Window frame capable of preventing water accumulation

By designing a window frame structure with multiple circulation grooves and guide grooves, combined with the movement of the flow aid block, the problem of water accumulation caused by low drainage efficiency in the existing window frame is solved, and a more efficient drainage effect is achieved.

CN223003959UActive Publication Date: 2025-06-20HEFEI JIAWEI DECORATION ENG
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Patent Information

Application Number
CN202421967894.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-20
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The drainage efficiency of existing window frames is low, which can easily lead to the generation of accumulated water.

Method used

A window frame that prevents water accumulation is designed, including a support frame and a flow aid block installed inside the support frame. The inner wall of the support frame is equipped with a flow connection chamber and a flow support chamber. The flow channel is used to connect these indoors and outsides. The flow channel and auxiliary groove are used to guide the water flow discharge, and the flow aid block accelerates the flow of the water flow through movement.

Benefits of technology

Through the support and guide of multiple flow channels, the guidance of the flow channel, and the movement of the flow aid block, the water flow can be automatically or manually discharged, improving the drainage efficiency and preventing the generation of water accumulation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-ponding window frame which comprises a supporting frame body and a flow aiding block installed in the supporting frame body, a circulation connection chamber and a circulation supporting chamber are formed in the inner wall of the supporting frame body, and circulation grooves are formed in the inner wall of the circulation connection chamber and the inner wall of the circulation supporting chamber. The circulating groove is used for the interior of the circulating connecting chamber, the interior of the circulating supporting chamber communicates with the outer side of the device, a flow guide groove and an auxiliary groove are formed in the outer surface of the supporting frame, an inserting groove is formed in the lower end of the movable window, a connecting rod is inserted into the inserting groove, and the connecting rod is installed at the upper end of the flow assisting block. A guide groove is formed in the lower end of the movable window and slidably connected with a guide rail, and the guide rail is installed on the upper half portion of the inner wall of the supporting frame. Under the support of the plurality of circulating grooves and the support of the flow guide grooves and the flow aiding blocks, water flow in the device can be automatically or manually drained, the drainage efficiency of the device is improved, and the effect of preventing water accumulation is achieved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of window frames, and particularly relates to a window frame for preventing water accumulation. Background Art

[0002] The window frame is a transition layer between the wall and the window, and plays a role in fixing and preventing the surrounding wall from collapsing.

[0003] After being fixed, the window frame is used in cooperation with the window to achieve the effect of sealing and protection. When the device is used in rainy and snowy weather, under the support of the flow-through groove inside the window frame, it can drain the water flow and achieve the effect of preventing water accumulation. However, since the existing device only drains water through a single flow-through groove, the drainage efficiency of the window frame is limited, and water accumulation is likely to occur. Summary of the Invention

[0004] In view of the problem of low drainage efficiency and easy water accumulation in the prior art, the utility model proposes the following technical solutions:

[0005] A window frame for preventing water accumulation, comprising a support frame body and a flow-aiding block installed inside the support frame body. Flow-through connection chambers and flow-through support chambers are formed on the inner wall of the support frame body, and flow-through grooves are formed on the inner walls of both the flow-through connection chambers and the flow-through support chambers. The flow-through grooves are used to connect the inside of the flow-through connection chambers, the inside of the flow-through support chambers and the outside of the device.

[0006] Flow-through guide grooves and auxiliary grooves are formed on the outer surface of the support frame body, and the flow-through guide grooves and the auxiliary grooves are located at opposite positions. Among them, both the flow-through guide grooves and the auxiliary grooves are communicated with the flow-through grooves.

[0007] The flow-aiding block is installed inside the flow-through connection chambers and the flow-through support chambers. A movable window is arranged above the flow-aiding block. A plug-in groove is formed at the lower end of the movable window, and a connecting rod is inserted into the plug-in groove. The connecting rod is installed at the upper end of the flow-aiding block.

[0008] A guide groove is formed at the lower end of the movable window, and a guide rail is slidably connected to the guide groove. The guide rail is installed on the upper half of the inner wall of the support frame body.

[0009] Under the support of multiple flow-through grooves on both sides of the flow-through connection chambers and the flow-through support chambers, under the discharge guidance of the flow-through guide grooves and the auxiliary grooves, and by moving the flow-aiding block, the water flow inside the device can be automatically or manually discharged, improving the drainage efficiency of the device and achieving the effect of preventing water accumulation.

[0010] As a preference of the above technical solution, at least three flow-through grooves are formed on one side of the inner wall of the flow-through support chamber, and the flow-through grooves penetrate into the inside of the flow-through connection chamber. The flow-through grooves are used to connect the inside of the flow-through connection chamber and the flow-through support chamber.

[0011] By setting the number of internal flow grooves in the flow support chamber to three, the flow efficiency during automatic drainage and manual drainage is improved.

[0012] As an optimization of the above technical solution, at least two of the flow grooves are provided on one side of the flow support chamber, and the two flow grooves are respectively located inside the diversion groove and the auxiliary groove.

[0013] By arranging the diversion groove and the auxiliary groove on both sides of the device, it is ensured that the water discharged from the inside of the device flows out from both sides, preventing it from eroding the device body.

[0014] As an optimization of the above technical solution, the inside of the diversion groove and the auxiliary groove is a hollow structure, and the ends of the diversion groove and the auxiliary groove are both inclined structures.

[0015] Supported by the hollow structure inside the auxiliary groove and by its inclined support at the end, the accuracy of the water flow and discharge direction inside it is ensured.

[0016] As an optimization of the above technical solution, the opposite sides of the flow assistance block are arc-shaped structures, and the flow assistance block and the flow groove are at the same horizontal position, and the flow groove, the flow connection chamber and the bottom of the flow support chamber are at the same horizontal position.

[0017] Under the guidance of the arc structures on both sides of the flow assistance block, it is ensured that when it pushes the water flow, the water flow is guided to flow, so that the water flow can continue to move forward after flipping on the arc surface, further improving the efficiency during drainage and flow.

[0018] As an optimization of the above technical solution, a plurality of plug-in grooves are provided at the lower end of the movable window, and the plug-in grooves are located on one side of the guide groove, and the connecting rod is located on one side of the upper end of the flow assistance block.

[0019] Supported by the multiple plug-in grooves, it is convenient to adjust the position of the flow assistance block according to the actual use situation.

[0020] The beneficial effects of the present utility model are as follows:

[0021] (1) Supported by multiple flow grooves on both sides of the flow connection chamber and the flow support chamber, under the discharge guidance of the diversion groove and the auxiliary groove, and by moving the flow assistance block, the water flow inside the device can be automatically or manually discharged, improving the drainage efficiency of the device and achieving the effect of preventing water accumulation;

[0022] (2) Under the guidance of the arc structures on both sides of the flow assistance block, the water flow can continue to move forward after flipping on the arc surface, further improving the efficiency during drainage and flow. Description of the Drawings

[0023] Figure 1 Shown is a front view of the overall device;

[0024] Figure 2 Shown is a perspective view of the support frame;

[0025] Figure 3 Shown is a top view of the support frame;

[0026] Figure 4 Shown is a front view of the moving mode;

[0027] Figure 5 Shown is a bottom view of the moving window.

[0028] In the figure: 1, support frame; 101, circulation connection chamber; 102, circulation support chamber; 103, circulation groove; 104, diversion groove; 105, auxiliary groove; 2, flow assistance block; 201, connecting rod; 202, moving window; 203, insertion slot; 204, guide groove; 205, guide rail. Specific embodiments

[0029] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with the embodiments.

[0030] Embodiment

[0031] Figures 1 - 5 Shown is a schematic diagram of the overall structure as a specific embodiment of the present utility model. Figures 1 - 5 Among them, the water-proof window frame includes a support frame 1 and a flow assistance block 2 installed inside the support frame 1.

[0032] The inner wall of the support frame 1 is provided with a circulation connection chamber 101 and a circulation support chamber 102, and the inner walls of both the circulation connection chamber 101 and the circulation support chamber 102 are provided with circulation grooves 103. The circulation grooves 103 are used to connect the inside of the circulation connection chamber 101, the inside of the circulation support chamber 102 with the outside of the device.

[0033] The outer surface of the support frame 1 is provided with a diversion groove 104 and an auxiliary groove 105, and the diversion groove 104 and the auxiliary groove 105 are located at opposite positions. Among them, both the diversion groove 104 and the auxiliary groove 105 are connected to the circulation groove 103.

[0034] The flow assistance block 2 is installed inside the circulation connection chamber 101 and the circulation support chamber 102. A moving window 202 is arranged above the flow assistance block 2. An insertion slot 203 is opened at the lower end of the moving window 202. The insertion slot 203 is inserted with a connecting rod 201, and the connecting rod 201 is installed at the upper end of the flow assistance block 2.

[0035] A guide groove 204 is provided at the lower end of the movable window 202, and a guide rail 205 is slidably connected to the guide groove 204. The guide rail 205 is installed on the upper half of the inner wall of the support frame 1.

[0036] Under the connection and support of the flow-through groove 103 for the internal connection between the flow-through connection chamber 101 and the flow-through support chamber 102, and under the connection and support of the flow-through groove 103 and the auxiliary groove 105, when there is water flow inside the support frame 1, the water flow inside the flow-through support chamber 102 will flow to the flow-through groove 103 on one side of it. Under the diversion of the flow-through groove 103, the water flow continues to flow into the flow-through connection chamber 101. Under the flow guidance of the flow-through groove 103 on one side of the flow-through connection chamber 101, the water flow flows into the auxiliary groove 105. Then, under the guidance of the auxiliary groove 105, the water flow flows to the outside of the device, thereby achieving the effect of discharging the water flow inside the device, effectively preventing water accumulation inside the device. Then, by respectively pushing the two movable windows 202, they move under the guidance of the guide rail 205. At the same time, under the transmission of the connecting rod 201, the two flow-aiding blocks 2 on both sides slide inside the flow-through connection chamber 101 and the flow-through support chamber 102 respectively, accelerating the flow rate of the water flow inside the device. Thus, through the cooperation of the flow-through groove 103 and the auxiliary groove 105, automatic drainage is achieved, and through manually pushing the movable window 202, manual drainage is achieved. Combining the two improves the drainage efficiency of the device and achieves the effect of preventing water accumulation.

[0037] Figure 2 Shown is a three-dimensional structural schematic diagram of a specific embodiment of the present utility model. Figure 2 In it, at least three flow-through grooves 103 are provided on one side of the inner wall of the flow-through support chamber 102, and the flow-through grooves 103 penetrate into the flow-through connection chamber 101. The flow-through grooves 103 are used for the internal connection between the flow-through connection chamber 101 and the flow-through support chamber 102.

[0038] At least two flow-through grooves 103 are provided on one side of the flow-through support chamber 102, and the two flow-through grooves 103 are respectively located inside the diversion groove 104 and the auxiliary groove 105.

[0039] The inside of the diversion groove 104 and the auxiliary groove 105 is a hollow structure, and the ends of the diversion groove 104 and the auxiliary groove 105 are both inclined structures.

[0040] By setting the number of internal flow channels 103 in the flow support chamber 102 to three, it is ensured that the water flow inside can flow out from three directions, improving the flow efficiency during automatic drainage and manual drainage. And by setting the flow channels 103 on the other side of the flow connection chamber 101 to two, which are respectively located inside the diversion channel 104 and the auxiliary channel 105, it is ensured that the water discharged from inside the device flows out from both sides, preventing it from eroding the device body. At the same time, under the support of the hollow structure inside the auxiliary channel 105 and the inclined support at its end, the accuracy of the water flow direction inside it is ensured.

[0041] Figure 4 and Figure 5 Shown is a schematic structural diagram of the moving mode as a specific embodiment of the present utility model. Figure 4 and Figure 5 In it, the two opposite sides of the flow assistance block 2 are arc-shaped structures, and the flow assistance block 2 and the flow channel 103 are at the same horizontal position, and the flow channel 103 and the bottoms of the flow connection chamber 101 and the flow support chamber 102 are at the same horizontal position.

[0042] A number of insertion slots 203 are opened at the lower end of the moving window 202, and the insertion slots 203 are located on one side of the guide slot 204, and the connecting rod 201 is located on one side of the upper end of the flow assistance block 2.

[0043] Under the guidance of the arc-shaped structures on both sides of the flow assistance block 2, it is ensured that when it pushes the water flow, it guides the flow, enabling the water flow to continue to move forward after flipping on the arc surface, further improving the efficiency during drainage and flow, and at the same time starting the labor-saving effect when pushing the moving window 202. And with the support of a number of insertion slots 203, under the action of the arrangement of the connecting rod 201 and the insertion slots 203 on the side, it is convenient to adjust the position of the flow assistance block 2 according to the actual use situation, and at the same time ensure that when the two moving windows 202 move simultaneously, they will not affect each other, improving the applicability of the device for manual drainage.

[0044] Working principle: First, push the moving windows 202 respectively, so that they move under the guidance of the guide rails 205. At the same time, under the transmission of the connecting rod 201, drive the two flow assistance blocks 2 to slide inside the flow connection chamber 101 and the flow support chamber 102 respectively. At this time, the water flow inside the flow support chamber 102 will flow to the flow channel 103 on one side of it. Under the diversion of the flow channel 103, the water flow continues to flow into the flow connection chamber 101. Under the flow guidance of the flow channel 103 on one side of the flow connection chamber 101, the water flow flows into the auxiliary channel 105. Then, under the guidance of the auxiliary channel 105, the water flow flows to the outside of the device, thereby discharging the water flow inside the device. And through the cooperation of the flow channel 103 and the auxiliary channel 105, the device can drain water automatically, effectively preventing the situation of water accumulation inside the device.

[0045] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.

Claims

1. A window frame for preventing water accumulation, comprising a supporting frame (1) and a flow-aiding block (2) installed inside the supporting frame (1), characterized in that: The inner wall of the support frame (1) is provided with a flow connection chamber (101) and a flow support chamber (102), and the inner walls of the flow connection chamber (101) and the flow support chamber (102) are both provided with flow grooves (103), and the flow grooves (103) are used to connect the inside of the flow connection chamber (101), the inside of the flow support chamber (102) and the outside of the device; The outer surface of the support frame (1) is provided with a guide groove (104) and an auxiliary groove (105), and the guide groove (104) and the auxiliary groove (105) are located at relative positions, wherein the guide groove (104) and the auxiliary groove (105) are both connected to the circulation groove (103); The flow-aiding block (2) is installed inside the flow connection chamber (101) and the flow support chamber (102); a movable window (202) is arranged above the flow-aiding block (2); a plug-in slot (203) is provided at the lower end of the movable window (202); a connecting rod (201) is plugged into the plug-in slot (203); and the connecting rod (201) is installed at the upper end of the flow-aiding block (2); A guide groove (204) is provided at the lower end of the movable window (202), and a guide rail (205) is slidably connected to the guide groove (204), and the guide rail (205) is installed on the upper half of the inner wall of the supporting frame (1).

2. The anti-water accumulation window frame according to claim 1, characterized in that: At least three circulation grooves (103) are provided on one side of the inner wall of the circulation support chamber (102), and the circulation grooves (103) penetrate into the interior of the circulation connection chamber (101), and the circulation grooves (103) are used for internal communication between the circulation connection chamber (101) and the circulation support chamber (102).

3. The anti-water accumulation window frame according to claim 1, characterized in that: At least two circulation grooves (103) are provided on one side of the circulation support chamber (102), and the two circulation grooves (103) are respectively located inside the guide groove (104) and the auxiliary groove (105).

4. The water-proof window frame according to claim 1, characterized in that: The guide groove (104) and the auxiliary groove (105) are hollow structures inside, and the ends of the guide groove (104) and the auxiliary groove (105) are inclined structures.

5. The anti-water accumulation window frame according to claim 1, characterized in that: The two opposite sides of the flow-aiding block (2) are arc-shaped structures, and the flow-aiding block (2) and the circulation groove (103) are located at the same horizontal position, and the circulation groove (103) and the bottom of the circulation connection chamber (101) and the circulation support chamber (102) are located at the same horizontal position.

6. The water-proof window frame according to claim 1, characterized in that: A plurality of plug-in slots (203) are provided at the lower end of the movable window (202), and the plug-in slots (203) are located on one side of the guide slot (204), and the connecting rod (201) is located on one side of the upper end of the flow-aiding block (2).