CN221400231U - Hidden-row high-watertight integrated casement window - Google Patents

Hidden-row high-watertight integrated casement window Download PDF

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Publication number
CN221400231U
CN221400231U CN202322789039.3U CN202322789039U CN221400231U CN 221400231 U CN221400231 U CN 221400231U CN 202322789039 U CN202322789039 U CN 202322789039U CN 221400231 U CN221400231 U CN 221400231U
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CN
China
Prior art keywords
section bar
frame
window
cavity
drainage
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Application number
CN202322789039.3U
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Chinese (zh)
Inventor
杨拥彬
王小兵
任继飞
靳修广
李党军
张晓玲
单海珍
伊之平
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Hebei Lier Aluminum Co ltd
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Hebei Lier Aluminum Co ltd
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Priority to CN202322789039.3U priority Critical patent/CN221400231U/en
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Publication of CN221400231U publication Critical patent/CN221400231U/en
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  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Abstract

The utility model relates to the technical field of building doors and windows, in particular to a hidden-drainage high-watertight integrated casement window which comprises an outer frame formed by encircling first sectional materials, a window sash frame formed by encircling second sectional materials, a window screen frame formed by encircling third sectional materials, a glass plate and a window screen fan which are respectively arranged at the inner sides of the window sash frame and the window screen frame, wherein a drainage cavity is arranged at the outer side of the first sectional materials at the lower end of the outer frame, a first drainage hole is arranged at the upper end of the first sectional materials, an opening is arranged at the outer side of the drainage cavity, a swing baffle is covered on the opening, a glass clamping groove is arranged at the upper end of the second sectional materials at the lower end of the window sash frame, a second drainage hole is arranged at the lower end of the third sectional materials at the lower end of the window screen frame, and the third drainage holes are communicated with the inner cavity of the third sectional materials; the second water drain hole and the third water drain hole are respectively communicated with the first water drain hole. The utility model has smooth drainage and difficult blockage, and effectively avoids the phenomenon that rainwater flows backwards along with wind.

Description

Hidden-row high-watertight integrated casement window
Technical Field
The utility model relates to the technical field of building doors and windows, in particular to a hidden-row high-watertight integrated casement window.
Background
The door and window in the existing market adopts a plurality of sealing rubber strips to strengthen the windproof, heat-insulating and sound-insulating properties, and is easy to produce ponding in the window frame in rainy and foggy weather, and generally, a drain hole is designed on the outdoor side of the window frame, so that the ponding in the window frame flows out from the drain hole, and the drain hole is in the horizontal direction, is easy to be blocked and has the phenomenon that rainwater flows backwards along with wind.
Disclosure of utility model
The utility model aims to solve the problems, and provides the hidden drainage high watertight integrated casement window which is smooth in drainage and difficult to block, so that the phenomenon that rainwater flows backwards along with wind is effectively avoided.
The technical scheme adopted by the utility model is that the hidden drainage high watertight integrated casement window comprises an outer frame formed by encircling a first section bar, a window sash frame formed by encircling a second section bar, a window screen frame formed by encircling a third section bar, a glass plate and a window screen fan which are respectively arranged on the inner sides of the window sash frame and the window screen frame, wherein a drainage cavity is arranged on the outer side of the first section bar at the lower end of the outer frame, a first drainage hole is arranged on the upper end of the first section bar, the first drainage hole is communicated with the drainage cavity, an opening is arranged on the outer side of the drainage cavity, a swing baffle is covered on the opening, and the upper end of the swing baffle is hinged to the upper part of the opening of the drainage cavity; the upper end of the second section bar at the lower end of the window sash frame is provided with a glass clamping groove, the lower end of the second section bar is provided with a second drain hole, the second drain hole is communicated with the inner cavity of the second section bar, and the glass plate is arranged in the glass clamping groove and extends into the inner cavity of the second section bar; the upper end and the lower end of a third section bar at the lower end of the window screen frame are respectively provided with a third drain hole, and the third drain holes are communicated with an inner cavity of the third section bar; the second water drain hole and the third water drain hole are respectively communicated with the first water drain hole.
The inner side of the lower end of the drainage cavity is an inclined plane which inclines downwards from inside to outside.
The inner wall of the lower end of the opening side of the drainage cavity is provided with a baffle groove, and the lower end of the swing baffle is positioned in the baffle groove.
The first section bar of frame lower extreme is including being located the inboard a section bar, b section bar, setting up the first bridge cut-off board between a section bar and b section bar lower part, setting up the first sealing strip between a section bar and b section bar upper portion, the laminating of second section bar lower extreme and first sealing strip is tight in the top, the drainage cavity sets up in b section bar outside.
The second section bar of casement frame lower extreme includes the c section bar that is located a section bar upper end, with the adjacent d section bar of window screening frame, sets up the second bridge cut-off board between c section bar and d section bar lower part, sets up the tight riser in top of second bridge cut-off board lower extreme, form the glass draw-in groove between c section bar and the d section bar upper portion, the second wash port sets up in d section bar lower extreme and communicates with the cavity that forms between c section bar, d section bar and the glass board, tight riser in top is tight with first sealing strip.
The utility model discloses a window screen frame, including a section bar, a drainage cavity, a window screen frame, a section bar, a fixed slot, a sealing tight groove, a section bar indoor side upper end is provided with the sealing tight groove, c section bar lower extreme top is tightly in the sealing tight groove, b section bar outdoor side upper end is provided with the fixed slot, the drainage cavity sets up in b section bar outside and is located the fixed slot downside, d section bar top is tightly on the terminal surface of fixed slot towards indoor side, the window screen frame is fixed on the fixed slot.
A second sealing strip is arranged between the lower end of the c section bar and the propping position of the sealing propping groove, and a third sealing strip is arranged between the d section bar and the propping position of the fixing groove.
And a fourth sealing strip is arranged between the glass plate and the glass clamping groove.
The hidden drainage high watertight integrated casement window has the beneficial effects that the drainage cavity is arranged on the outer side of the first section bar at the lower end of the outer frame, the drainage holes are arranged up and down, so that accumulated water on the window screen frame and the window sash frame automatically flows downwards, the drainage speed is high, accumulated water is not generated, the swinging baffle can shield external sundries from entering, blocking is avoided, the swinging baffle is limited by the baffle groove, the swinging baffle can only swing outwards, the problem that rainwater flows backwards along with wind is effectively avoided, and blocking caused by the entering of dust and objects can be prevented.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of a first profile of the present utility model;
FIG. 3 is a schematic view of the structure of a second profile of the present utility model;
Fig. 4 is a schematic structural view of a third profile of the present utility model.
In the attached drawings, 1, a first section bar, 2, a second section bar, 3, a third section bar, 4, a glass plate, 5, a window screen fan, 6, a drainage cavity, 7, a first drainage hole, 8, a swinging baffle, 9, a second drainage hole, 10, a third drainage hole, 11, a drainage inclined plane, 12, a baffle groove, 13, an a section bar, 14, a section bar, 15, a first bridge-breaking plate, 16, a first sealing strip, 17, a c section bar, 18, a d section bar, 19, a second bridge-breaking plate, 20, a jacking vertical plate, 21, a sealing jacking groove, 22, a fixing groove, 23, a window screen frame, 24, a second sealing strip, 25, a third sealing strip, 26 and a fourth sealing strip.
Detailed Description
As shown in fig. 1-4, the utility model provides a hidden drainage high watertight integrated casement window, which comprises an outer frame formed by encircling a first section bar 1, a window sash frame formed by encircling a second section bar 2 and a window screen frame 23 formed by encircling a third section bar 3, a glass plate 4 and a window screen fan 5 respectively arranged on the inner sides of the window sash frame and the window screen frame 23, wherein the outer side of the first section bar 1 at the lower end of the outer frame is provided with a drainage cavity 6, the upper end of the first section bar 1 is provided with a first drainage hole 7, the first drainage hole 7 is communicated with the drainage cavity 6, the outer side of the drainage cavity 6 is provided with an opening, a swinging baffle 8 is covered on the opening, and the upper end of the swinging baffle 8 is hinged to the upper part of the opening of the drainage cavity 6; the upper end of the second section bar 2 at the lower end of the window sash frame is provided with a glass clamping groove, the lower end of the second section bar 2 is provided with a second drain hole 9, the second drain hole 9 is communicated with the inner cavity of the second section bar 2, and the glass plate 4 is arranged in the glass clamping groove and extends into the inner cavity of the second section bar 2; the upper end and the lower end of the third section bar 3 at the lower end of the window screen frame 23 are respectively provided with a third drain hole 10, and the third drain holes 10 are communicated with the inner cavity of the third section bar 3; the second water drain hole 9 and the third water drain hole 10 are respectively communicated with the first water drain hole 7.
The flat-open window structure of this design is: the window frame is the frame structure that is surrounded by first section bar 1, the casement frame is the frame structure that is surrounded by second section bar 2, glass board 4 installs in the casement frame, casement frame one side and window frame pass through the hinge and articulate, form the flat-open window, window screen frame 23 is the frame structure that is surrounded by third section bar 3, window screen frame 23 and casement frame are installed simultaneously in the casement frame, interval between the two, window screen frame one side articulates on window screen frame 23, window screen installs in window screen frame 23, window screen and casement frame connect articulated position be the homonymy, when using, window screen and casement frame can together flat-open, perhaps open the casement frame alone.
This design sets up drainage cavity 6 in the outdoor side of the first section bar 1 of frame lower extreme (i.e. the lower frame of frame), drainage cavity 6 and frame structure as an organic whole, when raining, the rainwater can follow the gap infiltration second section bar 2 between glass board 4 and the second section bar 2, simultaneously because window screen frame is located the outdoor side, the rainwater can also follow the third section bar 3 upper end that gets into window screen frame, at this moment, the rainwater can follow second wash port 9 and third wash port 10 respectively and flow down first section bar 1 upper end, flow into drainage cavity 6 from first wash port 7 by first section bar 1 upper end again, swing baffle 8 on the opening of top drainage cavity 6 outwards discharges, accomplish the drainage, this design wash port is arranged from top to bottom, make window screen frame 23, ponding on the window sash frame automatic downflow, the drainage rate is fast, no ponding, swing baffle 8 can shelter from outside debris entering, avoid blocking up, ponding on can with window screen frame 23, the window sash frame.
As shown in fig. 1-2, the inner side of the lower end of the drainage cavity 6 is a drainage inclined plane 11 which is inclined from inside to outside and from bottom to bottom.
The drainage inclined plane 11 can accelerate the flow rate of accumulated water, and can not generate residual siltation, so that the drainage is more thorough.
As shown in fig. 1-2, the inner wall of the lower end of the opening side of the drainage cavity 6 is provided with a baffle groove 12, and the lower end of the swinging baffle 8 is positioned in the baffle groove 12.
The baffle groove 12 can limit the swinging baffle 8, so that the swinging baffle 8 can only swing outwards and cannot swing inwards, rainwater can be prevented from flowing backwards along with wind, dust and sundries are prevented from entering, and blockage cannot occur.
As shown in fig. 2, the first section bar 1 at the lower end of the outer frame comprises an a section bar 13, a b section bar 14 positioned at the indoor side, a first bridge-breaking plate 15 arranged between the a section bar 13 and the lower part of the b section bar 14, and a first sealing strip 16 arranged between the a section bar 13 and the upper part of the b section bar 14, the lower end of the second section bar 2 is tightly attached and pressed with the first sealing strip 16, and the drainage cavity 6 is arranged at the outdoor side of the b section bar 14.
The first section bar 1 adopts the bridge cut-off aluminum alloy section bar, has improved thermal-insulated heat preservation performance, and after the casement is closed, second section bar 2 and first sealing strip 16 top are tight, have improved the leakproofness, and ponding can not flow through a section bar simultaneously, can not influence holistic thermal-insulated heat preservation performance.
As shown in fig. 3, the second section bar 2 at the lower end of the window sash frame comprises a c section bar 17 at the upper end of an a section bar 13, a d section bar 18 adjacent to a window screen frame 23, a second bridge-breaking plate 19 arranged between the c section bar 17 and the lower part of the d section bar 18, and a jacking vertical plate 20 arranged at the lower end of the second bridge-breaking plate 19, wherein a glass clamping groove is formed between the upper parts of the c section bar 17 and the d section bar 18, and the second water drain hole 9 is arranged at the lower end of the d section bar 18 and communicated with a cavity formed between the c section bar 17, the d section bar 18 and the glass plate 4, and the jacking vertical plate 20 is jacked with the first sealing strip 16.
The second section bar 2 adopts the bridge cut-off aluminum alloy section bar equally, has improved thermal-insulated heat preservation performance, sets up second wash port 9 at d section bar 18 lower extreme, makes ponding can not flow through c section bar 17, separates through the route that ponding flows through route and the route that does not flow through with first sealing strip 16 through tight riser 20 in the top, can not influence holistic thermal-insulated heat preservation performance.
As shown in fig. 1, the upper end of the indoor side of the a-section 13 is provided with a sealing propping groove 21, the lower end of the c-section 17 is propped in the sealing propping groove 21, the upper end of the outdoor side of the b-section 14 is provided with a fixing groove 22, the drainage cavity 6 is arranged outside the b-section 14 and is positioned at the lower side of the fixing groove 22, the d-section 18 is propped against the end surface of the fixing groove 22 facing the indoor side, and the window screen frame 23 is fixed on the fixing groove 22.
The second section bar 2 is limited and tightly supported through the sealing supporting groove 21 and the fixing groove 22, and the window screen frame 23 is fixed through the fixing groove 22, so that the window screen fan 5 is convenient to install.
As shown in fig. 1, a second sealing strip 24 is disposed between the lower end of the c-shaped section 17 and the propping position of the sealing propping groove 21, and a third sealing strip 25 is disposed between the d-shaped section 18 and the propping position of the fixing groove 22.
As shown in fig. 1, a fourth sealing strip 26 is disposed between the glass plate 4 and the glass clamping groove.
The propping positions of the first section bar 1 and the second section bar 2 are sealed through the second sealing strip 24, the third sealing strip 25 and the fourth sealing strip 26, so that the sealing effect after propping is improved, and the heat insulation and sealing performance of the window is effectively improved.

Claims (8)

1. The utility model provides a integrative flat-open window of high watertight of hidden row, includes the frame that forms by first section bar (1) surround, sets up in the frame inboard and by the casement frame that forms by the surround of second section bar (2) and by window screening frame (23) that forms by the surround of third section bar (3), set up glass board (4) and window screening fan (5) inboard in casement frame and window screening frame (23) respectively, its characterized in that: the outdoor side of a first section bar (1) at the lower end of the outer frame is provided with a water draining cavity (6), the upper end of the first section bar (1) is provided with a first water draining hole (7), the first water draining hole (7) is communicated with the water draining cavity (6), the outdoor side of the water draining cavity (6) is provided with an opening, the opening is covered with a swinging baffle (8), and the upper end of the swinging baffle (8) is hinged to the upper part of the opening of the water draining cavity (6); the upper end of a second section bar (2) at the lower end of the window sash frame is provided with a glass clamping groove, the lower end of the second section bar is provided with a second drain hole (9), the second drain hole (9) is communicated with the inner cavity of the second section bar (2), and the glass plate (4) is arranged in the glass clamping groove and extends into the inner cavity of the second section bar (2); the upper end and the lower end of a third section bar (3) at the lower end of the window screen frame (23) are respectively provided with a third drain hole (10), and the third drain holes (10) are communicated with an inner cavity of the third section bar (3); the second water discharge hole (9) and the third water discharge hole (10) are respectively communicated with the first water discharge hole (7).
2. The hidden-row high-watertight integrated casement window according to claim 1, wherein: the inner side of the lower end of the drainage cavity (6) is an inclined plane (11) which inclines downwards from inside to outside.
3. The hidden-row high-watertight integrated casement window according to claim 1, wherein: the inner wall of the lower end of the opening side of the drainage cavity (6) is provided with a baffle groove (12), and the lower end of the swing baffle (8) is positioned in the baffle groove (12).
4. The hidden-row high-watertight integrated casement window according to claim 1, wherein: the first section bar (1) of frame lower extreme is including being located inboard a section bar (13), b section bar (14), setting up first bridge cut-off board (15) between a section bar (13) and b section bar (14) lower part, setting up first sealing strip (16) between a section bar (13) and b section bar (14) upper portion, second section bar (2) lower extreme and first sealing strip (16) laminating top are tight, drainage cavity (6) set up in b section bar (14) outdoor side.
5. The hidden-row high-watertight integrated casement window according to claim 4, wherein: the second section bar (2) of casement frame lower extreme is including being located c section bar (17) of a section bar (13) upper end, d section bar (18) adjacent with window screen frame (23), set up second bridge cut-off board (19) between c section bar (17) and d section bar (18) lower part, set up tight riser (20) in top of second bridge cut-off board (19) lower extreme, form the glass draw-in groove between c section bar (17) and d section bar (18) upper portion, second wash port (9) set up in d section bar (18) lower extreme and with the cavity intercommunication that forms between c section bar (17), d section bar (18) and glass board (4), tight riser (20) and first sealing strip (16) top tightly.
6. The hidden-row high-watertight integrated casement window according to claim 5, wherein: the novel plastic window is characterized in that a sealing jacking groove (21) is formed in the upper end of the indoor side of the a-shaped material (13), the lower end of the c-shaped material (17) is jacked in the sealing jacking groove (21), a fixing groove (22) is formed in the upper end of the outdoor side of the b-shaped material (14), the drainage cavity (6) is formed in the outer side of the b-shaped material (14) and located at the lower side of the fixing groove (22), the d-shaped material (18) is jacked on the end face, facing the indoor side, of the fixing groove (22), and the window screen frame (23) is fixed on the fixing groove (22).
7. The hidden-row high-watertight integrated casement window according to claim 6, wherein: a second sealing strip (24) is arranged between the lower end of the c-shaped section bar (17) and the propping position of the sealing propping groove (21), and a third sealing strip (25) is arranged between the d-shaped section bar (18) and the propping position of the fixing groove (22).
8. The hidden-row high-watertight integrated casement window according to claim 5, wherein: a fourth sealing strip (26) is arranged between the glass plate (4) and the glass clamping groove.
CN202322789039.3U 2023-10-17 2023-10-17 Hidden-row high-watertight integrated casement window Active CN221400231U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322789039.3U CN221400231U (en) 2023-10-17 2023-10-17 Hidden-row high-watertight integrated casement window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322789039.3U CN221400231U (en) 2023-10-17 2023-10-17 Hidden-row high-watertight integrated casement window

Publications (1)

Publication Number Publication Date
CN221400231U true CN221400231U (en) 2024-07-23

Family

ID=91925029

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322789039.3U Active CN221400231U (en) 2023-10-17 2023-10-17 Hidden-row high-watertight integrated casement window

Country Status (1)

Country Link
CN (1) CN221400231U (en)

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