Translation side pressure window
Patent Information
- Application Number
- CN202521795518.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-22
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-08-22
AI Technical Summary
[0002]在现有的平移侧压窗技术领域中,其独特的开启与密封机制虽在一定程度上改善了传统窗型的密封性能,但平移侧压窗在日常使用中,必须反复执行平移推压操作以实现窗体的锁紧与密封功能,这一动作机制,直接导致了窗体锁紧结构长期处于高负荷的机械应力与持续的摩擦损耗之下
[0014]在本实用新型中,矩形窗框中央固定竖向中挺,活动扇组件的中空玻璃A通过玻璃边框滑动连接于矩形窗框,当需要关闭活动扇组件时,将活动扇组件向外推动并扭转执手,通过转动执手使传动轴A带动齿轮A转动,齿轮A驱动齿轮B及传动轴B旋转,使传动轴B上的弹性伸缩杆带动中间锁扣转动,使中间锁扣与竖向中挺的锁紧板卡接实现锁紧,同时弹性伸缩锁扣被推入锁槽实现双重卡紧,进一步提升活动扇组件的稳定锁紧,同时降低机械应力集中避免部件变形。
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Figure CN224648417U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of window structure technology, and in particular to a sliding side-pressure window. Background Technology
[0002] In the existing technology of sliding side-press windows, although their unique opening and sealing mechanism has improved the sealing performance of traditional window types to a certain extent, sliding side-press windows must repeatedly perform sliding and pushing operations in daily use to achieve the locking and sealing function of the window. This action mechanism directly leads to the window locking structure being under high mechanical stress and continuous friction wear for a long time.
[0003] Over time, the locking structure is prone to wear and aging under such harsh working conditions, and its physical properties gradually decline. This manifests as reduced structural strength, increased deformation, and even serious problems such as component damage. These problems not only significantly shorten the service life of the sliding side-pressure window locking structure, but also directly damage the integrity of the window's sealing system. The stability of the sealing performance is thus severely affected, resulting in frequent occurrences of poor sealing, air leakage, and water seepage. This seriously restricts the performance and reliability of the sliding side-pressure window in practical applications.
[0004] Therefore, it is essential to provide a sliding side-pressure window to address the shortcomings of existing technologies. Utility Model Content
[0005] The purpose of this invention is to provide a sliding side-pressure window that avoids the shortcomings of existing technologies. In this invention, a vertical mullion is fixed in the center of a rectangular window frame. The insulated glass A of the movable sash assembly is slidably connected to the rectangular window frame through the glass frame. When the movable sash assembly needs to be closed, the movable sash assembly is pushed outward and the handle is twisted. By rotating the handle, the drive shaft A drives the gear A to rotate. The gear A drives the gear B and the drive shaft B to rotate, causing the elastic telescopic rod on the drive shaft B to drive the central latch to rotate. The central latch engages with the locking plate of the vertical mullion to achieve locking. At the same time, the elastic telescopic latch is pushed into the locking groove to achieve double locking, further improving the stable locking of the movable sash assembly, while reducing mechanical stress concentration and avoiding component deformation.
[0006] The above-mentioned objectives of this utility model are achieved through the following technical means.
[0007] A sliding side-pressure window is provided, including a rectangular window frame. A vertical mullion is installed in the center of the rectangular window frame. The rectangular window frame is divided into a right half window frame and a left half window frame by the vertical mullion. A fixed sash assembly is fixedly installed on the right half window frame, and a screen assembly is installed on the left half window frame. A movable sash assembly is movably installed on the rectangular window frame, and the movable sash assembly is movably engaged with the vertical mullion.
[0008] Specifically, the movable sash assembly includes a double-glazed glass A, which is slidably installed on the top and bottom sides of the double-glazed glass A with a rectangular window frame. Glass frames are installed on the left and right sides of the double-glazed glass A. One side of one glass frame is equipped with an elastic telescopic latch, which is movably engaged with a locking groove. The locking groove is located on one side of the rectangular window frame. A support frame is installed inside the other glass frame.
[0009] Preferably, a drive shaft A is movably mounted on the support frame via bearings, a handle is mounted on one end of the drive shaft A, the handle is movably mounted on one side of the glass frame, a gear A is mounted on the drive shaft A, a gear B is driven by the gear A, and the drive shaft B is mounted through the central shaft of the gear B.
[0010] Both ends of the drive shaft B are movably mounted on the support frame via bearings. One end of the drive shaft B is equipped with an elastic telescopic rod, and an intermediate lock is axially mounted on the elastic telescopic rod. The intermediate lock is movably engaged with a locking plate, which is integrally formed with the vertical mullion. A buffer pad is installed on one side of the glass frame, and the buffer pad is movably abutting against the vertical mullion.
[0011] The fixed sash assembly includes a double-glazed glass unit B, which is embedded and fixed between the right half of the window frame and the vertical mullion. Rubber pads A are installed on both sides of the double-glazed glass unit B, and the two rubber pads A respectively abut against the inner side of the right half of the window frame and the vertical mullion.
[0012] The screen assembly includes a screen and a fastener. The screen is fastened between the left half of the window frame and the vertical mullion by the fastener. Both the insulating glass B and the outer frame of the screen are equipped with sealing strips A, which are fastened to the inside of the rectangular window frame and the vertical mullion.
[0013] A rubber pad B is installed between the insulated glass A and the glass frame. Sealing strips B are installed on the left half of the window frame and on the vertical mullion near the glass frame. Sealing strips B are in contact with the glass frame. Sealing strip C is fastened between the insulated glass A and the glass frame.
[0014] In this invention, a vertical mullion is fixed in the center of a rectangular window frame. The insulated glass A of the movable sash assembly is slidably connected to the rectangular window frame through the glass frame. When the movable sash assembly needs to be closed, the movable sash assembly is pushed outward and the handle is twisted. By rotating the handle, the drive shaft A drives the gear A to rotate. The gear A drives the gear B and the drive shaft B to rotate, causing the elastic telescopic rod on the drive shaft B to drive the central latch to rotate. The central latch engages with the locking plate of the vertical mullion to achieve locking. At the same time, the elastic telescopic latch is pushed into the locking groove to achieve double locking, further improving the stable locking of the movable sash assembly, while reducing mechanical stress concentration and avoiding component deformation. Attached Figure Description
[0015] The present invention will be further described with reference to the accompanying drawings, but the content of the drawings does not constitute any limitation on the present invention.
[0016] Figure 1 This is an overall structural diagram of the closed state of the sliding side-pressure window of this utility model.
[0017] Figure 2 This is an overall structural diagram of the sliding side-pressure window of this utility model in the open state.
[0018] Figure 3 This is an enlarged view of point A of the sliding side-pressure window of this utility model.
[0019] from Figures 1 to 3 Including:
[0020] 1. Rectangular window frame;
[0021] 2. Vertically upright;
[0022] 3. Right half of the window frame;
[0023] 4. Left half of the window frame;
[0024] 5. Fixed fan assembly;
[0025] 6. Window screen assembly;
[0026] 7. Movable fan assembly;
[0027] 8. Insulating glass A;
[0028] 9. Glass frame;
[0029] 10. Flexible telescopic lock;
[0030] 11. Lock slot;
[0031] 12. Support frame;
[0032] 13. Drive shaft A;
[0033] 14. Holding hands;
[0034] 15. Gear A;
[0035] 16. Gear B;
[0036] 17. Drive shaft B;
[0037] 18. Flexible telescopic pole;
[0038] 19. Center latch;
[0039] 20. Locking plate;
[0040] 21. Buffer pads;
[0041] 22. Insulating glass (B);
[0042] 23. Rubber pad A;
[0043] 24. Window screen;
[0044] 25. Fasteners;
[0045] 26. Sealing strip A;
[0046] 27. Rubber pad B;
[0047] 28. Sealing strip B;
[0048] 29. Sealing strip C. Detailed Implementation
[0049] The present invention will be further described in conjunction with the following embodiments.
[0050] Example 1.
[0051] like Figure 1-3 As shown, the sliding side-pressure window includes a rectangular window frame 1. A vertical mullion 2 is vertically installed in the center of the rectangular window frame 1. The rectangular window frame 1 is divided into a right half window frame body 3 and a left half window frame body 4 by the vertical mullion 2. A fixed sash assembly 5 is fixedly installed on the right half window frame body 3, and a screen assembly 6 is installed on the left half window frame body 4. A movable sash assembly 7 is movably installed on the rectangular window frame 1, and the movable sash assembly 7 is movably engaged with the vertical mullion 2.
[0052] like Figure 1-3 As shown, the movable sash assembly 7 includes a double-glazed glass A8. The upper and lower sides of the double-glazed glass A8 are slidably installed with the rectangular window frame 1. Glass frames 9 are installed on the left and right sides of the double-glazed glass A8. One side of one glass frame 9 is equipped with an elastic telescopic latch 10. The elastic telescopic latch 10 is movably engaged with a lock groove 11. The lock groove 11 is opened on one side of the rectangular window frame 1. A support frame 12 is installed inside the other glass frame 9.
[0053] like Figure 1-3 As shown, a drive shaft A13 is movably mounted on the support frame 12 via a bearing. A handle 14 is mounted on one end of the drive shaft A13. The handle 14 is movably mounted on one side of the glass frame 9. A gear A15 is mounted on the drive shaft A13. A gear B16 is driven by the gear A15. A drive shaft B17 is mounted through the central shaft of the gear B16.
[0054] like Figure 1-3As shown, both ends of the drive shaft B17 are movably mounted on the support frame 12 via bearings. One end of the drive shaft B17 is equipped with an elastic telescopic rod 18. An intermediate lock 19 is axially mounted on the elastic telescopic rod 18. The intermediate lock 19 is movably engaged with a locking plate 20. The locking plate 20 is integrally formed with the vertical center mullion 2. A buffer pad 21 is installed on one side of the glass frame 9. The buffer pad 21 is movably abutted against the vertical center mullion 2.
[0055] like Figure 1-3 As shown, the fixed sash assembly 5 includes a double-glazed glass unit B 22, which is embedded and fixedly installed between the right half window frame 3 and the vertical mullion 2. Rubber pads A 23 are installed on both sides of the double-glazed glass unit B 22, and the two rubber pads A 23 respectively abut against the inner sides of the right half window frame 3 and the vertical mullion 2.
[0056] like Figure 1-3 As shown, the screen window assembly 6 includes a screen window 24 and a fastener 25. The screen window 24 is fastened between the left half of the window frame 4 and the vertical mullion 2 by the fastener 25. Both the insulating glass B 22 and the outer frame of the screen window 24 are equipped with sealing strips A 26, which are fastened to the inner side of the rectangular window frame 1 and the vertical mullion 2.
[0057] like Figure 1-3 As shown, a rubber pad B27 is installed between the insulated glass A8 and the glass frame 9. Sealing strips B28 are installed on the left half of the window frame 4 and the vertical mullion 2 near the glass frame 9, respectively. Sealing strips B28 are in contact with the glass frame 9. Sealing strip C29 is engaged between the insulated glass A8 and the glass frame 9.
[0058] Gear A15 meshes with gear B16 to transmit the rotational motion of handle 14 to elastic telescopic rod 18 via drive shaft B17. Both ends of drive shaft B17 are supported by bearings on support frame 12 to ensure smooth operation of multi-tooth meshing. The elastic telescopic rod 18 at its end and the intermediate lock 19 form an elastic support system, which realizes load distribution through stress dynamic compensation, significantly optimizing structural reliability. The elastic telescopic lock 10 and the intermediate lock 19 work together to reduce mechanical stress concentration and avoid component deformation by adaptive locking pressure through elastic telescopic rod 18. The buffer rubber pad and the sealing strip form a multi-seal interface to enhance air tightness and water tightness. The screen assembly 6 can be easily cleaned or replaced by removing the fixing part 25.
[0059] In this utility model, a vertical mullion 2 is fixed in the center of the rectangular window frame 1. The insulated glass A8 of the movable sash assembly 7 is slidably connected to the rectangular window frame 1 through the glass frame 9. When it is necessary to close the movable sash assembly 7, the movable sash assembly 7 is pushed outward and the handle 14 is twisted. By rotating the handle 14, the transmission shaft A13 drives the gear A15 to rotate. The gear A15 drives the gear B16 and the transmission shaft B17 to rotate, so that the elastic telescopic rod 18 on the transmission shaft B17 drives the intermediate latch 19 to rotate, so that the intermediate latch 19 engages with the locking plate 20 of the vertical mullion 2 to achieve locking. At the same time, the elastic telescopic latch 10 is pushed into the locking groove 11 to achieve double locking, further improving the stable locking of the movable sash assembly 7, while reducing mechanical stress concentration and avoiding component deformation.
[0060] The sealing strip B 28 installed on the left half of the window frame 4 and the vertical mullion 2 ensures the airtightness of the movable sash assembly 7 when closed. The insulated glass B 22 of the fixed sash assembly 5 works together with the rubber pad A 23 and the sealing strip A 26 to ensure the stability of the glass and effectively block the penetration of water vapor and noise. The screen assembly 6 is installed by the fastener 25 for easy disassembly. When it is necessary to open the movable sash assembly 7, the handle 14 is twisted to separate the middle latch 19 from the locking plate 20, and then the handle 14 is pulled inward to make the movable sash assembly 7 slide horizontally to the side close to the fixed movable sash assembly 7.
[0061] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.
Claims
1. A sliding side-pressure window, characterized in that: The window includes a rectangular window frame, with a vertical mullion installed in the center of the rectangular window frame. The rectangular window frame is divided into a right half window frame and a left half window frame by the vertical mullion. A fixed sash assembly is fixedly installed on the right half window frame, and a screen assembly is installed on the left half window frame. A movable sash assembly is movably installed on the rectangular window frame, and the movable sash assembly is movably engaged with the vertical mullion. The movable sash assembly includes a double-glazed window A, which is slidably installed on the top and bottom sides of the rectangular window frame. Glass frames are installed on the left and right sides of the double-glazed window A. One side of one glass frame is equipped with an elastic telescopic latch, which is movably engaged with a locking groove on one side of the rectangular window frame. A support frame is installed inside the other glass frame. A drive shaft A is movably mounted on the support frame via bearings. A handle is installed at one end of the drive shaft A, and the handle is movably mounted on one side of the glass frame. A gear A is mounted on the drive shaft A, and gear B is driven by gear A. The drive shaft B is threaded through the central shaft of gear B. Both ends of the drive shaft B are movably mounted on the support frame via bearings. An elastic telescopic rod is installed at one end of the drive shaft B. A central latch is axially mounted on the elastic telescopic rod, and a locking plate is movably engaged with the central latch. The locking plate is integrally formed with the vertical mullion. A buffer pad is installed on one side of the glass frame, and the buffer pad movably abuts against the vertical mullion.
2. The sliding side-pressure window according to claim 1, characterized in that: The fixed sash assembly includes a double-glazed window (B), which is embedded and fixedly installed between the right half of the window frame and the vertical mullion. Rubber pads A are installed on both sides of the double-glazed window (B), and the two rubber pads A respectively abut against the inner sides of the right half of the window frame and the vertical mullion. The screen assembly includes a screen and a fastener. The screen is fastened between the left half of the window frame and the vertical mullion by the fastener. Sealing strips A are installed on the outer frames of both the double-glazed window (B) and the screen, and the sealing strips A are fastened to the inner sides of the rectangular window frame and the vertical mullion.
3. The sliding side-pressure window according to claim 2, characterized in that: A rubber pad B is installed between the insulated glass A and the glass frame. Sealing strips B are installed on the left half of the window frame and the vertical mullion near the glass frame. The sealing strips B are in contact with the glass frame. A sealing strip C is engaged between the insulated glass A and the glass frame.