CN215859750U - Rain-proof ventilation window - Google Patents
Rain-proof ventilation window Download PDFInfo
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- CN215859750U CN215859750U CN202122016007.0U CN202122016007U CN215859750U CN 215859750 U CN215859750 U CN 215859750U CN 202122016007 U CN202122016007 U CN 202122016007U CN 215859750 U CN215859750 U CN 215859750U
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- window frame
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- sashes
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Abstract
A rain-proof ventilating window is composed of an internal window frame with one or two internal sashes fixed to the inner side of vertical beam of internal window frame or matched with internal window frame in slide mode, an external window frame with one or two external sashes fixed to the outer side of vertical beam, and a gap between adjacent external sashes and internal window frame. When the window needs to be opened for ventilation in rainy days, the inner ventilation opening formed between the inner window sash and the inner window frame is shielded by the outer window sash in the state that the inner window sash and the outer window sash are opened, the outer ventilation opening formed between the outer window sash and the outer window frame is shielded by the inner window sash, the indoor and outdoor ventilation can be realized through the inner ventilation opening, the outer ventilation opening and the gap between the outer window sash and the inner window sash, and the indoor and outdoor ventilation can be prevented from drifting indoors due to the fact that the inner ventilation opening and the outer ventilation opening are shielded.
Description
Technical Field
The utility model relates to a window, in particular to a rainproof ventilation window.
Background
At present, a window which is more commonly used is provided with a window frame and two window sashes, wherein the window sashes are arranged in the window frame and are in sliding fit with each other. The window has compact structure and good lighting and ventilation effects, but has the following defects: in rainy days, when the window sash is opened for ventilation, rainwater often floats into the room, and in order to prevent the rainwater from entering the room, the window sash is only closed to give up the ventilation.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a rainproof ventilation window, which can achieve the ventilation effect in rainy days and can prevent rainwater from flowing into a room.
In order to achieve the purpose, the utility model adopts the following scheme: a rain-proof ventilating window is composed of an internal window frame with one or two internal sashes fixed to the inner side of vertical beam of internal window frame or matched with internal window frame in slide mode, an external window frame with one or two external sashes fixed to the outer side of vertical beam, and a gap between adjacent external sashes and internal window frame.
According to the scheme, when the window needs to be opened for ventilation in rainy days, the inner ventilation opening formed between the inner window sash and the inner window frame is shielded by the outer window sash in the state that the inner window sash and the outer window sash are opened, the outer ventilation opening formed between the outer window sash and the outer window frame is shielded by the inner window sash, the indoor and outdoor ventilation can be realized through the inner ventilation opening, the outer ventilation opening and the gap between the outer window sash and the inner window sash, and the indoor and outdoor ventilation openings are shielded, so that rainwater can be prevented from flowing into the indoor space.
The utility model has simple and reasonable structure, can ensure good ventilation and can prevent rainwater from entering the room when the window is opened in rainy days.
Drawings
FIG. 1 is a schematic structural diagram of a first embodiment of the present invention;
FIG. 2 is a rear view of FIG. 1;
FIG. 3 is a cross-sectional view A-A of FIG. 1;
FIG. 4 is a schematic structural diagram of a second embodiment of the present invention;
FIG. 5 is a schematic structural diagram of a third embodiment of the present invention;
FIG. 6 is a schematic structural diagram of a fourth embodiment of the present invention;
fig. 7 is a schematic structural diagram of a fifth embodiment of the present invention.
Detailed Description
The utility model is further illustrated below with reference to examples and figures.
See fig. 1, 2, 3
The rain-proof ventilation window provided by the utility model is provided with an inner window frame 1, an outer window frame 4 is arranged on the outer side of the inner window frame 1, two inner window sashes 2 are arranged in the inner window frame 1, the two inner window sashes 2 are in sliding fit with the inner window frame 1, two outer window sashes 3 are arranged in the outer window frame 4, the two outer window sashes 3 are respectively fixed with the inner side of a vertical beam of the outer window frame 4, an outer ventilation opening 6 is formed between the two outer window sashes 3, and a gap 5 is formed between the adjacent outer window sashes 3 and the inner window sashes 2.
In this embodiment, the inner window frame 2 and the inner window frame 1 are slidably engaged in the following manner: the inner side of the inner window frame 1 is respectively provided with two through grooves 1a, and each inner window sash 2 is respectively matched with one through groove 1a in a sliding manner.
As can be seen from fig. 1, 2 and 3, when the window is opened and ventilated in rainy days, the inner window sash 2 is opened, the inner ventilation opening 7 and the inner ventilation opening 8 formed between the inner window sash 2 and the inner window frame 1 are respectively shielded by the outer window sash 3, the outer ventilation opening 6 formed between the two outer window sashes 3 is shielded by the inner window sash 2, and the ventilation inside and outside the room can be realized through the inner ventilation opening 7, the inner ventilation opening 8, the outer ventilation opening 6 and the gap 5, and the rain water can be prevented from flowing into the room because the inner ventilation opening 7, the inner ventilation opening 8 and the outer ventilation opening 6 are all shielded.
See fig. 4
In this embodiment, two inner sashes 2 are installed in the inner window frame 1, the inner sash 2 is in sliding fit with the inner window frame 1, one outer sash 3 is installed in the outer window frame 4, the outer sash 3 is in sliding fit with the outer window frame 4, the area of the outer sash 3 is smaller than the opening area of the outer window frame 4, and a gap 5 is formed between the adjacent outer sash 3 and the inner sash 2.
In the embodiment, the sliding fit mode of the inner sash 2 and the inner window frame 1 is the same as that of the first embodiment; the outer window sash 3 is in sliding fit with the outer window frame 4 in a manner that a through groove 4a is formed in the inner side of the outer window frame 4, and the outer window sash 3 is in sliding fit with the through groove 4 a.
As shown in fig. 4, when the window is opened and ventilated in rainy days, the two inner window sashes 2 are moved to one side to form the inner ventilation opening 10, the outer window sash 3 is moved to the other side to form the outer ventilation opening 9, the inner ventilation opening 10 is shielded by the outer window sash 3, and the outer ventilation opening 9 is shielded by the inner window sash 2, so that rainwater can be prevented from entering the room, and the ventilation effect can be achieved. In sunny days, the inner window sash 2 and the outer window sash 3 are moved to the middle position, so that the formed outer ventilation opening and the inner ventilation opening are not shielded, and a better ventilation effect can be achieved.
See FIG. 5
In this embodiment, two inner sashes 2 are installed in the inner window frame 1, the inner sash 2 is in sliding fit with the inner window frame 1, the sliding fit mode of the inner sash 2 and the inner window frame 1 is the same as that of the first embodiment, one outer sash 3 is installed in the outer window frame 4, the outer sash 3 is fixed to the inner side of a vertical beam of the outer window frame 4, the area of the outer sash 3 is smaller than the opening area of the outer window frame 4, an outer ventilation opening 11 is formed between the outer sash 3 and the outer window frame 4, and a gap 5 is formed between the outer sash 3 and the adjacent inner sash 2.
As shown in fig. 5, when the window is opened and ventilated in rainy days, the two inner sashes 2 are moved to the right side to form the inner ventilation opening 12, the outer sash 3 shields the inner ventilation opening 12, and the two inner sashes 2 shield the outer ventilation opening 11, so that rainwater can be prevented from entering the room, and the ventilation effect can be achieved. In sunny days, the inner window sash 2 is moved leftwards, so that the outer ventilation opening 11 is not shielded, and a better ventilation effect can be achieved.
See FIG. 6
In this embodiment, two inner sashes 2 are installed in the inner window frame 1, the two inner sashes 2 are in sliding fit with the inner window frame 1, two outer sashes 3 are installed in the outer window frame 13, the two outer sashes 3 are in sliding fit with the outer window frame, and a gap 5 is formed between the adjacent outer sashes 3 and the inner sashes 2.
In the embodiment, the sliding fit mode of the inner sash 2 and the inner window frame 1 is the same as that of the first embodiment; the sliding fit mode of the outer window sash 3 and the outer window frame 13 is as follows: two through grooves 13a are formed on the inner side of the outer window frame 13, and each outer window sash 3 is slidably fitted with one through groove 13.
As shown in fig. 6, when the window is opened and ventilated in rainy days, the two inner window sashes 2 are moved to one side to form the inner ventilation opening 15, the two outer window sashes 3 are moved to the other side to form the outer ventilation opening 14, the inner ventilation opening 15 is shielded by the outer window sashes 3, and the outer ventilation opening 14 is shielded by the inner window sashes 2, so that rainwater can be prevented from entering the room, and the ventilation effect can be achieved. In addition, in sunny days, the inner window sash 2 and the outer window sash 3 are moved to the middle position, so that the formed outer ventilation opening and the inner ventilation opening are not shielded, and a better ventilation effect can be achieved.
See FIG. 7
In this embodiment, an inner sash 2 is installed in the inner window frame 16, the area of the inner sash 2 is smaller than the opening area of the inner window frame 16, the inner sash 2 is fixed to the inner side of a vertical beam of the inner window frame 16, or the inner sash 2 is in sliding fit with the inner window frame 16, an outer sash 3 is installed in the outer window frame 4, the area of the outer sash 3 is smaller than the opening area of the outer window frame 4, the outer sash 3 is fixed to the inner side of another vertical beam of the outer window frame 4, or the outer sash 3 is in sliding fit with the outer window frame 4, and a gap 5 is formed between the outer sash 3 and the inner sash 2.
In the state shown in fig. 7, the rain-proof and ventilation can be realized through the outer ventilation opening 17, the inner ventilation opening 18 and the gap 5, when the inner window sash is in sliding fit with the inner window frame and the outer window sash is in sliding fit with the outer window frame, the inner window sash 2 and the outer window sash 3 are moved to the middle position, so that the formed outer ventilation opening and the formed inner ventilation opening are not shielded, and a better ventilation effect can be achieved.
Claims (6)
1. The utility model provides a rain-proof ventilation window which characterized in that: the window frame is provided with an inner window frame, one to two inner window sashes are arranged in the inner window frame, the inner window sashes are fixed with the inner side of a vertical beam of the inner window frame or are in sliding fit with the inner window frame, an outer window frame is arranged on the outer side of the inner window frame, one to two outer window sashes are arranged in the outer window frame, the outer window sashes are fixed with the inner side of the vertical beam of the outer window frame or are in sliding fit with the outer window frame, and gaps are formed between the adjacent outer window sashes and the inner window sashes.
2. A rain-proof ventilation window as claimed in claim 1, wherein: two inner window sashes are arranged in the inner window frame, the two inner window sashes are in sliding fit with the inner window frame, two outer window sashes are arranged in the outer window frame, the two outer window sashes are respectively fixed with the inner side of a vertical beam of the outer window frame, and an outer ventilation opening is formed between the two outer window sashes.
3. A rain-proof ventilation window as claimed in claim 1, wherein: two inner window sashes are arranged in the inner window frame, the inner window sashes are in sliding fit with the inner window frame, one outer window sash is arranged in the outer window frame, the outer window sashes are in sliding fit with the outer window frame, and the area of the outer window sashes is smaller than the opening area of the outer window frame.
4. A rain-proof ventilation window as claimed in claim 1, wherein: two inner window sashes are arranged in the inner window frame, the inner window sashes are in sliding fit with the inner window frame, one outer window sash is arranged in the outer window frame, the outer window sash is fixed with the inner side of a vertical beam of the outer window frame, the area of the outer window sash is smaller than the opening area of the outer window frame, and an outer ventilation opening is formed between the outer window sash and the outer window frame.
5. A rain-proof ventilation window as claimed in claim 1, wherein: two inner window sashes are arranged in the inner window frame, the two inner window sashes are in sliding fit with the inner window frame, two outer window sashes are arranged in the outer window frame, and the two outer window sashes are in sliding fit with the outer window frame.
6. A rain-proof ventilation window as claimed in claim 1, wherein: the inner window frame is internally provided with an inner window sash, the area of the inner window sash is smaller than the opening area of the inner window frame, the inner window sash is fixed with the inner side of a vertical beam of the inner window frame, or the inner window sash is in sliding fit with the inner window frame, the outer window frame is internally provided with an outer window sash, the area of the outer window sash is smaller than the opening area of the outer window frame, and the outer window sash is fixed with the inner side of another vertical beam of the outer window frame, or the outer window sash is in sliding fit with the outer window frame.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122016007.0U CN215859750U (en) | 2021-08-25 | 2021-08-25 | Rain-proof ventilation window |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122016007.0U CN215859750U (en) | 2021-08-25 | 2021-08-25 | Rain-proof ventilation window |
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CN215859750U true CN215859750U (en) | 2022-02-18 |
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CN202122016007.0U Active CN215859750U (en) | 2021-08-25 | 2021-08-25 | Rain-proof ventilation window |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2621624A (en) * | 2022-08-18 | 2024-02-21 | Acoustic Facades Ltd | Installing a window assembly |
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2021
- 2021-08-25 CN CN202122016007.0U patent/CN215859750U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2621624A (en) * | 2022-08-18 | 2024-02-21 | Acoustic Facades Ltd | Installing a window assembly |
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