Micro-resistance moving door and mounting method
By introducing electromagnetic control components and adjustment mechanisms into the micro-resistance moving door, combined with the water droplet-like structure design and pipe shaft connection, the resistance and offset problems of the existing micro-resistance moving door in adjustment and connection are solved, and a more flexible and stable mobile door operation is achieved.
Patent Information
- Application Number
- CN202510414416.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-06-20
AI Technical Summary
When using the existing micro-resistance moving door, it is not convenient to adjust the micro-resistance. The traditional connecting structure has problems with large resistance and later deviation, which leads to the inability to adjust the rail.
The micro-resistance moving door and installation method are adopted, including a mobile door body structure, a first butt structure and a second butt structure. The lateral adjustment of the mobile door panel is achieved through electromagnetic control components and adjustment mechanisms, and the water droplet-like structure design and pipe shaft connection are adopted to reduce resistance.
It realizes flexible adjustment of the mobile door panel, reduces connection resistance, avoids late deviation problems, and ensures stable and efficient operation of the mobile door.
Smart Images

Figure CN120175185A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of micro-resistance moving doors, specifically to a micro-resistance moving door and an installation method thereof. Background Art
[0002] A moving door, also known as a movable partition door, a mobile partition door, or an orbital partition door, has the characteristics of easy installation, reusable, industrially producible, fireproof, and environmentally friendly. The moving door can isolate the inside and outside, playing a role in isolating space, thus facilitating the work of smoke baffle.
[0003] According to Chinese Patent Publication No. CN116607855B, a micro-resistance moving door is disclosed, including: a bottom plate, a door panel, a first guide wheel group, and a second guide wheel group; an inner groove is opened at the bottom of the door panel along the moving direction of the door panel. The first guide wheel group is arranged on the bottom plate. The first guide wheel group includes a plurality of first guide units arranged along the moving direction of the door panel. The first guide unit is located in the inner groove and is in rolling connection with one side wall of the inner groove. The second guide wheel group is arranged on the bottom plate. The second guide wheel group includes a plurality of second guide units arranged along the moving direction of the door panel. The second guide unit is located in the inner groove and is in rolling connection with the other side wall of the inner groove, having the advantages of low resistance and low noise.
[0004] Currently, for the existing micro-resistance moving doors and the above-mentioned case, during use, it is inconvenient to carry out the micro-resistance adjustment work. The traditional connection structure has a problem of large resistance, and at the same time, it is prone to later offset problems, resulting in the problem of inability to align the track. Therefore, improvements are made for the above problems. Summary of the Invention
[0005] In view of the problems in the prior art, the present invention provides a micro-resistance moving door and an installation method thereof.
[0006] The technical solution adopted by the present invention to solve its technical problems is: a micro-resistance moving door and an installation method, including a moving door body structure, a first docking structure, and a second docking structure. The second docking structure is connected to the moving door body structure, and the first docking structure is connected to the lower end of the moving door body structure. The first docking structure, the second docking structure, and the moving door body structure are limited in position, and the moving door panel inside the moving door body structure is horizontally adjusted through the first docking structure and the second docking structure; The moving door panel is designed with a water droplet-shaped structure, and both the upper and lower ends of the moving door panel are widened to reduce resistance; The first docking structure has the same structure as the second docking structure. The first docking structure and the second docking structure are symmetrically arranged. The electromagnetic control component is magnetically driven to connect with an adjusting mechanism, so that the adjusting mechanism slides and adjusts on the limiting circular shaft, and the adjusting mechanism and the limiting circular shaft are connected by means of a shaft rod.
[0007] Specifically, a first in-position detector and a second in-position detector are fixedly provided on the movable door body structure, and the first in-position detector and the second in-position detector are symmetrically arranged to perform in-position sensing on both sides of the movable door body structure to determine the position of the adjusting mechanism, and the movable door panel and the glass window can be moved by pushing, and the movable door panel and the glass window are slidably adjusted in the first limit plate frame, the first contact seat and the second contact seat to change their positions, and at this time, the first in-position detector and the second in-position detector detect the position of the movable door panel, and can control the linear motor seat to work, and the linear motor seat controls the coil seat to generate a changing magnetic field, so that the magnet is acted upon by magnetic force, and the position of the installation guide frame, the protective connecting frame and the upper movable plate is changed, and the movable plate is slidably adjusted on the limit circular shaft through the adapting circular groove, and a rotating matching wheel is rotatably arranged on the movable plate through the side shaft frame, and the rotating matching wheels on both sides are in contact with the first contact end frame and the second contact end frame, and can rotate on the first contact end frame and the second contact end frame, thereby cooperating with the supporting and protecting work of the adjusting mechanism.
[0008] Specifically, the movable door body structure includes a first limiting plate frame, a first contact seat is fixedly connected to the lower end of the first limiting plate frame, a side end of the first contact seat is telescopically connected to the movable door panel, and the upper and lower ends of the movable door panel are fixedly connected to the second limiting plate frame, a first electromagnetic adsorption block is fixedly provided on the first contact seat, and a second electromagnetic adsorption block is fixedly connected to the second contact seat, an upper end of the second contact seat is fixed to a side of the first limiting plate frame away from the first contact seat, and the first contact seat and the second contact seat are both adapted to the movable door panel, a glass window is fixedly provided on the movable door panel, and the movable door panel can be moved by setting the first docking structure and the second docking structure. The door body structure is limited, and the first docking structure and the second docking structure can drive the movement and adjustment of the moving door panel in the moving door body structure, and the coupling connection is carried out in the form of a pipe axis connection to reduce the connection resistance. At the same time, the middle position of the moving door panel is designed with a water drop structure to reduce the resistance. The moving door panel slides and adjusts on the first limiting plate frame through the second limiting plate frame. The first contact seat and the second contact seat are provided with a first electromagnetic adsorption block and a second electromagnetic adsorption block, which can perform the adsorption and limiting work of the glass window, and the first electromagnetic adsorption block and the second electromagnetic adsorption block are also controlled by the first controller and the second controller to produce a contact magnetic attraction effect.
[0009] Specifically, the first docking structure includes a movable adjustment component and an electromagnetic control component. The electromagnetic control component is fixedly installed at the lower end of the movable adjustment component. The electromagnetic control component includes a coil seat and a linear motor seat. The linear motor seat controls the coil seat to produce a magnetic field change, so that the adjustment mechanism moves on the limiting circular axis.
[0010] Specifically, the activity adjustment component includes a first card bracket, on which a first controller is installed. The first controller is electrically connected to a third electromagnetic adsorption block. The bottom of the side end of the first card bracket is fixed to a first contact end frame and a second contact end frame. The side ends of the first contact end frame and the second contact end frame are fixed to a second card bracket, and a fourth electromagnetic adsorption block is installed on the second card bracket. The second controller is electrically connected to the fourth electromagnetic adsorption block. A limiting round shaft is connected through the third electromagnetic adsorption block and the fourth electromagnetic adsorption block. The adjustment mechanism slides on the limiting round shaft. Through the structural settings of the first contact end frame and the second contact end frame, the second contact end frame, the first contact end frame are connected to the first card bracket and the second card bracket. An inclined rotation matching wheel is arranged at the lower end of the movable plate, and the rotation matching wheel can slide and adjust on the first contact end frame and the second contact end frame, so as to improve the connection stability. And a fourth electromagnetic adsorption block is arranged on the second card bracket, and a third electromagnetic adsorption block is arranged on the first card bracket, which can adsorb the adjustment mechanism, facilitating the purpose of point positioning.
[0011] Specifically, the adjustment mechanism includes a movable plate, on the lower end of which an adapted circular groove is opened. A side shaft frame is fixedly connected to the inclined position of the movable plate, and a rotation matching wheel is rotatably connected to the side shaft frame. The lower end of the movable plate is fixed to an installation guide frame, and a protective connection frame is fixedly connected to the lower end of the installation guide frame. Magnets are arranged on the installation guide frame and the protective connection frame. Through the structural settings of the first docking structure, it is convenient to carry out drive control work. The linear motor base can generate a changing magnetic field through the coil seat, causing the magnet to move and adjust. The magnet is fixed to the movable plate through the protective connection frame and the installation guide frame, enabling the movable plate to cooperate and operate for adjustment. And the center of the movable plate is connected to the limiting round shaft through the adapted circular groove. At this time, the movable plate can slide and adjust on the limiting round shaft, and the connection between the limiting round shaft and the movable plate is a tube shaft connection, reducing resistance and enabling faster movement adjustment work.
[0012] Specifically, the rotation matching wheels arranged on both sides are in rotational contact with the first contact end frame and the second contact end frame. The magnet is magnetically connected to the coil seat. Through the changing magnetic field of the coil seat, the movable plate slides on the limiting round shaft through the adapted circular groove. And the side shaft frame is magnetically attracted to the third electromagnetic adsorption block and the fourth electromagnetic adsorption block. The second controller can control the fourth electromagnetic adsorption block to generate a magnetic field to adsorb the adjustment mechanism. At the same time, the moving door panel also reaches the side end position of the second contact seat. The second controller can also generate a magnetic field in the second electromagnetic adsorption block to adsorb and connect the moving door panel. When reaching the left position, the first controller controls the third electromagnetic adsorption block to generate a magnetic field to adsorb the adjustment mechanism, and at the same time, the first electromagnetic adsorption block adsorbs and connects the moving door panel, so as to ensure that the positions of the moving door panel and the glass window reach the bottom position, thus completing the purpose of moving adjustment.
[0013] Specifically, the upper end of the movable plate is fixedly connected to the movable door panel. The movable door panel is slidably adjusted on the first limiting plate frames arranged on the upper and lower sides through the second limiting plate. The first contact end frame and the second contact end frame are arranged in an inclined structure to assist in supporting the rotating mating wheel.
[0014] Specifically, the upper end of the first clamping bracket is fixedly connected to the first contact seat, and the upper end of the second clamping bracket is fixedly arranged with the second contact seat. The first electromagnetic adsorption block and the second electromagnetic adsorption block are used for magnetic connection of the movable door panel.
[0015] The installation method of the micro-resistance movable door includes the following steps: S1. First, by pushing, the movable door panel and the glass window move. The movable door panel and the glass window are slidably adjusted within the first limiting plate frame, the first contact seat, and the second contact seat to change their positions. S2. Then, at this time, the first in-place detector and the second in-place detector detect the position of the movable door panel, and can control the linear motor base to work. The linear motor base controls the coil seat to generate a changing magnetic field, so that the magnet is affected by the magnetic force, changing the positions of the installation guide frame, the protective connecting frame, and the upper movable plate. The movable plate is slidably adjusted on the limiting circular shaft through the matching circular groove, and the rotating mating wheel is rotatably arranged on the movable plate through the side shaft frame. The two rotating mating wheels are in contact with the first contact end frame and the second contact end frame, and can rotate on the first contact end frame and the second contact end frame, so as to cooperate in the support and protection work of the adjustment mechanism. S3. When it is necessary to reach the right end position, the second controller can control the fourth electromagnetic adsorption block to generate a magnetic field to adsorb the adjustment mechanism. At the same time, the movable door panel also reaches the side end position of the second contact seat, and the second controller can also generate a magnetic field in the second electromagnetic adsorption block to perform the adsorption connection of the movable door panel. S4. When it is necessary to reach the left position, the first controller controls the third electromagnetic adsorption block to generate a magnetic field to adsorb the adjustment mechanism, and at the same time the first electromagnetic adsorption block performs the adsorption connection of the movable door panel, so that the positions of the movable door panel and the glass window are ensured to reach the bottom position, thus achieving the purpose of moving adjustment.
[0016] The beneficial effects of the present invention: 1. Through the arrangement of the first docking structure and the second docking structure, the present invention can limit the mobile door structure, and the first docking structure and the second docking structure can drive the movement adjustment of the moving door panel in the mobile door structure. The connection is made by means of a tube shaft connection to reduce the connection resistance. At the same time, the middle position of the moving door panel is designed in a water droplet structure to reduce resistance. The moving door panel slides and adjusts on the first limiting plate frame through the second limiting plate. The first contact seat and the second contact seat are provided with a first electromagnetic adsorption block and a second electromagnetic adsorption block, which can perform the adsorption and limiting work of the glass window. Moreover, the first electromagnetic adsorption block and the second electromagnetic adsorption block are also controlled by the first controller and the second controller to produce a contact magnetic adsorption effect.
[0017] 2. Through the structural arrangement of the first docking structure, the present invention facilitates the driving control work. The linear motor base can generate a changing magnetic field through the coil seat, enabling the magnet to move and adjust. The magnet is fixed to the movable plate through the protective connecting frame and the mounting guide frame, enabling the movable plate to cooperate and perform the operation adjustment. Moreover, the center of the movable plate is connected to the limiting circular shaft through the matching circular groove. At this time, the movable plate can slide and adjust on the limiting circular shaft, and the connection between the limiting circular shaft and the movable plate is a tube shaft connection to reduce resistance and perform the movement adjustment work faster.
[0018] 3. Through the structural arrangement of the first contact end frame and the second contact end frame, the second contact end frame, the first contact end frame are connected to the first clamping bracket and the second clamping bracket. An inclined rotation matching wheel is arranged at the lower end of the movable plate, and the rotation matching wheel can slide and adjust on the first contact end frame and the second contact end frame, thereby improving the connection stability. Moreover, a fourth electromagnetic adsorption block is arranged on the second clamping bracket, and a third electromagnetic adsorption block is arranged on the first clamping bracket, which can perform the adsorption of the adjustment mechanism and facilitate the purpose of positioning at a specific point. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below with reference to the drawings and embodiments.
[0020] Figure 1 It is a front - view three - dimensional structure schematic diagram of the main body in the present invention; Figure 2 It is a side - view three - dimensional structure schematic diagram of the main body in the present invention; Figure 3 It is a rear - view three - dimensional structure schematic diagram of the main body in the present invention; Figure 4 It is an exploded view of the main body in the present invention; Figure 5 It is a three - dimensional diagram of the mobile door structure in the present invention; Figure 6 It is an exploded view of the mobile door structure in the present invention; Figure 7It is a perspective view of the first docking structure in the present invention; Figure 8 It is an exploded view of the first docking structure in the present invention; Figure 9 It is a perspective view of the movable adjustment component in the present invention; Figure 10 It is an exploded view of the movable adjustment component in the present invention; Figure 11 It is an exploded view of the adjustment mechanism in the present invention.
[0021] In the figure: 1 - movable door body structure, 2 - first docking structure, 3 - second docking structure, 4 - first in-place detector, 5 - second in-place detector, 6 - first limit plate frame, 7 - first contact seat, 8 - movable door panel, 9 - second limit plate frame, 10 - glass window, 11 - first electromagnetic adsorption block, 12 - second contact seat, 13 - second electromagnetic adsorption block, 14 - movable adjustment component, 15 - electromagnetic control component, 16 - coil seat, 17 - linear motor seat, 18 - adjustment mechanism, 19 - third electromagnetic adsorption block, 20 - first card bracket, 21 - first controller, 22 - first contact end frame, 23 - second contact end frame, 24 - limit round shaft, 25 - second controller, 26 - second card bracket, 27 - fourth electromagnetic adsorption block, 28 - movable plate, 29 - side shaft frame, 30 - rotating mating wheel, 31 - installation guide frame, 32 - protective connecting frame, 33 - magnet, 34 - mating round groove. Detailed implementation manners
[0022] In order to enable those skilled in the art of the present technology to better understand the solution of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0023] The present invention will be further described below with reference to the accompanying drawings. Embodiment
[0024] As Figures 1-11 shown, the micro-resistance movable door and installation method of the present invention include a movable door body structure 1, a first docking structure 2, and a second docking structure 3. A second docking structure 3 is connected to the movable door body structure 1, and a first docking structure 2 is connected to the lower end of the movable door body structure 1. The first docking structure 2 and the second docking structure 3 are limitedly arranged with the movable door body structure 1, and the movable door panel 8 in the movable door body structure 1 is horizontally adjusted through the first docking structure 2 and the second docking structure 3; The movable door panel 8 adopts a water drop-shaped structure design, and the upper and lower ends of the movable door panel 8 are widened to reduce resistance. The movable door panel 8 and the glass window 10 are moved by pushing. The movable door panel 8 and the glass window 10 are slidably adjusted in the first limit plate frame 6, the first contact seat 7, and the second contact seat 12 to change their positions; The first docking structure 2 has the same structure as the second docking structure 3. The first docking structure 2 and the second docking structure 3 are symmetrically arranged. The electromagnetic control component 15 is magnetically driven and connected to the adjustment mechanism 18, so that the adjustment mechanism 18 can slide and adjust on the limiting circular shaft 24, and the adjustment mechanism 18 is connected to the limiting circular shaft 24 by means of a shaft.
[0025] A first in-place detector 4 and a second in-place detector 5 are fixedly provided on the movable door structure 1 . The first in-place detector 4 and the second in-place detector 5 are symmetrically arranged to perform in-place sensing on both sides of the movable door structure 1 to determine the position of the adjustment mechanism 18 .
[0026] The movable door structure 1 includes a first limiting plate frame 6, a first contact seat 7 is fixedly connected to the lower end of the first limiting plate frame 6, a side end of the first contact seat 7 is telescopically connected to the movable door panel 8, and the upper and lower ends of the movable door panel 8 are fixedly connected to the second limiting plate frame 9, a first electromagnetic adsorption block 11 is fixedly provided on the first contact seat 7, a second electromagnetic adsorption block 13 is fixedly connected to the second contact seat 12, the upper end of the second contact seat 12 is fixed to the side of the first limiting plate frame 6 away from the first contact seat 7, and the first contact seat 7 and the second contact seat 12 are both adapted to the movable door panel 8, a glass window 10 is fixedly provided on the movable door panel 8, and the movable door body can be moved by setting the first docking structure 2 and the second docking structure 3. The structure 1 is limited, and the first docking structure 2 and the second docking structure 3 can drive the movable door panel 8 in the movable door body structure 1 to move and adjust, and the coupling connection is carried out in the form of a pipe axis connection to reduce the connection resistance. At the same time, the middle position of the movable door panel 8 is designed with a water drop structure to reduce the resistance. The movable door panel 8 is slidably adjusted on the first limit plate frame 6 through the second limit plate frame 9. The first electromagnetic adsorption block 11 and the second electromagnetic adsorption block 13 are arranged on the first contact seat 7 and the second contact seat 12, which can perform the adsorption and limiting work of the glass window 10, and the first electromagnetic adsorption block 11 and the second electromagnetic adsorption block 13 are also controlled by the first controller 21 and the second controller 25 to produce a contact magnetic attraction effect.
[0027] The first docking structure 2 includes a movable adjustment component 14 and an electromagnetic control component 15. The electromagnetic control component 15 is fixedly installed at the lower end of the movable adjustment component 14. The electromagnetic control component 15 includes a coil seat 16 and a linear motor seat 17. The linear motor seat 17 controls the coil seat 16 to generate a magnetic field change, so that the adjustment mechanism 18 moves on the limit circular shaft 24. When it is necessary to reach the left position, the first controller 21 controls the third electromagnetic adsorption block 19 to generate a magnetic field to adsorb the adjustment mechanism 18. At the same time, the first electromagnetic adsorption block 11 performs an adsorption connection on the movable door panel 8, so that the positions of the movable door panel 8 and the glass window 10 are guaranteed to reach the bottom position, thus achieving the purpose of moving adjustment.
[0028] The movable adjustment component 14 includes a first card bracket 20. A first controller 21 is installed on the first card bracket 20. The first controller 21 is electrically connected to the third electromagnetic adsorption block 19. The bottom of the side end of the first card bracket 20 is fixed to the first contact end bracket 22 and the second contact end bracket 23. The side ends of the first contact end bracket 22 and the second contact end bracket 23 are fixed to the second card bracket 26. And a fourth electromagnetic adsorption block 27 is installed on the second card bracket 26. The second controller 25 is electrically connected to the fourth electromagnetic adsorption block 27. A limit circular shaft 24 penetrates through the third electromagnetic adsorption block 19 and the fourth electromagnetic adsorption block 27. The adjustment mechanism 18 slides on the limit circular shaft 24. Through the structural arrangement of the first contact end bracket 22 and the second contact end bracket 23, the second contact end bracket 23, the first contact end bracket 22 are connected to the first card bracket 20 and the second card bracket 26. An inclined rotation matching wheel 30 is arranged at the lower end of the movable plate 28. The rotation matching wheel 30 can slide and adjust on the first contact end bracket 22 and the second contact end bracket 23, so as to improve the connection stability. And a fourth electromagnetic adsorption block 27 is arranged on the second card bracket 26, and a third electromagnetic adsorption block 19 is arranged on the first card bracket 20, which can adsorb the adjustment mechanism 18, facilitating the purpose of reaching the point positioning.
[0029] The adjusting mechanism 18 includes a movable plate 28. An adapting circular groove 34 is formed at the lower end of the movable plate 28. A side shaft frame 29 is fixedly connected to the inclined position of the movable plate 28. A rotating mating wheel 30 is rotatably connected to the side shaft frame 29. The lower end of the movable plate 28 is fixed to an installation guide frame 31. A protective connecting frame 32 is fixedly connected to the lower end of the installation guide frame 31. Magnets 33 are provided on the installation guide frame 31 and the protective connecting frame 32. Through the structural arrangement of the first docking structure 2, it is convenient to carry out the driving control work. The linear motor base 17 can generate a changing magnetic field through the coil base 16, causing the magnet 33 to move and adjust. The magnet 33 is fixed to the movable plate 28 through the protective connecting frame 32 and the installation guide frame 31, enabling the movable plate 28 to cooperate for operation adjustment. Moreover, the center of the movable plate 28 is connected to the limiting circular shaft 24 through the adapting circular groove 34. At this time, the movable plate 28 can slide and adjust on the limiting circular shaft 24, and the connection between the limiting circular shaft 24 and the movable plate 28 is a tube shaft connection, reducing resistance and enabling faster movement adjustment work.
[0030] The rotating mating wheels 30 provided on both sides are in rotational contact with the first contact end frame 22 and the second contact end frame 23. The magnet 33 is magnetically connected to the coil base 16. Through the changing magnetic field of the coil base 16, the movable plate 28 slides on the limiting circular shaft 24 through the adapting circular groove 34. Moreover, the side shaft frame 29 is magnetically attracted to the third electromagnetic adsorption block 19 and the fourth electromagnetic adsorption block 27. The first in-place detector 4 and the second in-place detector 5 detect the position of the moving door panel 8, and can control the linear motor base 17 to work. The linear motor base 17 controls the coil base 16 to generate a changing magnetic field, causing the magnet 33 to be affected by the magnetic force and changing the positions of the installation guide frame 31, the protective connecting frame 32, and the upper movable plate 28. The movable plate 28 slides and adjusts on the limiting circular shaft 24 through the adapting circular groove 34. Moreover, the rotating mating wheels 30 are rotatably arranged on the movable plate 28 through the side shaft frame 29. The rotating mating wheels 30 on both sides are in contact with the first contact end frame 22 and the second contact end frame 23 and can rotate on the first contact end frame 22 and the second contact end frame 23, thereby cooperating for the support and protection work of the adjusting mechanism 18.
[0031] The upper end of the movable plate 28 is fixedly connected to the moving door panel 8. The moving door panel 8 slides and adjusts on the first limiting plate frames 6 provided on the upper and lower sides through the second limiting plate frame 9. The first contact end frame 22 and the second contact end frame 23 are arranged in an inclined structure to assist in supporting the rotating mating wheel 30.
[0032] The upper end of the first card bracket 20 is fixedly connected to the first contact seat 7, and the upper end of the second card bracket 26 is fixedly arranged with the second contact seat 12. Moreover, the first electromagnetic adsorption block 11 and the second electromagnetic adsorption block 13 are used for magnetic connection to move the door panel 8. When it is necessary to reach the right end position, the second controller 25 at this time can control the fourth electromagnetic adsorption block 27 to generate a magnetic field to adsorb the adjustment mechanism 18. At the same time, the moving door panel 8 also reaches the side end position of the second contact seat 12. The second controller 25 can also generate a magnetic field in the second electromagnetic adsorption block 13 to perform the adsorption connection of the moving door panel 8.
[0033] The working principle is as follows: During use, by pushing, the moving door panel 8 and the glass window 10 can move. The moving door panel 8 and the glass window 10 slide and adjust within the first limit plate frame 6, the first contact seat 7, and the second contact seat 12 to change their positions. At this time, the first in-place detector 4 and the second in-place detector 5 detect the position of the moving door panel 8 and can control the linear motor base 17 to work. The linear motor base 17 controls the coil seat 16 to generate a changing magnetic field, so that the magnet 33 is affected by the magnetic force, changing the positions of the mounting guide frame 31, the protective connecting frame 32, and the upper movable plate 28. The movable plate 28 slides and adjusts on the limit circular shaft 24 through the matching circular groove 34. Moreover, the movable plate 28 is rotatably provided with a rotating mating wheel 30 through the side shaft frame 29. The two rotating mating wheels 30 are in contact with the first contact end frame 22 and the second contact end frame 23 and can rotate on the first contact end frame 22 and the second contact end frame 23, thereby cooperating to perform the support and protection work of the adjustment mechanism 18. When reaching the right end position, the second controller 25 at this time can control the fourth electromagnetic adsorption block 27 to generate a magnetic field to adsorb the adjustment mechanism 18. At the same time, the moving door panel 8 also reaches the side end position of the second contact seat 12. The second controller 25 can also generate a magnetic field in the second electromagnetic adsorption block 13 to perform the adsorption connection of the moving door panel 8. When reaching the left side position, the first controller 21 controls the third electromagnetic adsorption block 19 to generate a magnetic field to adsorb the adjustment mechanism 18. At the same time, the first electromagnetic adsorption block 11 performs the adsorption connection of the moving door panel 8, so that the positions of the moving door panel 8 and the glass window 10 are ensured to reach the bottom position, thus achieving the purpose of moving adjustment and completing the work.
[0034] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. Micro-resistance moving door, characterized by: The invention comprises a movable door body structure (1), a first docking structure (2) and a second docking structure (3), wherein the movable door body structure (1) is connected to the second docking structure (3), the lower end of the movable door body structure (1) is connected to the first docking structure (2), the first docking structure (2), the second docking structure (3) and the movable door body structure (1) are arranged to limit positions, and a movable door panel (8) in the movable door body structure (1) is adjusted laterally by means of the first docking structure (2) and the second docking structure (3); The movable door panel (8) adopts a water drop-shaped structural design, and the upper and lower ends of the movable door panel (8) are widened to reduce resistance; The first docking structure (2) is identical in structure to the second docking structure (3); the first docking structure (2) and the second docking structure (3) are symmetrically arranged; the electromagnetic control component (15) is magnetically driven and connected to an adjustment mechanism (18), so that the adjustment mechanism (18) can be slidably adjusted on the limiting circular shaft (24); and the adjustment mechanism (18) and the limiting circular shaft (24) are connected by means of a shaft.
2. The micro-resistance movable door according to claim 1, characterized in that: A first in-position detector (4) and a second in-position detector (5) are fixedly provided on the movable door body structure (1). The first in-position detector (4) and the second in-position detector (5) are symmetrically arranged to perform in-position sensing on both sides of the movable door body structure (1) to determine the position of the adjustment mechanism (18).
3. The micro-resistance movable door according to claim 2, characterized in that: The movable door structure (1) comprises a first limiting plate frame (6), the lower end of the first limiting plate frame (6) is fixedly connected to a first contact seat (7), the side end of the first contact seat (7) is telescopically connected to the movable door panel (8), and the upper and lower ends of the movable door panel (8) are fixedly connected to a second limiting plate frame (9), the first contact seat (7) is fixedly provided with a first electromagnetic adsorption block (11), the second contact seat (12) is fixedly connected to a second electromagnetic adsorption block (13), the upper end of the second contact seat (12) is fixed to a side of the first limiting plate frame (6) away from the first contact seat (7), and the first contact seat (7) and the second contact seat (12) are both adapted to be arranged with the movable door panel (8), and a glass window (10) is fixedly provided on the movable door panel (8).
4. The micro-resistance movable door according to claim 3, characterized in that: The first docking structure (2) comprises a movable adjustment component (14) and an electromagnetic control component (15), wherein the electromagnetic control component (15) is fixedly mounted at the lower end of the movable adjustment component (14), and the electromagnetic control component (15) comprises a coil seat (16) and a linear motor seat (17), wherein the linear motor seat (17) controls the coil seat (16) to generate a magnetic field change, thereby causing the adjustment mechanism (18) to move on the limiting circular shaft (24).
5. The micro-resistance movable door according to claim 4, characterized in that: The movable adjustment component (14) comprises a first card bracket (20), a first controller (21) is installed on the first card bracket (20), the first controller (21) is electrically connected to the third electromagnetic adsorption block (19), the bottom of the side end of the first card bracket (20) is fixed to the first contact end frame (22) and the second contact end frame (23), the side ends of the first contact end frame (22) and the second contact end frame (23) are fixed to the second card bracket (26), and a fourth electromagnetic adsorption block (27) is installed on the second card bracket (26), the second controller (25) is electrically connected to the fourth electromagnetic adsorption block (27), the third electromagnetic adsorption block (19) and the fourth electromagnetic adsorption block (27) are connected through a limited circular shaft (24), and the adjustment mechanism (18) slides on the limited circular shaft (24).
6. The micro-resistance movable door according to claim 5, characterized in that: The adjustment mechanism (18) comprises a movable plate (28), a matching circular groove (34) is formed at the lower end of the movable plate (28), a side shaft frame (29) is fixedly connected to the movable plate (28) at an inclined position, a rotating matching wheel (30) is rotatably connected to the side shaft frame (29), the lower end of the movable plate (28) is fixed to a mounting guide frame (31), the lower end of the mounting guide frame (31) is fixedly connected to a protective connecting frame (32), and magnets (33) are provided on the mounting guide frame (31) and the protective connecting frame (32).
7. The micro-resistance movable door according to claim 6, characterized in that: The rotating matching wheels (30) arranged on both sides are in rotational contact with the first contact end frame (22) and the second contact end frame (23), and the magnet (33) is magnetically connected to the coil seat (16). The magnetic field is changed by the coil seat (16), so that the movable plate (28) slides on the limit circular shaft (24) through the matching circular groove (34), and the side shaft frame (29) is magnetically connected to the third electromagnetic adsorption block (19) and the fourth electromagnetic adsorption block (27).
8. The micro-resistance movable door according to claim 7, characterized in that: The upper end of the movable plate (28) is fixedly connected to the movable door panel (8), and the movable door panel (8) is slidably adjusted on the first limit plate frame (6) arranged on the upper and lower sides through the second limit plate frame (9), and the first contact end frame (22) and the second contact end frame (23) are arranged in an inclined structure to assist in supporting the rotating matching wheel (30).
9. The micro-resistance movable door according to claim 8, characterized in that: The upper end of the first card bracket (20) is fixedly connected to the first contact seat (7), the upper end of the second card bracket (26) is fixedly arranged to the second contact seat (12), and the first electromagnetic adsorption block (11) and the second electromagnetic adsorption block (13) are used for magnetic connection of the movable door panel (8).
10. A method for installing a micro-resistance moving door, using the micro-resistance moving door according to claim 9, characterized in that: The following steps are involved: S1. First, the movable door panel (8) and the glass window (10) are moved by pushing, and the movable door panel (8) and the glass window (10) are slidably adjusted within the first limit plate frame (6), the first contact seat (7), and the second contact seat (12) to change their positions; S2, then, the first in-position detector (4) and the second in-position detector (5) detect the position of the movable door panel (8), and can control the linear motor seat (17) to work. The linear motor seat (17) controls the coil seat (16) to generate a changing magnetic field, so that the magnet (33) is subjected to the magnetic force, and the positions of the installation guide frame (31), the protective connecting frame (32) and the upper movable plate (28) are changed. The movable plate (28) is slidably adjusted on the limit circular shaft (24) through the adapting circular groove (34), and a rotating matching wheel (30) is rotatably provided on the movable plate (28) through the side shaft frame (29). The rotating matching wheels (30) on both sides are in contact with the first contact end frame (22) and the second contact end frame (23), and can rotate on the first contact end frame (22) and the second contact end frame (23), thereby cooperating with the support and protection work of the adjustment mechanism (18); S3, when it is necessary to reach the right end position, the second controller (25) can control the fourth electromagnetic adsorption block (27) to generate a magnetic field to adsorb the adjustment mechanism (18), and at the same time, the movable door panel (8) also reaches the side end position of the second contact seat (12), and the second controller (25) can also generate a magnetic field in the second electromagnetic adsorption block (13) to adsorb and connect the movable door panel (8); S4. When it is necessary to reach the left position, the first controller (21) controls the third electromagnetic adsorption block (19) to generate a magnetic field to adsorb the adjustment mechanism (18), and at the same time, the first electromagnetic adsorption block (11) performs adsorption connection with the movable door panel (8), so that the position of the movable door panel (8) and the glass window (10) is guaranteed to reach the bottom position, thereby achieving the purpose of movement and adjustment.