CN210918802U - Wind-proof water-draining aluminium alloy window - Google Patents

Wind-proof water-draining aluminium alloy window Download PDF

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Publication number
CN210918802U
CN210918802U CN201921506272.3U CN201921506272U CN210918802U CN 210918802 U CN210918802 U CN 210918802U CN 201921506272 U CN201921506272 U CN 201921506272U CN 210918802 U CN210918802 U CN 210918802U
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CN
China
Prior art keywords
drainage
water
wind
side wall
front side
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Expired - Fee Related
Application number
CN201921506272.3U
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Chinese (zh)
Inventor
罗耀淦
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Foshan Chancheng Guangyu Aluminum Co ltd
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Foshan Chancheng Guangyu Aluminum Co ltd
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Priority to CN201921506272.3U priority Critical patent/CN210918802U/en
Application granted granted Critical
Publication of CN210918802U publication Critical patent/CN210918802U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides a technical scheme that its technical problem adopted is: a wind-resistant drainage aluminum alloy window comprising: the window frame comprises a lower frame and glass, wherein the lower frame wraps the lower part of the glass, and the window frame is characterized in that the lower frame is provided with a front side wall and a front longitudinal beam, the front longitudinal beam is arranged on the rear side of the front side wall, an upper transverse beam and a water guide slope are connected between the front side wall and the front longitudinal beam, the water guide slope is arranged below the upper transverse beam, and the water guide slope inclines downwards from back to front; the inner cavity of the lower frame is provided with a water collecting tank, the front side wall and the front vertical beam of which are side wall surfaces, the upper horizontal beam of which is a top surface and a water guide slope is a bottom surface, the water collecting tank is arranged below the glass, and the upper horizontal beam of which is provided with a vertical drainage hole which is communicated with the water collecting tank and is connected with the water collecting tank; and the left side and the right side of the cavity of the drainage cavity are respectively provided with a water stop pad, the front side wall of the drainage cavity is a drainage wind-proof plate, and the upper end of the drainage wind-proof plate is hinged with the upper part of the drainage cavity.

Description

Wind-proof water-draining aluminium alloy window
Technical Field
The utility model belongs to aluminum alloy window field especially prevents wind drainage aluminum alloy window.
Background
The door and window is as the facade of building, and one of them function is exactly sheltering from wind and rain, and when rainy, the rainwater can be hit on glass, and most rainwater all can be isolated outside, has some rainwater to permeate on the frame along glass's surface, in order to in time drain off these waters, need process the wash port on lower frame or horizontal mungbean lateral surface, when blowing the wind not little, these waters can normally be discharged, when scraping the typhoon, because of the wind speed is too big, can cause the drainage and push back against, has influenced the drainage performance of whole window, has produced the risk of leaking.
Disclosure of Invention
In order to overcome above technical problem, the utility model provides a prevent wind drainage aluminum alloy window, its is whole novel, and combines pleasing to the eye structure, effectively blocks the rainwater of frame under the infiltration, even meet the too big drainage that does not influence of wind speed, effectively avoids the condition of window form infiltration.
The utility model provides a technical scheme that its technical problem adopted is: a wind-resistant drainage aluminum alloy window comprising: the window frame comprises a lower frame and glass, wherein the lower frame wraps the lower part of the glass, and the window frame is characterized in that the lower frame is provided with a front side wall and a front longitudinal beam, the front longitudinal beam is arranged on the rear side of the front side wall, an upper transverse beam and a water guide slope are connected between the front side wall and the front longitudinal beam, the water guide slope is arranged below the upper transverse beam, and the water guide slope inclines downwards from back to front;
the inner cavity of the lower frame is provided with a water collecting tank, the front side wall and the front vertical beam of which are side wall surfaces, the upper horizontal beam of which is a top surface and a water guide slope is a bottom surface, the water collecting tank is arranged below the glass, and the upper horizontal beam of which is provided with a vertical drainage hole which is communicated with the water collecting tank and is connected with the water collecting tank;
the water stop pad is installed respectively on the left side and the right side of the cavity in drainage cavity, and the preceding lateral wall in drainage cavity is the board is prevent wind in the drainage, and the board upper end is prevent wind in the drainage is connected with drainage cavity upper portion hinge formula, and the board is prevent wind in the drainage is around the swing of upper portion link, and the board is prevent wind in the drainage wholly is the front side in flagging state and closed or not closed drainage cavity.
The technical effects are as follows:
1. the rainwater flows to the lower frame along the glass wall downwards, the rainwater gets into the water catch bowl of lower frame, then flow to the drainage chamber through perpendicular drain hole, the rainwater flows to the drainage chamber front side through the water guide slope, when outdoor crosswind is big, the board is prevent wind in the drainage keeps the closed drainage chamber of flagging state, prevent that strong wind from blowing outdoor rainwater into the drainage intracavity, reach behind the basis weight when the rainwater, produce thrust through the basis weight and make the board is prevent wind in the drainage outwards turn over and open the drainage chamber, the drainage chamber is discharged smoothly to the rainwater, form the unidirectional type drainage, it prevents effectively that the board blocks the rainwater of infiltration lower frame through the drainage, even meet too big wind speed and do not influence drainage yet, effectively avoid the condition of window form infiltration.
2. The whole lower frame adopts the formula of sinking drainage, cooperates the structure of low inside height outside the water guide slope, increases the mobility of water for drainage speed.
3. The left side and the right side of the cavity of the drainage cavity are window frame joints of the lower frame, and the water stop pad can prevent rainwater from leaking into the window from the window frame joints of the lower frame.
4. The drainage wind-proof plate is in a natural sagging state, so that the installation of the drainage sealing cover can be reduced, and the attractiveness of the whole window is maintained.
Furthermore, the vertical drain hole is arranged at the rear part of the upper horizontal beam, the front part of the upper horizontal beam is provided with a mounting groove with a C-shaped cross section, and the mounting groove is arranged at the connecting part of the upper horizontal beam and the front side wall; the mounting groove is integrally formed with the upper horizontal beam and the front side wall.
Furthermore, the opening of the upper horizontal installation groove is downward and is arranged in the drainage cavity, the upper part of the drainage windproof plate is provided with a spherical installation end, the installation end of the drainage windproof plate is arranged in the installation groove, and the drainage windproof plate swings around the center line of the installation groove; when the drainage windproof plate does not close the drainage cavity, the drainage windproof plate turns outwards around the central line of the mounting groove.
The technical effects are as follows: the mounting groove opening is downward and arrange the drainage intracavity in and can prevent that rain from oozing into the drainage chamber from the member junction, and the mounting groove forms hinged joint with the mounting end.
Furthermore, an L-shaped water retaining vertical face which is inwards concave is arranged at the joint of the water guide slope and the front side wall; the water-retaining vertical surface, the water guide slope and the front side wall are integrally formed.
Furthermore, the lower part of the drainage wind-proof plate exceeds the extension line of the water guiding slope plate body, the lower part of the drainage wind-proof plate is arranged in the water retaining vertical surface, and the drainage wind-proof plate is arranged between the mounting groove and the water retaining vertical surface.
Further, when the front side of the drainage cavity is closed by the drainage wind-proof plate, the lower part of the drainage wind-proof plate is arranged in the water retaining vertical surface, and the drainage wind-proof plate and the front side wall are positioned on the same vertical surface; when the drainage wind-proof plate does not close the front side of the drainage cavity, the lower part of the drainage wind-proof plate leaves the water retaining vertical surface.
The technical effects are as follows: the water retaining vertical surface plays a role in improving the sealing performance and can prevent mosquitoes from parasitizing at a drainage position or prevent dust from accumulating to reduce the drainage effect.
Furthermore, the upper part of the lower frame is connected with the glass, and a sealing rubber strip is arranged at the joint of the lower frame and the glass.
The technical effects are as follows: the reducible rainwater of joint strip gets into in the frame down.
Furthermore, the front side wall of the lower frame is higher than the front vertical beam, and a sealing rubber strip is arranged between the upper part of the front side wall and the glass.
The technical effects are as follows: the rainwater collects the rainwater in the water collecting tank after penetrating through the sealing rubber strip.
Further, the height of the inner cavity of the water collecting tank is greater than or equal to 5mm, and the width of the inner cavity of the water collecting tank is greater than or equal to 12 mm.
Further, an included angle a between 10 degrees and 75 degrees is formed between the extension line of the water guide sloping plate body and the horizontal line.
Each of the above is further an example, and each example may be taken alone as an embodiment, or may be arbitrarily combined to form a combined embodiment on the premise of ensuring no contradiction.
Drawings
Fig. 1 is a schematic side view of the present invention;
FIG. 2 is a schematic view of the water flow of the present invention;
FIG. 3 is a schematic view of the side installation of the water stop pad of the present invention;
fig. 4 is a schematic view of the front installation of the water stop pad of the present invention.
In fig. 1 to 4, the correspondence between the part names and the reference numbers is:
1.11 installation ends of 1.1 drainage wind-proof plates of the front side wall 1.1 of the lower frame 1.12 front longitudinal bars 1.2 upper transverse bars 1.3 installation grooves 1.31 water guide slopes 1.4 water retaining elevation 1.41 water collecting tank 2 drainage cavity 3 water stop pad 4 vertical drainage holes 5 sealing rubber strips 6 glass 7
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below are exemplary only for the purpose of illustrating the present invention and are not to be construed as limiting the invention, but on the contrary, the embodiments of the present invention include all changes, modifications and equivalents coming within the spirit and terms of the appended claims.
As shown in fig. 1 to 4, the wind-proof drainage aluminum alloy window of the embodiment includes a lower frame 1 of a window frame and glass 7, the lower frame 1 wraps the lower portion of the glass 7, the lower frame 1 has a front side wall 1.1 and a front vertical beam 1.2, the front vertical beam 1.2 is disposed at the rear side of the front side wall 1.1, an upper horizontal beam 1.3 and a water guiding slope 1.4 are connected between the front side wall 1.1 and the front vertical beam 1.2, the water guiding slope 1.4 is disposed below the upper horizontal beam 1.3, and the water guiding slope 1.4 is inclined downward from back to front; the inner cavity of the lower frame 1 is provided with a water collecting tank 2 with a front side wall 1.1 and a front vertical beam 1.2 as side wall surfaces and an upper vertical beam 1.3 as a bottom surface, a drainage cavity 3 with a front side wall 1.1 and a front vertical beam 1.2 as side wall surfaces and an upper vertical beam 1.3 as a top surface and a water guiding slope 1.4 as a bottom surface, the water collecting tank 2 is arranged below the glass 7, the drainage cavity 3 is arranged below the water collecting tank 2, and the upper vertical beam 1.3 is provided with a vertical drainage hole 5 which is communicated with the drainage cavity 3 and the water collecting tank 2; water stop 4 is installed respectively on the cavity left side and the right side in drainage chamber 3, and the preceding lateral wall 1.1 in drainage chamber 3 is for the drainage prevent wind board 1.11, and the drainage prevent wind board 1.11 upper end is connected with the 3 upper portions hinge of drainage chamber, and the drainage prevent wind board 1.11 is around the swing of upper portion link, and the drainage prevent wind board 1.11 is whole to be the front side that droops under the circumstances and closed or not closed drainage chamber 3.
As shown in fig. 1, the vertical drainage hole 5 of this embodiment is disposed at the rear portion of the upper horizontal member 1.3, the front portion of the upper horizontal member 1.3 has a mounting groove 1.31 with a C-shaped cross section, and the mounting groove 1.31 is disposed at the connection portion between the upper horizontal member 1.3 and the front side wall 1.1; the mounting groove 1.31 is integrally formed with the upper horizontal beam 1.3 and the front side wall 1.1; the mounting groove 1.31 of the upper horizontal support 1.3 is downward opened and is arranged in the drainage cavity 3, the upper part of the drainage windproof plate 1.11 is provided with a spherical mounting end 1.12, the mounting end 1.12 of the drainage windproof plate 1.11 is arranged in the mounting groove 1.31, and the drainage windproof plate 1.11 swings around the central line of the mounting groove 1.31; when the drainage windproof plate 1.11 does not close the drainage cavity 3, the drainage windproof plate 1.11 turns outwards around the central line of the mounting groove 1.31; the joint of the water guide slope 1.4 and the front side wall 1.1 is provided with an L-shaped inward concave water retaining vertical surface 1.41; the water retaining vertical surface 1.41 is integrally formed with the water guide slope 1.4 and the front side wall 1.1; the lower part of the drainage wind-proof plate 1.11 exceeds the extension line of the water guide slope 1.4 plate body, the lower part of the drainage wind-proof plate 1.11 is arranged in the water retaining vertical surface 1.41, and the drainage wind-proof plate 1.11 is arranged between the installation groove 1.31 and the water retaining vertical surface 1.41.
As shown in fig. 1 and 2, when the drainage wind-prevention plate 1.11 of the embodiment closes the front side of the drainage cavity 3, the lower part of the drainage wind-prevention plate 1.11 is placed in the water-blocking vertical surface 1.41, and the drainage wind-prevention plate 1.11 and the front side wall 1.1 are on the same vertical surface; when the drainage wind-proof plate 1.11 does not close the front side of the drainage cavity 3, the lower part of the drainage wind-proof plate 1.11 leaves the water-retaining vertical surface 1.41.
As shown in fig. 1, the upper part of the lower frame 1 of the embodiment is connected with the glass 7, and a sealing rubber strip 6 is arranged at the joint of the lower frame 1 and the glass 7; the front side wall 1.1 of the lower frame 1 is higher than the front vertical beam 1.2, and a sealing rubber strip 6 is arranged between the upper part of the front side wall 1.1 and the glass 7; the height of the inner cavity of the water collecting tank 2 is more than or equal to 5mm, and the width of the inner cavity of the water collecting tank 2 is more than or equal to 12 mm; the extension line of the plate body of the water guide slope 1.4 forms an included angle a of 10 degrees to 75 degrees with the horizontal line.
In general, the drainage wind-proof plate 1.11 closes the front side of the drainage cavity 3, the lower part of the drainage wind-proof plate 1.11 is arranged in the water-retaining vertical surface 1.41, and the drainage wind-proof plate 1.11 and the front side wall 1.1 are positioned on the same vertical surface; when rainwater flows downwards to the lower frame 1 along the wall surface of the glass 7 and seeps through the sealing rubber strip 6 of the front side wall 1.1, the rainwater enters the water collecting groove 2 of the lower frame 1, flows into the drainage cavity 3 from the water collecting groove 2 through the vertical drainage hole 5, flows to the front side of the drainage cavity 3 through the water guide slope 1.4, and when outdoor side wind is strong, the drainage windproof plate 1.11 keeps a sagging state to close the drainage cavity 3, so that the outdoor rainwater is prevented from being blown into the drainage cavity 3 by strong wind; after rainwater in the drainage cavity 3 is collected and reaches a certain weight, the drainage wind-proof plate 1.11 is turned outwards by thrust generated by self weight, and the rainwater is smoothly drained out of the drainage cavity 3 to form unidirectional drainage.
Its overall structure is novel, design through formula drainage prevent wind board 1.11 cooperation with the drainage effectively stop the rainwater of infiltration lower frame, even meet the too big drainage that does not influence of wind speed, effectively avoid the condition of window form infiltration.

Claims (9)

1. A wind-resistant drainage aluminum alloy window comprising: the window frame comprises a lower frame (1) and glass (7), wherein the lower frame (1) wraps the lower part of the glass (7), and is characterized in that the lower frame (1) is provided with a front side wall (1.1) and a front vertical beam (1.2), the front vertical beam (1.2) is arranged on the rear side of the front side wall (1.1), an upper horizontal beam (1.3) and a water guide slope (1.4) are connected between the front side wall (1.1) and the front vertical beam (1.2), the water guide slope (1.4) is arranged below the upper horizontal beam (1.3), and the water guide slope (1.4) inclines downwards from back to front;
a water collecting tank (2) with a front side wall (1.1) and a front longitudinal beam (1.2) as side wall surfaces and an upper longitudinal beam (1.3) as bottom surfaces and a water drainage cavity (3) with a front side wall (1.1) and a front longitudinal beam (1.2) as side wall surfaces and an upper transverse beam (1.3) as top surfaces and a water guide slope (1.4) as bottom surfaces are formed in the inner cavity of the lower frame (1), the water collecting tank (2) is arranged below the glass (7), the water drainage cavity (3) is arranged below the water collecting tank (2), and the upper longitudinal beam (1.3) is provided with a vertical water drainage hole (5) which is communicated with the water drainage cavity (3) and the water collecting tank (2);
water stop pads (4) are respectively installed on the left side and the right side of a cavity of the drainage cavity (3), a front side wall (1.1) of the drainage cavity (3) is provided with a drainage wind-proof plate (1.11), the upper end of the drainage wind-proof plate (1.11) is hinged with the upper part of the drainage cavity (3), the drainage wind-proof plate (1.11) swings around an upper connecting end, and the drainage wind-proof plate (1.11) is integrally in a drooping state and is closed or is not closed at the front side of the drainage cavity (3).
2. A wind-resistant and water-draining aluminum alloy window according to claim 1, wherein: the vertical drainage hole (5) is arranged at the rear part of the upper horizontal beam (1.3), the front part of the upper horizontal beam (1.3) is provided with a mounting groove (1.31) with a C-shaped cross section, and the mounting groove (1.31) is arranged at the joint of the upper horizontal beam (1.3) and the front side wall (1.1).
3. A wind-resistant and water-draining aluminum alloy window according to claim 2, wherein: go up mounting groove (1.31) opening of stile (1.3) downwards, and arrange in drainage chamber (3), drainage windproof plate (1.11) upper portion has and is globular installation end (1.12), and installation end (1.12) of drainage windproof plate (1.11) are arranged in mounting groove (1.31), and drainage windproof plate (1.11) is around the central line of mounting groove (1.31) and do the swing.
4. A wind-resistant and water-draining aluminum alloy window according to claim 3, wherein: the joint of the water guide slope (1.4) and the front side wall (1.1) is provided with an L-shaped inward concave water retaining vertical surface (1.41).
5. A wind-resistant and water-draining aluminum alloy window according to claim 4, wherein: the lower part of the drainage wind-proof plate (1.11) exceeds the extension line of the water guiding slope (1.4) plate body, the lower part of the drainage wind-proof plate (1.11) is arranged in the water retaining vertical surface (1.41), and the drainage wind-proof plate (1.11) is arranged between the installation groove (1.31) and the water retaining vertical surface (1.41).
6. A wind-resistant and water-draining aluminum alloy window according to claim 1, wherein: and a sealing rubber strip (6) is arranged at the joint of the lower frame (1) and the glass (7).
7. A wind-resistant and water-draining aluminum alloy window according to claim 6, wherein: the front side wall (1.1) of the lower frame (1) is higher than the front vertical beam (1.2), and a sealing rubber strip (6) is arranged between the upper part of the front side wall (1.1) and the glass (7).
8. A wind-resistant and water-repellent aluminum alloy window according to any one of claims 1 to 7, wherein: the height of the inner cavity of the water collecting tank (2) is more than or equal to 5mm, and the width of the inner cavity of the water collecting tank (2) is more than or equal to 12 mm.
9. A wind-resistant and water-draining aluminum alloy window according to claim 1, wherein: the extension line of the plate body of the water guide slope (1.4) forms an included angle a of 10 degrees to 75 degrees with the horizontal line.
CN201921506272.3U 2019-09-09 2019-09-09 Wind-proof water-draining aluminium alloy window Expired - Fee Related CN210918802U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921506272.3U CN210918802U (en) 2019-09-09 2019-09-09 Wind-proof water-draining aluminium alloy window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921506272.3U CN210918802U (en) 2019-09-09 2019-09-09 Wind-proof water-draining aluminium alloy window

Publications (1)

Publication Number Publication Date
CN210918802U true CN210918802U (en) 2020-07-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921506272.3U Expired - Fee Related CN210918802U (en) 2019-09-09 2019-09-09 Wind-proof water-draining aluminium alloy window

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022235171A1 (en) * 2021-05-06 2022-11-10 Architectural Profiles Limited Improvements to building elements, and methods of manufacture and installation of building elements

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022235171A1 (en) * 2021-05-06 2022-11-10 Architectural Profiles Limited Improvements to building elements, and methods of manufacture and installation of building elements

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Granted publication date: 20200703