Lateral movement structure for lateral movement opening sash of window

By connecting the window sash and subframe with a side-sliding structure and guide wheel assembly, the problems of increased subframe thickness and cost caused by the casement window design are solved, enabling the window sash to slide open and simplifying the replacement of sealing components.

CN223767375UActive Publication Date: 2026-01-06GUANTAO QUANYU METAL PROD CO LTD
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Patent Information

Application Number
CN202520114539.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-06
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

The existing casement window design results in increased subframe thickness, higher costs, and inconvenient replacement of sealing components.

Method used

The window sash is connected to the subframe via a stainless steel guide rail and tension and translation guide roller assembly, enabling the window sash to slide open. Combined with limit and assist components, the thickness of the subframe is reduced and the replacement of sealing components is simplified.

Benefits of technology

This allows the window sash to open without increasing the thickness of the subframe, reducing costs and simplifying the replacement process of the sealing components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sidesway structure for a sidesway opening sash of a window. The sidesway structure comprises a stainless steel guide rail mounted on an auxiliary frame, two groups of upper stretching and translation guide wheel components connected between the stainless steel guide rail and the sash, and a lower stretching and translation guide wheel component connected between the auxiliary frame and the sash, the upper stretching and translation guide wheel assembly and the lower stretching and translation guide wheel assembly are located above and below the window sash respectively, and the upper stretching and translation guide wheel assembly and the lower stretching and translation guide wheel assembly are matched to drive the window sash to be separated from a window opening in the auxiliary frame and translate along the auxiliary frame. According to the side-moving structure, the window sash can be flatly opened, but the side-moving structure is different from a flat-opening mode in the current market, and the flat-opening mode is formed by horizontally moving outside the auxiliary frame, so that the thickness of the auxiliary frame does not need to be increased to provide a moving space for flat-opening, the thickness of the auxiliary frame can be reduced, and the cost is reduced; and due to the flat opening mode, the sealing assembly of the window sash can be replaced more conveniently.
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Description

Technical Field

[0001] This utility model relates to the field of window opening structure technology, specifically a lateral sliding structure for a window sash that can be opened laterally. Background Technology

[0002] Windows can be opened in several ways, including casement, side opening, and tilt-and-turn. Tilting windows have poor ventilation, side opening windows take up more space, especially when opening towards the interior, while casement windows have good ventilation, but current casement windows require thicker subframes, increasing costs.

[0003] Therefore, in order to correct the above-mentioned defects, we propose a lateral sliding structure for a window sash that can be opened laterally. Utility Model Content

[0004] The technical problem solved by this utility model is to propose a lateral sliding structure for a window sash that can be opened laterally.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a lateral sliding structure for a window sash that can be opened laterally, wherein the window includes a subframe and a sash, the lateral sliding structure is used for the connection between the sash and the subframe, and the lateral sliding structure includes a stainless steel guide rail mounted on the subframe, two sets of upper tension and translation guide wheel assemblies connected between the stainless steel guide rail and the sash, and a lower tension and translation guide wheel assembly connected between the subframe and the sash;

[0006] The upper tension and translation guide wheel assembly and the lower tension and translation guide wheel assembly are located above and below the window sash, respectively. The two work together to drive the window sash to detach from the window opening on the subframe and simultaneously translate along the subframe.

[0007] The upper tensioning and translational guide wheel assembly includes a connecting plate fixed to the window sash screws and a sliding plate movable in a stainless steel guide rail. A guide wheel is installed on the sliding plate. The connecting plate and the sliding plate are connected by a connecting arm. The two ends of the connecting arm are respectively connected to the connecting plate and the sliding plate by a pin.

[0008] Furthermore, the lower tension and translation guide wheel assembly has the same structure as the upper tension and translation guide wheel assembly.

[0009] Furthermore, the upper tension and translation guide wheel assembly also includes a tension spring, one end of which is connected to the end of the connecting arm near the sliding plate, and the other end is connected to the connecting plate.

[0010] Furthermore, the lower tension and translation guide wheel assembly includes a connecting plate two that is fixedly connected to the window sash screws, a sliding plate two that slides in the window opening on the subframe, and a connecting arm two. The two ends of the connecting arm two are respectively connected to the sliding plate two and the connecting plate two through pin two. The sliding plate two is equipped with a guide wheel two.

[0011] Furthermore, a limiting component is installed at the corner of the window opening on the subframe. The limiting component includes a connecting plate three that is fixed to the window opening on the subframe with screws, a sliding plate three that slides on the window sash, and a connecting arm three. Both ends of the connecting arm three are connected to the connecting plate three and the sliding plate three through pin three. A guide wheel three is installed on the sliding plate three.

[0012] Furthermore, a horizontal guide wheel is installed at one end of the sliding plate three.

[0013] Furthermore, an assistive component is also installed on the subframe, which is located in the direction of window sash movement. The assistive component includes a mounting bracket and guide rollers installed in the mounting bracket.

[0014] Compared with the prior art, the beneficial effects of this utility model are: this side-sliding structure allows the window sash to open horizontally, but unlike the current horizontal opening method on the market, this horizontal opening method is formed by horizontally sliding outside the subframe. This eliminates the need to increase the thickness of the subframe to provide movement space for the horizontal opening, allowing the subframe thickness to be reduced, thus lowering costs. Furthermore, this horizontal opening method makes it easier to replace the sealing components of the window sash. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the usage state of this utility model;

[0017] Figure 3 This is a schematic diagram of the tensioning and translational guide wheel assembly of this utility model;

[0018] Figure 4 This is a schematic diagram of the lower tension and translation guide wheel assembly structure of this utility model;

[0019] Figure 5 This is a schematic diagram of the limiting component structure in this utility model;

[0020] Figure 6 This is a schematic diagram of the assist component structure in this utility model.

[0021] Numbering on the map:

[0022] 100. Subframe; 200. Window sash; 300. Stainless steel guide rail; 400. Upper tension and translation guide wheel assembly; 401. Connecting plate one; 402. Sliding plate one; 403. Connecting arm one; 404. Pin one; 405. Guide wheel one; 406. Tension spring; 500. Lower tension and translation guide wheel assembly; 501. Sliding plate two; 502. Connecting plate two; 503. Connecting arm two; 504. Pin two; 505. Guide wheel two; 600. Limiting assembly; 601. Connecting plate three; 602. Sliding plate three; 603. Connecting arm three; 604. Pin three; 605. Guide wheel three; 700. Power assist assembly; 701. Mounting bracket; 702. Guide roller. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] This utility model provides a technical solution:

[0025] Please see Figure 1-2 A lateral sliding structure for a window sash with side-sliding opening, comprising a window including a subframe 100 and a sash 200, the lateral sliding structure being used for the connection between the sash 200 and the subframe 100, the lateral sliding structure including a stainless steel guide rail 300 mounted on the subframe 100, two sets of upper tension and translation guide roller assemblies 400 connected between the stainless steel guide rail 300 and the sash 200, and a lower tension and translation guide roller assembly 500 connected between the subframe 100 and the sash 200, a limit assembly 600 being installed at the corner of the window opening on the subframe 100, and an assist assembly 700 being installed on the subframe 100, the assist assembly 700 being located in the moving direction of the sash 200.

[0026] The upper tensioning and translational guide roller assembly 400 and the lower tensioning and translational guide roller assembly 500 are positioned above and below the window sash 200, respectively. Together, they drive the window sash 200 to detach from the window opening on the subframe 100 and simultaneously translate along the subframe 100. Initially, the window sash 200 needs to be pulled out of the subframe 100. During the initial translation, the assisting component 700 provides a boosting effect. After moving a certain distance, the limiting component 600 prevents the window sash 200 from continuing to translate, as detailed below:

[0027] Please see Figure 3The upper tensioning and translational guide wheel assembly 400 includes a connecting plate 401 fixed to the window sash 200 with screws and a sliding plate 402 movable within the stainless steel guide rail 300. A guide wheel 405 is installed on the sliding plate 402. The connecting plate 401 and the sliding plate 402 are connected by a connecting arm 403. The two ends of the connecting arm 403 are respectively connected to the connecting plate 401 and the sliding plate 402 by a pin 404. That is, when the window sash 200 is inside the subframe 100, the connecting arm 403 is in the X-axis direction. When the window sash 200 is manually pulled, the two ends of the connecting arm 403 rotate in the connecting plate 401 and the sliding plate 402 through the pin 404. As the connecting arm 403 is in the Z-axis direction, the window sash 200 is disengaged from the subframe 100. When pushed to the left or right, the sliding plate 402 slides in the stainless steel guide rail 300 using the guide wheel 405.

[0028] As described above, the upper tension and translation guide wheel assembly 400 also includes a tension spring 406. One end of the tension spring 406 is connected to the end of the connecting arm 403 near the sliding plate 402, and the other end is connected to the connecting plate 401. That is, when the window sash 200 stops moving, the torsion spring 406 can use its own reaction force to make the window sash 200 approach the subframe 100.

[0029] If the structure of the lower tension and translation guide wheel assembly 500 is the same as that of the upper tension and translation guide wheel assembly 400, then stainless steel guide rails 300 need to be installed on both the upper and lower parts of the subframe 100.

[0030] If the structure of the lower tension and translation guide wheel assembly 500 is inconsistent with that of the upper tension and translation guide wheel assembly 400, the specific details are as follows:

[0031] Please see Figure 4 The lower tension and translation guide wheel assembly 500 includes a connecting plate 202 that is screwed to the window sash 200, a sliding plate 201 that slides in the window opening on the sub-frame 100, and a connecting arm 203. The two ends of the connecting arm 203 are connected to the sliding plate 201 and the connecting plate 202 respectively through pins 204. A guide wheel 205 is installed on the sliding plate 201. The principle is the same as that of the upper tension and translation guide wheel assembly 400. However, the sliding plate 201 of the lower tension and translation guide wheel assembly 500 slides directly on the groove in the window opening of the sub-frame 100 through the guide wheel 205. In this way, the sub-frame 100 only needs a stainless steel guide rail 300 to provide sliding for the upper tension and translation guide wheel assembly 400, while the lower tension and translation guide wheel assembly 500 does not need to be equipped with a corresponding stainless steel guide rail 300.

[0032] Please see Figure 5The limiting component 600 includes a connecting plate 601 fixed to the window opening screw on the subframe 100, a sliding plate 602 sliding on the window sash 200, and a connecting arm 603. Both ends of the connecting arm 603 are connected to the connecting plate 601 and the sliding plate 602 through pins 604. A guide wheel 605 is installed on the sliding plate 602. That is, the limiting component 600 cooperates with the lower tension and translation guide wheel assembly 500 to support the bottom sides of the window sash 200. The limiting component 600 is fixed at one position in the door opening of the subframe 100. When the window sash 200 moves, the sliding plate 602 slides on the bottom of the window sash 200 using the guide wheel 605. When the window sash 200 returns to the window opening, the limiting component 600 can retract like the upper tension and translation guide wheel assembly 400 and the lower tension and translation guide wheel assembly 500.

[0033] As described above, a horizontal guide wheel 606 is installed at one end of the sliding plate 3 602. The sliding plate 3 602 is actually located in the slot at the bottom of the window sash 200. In order to make the sliding plate 3 602 slide more smoothly in the slot, the horizontal guide wheel 606 is added. The horizontal guide wheel 606 and the guide wheel 3 605 are respectively set horizontally and vertically, and cooperate with each other.

[0034] Please see Figure 6 Typically, the connection between the window sash 200 and the subframe 100 is quite tight for a secure fit. To fully pull the window sash 200 out of the window opening in the subframe 100, a certain amount of force is required. To make it easier to initially pull the window sash 200 out of the subframe 100 and move it horizontally, an assistive component 700 is added. The assistive component 700 is located in the direction of movement of the window sash 200 and includes a mounting bracket 701 and guide rollers 702 installed within the mounting bracket 701. That is, the window sash 200 moves horizontally from the subframe 100... When the window sash 200 is pulled outward from the frame 100 to a certain distance, one side of the window sash 200 will come into contact with the guide roller 702. At this time, the window sash 200 can be pushed directly towards the guide roller 702. The window sash 200 will slide over the guide roller 702, and the guide roller 702 will push the window sash 200 outward. In this way, the window sash 200 is completely separated from the window opening of the sub-frame 100. The purpose is that when the window sash 200 is initially pulled out of the window opening, it does not need to be completely pulled out. Under the action of the assist component 700, it will naturally and completely separate.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A side-hung construction for a side-hung sash of a window, the window comprising a jamb (100) and a sash (200), the side-hung construction being for the connection between the sash (200) and the jamb (100), characterized in that: The side moving structure comprises a stainless steel guide rail (300) installed on the auxiliary frame (100), two groups of upper tension and translation guide wheel assemblies (400) connected between the stainless steel guide rail (300) and the sash (200), and lower tension and translation guide wheel assemblies (500) connected between the auxiliary frame (100) and the sash (200). The upper tension and translation guide wheel assemblies (400) and the lower tension and translation guide wheel assemblies (500) are respectively arranged above and below the sash (200), and drive the sash (200) to move out of the window hole on the auxiliary frame (100) and simultaneously translate along the auxiliary frame (100). The upper tension and translation guide wheel assembly (400) comprises a connecting plate I (401) fixed to the sash (200) by screws and a sliding plate I (402) movably arranged in the stainless steel guide rail (300), a guide wheel I (405) is installed on the sliding plate I (402), and the connecting plate I (401) and the sliding plate I (402) are connected by a connecting arm I (403), and the two ends of the connecting arm I (403) are connected to the connecting plate I (401) and the sliding plate I (402) by a pin I (404).

2. Side-hinged structure for side-hinged sashes according to claim 1, characterized in that: The lower tension and translation guide wheel assembly (500) has the same structure as the upper tension and translation guide wheel assembly (400).

3. A side-hinged structure for a side-hinged sash according to claim 1, characterized in that: The upper tension and translation guide wheel assembly (400) further comprises a tension spring (406), one end of which is connected to one end of the connecting arm I (403) close to the sliding plate I (402), and the other end is connected to the connecting plate I (401).

4. A side-hinged structure for a side-hinged sash according to claim 1, characterized in that: The lower tension and translation guide wheel assembly (500) comprises a connecting plate II (502) fixed to the sash (200) by screws, a sliding plate II (501) sliding in the window hole on the auxiliary frame (100), and a connecting arm II (503), the two ends of the connecting arm II (503) are connected to the sliding plate II (501) and the connecting plate II (502) by a pin II (504), and a guide wheel II (505) is installed on the sliding plate II (501).

5. A side-hinged structure for a side-hinged sash according to claim 1, characterized in that: A limiting assembly (600) is installed at the corner in the window hole on the auxiliary frame (100), the limiting assembly (600) comprises a connecting plate III (601) fixed to the window hole on the auxiliary frame (100) by screws, a sliding plate III (602) sliding on the sash (200), and a connecting arm III (603), the two ends of the connecting arm III (603) are connected to the connecting plate III (601) and the sliding plate III (602) by a pin III (604), and a guide wheel III (605) is installed on the sliding plate III (602).

6. Side-hinged structure for side-hinged sashes according to claim 5, characterized in that: One end of the sliding plate III (602) is provided with a horizontal guide wheel (606).

7. A side-hinged structure for a side-hinged sash according to claim 1, characterized in that: A power assisting assembly (700) is further installed on the auxiliary frame (100), and the power assisting assembly (700) is arranged in the moving direction of the sash (200), the power assisting assembly (700) comprises a mounting bracket (701) and a guide roller (702) installed in the mounting bracket (701).