Bathroom cabinet
By installing height-adjustable shelves and lifting components inside the bathroom cabinet, the problem of fixed shelf spacing height is solved, enabling independent lifting of shelves and flexible adjustment of storage space, thus improving the convenience of use and space utilization of the bathroom cabinet.
Patent Information
- Application Number
- CN202422772646.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-11-14
AI Technical Summary
The shelf spacing of existing bathroom cabinets is fixed and cannot be adjusted according to user needs, resulting in inconvenience and low utilization of internal space.
Adjustable shelves are installed inside the bathroom cabinet. The shelves are raised and lowered by a lifting assembly. By using the cooperation of drive components, transmission components and connecting blocks, combined with the switching of magnetic bodies, the independent raising and lowering and height adjustment of the shelves can be achieved.
It achieves stepless adjustment of shelf height, improving the convenience of bathroom cabinets and the utilization of internal space. Users can adjust the height of storage space according to their needs, and achieve automatic adjustment through control switches and position sensors.
Smart Images

Figure CN223569226U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to bathroom article technical field, especially a bathroom cabinet. BACKGROUND
[0002] The bathroom cabinet is a kind of storage article installed in bathroom, and is suitable for small bathroom.The bathroom cabinet is generally provided with a layer plate, which is used to divide the space in the bathroom cabinet into multiple layers to fully utilize the space inside the bathroom cabinet.
[0003] At present, the layer plate of the existing bathroom cabinet is generally fixedly arranged, and the height interval between the layer plates is fixed, which causes the user to be unable to adjust the height interval between the layer plates according to the own demand, reduces the convenience of the bathroom cabinet, and moreover, the heights of bathroom articles are often different, the height interval between the layer plates is fixedly unchanged, and the utilization rate of the space inside the bathroom cabinet is also affected. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a bathroom cabinet, by arranging the layer plate with adjustable height inside the cabinet body, the height of the layer divided by the layer plate is adjustable, to solve the problems of inconvenient use and insufficient utilization rate of internal space of the existing bathroom cabinet.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A bathroom cabinet, comprising:
[0007] A cabinet body having a storage chamber;
[0008] At least one layer plate arranged to be able to lift on the inner side of the storage chamber and divide the storage chamber into at least two storage spaces;
[0009] A lifting assembly for driving the layer plate to lift to adjust the height of the storage space, wherein the lifting assembly comprises:
[0010] A driving member arranged in the cabinet body and used to output power;
[0011] A transmission member in transmission connection with the driving member, and the transmission member is arranged at least on both sides of the layer plate in length direction and extends along the height direction of the storage chamber;
[0012] A connecting block arranged on both sides of the layer plate in length direction and connected with the transmission member, so that the connecting block can move along the extension direction of the transmission member under the condition that the driving member outputs power, and stay at the current position under the condition that the driving member stops outputting power.
[0013] In some embodiments, the number of the layer plates is multiple, and the multiple layer plates are arranged in sequence in the height direction of the storage chamber, and
[0014] Each of the layer plates is provided with the connecting block on both sides in the length direction, and each of the layer plates is arranged with the transmission member on both sides in the length direction, so that each of the layer plates can be driven to independently lift by the driving member.
[0015] In some embodiments, the transmission members of the at least two layer plates are connected to the same driving member.
[0016] In some embodiments, the lifting assembly further comprises:
[0017] At least two transmission structures for connecting the driving member and the transmission member, wherein the transmission structure comprises:
[0018] A transmission input shaft in transmission connection with the driving member;
[0019] A transmission output shaft arranged at the end of the transmission input shaft, and in transmission connection with the transmission member of one of the layer plates and one of the transmission output shafts;
[0020] A first transmission hole arranged in one of the transmission input shaft and the transmission output shaft;
[0021] A second transmission hole arranged in the other of the transmission input shaft and the transmission output shaft;
[0022] A first magnetic body with one end matched with the first transmission hole and the other end matched with the second transmission hole;
[0023] A second magnetic body connected to the second transmission hole; and
[0024] The second magnetic body is arranged to be switchable between repelling the first magnetic body and attracting the first magnetic body, so that in the case of the second magnetic body repelling the first magnetic body, the first magnetic body is away from the second magnetic body, one end of the first magnetic body enters the first transmission hole and is in transmission connection with the first transmission hole, and the other end of the first magnetic body is in transmission connection with the second transmission hole, so that the transmission input shaft and the transmission output shaft are in transmission connection; and in the case of the second magnetic body attracting the first magnetic body, the first magnetic body is close to the second magnetic body, and the first magnetic body is away from the first transmission hole, so that the transmission input shaft and the transmission output shaft are disconnected.
[0025] In some embodiments, the bathroom cabinet further comprises:
[0026] A door body is movably connected to the cabinet body to open and close the storage chamber.
[0027] A control switch is arranged on the door body and electrically connected to the driving member to control the working state of the driving member.
[0028] In some embodiments, the number of the layer plates is at least two, and the control switch comprises at least:
[0029] A first control key is used to control the driving member to move the layer plates upward.
[0030] A second control key is used to control the driving member to move the layer plates downward.
[0031] A third control key is used to switch the transmission input shaft and the transmission output shaft currently connected to each other to move the corresponding layer plates.
[0032] In some embodiments, the lifting assembly further comprises:
[0033] A guide groove is arranged in the cabinet body and extends along the height direction of the cabinet body, and the groove of the guide groove is connected to the storage chamber.
[0034] The connecting block extends into the guide groove through the groove and is connected to the inner side of the guide groove to move the connecting block along the extension direction of the guide groove.
[0035] In some embodiments, the groove of the guide groove is provided with a plurality of shielding members arranged along the extension direction of the guide groove to cover the groove.
[0036] The plurality of shielding members are elastically connected to the guide groove, so that in the case that the connecting block contacts the corresponding shielding member, the corresponding shielding member can be elastically deformed by the connecting block, and in the case that the connecting block loses contact with the corresponding shielding member, the corresponding shielding member returns to the initial position.
[0037] In some embodiments, a guide block is arranged on the connecting block and arranged on the side of the connecting block facing the side wall of the guide groove and in contact with the side wall of the guide groove.
[0038] In some embodiments, a position sensor is arranged on the layer plate to monitor the storage space below the layer plate, and the position sensor is electrically connected to the driving member to control the working state of the driving member.
[0039] Compared with the prior art, the bathroom cabinet has the following advantages:
[0040] The bathroom cabinet drives the connecting block to move along the extension direction of the transmission member through the driving member, and then drives the layer plate to move along the extension direction of the transmission member, so that the layer plate can be lifted on the inner side of the storage chamber under the driving of the driving member, thereby achieving height adjustment of the storage space.
[0041] Moreover, the bathroom cabinet drives the corresponding transmission structure through the driving member, drives the corresponding layer plate to lift on the inner side of the storage chamber, and drives multiple layer plates through one driving member, and each layer plate can be independently lifted.
[0042] Moreover, the bathroom cabinet drives the corresponding transmission structure through the driving member, drives the corresponding layer plate to lift on the inner side of the storage chamber, and drives multiple layer plates through one driving member, and each layer plate can be independently lifted. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 is a schematic view of the bathroom cabinet in the embodiment of the utility model;
[0044] Figure 2 is a schematic view of the cabinet body in the embodiment of the utility model;
[0045] Figure 3 is Figure 2 is an enlarged view of A in the embodiment of the utility model;
[0046] Figure 4 is a schematic view of the cooperation between the layer plate and the lifting assembly in the embodiment of the utility model;
[0047] Figure 5 is a schematic view of the cooperation between the connecting block and the guide groove in the embodiment of the utility model;
[0048] Figure 6 is a schematic view of the transmission structure in the embodiment of the utility model;
[0049] Figure 7 is a schematic view of the transmission structure in the embodiment of the utility model in the transmission connection state;
[0050] Figure 8is a schematic view of the transmission structure in the disconnected state in the embodiment of the utility model;
[0051] Figure 9 is the cooperation schematic view of the control switch and the door body in the embodiment of the utility model.
[0052] In the figure, 100, bathroom cabinet;1, cabinet body;2, layer board;3, lifting assembly;3a, driving piece;3b, transmission piece;3c, connecting block;4, storage room;4a, storage space;5, installation room;6, transmission structure;6a, transmission input shaft;6b, transmission output shaft;6c, first transmission hole;6d, second transmission hole;6e, first magnetic body;6f, second magnetic body;7, door body;8, control switch;8a, first control key;8b, second control key;8c, third control key;9, position sensor;10, connecting plate;11, guide groove;12, guide block;13, shielding piece;14, control panel. DETAILED DESCRIPTION
[0053] The specific embodiments of the utility model are described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.
[0054] In the description of the utility model, it should be understood that when an element is referred to as "fixed to" or "provided on" another element, it can be directly on another element or indirectly on another element. When an element is referred to as "connected to" another element, it can be directly connected to another element or indirectly connected to another element. The terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected;It can be mechanical connection, or electrical connection;It can be directly connected, or indirectly connected through intermediate medium, or the communication between two elements or the interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific situation.
[0055] In the description of the utility model, it should be understood that the orientation or position relationship indicated by the terms "height", "upper", "lower", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like in the utility model is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, so it cannot be understood as a limitation on the utility model.
[0056] In the description of the utility model, it should be understood that the terms "first", "second" are used in the utility model only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include one or more features.
[0057] Embodiment
[0058] Reference Figures 1-9 The utility model provides a kind of bathroom cabinet 100 provided in the embodiment, including cabinet 1, two layer boards 2 and lifting assembly 3, wherein, cabinet 1 has storage room 4;Layer board 2 is set to be able to lift in the inside of the storage room 4, and two layer boards 2 divide storage room 4 into three storage spaces 4a;Lifting assembly 3 is used to drive layer board 2 to lift, to adjust the height of storage space 4a.
[0059] Layer board 2 is flat plate structure, it is set in storage room 4, for carrying the bathroom appliance that user stores. It can be understood that the number of layer board 2 can be configured according to the specification size of cabinet 1 and the demand of user, it can be one, two, three or more than three. The embodiment will be with two layer boards 2 of the cabinet 1 of configuration to the bathroom cabinet 100 of this embodiment is explained.
[0060] The upper side and the lower side of the bathroom cabinet 100 of the embodiment are distinguished by the upper side and the lower side of the bathroom cabinet 100 in general use, and the upper side and the lower side are defined as the height direction of the bathroom cabinet 100. The left side and the right side of the bathroom cabinet 100 of the embodiment are distinguished by the left side and the right side of the user facing the bathroom cabinet 100, and the left side and the right side are defined as the length direction of the bathroom cabinet 100. When the user faces the bathroom cabinet 100, the side directly opposite the user is the front side, and the other side opposite the front side is the rear side.
[0061] In the embodiment, lifting assembly 3 includes driving member 3a, transmission member 3b and connecting block 3c, wherein driving member 3a is set in cabinet 1, and is used to output power;Transmission member 3b is in transmission connection with driving member 3a, and transmission member 3b is arranged at least on both sides of layer board 2 in the length direction, and extends along the height direction of storage room 4;Connecting block 3c is arranged on both sides of layer board 2 in the length direction, and is connected with transmission member 3b, so that connecting block 3c can move along the extension direction of transmission member 3b under the condition that driving member 3a outputs power, and stay at the current position under the condition that driving member 3a stops transmitting power.
[0062] By setting the lifting assembly 3, the bathroom cabinet 100 can output power by the driving member 3a, so that the connecting block 3c moves along the extension direction of the transmission member 3b, and in turn drives the layer plate 2 to move along the extension direction of the transmission member 3b. In this way, the layer plate 2 can be lifted on the inside of the storage chamber 4 under the driving of the driving member 3a, so as to realize the height adjustment of the storage space 4a. Moreover, in the case that the driving member 3a stops outputting power, the connecting block 3c will stop at the current position. In this way, the user can control the driving member 3a to make the connecting block 3c stop at any position in the extension direction of the transmission member 3b, so as to realize the stepless adjustment of the height of the storage space 4a.
[0063] Considering the application environment of the bathroom cabinet 100 and the general home environment, the driving member 3a of the bathroom cabinet 100 can be selected as a transmission motor. The transmission motor outputs power to drive the transmission member 3b and the connecting block 3c to act. In order to facilitate the installation and protection of the driving member 3a, the top of the cabinet body 1 can be provided with a mounting chamber 5 independent of the storage chamber 4, and the driving member 3a is assembled in the mounting chamber 5. Of course, in order to ensure that the transmission member 3b can connect the driving member 3a and the connecting block 3c, the mounting chamber 5 needs to be communicated with the storage chamber 4.
[0064] Through the cooperation of the transmission member 3b and the connecting block 3c, the power output by the driving member 3a can be transmitted to the corresponding layer plate 2, so as to drive the corresponding layer plate 2 to lift in the storage chamber 4. It can be understood that the cooperation structure of the transmission member 3b and the connecting block 3c is various, for example, the transmission member 3b can be a screw structure, and the connecting block 3c can be a sliding block matched with the screw structure. By arranging the screw structure vertically along the height direction and transmitting the power output by the driving member 3a to the screw structure through a gear structure, the screw structure is rotated, and in turn the sliding block is lifted. At this time, the screw structure will only rotate relative to the cabinet body 1, and does not need to move along the height direction of the storage chamber 4.
[0065] Alternatively, referring to Figure 2 As an example of the present embodiment, the transmission member 3b can also be a metal cable. The connecting block 3c is arranged on both sides of the layer plate 2 in the length direction and is connected and fixed with the end of the metal cable. Under the driving of the driving member 3a, the metal cable will move along the height direction of the storage chamber 4, so as to drive the connecting block 3c to move along the height direction of the storage chamber 4, and realize the lifting of the layer plate 2.
[0066] The bathroom cabinet 100 of the present embodiment is provided with two shelves 2 arranged in sequence in the height direction of the storage chamber 4, and each shelf 2 is provided with a connecting block 3c on each side in the length direction, and each shelf 2 is provided with a transmission member 3b on each side in the length direction. In this way, the driving member 3a transmits the power output to the transmission member 3b of the shelf 2 above, so as to drive the shelf 2 above to perform the lifting action. Correspondingly, the driving member 3a transmits the power output to the transmission member 3b of the shelf 2 below, so as to drive the shelf 2 below to perform the lifting action, so that each shelf 2 can be driven by the driving member 3a to be lifted independently.
[0067] Of course, in order to ensure the balance of the shelf 2 during lifting, each shelf 2 can be provided with a plurality of connecting blocks 3c on each side in the length direction. For example, two connecting blocks 3c are arranged on the left side of each shelf 2, and two connecting blocks 3c are arranged on the right side of each shelf 2. Each connecting block 3c is correspondingly provided with a transmission member 3b, such as a metal cable.
[0068] It can be understood that as the number of shelves 2 arranged in the cabinet body 1 increases, in order to ensure that each shelf 2 can be lifted independently, the number of transmission members 3b and connecting blocks 3c arranged in the bathroom cabinet 100 will also increase. In order to avoid the lifting assembly 3 occupying too much space and affecting the design specifications of the bathroom cabinet 100, as an example of the present embodiment, the transmission members 3b arranged on the two shelves 2 are connected to the same driving member 3a. For example, taking the metal cable as an example, in the case that two connecting blocks 3c are arranged on the left side of each shelf 2 and two connecting blocks 3c are arranged on the right side of each shelf 2, each shelf 2 will be provided with four metal cables, and two shelves 2 will be provided with eight metal cables. At this time, the eight metal cables will be driven by the same driving motor. In this way, only one driving motor assembly space needs to be reserved in the cabinet body 1, so as to ensure that the lifting assembly 3 will not excessively expand the specifications of the bathroom cabinet 100.
[0069] Of course, in order to drive two shelves 2 to lift by the same driving motor, the power output to the two shelves 2 needs to be selectively controlled, so that the two shelves 2 can be lifted independently. Referring to Figure 4 、 6 As an example of the present embodiment, the lifting assembly 3 further comprises two transmission structures 6 for connecting the driving member 3a and the transmission member 3b of each shelf 2. The transmission structure 6 comprises a transmission input shaft 6a, a transmission output shaft 6b, a first transmission hole 6c, a second transmission hole 6d, a first magnetic body 6e and a second magnetic body 6f, wherein
[0070] The transmission input shaft 6a is in transmission connection with the driving member 3a; the transmission output shaft 6b is arranged at the end of the transmission input shaft 6a, and the transmission member 3b of one layer plate 2 is in transmission connection with one transmission output shaft 6b; the first transmission hole 6c is arranged on the transmission input shaft 6a; the second transmission hole 6d is arranged on the transmission output shaft 6b and is arranged opposite to the first transmission hole 6c; one end of the first magnetic body 6e is matched with the first transmission hole 6c, and the other end is matched with the second transmission hole 6d; the second magnetic body 6f is connected to the second transmission hole 6d.
[0071] Further, the second magnetic body 6f is arranged to be able to switch between repelling the first magnetic body 6e and attracting the first magnetic body 6e, so that in the case that the second magnetic body 6f repels the first magnetic body 6e, the first magnetic body 6e is away from the second magnetic body 6f, one end of the first magnetic body 6e enters the first transmission hole 6c and is in transmission connection with the first transmission hole 6c, and the other end of the first magnetic body 6e is in transmission connection with the second transmission hole 6d, so that the transmission input shaft 6a is in transmission connection with the transmission output shaft 6b; and in the case that the second magnetic body 6f attracts the first magnetic body 6e, the first magnetic body 6e is close to the second magnetic body 6f, and the first magnetic body 6e is away from the first transmission hole 6c, so that the transmission input shaft 6a is disconnected from the transmission output shaft 6b.
[0072] Generally, the second magnetic body 6f can be selected as an electromagnet, by changing the input current, the magnetic field of the second magnetic body 6f is changed, so that the magnetic pole of the second magnetic body 6f towards the first magnetic body 6e can be switched between the same name magnetic pole and the different name magnetic pole. The first magnetic body 6e can be selected as a permanent magnet, so that the first magnetic body 6e can always maintain the generation of the magnetic field and the magnetic pole of the magnetic field is unchanged.
[0073] For example, one end of the first magnetic body 6e towards the second magnetic body 6f can be N pole, and according to the different input current, one end of the second magnetic body 6f towards the first magnetic body 6e can be N pole or S pole. When the magnetic poles of the first magnetic body 6e and the second magnetic body 6f arranged opposite are both N poles, the second magnetic body 6f repels the first magnetic body 6e, and the first magnetic body 6e is away from the second magnetic body 6f; when one of the magnetic poles of the first magnetic body 6e and the second magnetic body 6f arranged opposite is N pole and the other is S pole, the second magnetic body 6f attracts the first magnetic body 6e, and the first magnetic body 6e is close to the second magnetic body 6f.
[0074] In the case that the driving member 3a is selected as a transmission motor, the transmission input shaft 6a is generally rotated in the circumferential direction through gear transmission, thereby achieving transmission connection with the driving member 3a. The first magnetic body 6e is connected between the transmission input shaft 6a and the transmission output shaft 6b, and serves as a transmission pin structure to transmit power borne by the transmission input shaft 6a to the transmission output shaft 6b. In order to enable the first magnetic body 6e to serve as the transmission pin structure between the transmission input shaft 6a and the transmission output shaft 6b, and to ensure that the first magnetic body 6e can be movably connected with the first transmission hole 6c and the second transmission hole 6d, the first magnetic body 6e can be in the form of a strip structure with edges, such as a square or a polygonal shape.
[0075] By changing the magnetic field of the second magnetic body 6f, the transmission structure 6 can switch between transmission connection and disconnection. In this way, the same driving member 3a can be connected to multiple transmission structures 6 at the same time, such as two, three, four or more. According to the number of the layer plates 2, a corresponding transmission structure 6 is configured for each layer plate 2, and the magnetic field of the second magnetic body 6f of each transmission structure 6 is controlled. This can enable the transmission structure 6 corresponding to the layer plate 2 that needs to be adjusted in height to be in transmission connection with the driving member 3a, while other transmission structures 6 are disconnected from the driving member 3a, thereby achieving the purpose of driving multiple layer plates 2 with the same driving member 3a, and enabling each layer plate 2 to be independently lifted.
[0076] It should be noted that the first transmission hole 6c can also be arranged on the transmission output shaft 6b, and correspondingly, the second transmission hole 6d is arranged on the transmission input shaft 6a. Therefore, for the transmission structure 6, the second magnetic body 6f can be arranged at the transmission input shaft 6a or at the transmission output shaft 6b, and there is no difference in the implementation effect. In the same transmission structure 6, two transmission output shafts 6b can be arranged, and the two transmission output shafts 6b are arranged at the two ends of the transmission input shaft 6a along the axial direction, and the second magnetic body 6f or the first magnetic body 6e is correspondingly arranged in each transmission output shaft 6b, so that the transmission input shaft 6a can synchronously drive the two transmission output shafts 6b to rotate. In this way, all the transmission members 3b arranged on the same layer plate 2, such as four metal cables on the same layer plate 2, can be wound on the two transmission output shafts 6b, thereby ensuring the stable lifting of the layer plate 2.
[0077] In order to facilitate the user to control the action of the driving member 3a and the lifting of the layer plate 2 in the cabinet 1, the bathroom cabinet 100 can be provided with corresponding control buttons. Referring to Figure 9 , as an example of the present embodiment, the bathroom cabinet 100 further comprises a door body 7 and a control switch 8, wherein the door body 7 is movably connected to the cabinet 1 to open and close the storage compartment 4; the control switch 8 is arranged on the rear side of the door body 7 and is electrically connected with the driving member 3a to control the working state of the driving member 3a.
[0078] It can be understood that when the user controls the lifting of the layer plate 2 to adjust the height of the storage space 4a, the user generally needs to directly observe the position of the layer plate 2 and the height of the articles placed on the layer plate 2. For this purpose, the control switch 8 is arranged on the rear side of the door body 7, so that the user can directly observe the layer plate 2 and control the switch 8 after opening the door body 7, thereby improving the user experience.
[0079] When the number of layer plates 2 in the cabinet body 1 is greater than one, in order to ensure that each layer plate 2 can be independently controlled to be lifted, the number of control buttons will generally increase, but this will also increase the complexity of the wiring arrangement. Therefore, the control object of the control button can be switched to achieve independent control of multiple layer plates 2.
[0080] Of course, the control switch 8 can also be arranged at other positions of the door body 7, such as the front side of the door body 7 or the side of the door body 7. The arrangement position of the control switch 8 can be adjusted according to the size of the door body 7 and the wiring position inside the bathroom cabinet.
[0081] Reference Figure 9 As an example of the present embodiment, in the case where the number of layer plates 2 is at least two, the control switch 8 at least includes a first control button 8a, a second control button 8b, and a third control button 8c, wherein the first control button 8a is used to control the driving member 3a to act, so that the layer plate 2 is lifted; the second control button 8b is used to control the driving member 3a to act, so that the layer plate 2 is lowered; and the third control button 8c is used to switch the transmission input shaft 6a and the transmission output shaft 6b currently connected in transmission, so that the corresponding layer plate 2 is lifted or lowered.
[0082] The user can change the magnetic field direction of the second magnetic body 6f of each transmission structure 6 through the third control button 8c. Taking two layer plates 2 as an example, in the normal state, the third control button 8c can make the transmission structure 6 of the upper layer plate 2 connected in transmission with the driving member 3a, and the transmission structure 6 of the lower layer plate 2 disconnected from the driving member 3a. At this time, the driving member 3a outputs power to make the upper layer plate 2 lifted or lowered. When the user needs to adjust the lower layer plate 2, the third control button 8c can be pressed to disconnect the transmission structure 6 of the upper layer plate 2 from the driving member 3a, and connect the transmission structure 6 of the lower layer plate 2 with the driving member 3a in transmission. At this time, the driving member 3a outputs power to make the lower layer plate 2 lifted or lowered, thereby switching the transmission input shaft 6a and the transmission output shaft 6b currently connected in transmission, so that the corresponding layer plate 2 is lifted or lowered.
[0083] In addition to the user manually controlling the lifting of the layer plate 2 in the cabinet body 1, the bathroom cabinet 100 can also detect the height of the articles placed on the layer plate 2, and automatically adjust the height of the corresponding storage space 4a based on the height of the articles on the layer plate 2.
[0084] Referring to Figures 2-3 As an example of the present embodiment, a position sensor 9 is arranged on the shelf 2 to monitor the storage space 4a below the shelf 2, and the position sensor 9 is electrically connected to the driving member 3a to control the working state of the driving member 3a.
[0085] When the position sensor 9 detects an article in the storage space 4a it monitors, the position sensor 9 can send a signal to make the driving member 3a act to drive the shelf 2 where the position sensor 9 is located to rise, thereby achieving automatic adjustment of the height of the storage space 4a.
[0086] Depending on the type of the position sensor 9 used, the position sensor 9 can be arranged in various ways. For example, the position sensor 9 can be arranged below the shelf 2 with its probe head facing the storage space 4a below the shelf 2, or, referring to Figures 2-3 The position sensor 9 can also be arranged on one of the lengthwise sides of the shelf 2 through a connecting plate 10 with its probe head facing the other lengthwise side of the shelf 2.
[0087] It should be noted that the control switch 8 and the position sensor 9 are generally connected to a control board 14, and the working state of the driving member 3a is controlled by sending corresponding electrical signals to the control board 14 and outputting control instructions by the control board 14. The control board 14 can be a conventional PLC control, and the connection of the control switch 8 and the position sensor 9 to the control board 14 will not be described here.
[0088] In order to ensure that the shelf 2 rises and falls smoothly without deviating from the cabinet 1, a guide structure can be arranged in the cabinet 1 to guide the direction of the rising and falling of the shelf 2. Referring to Figure 4 As an example of the present embodiment, the lifting assembly 3 further comprises a guide groove 11 arranged in the cabinet 1 and extending along the height direction of the cabinet 1, and the slot of the guide groove 11 is connected to the storage compartment 4; and the connecting block 3c extends into the guide groove 11 through the slot and is connected to the inner side of the guide groove 11, so that the connecting block 3c rises and falls along the extension direction of the guide groove 11.
[0089] An auxiliary structure can also be arranged between the connecting block 3c and the guide groove 11 to make the connection between the connecting block 3c and the guide groove 11 more closely matched. Referring to Figure 4 As an example of the present embodiment, a guide block 12 is arranged on the connecting block 3c towards the side wall of the guide groove 11 and abuts against the side wall of the guide groove 11.
[0090] Of course, when the guide groove 11 is used as the guide structure, dust may enter the interior of the guide groove 11 through the slot, affecting the cleanliness of the bathroom cabinet 100. In this regard, referring to Figures 2-4As an example of the embodiment, the slot of the guide groove 11 is provided with a plurality of shielding pieces 13 arranged along the extension direction of the guide groove 11 to cover the slot, and the plurality of shielding pieces 13 are elastically connected with the guide groove 11, so that in the case that the connecting block 3c contacts the corresponding shielding piece 13, the corresponding shielding piece 13 can be elastically deformed by being pushed by the connecting block 3c, and in the case that the connecting block 3c loses contact with the corresponding shielding piece 13, the corresponding shielding piece 13 returns to the initial position.
[0091] The shielding piece 13 can be a dust cover or the like structure, for example, the shielding piece 13 can be a strip-shaped structure, one end of which is connected to one side of the guide groove 11, and the other end extends towards the other side of the guide groove 11, or the shielding piece 13 is provided on both sides of the guide groove 11 and extends towards the middle of the guide groove 11 to cover the slot of the guide groove 11. However, it should be noted that the shielding piece 13 needs to be elastically deformed to meet the lifting requirement of the connecting block 3c, so that the shielding piece 13 can be pushed by the connecting block 3c to avoid the advancing path of the connecting block 3c during the lifting process of the connecting block 3c, to avoid the shielding piece 13 hindering the movement of the connecting block 3c.
[0092] In summary, the bathroom cabinet 100 provided by the embodiment of the present application is driven by the output power of the driving member 3a, so that the connecting block 3c can move along the extension direction of the transmission member 3b, thereby driving the layer plate 2 to move along the extension direction of the transmission member 3b. In this way, the layer plate 2 can be lifted on the inside of the storage chamber 4 under the driving of the driving member 3a, thereby achieving the height adjustment of the storage space 4a. Moreover, in the case that the driving member 3a stops outputting power, the connecting block 3c stops at the current position, so that the user can control the driving member 3a to make the connecting block 3c stop at any position in the extension direction of the transmission member 3b, thereby achieving the stepless adjustment of the height of the storage space 4a.
[0093] Moreover, the bathroom cabinet 100 provided by the embodiment of the present application is provided with the transmission structure 6, which utilizes the relatively arranged transmission input shaft 6a and transmission output shaft 6b, and the first magnetic body 6e and the second magnetic body 6f cooperating with each other, so that the two transmission structures 6 can adjust the connection and cooperation of the first magnetic body 6e and the first transmission hole 6c based on the current polarity of the second magnetic body 6f, thereby enabling the corresponding transmission structure 6 to be driven by the driving member 3a, driving the corresponding layer plate 2 to lift on the inside of the storage chamber 4, so that the plurality of layer plates 2 can be driven by the same driving member 3a, and each layer plate 2 can be independently lifted.
[0094] Moreover, the bathroom cabinet 100 provided by the embodiment of the utility model can make the user observe and adjust the height of the storage space 4a when the door body 7 is opened, so as to meet the use demand of the user, and the bathroom cabinet 100 is provided with the position sensor 9, so that the layer plate 2 can adjust the height of the corresponding storage space 4a based on the height of the objects carried thereby, and the automatic adjustment of the height of the storage space 4a is realized.
[0095] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for the ordinary skilled in the art, without departing from the technical principle of the utility model, a number of improvements and replacements can be made, and these improvements and replacements should also be regarded as the protection scope of the utility model.
Claims
1. A bathroom cabinet, characterized in that, The utility model relates to a cabinet, and particularly relates to a cabinet with adjustable storage space. The cabinet comprises: a cabinet body (1) having a storage chamber (4); at least one layer plate (2) arranged to be capable of lifting on the inner side of the storage chamber (4) and separating the storage chamber (4) into at least two storage spaces (4a); a lifting assembly (3) for driving the layer plate (2) to lift to adjust the height of the storage space (4a), wherein the lifting assembly (3) comprises: a driving member (3a) arranged in the cabinet body (1) and used for outputting power; a transmission member (3b) in transmission connection with the driving member (3a), and the transmission member (3b) is arranged at least on both sides of the layer plate (2) in the length direction and extends along the height direction of the storage chamber (4); 2. The bathroom cabinet (100) according to claim 1, characterized in that a connecting block (3c) arranged on both sides of the layer plate (2) in the length direction and connected with the transmission member (3b), so that the connecting block (3c) is capable of moving along the extension direction of the transmission member (3b) when the driving member (3a) outputs power and staying at the current position when the driving member (3a) stops outputting power. The number of layer plates (2) is multiple, and the multiple layer plates (2) are arranged in sequence in the height direction of the storage chamber (4), and 3. The bathroom cabinet (100) according to claim 2, characterized in that each layer plate (2) is correspondingly provided with the connecting block (3c) on both sides in the length direction, and each layer plate (2) is correspondingly arranged with the transmission member (3b) on both sides in the length direction, so that each layer plate (2) can be independently lifted by the driving member (3a).
4. The bathroom cabinet (100) according to claim 3, characterized in that The transmission members (3b) of at least two layer plates (2) are commonly connected to the same driving member (3a). The lifting assembly (3) further comprises: at least two transmission structures (6) for connecting the driving member (3a) and the transmission member (3b), wherein the transmission structure (6) comprises: a transmission input shaft (6a) in transmission connection with the driving member (3a); a transmission output shaft (6b) arranged at the end of the transmission input shaft (6a) and in transmission connection with the transmission member (3b) of one layer plate (2); a first transmission hole (6c) arranged in one of the transmission input shaft (6a) and the transmission output shaft (6b); a second transmission hole (6d) arranged in the other of the transmission input shaft (6a) and the transmission output shaft (6b); a first magnetic body (6e) having one end matched with the first transmission hole (6c) and the other end matched with the second transmission hole (6d); a second magnetic body (6f) connected with the second transmission hole (6d); and The second magnetic body (6f) is arranged to be able to switch between repelling the first magnetic body (6e) and attracting the first magnetic body (6e), so that in the case that the second magnetic body (6f) repels the first magnetic body (6e), the first magnetic body (6e) is away from the second magnetic body (6f), one end of the first magnetic body (6e) enters the first transmission hole (6c) and is in transmission connection with the first transmission hole (6c), and the other end of the first magnetic body (6e) is in transmission connection with the second transmission hole (6d), so that the transmission input shaft (6a) and the transmission output shaft (6b) are in transmission connection; and in the case that the second magnetic body (6f) attracts the first magnetic body (6e), the first magnetic body (6e) is close to the second magnetic body (6f), the first magnetic body (6e) is separated from the first transmission hole (6c), so that the transmission input shaft (6a) and the transmission output shaft (6b) are disconnected.
5. The bathroom cabinet (100) according to claim 4, characterized in that The bathroom cabinet (100) further comprises: a door body (7) movably connected to the cabinet body (1) to open and close the storage chamber (4); a control switch (8) arranged on the door body (7) and electrically connected with the driving member (3a) to control the working state of the driving member (3a).
6. The bathroom cabinet (100) according to claim 5, characterized in that The number of the layer plates (2) is at least two, and the control switch (8) at least comprises: a first control key (8a) for controlling the driving member (3a) to act so as to make the layer plates (2) rise; a second control key (8b) for controlling the driving member (3a) to act so as to make the layer plates (2) fall; a third control key (8c) for switching the transmission input shaft (6a) and the transmission output shaft (6b) currently in transmission connection so as to make the corresponding layer plates (2) rise and fall.
7. The bathroom cabinet (100) according to claim 1, characterized in that The lifting assembly (3) further comprises: a guide groove (11) arranged in the cabinet body (1) and extending along the height direction of the cabinet body (1), and the slot of the guide groove (11) is communicated with the storage chamber (4); and the connecting block (3c) extends into the guide groove (11) through the slot and is connected with the inner side of the guide groove (11), so that the connecting block (3c) rises and falls along the extension direction of the guide groove (11).
8. The bathroom cabinet (100) according to claim 7, characterized in that The slot of the guide groove (11) is provided with a plurality of shielding pieces (13), and the plurality of shielding pieces (13) are arranged along the extension direction of the guide groove (11) to cover the slot; and the plurality of shielding pieces (13) are elastically connected with the guide groove (11), so that in the case that the connecting block (3c) contacts the corresponding shielding piece (13), the corresponding shielding piece (13) can be elastically deformed by being pushed by the connecting block (3c), and in the case that the connecting block (3c) loses contact with the corresponding shielding piece (13), the corresponding shielding piece (13) returns to the initial position.
9. The bathroom cabinet (100) according to claim 7, characterized in that The connecting block (3c) is provided with a guide block (12), which is arranged on the side of the connecting block (3c) facing the side wall of the guide groove (11) and is in contact with the side wall of the guide groove (11).
10. The bathroom cabinet (100) according to claim 1, characterized in that The layer plate (2) is provided with a position sensor (9) for monitoring the storage space (4a) below the layer plate (2), and the position sensor (9) is electrically connected with the driving member (3a) to control the working state of the driving member (3a).