High-performance sliding window track structure
By improving the upper sliding frame and sliding frame structure of the sliding window, the split upper sliding frame assembly and integrated sliding frame design are adopted, which solves the watertightness and load-bearing force problems of the sliding window, and achieves better sealing performance and structural strength.
Patent Information
- Application Number
- CN202422381437.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-28
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-28
AI Technical Summary
The sliding track design of existing sliding windows has problems of insufficient watertightness and uneven load-bearing force, especially the split sliding frame is prone to water seepage at the overlapping point, which affects the watertightness of the entire window and the overall load-bearing force of the sliding frame.
The fixed upper sliding frame is changed into a split upper sliding frame assembly, and the split lower sliding frame is changed into an integrated sliding frame. The reverse hook connection between the upper sliding frame auxiliary material and the upper sliding frame body is added to form an intermediate fan sliding groove, and a drainage hole is set at the bottom of the outdoor screen track, and at the same time, a strip and a step are set between the tracks to improve sealing.
The watertightness of the entire window and the load-bearing force of the sliding frame are improved, and the overall sealing performance and structural strength of the sliding window are enhanced.
Smart Images

Figure CN223164434U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sliding windows, in particular to a high-performance sliding window track structure. Background Art
[0002] In order to improve the water tightness performance of sliding windows, the lower sliding rail is usually designed with a high-low track design. To block water, the indoor lower sliding edge is heightened. However, in order to facilitate the installation of hanging fans indoors, the installation gap reserved on the upper sliding rail should be larger than the size of the overlapping height of the lower sliding rail and the fan. Therefore, the indoor lower sliding edge needs to be designed as a split structure, and water is likely to seep into the room at the overlapping part of the split lower sliding rail, affecting the water tightness of the whole window. The split lower sliding rail has a certain impact on the overall load-bearing force of the lower sliding rail. Content of the Utility Model
[0003] To overcome the problems existing in the related art, the utility model provides a high-performance sliding window track structure, which changes the fixed upper sliding frame into a split upper sliding frame assembly, facilitating the installation of hanging fans indoors, and changes the split lower sliding frame into an integral lower sliding frame, improving the water tightness of the whole window and the overall load-bearing force of the lower sliding frame.
[0004] The utility model provides a high-performance sliding window track structure, including:
[0005] A split upper sliding frame assembly and an integral lower sliding frame;
[0006] The split upper sliding frame assembly is located at the top of the integral lower sliding frame;
[0007] The split upper sliding frame assembly includes an upper sliding frame body, upper sliding frame accessories and an upper sliding edge;
[0008] The upper sliding frame accessories are fixedly connected to the upper sliding frame body in a reverse hook manner, and the upper sliding frame accessories and the upper sliding frame body are connected to form a middle fan sliding groove;
[0009] A groove is provided on one side of the upper sliding frame accessories;
[0010] The upper sliding edge is fixedly connected to the groove of the upper sliding frame accessories in a reverse hook manner, and the upper sliding edge and the upper sliding frame accessories are connected to form an indoor fan sliding groove;
[0011] The integral lower sliding frame includes an outdoor screen window track, and drainage holes are provided at the bottom of the outdoor screen window track.
[0012] Further, the high-performance sliding window track structure further includes a screen fan;
[0013] A screen fan sliding groove is provided on one side of the upper sliding frame body, and the screen fan is located in the screen fan sliding groove;
[0014] The screen fan is slidably connected to the outdoor screen window track.
[0015] Furthermore, the high-performance sliding window track structure further includes an indoor sash;
[0016] The integrated lower sliding frame further includes an indoor sash track, and the indoor sash is located in the indoor sash sliding groove;
[0017] The indoor sash is slidably connected to the indoor sash track.
[0018] Furthermore, the integrated lower sliding frame further includes an indoor edge;
[0019] The height difference between the indoor sash track and the indoor edge is 26.7 mm.
[0020] Furthermore, the high-performance sliding window track structure further includes an intermediate sash;
[0021] The integrated lower sliding frame further includes an intermediate sash track, and the intermediate sash is located in the intermediate sash sliding groove;
[0022] The intermediate sash is slidably connected to the intermediate sash track.
[0023] Furthermore, the height difference between the intermediate sash track and the indoor edge is 42 mm.
[0024] Furthermore, the height difference between the indoor sash track and the intermediate sash track is 15 mm.
[0025] Furthermore, the height difference between the intermediate sash track and the outdoor screen window track is 9 mm.
[0026] Furthermore, the split upper sliding frame assembly further includes N first wool strips, N second wool strips and N third wool strips, where N is an integer of 2 or greater than 2;
[0027] The first wool strips are located on both sides inside the indoor sash sliding groove;
[0028] The second wool strips are located on both sides inside the intermediate sash sliding groove;
[0029] The third wool strips are located on both sides inside the screen sash sliding groove.
[0030] Furthermore, the integrated lower sliding frame further includes M fourth wool strips, M fifth wool strips and N sixth wool strips, where M is an integer of 1 or greater than 1, and N is an integer of 2 or greater than 2;
[0031] One side of the indoor sash track is provided with a first step;
[0032] One side of the intermediate sash track is provided with a second step;
[0033] On both sides of the outdoor screen window track, a third step and a fourth step are respectively provided;
[0034] The fourth wool strip is located on the first step of the indoor fan track;
[0035] The fifth wool strip is located on the second step of the middle fan track;
[0036] The sixth wool strip is respectively located on the third step and the fourth step of the outdoor screen window track.
[0037] The utility model provides a high-performance sliding window track structure, which changes the fixed upper sliding frame into a split upper sliding frame assembly, facilitating the installation of hanging fans indoors, and changes the split lower sliding frame into an integral lower sliding frame, improving the water tightness of the whole window and the overall load-bearing capacity of the lower sliding frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] By describing the exemplary embodiments of the present utility model in more detail in conjunction with the accompanying drawings, the above and other objects, features and advantages of the present utility model will become more obvious. Among them, in the exemplary embodiments of the present utility model, the same reference numerals generally represent the same components.
[0039] Figure 1 is a schematic structural diagram of the high-performance sliding window track structure in the present utility model;
[0040] Figure 2 is Figure 1 an enlarged view of part A of
[0041] Wherein:
[0042] 1. Split upper sliding frame assembly; 2. Integral lower sliding frame; 3. Indoor fan;
[0043] 4. Middle fan; 5. Screen fan; 11. Upper sliding frame body;
[0044] 12. Upper sliding frame auxiliary material; 13. Upper sliding edge; 14. First wool strip;
[0045] 15. Second wool strip; 16. Third wool strip; 101. Middle fan sliding groove;
[0046] 120. Groove; 102. Indoor fan sliding groove; 103. Screen fan sliding groove;
[0047] 21. Outdoor screen window track; 201. Drainage hole; 22. Indoor fan track;
[0048] 23. Middle fan track; 24. Indoor edge; 25. Fourth wool strip;
[0049] 26. Fifth wool strip; 27. Sixth wool strip; 231. Middle fan pulley;
[0050] 232, the first upper anti-swing wheel; 221, the indoor fan pulley; 222, the second upper anti-swing wheel;
[0051] 211, the screen fan pulley; 223, the first step; 233, the second step; 212, the third step; 213, the fourth step. Specific embodiments
[0052] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0053] Please refer to Figures 1 to 2 . The present invention provides a high-performance sliding window track structure, including: a split upper sliding frame assembly 1 and an integral lower sliding frame 2; the split upper sliding frame assembly 1 is located on top of the integral lower sliding frame 2; the split upper sliding frame assembly 1 includes an upper sliding frame body 11, an upper sliding frame auxiliary material 12 and an upper sliding edge 13; the upper sliding frame auxiliary material 12 is fixedly connected to the upper sliding frame body 11 in a reverse hook manner, and the upper sliding frame auxiliary material 12 and the upper sliding frame body 11 are connected to form an intermediate fan sliding groove 101; a groove 120 is provided on one side of the upper sliding frame auxiliary material 12; the upper sliding edge 13 is fixedly connected to the groove 120 of the upper sliding frame auxiliary material 12 in a reverse hook manner, and the upper sliding edge 13 and the upper sliding frame auxiliary material 12 are connected to form an indoor fan sliding groove 102; the integral lower sliding frame 2 includes an outdoor screen window track 21, and a drain hole 201 is provided at the bottom of the outdoor screen window track 21.
[0054] Specifically, in order to solve the problem that the high edge cannot be installed indoors for the indoor fan, the present invention is equipped with a split upper sliding frame assembly 1, which includes an upper sliding frame body 11, an upper sliding frame auxiliary material 12 and an upper sliding edge 13; when the user installs, first install the external fan and the intermediate fan, and then fixedly connect the upper sliding frame auxiliary material 12 to the upper sliding frame body 11 in a reverse hook manner to form an intermediate fan sliding groove 101, and then fixedly connect the upper sliding edge 13 to the groove 120 of the upper sliding frame auxiliary material 12 in a reverse hook manner. The upper sliding edge 13 and the upper sliding frame auxiliary material 12 are connected to form an indoor fan sliding groove 102, which facilitates the indoor installation of the hanging fan. The split lower sliding frame is changed to an integral lower sliding frame, which improves the water tightness of the whole window and the overall load-bearing force of the lower sliding frame. A drain hole 201 is provided at the bottom of the outdoor screen window track 21 for draining the water in the outdoor screen window track 21.
[0055] Further, the high-performance sliding window track structure further includes an indoor sash 3; the integrated lower sliding frame 2 further includes an indoor sash track 22, and the indoor sash 3 is located within the indoor sash sliding groove 102; the indoor sash 3 is slidably connected to the indoor sash track 22.
[0056] Further, the high-performance sliding window track structure further includes an intermediate sash 4; the integrated lower sliding frame 2 further includes an intermediate sash track 23, and the intermediate sash 4 is located within the intermediate sash sliding groove 101; the intermediate sash 4 is slidably connected to the intermediate sash track 23.
[0057] Specifically, the high-performance sliding window track structure further includes an intermediate sash pulley 231, a first upper anti-sway wheel 232, an indoor sash pulley 221, and a second upper anti-sway wheel 222.
[0058] The installation sequence of the indoor sash 3 is as follows: First, install the intermediate sash pulley 231 at the bottom of the intermediate sash 4 and the first upper anti-sway wheel 232 at the top of the intermediate sash 4. Then, tilt the intermediate sash 4 towards the indoor side, place the intermediate sash 4 onto the intermediate sash track 23, and then straighten the intermediate sash 4 so that the intermediate sash pulley 231 is slidably connected to the intermediate sash track 23. Then install the upper sliding frame auxiliary material 12, which is fixed to the upper sliding frame body 11 in a reverse hook manner. After installing the upper sliding frame auxiliary material 12, the intermediate sash sliding groove 101 is formed, and the intermediate sash sliding groove 101 is used to place the intermediate sash 4. Then, install the indoor sash pulley 221 at the bottom of the indoor sash 3 and the second upper anti-sway wheel 222 at the top of the indoor sash 3. After that, tilt the indoor sash 3 towards the indoor side, place the indoor sash 3 onto the indoor sash track 22, and then straighten the indoor sash 3 so that the indoor sash pulley 221 is slidably connected to the indoor sash track 22. Finally, install the upper sliding edge 13, which is fixed to the groove 120 of the upper sliding frame auxiliary material 12 in a reverse hook manner. After the installation of the upper sliding edge 13 is completed, the indoor sash sliding groove 102 is formed, and the installation of the indoor sash 3 is completed. This installation sequence changes the traditional sash installation steps. In the traditional installation steps of the glass sash, since the upper sliding frame is integrated and the movable groove profiles of the sliding sash are fixed, when installing, the sash is first tilted towards the outdoor side, the upper part of the sash is first installed into the upper sliding groove, and then the lower part of the sash is straightened and installed on the lower sliding track. Therefore, the indoor edge of the lower sliding material needs to be designed very short or in a split form. The split lower part is prone to water seeping into the room at the lap joint, affecting the water tightness of the entire window, and the split lower part has a certain impact on the overall load-bearing and force-bearing of the lower sliding track.
[0059] Further, the high-performance sliding window track structure further includes a screen sash 5; a screen sash sliding groove 103 is provided on one side of the upper sliding frame body 11, and the screen sash 5 is located within the screen sash sliding groove 103; the screen sash 5 is slidably connected to the outdoor screen window track 21.
[0060] Specifically, before installing the middle sash 4, first install the screen sash 5. The high-performance sliding window track structure further includes screen sash pulleys 211. Install the screen sash pulleys 211 at the bottom of the screen sash 5, place the screen sash 5 on the outdoor screen window track 21, so that the screen sash 5 is located within the screen sash sliding groove 103, and the screen sash pulleys 211 are slidably connected to the outdoor screen window track 21.
[0061] Further, the integral lower sliding frame 2 further includes an indoor edge 24; the height difference between the indoor sash track 22 and the indoor edge 24 is 26.7 mm.
[0062] Further, the height difference between the middle sash track 23 and the indoor edge 24 is 42 mm.
[0063] Further, the height difference between the indoor sash track 22 and the middle sash track 23 is 15 mm.
[0064] Further, the height difference between the middle sash track 23 and the outdoor screen window track 21 is 9 mm.
[0065] Specifically, the height difference between the indoor sash track 22 and the indoor edge 24 is H1, and H1 is 26.7 mm; the height difference between the middle sash track 23 and the indoor edge 24 is H2, and H2 is 42 mm; the height difference between the indoor sash track 22 and the middle sash track 23 is H3, and H3 is 15 mm; the height difference between the middle sash track 23 and the outdoor screen window track 21 is H4, and H4 is 9 mm; so that the height differences of the outdoor screen window track 21, the middle sash track 23 and the indoor sash track 22 are large, and the drainage is smoother.
[0066] Further, the split upper sliding frame assembly 1 further includes N first wool strips 14, N second wool strips 15 and N third wool strips 16, where N is 2 or an integer greater than 2; the first wool strips 14 are located on both sides inside the indoor sash sliding groove 102; the second wool strips 15 are located on both sides inside the middle sash sliding groove 101; the third wool strips 16 are located on both sides inside the screen sash sliding groove 103.
[0067] Specifically, the first wool strips 14 are located on both sides inside the indoor sash sliding groove 102, the second wool strips 15 are located on both sides inside the middle sash sliding groove 101, the third wool strips 16 are located on both sides inside the screen sash sliding groove 103, and one end of the first wool strip 14, one end of the second wool strip 15 and one end of the third wool strip 16 are respectively abutted against the top of the indoor sash 3, the top of the middle sash 4 and the top of the screen sash 5, so as to achieve a sealing effect and improve the water tightness and air tightness of the sliding window.
[0068] Furthermore, the integrated lower frame 2 also includes M fourth wool strips 25, M fifth wool strips 26 and N sixth wool strips 27, where M is 1 or an integer greater than 1, and N is 2 or an integer greater than 2; a first step 223 is provided on one side of the indoor fan track 22; a second step 233 is provided on one side of the intermediate fan track 23; a third step 212 and a fourth step 213 are respectively provided on both sides of the outdoor screen track 21; the fourth wool strip 25 is located on the first step 223 of the indoor fan track 22; the fifth wool strip 26 is located on the second step 233 of the intermediate fan track 23; the sixth wool strip 27 is respectively located on the third step 212 and the fourth step 213 of the outdoor screen track 21.
[0069] Specifically, the fourth wool strip 25 is located on the first step 223 of the indoor fan track 22; the fifth wool strip 26 is located on the second step 233 of the middle fan track 23; and the sixth wool strip 27 is respectively located on the third step 212 and the fourth step 213 of the outdoor screen track 21, so that one end of the fourth wool strip 25, one end of the fifth wool strip 26 and one end of the sixth wool strip 27 are respectively against the bottom of the indoor fan 3, the bottom of the middle fan 4 and the bottom of the screen fan 5, thereby achieving a sealing effect and improving the watertightness and airtightness of the sliding window.
[0070] The utility model provides a high-performance sliding window track structure. Before installing the middle fan 4, the screen fan 5 is installed first. The high-performance sliding window track structure also includes a screen fan pulley 211. The screen fan pulley 211 is installed to the bottom of the screen fan 5, and the screen fan 5 is placed on the outdoor screen window track 21 so that the screen fan 5 is located in the screen fan sliding groove 103, and the screen fan pulley 211 is slidably connected to the outdoor screen window track 21; then the middle fan pulley 231 is installed at the bottom of the middle fan 4, and the first upper anti-sway wheel 232 is installed at the top of the middle fan 4, and then the middle fan 4 is tilted toward the indoor surface, and the middle fan 4 is placed on the middle fan track 23, and then the middle fan 4 is straightened so that the middle fan pulley 231 is slidably connected to the middle fan track 23. Then install the upper sliding frame auxiliary material 12, and the upper sliding frame auxiliary material 12 is fixed on the upper sliding frame body 11 in a reverse hook manner. After the upper sliding frame auxiliary material 12 is installed, the middle fan sliding groove 101 is formed, and the middle fan sliding groove 101 is used to place the middle fan 4; then install the indoor fan pulley 221 at the bottom of the indoor fan 3, and after the second upper anti-sway wheel 222 is installed on the top of the indoor fan 3, tilt the indoor fan 3 toward the indoor surface, place the indoor fan 3 on the indoor fan track 22, and then straighten the indoor fan 3 so that the indoor fan pulley 221 is slidably connected to the indoor fan track 22; finally, install the upper sliding retaining edge 13, and the upper sliding retaining edge 13 is fixed in the groove 120 of the upper sliding frame auxiliary material 12 in a reverse hook manner. After the upper sliding retaining edge 13 is installed, the indoor fan sliding groove 102 is formed, and the installation of the indoor fan 3 is completed.
[0071] Furthermore, the integrated sliding frame 2 effectively improves the load-bearing capacity of the outdoor screen window track 21, the indoor fan track 22 and the middle fan track 23, and effectively improves the strength of the sliding window track.
[0072] In addition, the high-performance sliding window track structure provided by the embodiments of the present invention has been introduced in detail above. Specific examples should have been used in this article to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present invention.
Claims
1. A high-performance sliding window track structure, characterized in that, Comprising: A split upper sliding frame assembly and an integral lower sliding frame; The split upper sliding frame assembly is located at the top of the integral lower sliding frame; The split upper sliding frame assembly includes an upper sliding frame body, upper sliding frame accessories and an upper sliding edge; The upper sliding frame accessories are fixedly connected to the upper sliding frame body in a reverse hook manner, and the upper sliding frame accessories and the upper sliding frame body are connected to form an intermediate sash sliding groove; One side of the upper sliding frame accessories is provided with a groove; The upper sliding edge is fixedly connected to the groove of the upper sliding frame accessories in a reverse hook manner, and the upper sliding edge and the upper sliding frame accessories are connected to form an indoor sash sliding groove; The integral lower sliding frame includes an outdoor screen window track, and drain holes are provided at the bottom of the outdoor screen window track.
2. The high-performance sliding window track structure according to claim 1, wherein The high-performance sliding window track structure further includes a screen sash; One side of the upper sliding frame body is provided with a screen sash sliding groove, and the screen sash is located in the screen sash sliding groove; The screen sash is slidably connected to the outdoor screen window track.
3. The high-performance sliding window track structure according to claim 2, wherein The high-performance sliding window track structure further includes an indoor sash; The integral lower sliding frame further includes an indoor sash track, and the indoor sash is located in the indoor sash sliding groove; The indoor sash is slidably connected to the indoor sash track.
4. The high-performance sliding window track structure according to claim 3, wherein The integral lower sliding frame further includes an indoor edge; The height difference between the indoor sash track and the indoor edge is 26.7 mm.
5. The high-performance sliding window track structure according to claim 4, wherein The high-performance sliding window track structure further includes an intermediate sash; The integral lower sliding frame further includes an intermediate sash track, and the intermediate sash is located in the intermediate sash sliding groove; The intermediate sash is slidably connected to the intermediate sash track.
6. The high-performance sliding window track structure according to claim 5, wherein The height difference between the intermediate sash track and the indoor edge is 42 mm.
7. The high-performance sliding window track structure according to claim 5, wherein The height difference between the indoor sash track and the intermediate sash track is 15 mm.
8. The high-performance sliding window track structure according to claim 7, wherein The height difference between the intermediate sash track and the outdoor screen window track is 9 mm.
9. The high-performance sliding window track structure according to claim 5, wherein The split upper sliding frame assembly further includes N first wool strips, N second wool strips and N third wool strips, where N is 2 or an integer greater than 2; The first wool strips are located on both sides inside the indoor sash sliding groove; The second wool strips are located on both sides inside the intermediate sash sliding groove; The third wool strips are located on both sides inside the screen sash sliding groove.
10. The high-performance sliding window track structure according to claim 5, wherein The integral lower sliding frame further includes M fourth wool strips, M fifth wool strips and N sixth wool strips, where M is 1 or an integer greater than 1, and N is 2 or an integer greater than 2; One side of the indoor sash track is provided with a first step; One side of the intermediate sash track is provided with a second step; On both sides of the outdoor screen window track, a third step and a fourth step are respectively provided; The fourth wool strip is located on the first step of the indoor fan track; The fifth wool strip is located on the second step of the intermediate fan track; The sixth wool strip is respectively located on the third step and the fourth step of the outdoor screen window track.