CN222936655U - Aluminum alloy rainproof window - Google Patents

Aluminum alloy rainproof window Download PDF

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Publication number
CN222936655U
CN222936655U CN202421895685.6U CN202421895685U CN222936655U CN 222936655 U CN222936655 U CN 222936655U CN 202421895685 U CN202421895685 U CN 202421895685U CN 222936655 U CN222936655 U CN 222936655U
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China
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arc
rainproof
rain
shaped
window
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CN202421895685.6U
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Chinese (zh)
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王保
王青林
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Anhui Xiongfeng Doors And Windows Co ltd
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Anhui Xiongfeng Doors And Windows Co ltd
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Abstract

The utility model discloses an aluminum alloy rainproof window, which comprises an outer window frame, and a sliding window slidingly assembled in the outer window frame, wherein the aluminum alloy rainproof window further comprises a rainproof mechanism arranged on the outer side wall of the outer window frame, the rainproof mechanism comprises a rainproof sleeve assembly, the rainproof sleeve assembly comprises an arc-shaped rainproof sleeve plate, the arc-shaped rainproof sleeve plate is sleeved with a plurality of arc-shaped rainproof plates which are sequentially sleeved, the rainproof mechanism further comprises a plurality of driving arm assemblies for driving the arc-shaped rainproof plates to stretch out and draw back in an arc mode, each driving arm assembly comprises a cantilever rod hinged to the bottom of the outermost arc-shaped rainproof plate, the cantilever rods are slidingly connected with sliding sleeve rods, the sliding sleeve rods are hinged with hinge frames, the hinge frames are fixedly connected to the outer window frame, the hinge frames serve as supporting points, and the cantilever rods lift the sliding sleeve rods to drive the arc-shaped rainproof plates to stretch out from the arc-shaped rainproof sleeve plates step by step to form a rainproof structure. The device can keep lighting and effectively prevent rain, and especially solves the defect that rainwater enters a room when in heavy rain.

Description

Aluminum alloy rainproof window
Technical Field
The utility model belongs to the technical field of aluminum alloy windows, and particularly relates to an aluminum alloy rain-proof window.
Background
The aluminum alloy window is a window frame adopting aluminum alloy materials as a window body structure, for example, an outer frame installed on a window hole on a building structure is made of aluminum alloy materials. The aluminum alloy material part has low manufacturing cost and light texture, so that the assembly of the window structure or the installation of the window structure is convenient. Meanwhile, the aluminum alloy window has the advantages of rust prevention, ageing resistance, difficult deformation and the like.
According to different window structures, the structure is divided into a push-pull window, an inward-outward-turning window and the like. The sliding window is convenient to use, large in window area after window opening and good in ventilation effect, so that the sliding window is wide in practical application, and is suitable for installation under the condition of large window hole size.
However, since the window area is large after the sliding window is pushed to open the window, in rainy days, particularly in heavy rain, rainwater outside the window easily enters the room under the action of wind force, so that the indoor decoration structure is damaged by the rainwater.
If the window is closed, the ventilation effect cannot be achieved, and especially in hot summer, when the indoor and outdoor air temperature is high, abnormal indoor smoldering is caused by closing the window.
To above-mentioned technical problem, at present adopt at the window installation like the canopy mode of keeping off the rain more, but the canopy of keeping off the rain not only influences daylighting, and because the canopy of keeping off the rain is owing to install in window form structure's top, when the storm, a large amount of rainwater are along the gap between canopy and the wall structure, permeate to the window form on, get into indoor. Therefore, the rain shed cannot separate rainwater when in heavy rain, and rainwater cannot flow down from the upper end of the rain shed rapidly, so that the rain shed stores water, and the rainwater flows in from the inner sides of the rain shed and the wall body structure, so that a large amount of rainwater enters a room from the window position.
Disclosure of utility model
Based on the background, the utility model aims to provide an aluminum alloy rain-proof window.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
An aluminum alloy rainproof window comprises an outer window frame and a sliding window which is assembled in the outer window frame in a sliding way, wherein the aluminum alloy rainproof window can also comprise a rainproof mechanism which is arranged on the outer side wall of the outer window frame;
The rainproof mechanism comprises a rainproof sleeve assembly, wherein the rainproof sleeve assembly comprises an arc-shaped rainproof sleeve plate, and the arc-shaped rainproof sleeve plate is sleeved with a plurality of arc-shaped rain baffles which are sleeved in sequence;
The rainproof mechanism further comprises a plurality of driving arm assemblies for driving the arc-shaped rain shield to stretch out and draw back, each driving arm assembly comprises a ram hinged to the bottom of the outermost arc-shaped rain shield, the ram is connected with a sliding sleeve rod in a sliding mode, the sliding sleeve rod is hinged to a hinged frame, and the hinged frame is fixedly connected to the outer window frame;
The hinged frame is used as a fulcrum, the sliding sleeve rod is lifted up, and the ram drives the arc-shaped rain shield plate to extend out of the arc-shaped rain shield plate step by step in an arc shape to form a rain shield structure.
Preferably, the bottom of the arc-shaped rain shield positioned at the outermost layer is hinged with two ram rods which are arranged at intervals front and back.
Preferably, the bottom fixedly connected with of arc weather shield articulates the otic placode of ram, articulated between the otic placode has the hinge, hinge fixed connection is on the ram.
Preferably, the side walls on two sides of the sliding sleeve rod are respectively fixedly connected with a pin shaft hinged on the hinge bracket.
Preferably, the upper end of the sliding sleeve rod is fixedly connected with an annular handle.
Preferably, the bottom rotation of articulated frame is connected with adjusting screw, adjusting screw's lower extreme threaded connection has lower mounting bracket, lower mounting bracket fixed assembly is in the lateral wall lower extreme of outer window frame.
Preferably, the upper end fixedly connected with of arc rain-proof cover board is two mounting panels that the interval set up around, begin to have the regulation mouth on the mounting panel, the lateral wall upper end fixedly connected with locking screw of outer window frame, locking screw touches and presses the location on the regulation mouth.
Preferably, the bottom of the arc-shaped rain shield positioned at the outermost layer is fixedly connected with a rain shield.
Preferably, the length of the rain shielding curtain is 15-20cm.
The utility model has the following beneficial effects:
1. Under normal conditions, the arc-shaped length of the rainproof mechanism is shortest, and the lighting effect of the window structure is ensured in the mode. When rainy days, an operator takes the hinged frame as a fulcrum, lifts the sliding sleeve rod (the upper end of the sliding sleeve rod is fixedly connected with the annular handle), the ram drives the arc-shaped rain shielding plate at the lowest layer to be pulled out, and the rest-shaped rain shielding plates are sequentially pulled out step by step until the last arc-shaped rain shielding plate extends out of the arc-shaped rain shielding plate in an arc-shaped manner, so that a rain shielding structure is formed.
Because the shape of the whole rainproof mechanism is arc-shaped after the rainproof mechanism is pulled out, the structural design has the advantages that the arc-shaped structure is not easy to store water, especially when in heavy rain, the rapid rainwater falls down from the arc-shaped structure.
And after the rainwater passes, the lower annular handle shortens the rainproof mechanism step by step in the opposite acting force direction.
Through the mode, the window structure is shielded from rain in a simple and convenient mode, and the rain is prevented from rapidly separating under the shielding of the rain-proof mechanism of the arc-shaped structure. And under normal conditions, lighting is not affected.
2. Realize that the curtain that keeps off the rain is under normal condition, can be rolled up and utilized like the stay cord is fixed, and unreels the curtain that keeps off the rain to the sagging state when heavy rain, the weight of the curtain that keeps off the rain improves in the infiltration rainwater, consequently, is difficult for drifting away by a wide margin, leads to unable separation rainwater.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained from the structures shown in these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic plan view of an aluminum alloy rain-proof window according to an embodiment of the present utility model;
Fig. 2 is a schematic structural view of an outer window frame fixing and rain shielding mechanism according to an embodiment of the present utility model;
FIG. 3 is a schematic diagram of the structure of FIG. 2 under another view angle according to an embodiment of the present utility model;
FIG. 4 is a schematic view of a hinge structure of a ram according to an embodiment of the present utility model;
FIG. 5 is a schematic view of the structure of FIG. 3 at another view angle according to an embodiment of the present utility model;
FIG. 6 is a schematic diagram of a ram according to an embodiment of the present utility model;
Fig. 7 is a schematic structural view of an adjusting screw threaded with a lower mounting frame according to an embodiment of the present utility model.
The achievement of the objects, functional features and advantages of the present utility model will be further described with reference to the accompanying drawings, in conjunction with the embodiments.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that all directional indicators (such as up, down, left, right, front, and rear are used in the embodiments of the present utility model) are merely for explaining the relative positional relationship, movement conditions, and the like between the components in a certain specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicators are changed accordingly.
Furthermore, descriptions such as those referred to as "first," "second," and the like, are provided for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implying an order of magnitude of the indicated technical features in the present disclosure. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
Example 1
As shown in fig. 1 to 7, an aluminum alloy rain-proof window, wherein the main structure of the aluminum alloy rain-proof window is a conventional aluminum alloy sliding window disclosed in the prior art, specifically, the main structure comprises an outer window frame 1 installed in a window hole, and a sliding window 2 slidingly assembled in the outer window frame 1. Specifically, a track bar which is connected with the sliding window in a sliding way is arranged in the outer window frame 1, and the track bar slides in a track groove arranged on a window frame of the sliding window 2.
In order to solve the problem that rainwater easily enters a room from an opened window position in the opening process of the sliding window. The aluminum alloy rain-proof window can also comprise a rain-proof mechanism arranged on the outer side wall of the outer window frame 1.
Specifically, the rain-proof mechanism includes rain-proof cover subassembly, and rain-proof cover subassembly includes arc rain-proof cover board 2 (arc rain-proof cover board 2 installs on outer window frame 1), and arc rain-proof cover board 2 has cup jointed a plurality of arc weather shield 21 that cup joint in proper order.
Specifically, the arc rain-proof sleeve plate 2 is provided with the first-stage arc rain-shielding plate 21 which is sleeved with the first-stage arc rain-shielding plate in a sliding connection manner, the first-stage arc rain-shielding plate 21 is provided with the second-stage arc rain-shielding plate 21 which is sleeved with the second-stage arc rain-shielding plate in a sliding connection manner, and the n+1th-stage arc rain-shielding plate 21 which is sleeved with the first-stage arc rain-shielding plate in a sliding connection manner is repeatedly realized.
As the same as the existing mode, after the nth stage arc-shaped rain shield 21 extends out of the nth-1 stage arc-shaped rain shield 21, the nth stage arc-shaped rain shield 21 is blocked in the arc-shaped cavity in the nth-1 stage arc-shaped rain shield 21, and the specific mode can adopt the conventional sliding and stretching mode disclosed in the prior art and the blocking and falling mode, for example, a blocking convex column (not shown in the figure) is arranged at the inner end of the nth stage arc-shaped rain shield 21, and after the nth stage arc-shaped rain shield 21 slides out from the nth-1 stage arc-shaped rain shield 21, the blocking convex column is blocked at the inner side of the sliding opening. In this way, the nth stage arc weather shield 21 is prevented from falling out of the arc-shaped cavity of the n-1 th stage arc weather shield 21.
The rainproof mechanism further comprises two driving arm assemblies (arranged at intervals from front to back) for driving the arc-shaped rain shield 21 to stretch out and draw back, each driving arm assembly comprises a ram 241 hinged to the bottom of the outermost arc-shaped rain shield 21, each ram 241 is slidably connected with a sliding sleeve rod 242, each sliding sleeve rod 242 is hinged to a hinged frame 243, and each hinged frame 243 is fixedly connected to the outer window frame 1.
Specifically, under normal conditions, the arc length of the rainproof mechanism is shortest, and the lighting effect of the window structure is ensured in this way. When the rainy day is rainy, the operator takes the hinge frame 243 as a fulcrum, lifts the sliding sleeve rod 242 (the upper end of the sliding sleeve rod 242 is fixedly connected with the annular handle), the ram 241 drives the arc-shaped rain shielding plate 21 at the lowest layer to be pulled out, and the rest-shaped rain shielding sleeve plates are sequentially pulled out step by step until the last arc-shaped rain shielding plate 21 extends out of the arc-shaped rain shielding plate 2 in an arc-shaped manner, so that a rain shielding structure is formed.
Because the shape of the whole rainproof mechanism is arc-shaped after the rainproof mechanism is pulled out, the structural design has the advantages that the arc-shaped structure is not easy to store water, especially when in heavy rain, the rapid rainwater falls down from the arc-shaped structure.
And after the rainwater passes, the lower annular handle shortens the rainproof mechanism step by step in the opposite acting force direction.
Through the mode, the window structure is shielded from rain in a simple and convenient mode, and the rain is prevented from rapidly separating under the shielding of the rain-proof mechanism of the arc-shaped structure. And under normal conditions, lighting is not affected.
Example 2
As shown in fig. 1 to 7, in this embodiment, based on the structure of embodiment 1, the bottom of the above-mentioned arc-shaped rain shield 21 is fixedly connected with an ear plate hinged to the ram 241, and a hinge shaft is hinged between the ear plates, and the hinge shaft is fixedly connected to the ram 241. Meanwhile, the side walls of the two sides of the sliding sleeve rod 242 are respectively fixedly connected with a pin shaft hinged on the hinge bracket 243.
The bottom rotation of articulated frame 243 is connected with adjusting screw 2431, adjusting screw 2431's lower extreme threaded connection has lower mounting bracket 24311, lower mounting bracket fixed assembly is at the lateral wall lower extreme of outer window frame 1. The upper end fixedly connected with of arc rain-proof cover board 2 has two mounting panels 22 that the interval set up around, start the regulation mouth of bar on the mounting panel, the lateral wall upper end fixedly connected with locking screw 221 of outer window frame 1, locking screw 221 touches and presses the location on the regulation mouth.
The relative position on the height between the rainproof mechanism and the window body is adjusted through the mode, and the mode is that the locking screw 221 is loosened, at the moment, an operator screws the adjusting screw 2431, and at the moment, the rainproof mechanism is adjusted to be high under the driving force of threads, and in the process, the locking screw 221 slides in the adjusting port. After the adjustment to the target position, at this time, the lock screw 221 is fastened. The upper end (smooth portion) of the adjusting screw 2431 jacks up the hinge bracket 243 during the lifting process, and thus the whole apparatus is lifted up synchronously.
By adjusting the height, the rain shielding mechanism is lifted to a height position which does not block lighting at all in a rainless season such as winter.
Example 3
As shown in fig. 1 to 7, in this embodiment, based on the structure of embodiment 1, a rain curtain 23 is fixedly connected to the bottom of the arc-shaped rain shield 21 located at the outermost layer. The length of the rain shield curtain is 20cm. The prevention of rain from entering from the window position by tilting the bottom of the arc-shaped rain shield 21 under the action of wind force is realized by the rain shield 23.
The rain shielding curtain 23 can be wound up and fixed by using a pull rope under normal conditions, and the rain shielding curtain 23 is unwound to a sagging state during heavy rain, so that the weight of the rain shielding curtain 23 in immersed rain is increased, and the rain shielding curtain is not easy to greatly fly away, so that the rain shielding curtain cannot be separated.
It should be understood that the above description is not intended to limit the utility model to the particular embodiments disclosed, but to limit the utility model to the particular embodiments disclosed, and that the utility model is not limited to the particular embodiments disclosed, but is intended to cover modifications, adaptations, additions and alternatives falling within the spirit and scope of the utility model.

Claims (9)

1. The aluminum alloy rainproof window comprises an outer window frame and a sliding window which is assembled in the outer window frame in a sliding way, and is characterized by further comprising a rainproof mechanism which is arranged on the outer side wall of the outer window frame;
The rainproof mechanism comprises a rainproof sleeve assembly, wherein the rainproof sleeve assembly comprises an arc-shaped rainproof sleeve plate, and the arc-shaped rainproof sleeve plate is sleeved with a plurality of arc-shaped rain baffles which are sleeved in sequence;
The rainproof mechanism further comprises a plurality of driving arm assemblies for driving the arc-shaped rain shield to stretch out and draw back, each driving arm assembly comprises a ram hinged to the bottom of the outermost arc-shaped rain shield, the ram is connected with a sliding sleeve rod in a sliding mode, the sliding sleeve rod is hinged to a hinged frame, and the hinged frame is fixedly connected to the outer window frame;
The hinged frame is used as a fulcrum, the sliding sleeve rod is lifted up, and the ram drives the arc-shaped rain shield plate to extend out of the arc-shaped rain shield plate step by step in an arc shape to form a rain shield structure.
2. The aluminum alloy rain-proof window of claim 1, wherein two lugs arranged at intervals in front-back are hinged at the bottom of the arc-shaped rain shield at the outermost layer.
3. The aluminum alloy rain-proof window of claim 2, wherein the bottom of the arc-shaped rain shield is fixedly connected with an ear plate hinged to the ram, a hinge shaft is hinged between the ear plates, and the hinge shaft is fixedly connected to the ram.
4. The aluminum alloy rain-proof window according to claim 1, wherein the side walls on two sides of the sliding sleeve rod are respectively fixedly connected with a pin shaft hinged on the hinge bracket.
5. The aluminum alloy rain-proof window according to claim 1, wherein the upper end of the sliding sleeve rod is fixedly connected with an annular handle.
6. The aluminum alloy rain-proof window according to claim 1, wherein an adjusting screw is rotatably connected to the bottom of the hinged frame, a lower mounting frame is connected to the lower end of the adjusting screw through threads, and the lower mounting frame is fixedly assembled at the lower end of the outer side wall of the outer window frame.
7. The aluminum alloy rainproof window according to claim 1, wherein the upper end of the arc-shaped rainproof sleeve board is fixedly connected with two mounting plates which are arranged at intervals, an adjusting port is formed in the mounting plates, the upper end of the outer side wall of the outer window frame is fixedly connected with a locking screw, and the locking screw is positioned on the adjusting port in a pressing mode.
8. The aluminum alloy rain-proof window according to claim 1, wherein a rain curtain is fixedly connected to the bottom of the arc-shaped rain shield positioned on the outermost layer.
9. The aluminum alloy rain shield window of claim 8, wherein the length of the rain shield curtain is 15-20cm.
CN202421895685.6U 2024-08-06 2024-08-06 Aluminum alloy rainproof window Active CN222936655U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421895685.6U CN222936655U (en) 2024-08-06 2024-08-06 Aluminum alloy rainproof window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421895685.6U CN222936655U (en) 2024-08-06 2024-08-06 Aluminum alloy rainproof window

Publications (1)

Publication Number Publication Date
CN222936655U true CN222936655U (en) 2025-06-03

Family

ID=95835907

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421895685.6U Active CN222936655U (en) 2024-08-06 2024-08-06 Aluminum alloy rainproof window

Country Status (1)

Country Link
CN (1) CN222936655U (en)

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