Indoor partition device and method
By designing an indoor partition device including an outer cover, partition chamber, upper and lower spiral guide rails and driving mechanism, the problem of occupying space and affecting decoration when the traditional partition device is released is solved, and a fast and space-free partition operation is achieved.
Patent Information
- Application Number
- CN202211367543.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-03
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2042-11-03
AI Technical Summary
Traditional indoor partition devices occupy indoor space when the partition is removed and affect the decorative visual effect.
An indoor partition device is designed, including an outer cover, a partition chamber, an upper and lower spiral guide rail, a partition plate and a driving mechanism. The partition plate is controlled to be rolled out or inclined on the guide rail through a control switch to quickly form or release the partition without occupying the indoor space.
It realizes that the partitions are quickly formed or removed without affecting the visual effect of interior decoration and does not occupy indoor space.
Smart Images

Figure CN115773058B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of construction engineering, and in particular to an indoor partition device and method. Background Art
[0002] Interior partitions are facades that separate the interior spaces of buildings. During the use of a building, people sometimes use interior partitions to divide the original interior space into several spaces according to actual use needs, forming different functional areas to achieve flexible use of the building's interior space. Currently, commonly used interior partitions can be divided into two categories according to their nature: fixed partitions and movable partitions. Fixed partitions are generally used for interior spaces that require long-term partitioning. Although most of the current fixed partitions are easy and quick to install, they cannot respond flexibly when encountering situations that require frequent partitioning and removal. Movable partitions are generally connected to the floor through guide rails, which can quickly and flexibly realize the conversion between partitioning and connecting interior spaces. However, this type of partition device will occupy a certain amount of interior space when folded, and usually requires the installation of guide rails on the ceiling or ground, affecting the overall decorative visual effect of the interior space. Summary of the Invention
[0003] The purpose of the present invention is to provide an indoor partition device and method to solve the problem that traditional partitions occupy indoor space and affect the decorative visual effect when they are removed.
[0004] In order to solve the above technical problems, the present invention provides a technical solution: an indoor partition device, comprising:
[0005] An outer enclosure, the outer enclosure being enclosed by a top plate, a bottom plate, a left side plate, a right side plate, a back plate and a panel, the panel being provided with at least one door along its height direction;
[0006] A partition chamber is provided within the outer enclosure, an upper platform plate of the partition chamber is connected to a top plate of the outer enclosure, a lower platform plate of the partition chamber is connected to a bottom plate of the outer enclosure, the partition chamber includes a guide rail compartment and an exit passage communicating with the guide rail compartment, the exit passage is aligned with one of the doors, and a support rod located in the vertical center is provided between the upper and lower platform plates of the guide rail compartment;
[0007] A check plate is disposed between the upper and lower bearing plates, close to or connected to the support rod;
[0008] An upper spiral guide rail is spirally distributed in the guide rail compartment and the exit channel in the partition chamber, starting from the return plate and centering around the support rod.
[0009] A lower spiral guide rail is spirally distributed in the guide rail compartment and the exit channel in the partition chamber, starting from the return plate and centering around the support rod. The lower spiral guide rail is distributed correspondingly to the upper spiral guide rail.
[0010] A partition plate is wound along the upper spiral guide rail and the lower spiral guide rail within the guide rail compartment in the partition chamber and the outlet channel, and the partition plate abuts against the return plate;
[0011] a driving mechanism, aligned with the partition plate and disposed on the inner surface of the outlet passage, the driving mechanism being used to drive the partition plate to roll out from the guide rail compartment in the partition chamber and extend out of the outlet passage to be in an expanded state, and to drive the partition plate to roll from outside the partition chamber through the outlet passage into the guide rail compartment of the partition chamber to be in a retracted state;
[0012] A control switch is used to control the door and the driving mechanism.
[0013] Furthermore, in the indoor partition device provided by the present invention, the panel is provided with two doors along its height direction, and the guide rail compartment is provided with an interface channel symmetrically distributed with the exit channel, and the interface channel is aligned with the other door.
[0014] Furthermore, in the indoor partition device provided by the present invention, the interface channel includes a cutoff plate.
[0015] Furthermore, in the indoor partition device provided by the present invention, a card slot is provided on the cutoff plate.
[0016] Furthermore, the indoor partition device provided by the present invention, the partition board includes:
[0017] The outer splints are two parallel and spaced apart pieces, and one of the outer splints is aligned with the driving mechanism. The upper and lower ends of the outer splints are provided with a plurality of grooves at equal intervals along the length direction thereof;
[0018] a connecting plate, located at the center of the two outer plywood plates in the longitudinal direction and embedded in the two outer plywood plates;
[0019] An inner core plate is arranged between the two outer plywood plates, the inner core plate comprising an upper core plate and a lower core plate, the inner core plate being retracted inwardly of the outer plywood plates, and the inner core plate and the outer plywood plates are respectively formed with guide grooves matching the upper spiral guide rail and the lower spiral guide rail at upper and lower ends;
[0020] There are multiple telescopic rods, which are evenly arranged between the connecting plate and the upper core plate and between the connecting plate and the lower core plate;
[0021] Pressure sensing elements are arranged at both ends of the outer clamping plate in the length direction and respectively at the top end of the upper core plate and the bottom end of the lower core plate.
[0022] Furthermore, in the indoor partition device provided by the present invention, the driving mechanism includes:
[0023] a box body, wherein the box body is provided with an opening, the opening being aligned with a partition plate located in the outlet channel;
[0024] A transmission rod is arranged in the box body through a bearing seat;
[0025] A driver, disposed at least at one end of the transmission rod;
[0026] a transmission wheel, disposed on the transmission rod, wherein the transmission wheel is partially located inside the box body and partially extends outside the box body through the opening;
[0027] Attachment rods are evenly distributed on the outer circumference of the transmission wheel, and the cross-sectional dimensions of the attachment rods are smaller than the dimensions of the grooves on the outer clamping plate;
[0028] The control chip is arranged in the box body and is connected with the control switch, the driver, the pressure sensing element and the telescopic rod.
[0029] Compared with the prior art, the indoor partition device provided by the present invention has the following beneficial effects:
[0030] The driving mechanism is controlled by a control switch, and the driving mechanism controls the partition board in a retracted state to be rolled out from the guide rail bin and the exit channel in the partition room along the upper and lower spiral guide rails, and extended through the outer enclosure to the outside of the indoor partition device, so that the partition board is extended from the outer enclosure through the open door and is arranged in an expanded state on the opposite wall, thereby forming a partition between the two parallel walls.
[0031] The driving mechanism is controlled by the control switch, and the driving mechanism controls the partition board in the expanded state to be retracted from the opposite wall and rolled into the guide rail bin and exit channel in the partition room of the indoor partition device through the open door on the outer enclosure, so that the partition board is in the rolled state to remove the partition between the two parallel walls, and the open door on the outer enclosure is closed by the control switch.
[0032] The driving mechanism can quickly form or remove partitions between two parallel walls in the room, and when the partition board is retracted, it can be rolled back into the guide rail bin and exit channel of the indoor partition device, without occupying indoor space, and without installing guide rails on the indoor ceiling or ground, which does not affect the visual effect of indoor decoration.
[0033] The enclosure protects the compartment and its internal components.
[0034] In order to solve the above technical problems, another technical solution provided by the present invention is: an indoor partition method according to the above indoor partition device,
[0035] An indoor partition device is respectively embedded at relative positions in two parallel indoor walls, so that the panels of the indoor partition device are aligned with the wall surfaces;
[0036] The two doors of each partition room are opened by controlling the switch;
[0037] The driving mechanism of the indoor partition device drives the partition board to roll out from the guide rail compartment in the partition room along the upper and lower spiral guide rails and extend from the exit channel in an unfolded state to the interface channel of the indoor partition device on the opposite side, so as to form a partition between the two walls through the two unfolded partition boards;
[0038] The driving mechanism of the indoor partition device on this side drives the partition board in the extended state between the two walls to be retracted from the interface channel of the indoor partition device on the opposite side and rolled into the guide rail compartment of the indoor partition device on this side along the upper and lower spiral guide rails through the outlet channel of the indoor partition device on this side, so that the partition board is in the retracted state, so that the partition between the two walls is released by retracting the two partition boards;
[0039] The two doors of each partition room are closed by controlling the control switch.
[0040] Compared with the prior art, the indoor partition method provided by the present invention has the following beneficial effects:
[0041] The partition board is rolled out from the indoor partition device and extended to the opposite wall through the driving mechanism, so that a partition is formed between two parallel walls by two partition boards in the unfolded state. When the driving mechanism is controlled in reverse, the partition board can be changed from the unfolded state to the rolled state to remove the two partitions between the two walls.
[0042] The partition formed by the two partition boards has the advantage of good sound insulation effect.
[0043] The indoor partition device is embedded in the wall, the door is aligned with the wall surface, the door is opened or closed, and the partition board is driven by the driving mechanism to form or remove the partition, which can minimize the adverse impact on the overall decorative effect of the indoor space and does not occupy the indoor space.
[0044] The interior partition device is embedded in the wall, and the outer protective back panel can be aligned with the other side of the wall, or embedded in the wall. In this case, the wall is not broken at the embedded position of the interior partition device, which can improve the load-bearing effect of the wall.
[0045] In order to solve the above technical problems, another technical solution provided by the present invention is: a method for indoor partitioning,
[0046] Using the above-mentioned indoor partition device;
[0047] Embedding one indoor partition device at a relative position in two parallel indoor walls, respectively, so that the panels of the indoor partition device are aligned with the wall surfaces;
[0048] The two doors of the partition room of each indoor partition device are controlled to open by a control switch;
[0049] The control chip in each partition room controls the rotation of the corresponding driver, so as to drive the corresponding transmission rod, transmission wheel and the attached rod thereon to rotate, so that the attached rod is sequentially and orderly inserted into the groove of the partition plate during the rotation process, so as to drive the partition plate to roll out from the guide rail compartment of the indoor partition device on this side and extend from the outlet channel in an unfolded state to the interface channel of the indoor partition device on the opposite side. When the forward end of the partition plate contacts the stop plate in the interface channel of the indoor partition device on the opposite side, the control chip controls the driver to stop rotating according to the feedback signal of the pressure sensor element at the forward end of the outer clamping plate of the partition plate;
[0050] The control chip controls the extension of the telescopic rod on the inner core board of the partition board in the expanded state to control the upper and lower core boards of the inner core board to extend up and down. When the upper and lower core boards respectively contact the indoor ceiling and the ground, the control chip controls the upper and lower core boards to stop extending according to the feedback signal of the pressure sensor elements on the upper and lower core boards, so as to form a closed partition between the two walls through the two partition boards in the expanded state;
[0051] The control chip controls the retraction of the telescopic rod on the inner core plate of the partition plate in the expanded state, so as to stop retracting when the telescopic rod returns to the initial state, thereby controlling the upper and lower core plates of the inner core plate to retract to the initial position;
[0052] The control chip in each partition room controls the reverse rotation of the driver of the corresponding surface, so as to drive the transmission rod, the transmission wheel and the attached rod thereon to rotate, so that the attached rod is sequentially and orderly inserted into the groove of the partition plate in the reverse rotation process, so as to drive the partition plate to be retracted from the interface channel of the opposite indoor partition device and rolled into the guide rail bin in the partition chamber of the indoor partition device of this surface through the outlet channel of this surface, so that the partition plate is in a retracted state along the upper and lower spiral guide rails. When the recovery end of the partition plate contacts the return plate in the guide rail bin, the control chip controls the driver to stop rotating according to the feedback signal of the pressure sensor element at the recovery end of the outer splint of the partition plate, so as to release the partition between the two walls by retracting the two partition plates;
[0053] The two doors of the partition chamber of each indoor partition device are closed by controlling the control switch.
[0054] Compared with the prior art, the indoor partition method provided by the present invention has the following beneficial effects:
[0055] The partition panel consists of an outer plywood and an inner core. When the outer plywood extends into the interface channel of the interior partition device on the opposite wall, the upper and lower core panels of the inner core panel are controlled by telescopic rods to move forward and backward, so that the upper and lower core panels respectively rest against the interior ceiling and floor, thus forming two sealed partitions. Compared with the previous interior partition method, this method has better sound insulation and sealing effects.
[0056] In order to solve the above technical problems, another technical solution provided by the present invention is: an indoor partition method according to the above indoor partition device,
[0057] An indoor partition device is embedded in one of two parallel indoor walls, so that the panel of the indoor partition device is aligned with the wall surface of the wall, and an interface groove is provided at a corresponding position on the other wall, and the interface groove is provided with a door;
[0058] The two doors of the partition room and the door of the interface slot are opened by controlling the switch;
[0059] The partition board is driven by a driving mechanism to roll out from the guide rail compartment along the upper and lower spiral guide rails and extend from the exit channel in an unfolded state to the interface groove of the opposite wall, so that a partition is formed between the two walls through a partition board in an unfolded state;
[0060] The driving mechanism drives the partition board in the expanded state between the two walls to be retracted from the interface groove of the opposite indoor partition device and rolled into the guide rail bin along the upper and lower spiral guide rails through the exit channel, so that the partition board is in the rolled state, so that the partition between the two walls is released by retracting a partition board;
[0061] The two doors of each partition room and the door on the interface slot are closed by the control switch.
[0062] Compared with the prior art, the indoor partition method provided by the present invention has the following beneficial effects:
[0063] Compared with the first two interior partition methods, forming a partition between two parallel walls through a partition board can quickly form or remove the partition, can minimize the adverse impact on the overall decorative effect of the interior space, and does not occupy the interior space.
[0064] In order to solve the above technical problems, another technical solution provided by the present invention is: a method for indoor partitioning,
[0065] During the indoor wall construction phase, a cavity with the same height as the wall is constructed in the area to be partitioned of two parallel indoor walls, and a door panel is placed on the cavity, and the door panel is aligned with the wall surface;
[0066] Constructing an exit passage and an interface passage in the chamber at the same height as the wall;
[0067] constructing spiral guide rails on the top and bottom plates of the chamber respectively, and extending the spiral guide rails to the outlet channel;
[0068] The partition plate is rolled up in the chamber along the upper and lower spiral guide rails;
[0069] A driving mechanism is installed on the inner surface of the outlet channel, and the driving mechanism controls the partition plate in the current wall to extend from the outlet channel in the current wall along the spiral guide rail to the interface channel of the opposite wall, and to retract the partition plate in the interface channel of the opposite wall and roll it into the cavity of the current wall along the spiral guide rail through the outlet channel of the current wall.
[0070] Compared with the prior art, the indoor partition method provided by the present invention has the following beneficial effects:
[0071] Instead of constructing the entire structure of the aforementioned indoor partition device, a cavity is constructed within the wall of the area to be partitioned. Upper and lower spiral guide rails are installed on the top and bottom plates of the cavity. Partition panels are rolled onto the upper and lower spiral guide rails within the cavity, forming an indoor partition between two parallel walls. This allows for rapid creation and removal of partitions, minimizing any adverse effects on the overall decorative effect of the interior space while also not occupying any interior space. BRIEF DESCRIPTION OF THE DRAWINGS
[0072] Figure 1 It is a three-dimensional structural diagram of an indoor partition device;
[0073] Figure 2 It is a schematic diagram of the cross-sectional structure of an indoor partition device;
[0074] Figure 3 It is a schematic diagram of the three-dimensional structure of the outer enclosure;
[0075] Figure 4 It is a schematic diagram of the three-dimensional structure of the external protective panel;
[0076] Figure 5 yes Figure 4 The cross-sectional structure diagram at AA in the middle;
[0077] Figure 6 It is a schematic diagram of the longitudinal cross-section structure of an indoor partition device without partition boards and guide rails;
[0078] Figure 7 It is a schematic diagram of the three-dimensional structure of the partition room;
[0079] Figure 8 It is a structural diagram of the distribution of spiral guide rails in the partition room;
[0080] Figure 9 It is a schematic diagram of the three-dimensional structure of the exit passage of the partition room;
[0081] Figure 10 It is a schematic diagram of the three-dimensional structure of the driving mechanism;
[0082] Figure 11 It is a structural diagram of the internal structure of the driving mechanism;
[0083] Figure 12 It is a schematic diagram of the structure in which the transmission rod is arranged on the box body through the bearing seat;
[0084] Figure 13 It is a three-dimensional structural diagram of the interface channel in the partition room;
[0085] Figure 14 It is a schematic diagram of the three-dimensional structure of the outer plywood of the partition board in the expanded state;
[0086] Figure 15 It is a schematic diagram of the three-dimensional structure of the inner core board of the partition board in the unfolded state;
[0087] Figure 16 This is a structural diagram of the installation of partition panels and spiral guide rails in a partition room;
[0088] Figures 17 and 18 This is a three-dimensional structural diagram of an indoor partition construction method according to an embodiment in a partition state and a partition release state;
[0089] Figures 19 to 20 It is a structural schematic diagram of an indoor partition construction method in another embodiment in a partition state and a partition release state;
[0090] Figure 21 It is the circuit schematic diagram of the control chip and its related components;
[0091] Figures 22 to 23 1 is a schematic diagram of the three-dimensional structure of an indoor partition method according to another embodiment;
[0092] Figure 24 is a schematic diagram of the three-dimensional structure of a partition board according to another embodiment;
[0093] As shown in the figure:
[0094] 100. Indoor partition devices;
[0095] 110, outer enclosure, 111, top plate, 112, bottom plate, 113, left side plate, 114, right side plate, 115, back plate, 116, panel, 117, door;
[0096] 120. Partition chamber, 121. Upper support plate, 122. Lower support plate, 123. Upper spiral guide rail, 124. Lower spiral guide rail, 125. Support rod, 126. Exit channel, 127. Interface channel, 128. Stop plate, 1281. Card slot, 129. Check plate;
[0097] 130. Drive mechanism, 131. Box body, 132. Opening, 133. Driver, 134. Transmission rod, 135. Transmission wheel, 136. Attachment rod, 137. Control chip, 138. Bearing seat;
[0098] 140. Partition plate, 141. Outer splint, 1411. Groove, 142. Inner core plate, 1421. Upper core plate, 1422. Lower core plate, 1424. Telescopic rod, 143. Pressure sensing element, 144. Connecting plate, 145. Guide groove;
[0099] 150. Control switch;
[0100] 160, chamber;
[0101] 200, wall, 201, interface slot;
[0102] 300, floor slab; DETAILED DESCRIPTION
[0103] The present invention will be described in detail below with reference to the accompanying drawings. The advantages and features of the present invention will become more apparent from the following description. It should be noted that the drawings are all in a very simplified form and are not accurately scaled, and are only used to facilitate and clearly illustrate the embodiments of the present invention.
[0104] Example 1
[0105] Please refer to Figures 1 to 16 and Figure 24 The first embodiment of the present invention provides an indoor partition device 100, including an outer enclosure 110, a partition chamber 120, a check plate 129, an upper spiral guide rail 123, a lower spiral guide rail 124, a partition plate 140, a drive mechanism 130, and a control switch 150, wherein:
[0106] Please refer to Figures 3 to 5The outer enclosure 110 is formed by a top plate 111, a bottom plate 112, a left side plate 113, a right side plate 114, a back plate 115, and a panel 116. The panel 116 is provided with at least one door 117 along its height. The top plate 111, bottom plate 112, left side plate 113, right side plate 114, back plate 115, and panel 116 are all rectangular plates that can be welded or connected by other means to form the outer enclosure 110. The door 117 can be at the same height as the panel 116, or not. The door 117 can be a revolving door or a sliding door and can be opened or closed by a control switch 150. The outer enclosure 110 provides protection.
[0107] Please refer to Figure 2 、 Figures 6 to 8 The partition chamber 120 is arranged within the outer enclosure 110. The upper support plate 121 of the partition chamber 120 is connected to the top plate 111 of the outer enclosure 110, and the lower support plate 122 of the partition chamber 120 is connected to the bottom plate 112 of the outer enclosure 110. The partition chamber 120 includes a guide rail bin and an exit channel 126 connected to the guide rail bin. The exit channel 126 is aligned with one of the doors 117. A support rod 125 located in the vertical center is provided between the upper and lower support plates 122 of the guide rail bin. The guide rail bin can be a cylindrical cavity. The support rod 125 can be a cylinder or a cube of other shapes, etc. The support rod 125 can increase the supporting force to improve the reliability of the rigid connection between the partition chamber 120 and the outer enclosure 110.
[0108] Please refer to Figure 2 and Figure 8 The check plate 129 is disposed between the upper and lower support plates, close to or connected to the support rod 125. The check plate 129 can stop the partition plate 140 from retracting when it is retracted into the guide rail bin and the outlet channel 126 of the retracted partition chamber 120.
[0109] Please refer to Figure 2 and Figure 8 The upper spiral guide rail 123 is spirally distributed in the guide rail bin and the outlet channel 126 in the partition chamber 120 around the support rod 125 with the return plate 129 as the starting point.
[0110] Please refer to Figure 2 and Figure 8 The lower spiral guide rail 124 is spirally distributed to the periphery of the guide rail bin and the outlet channel 126 in the partition chamber 120 with the return plate 129 as the starting point and around the support rod 125 as the center. The lower spiral guide rail 124 is distributed correspondingly to the upper spiral guide rail 123.
[0111] Please refer to Figure 2 、 Figures 14 to 16The partition plate 140 is wound along the upper spiral guide rail 123 and the lower spiral guide rail 124 within the guide rail bin in the partition chamber 120 and the outlet channel 126 , and the partition plate 140 rests on the check plate 129 .
[0112] Please refer to Figure 2 、 Figures 9 to 12 The driving mechanism 130 is aligned with the partition plate 140 and is arranged on the inner surface of the outlet channel 126. The driving mechanism 130 is used to drive the partition plate 140 to roll out from the guide rail bin in the partition chamber 120 and extend from the outlet channel 126 to be in an unfolded state, and to drive the partition plate 140 from outside the partition chamber 120 through the outlet channel 126 to be rolled into the guide rail bin of the partition chamber 120 to be in a retracted state.
[0113] Please refer to Figure 22 The control switch 150 is used to control the door 117 and the driving mechanism 130. The control switch 150 can be a wall switch provided on the wall.
[0114] Please refer to Figures 3 to 5 、 Figure 7 and Figure 13 In the indoor partition device 100 provided in the first embodiment of the present invention, the panel 116 is provided with two doors 117 along its height direction, and the guide rail warehouse is provided with an interface channel 127 symmetrically distributed with the exit channel 126, and the interface channel 127 is aligned with the other door 117.
[0115] Please refer to Figure 13 In order to allow the partition plate 140 to smoothly extend into the interface channel 127 of the opposite indoor partition device 100 and conveniently control the partition plate 140 to stop within the interface channel 127, the indoor partition device 100 provided in the first embodiment of the present invention includes a stop plate 128 within the interface channel 127. The stop plate 128 may be provided with a slot 1281. The slot 1281 enables the partition plate 140 to be smoothly inserted into the slot 1281. To ensure a reliable connection between the stop plate 128 and the interface channel 127, the stop plate 128 is rigidly connected to the inner wall of the interface channel 127.
[0116] Please refer to Figures 14 to 16 The indoor partition device 100 provided in an embodiment of the present invention includes an outer plywood 141, a connecting plate 144, an inner core plate 142, a telescopic rod 1424 and a pressure sensing element 143, wherein:
[0117] The outer plywood 141 is composed of two pieces arranged in parallel and spaced apart. A plurality of grooves 1411 are provided at equal intervals along the length direction on the upper and lower ends of the outer plywood 141 aligned with the driving mechanism 130. The other side of the outer plywood 141 is a smooth surface, which can ensure the appearance assembly effect of the outer plywood 141 after the partition is formed. The outer plywood 141 can be a steel plate or a flexible plate such as PVC. The groove 1411 can be a circular blind groove. When the outer plywood 141 is unfolded, it is a rectangular shape. The upper and lower surfaces of the two outer plywoods are respectively fitted with the upper and lower bases of the partition chamber.
[0118] The connecting plate 144 is located at the center of the two outer plates 141 in the longitudinal direction and is embedded in the two outer plates 141. The width of the connecting plate 144 is greater than the distance between the two outer plates 141.
[0119] The inner core plate 142 is arranged between the two outer plywoods 141. The inner core plate 142 includes an upper core plate 1421 and a lower core plate 1422. The inner core plate 142 is retracted into the outer plywood 141. The inner core plate 142 and the outer plywood 141 are respectively formed with guide grooves matching the upper spiral guide rail 123 and the lower spiral guide rail 124 at the upper and lower ends. The inner core plate 142 can be a steel plate or a flexible plate. The length of the inner core plate 142 is equal to the net distance between the two parallel walls. In other words, the length of the outer plywood 141 is large to ensure that a portion remains within the outlet channel 126 of the indoor partition device 100 and when extended, the other portion remains within the interface channel 127 of the opposite indoor partition device 100. The spacing between the inner surfaces of the two outer plywoods 141 and the inner core plate 142 is equal to the maximum width of the guide rail cross section, and the two outer plywoods are just stuck on both sides of the spiral guide rail.
[0120] There are multiple telescopic rods 1424, evenly arranged between the connecting plate 144 and the upper core plate 1421 and between the connecting plate 144 and the lower core plate 1422. The telescopic rods 1424 can be oil cylinders or air cylinders. The telescopic rods 1424 are symmetrically arranged at equal intervals.
[0121] Pressure sensing elements 143 are disposed at both ends of the outer clamping plate 141 in the longitudinal direction, and at the top of the upper core plate 1421 and the bottom of the lower core plate 1422, respectively. The pressure sensing elements 143 may be pressure sensors. The pressure sensing elements 143 may be concealed within the surface of the corresponding plate or protrude from the corresponding plate. Two pressure sensing elements 143 may be disposed at each end of the outer clamping plate 141 in the longitudinal direction.
[0122] Please refer to Figure 2 and Figures 9 to 12In the indoor partition device 100 provided in the first embodiment of the present invention, the driving mechanism 130 includes a box body 131, a transmission rod 134, a driver 133, a transmission wheel 135, an attachment rod 136 and a control chip 137, wherein:
[0123] The box body 131 is provided with an opening 132, and the opening 132 is aligned with the partition plate 140 located in the outlet channel 126. The box body 131 can be a cube, and the opening 132 can be a rectangular opening.
[0124] The transmission rod 134 is disposed in the box body 131 through a bearing seat 138 .
[0125] The driver 133 is at least provided at one end of the transmission rod 134 .
[0126] The transmission wheel 135 is disposed on the transmission rod 134 . Part of the transmission wheel 135 is located inside the box body 131 , and part of the transmission wheel 135 extends outside the box body 131 through the opening 132 .
[0127] The attachment rods 136 are evenly distributed on the outer circumference of the transmission wheel 135 , and the cross-sectional dimensions of the attachment rods 136 are smaller than the dimensions of the grooves 1411 on the outer clamping plate 141 .
[0128] The control chip 137 is disposed in the box body 131 and is connected to the control switch 150, the driver 133, the pressure sensor 143 and the telescopic rod 1424. The control switch 150 can be a smart wireless switch connected to the control chip 127 in the drive mechanism 130 by installing an APP on a mobile phone.
[0129] Please refer to Figures 1 to 16 and Figure 24 The indoor partition device 100 provided in the first embodiment of the present invention controls the driving mechanism 130 through the control switch 150, and controls the partition plate 140 in the retracted state to be rolled out from the guide rail bin and the exit channel 126 in the partition chamber 120 along the upper and lower spiral guide rails 124 through the outer enclosure 110 to extend to the outside of the indoor partition device 100, so that the partition plate 140 is extended from the outer enclosure 110 through the open door 117 and is arranged in the expanded state on the opposite wall, thereby forming a partition between the two parallel walls.
[0130] Please refer to Figures 1 to 16In the indoor partition device 100 provided in the first embodiment of the present invention, a control switch 150 controls a drive mechanism 130. The drive mechanism 130 controls the partition panel 140, which is in an extended state, to be retracted from the opposite wall, through the open door 117 on the outer enclosure 110, and into the guide rail compartment and exit passage 126 within the partition chamber 120 of the indoor partition device 100. This retracts the partition panel 140, thereby removing the partition between the two parallel walls. The control switch 150 closes the open door 117 on the outer enclosure 110. To ensure smooth reeling of the partition panel 140 on the spiral guide rail, the spiral guide rail can be provided with rounded corners. The guide groove can also be provided with a chamfer.
[0131] Please refer to Figures 1 to 16 The indoor partition device 100 provided in the first embodiment of the present invention can quickly form or remove a partition between two parallel walls in the room through the driving mechanism 130, and when the partition board 140 is retracted, the partition board 140 can be rolled up and retracted into the guide rail bin and the exit channel 126 of the indoor partition device 100, without occupying the indoor space, and without installing a guide rail on the indoor ceiling 111 or the ground, and without affecting the visual effect of the indoor decoration.
[0132] Please refer to Figures 1 to 16 In the indoor partition device 100 provided in the first embodiment of the present invention, the outer enclosure 110 can protect the partition chamber 120 and its internal components.
[0133] Please refer to Figure 24 When partition plate 140 is extended, a plurality of grooves 1411 are evenly spaced along its length at the upper and lower ends of one side. The other side is smooth. Partition plate 140 can be made of steel or a flexible plate, and grooves 1411 can be circular blind grooves. Guide grooves 145 are provided inwardly on the upper and lower surfaces of partition plate 140. Guide grooves 145 engage with upper and lower spiral guide rails 123 and 124.
[0134] In the indoor partition device 100 provided in the first embodiment of the present invention, in order not to affect the overall decorative effect of the interior, the outer surfaces of the back plate 15 and the panel 116 and the wall surface are uniformly pasted with decorative wallpaper.
[0135] The indoor partition device 100 provided in the first embodiment of the present invention has rough outer surfaces of each plate, and the top plate is bonded to the upper building structure, the bottom plate to the lower building structure, and the side plates to the adjacent two side walls using adhesive materials. The outer surfaces of the back plate and the panel are flush with the surfaces on both sides of the wall and have the same finishing as the wall surface. The outer protective plates are all steel plates, which are welded and fixed to each other. The adhesive material used between the outer protective plate 110 and the surrounding building structure is cement mortar.
[0136] Example 2
[0137] Please refer to Figures 1 to 13 、 Figures 17 and 18 and Figure 24 The second embodiment of the present invention provides an indoor partition method according to the indoor partition device 100 of the first embodiment, which may include the following steps:
[0138] Step 401, please refer to Figures 17 and 18 An indoor partition device 100 is embedded in two parallel indoor walls 200 at opposite positions, with the panels 116 of the indoor partition devices 100 aligned with the wall surfaces 200. The outer surfaces of the back plate 115 and the panels 116 of the outer enclosure 110 are flush with the two sides of the wall 200 and have the same finish as the wall 200, so as not to affect the indoor wall decoration effect.
[0139] In step 402, the two doors 117 of each partitioned room 120 are opened using the control switch 150. The control switch 150 can be installed on either wall 200 or on both walls 200, allowing personnel on both sides of the partition board 140 to control the partitioning and opening. The control switch 150 can be a wall switch or a control terminal such as a mobile phone.
[0140] Step 403, please refer to Figure 17 、 Figure 21 and Figure 24 The driving mechanism 130 of the indoor partition device 100 drives the partition board 140 to roll out from the guide rail bin in the partition room 120 along the upper and lower spiral guide rails 124 and extend from the outlet channel 126 to the interface channel 127 of the indoor partition device 100 on the opposite side, so as to form a partition between the two walls 200 through the two partition boards 140 in the extended state. Figure 24 The partition board 140 of this structure is an integrated structure without stratification, which is convenient for rolling in and out.
[0141] Step 404, please refer to Figure 18 、 Figure 21 and Figure 24 The driving mechanism 130 of the indoor partition device 100 on this side drives the partition panels 140 in the extended state between the two walls 200 to be retracted from the interface channel 127 of the indoor partition device 100 on the opposite side and rolled along the upper and lower spiral guide rails 124 through the outlet channel 126 of the indoor partition device 100 on this side into the guide rail compartment of the indoor partition device 100 on this side, so that the partition panels 140 are in the retracted state. The partition between the two walls 200 is released by retracting the two partition panels 140. The driving mechanism 130 can be controlled by the control switch 150.
[0142] Step 405 , controlling the two doors 117 of each partition chamber 120 to close by controlling the switch 150 .
[0143] Please refer to Figures 17 and 18 In the second embodiment of the present invention, a room partition method is provided. A drive mechanism 130 is used to roll a partition panel 140 out of the room partition device 100 and extend it toward an opposite wall 200. This allows the two extended partition panels 140 to form a partition between two parallel walls 200. Reverse control of the drive mechanism 130 can shift the partition panels 140 from the extended state to the retracted state, removing the two partitions between the two walls 200. The partition formed by the two partition panels 140 has the advantage of providing excellent sound insulation.
[0144] Please refer to Figures 17 and 18 The indoor partition device 100 is embedded in the wall 200, the door 117 is aligned with the wall surface of the wall 200, and the door 117 is opened or closed. The partition board 140 is driven by the driving mechanism 130 to form or release the partition, which can minimize the adverse impact on the overall decorative effect of the indoor space and does not occupy the indoor space.
[0145] Please refer to Figures 17 and 18 The indoor partition device 100 is embedded in the wall 200, and the back plate 115 of the outer protective layer 110 can be aligned with the other side of the wall 200, or can be embedded in the wall 200. At this time, the wall 200 is not separated at the embedded position of the indoor partition device 100, which can improve the load-bearing effect of the wall 200.
[0146] Example 3
[0147] Please refer to Figures 1 to 18 and Figure 21 The third embodiment of the present invention provides a method for indoor partitioning, which uses the indoor partitioning device 100 of the first embodiment, and may include the following steps:
[0148] Step 411 , embedding one indoor partition device 100 at a relative position in two parallel indoor walls 200 , respectively, so that the panel 116 of the indoor partition device 100 is aligned with the wall surface of the wall 200 .
[0149] Step 412 , controlling the two doors 117 of the partition chamber 120 of each indoor partition device 100 to open by controlling the switch 150 .
[0150] Step 413, the control chip 137 in each partition chamber 120 controls the corresponding driver 133 to rotate, so as to drive the corresponding transmission rod 134, the transmission wheel 135 and the attached rod 136 thereon to rotate through the driver 133, so that the attached rod 136 is inserted into the groove 1411 of the partition plate 140 in sequence and in an orderly manner during the rotation process, so as to drive the partition plate 140 to roll out from the guide rail warehouse of the indoor partition device 100 on this side and extend from the outlet channel 126 in an unfolded state to the interface channel 127 of the opposite indoor partition device 100. When the forward end of the partition plate 140 contacts the stop plate 128 in the interface channel 127 of the opposite indoor partition device 100, the control chip 137 controls the driver 133 to stop rotating according to the feedback signal of the pressure sensor element 143 at the forward end of the outer clamping plate 141 of the partition plate 140. The structure of the pressure sensor element 143 at the forward end of the outer clamping plate 141 of the partition plate 140 and the stop plate 128 can realize intelligent termination when the partition plate 140 is extended. The control signal of the control chip 137 to the driver 133 can be provided by the control switch 150.
[0151] In step 414, the control chip 137 controls the extension of the telescopic rod 1424 on the inner core plate 142 of the partition plate 140 in the deployed state to control the upper and lower core plates 1422 of the inner core plate 142 to extend upward and downward. When the upper and lower core plates 1422 respectively contact the indoor ceiling 111 and the ground, the control chip 137 controls the upper and lower core plates 1422 to stop extending according to the feedback signal of the pressure sensing elements 143 on the upper and lower core plates 1422, thereby forming a closed partition between the two walls 200 through the two partition plates 140 in the deployed state. The upper and lower pressure sensing elements 143 on the inner core plate 142 can realize intelligent control of the upper core plate 1421 and the lower core plate 1422. Steps 412 to 414 constitute the control process for forming the partition.
[0152] In step 415, the control chip 137 controls the retraction of the telescopic rod 1424 on the inner core plate 142 of the expanded partition plate 140. The retraction stops when the telescopic rod 1424 returns to its initial position, thereby controlling the upper and lower core plates 1422 of the inner core plate 142 to retract to their initial positions. The initial position can be detected by a signal sensor connected to the control device of the ibuprofen cream 127.
[0153] Step 416, the control chip 137 in each partition chamber 120 controls the driver 133 of the corresponding surface to rotate in the opposite direction, so that the driver 133 drives the transmission rod 134, the transmission wheel 135 and the attached rod 136 thereon to rotate, so that the attached rod 136 is sequentially and orderly inserted into the groove 1411 of the partition plate 140 in the reverse rotation process, so as to drive the partition plate 140 to be retracted from the interface channel 127 of the indoor partition device 100 on the opposite side and pass through the outlet channel 127 of the current surface. 6 is retracted into the guide rail compartment within the partition chamber 120 of the indoor partition device 100, so that the partition plate 140 is in a retracted state along the upper and lower spiral guide rails 124. When the retracted end of the partition plate 140 contacts the return plate 129 within the guide rail compartment, the control chip 137 controls the driver 133 to stop rotating based on the feedback signal from the pressure sensor element 143 at the retracted end of the outer clamping plate 141 of the partition plate 140, thereby releasing the partition between the two walls 200 by retracting the two partition plates 140. The structure of the pressure sensor element 143 at the retracted end of the outer clamping plate 141 of the partition plate 140 and the return plate 129 can achieve intelligent termination of the retraction of the partition plate 140.
[0154] In step 417, the two doors 117 of the partition chamber 120 of each indoor partition device 100 are controlled to be closed by controlling the switch 150. Steps 415 to 417 are the control process for releasing the partition.
[0155] Please refer to Figures 14 to 16 In the interior partition method provided by the third embodiment of the present invention, the partition panel 140 comprises an outer plywood 141 and an inner core panel 142. When the outer plywood 141 extends into the interface channel 127 of the interior partition device 100 on the opposite wall 200, the upper and lower core panels 1421, 1422 of the inner core panel 142 are controlled by telescopic rods 1424 to extend and retract, so that the upper and lower core panels 1422 respectively contact the interior ceiling 111 and the ground, thereby forming two sealed partitions. Compared with the above-mentioned interior partition method, this method has better sound insulation and sealing effects.
[0156] Example 4
[0157] Please refer to Figures 1 to 16 、 Figures 19 to 21 The indoor partition method provided by the fourth embodiment of the present invention based on the indoor partition device 100 of the first embodiment may include:
[0158] Step 421, embed an indoor partition device 100 in one of the two parallel indoor walls 200, so that the panel 116 of the indoor partition device 100 is aligned with the wall surface of the wall 200, and an interface groove 201 is provided at the corresponding position of the other wall 200, and the interface groove 201 is provided with a door (not shown).
[0159] Step 422 , the two doors 117 of the partition chamber 120 and the door of the interface slot 201 are controlled to open by controlling the switch 150 .
[0160] Step 423, please refer to Figure 19 The driving mechanism 130 drives the partition plate 140 to roll out from the guide rail bin along the upper and lower spiral guide rails 124 and extend from the exit channel 126 in an unfolded state to the interface groove 201 of the opposite wall 200, so as to form a partition between the two walls 200 through a partition plate 140 in an unfolded state.
[0161] Step 424, please refer to Figure 20 The driving mechanism 130 drives the partition board 140 in the expanded state between the two walls 200 to be retracted from the interface groove 201 of the opposite indoor partition device 100 and rolled into the guide rail warehouse along the upper and lower spiral guide rails 124 through the exit channel 126, so that the partition board 140 is in a retracted state, so that the partition between the two walls 200 is removed by retracting a partition board 140.
[0162] In step 425 , the two doors 117 of each partition chamber 120 and the door 117 on the interface slot 201 are controlled to be closed by controlling the switch 150 .
[0163] The indoor partition method provided in the fourth embodiment of the present invention, compared with the second and third embodiments, forms a partition between two parallel walls 200 through a partition board 140, can quickly form or remove the partition, can minimize the adverse effects on the overall decorative effect of the indoor space, and does not occupy the indoor space.
[0164] Example 5
[0165] Please refer to Figures 22 to 23 A fifth embodiment of the present invention provides an indoor partition method, which may include:
[0166] Step 431, during the construction phase of the indoor wall 200, a chamber 160 with the same height as the wall 200 is constructed in the area to be partitioned of the two parallel indoor walls 200, a door (not shown) is set on the chamber 160, and the door 117 is aligned with the wall surface of the wall 200.
[0167] Step 432 , constructing the outlet channel 126 and the interface channel 127 in the chamber 160 at the same height as the wall 200 .
[0168] Step 433: construct spiral guide rails on the top plate 111 and the bottom plate 112 of the chamber 160, and extend the spiral guide rails to the outlet channel 126. Figure 8 .
[0169] Step 434: Roll the upper and lower spiral guide rails 123 and 124 into the chamber 160. Figures 14 to 16 or Figure 24 Partition board 140.
[0170] Step 435, install the driving mechanism 130 of the above-mentioned embodiment 1 on the inner surface of the outlet channel 126, and control the partition plate 140 in the current wall 200 to extend from the outlet channel 126 in the current wall 200 along the spiral guide rail to the interface channel 127 of the opposite wall 200, and retract the partition plate 140 in the interface channel 127 of the opposite wall 200 and roll it into the chamber 160 of the current wall 200 along the spiral guide rail through the outlet channel 126 of the current wall 200.
[0171] The interior partition method provided in the fifth embodiment of the present invention does not require the construction of the entire structure of the interior partition device 100 described above. Instead, a chamber 160 is constructed within the wall 200 of the area to be partitioned. Upper and lower spiral guide rails 124 are constructed on the top plate 111 and bottom plate 112 of the chamber 160. Partition panels 140 are rolled onto the upper and lower spiral guide rails 124 within the chamber 160, forming an interior partition between two parallel walls 200 through two partition panels 140. This method allows for rapid creation and removal of partitions, minimizes adverse effects on the overall decorative effect of the interior space, and does not occupy interior space.
[0172] In the indoor partition device and method provided by the above-mentioned embodiment of the present invention, the control switch 150 for controlling the door 117 and the partition plate 140 can be a main switch or a plurality of separate switches.
[0173] The indoor partition device and method provided by the above-described embodiments of the present invention take into account that the material of the partition panel 140 may cause the partition panel 140 to slightly deviate from the preset direction during expansion and contraction, rather than extending in a straight line. This allows for manual traction of the forward end of the partition panel 140 to ensure that the partition panel 140 smoothly passes through the door and extends into the opposite interface channel 127 or interface slot 201. When the partition panel 140 is made of steel, its linear extension is ensured, and its retraction and extension principle is similar to that of a tape measure.
[0174] Compared with the fixed partition devices and movable partition devices commonly used on the market, the indoor partition devices and methods provided by embodiments one to five of the present invention are not only able to flexibly cope with multiple partitioning and removal situations, but also can partition or remove indoor spaces at any time and quickly without the need for repeated installation and removal. Moreover, the partition devices concealed in the wall will not occupy additional indoor space, and there is no need to install connecting parts such as spiral guide rails on the indoor ceiling or floor, thereby minimizing the impact on the overall decorative aesthetics of the indoor space.
[0175] The present invention is not limited to the specific embodiments described above. Obviously, the embodiments described above are only some embodiments of the embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention described, all other embodiments obtained by ordinary technicians in this field fall within the scope of protection of the present invention. Those skilled in the art can make other levels of modifications and changes to the present invention. In this way, if these modifications and changes of the present invention fall within the scope of the claims of the present invention, the present invention is also intended to include these changes and changes.
Claims
1. An indoor partition device, characterized in that: include: An outer enclosure, the outer enclosure being enclosed by a top plate, a bottom plate, a left side plate, a right side plate, a back plate and a panel, the panel being provided with at least one door along its height direction; A partition chamber is provided within the outer enclosure, an upper platform plate of the partition chamber is connected to a top plate of the outer enclosure, a lower platform plate of the partition chamber is connected to a bottom plate of the outer enclosure, the partition chamber includes a guide rail compartment and an exit passage communicating with the guide rail compartment, the exit passage is aligned with one of the doors, and a support rod located in the vertical center is provided between the upper and lower platform plates of the guide rail compartment; A check plate is disposed between the upper and lower bearing plates, close to or connected to the support rod; An upper spiral guide rail is spirally distributed in the guide rail compartment and the exit channel in the partition chamber, starting from the return plate and centering around the support rod. A lower spiral guide rail is spirally distributed in the guide rail compartment and the exit channel in the partition chamber, starting from the return plate and centering around the support rod. The lower spiral guide rail is distributed correspondingly to the upper spiral guide rail. A partition plate is wound along the upper spiral guide rail and the lower spiral guide rail within the guide rail compartment in the partition chamber and the outlet channel, and the partition plate abuts against the return plate; a driving mechanism, aligned with the partition plate and disposed on the inner surface of the outlet passage, the driving mechanism being used to drive the partition plate to roll out from the guide rail compartment in the partition chamber and extend out of the outlet passage to be in an expanded state, and to drive the partition plate to roll from outside the partition chamber through the outlet passage into the guide rail compartment of the partition chamber to be in a retracted state; A control switch for controlling the door and the drive mechanism; the partition plate comprises: The outer splints are two parallel and spaced apart pieces, and one of the outer splints is aligned with the driving mechanism. The upper and lower ends of the outer splints are provided with a plurality of grooves at equal intervals along the length direction thereof; A connecting plate, located at the center of the two outer plywood plates in the longitudinal direction and embedded in the two outer plywood plates; An inner core plate is arranged between the two outer plywood plates, the inner core plate comprising an upper core plate and a lower core plate, the inner core plate being retracted inwardly of the outer plywood plates, and the inner core plate and the outer plywood plates are respectively formed with guide grooves matching the upper spiral guide rail and the lower spiral guide rail at upper and lower ends; There are multiple telescopic rods, which are evenly arranged between the connecting plate and the upper core plate and between the connecting plate and the lower core plate; Pressure sensing elements are arranged at both ends of the outer clamping plate in the length direction and respectively at the top end of the upper core plate and the bottom end of the lower core plate.
2. The indoor partition device according to claim 1, characterized in that: The panel is provided with two doors along its height direction, and the guide rail bin is provided with an interface channel symmetrically distributed with the exit channel, and the interface channel is aligned with the other door.
3. The indoor partition device according to claim 2, characterized in that: The interface channel includes a cutoff plate.
4. The indoor partition device according to claim 3, characterized in that: The cut-off plate is provided with a card slot.
5. The indoor partition device according to claim 1, characterized in that: The driving mechanism comprises: a box body, wherein the box body is provided with an opening, the opening being aligned with a partition plate located in the outlet channel; A transmission rod is arranged in the box body through a bearing seat; A driver, disposed at least at one end of the transmission rod; a transmission wheel, disposed on the transmission rod, wherein a portion of the transmission wheel is located inside the box body and a portion of the transmission wheel extends outside the box body through the opening; Attachment rods are evenly distributed on the outer circumference of the transmission wheel, and the cross-sectional dimensions of the attachment rods are smaller than the dimensions of the grooves on the outer clamping plate; The control chip is arranged in the box body and is connected with the control switch, the driver, the pressure sensing element and the telescopic rod.
6. A method for indoor partitioning of an indoor partition device according to claim 2, characterized in that: An indoor partition device is respectively embedded at relative positions in two parallel indoor walls, so that the panels of the indoor partition device are aligned with the wall surfaces; The two doors of each partition room are opened by controlling the switch; The driving mechanism of the indoor partition device drives the partition board to roll out from the guide rail compartment in the partition room along the upper and lower spiral guide rails and extend from the exit channel in an unfolded state to the interface channel of the indoor partition device on the opposite side, so as to form a partition between the two walls through the two unfolded partition boards; The driving mechanism of the indoor partition device on this side drives the partition board in the extended state between the two walls to be retracted from the interface channel of the indoor partition device on the opposite side and rolled into the guide rail compartment of the indoor partition device on this side along the upper and lower spiral guide rails through the outlet channel of the indoor partition device on this side, so that the partition board is in the retracted state, so that the partition between the two walls is released by retracting the two partition boards; The two doors of each partition room are closed by controlling the control switch.
7. A method for indoor partitioning, characterized in that: Using the indoor partition device according to claim 5; Embedding one indoor partition device at a relative position in two parallel indoor walls, respectively, so that the panels of the indoor partition device are aligned with the wall surfaces; The two doors of the partition room of each indoor partition device are controlled to open by a control switch; The control chip in each partition room controls the rotation of the corresponding driver, so as to drive the corresponding transmission rod, transmission wheel and the attached rod thereon to rotate, so that the attached rod is sequentially and orderly inserted into the groove of the partition plate during the rotation process, so as to drive the partition plate to roll out from the guide rail compartment of the indoor partition device on this side and extend from the outlet channel in an unfolded state to the interface channel of the indoor partition device on the opposite side. When the forward end of the partition plate contacts the stop plate in the interface channel of the indoor partition device on the opposite side, the control chip controls the driver to stop rotating according to the feedback signal of the pressure sensor element at the forward end of the outer clamping plate of the partition plate; The control chip controls the extension of the telescopic rod on the inner core board of the partition board in the expanded state to control the upper and lower core boards of the inner core board to extend up and down. When the upper and lower core boards respectively contact the indoor ceiling and the ground, the control chip controls the upper and lower core boards to stop extending according to the feedback signal of the pressure sensor elements on the upper and lower core boards, so as to form a closed partition between the two walls through the two partition boards in the expanded state; The control chip controls the retraction of the telescopic rod on the inner core plate of the partition plate in the expanded state, so as to stop retracting when the telescopic rod returns to the initial state, thereby controlling the upper and lower core plates of the inner core plate to retract to the initial position; The control chip in each partition room controls the reverse rotation of the driver of the corresponding surface, so as to drive the transmission rod, the transmission wheel and the attached rod thereon to rotate, so that the attached rod is sequentially and orderly inserted into the groove of the partition plate in the reverse rotation process, so as to drive the partition plate to be retracted from the interface channel of the opposite indoor partition device and rolled into the guide rail bin in the partition chamber of the indoor partition device of this surface through the outlet channel of this surface, so that the partition plate is in a retracted state along the upper and lower spiral guide rails. When the recovery end of the partition plate contacts the return plate in the guide rail bin, the control chip controls the driver to stop rotating according to the feedback signal of the pressure sensor element at the recovery end of the outer splint of the partition plate, so as to release the partition between the two walls by retracting the two partition plates; The two doors of the partition chamber of each indoor partition device are closed by controlling the control switch.
8. A method for indoor partitioning using the indoor partitioning device according to claim 1, characterized in that: An indoor partition device is embedded in one of two parallel indoor walls, so that the panel of the indoor partition device is aligned with the wall surface of the wall, and an interface groove is provided at a corresponding position on the other wall, and the interface groove is provided with a door; The two doors of the partition room and the door of the interface slot are opened by controlling the switch; The partition board is driven by a driving mechanism to roll out from the guide rail compartment along the upper and lower spiral guide rails and extend from the exit channel in an unfolded state to the interface groove of the opposite wall, so that a partition is formed between the two walls through a partition board in an unfolded state; The driving mechanism drives the partition board in the expanded state between the two walls to be retracted from the interface groove of the opposite indoor partition device and rolled into the guide rail bin along the upper and lower spiral guide rails through the exit channel, so that the partition board is in the rolled state, so that the partition between the two walls is released by retracting a partition board; The two doors of each partition room and the door on the interface slot are closed by the control switch.
9. A method for indoor partitioning, characterized in that: During the indoor wall construction phase, a cavity with the same height as the wall is constructed in the area to be partitioned of two parallel indoor walls, and a door is set on the cavity, and the door is aligned with the wall surface; Constructing an exit passage and an interface passage in the chamber at the same height as the wall; constructing spiral guide rails on the top and bottom plates of the chamber respectively, and extending the spiral guide rails to the outlet channel; The partition plate is rolled up in the chamber along the upper and lower spiral guide rails; A driving mechanism is installed on the inner surface of the exit passage, and a control switch is used to control the door and the driving mechanism; the driving mechanism controls the partition plate in the wall to extend from the exit passage in the wall along the spiral guide rail to the interface passage in the opposite wall, and to retract the partition plate in the interface passage in the opposite wall and retract it through the exit passage of the wall along the spiral guide rail into the cavity in the wall; The partition board comprises: The outer splints are two parallel and spaced apart pieces, and one of the outer splints is aligned with the driving mechanism. The upper and lower ends of the outer splints are provided with a plurality of grooves at equal intervals along the length direction thereof; A connecting plate, located at the center of the two outer plywood plates in the longitudinal direction and embedded in the two outer plywood plates; An inner core plate is arranged between the two outer plywood plates, the inner core plate comprising an upper core plate and a lower core plate, the inner core plate being retracted inwardly of the outer plywood plates, and the inner core plate and the outer plywood plates are respectively formed with guide grooves matching the upper spiral guide rail and the lower spiral guide rail at upper and lower ends; There are multiple telescopic rods, which are evenly arranged between the connecting plate and the upper core plate and between the connecting plate and the lower core plate; Pressure sensing elements are arranged at both ends of the outer clamping plate in the length direction and respectively at the top end of the upper core plate and the bottom end of the lower core plate; The driving mechanism comprises: a box body, wherein the box body is provided with an opening, the opening being aligned with a partition plate located in the outlet channel; A transmission rod is arranged in the box body through a bearing seat; A driver, disposed at least at one end of the transmission rod; a transmission wheel, disposed on the transmission rod, wherein a portion of the transmission wheel is located inside the box body and a portion of the transmission wheel extends outside the box body through the opening; Attachment rods are evenly distributed on the outer circumference of the transmission wheel, and the cross-sectional dimensions of the attachment rods are smaller than the dimensions of the grooves on the outer clamping plate; The control chip is arranged in the box body and is connected with the control switch, the driver, the pressure sensing element and the telescopic rod.
Citation Information
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