertightness, thermal insulation, heat insulation and sound insulation effects.
Patent Information
- Application Number
- CN202521441665.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-10
AI Technical Summary
Common inward-opening windows offer good airtightness but take up interior space, while sliding windows are poor in terms of water tightness, air tightness, and thermal insulation, and the window sash cannot be stopped at will, affecting safety and comfort.
Both the window frame and the operable sash are equipped with thermal insulation cotton and sealing strips. The window frame and the operable sash are sealed together by an external sealing strip. Combined with thermally broken frame profiles and thermal insulation strips, a triple seal is achieved. Triple-glazed double-cavity insulated glass and aluminum alloy materials are used, along with a side-pressure push-pull multi-point locking system.
It achieves efficient sealing between the window sash and the window frame, improving the overall airtightness, watertightness, heat insulation, and sound insulation performance of the window, and does not occupy indoor space when open, ensuring safe and comfortable use.
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Figure CN224679366U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of building materials, and specifically relates to a heat-insulating inner and outer translation left and right push-and-pull airtight window. Background Technique
[0002] Common inward-opening windows have good air tightness. However, after the window sash is opened into the room, the window sash will occupy the indoor space, affecting the use of curtains and also posing a safety hazard of children colliding. Common sliding windows move left and right on the track of the window frame during the opening and closing process of the window sash, so they do not occupy indoor space. However, the disadvantages are poor water tightness, air tightness, heat insulation and heat preservation performance, and the window sash cannot stop at any position on the track.
[0003] Based on the above problems, a heat-insulating inner and outer translation left and right push-and-pull airtight window proposed in this application absorbs the advantages of inward-opening windows and sliding windows, and at the same time avoids many of their disadvantages. Content of the Utility Model
[0004] The purpose of the utility model is to provide one to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solutions: A heat-insulating inner and outer translation left and right push-and-pull airtight window includes a window frame and an opening sash slidably fitted in the window frame. The opening sash includes an opening sash frame and a glass assembly arranged on the opening sash frame. Heat insulation cotton and inner sealing rubber strips are arranged on both the window frame and the opening sash frame, and the window frame and the opening sash frame are sealed and connected by a set of outer sealing rubber strips.
[0006] Further, the window frame includes a connected outdoor-side broken bridge heat-insulating frame profile and an indoor-side broken bridge heat-insulating frame profile. A first heat insulation cotton is arranged on one side of the outdoor-side broken bridge heat-insulating frame profile close to the glass assembly, and two first heat insulation strips are arranged on the side far from the glass assembly. One of the first heat insulation strips abuts against the first heat insulation cotton, and a second heat insulation cotton is arranged between the two first heat insulation strips.
[0007] Further, two second heat insulation strips are arranged between the outdoor-side broken bridge heat-insulating frame profile and the indoor-side broken bridge heat-insulating frame profile, and a fifth heat insulation cotton is arranged between the two second heat insulation strips.
[0008] Further, a first outer sealing rubber strip is arranged on one side of one of the second heat insulation strips close to the glass assembly, and the first outer sealing rubber strip is used to abut against the opening sash frame.
[0009] Further, a cover plate is arranged on one side of the outdoor-side broken bridge heat-insulating frame profile close to the glass assembly. The cover plate covers the first heat insulation cotton, and a second outer sealing rubber strip is arranged on the indoor side of the cover plate, and the second outer sealing rubber strip is used to abut against the opening sash frame.
[0010] Further, a PVC profile is provided on the indoor side of the outdoor-side broken bridge thermal insulation frame profile close to the glass assembly, and the PVC profile abuts against the indoor side of the first thermal insulation cotton.
[0011] Further, a track profile is provided on the indoor side of the indoor-side broken bridge thermal insulation frame profile close to the glass assembly.
[0012] Further, the sash frame of the opening sash includes a broken bridge thermal insulation sash profile. Two third thermal insulation strips are provided in the middle of the broken bridge thermal insulation sash profile, and a third thermal insulation cotton is provided between the two third thermal insulation strips. A fourth thermal insulation cotton is provided between one of the third thermal insulation strips and the glass assembly.
[0013] Further, a third outer sealing strip is provided on the indoor side of the broken bridge thermal insulation sash profile, and the third outer sealing strip is used to abut against the window frame.
[0014] Further, a first glass sealing strip is provided between the outdoor side of the broken bridge thermal insulation sash profile and the outdoor side of the glass assembly. A glass pressing strip is provided on the indoor side of the broken bridge thermal insulation sash profile, and a second glass sealing strip is provided between the glass pressing strip and the indoor side of the glass assembly.
[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: 1) Three sealing strips are used to seal between the window sash and the window frame, ensuring the airtightness, watertightness, heat insulation, sound insulation and heat preservation performance of the whole window.
[0016] 2) Sealing strips are used on both the inner and outer sides of the glass. In addition to ensuring the airtightness, watertightness, heat insulation, sound insulation and heat preservation performance of the whole window, it also plays a role in buffering and preventing the glass from breaking.
[0017] 3) The application of thermal insulation cotton, thermal insulation strips and PVC effectively prevents the conduction and convection of indoor and outdoor heat, achieving the purpose of heat insulation, sound insulation and heat preservation of the whole window. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a front elevation view of the present utility model.
[0019] Figure 2 It is Figure 1 One of the cross-sectional views at A in, and the opening sash is in a closed state in the figure.
[0020] Figure 3 It is Figure 1 The second cross-sectional view at A in, and the opening sash is in an open state in the figure.
[0021] In the diagram: a) Window frame, b) Opening sash, c) Fixed window glass, 1) Glass assembly, 2) Outdoor thermally broken frame profile, 3) Indoor thermally broken frame profile, 4) First insulation material, 5) First thermal insulation strip, 6) Second thermal insulation strip, 7) Fifth thermal insulation material, 8) First external sealing strip, 9) Cover plate, 10) Second external sealing strip, 11) PVC profile, 12) Track profile, 13) Thermally broken sash profile, 14) Third thermal insulation strip, 15) Third insulation material, 16) Fourth insulation material, 17) Third external sealing strip, 18) First glass sealing strip, 19) Glass retaining strip, 20) Second glass sealing strip, 21) Hardware components, 22) Detailed Implementation
[0022] 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.
[0023] Please see Figures 1-3 A heat-insulated sliding and sliding sealed window includes a window frame a, an opening sash b that slides in the window frame a, and a fixed window glass c that is fixedly installed in the window frame a. The opening sash b includes an opening sash frame and a glass assembly 1 installed on the opening sash frame. Both the window frame a and the opening sash frame are provided with thermal insulation cotton and inner sealing strips. The window frame a and the opening sash frame are sealed and connected by a set of outer sealing strips.
[0024] Continue reading Figure 2 In one embodiment of this utility model, the window frame a includes an outdoor thermal break frame profile 2 and an indoor thermal break frame profile 3 that are connected together. A first thermal insulation cotton 4 is provided on the side of the outdoor thermal break frame profile 2 near the glass assembly 1, and two first thermal insulation strips 5 are provided on the side of the outdoor thermal break frame profile 2 away from the glass assembly 1. One first thermal insulation strip 5 is away from the glass assembly 1, and the other first thermal insulation strip 5 is close to the glass assembly 1. The first thermal insulation strip 5 close to the glass assembly 1 abuts against the first thermal insulation cotton 4, and a second thermal insulation cotton 6 is provided between the two first thermal insulation strips 5.
[0025] Continue reading Figure 2 In one embodiment of this utility model, a cover plate 10 is provided on the side of the outdoor thermal break frame 2 near the glass assembly 1. The cover plate 10 covers the first thermal insulation cotton 4. A second outer sealing strip 11 is provided on the indoor side of the cover plate 10. The second outer sealing strip 11 is used to abut against the fan frame of the openable fan.
[0026] Continue reading Figure 2In one embodiment of this utility model, two second thermal insulation strips 7 are provided between the outdoor thermal break frame profile 2 and the indoor thermal break frame profile 3. One second thermal insulation strip 7 is away from the glass assembly 1, and the other second thermal insulation strip 7 is close to the glass assembly 1. A fifth thermal insulation cotton 8 is provided between the two second thermal insulation strips 7. A first outer sealing strip 9 is provided on the second thermal insulation strip 7 close to the glass assembly 1. The first outer sealing strip 9 is used to abut against the opening fan frame.
[0027] Continue reading Figure 2 In one embodiment of the present invention, an indoor PVC profile 12 is provided on the side of the outdoor thermal break frame profile 2 near the glass assembly 1. The PVC profile 12 abuts against the indoor side of the first thermal insulation cotton 4, and the PVC profile 12 is snapped into the cover plate 10 by a conventional snap-fit method.
[0028] Continue reading Figure 2 In one embodiment of this utility model, a track profile 13 is provided on the side of the indoor thermally broken frame profile 3 near the glass assembly 1.
[0029] Continue reading Figure 2 In one embodiment of this utility model, the operable window frame includes a thermally broken sash profile 14. Two third thermal break strips 15 are disposed in the middle of the thermally broken sash profile 14. One third thermal break strip 15 is close to the glass assembly 1, and the other third thermal break strip 15 is away from the glass assembly 1. A third thermal insulation cotton 16 is disposed between the two third thermal break strips 15, and a fourth thermal insulation cotton 17 is disposed between the third thermal break strip 15 close to the glass assembly 1 and the end of the glass assembly 1.
[0030] Continue reading Figure 2 In one embodiment of this utility model, a third outer sealing strip 18 is provided on the indoor side of the thermally broken fan profile 14, and the third outer sealing strip 18 is used to abut against the window frame a.
[0031] Continue reading Figure 2 In one embodiment of the present invention, a first glass sealing strip 19 is provided between the outdoor side of the thermal break fan profile 14 and the outdoor side of the glass assembly 1, a glass pressure strip 20 is provided on the indoor side of the thermal break fan profile 14 in a known snap-fit manner, and a second glass sealing strip 21 is provided between the glass pressure strip 20 and the indoor side of the glass assembly 1.
[0032] All the above-mentioned thermal insulation cotton is PE thermal insulation cotton, all the above-mentioned thermal insulation strips are PA66+GF25 thermal insulation strips, all the above-mentioned sealing strips are EPDM sealing strips, the above-mentioned outdoor thermal break frame profile 2, indoor thermal break frame profile 3, cover plate 10, track profile 13, thermal break fan profile 14, and glass pressure strip 20 are all made of aluminum alloy materials, and the above-mentioned glass assembly 1 is triple-glazed double-cavity insulated glass.
[0033] It should be noted that this utility model is a side-pressure sliding airtight window. This utility model employs a conventional "side-pressure push-pull multi-point locking hardware system" in the field to achieve the functions of window sash locking, inward and outward sliding, and left and right pushing and pulling. When the window sash is in the locked state (e.g....), Figure 2 As shown), three sealing strips are used to seal the window sash to the frame, improving airtightness, watertightness, heat insulation, and sound insulation. When the window sash is open, it shifts 7mm towards the interior (as shown). Figure 3 As shown), the three sealing strips are separated from the window frame and sash. At this time, when the sash slides left and right on the track, it feels light and smooth, and the operation is smooth.
[0034] The features of this utility model are as follows: 1. The sash profile has installation space for triple-glazed, double-cavity insulated glass, ensuring the overall heat insulation, thermal insulation, and sound insulation performance of the window.
[0035] 2. Three sealing strips are used between the window sash and the window frame to ensure the airtightness, watertightness, heat preservation, heat insulation and sound insulation performance of the entire window.
[0036] 3. Sealing strips are used on both the inside and outside of the glass. In addition to ensuring the airtightness, watertightness, heat insulation, sound insulation and heat insulation performance of the entire window, they also play a role in buffering and preventing the glass from breaking.
[0037] 4. The application of thermal insulation cotton, heat insulation strips, and PVC effectively prevents the conduction and convection of heat between indoors and outdoors, achieving the purpose of whole-window insulation, heat insulation, and sound insulation.
[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A heat-insulated, inward and outward sliding, left and right sliding sealed window, comprising a window frame (a) and an operable sash (b) slidably fitted within the window frame (a), wherein the operable sash (b) comprises an operable sash frame and a glass assembly (1) disposed on the operable sash frame, characterized in that, Both the window frame (a) and the operable sash frame are provided with thermal insulation cotton and inner sealing strips, and the window frame (a) and the operable sash frame are sealed and connected by a set of outer sealing strips. The window frame (a) includes an outdoor thermally broken frame profile (2) and an indoor thermally broken frame profile (3) connected together. The outdoor thermally broken frame profile (2) is provided with a cover plate (10) on the side near the glass assembly (1). The indoor side of the cover plate (10) is provided with a second external sealing strip (11), which is used to abut against the opening sash frame. The opening fan frame includes a thermally broken fan profile (14), and a third external sealing strip (18) is provided on the indoor side of the thermally broken fan profile (14), which is used to abut against the window frame (a).
2. The insulated, inward / outward sliding, left / right sliding sealed window according to claim 1, characterized in that, The outdoor thermal break frame profile (2) is provided with a first thermal insulation cotton (4) on the side close to the glass assembly (1) and two first thermal insulation strips (5) on the side away from the glass assembly (1). One of the first thermal insulation strips (5) abuts against the first thermal insulation cotton (4), and a second thermal insulation cotton (6) is provided between the two first thermal insulation strips (5).
3. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 2, characterized in that, Two second thermal insulation strips (7) are provided between the outdoor thermal break frame profile (2) and the indoor thermal break frame profile (3), and a fifth thermal insulation cotton (8) is provided between the two second thermal insulation strips (7).
4. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 3, characterized in that, One of the second heat insulation strips (7) is provided with a first outer sealing strip (9) on the side near the glass assembly (1), and the first outer sealing strip (9) is used to abut against the fan frame of the opening fan.
5. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 2, characterized in that, The cover plate (10) covers the first insulation cotton (4).
6. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 2, characterized in that, The outdoor thermal break frame profile (2) is provided with a PVC profile (12) on the indoor side of the side close to the glass assembly (1), and the PVC profile (12) abuts against the indoor side of the first thermal insulation cotton (4).
7. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 2, characterized in that, The indoor side thermal break frame profile (3) is provided with a track profile (13) on the side near the glass assembly (1).
8. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 1, characterized in that, Two third thermal insulation strips (15) are provided in the middle of the thermal break fan profile (14), and a third thermal insulation cotton (16) is provided between the two third thermal insulation strips (15). A fourth thermal insulation cotton (17) is provided between one of the third thermal insulation strips (15) and the glass assembly (1).
9. A heat-insulating, inward / outward sliding, left / right sliding sealed window according to claim 8, characterized in that, A first glass sealing strip (19) is provided between the outdoor side of the thermal break fan profile (14) and the outdoor side of the glass assembly (1), a glass pressure strip (20) is provided on the indoor side of the thermal break fan profile (14), and a second glass sealing strip (21) is provided between the glass pressure strip (20) and the indoor side of the glass assembly (1).