A micro-translation sliding door and window anti-misoperation method
By installing an anti-misoperation structure in micro-sliding sliding doors and windows, the problem of users accidentally opening the driven sash is solved, ensuring that the driving sash opens first, preventing damage to the driven sash, and maintaining the aesthetics of the doors and windows as well as the compatibility of the hardware.
Patent Information
- Application Number
- CN202211372237.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-31
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2042-10-31
AI Technical Summary
Existing micro-sliding doors and windows have identical appearances for the active and passive sashes, making them difficult to distinguish. This can lead to users accidentally opening the passive sash, causing the passive sash pulley to detach and resulting in accidents. Current technology lacks an effective solution.
Install anti-misoperation structures in doors and windows, including components such as tracks, sliding U-grooves, pins, drive shafts, and push-pull springs. Through the cooperation of limit holes and push-pull shafts, ensure that the active sash opens first and prevent the driven sash from opening accidentally.
This effectively prevents the driven sash from being accidentally opened when the active sash is not turned on, protecting the driven sash, maintaining the aesthetics of the doors and windows, and not affecting the compatibility of existing hardware.
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Figure CN115929114B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of doors and windows, in particular to a micro-translation sliding door and window anti-misoperation method. BACKGROUND
[0002] In the entire door and window industry, micro-translation sliding doors and windows are more and more widely used due to their good sealing performance and high color value. In the prior art, the sash structure in the micro-translation sliding door and window is divided into a driving sash and a driven sash, and the appearances are consistent, which ensures the aesthetic appearance of the micro-translation sliding door and window, and more customers are willing to choose the micro-translation sliding door and window. With the use of the market, the problem of misoperation of the opposite opening operation occurs in use, and there is no more effective solution to the problem of misoperation of the opposite opening operation.
[0003] In the hardware system of the micro-translation sliding door and window, the opening of the micro-translation sliding door and window needs to be opened by the driving sash handle, and the driving sash is opened before the driven sash is opened. Because the appearances of the driving sash and the driven sash are consistent, it is difficult to distinguish the driving sash from the driven sash when opening. The driving sash and the driven sash cannot be made into different appearances in the technical aspect, because the profiles used by the driving sash and the driven sash must be consistent to ensure the aesthetic appearance of the door and window. When the profiles and sizes are the same, the driving sash and the driven sash cannot be made into two types of sashes. In addition, from the perspective of laymen, two types of sashes can be marked to distinguish the driving sash from the driven sash and to mark which sash to open first. This is a method used by laymen. In the door and window industry, the customer group is very wide, and the product needs to be simple to use to win a larger market. Therefore, marking on the sash is not a good way. First, the marking on the profile is difficult to handle and will be very conspicuous, affecting the aesthetic appearance. Second, once the marking is made, the door and window will be more complicated to use, and people will feel that they need to look at the instructions when using. This will affect the market of the door and window. Therefore, marking on the sash cannot be done.
[0004] Therefore, when the micro-translation sliding door and window is used, the driven sash may be opened. If the driving sash is not opened, the driven sash may be directly opened, which may cause the pulley of the driven sash to fall off, causing the driven sash to fall off and causing serious accidents.
[0005] In view of the above problems, all door and window manufacturers currently have no good solution. They only explain to the user how to use it. However, the customer passively accepts the information, and the door and window can never be opened by a fixed person. Therefore, it is impossible to effectively avoid the situation of the driven sash falling off. SUMMARY
[0006] The application provides a micro-translation sliding door and window anti-misoperation method to ensure that the driving sash is opened and to avoid sash damage.
[0007] The application discloses a kind of micro translation sliding door and window anti-misoperation methods, it is characterized in that, in door and window, there is anti-misoperation structure, the anti-misoperation structure includes slide, sliding U groove is installed in slide, pin shaft is installed in sliding U groove, and one end of pin shaft is movably arranged in the opening of slide and sliding U groove;The other end of pin shaft contacts transmission shaft, and transmission shaft is fixedly installed at the end of sliding U groove;The other end of transmission shaft is deeply fixed in shaft sleeve, and is sleeved with push-pull spring, and the end of transmission shaft is connected with push-pull shaft, and the other end of push-pull shaft is movably arranged in the opening of the end of shaft sleeve;
[0008] Limiting hole is formed in rack and rack decorative plate, and the rack decorative plate is fixed on the profile;The slide is fixed on the rack decorative plate of driven fan, and the sliding U groove, pin shaft and transmission shaft are assembled respectively, and the opening is formed in the profile of the side of driven fan, and the end surface of shaft sleeve is fixed in the opening;And the push-pull spring and push-pull shaft are installed;
[0009] When the fan lock is closed, the profile of the side of driving fan tightly pushes the push-pull shaft, and under the action of push-pull spring, the end of pin shaft protrudes into the limiting hole;
[0010] When opening, the handle of driving fan is rotated, the driving fan is opened, the push-pull shaft protrudes from the end of shaft sleeve under the action of push-pull spring, drives the transmission shaft and sliding U groove to move, so that the pin shaft is separated from the limiting hole;The rack of driven fan is released from limiting, the handle of driven fan is rotated, and the driven fan is opened;
[0011] When the pin shaft is not separated from the limiting hole, the rack of driven fan cannot move up and down, and the handle of driven fan cannot be rotated.
[0012] Preferably, the slide is connected with connecting clutches on both sides.
[0013] Preferably, the anti-misoperation structure is made of 304 stainless steel.
[0014] Preferably, the other end of pin shaft is in contact with spring, and the other end of spring is in contact with transmission shaft.
[0015] The application has the following beneficial effects:
[0016] In the application, when the driving fan is not opened, the handle of driven fan is limited from moving by the installation of anti-misoperation structure;The anti-misoperation structure is simple in structure, low in cost, easy to maintain and operate, and completely avoids the damage of driven fan caused by opening sequence;When installed, the anti-misoperation structure is integrally installed in driven fan, only the shaft sleeve and push-pull shaft can be seen on the side of driven fan, which ensures the overall beauty of micro translation sliding door and window;And the overall hardware does not need to be changed, and can be adapted to all hardware in the prior art, which is convenient for popularization and use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1Structure diagram of the anti-misoperation structure in the application;
[0018] Figure 2 Structure diagram of the anti-misoperation structure in the application;
[0019] Figure 3 Structure diagram of the micro-translation sliding door and window sash in the application;
[0020] Figure 4 Structure diagram of the micro-translation sliding door and window hardware in the application;
[0021] Figure 5 Structure diagram of the driven sash hardware in the application;
[0022] Figure 6 Structure diagram of the anti-misoperation structure in the application;
[0023] Figure 7 Structure diagram of the sliding rail fixing structure in the application;
[0024] 1, sliding rail; 2, sliding U groove; 3, pin shaft; 4, buffer spring; 5, transmission shaft; 6, fixed shaft sleeve; 7, end face; 8, sliding spring; 9, sliding shaft; 10, rack decorative plate; 11, driving sash handle; 12, rack; 12.1, limiting hole. DETAILED DESCRIPTION
[0025] The technical scheme of the application will be further explained and described below through specific embodiments.
[0026] Embodiment 1
[0027] Referring to the drawings, a micro-translation sliding door and window anti-misoperation method, other hardware structures in the micro-translation sliding door and window are prior art; characterized in that an anti-misoperation structure is installed in the door and window, the material is 304 stainless steel, the anti-misoperation structure comprises a sliding rail 1, a sliding U groove 2 is installed in the sliding rail 1, a pin shaft 3 is installed inside the sliding U groove 2, one end of the pin shaft 3 is movably arranged in the opening of the sliding rail 1 and the sliding U groove 2; the other end of the pin shaft 3 contacts a transmission shaft 5, the transmission shaft 5 is provided with external threads, the sliding U groove 2 is provided with internal threads at the end, the transmission shaft 5 is fixed with the sliding U groove 2 through the threads; the other end of the transmission shaft 5 is deeply arranged in a fixed shaft sleeve 6, and a sliding spring 8 is sleeved on the transmission shaft 5, and the end of the transmission shaft 5 is connected with a sliding shaft 9, the other end of the sliding shaft 9 is movably arranged in the opening of the fixed shaft sleeve 6;
[0028] The limiting hole 12.1 is formed in the rack 12 and the rack decoration plate 10, and the rack 12 is parallel to the rack decoration plate 10, and the rack decoration plate 10 is fixed on the profile; the connecting clutches are connected to the both sides of the slide 1, the connecting clutches are fixed in the holes formed in the rack decoration plate 10 of the driven fan, the sliding U groove 2, the pin shaft 3 and the transmission shaft 5 are assembled respectively, the slide 1 is fixed on the rack decoration plate 10, and the assembling sequence can be adjusted according to actual needs; the end of the pin shaft 3 is accommodated in the limiting hole 12.1; the end surface 7 of the fixed shaft sleeve 6 is fixed in the hole formed in the profile of the driven fan side; and the push-pull spring 8 and the push-pull shaft 9 are installed; similarly, the fixed shaft sleeve 6 is installed, and the push-pull spring 8 and the push-pull shaft 9 can be assembled according to actual conditions.
[0029] When the fan is closed, the push-pull shaft 9 is pressed against the profile of the driving fan side, and the end of the pin shaft 3 protrudes into the limiting hole 12.1 under the action of the push-pull spring 8;
[0030] When the fan is opened, the driving fan handle 11 is rotated, the driving fan is opened, the end of the push-pull shaft 9 protrudes from the fixed shaft sleeve 6 under the action of the push-pull spring 8, the transmission shaft 5 and the sliding U groove 2 are driven to move, so that the pin shaft 3 is separated from the limiting hole 12.1; the rack 12 is released from the limiting, the driven fan handle is rotated, and the driven fan is opened;
[0031] When the pin shaft 3 is not separated from the limiting hole 12.1, the rack 12 cannot move up and down, so the driven fan handle cannot be rotated; when the fan is opened, only the driving fan handle can be moved, preventing the driven fan from being opened by mistake.
[0032] Embodiment 2
[0033] On the basis of the structure of embodiment 1, the other end of the pin shaft 2 is in contact with the buffer spring 4, and the other end of the buffer spring 4 is in contact with the transmission shaft 5. In order to prevent the driven fan rack decoration plate 10 and the rack 12 from colliding with the pin shaft 3, and to prevent friction between the pin shaft and the sliding sleeve when the driving fan collides, the pin shaft 3 is in contact with the buffer spring 4, which plays a buffering role.
Claims
1. A method for preventing an error opening of a micro-translation sliding door window, characterized in that, The anti-misoperation structure is installed in the door and window, and comprises a slide, a sliding U-shaped groove installed in the slide, a pin shaft installed in the sliding U-shaped groove, one end of the pin shaft movably penetrating the opening of the slide and the sliding U-shaped groove, the other end of the pin shaft contacting a transmission shaft, the transmission shaft being fixedly installed at the end of the sliding U-shaped groove, the other end of the transmission shaft deeply penetrating a fixed shaft sleeve, a push-pull spring being sleeved on the other end of the transmission shaft, and a push-pull shaft being connected to the end of the transmission shaft, the other end of the push-pull shaft being movably in and out of the opening at the end of the fixed shaft sleeve. Limiting holes are formed in the rack and the rack decorative plate, the rack decorative plate is fixed on the profile, the slide is fixed on the rack decorative plate of the driven fan, the sliding U-shaped groove, the pin shaft and the transmission shaft are assembled, the opening is formed in the profile on the side of the driven fan, the end surface of the fixed shaft sleeve is fixed in the opening, and the push-pull spring and the push-pull shaft are installed. When the fan lock is closed, the push-pull shaft is tightly pressed by the profile on the side of the driving fan, the end of the pin shaft protrudes into the limiting hole under the action of the push-pull spring. When the door is opened, the handle of the driving fan is rotated, the driving fan is opened, the push-pull shaft protrudes from the end of the fixed shaft sleeve under the action of the push-pull spring, the transmission shaft and the sliding U-shaped groove are moved, and the pin shaft is separated from the limiting hole. The rack of the driven fan is not limited, the handle of the driven fan is rotated, and the driven fan is opened. When the pin shaft is not separated from the limiting hole, the rack of the driven fan cannot be moved up and down, and the handle of the driven fan cannot be rotated.
2. A false opening prevention method for a micro-translation sliding door window according to claim 1, characterized in that, The slide is connected with connecting clutches on both sides.
3. The method for preventing erroneous opening of a micro-translation sliding door window according to claim 1, characterized in that, The anti-misoperation structure is made of 304 stainless steel.
4. The method for preventing erroneous opening of a micro-translation sliding door window according to claim 1, characterized in that, The other end of the pin shaft contacts a spring, and the other end of the spring contacts the transmission shaft.
Citation Information
Patent Citations
Mistaken opening and closing prevention device for micro-translation sliding door and window
CN218375842U