A panoramic sliding door window

The automatic opening and closing of the sliding door is achieved through a sensor-controlled drive device and gear system, which solves the problem of manual operation required in the existing technology and provides a convenient user experience and flexible opening modes.

CN117588139BActive Publication Date: 2025-11-18JIANGSU DAYANG DOOR & WINDOW CO LTD
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Patent Information

Application Number
CN202311544375.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-17
Publication Date
2025-11-18
Estimated Expiration
2043-11-17

AI Technical Summary

Technical Problem

Existing sliding doors require manual opening or closing, which is especially inconvenient when moving objects.

Method used

The sliding door is automatically opened and closed by a sensor-controlled drive unit that drives a rack and pinion system. The opening mode can be adjusted by an adjustment component.

Benefits of technology

It enables the sliding door to open automatically when a person approaches, facilitating the quick passage of items, and the opening and closing modes can be adjusted according to the scene.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a panoramic sliding door and window, belonging to the technical field of sliding doors, which comprises a mounting shell installed on the top wall of a door opening, a first door leaf and a second door leaf slidingly connected to the mounting shell, the first door leaf and the second door leaf overlapping each other in an open state, a first rack slidingly connected in the mounting shell, the first rack being connected with the first door leaf, a moving gear rotatingly connected to the second door leaf, the moving gear being engaged with the first rack, a second rack fixedly connected in the mounting shell, the second rack being engaged with the moving gear, the moving gear being located between the first rack and the second rack, a driving device arranged in the mounting shell and used for driving the first rack to move along the length direction of the door opening, and an inductor mounted in the mounting shell. The application has the effect that the sliding door can be automatically opened when a person passes by.
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Description

Technical Field

[0001] This application relates to the field of sliding door technology, and in particular to a panoramic sliding door window. Background Technology

[0002] As residential construction becomes increasingly industrialized, people are placing higher demands on the quality of their living spaces. Doors and windows, as openings in a building, are not only the "eyes" of the structure but also have a significant impact on users' health, comfort, and daily life. Judging from the development trends and current state of the door and window market, these products will evolve towards serialization, diversification, high-end products, automation, and human-centered design, with a growing emphasis on quality and personalization.

[0003] Regarding the aforementioned technologies, the opening or closing of indoor sliding doors typically requires manual pushing and pulling. When someone is carrying an object through, they need to put the object down before opening the sliding door, which is inconvenient. Summary of the Invention

[0004] In order to enable the sliding door to open automatically when a person passes by, this application provides a panoramic sliding door and window.

[0005] The panoramic sliding door and window provided in this application adopts the following technical solution:

[0006] A panoramic sliding door / window includes a mounting shell installed on the top wall inside a doorway. A first door leaf and a second door leaf are slidably connected to the mounting shell, and the first and second door leaves overlap when open. A first rack is slidably connected inside the mounting shell and connected to the first door leaf. A movable gear is rotatably connected to the second door leaf and meshes with the first rack. A second rack is fixedly connected inside the mounting shell and meshes with the movable gear, with the movable gear located between the first and second racks.

[0007] When in the open state, the first rack and the second rack are offset from each other, and the ends of the first rack and the second rack that are close to each other simultaneously mesh with the moving gear. The mounting housing is provided with a drive device for driving the first rack to move along the length of the doorway. The mounting housing is also provided with a sensor. When the sensor detects a person approaching the first door or the second door, the sensor sends a signal to the drive device and activates the drive device.

[0008] By adopting the above technical solution, when a person approaches the first door or window or the second door or window, the sensor detects and controls the drive device to start. The drive device drives the first rack to move, and the first rack drives the first door leaf to move. At the same time, the movement of the first rack drives the moving gear to rotate, and the moving gear rolls on the second rack, thereby realizing that the moving gear drives the second door leaf to move. Thus, when a person approaches, the first and second doors can open automatically, making it convenient for people to carry items and pass through quickly.

[0009] Optionally, the drive device includes a motor, which is installed inside the mounting housing. The motor is connected to a first rotating shaft, and the first rotating shaft is coaxially fixedly connected to a first connecting rod. The first connecting rod is hinged to a second connecting rod, and the second connecting rod is connected to the first rack. The sensor controls the motor to start.

[0010] By adopting the above technical solution, the motor drives the first rotating shaft to rotate, the first rotating shaft drives the first connecting rod to swing, the first connecting rod drives the second connecting rod to swing, thereby realizing that the second connecting rod pushes the first rack to move.

[0011] Optionally, the motor is connected to a second rotating shaft, on which a first driving gear and a second driving gear are coaxially connected, and on which a driven gear is coaxially connected, and both the first driving gear and the second driving gear can mesh with the driven gear. The mounting housing is provided with an adjustment component for adjusting the meshing of the first driving gear with the driven gear or the meshing of the second driving gear with the driven gear.

[0012] The sensor controls the drive shaft of the motor to rotate by a set angle. Whenever a person passes by, the motor starts once and its shaft rotates by the set angle once.

[0013] When the first driving gear meshes with the driven gear, the first door leaf performs an opening or closing action once each time the motor is started.

[0014] When the second driving gear meshes with the driven gear, the second door leaf will open and close once each time the motor is started.

[0015] By adopting the above technical solution, when the adjustment component adjusts the engagement of the first driving gear and the driven gear, whenever a person approaches the first door leaf or the second door leaf, the motor starts once and drives the second rotating shaft to rotate by a set angle. The second rotating shaft drives the first driving gear to rotate, the first driving gear drives the driven gear to rotate, and the driven gear drives the first rotating shaft to rotate. Thus, when a person passes through the doorway, the first door leaf drives the second door leaf to open the doorway and keeps it open. When the person returns, the motor starts again, causing the first door leaf to drive the second door leaf to close the doorway.

[0016] When the adjustment component adjusts the second drive gear to mesh with the driven gear, whenever a person approaches the first door leaf or the second door leaf, the motor starts once and drives the second rotating shaft to rotate by a set angle. The second rotating shaft drives the second drive gear to rotate, the second drive gear drives the driven gear to rotate, and the driven gear drives the first rotating shaft to rotate, thereby realizing that when a person passes through the doorway, the first door leaf drives the second door leaf to open and then closes automatically.

[0017] Users can adjust the opening requirements of the first and second doors by adjusting the components according to the usage scenario and the number of people entering and exiting.

[0018] Optionally, the teeth of the first driving gear are configured to occupy 1 / 4 of the entire circumference of the first driving gear, and the remaining circumference of the first driving gear is offset from the driven gear. The teeth of the second driving gear are configured to occupy 1 / 2 of the entire circumference of the second driving gear, and the remaining circumference of the second driving gear is offset from the driven gear. The sensor controls the drive shaft of the motor to rotate 360 ​​degrees each time.

[0019] By adopting the above technical solution, when the first driving wheel meshes with the driven gear, whenever a person approaches the doorway, the sensor sends a signal to make the drive shaft of the motor rotate 360 ​​degrees. The first driving gear drives the driven gear to rotate 180 degrees each time, thereby making the first rotating shaft rotate 180 degrees each time. The first rotating shaft drives the first connecting rod to cooperate with the second connecting rod to make the first door leaf and the second door leaf open or close the doorway.

[0020] When the second driving gear meshes with the driven gear, whenever a person approaches the doorway, the sensor sends a signal to make the motor's drive shaft rotate 360 ​​degrees. Each time, the second driving gear drives the driven gear to rotate 360 ​​degrees, which in turn causes the first rotating shaft to rotate 360 ​​degrees each time. The first rotating shaft drives the first connecting rod to cooperate with the second connecting rod to make the first door leaf and the second door leaf open and then close the doorway.

[0021] Optionally, the adjusting assembly includes a movable sleeve, which is keyed to the drive shaft of the motor. The first drive gear and the second drive gear are both coaxially fixed on the movable sleeve. The movable sleeve is rotatably connected to a connecting plate, and the connecting plate is connected to a pull rod.

[0022] By adopting the above technical solution, the user pulls the lever, which moves the connecting plate. The connecting plate then moves the movable sleeve, which in turn moves the first drive gear and the second drive wheel along the drive shaft of the motor, thereby adjusting the opening mode of the first and second door panels.

[0023] Optionally, the mounting housing has a placement groove, one end of the pull rod extends into the placement groove, and the end of the pull rod located in the placement groove is connected to a handle, which is adapted to the placement groove.

[0024] By adopting the above technical solution, when it is necessary to adjust the opening mode, the handle can be flipped out of the placement slot and then pulled to adjust the opening mode of the first and second doors.

[0025] Optionally, the second link is connected to an adjustment component that allows it to swing and move the first rack a greater distance.

[0026] Optionally, the adjustment assembly includes an adjustment rack connected to the second connecting rod. A first adjustment gear and a second adjustment gear are rotatably connected inside the mounting housing. The first adjustment gear meshes with the adjustment rack, and the second adjustment gear meshes with the first adjustment gear. The inner diameter of the first adjustment gear is larger than the inner diameter of the second adjustment gear. Two adjustment discs are rotatably connected inside the mounting housing. One adjustment disc is coaxially fixed with the second adjustment gear. A traction rope is tightly wound around both adjustment discs. The first rack is connected and fixed to the traction rope.

[0027] By adopting the above technical solution, the second linkage pushes the adjusting rack to move, the adjusting rack drives the first adjusting gear to rotate, the first adjusting gear drives the second adjusting gear to rotate, the second adjusting gear drives the adjusting wheel to rotate, and the adjusting wheel drives the traction rope to move, thus moving the first rack. Since the inner diameter of the first adjusting gear is larger than the inner diameter of the second adjusting gear, the adjusting wheel can drive the traction rope to move a longer distance. Compared with the second linkage directly pushing the first rack to move, the traction rope can drive the first rack to move a longer distance. Therefore, when producing first and second door panels of different sizes, it is not necessary to significantly adjust the lengths of the first and second linkages, thereby reducing the space occupied by the mounting shell.

[0028] Optionally, the mounting housing is provided with a first slide rod and a second slide rod, the first slide rod is located parallel to the second slide rod and is located above the second slide rod, the first door leaf is connected to a first sleeve plate, the first sleeve plate is fitted on the first slide rod, the first rack is set on the first sleeve plate, the second door leaf is connected to a second sleeve plate, the second sleeve plate is fitted on the second slide rod, and the moving gear is rotatably connected to the second sleeve plate.

[0029] By adopting the above technical solution, the first sliding rod, in conjunction with the first connecting plate, enables the first door leaf to move smoothly, and the second sliding rod, in conjunction with the second connecting plate, enables the second door leaf to move smoothly.

[0030] Optionally, a first slide rail and a second slide rail are installed at the bottom of the door opening, with the bottom of the first door leaf located inside the first slide rail and the bottom of the second door leaf located inside the second slide rail.

[0031] By adopting the above technical solution, the first slide rail reduces the shaking of the bottom of the first door leaf when it moves, and the second slide rail reduces the shaking of the bottom of the second door leaf when it moves.

[0032] In summary, this application includes at least one of the following beneficial technical effects:

[0033] 1. When a person approaches the first door or window or the second door or window, the sensor detects and controls the drive device to start. The drive device drives the first rack to move, and the first rack drives the first door leaf to move. At the same time, the movement of the first rack drives the moving gear to rotate, and the moving gear rolls on the second rack, thereby enabling the moving gear to drive the second door leaf to move. Thus, when a person approaches, the first and second doors can open automatically, making it convenient for people to carry items and pass through quickly.

[0034] 2. When the adjusting component adjusts the first driving gear to mesh with the driven gear, when a person passes through the doorway, the first door leaf drives the second door leaf to open the doorway and keep it open. When returning, the motor starts again, causing the first door leaf to drive the second door leaf to close the doorway.

[0035] When the adjustment component adjusts the engagement of the second driving gear and the driven gear, the first door leaf drives the second door leaf to open and then close automatically when a person passes through the doorway. This allows for the adjustment of the operating modes of the first and second door leaves to adapt to different usage scenarios. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0037] Figure 2 This is a schematic diagram illustrating the structure of the adjustment component in an embodiment of this application.

[0038] Figure 3 yes Figure 2 An enlarged schematic diagram of part A in the middle.

[0039] Figure 4 This is a schematic diagram illustrating the structure of the movable sleeve in an embodiment of this application.

[0040] Explanation of reference numerals in the attached drawings: 1. Mounting housing; 11. First slide rod; 12. Second slide rod; 13. First connecting plate; 14. Second connecting plate; 15. First rack; 16. Moving gear; 17. Second rack; 18. First slide rail; 19. Second slide rail; 110. Placement slot; 2. First door leaf; 3. Second door leaf; 4. Drive device; 41. Motor; 42. Second rotating shaft; 43. First rotating shaft; 44. Driven gear; 45. First connecting rod; 46. Second connecting rod; 5. Sensor; 6. Control module; 7. Adjustment assembly; 71. Movable sleeve; 72. First driving gear; 73. Second driving gear; 74. Connecting plate; 75. Pull rod; 76. Handle; 8. Adjustment assembly; 81. Adjusting rack; 82. First adjusting gear; 83. Second adjusting gear; 84. Adjusting wheel; 85. Traction rope. Detailed Implementation

[0041] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.

[0042] This application discloses a panoramic sliding door and window.

[0043] like Figure 1 and Figure 2 The panoramic sliding door and window includes a mounting shell 1, which is fixed to the inner top wall of the door opening with expansion bolts. A first slide rod 11 and a second slide rod 12 are fixed inside the mounting shell 1 along its length. The first slide rod 11 and the second slide rod 12 are parallel to each other, and the first slide rod 11 is located above the second slide rod 12. A first connecting plate 13 and a second connecting plate 14 are provided inside the mounting shell 1. The first connecting plate 13 is fitted onto the first slide rod 11, and the second connecting plate 14 is fitted onto the second slide rod 12. The first connecting plate 13 is connected to the first door leaf 2, and the second connecting plate 14 is connected to the second door leaf 3. A first rack 15 is fixed on the side of the first connecting plate 13 facing the second door leaf 3, and a moving gear 16 is fixed on the side of the second connecting plate 14 facing away from the first door leaf 2. The moving gear 16 is located on the closing side of the second connecting plate 14 near the door opening.

[0044] A second rack 17 is fixed inside the mounting housing 1. The second rack 17 is located below the first rack 15. A movable gear 16 is located between the first rack 15 and the second rack 17. The movable gear 16 meshes with both the first rack 15 and the second rack 17.

[0045] In the open state, the first rack 15 and the second rack 17 are offset from each other, and the ends of the first rack 15 and the second rack 17 that are close to each other simultaneously mesh with the moving gear 16. At this time, the second rack 17 is closer to the closed side of the door opening than the first rack 15, and the first door leaf 2 and the second door leaf 3 overlap.

[0046] The mounting housing 1 contains a drive device 4 for moving the first rack 15 along the length of the doorway. A sensor 5 is also installed inside the mounting housing 1, and a control module 6 is located in the room. The sensor 5 sends a signal to the control module 6, which then controls the drive device 4 to start.

[0047] A first slide rail 18 and a second slide rail 19 are installed at the bottom of the doorway along its length. The bottom of the first door leaf 2 is located inside the first slide rail 18 and is adapted to the first slide rail 18. The bottom of the second door leaf 3 is located inside the second slide rail 19 and is adapted to the second slide rail 19.

[0048] When a person approaches the first door panel 2 or the second door panel 3, the sensor 5 detects the signal and sends a signal to the control module 6. The control module 6 then activates the drive device 4, which in turn moves the first rack 15, which in turn moves the first door panel 2. Simultaneously, the movement of the first rack 15 causes the moving gear 16 to rotate, which in turn rolls on the second rack 17. This allows the moving gear 16 to move the second door panel 3, enabling the first door panel 2 and the second door panel 3 to open automatically when a person approaches, facilitating the quick passage of people carrying items.

[0049] like Figure 2 , Figure 3 and Figure 4 The drive device 4 includes a motor 41. Each time the sensor 5 sends a signal, the control module 6 controls the drive shaft of the motor 41 to rotate 360 ​​degrees. The motor 41 is connected to a second rotating shaft 42. An adjustment component 7 is provided on the second rotating shaft 42. The adjustment component 7 includes a movable sleeve 71. The movable sleeve 71 is sleeved on the drive shaft of the motor 41 and keyed to the drive shaft of the motor 41. A first drive gear 72 and a second drive gear 73 are coaxially fixed on the movable sleeve 71.

[0050] The first driving gear 72 and the second driving gear 73 have the same inner diameter. The teeth of the first driving gear 72 occupy 1 / 4 of the circumference of the first driving gear 72, and the remaining part of the circumference of the first driving gear 72 is a smooth arc surface. The teeth of the second driving gear 73 occupy 1 / 2 of the circumference of the second driving gear 73, and the remaining part of the circumference of the second driving gear 73 is a smooth arc surface.

[0051] like Figure 1 , Figure 3 and Figure 4 The movable sleeve 71 is rotatably connected to a connecting plate 74, which is perpendicular to the axis of the movable sleeve 71. The connecting plate 74 is connected to a pull rod 75, which is parallel to the movable sleeve 71. The outer surface of the mounting shell 1 is provided with a placement groove 110. The end of the pull rod 75 away from the connecting plate 74 extends into the placement groove 110. The end of the pull rod 75 away from the connecting plate 74 is hinged to a handle 76, which is adapted to the placement groove 110 and located within the placement groove 110.

[0052] like Figure 2 and Figure 3 A first rotating shaft 43 is rotatably connected inside the mounting housing 1. The first rotating shaft 43 is located above the second rotating shaft 42. A driven gear 44 is coaxially fixed to the first rotating shaft 43. The driven gear 44 can mesh with either the first driving gear 72 or the second driving gear 73. The inner diameter of the driven gear 44 is smaller than the inner diameter of the first driving gear 72 and the second driving gear 73. A first connecting rod 45 is coaxially fixed to the end of the first rotating shaft 43 away from the motor 41. A second connecting rod 46 is hinged to the end of the first connecting rod 45 away from the first rotating shaft 43. The second connecting rod 46 is connected to an adjusting assembly 8.

[0053] The adjustment assembly 8 includes an adjustment rack 81, a second connecting rod 46 connected to the adjustment rack 81, and a first adjustment gear 82 and a second adjustment gear 83 rotatably connected inside the mounting housing 1. The inner diameter of the first adjustment gear 82 is larger than the inner diameter of the second adjustment gear 83. The first adjustment gear 82 meshes with the adjustment rack 81, and the second adjustment gear 83 meshes with the first adjustment gear 82. The first adjustment gear 82 is located between the adjustment rack 81 and the second adjustment gear 83.

[0054] Inside the mounting housing 1, there are two rotatable adjustment discs 84. The adjustment discs 84 are tightly wound with a traction rope 85. One of the adjustment discs 84 is coaxially fixed with the second adjustment gear 83, and the traction rope 85 is fixed to one end of the first rack 15.

[0055] This panoramic sliding door can achieve two different operating modes;

[0056] The first mode: Pulling the lever 75 causes the movable sleeve 71 to move and controls the first driving gear 72 to mesh with the driven gear 44. When a person approaches the first door leaf 2, the sensor 5 senses the approach and sends a signal to the control module 6. The control module 6 controls the motor 41 to start, and the drive shaft of the motor 41 rotates 360 degrees, thereby causing the movable sleeve 71 to drive the first driving gear 72 to rotate 360 ​​degrees. The first driving gear 72 drives the driven gear 44 to rotate 180 degrees, and the driven gear 44 drives the first rotating shaft 43 to rotate 180 degrees. The first rotating shaft 43 drives the first connecting rod 45 to swing, and the first connecting rod 45 drives the second connecting rod 46 to swing. The second connecting rod 46 drives the adjusting rack 81 to move, and the adjusting rack 81 drives the first adjusting gear 82 and the second adjusting gear 83 to rotate in sequence, thereby realizing the rotation of the adjusting wheel 84, which drives the traction rope 85 to move. The traction rope 85 drives the first rack 15 to move, thus realizing the opening of the first door leaf 2 and the second door leaf 3.

[0057] When a person walks back and approaches the second door 3, the sensor 5 detects the approach and sends a signal to the control module 6 again. The control module 6 then controls the motor 41 to start again. The drive shaft of the motor 41 rotates 360 degrees again. The movable sleeve 71 drives the first drive gear 72 to rotate. The first drive gear 72 drives the driven gear 44 to rotate. The driven gear 44 drives the first rotating shaft 43 to rotate 180 degrees. The first rotating shaft 43 drives the first connecting rod 45 to swing. The first connecting rod 45 drives the second connecting rod 46 to swing. The second connecting rod 46 drives the adjusting rack 81 to move in the opposite direction, thereby closing the first door 2 and the second door 3.

[0058] The second mode: Pulling the lever 75 causes the movable sleeve 71 to move and controls the second drive gear 73 to mesh with the driven gear 44. When a person approaches the first door leaf 2, the sensor 5 senses the approach and sends a signal to the control module 6. The control module 6 controls the motor 41 to start, and the drive shaft of the motor 41 rotates 360 degrees, thereby causing the movable sleeve 71 to drive the second drive gear 73 to rotate 360 ​​degrees. The second drive gear 73 drives the driven gear 44 to rotate 360 ​​degrees, and the driven gear 44 drives the first rotating shaft 43 to rotate 360 ​​degrees. The first rotating shaft 43 drives the first connecting rod 45 to swing, and the first connecting rod 45 drives the second connecting rod 46 to swing. The second connecting rod 46 drives the adjusting rack 81 to move and then reset. The adjusting rack 81 drives the first adjusting gear 82 and the second adjusting gear 83 to rotate in sequence. The adjusting wheel 84 rotates and drives the traction rope 85 to move. The traction rope 85 drives the first rack 15 to move forward and then reset, realizing that the first door leaf 2 and the second door leaf 3 can be opened and then closed directly.

[0059] The difference between the first and second models is:

[0060] In the first mode, sensor 5 needs to sense twice to open and close the first door 2 and the second door 3;

[0061] In the second mode, sensor 5 only needs to sense once to open and close the first door 2 and the second door 3.

[0062] Users can switch between the two modes by pulling lever 75, depending on the usage scenario.

[0063] The implementation principle of this application embodiment is as follows: When a person approaches the first door leaf 2 or the second door leaf 3, the sensor 5 senses and controls the drive device 4 to start. The drive device 4 drives the first rack 15 to move, and the first rack 15 drives the first door leaf 2 to move. At the same time, the movement of the first rack 15 drives the moving gear 16 to rotate, and the moving gear 16 rolls on the second rack 17, thereby realizing that the moving gear 16 drives the second door leaf 3 to move. Thus, when a person approaches, the first door leaf 2 and the second door leaf 3 can open automatically, making it convenient for people to carry items and pass through quickly.

[0064] When the adjusting component 7 adjusts the first driving gear 72 to mesh with the driven gear 44, when a person passes through the doorway, the first door leaf 2 drives the second door leaf 3 to open the doorway and keep it open. When returning, the motor 41 starts again, causing the first door leaf 2 to drive the second door leaf 3 to close the doorway.

[0065] When the adjusting component 7 adjusts the second driving gear 73 to mesh with the driven gear 44, the first door leaf 2 drives the second door leaf 3 to open and then close automatically when a person passes through the doorway. This allows for the adjustment of the operating modes of the first door leaf 2 and the second door leaf 3 to adapt to different usage scenarios.

[0066] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A panoramic sliding door and window, characterized in that: The device includes a mounting shell (1) which is installed on the top wall inside the doorway. The mounting shell (1) is slidably connected to a first door leaf (2) and a second door leaf (3). The first door leaf (2) and the second door leaf (3) overlap each other when they are open. A first rack (15) is slidably connected inside the mounting shell (1). The first rack (15) is connected to the first door leaf (2). The second door leaf (3) is rotatably connected to a moving gear (16). The moving gear (16) meshes with the first rack (15). A second rack (17) is fixedly connected inside the mounting shell (1). The second rack (17) meshes with the moving gear (16). The moving gear (16) is located between the first rack (15) and the second rack (17). When in the open state, the first rack (15) and the second rack (17) are staggered, and the ends of the first rack (15) and the second rack (17) that are close to each other simultaneously mesh with the moving gear (16). The mounting housing (1) is provided with a drive device (4) for driving the first rack (15) to move along the length of the door opening. The mounting housing (1) is also provided with a sensor (5). When the sensor (5) detects that a person is approaching the first door leaf (2) or the second door leaf (3), the sensor (5) sends a signal to the drive device (4) and activates the drive device (4). The drive device (4) includes a motor (41), which is installed inside the mounting housing (1). The motor (41) is connected to a first rotating shaft (43), which is coaxially fixedly connected to a first connecting rod (45). The first connecting rod (45) is hinged to a second connecting rod (46), which is connected to the first rack (15). The sensor (5) controls the motor (41) to start. The motor (41) is connected to a second rotating shaft (42), on which a first driving gear (72) and a second driving gear (73) are coaxially connected. On the first rotating shaft (43), a driven gear (44) is coaxially connected. Both the first driving gear (72) and the second driving gear (73) can mesh with the driven gear (44). The mounting housing (1) is provided with an adjustment component (7) for adjusting the meshing of the first driving gear (72) with the driven gear (44) or the meshing of the second driving gear (73) with the driven gear (44). The sensor (5) controls the drive shaft of the motor (41) to rotate by a set angle. Whenever a person passes by, the motor (41) starts once and its drive shaft rotates by a set angle once. When the first driving gear (72) meshes with the driven gear (44), the first door leaf (2) performs an opening or closing action once each time the motor (41) is started; When the second driving gear (73) meshes with the driven gear (44), the second door (3) performs an opening and closing action once each time the motor (41) is started; The teeth of the first driving gear (72) are configured to occupy 1 / 4 of the entire circumference of the first driving gear (72), and the remaining circumference of the first driving gear (72) is offset from the driven gear (44). The teeth of the second driving gear (73) are configured to occupy 1 / 2 of the entire circumference of the second driving gear (73), and the remaining circumference of the second driving gear (73) is offset from the driven gear (44). The sensor (5) controls the drive shaft of the motor (41) to rotate 360 ​​degrees each time.

2. The panoramic sliding door and window according to claim 1, characterized in that: The adjustment assembly (7) includes a movable sleeve (71), which is keyed to the drive shaft of the motor (41). The first drive gear (72) and the second drive gear (73) are coaxially fixed on the movable sleeve (71). The movable sleeve (71) is rotatably connected to a connecting plate (74), and the connecting plate (74) is connected to a pull rod (75).

3. The panoramic sliding door and window according to claim 2, characterized in that: The mounting housing (1) has a placement groove (110) and one end of the pull rod (75) extends into the placement groove (110). The end of the pull rod (75) located in the placement groove (110) is connected to a handle (76) and the handle (76) is adapted to the placement groove (110).

4. The panoramic sliding door and window according to claim 1, characterized in that: The second link (46) is connected to an adjustment component (8) that enables the first rack (15) to move a greater distance by swinging.

5. The panoramic sliding door and window according to claim 4, characterized in that: The adjustment assembly (8) includes an adjustment rack (81) connected to the second connecting rod (46). A first adjustment gear (82) and a second adjustment gear (83) are rotatably connected inside the mounting housing (1). The first adjustment gear (82) meshes with the adjustment rack (81), and the second adjustment gear (83) meshes with the first adjustment gear (82). The inner diameter of the first adjustment gear (82) is larger than the inner diameter of the second adjustment gear (83). Two adjustment discs (84) are rotatably connected inside the mounting housing (1). One adjustment disc (84) is coaxially fixed with the second adjustment gear (83), and the two adjustment discs (84) are tightly wound with a traction rope (85). The first rack (15) is connected and fixed to the traction rope (85).

6. The panoramic sliding door and window according to claim 1, characterized in that: The mounting housing (1) is provided with a first slide rod (11) and a second slide rod (12). The first slide rod (11) is located parallel to the second slide rod (12) and is located above the second slide rod (12). The first door leaf (2) is connected to a first sleeve plate (13). The first sleeve plate (13) is fitted on the first slide rod (11). The first rack (15) is set on the first sleeve plate (13). The second door leaf (3) is connected to a second sleeve plate (14). The second sleeve plate (14) is fitted on the second slide rod (12). The moving gear (16) is rotatably connected to the second sleeve plate (14).

7. The panoramic sliding door and window according to claim 1, characterized in that: The bottom of the doorway is equipped with a first slide rail (18) and a second slide rail (19). The bottom of the first door leaf (2) is located in the first slide rail (18), and the bottom of the second door leaf (3) is located in the second slide rail (19).

Citation Information

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