CN214303587U - Hidden windowsill drainage structures - Google Patents

Hidden windowsill drainage structures Download PDF

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Publication number
CN214303587U
CN214303587U CN202022496272.9U CN202022496272U CN214303587U CN 214303587 U CN214303587 U CN 214303587U CN 202022496272 U CN202022496272 U CN 202022496272U CN 214303587 U CN214303587 U CN 214303587U
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China
Prior art keywords
water
windowsill
water guide
plate
drainage
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CN202022496272.9U
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Chinese (zh)
Inventor
李伟萍
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Guangdong Weiye Aluminium Factory Co Ltd
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Guangdong Weiye Aluminium Factory Co Ltd
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Priority to CN202022496272.9U priority Critical patent/CN214303587U/en
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Abstract

The utility model discloses a hidden windowsill drainage structure, which comprises a glass bottom frame and a windowsill drainage plate, wherein the glass bottom frame is arranged at the bottom of a glass window, and the windowsill drainage plate covers the top surface of the windowsill; wherein, the bottom of the glass bottom frame is provided with a water outlet; the windowsill drain board comprises a water guide board and a shell board, and the water guide board is arranged below the water outlet relatively; the shell plate comprises a water inlet end and a water drainage end from top to bottom, the top of the water inlet end is abutted against the bottom of the glass bottom frame, the bottom of the water inlet end is connected with the water guide plate, and the water drainage end is arranged on one outdoor side of the windowsill; the shell plate is internally provided with a water guide cavity, the water inlet end of the shell plate is provided with a water inlet, the water discharge end is provided with a water discharge opening, and the water discharge opening, the water inlet, the water guide cavity and the water discharge opening are sequentially communicated. The utility model discloses can avoid the rainwater to reverse the infiltration return indoor, and the wholeness is strong, and the outward appearance is succinct.

Description

Hidden windowsill drainage structures
Technical Field
The utility model relates to a door and window drainage technology field especially relates to a hidden windowsill drainage structures.
Background
As shown in fig. 1, when a conventional building window is eroded by rainwater, the rainwater is generally directly discharged to the windowsill a ' through the outer frame 1' of the glass window, and if the waterproof treatment between the windowsill a ' and the outer frame 1' is not good, the rainwater will penetrate into the wall through the windowsill a ', or even reversely penetrate into the room, thereby causing damage to the wall.
In addition, in order to prevent rainwater from flowing backwards through the drain holes of the outer frame 1 'of the glass window in windy weather, the existing outer frame is generally provided with a drain cover 11' outside the drain holes of the outer frame, and the installation position of the drain cover 11 'is generally away from the windowsill A' by a certain height, so that the overall aesthetic property of the glass window is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a hidden windowsill drainage structures is provided, it can avoid the rainwater to reverse ooze back indoor, and the wholeness is strong.
In order to solve the technical problem, the utility model provides a hidden windowsill drainage structure, which comprises a glass bottom frame and a windowsill drainage plate, wherein the glass bottom frame is arranged at the bottom of a glass window, and the windowsill drainage plate covers the top surface of the windowsill;
wherein, the bottom of the glass bottom frame is provided with a water outlet;
the windowsill drain board comprises a water guide board and a shell board, and the water guide board is arranged below the water outlet relatively;
the shell plate comprises a water inlet end and a water drainage end from top to bottom, the top of the water inlet end is abutted against the bottom of the glass bottom frame, the bottom of the water inlet end is connected with the water guide plate, and the water drainage end is arranged on one outdoor side of the windowsill;
the shell plate is internally provided with a water guide cavity, the water inlet end of the shell plate is provided with a water inlet, the water discharge end is provided with a water discharge opening, and the water discharge opening, the water inlet, the water guide cavity and the water discharge opening are sequentially communicated.
As an improvement of the scheme, one end of the water guide plate, which is far away from the shell plate, is provided with a water baffle plate, and the water baffle plate is vertically arranged and is a preset distance away from the glass bottom frame.
As an improvement of the scheme, a first water guide surface and a second water guide surface are arranged in the water guide cavity, the second water guide surface is abutted against the top surface of the windowsill, and the first water guide surface is an inclined surface inclined towards one side of the second water guide surface.
As an improvement of the above scheme, the water guide cavity is provided with a water drainage groove at the water drainage end, and the water drainage groove is arranged below the second water guide surface and is arranged on the side surface of the windowsill.
As an improvement of the scheme, the windowsill drainage plate further comprises a connecting plate, the connecting plate is attached to the top surface of the windowsill, and the water guide plate, the shell plate and the water baffle are connected with the connecting plate respectively.
As an improvement of the scheme, the water baffle, the water guide plate, the shell plate and the connecting plate are integrally formed.
As an improvement of the above scheme, the glass bottom frame comprises an outer frame, an inner frame and first heat-insulating strips, wherein the outer frame and the inner frame are respectively arranged at two sides of the glass window and are connected through the first heat-insulating strips;
the windowsill drain bar further comprises a supporting frame, the supporting frame is connected with the connecting plate through a second heat insulation strip, the supporting frame is arranged at the bottom of the inner frame, and the shell plate is arranged at the bottom of the outer frame.
As an improvement of the scheme, the second heat insulation strip is a glue injection type heat insulation strip.
Implement the utility model discloses, following beneficial effect has:
the utility model discloses a hidden windowsill drainage structures, bottom through at the glass underframe sets up windowsill drain bar, the relative below that sets up the outlet at the glass underframe of water guide plate on the windowsill drain bar, and when the coverboard on the windowsill drain bar links to each other with the water guide plate, with the bottom butt of glass underframe, and the end of intaking and the sluicing end of coverboard from top to bottom set up, the water inlet of end is intake with the coverboard to the outlet, the water guide chamber in the coverboard and the outlet of coverboard drainage end communicate in proper order, the rainwater that gets into the glass underframe can be with the help of the poor outlet of passing through, the water guide plate, the water inlet, water guide chamber and outlet flow to outside the windowsill, rainwater can not appear permeating to indoor condition from the windowsill, the drainage is effectual, and drainage route is hidden in glass underframe and windowsill drain bar, drainage structures's wholeness is good, the outward appearance is succinct.
Drawings
FIG. 1 is a schematic structural view of a conventional sill drain structure;
fig. 2 is a schematic structural view of an embodiment of a hidden windowsill drainage structure of the present invention.
Fig. 3 is a schematic structural view of another embodiment of the drainage structure of the hidden windowsill of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 2, the present embodiment provides an embodiment of a hidden windowsill drainage structure, which includes a glass bottom frame 1 and a windowsill drainage plate 2, where the glass bottom frame 1 is disposed at the bottom of a glass window, and the windowsill drainage plate 2 covers the top surface of the windowsill a; wherein, the bottom of the glass bottom frame 1 is provided with a water outlet 11; the windowsill drain board 2 comprises a water guide board 21 and a shell board 22, and the water guide board 21 is oppositely arranged below the water outlet 11; the shell plate 22 comprises a water inlet end and a water outlet end from top to bottom, the top of the water inlet end is abutted against the bottom of the glass bottom frame 1, the bottom of the water inlet end is connected with the water guide plate 21, and the water outlet end is arranged on one outdoor side of the windowsill A; the shell plate 22 is internally provided with a water guide cavity 23, the shell plate 22 is provided with a water inlet 221 at a water inlet end and a water drainage port 222 at a water drainage end, and the water drainage port 111, the water inlet 221, the water guide cavity 23 and the water drainage port 222 are communicated in sequence.
In the embodiment, the windowsill drain board 2 is arranged at the bottom of the glass bottom frame 1, the water guide board 21 on the windowsill drain board 2 is oppositely arranged below the water outlet 111 of the glass bottom frame 1, the shell plate 22 on the windowsill drain board 2 is connected with the water guide board 21 and is abutted against the bottom of the glass bottom frame 1, the water inlet end and the water outlet end of the shell plate 22 are arranged from top to bottom, the water outlet 111 is sequentially communicated with the water inlet 221 at the water inlet end of the shell plate 22, the water guide cavity 23 in the shell plate 22 and the water outlet 222 at the water outlet end of the shell plate 22, rainwater entering the glass bottom frame 1 can flow out of the windowsill A through the water outlet 111, the water guide board 21, the water inlet 221, the water guide cavity 23 and the water outlet 222 by virtue of potential difference, the rainwater cannot permeate into the indoor from the windowsill A, the drainage effect is good, the drainage path is hidden in the glass bottom frame 1 and the windowsill drain board 2, the integrity of the drainage structure is good, the appearance is concise.
Specifically, the water guide cavity 23 of this embodiment is provided with a first water guide surface 231 and a second water guide surface 232, the second water guide surface 232 abuts against the top surface of the windowsill a, and the first water guide surface 231 is an inclined surface inclined to one side of the second water guide surface 232, so that the outflow of rainwater can be accelerated.
The water guide chamber 23 is provided with a drain groove 233 at a drain end, and the drain groove 233 is provided below the second water guide surface 232 and on a side surface of the windowsill a. The drain groove 233 can further ensure that rainwater flowing out of the drain opening 222 does not seep back into the room along the windowsill a. Fig. 2 shows a case where the drain opening 222 is provided in the bottom of the drain tank 233, and fig. 3 shows a case where the drain opening 222 is provided in a tank wall outside the outdoor side of the drain tank 233.
The windowsill drain board 2 of this embodiment still includes connecting plate 24, connecting plate 24 and windowsill A's top surface laminating, just water deflector 21, shell plate 22 link to each other with connecting plate 24 respectively.
In order to ensure good heat insulation performance, the glass bottom frame 1 of the present embodiment includes an outer frame 11, an inner frame 12, and first heat insulating strips 13, wherein the outer frame 11 and the inner frame 12 are respectively disposed at two sides of the glass window and connected through the first heat insulating strips 13. The drain port 111 is provided at the bottom of the outer frame 11. The windowsill drain bar 2 further comprises a support frame 25, the support frame 25 is connected with the connecting plate 24 through a second heat insulation strip 26, the support frame 25 is arranged at the bottom of the inner frame 12, and the shell plate 22 is arranged at the bottom of the outer frame 11.
Preferably, one end of the water guide plate 21, which is far away from the shell plate 22, is provided with a water baffle 27, and the water baffle 27 is vertically arranged and is provided with a preset distance from the glass bottom frame 1. Thus, the rainwater flowing to the water guide plate 21 through the water discharge port 111 is blocked by the water guard plate 27, and the possibility that the rainwater flows to the surface of the sill a through the gap between the second heat insulating strip 26 and the connecting plate 24 is eliminated. The water deflector 21, the shell plate 22, the water baffle 27 and the connecting plate 24 of the present embodiment are formed by integrally extruding aluminum materials.
In addition, the second heat insulation strip 26 can be selected as a glue injection type heat insulation strip, so that the sealing performance between the second heat insulation strip 26 and the connecting plate 24 and between the second heat insulation strip and the supporting frame 25 is improved, and the effect of preventing water leakage can be achieved under the condition that the water baffle plate 27 is not arranged.
The above disclosure is only a preferred embodiment of the present invention, and certainly should not be taken as limiting the scope of the invention, which is defined by the claims and their equivalents.

Claims (8)

1. The hidden windowsill drainage structure is characterized by comprising a glass bottom frame and a windowsill drainage plate, wherein the glass bottom frame is arranged at the bottom of a glass window, and the windowsill drainage plate covers the top surface of the windowsill;
wherein, the bottom of the glass bottom frame is provided with a water outlet;
the windowsill drain board comprises a water guide board and a shell board, and the water guide board is arranged below the water outlet relatively;
the shell plate comprises a water inlet end and a water drainage end from top to bottom, the top of the water inlet end is abutted against the bottom of the glass bottom frame, the bottom of the water inlet end is connected with the water guide plate, and the water drainage end is arranged on one outdoor side of the windowsill;
the shell plate is internally provided with a water guide cavity, the water inlet end of the shell plate is provided with a water inlet, the water discharge end is provided with a water discharge opening, and the water discharge opening, the water inlet, the water guide cavity and the water discharge opening are sequentially communicated.
2. The hidden windowsill drain structure of claim 1, wherein the water deflector is provided with a water baffle at an end thereof away from the shell plate, and the water baffle is vertically disposed and spaced from the bottom glass frame by a predetermined distance.
3. The hidden windowsill drain structure of claim 1 or 2, wherein a first water guide surface and a second water guide surface are provided in the water guide chamber, the second water guide surface abuts against the top surface of the windowsill, and the first water guide surface is an inclined surface inclined to one side of the second water guide surface.
4. The hidden windowsill drain structure of claim 3, wherein the water guide cavity is provided with a drain chute at the drain end, and the drain chute is disposed below the second water guide surface and on the side surface of the windowsill.
5. The hidden drainage structure for windowsills of claim 2, wherein the drainage plate for windowsills further comprises a connecting plate, the connecting plate is attached to the top surface of the windowsill, and the water deflector, the shell plate and the water baffle are respectively connected to the connecting plate.
6. The hidden windowsill drain of claim 5, wherein the water deflector, skin and connecting plate are integrally formed.
7. The hidden windowsill drain structure of claim 1, wherein the glass bottom frame comprises an outer frame, an inner frame, and a first insulating strip, wherein the outer frame and the inner frame are disposed on opposite sides of the glass window and connected to each other by the first insulating strip;
the windowsill drain bar further comprises a supporting frame, the supporting frame is connected with the connecting plate through a second heat insulation strip, the supporting frame is arranged at the bottom of the inner frame, and the shell plate is arranged at the bottom of the outer frame.
8. The hidden windowsill drain structure of claim 7, wherein the second insulating strips are glue-injected insulating strips.
CN202022496272.9U 2020-11-02 2020-11-02 Hidden windowsill drainage structures Active CN214303587U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022496272.9U CN214303587U (en) 2020-11-02 2020-11-02 Hidden windowsill drainage structures

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022496272.9U CN214303587U (en) 2020-11-02 2020-11-02 Hidden windowsill drainage structures

Publications (1)

Publication Number Publication Date
CN214303587U true CN214303587U (en) 2021-09-28

Family

ID=77840397

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022496272.9U Active CN214303587U (en) 2020-11-02 2020-11-02 Hidden windowsill drainage structures

Country Status (1)

Country Link
CN (1) CN214303587U (en)

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