Clean base stations and cleaning components
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-26
- Publication Date
- 2026-08-14
AI Technical Summary
[0002]现有技术中,主要通过电机驱动释放清洁基站,结构复杂,成本高,稳定性差,而手动驱动方式操作复杂,用户体验差
[0022]根据本公开实施例的清洁组件,包括:上述的清洁基站,所述清洁基站具有收纳腔;清洁主机,所述清洁主机具有使用状态和收纳状态,在所述收纳状态,所述清洁主机位于所述收纳腔内,在所述使用状态,所述清洁主机位于所述清洁基站的外侧。
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Figure CN122556876A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of cleaning components, and more specifically to a cleaning base station and a cleaning component. Background Technology
[0002] In existing technologies, the main method for releasing cleaning base stations is through motor drive, which is complex in structure, costly, and has poor stability. Manual drive methods are also complex to operate and provide a poor user experience. Summary of the Invention
[0003] In view of this, the present disclosure provides a cleaning base station with simple structure, low cost, high reliability, and no need for additional unlocking of the suction cup, which simplifies the operation process of moving and transporting the cleaning base station and improves the user experience.
[0004] This disclosure also provides a cleaning component, including the cleaning base station described above.
[0005] A cleaning base station according to an embodiment of this disclosure includes: a housing having a mounting port at its bottom; a suction cup disposed at the bottom of the housing, the suction cup having an air inlet at its top corresponding to the mounting port; a sealing plug movably disposed on the housing between a first position and a second position in a vertical direction, wherein at least a portion of the sealing plug is located within the air inlet to block the air inlet; and in the second position, the sealing plug opens the air inlet; a handle and a traction rope, the handle being movably disposed on the top of the housing to switch between a free state and a pulled-up state, and the traction rope being connected between the handle and the sealing plug; and the sealing plug moving from the first position to the second position during the process of the handle switching from the free state to the pulled-up state.
[0006] In some embodiments of this disclosure, the clean base station includes: a mounting housing disposed within a housing, the mounting housing having a wire-passing hole at the top and a clearance hole at the bottom; a portion of the traction rope passing through the wire-passing hole and located within the mounting housing; and a sealing plug movably mounted on the mounting housing; and a reset assembly disposed within the mounting housing, the reset assembly being used to normally drive the sealing plug to move from a second position to a first position, the reset assembly or the sealing plug passing through the clearance hole.
[0007] In some embodiments of this disclosure, the reset assembly includes: a rigid connecting seat movably mounted within the mounting housing, the rigid connecting seat connecting between the traction rope and the sealing plug; and an elastic reset member mounted within the mounting housing and disposed at at least one end of the rigid connecting seat along the moving direction of the rigid mounting seat.
[0008] In some embodiments of this disclosure, the two ends of the handle along its length are respectively connected to the two ends of the housing along a first direction, and the traction rope is connected to one end of the handle along its length. The first direction is perpendicular to the up and down direction.
[0009] In some embodiments of this disclosure, the cleaning base station includes: a mounting shell disposed within a housing, the top of the mounting shell having a wire-passing hole, and a sealing plug movably mounted on the mounting shell; the outer surface of the mounting shell is provided with a lead wire portion, the lead wire portion having a lead wire hole, the lead wire hole penetrating the lead wire portion along a first direction, the lead wire portion being located between the wire-passing hole and one end of the handle along the length direction along the first direction, and the traction rope passing through the lead wire hole.
[0010] In some embodiments of this disclosure, the housing includes an inner shell and an outer shell, the inner shell being located inside the outer shell, the handle being disposed in the outer shell, the mounting opening penetrating the bottom of the inner shell and the bottom of the outer shell, a sidewall of the inner shell along a first direction being spaced apart from a sidewall of the outer shell along a first direction to form a mounting gap, a portion of the traction rope being located in the mounting gap; along the first direction, the mounting gap is located between the lead wire portion and one end of the handle along its length; the inner shell has a wire passage hole, the mounting gap communicating with the space inside the inner shell through the wire passage hole, the traction rope passing through the wire passage hole, and the first direction being perpendicular to the vertical direction.
[0011] In some embodiments of this disclosure, the traction rope includes a first rope segment, a second rope segment, and a third rope segment. The first rope segment passes through the threading hole, one end of the first rope segment is connected to the sealing plug, and the other end is connected to the second rope segment. The second rope segment passes through the lead hole, and the end of the second rope segment facing away from the first rope segment passes through the threading hole and is connected to the third rope segment. The third rope segment is located in the installation gap, and the end of the third rope segment facing away from the second rope segment is connected to the handle.
[0012] In some embodiments of this disclosure, the lead portion is located on the upper end face of the mounting housing.
[0013] In some embodiments of this disclosure, the mounting housing includes a first housing portion and a second housing portion, which are detachably connected; the lead portion is integrally disposed on the first housing portion.
[0014] In some embodiments of this disclosure, the first shell portion includes an integrally connected first part and a second part, and the second shell portion includes an integrally connected third part and a fourth part; the first part and the third part are mated together, and the second part is mated with the fourth part to form an extensional structure; one of the extensional structure and the inner wall of the shell is provided with a positioning post, and the other is provided with a positioning hole that mates with the positioning post; the first part has a wire hole, the sealing plug is connected to the third part, and the lead wire portion is provided in the second part.
[0015] In some embodiments of this disclosure, the second portion protrudes upward beyond the first portion.
[0016] In some embodiments of this disclosure, the housing has a spaced-apart receiving cavity and a storage cavity, the receiving cavity and the storage cavity are arranged in a second direction, the receiving cavity is open on the side opposite to the storage cavity to form an opening, the mounting shell is located in the receiving cavity, and the storage cavity is adapted to store the cleaning host, the second direction and the vertical direction are perpendicular; the cleaning base station further includes: a storage module, the storage module is detachably disposed in the receiving cavity via the opening, and is located on the side of the mounting shell opposite to the storage cavity.
[0017] In some embodiments of this disclosure, the storage module includes: a storage box having an opening facing the same direction as the open opening; a cover plate movably connected to the storage box to switch between a closed and an open state; a first magnetic attractor on the cover plate and a second magnetic attractor on the housing, wherein the second magnetic attractor magnetically attracts the first magnetic attractor when the cover plate opens the open opening.
[0018] In some embodiments of this disclosure, the handle includes a lifting portion and a rotating disk, the lifting portion being connected to the rotating disk, one of the rotating disk and the housing having a pivot shaft and the other having a pivot hole, the pivot shaft and the pivot hole being rotatably engaged; the rotating disk having a connecting member located on the outer periphery of the pivot shaft; the housing having a communicating hole communicating with the space inside the housing, the traction rope passing through the communicating hole and connected to the connecting member.
[0019] In some embodiments of this disclosure, the handle further includes a decorative cover located on the side of the rotating disk opposite to the housing, and the connector connects the rotating disk to the decorative cover.
[0020] In some embodiments of this disclosure, a mounting groove is formed on the outer surface of the housing, the rotating disk is located in the mounting groove, and the communicating hole is located at the bottom wall of the mounting groove.
[0021] In some embodiments of this disclosure, the rotating disk has a first limiting protrusion on one side of its surface facing the housing, and the outer surface of the housing has a second limiting protrusion and a third limiting protrusion disposed opposite to each other along the circumference of the rotating disk. Along the circumference of the rotating disk, the first limiting protrusion is located between the second limiting protrusion and the third limiting protrusion. In the free state, the first limiting protrusion abuts against the second limiting protrusion. In the pulled-up state, the first limiting protrusion abuts against the third limiting protrusion.
[0022] A cleaning component according to an embodiment of this disclosure includes: the cleaning base station described above, the cleaning base station having a storage cavity; and a cleaning host having a usage state and a storage state, wherein in the storage state the cleaning host is located inside the storage cavity, and in the usage state the cleaning host is located outside the cleaning base station.
[0023] According to embodiments of the present disclosure, a cleaning assembly and a cleaning base station having the same are provided. A suction cup is disposed at the bottom of a housing, and the top of the suction cup has an air inlet corresponding to the mounting port. A sealing plug is movably disposed in the housing between a first position and a second position in a vertical direction. In the first position, at least a portion of the sealing plug is located within the air inlet to block it. In the second position, the sealing plug opens the air inlet. A handle is movably disposed at the top of the housing to switch between a free state and a pulled-up state. A traction rope is connected between the handle and the sealing plug. During the process of the handle switching from the free state to the pulled-up state, the sealing plug moves from the first position to the second position, establishing a linkage between the lifting of the handle and the release of the suction cup's fixed state. This eliminates the need for additional unlocking operations on the suction cup, simplifying the operation process of moving and transporting the cleaning base station and further improving the user experience. Furthermore, the simple mechanical linkage structure reduces the production cost of the cleaning base station, while also reducing the risk of structural failure due to circuit faults and improving the reliability of releasing the cleaning base station. Attached Figure Description
[0024] Figure 1 This is a perspective view of a cleaning base station according to an embodiment of the present disclosure, wherein one end of the cleaning base station is open.
[0025] Figure 2 This is a schematic diagram showing the cooperation relationship between the traction rope, mounting shell, reset assembly, sealing plug, and suction cup of a cleaning base station according to an embodiment of this disclosure.
[0026] Figure 3 This is an exploded view showing the fit between the mounting housing, reset assembly, sealing plug, and suction cup of a clean base station according to an embodiment of this disclosure.
[0027] Figure 4This is a top view showing the mating relationship between the mounting housing, reset assembly, sealing plug, and suction cup of a clean base station according to an embodiment of this disclosure.
[0028] Figure 5 yes Figure 4 Sectional view at point AA.
[0029] Figure 6 This is a partial structural perspective view of a clean base station according to an embodiment of the present disclosure.
[0030] Figure 7 This is a top view of a clean base station according to an embodiment of the present disclosure.
[0031] Figure 8 This is an exploded view of a clean base station according to an embodiment of the present disclosure, wherein the exploded view represents the housing module relative to the clean base station.
[0032] Figure 9 yes Figure 7 Sectional view at point BB.
[0033] Figure 10 yes Figure 7 Sectional view at point CC.
[0034] Figure 11 yes Figure 10 Enlarged view of point D in the middle.
[0035] Figure 12 This is an exploded view of a clean base station according to an embodiment of the present disclosure, wherein the view represents an exploded view of the handle relative to the clean base station.
[0036] Figure 13 yes Figure 12 Enlarged view of point E in the middle.
[0037] Figure label: 100. Clean base stations; 1. Mounting housing; 11. Wire hole; 12. Clearance hole; 13. Lead wire section; 131. Lead wire hole; 14. First housing section; 141. First part; 142. Second part; 15. Second housing section; 151. Third part; 152. Fourth part; 16. Support rib; 17. Positioning platform; 171. Positioning hole; 2. Reset assembly; 21. Rigid connecting seat; 22. Elastic reset component; 3. Sealing plug; 4. Housing; 41. Mounting port; 42. Inner housing; 421. Positioning post; 422. Wiring hole; 43. Outer housing; 431. Opening; 44. Receiving cavity; 45. Storage cavity; 46. Pivoting hole; 47. Connecting hole; 48. Mounting groove; 491. Second limiting protrusion; 492. Third limiting protrusion; 5. Suction cup; 51. Air inlet; 6. Towing rope; 61. First rope segment; 62. Second rope segment; 63. Third rope segment; 7. Handle; 71. Lifting handle; 72. Rotating disc; 721. First limiting protrusion; 722. Fourth limiting protrusion; 73. Pivot shaft; 74. Decorative cover; 75. Connecting piece; 8. Storage module; 81. Storage box; 811. Take-out port; 82. Cover plate; 821. First magnetic suction component; 83. Flipping mechanism; 831. Flipping component. Detailed Implementation
[0038] In this disclosure, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design described as "exemplary" or "for example" in this disclosure should not be construed as being more preferred or advantageous than other embodiments or designs. Rather, the use of terms such as "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.
[0039] In the embodiments of this disclosure, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
[0040] In the description of embodiments of this disclosure, the term "at least one" refers to one or more, and "more than one" refers to two or more. "At least one of the following" or similar expressions refer to any combination of these items, including any combination of a single item or a plurality of items. For example, at least one of a, b, or c can represent: a, b, c, a, b, a, c, b, c, or a, b, c, where a, b, and c can be single or multiple.
[0041] In the description of embodiments of this disclosure, the term "and / or" refers to and covers any and all possible combinations of one or more of the associated listed items. The term "and / or" describes an association relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, or B alone. Additionally, the character " / " in this disclosure generally indicates that the preceding and following related objects have an "or" relationship.
[0042] In the description of the embodiments disclosed herein, unless otherwise expressly specified and limited, the terms "installation", "connection" and "linking" should be interpreted broadly. For example, "linking" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium.
[0043] As used herein, "perpendicular" and "equal" include the described situation and situations that are similar to the described situation, within an acceptable range of deviation, which is determined by those skilled in the art taking into account the measurement under discussion and the error associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, "perpendicular" includes absolute perpendicularity and approximate perpendicularity, where the acceptable range of deviation for approximate perpendicularity could be, for example, a deviation within 10°. "Equal" includes absolute equality and approximate equality, where the acceptable range of deviation for approximate equality could be, for example, a difference between the two equalities less than or equal to 10% of either one.
[0044] In the prior art, the cleaning base station is fixed by suction cups at the bottom. At the air inlet of the suction cup, a movable sealing plug is usually provided to allow air to enter and seal the suction cup. When the cleaning base station needs to be moved, the sealing plug needs to be removed from the air inlet to allow air to enter the suction cup and release the cleaning base station.
[0045] Currently, there are two ways to move the sealing plug. One is through motor drive, but the structure of the motor drive scheme is relatively complex, the cost is high, and the electronic control scheme is easily affected by environmental interference and has poor stability. The other is through physical drive, but physical drive requires people to actively operate the sealing plug, the unlocking method is relatively complex, and the user experience is poor.
[0046] According to the embodiments of the present disclosure, the cleaning base station and cleaning component are mounted on the bottom of the housing via a suction cup, the top of which has an air inlet corresponding to the mounting port. A sealing plug is movably disposed on the housing between a first position and a second position in the vertical direction. In the first position, at least a portion of the sealing plug is located within the air inlet to block it. In the second position, the sealing plug opens the air inlet, and a handle is movably disposed on the top of the housing to switch between a free state and a pulled-up state. A traction rope is connected between the handle and the sealing plug. During the process of the handle switching from the free state to the pulled-up state, the sealing plug moves from the first position to the second position, establishing a linkage between the lifting of the handle and the release of the suction cup's fixed state. This eliminates the need for additional unlocking operations on the suction cup, simplifying the operation process of moving and transporting the cleaning base station and further improving the user experience. Furthermore, the simple mechanical linkage structure reduces the production cost of the cleaning base station, while also reducing the risk of structural failure due to circuit faults and improving the reliability of releasing the cleaning base station.
[0047] The specific structure according to embodiments of this disclosure is described below.
[0048] A cleaning component according to an embodiment of the present disclosure includes a cleaning host and a cleaning base station 100.
[0049] The cleaning base station 100 has a storage cavity 45 for storing the cleaning host. The cleaning host has a use state and a storage state. In the storage state, the cleaning host is located inside the storage cavity. In the use state, the cleaning host is located outside the cleaning base station 100.
[0050] The cleaning base station 100 contains a battery and a cable winding device. The cable is wound around the cable winding device, and the cleaning host and the battery are electrically connected by the cable. Thus, compared to the cleaning host having its own battery, the cleaning base station 100 can power the cleaning host, eliminating the need for a large-capacity battery inside the cleaning host. This reduces the size and weight of the cleaning host. Furthermore, the cleaning base station 100 can carry a large-capacity battery, thereby significantly increasing the cleaning host's battery life.
[0051] The following describes in detail a clean base station 100 according to an embodiment of the present disclosure.
[0052] like Figures 1-6 As shown, the cleaning base station 100 according to an embodiment of the present disclosure includes: a housing 4, a suction cup 5, a sealing plug 3, a handle 7, and a traction rope 6.
[0053] Specifically, refer to Figures 1-6 The bottom of the housing 4 has an installation port 41; the suction cup 5 is located at the bottom of the housing 4, and the top of the suction cup 5 has an air inlet 51 corresponding to the installation port 41; the sealing plug 3 is movable in the housing 4 between a first position and a second position in the vertical direction. In the first position, at least a portion of the sealing plug 3 is located inside the air inlet 51 to block the air inlet 51; in the second position, the sealing plug 3 opens the air inlet 51.
[0054] It should be noted that, since the sealing plug 3 acts directly on the air inlet 51 of the suction cup 5, and an additional air pipe is connected to the air inlet 51 of the suction cup 5, the sealing plug 3 is located in the air pipe to realize the opening and closing of the air pipe. The sealing plug 3 of this disclosure directly controls the opening and closing of the air inlet 51, eliminating the need for an additional air pipe structure. This simplifies the overall structure of the cleaning base station 100, reduces the number of parts, and lowers the complexity and cost of production and assembly. At the same time, it can also avoid the problem of air leakage at the air pipe connection point and improve the reliability of the suction cup 5 adsorption.
[0055] For further information, please refer to [link / reference]. Figure 1 and Figure 2As shown, the handle 7 is movably disposed on the top of the housing 4 to switch between a free state and a pulled-up state, and the traction rope 6 is connected between the handle 7 and the sealing plug 3; during the process of the handle 7 switching from the free state to the pulled-up state, the sealing plug 3 moves from the first position to the second position.
[0056] Among them, with Figure 1 The example shown illustrates the free and pulled-up states of handle 7, for example... Figure 1 As shown, handle 7 is in a free state at this time. When handle 7 is rotated upward, handle 7 is in the pulled-up state, which makes it convenient for users to lift the cleaning base station 100 by handle 7.
[0057] During the transition of the handle 7 from the free state to the pulled-up state, the sealing plug 3 moves from the first position to the second position. At this time, the sealing plug 3 gradually moves away from the air inlet 51, connecting the air inlet 51 and facilitating the entry of gas into the suction cup 5, thus relieving the negative pressure state of the suction cup 5 and releasing the fixed state of the cleaning base station 100. Conversely, when the handle 7 resets from the pulled-up state to the free state, the handle 7 will drive the traction rope 6 to move in the opposite direction or release the traction rope 6, causing the sealing plug 3 to reset from the second position to the first position. The sealing plug 3 then re-seals the air inlet 51 of the suction cup 5, preventing external gas from entering the suction cup 5. After the cleaning base station 100 is placed on the contact surface, the suction cup 5 is squeezed to expel the internal air, thus re-creating a negative pressure environment, allowing the suction cup 5 to firmly adhere to the contact surface and re-fixing the position of the cleaning base station 100.
[0058] Since the lifting of handle 7 and the release of suction cup 5 are simultaneous, a linkage is established between lifting handle 7 and releasing suction cup 5 from its fixed state. Users only need to operate handle 7 to simultaneously complete both lifting / moving and negative pressure release, eliminating the need for additional unlocking of suction cup 5. This simplifies the operation of moving and transporting the cleaning base station 100, preventing damage to suction cup 5 or its contact surface due to users forgetting to unlock it and forcibly moving it, thus further improving the user experience. Furthermore, compared to motor-driven solutions, this mechanical linkage structure requires no additional circuitry or power components, resulting in a simpler structure, reduced production costs for the cleaning base station 100, reduced risk of structural failure due to circuit malfunctions, improved stability of the suction cup 5's fixing structure, and easier daily maintenance.
[0059] Please refer to some embodiments of this disclosure. Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the clean base station 100 includes: a mounting housing 1 and a reset assembly 2.
[0060] Mounting housing 1 is located inside housing 4. Mounting housing 1 has a wire hole 11 at the top and a clearance hole 12 at the bottom. A portion of the traction rope 6 passes through the wire hole 11 and is located inside mounting housing 1. Sealing plug 3 is movably mounted on mounting housing 1. Reset assembly 2 is located inside mounting housing 1. Reset assembly 2 is used to drive sealing plug 3 to move from a second position to a first position. Reset assembly 2 or sealing plug 3 passes through clearance hole 12.
[0061] It should be noted that in the embodiments of this disclosure, the reset component 2 passes through the clearance hole 12, but this disclosure is not limited to this. Alternatively, the sealing plug 3 may pass through the clearance hole 12, and the reset component 2 may be completely located in the mounting shell 1.
[0062] Understandably, the reset component 2 maintains a continuous driving force on the sealing plug 3. Without external force pulling the handle 7, it can always push the sealing plug 3 to remain in the first position of blocking the air inlet 51, ensuring that the negative pressure adsorption state of the suction cup 5 is stable and that the sealing plug 3 will not be displaced due to slight shaking, thus preventing the cleaning base station 100 from accidentally loosening and shifting.
[0063] The mounting housing 1 provides stable mounting support for the traction rope 6, sealing plug 3 and reset assembly 2. By integrating related moving parts inside the mounting housing 1, it can avoid interference from other components inside the cleaning base station 100 on the movement of the suction cup 5 fixing mechanism, and also protect the moving parts, reducing the impact of dust and water stains on the structural movement accuracy, and extending the service life of the linkage fixing structure.
[0064] At the same time, the above-mentioned structure is formed into a whole. During installation, it is only necessary to assemble the mounting shell 1 into the shell 4 of the clean base station 100 to complete the installation of this part of the structure. There is no need to align and fix each individual component in turn, which effectively simplifies the on-site assembly process, reduces the assembly difficulty, and can also ensure the relative positional accuracy between the components and improve the working stability of the suction cup 5 fixing mechanism.
[0065] Please refer to some embodiments of this disclosure. Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the reset assembly 2 includes a rigid connecting seat 21 and an elastic reset member 22. The rigid connecting seat 21 is movably installed in the mounting housing 1 and connects the traction rope 6 and the sealing plug 3. Along the moving direction of the rigid mounting seat, the elastic reset member 22 is installed in the mounting housing 1 and is located at at least one end of the rigid connecting seat 21.
[0066] It should be noted that, in this embodiment, the rigid mounting base extends in the vertical direction, the elastic reset member 22 is installed at the upper end of the rigid connecting base 21, the sealing plug 3 is installed at the lower end of the rigid connecting base 21, and the traction rope 6 is connected to the upper end of the rigid connecting base 21.
[0067] Understandably, the rigid connecting seat 21 can stably transmit the tension of the traction rope 6 and the elastic force of the elastic reset member 22, avoiding component deformation during transmission, ensuring the accuracy of force transmission, and making the action of the sealing plug 3 more reliable. The elastic reset member 22 continuously applies a downward elastic force to the rigid connecting seat 21. When no external force pulls the traction rope 6, the rigid connecting seat 21 can stably push the sealing plug 3 to remain in the position of blocking the air inlet 51. When the traction rope 6 is pulled upward to move the rigid connecting seat 21, the rigid connecting seat 21 will simultaneously move the sealing plug 3 upward to disengage from the air inlet 51, while compressing the elastic reset member 22 to store energy. After the traction rope 6 is released, the elastic reset member 22 can push the rigid connecting seat 21 and the sealing plug 3 to quickly reset. The structure is simple and reliable, and the action response is stable.
[0068] Please refer to some embodiments of this disclosure. Figure 1 As shown, the two ends of the handle 7 along its length are respectively connected to the housing 4 along the first direction (e.g., Figure 1 At both ends of the traction rope 6 (in the x direction shown), the length of the handle 7 is connected to one end of the traction rope 6. The first direction is perpendicular to the up and down direction.
[0069] Understandably, placing the handles 7 at both ends of the length of the housing 4 facilitates the user's pulling action from the outside of the cleaning base station 100 without taking up additional space inside the cleaning base station 100 or interfering with the arrangement of other functional components. The traction rope 6 is connected to one end of the handle 7 along its length. Pulling the handle 7 causes the traction rope 6 to move upwards synchronously, thereby lifting the rigid connecting seat 21 and the sealing plug 3. The operation is intuitive, the structure is simple, and it allows the user to quickly control the opening and closing of the sealing plug 3.
[0070] Furthermore, such as Figure 1 As shown, the suction cup 5 is located at the bottom center of the housing 4. Thus, when the cleaning base station 100 is placed on the placement surface, it can be positioned and fixed as a whole by the suction cup 5 at the bottom center of the housing 4, which prevents the cleaning base station 100 from shifting during self-cleaning, sewage discharge and other operations, and improves placement stability. At the same time, the suction cup 5 arranged in the center is evenly stressed, and there will be no uneven local stress that causes the housing 4 to tilt.
[0071] Please refer to some embodiments of this disclosure. Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the cleaning base station 100 includes: a mounting shell 1, which is disposed inside the housing 4. The top of the mounting shell 1 has a wire hole 11, and a sealing plug 3 is movably mounted on the mounting shell 1. The outer surface of the mounting shell 1 is provided with a lead wire portion 13, which has a lead wire hole 131. The lead wire hole 131 passes through the lead wire portion 13 in a first direction. In the first direction, the lead wire portion 13 is located between the wire hole 11 and one end of the handle 7 in the length direction. The traction rope 6 passes through the lead wire hole 131.
[0072] Understandably, based on the positions of the handle 7 and the suction cup 5, i.e., one end of the handle 7 is located on one side of the suction cup 5 along the first direction and above the suction cup 5, the arrangement of the lead wire part 13 and the threading hole 11 allows the movement direction of the traction rope 6 to better adapt to the arrangement between the handle 7 and the suction cup 5, thereby reducing frictional loss during the movement of the traction rope 6. At the same time, the lead wire part 13 can limit and guide the traction rope 6, preventing the traction rope 6 from deviating or getting stuck during the pulling process, ensuring smooth and stable traction action, and improving the smooth feel during user operation.
[0073] Specifically, the traction rope 6 can pass through the lead hole 131 from the handle 7 in the first direction, then bend downwards and pass through the thread hole 11 to connect to the sealing plug 3 below. This can regulate and limit the routing of the traction rope 6, preventing the traction rope 6 from swinging randomly inside the housing 4 and getting tangled and interfering with other components. At the same time, it can limit the direction of movement of the traction rope 6, ensuring that the traction rope 6 can stably drive the sealing plug 3 to rise when the handle 7 is pulled, improving the smoothness of operation and reducing the probability of the sealing plug 3 getting stuck.
[0074] Furthermore, such as Figure 3 , Figure 4 and Figure 5 As shown, the walls at both ends of the lead hole 131 along the axial direction have inclined surfaces. Along the axial direction of the lead hole 131 and from the outside to the inside of the lead hole 131, the inclined surfaces are inclined to the axial direction of the lead hole 131. Thus, the inclined surfaces can guide the traction rope 6 passing through the lead hole 131, avoid friction between the traction rope 6 and the right-angle edge of the lead hole 131 wall, reduce wear of the traction rope 6 during long-term pulling, and extend the service life of the traction rope 6.
[0075] Please refer to some embodiments of this disclosure. Figure 6As shown, the housing 4 includes an inner shell 42 and an outer shell 43. The inner shell 42 is located inside the outer shell 43. The handle 7 is disposed in the outer shell 43. The mounting opening 41 penetrates the bottom of the inner shell 42 and the bottom of the outer shell 43. One side wall of the inner shell 42 along the first direction is spaced apart from one side wall of the outer shell 43 along the first direction to form a mounting gap (not shown). A portion of the traction rope 6 is located in the mounting gap. Along the first direction, the mounting gap is located between the lead wire portion 13 and one end of the handle 7 in the length direction. The inner shell 42 has a wire hole 422. The mounting gap and the space inside the inner shell 42 are connected through the wire hole 422. The traction rope 6 passes through the wire hole 422. The first direction and the vertical direction are perpendicular.
[0076] Understandably, by placing part of the traction rope 6 in the installation gap between the inner shell 42 and the outer shell 43, the layout of the internal space of the shell 4 can be further optimized, avoiding the traction rope 6 occupying extra space in the receiving cavity 44. At the same time, the wire hole 422 provides secondary restraint for the traction rope 6, and together with the lead wire part 13, ensures that the traction rope 6 runs neatly, further reducing the probability of the traction rope 6 swaying and deviating or interfering with other components, so that the traction action always remains stable and smooth.
[0077] Please refer to some embodiments of this disclosure. Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the traction rope 6 includes a first rope segment 61, a second rope segment 62, and a third rope segment 63. The first rope segment 61 passes through the wire hole 11. One end of the first rope segment 61 is connected to the sealing plug 3, and the other end is connected to the second rope segment 62. The second rope segment 62 passes through the lead wire hole 131. The end of the second rope segment 62 facing away from the first rope segment 61 passes through the wire hole 422 and is connected to the third rope segment 63. The third rope segment 63 is located in the installation gap, and the end of the third rope segment 63 facing away from the second rope segment 62 is connected to the handle 7.
[0078] It is understandable that dividing the traction rope 6 into three segments, with each segment adapting to the arrangement of the threading hole 11, the lead hole 131, the through hole 422, and the installation gap, can both adapt to the spatial layout within the housing 4 to complete the wiring and ensure that the movement direction of each segment is limited by the corresponding structure. This further ensures that the force when pulling the handle 7 can be stably transmitted to the sealing plug 3, preventing the traction rope 6 from being misaligned and affecting the handling feel. The structural design is more in line with the spatial layout, and the overall structure is more compact and orderly.
[0079] Please refer to some embodiments of this disclosure. Figure 3 , Figure 4 , Figure 5As shown, the lead wire portion 13 is located on the upper end face of the mounting housing 1. It can be understood that the lead wire portion 13 is located on the upper end face of the mounting housing 1, which can better accommodate the routing requirements of the traction rope 6 extending from horizontal to downward bending and connecting to the sealing plug 3, shortening the ineffective routing length of the traction rope 6, making the overall routing simpler and smoother, further reducing the possibility of the traction rope 6 interfering with other structures, and at the same time facilitating the integral processing and molding of the lead wire portion 13 on the mounting housing 1 with the mounting housing 1, reducing the processing and manufacturing difficulty.
[0080] In some embodiments of this disclosure, the mounting housing 1 includes a first housing portion 14 and a second housing portion 15, which are detachably connected; the lead portion 13 is integrally disposed on the first housing portion 14. It is understood that the detachable connection between the first housing portion 14 and the second housing portion 15 allows the mounting housing 1 to be disassembled and reassembled, facilitating the pre-arrangement of internal structures such as the reset component 2 before final assembly and fixation, reducing the assembly difficulty of the internal structures, and facilitating subsequent maintenance and replacement of components such as the reset component 2.
[0081] Meanwhile, the lead wire 13 is directly and integrally set on the first housing 14, eliminating the need for additional splicing and installation of the lead wire 13. This reduces the number of parts, ensures the structural strength of the lead wire 13, avoids the problem of loosening or misalignment of the separately set lead wire 13, and further improves structural stability.
[0082] Please refer to some embodiments of this disclosure. Figure 3 As shown, the first shell portion 14 includes an integrally connected first portion 141 and a second portion 142, and the second shell portion 15 includes an integrally connected third portion 151 and a fourth portion 152; the first portion 141 and the third portion 151 are mated together, and the second portion 142 is mated with the fourth portion 152 to form an extensional structure. Understandably, the extension structure is used to install the drive motor. By setting up the extension structure, the possibility of motor options is retained, which facilitates the switching between mechanical and electric drive options in the future. There is no need to make major modifications to the original main structure of the housing 4. Only the component configuration inside the extension structure needs to be adjusted, which can reduce the structural modification cost of different power options.
[0083] For further information, please refer to [link / reference]. Figure 3 and combined Figure 6As shown, one of the inner walls of the extension structure and the housing 4 is provided with a positioning post 421, and the other is provided with a positioning hole 171 that mates with the positioning post 421; the first part 141 has a wire hole 11, the sealing plug 3 is connected to the third part 151, and the lead wire part 13 is provided in the second part 142. It should be noted that, in the embodiments of this disclosure, a positioning platform 17 protrudes from the extension structure, the positioning platform 17 has a positioning hole 171, and the positioning post 421 is provided on the inner wall of the housing 4, thereby realizing the insertion of the positioning post 421 and the positioning platform 17. The insertion direction of the positioning post 421 and the positioning platform 17 is perpendicular to the first direction and the up and down direction, thereby improving the installation efficiency of the housing 1.
[0084] Please refer to some embodiments of this disclosure. Figure 3 , Figure 4 and Figure 5 As shown, the second part 142 protrudes upward from the first part 141. It is understandable that, since the second part 142 has a lead wire portion 13 and the first part 141 has a threading hole 11, and the axis of the lead wire hole 131 on the lead wire portion 13 is perpendicular to the axis of the threading hole 11, if the horizontal height difference between the second part 142 and the first part 141 is small, that is, after the traction rope 6 passes through the threading hole 11, the curvature of the bend will be too large, easily accelerating the wear of the traction rope 6 and increasing the resistance during the sliding process of the traction rope 6. By setting the second part 142 to protrude upward from the first part 141, a longer transition space can be provided for the traction rope 6 leading out from the threading hole 11, reducing the degree of bending of the traction rope 6. While ensuring reasonable wiring space, this reduces the wear rate of the traction rope 6, also makes the pulling and moving of the traction rope 6 smoother, and extends the service life of the components.
[0085] Please refer to some embodiments of this disclosure. Figure 3 , Figure 4 and Figure 5 As shown, a support rib 16 protrudes from the first shell portion 14, and a lead wire portion 13 is located at the end of the support rib 16 away from the first shell portion 14.
[0086] On the one hand, the support rib 16 can raise the installation position of the lead wire part 13, further increase the transition space at the bend of the traction rope 6, and continue the effect of reducing the wear of the traction rope 6 mentioned above; on the other hand, the support rib 16 can improve the structural strength of the first shell part 14 itself, prevent the first shell part 14 from deforming under the action of external force, improve the stability of the entire extension structure connection, and reduce the probability of structural failure.
[0087] In some embodiments of this disclosure, please refer to Figure 7 , Figure 8 and Figure 9As shown, the housing 4 has a spaced-apart receiving cavity 44 and a storage cavity 45, which are located in the second direction (e.g., Figure 8 The cleaning base station 100 is arranged in the y-direction shown. The receiving cavity 44 is open on the side away from the receiving cavity 45 to form an opening 431. The mounting shell 1 is located inside the receiving cavity 44. The receiving cavity 45 is suitable for receiving the cleaning host. The second direction and the up and down direction are perpendicular. The cleaning base station 100 also includes a receiving module 8, which is detachably disposed in the receiving cavity 44 through the opening 431 and is located on the side of the mounting shell 1 away from the receiving cavity 45.
[0088] Understandably, the storage module 8 is used to store consumables required by the cleaning host. The receiving cavity 44 and the storage cavity 45 are arranged along the second direction. The storage module 8 is placed in the receiving cavity 44 on the side of the housing 1 facing away from the storage cavity 45. This can make reasonable use of the idle space inside the housing 4 of the cleaning base station 100 without occupying the vertical height space of the cleaning base station 100. It can control the overall size of the cleaning base station 100 and avoid the overall size being too large and affecting placement. At the same time, the storage module 8 and the storage cavity 45 for storing the cleaning host are independent of each other. When the storage module 8 is disassembled and the consumables are replaced, it will not interfere with the cleaning host in the storage cavity 45. The operation of taking out and replenishing consumables is also more convenient.
[0089] Please refer to some embodiments of this disclosure. Figure 7 , Figure 8 As shown, the storage module 8 includes a storage box 81 and a cover 82. The storage box 81 has a retrieval opening 811 facing the same direction as the opening 431. The cover is movably connected to the storage box 81 to switch between a closed opening 431 and an open opening 431. The cover is provided with a first magnetic member 821, and the housing 4 is provided with a second magnetic member (not shown). When the cover is opened at the opening 431, the second magnetic member is magnetically attracted to the first magnetic member 821.
[0090] It should be noted that the movement trajectory of the cover is as follows: first, it moves outward from the receiving cavity 44 along the second direction, and then it moves upward. When the cover opens the opening 431, the upper part of the cover overlaps with the shell 4 in the second direction, and the first magnetic suction member 821 is provided at the upper end of the cover.
[0091] Understandably, by setting the storage module 8 as a structure of storage box 81 plus a movable cover, users do not need to pull the entire storage module 8 out of the receiving cavity 44. They can simply open the cover to retrieve and replenish consumables, making the operation more convenient. When the cover is opened, the first magnetic component 821 and the second magnetic component can keep the cover in the open state through magnetic force, preventing the cover from falling back and closing on its own. Users do not need to hold the cover in place when retrieving consumables, further improving the convenience of operation.
[0092] Please refer to some embodiments of this disclosure. Figure 7 , Figure 8 As shown, the storage module 8 also includes a flipping mechanism 83, which includes a flipping component 831. One end of the flipping component 831 is rotatably connected to the storage box 81, and the other end is rotatably connected to the cover plate 82. The rotation axes both extend along the first direction. Thus, the movement trajectory of the cover is to first move along the second direction towards the outside of the receiving cavity 44, and then move upward.
[0093] The flipping mechanism 83 can be a plurality of ones spaced apart in the vertical direction, and each flipping mechanism 83 can include a plurality of flipping members 831 connected in the first direction.
[0094] Please refer to some embodiments of this disclosure. Figure 10 , Figure 11 , Figure 12 and Figure 13 As shown, the handle 7 includes a handle portion 71 and a rotating disk 72. The handle portion 71 is connected to the rotating disk 72. One of the rotating disk 72 and the housing 4 is provided with a pivot shaft 73, and the other is provided with a pivot hole 46. The pivot shaft 73 and the pivot hole 46 are rotatably engaged. A connector 75 is provided on the rotating disk 72, and the connector 75 is located on the outer periphery of the pivot shaft 73. The housing 4 has a connecting hole 47 that communicates with the space inside the housing 4. The traction rope 6 passes through the connecting hole 47 and is connected to the connector 75.
[0095] It should be noted that the rotating disk 72 is provided with a limiting post, and the handle part 71 is provided with a limiting hole that cooperates with the limiting post. Thus, the handle part 71 is connected to the rotating disk 72. Therefore, when the user pulls the handle 7 to the pulled-up state through the handle part 71, the rotating disk 72 can also rotate accordingly. Through the connection of the connector 75 and the traction rope 6, the traction rope 6 is pulled, thereby driving the movement of the sealing plug 3.
[0096] Because the connector 75 is located on the outer periphery of the pivot shaft 73, i.e., the connector 75 is eccentrically positioned relative to the pivot shaft 73, when the rotating disk 72 rotates around the pivot shaft 73, the connector 75 rotates a larger amplitude, thus allowing the traction rope 6 to pull a greater distance. This better meets the movement stroke requirements of the sealing plug 3, preventing the sealing plug 3 from failing to fully open or close due to insufficient pulling distance. It also reduces the required rotation angle of the handle 7; the user only needs to rotate the handle 7 a small amplitude to obtain sufficient pulling stroke of the traction rope 6, improving the operating feel. This eliminates wobbling and jamming, further improving the smoothness of handle 7's use and structural stability.
[0097] In the embodiments of this disclosure, the pivot shaft 73 is disposed on the housing 4 and the pivot hole 46 is disposed on the rotating disk 72. However, this disclosure is not limited to this. It is also possible that the pivot shaft 73 is disposed on the rotating disk 72 and the pivot hole 46 is disposed on the housing 4.
[0098] Please refer to some embodiments of this disclosure. Figure 10 , Figure 11 , Figure 12 and Figure 13 As shown, the handle 7 also includes a decorative cover 74, which is located on the side of the rotating disk 72 opposite to the housing 4. A connector 75 connects the rotating disk 72 and the decorative cover 74. Thus, the connector 75 can connect not only the traction rope 6 but also the decorative cover 74, achieving multiple uses with one component, reducing the number of parts, and lowering the assembly complexity.
[0099] Please refer to some embodiments of this disclosure. Figure 10 , Figure 11 , Figure 12 and Figure 13 As shown, a mounting groove 48 is formed on the outer surface of the housing 4, the rotating disk 72 is located in the mounting groove 48, and the connecting hole 47 is located at the bottom wall of the mounting groove 48.
[0100] Therefore, the rotating disk 72 can be hidden inside the mounting groove 48, without protruding excessively from the outer surface of the housing 4. This maintains the integrity of the handle 7 and the housing 4, saving external space and preventing the handle 7 from shifting or being damaged by external impacts, thus improving structural reliability and aesthetic appearance. Simultaneously, the mounting groove 48 facilitates the installation and positioning of the rotating disk 72, preventing radial movement.
[0101] Please refer to some embodiments of this disclosure. Figure 11 As shown, the rotating disk 72 has a first limiting protrusion 721 on the side of the housing 4 facing the housing 4. The outer surface of the housing 4 has a second limiting protrusion 491 and a third limiting protrusion 492 arranged opposite to each other along the circumference of the rotating disk 72. Along the circumference of the rotating disk 72, the first limiting protrusion 721 is located between the second limiting protrusion 491 and the third limiting protrusion 492. When the handle 7 is in the free state, the first limiting protrusion 721 and the second limiting protrusion 491 abut against each other. When the handle 7 is in the pulled-up state, the first limiting protrusion 721 and the third limiting protrusion 492 abut against each other.
[0102] Understandably, the cooperation of the first limiting protrusion 721 with the second limiting protrusion 491 and the third limiting protrusion 492 can limit the rotation angle of the rotating disk 72, preventing the rotating disk 72 from rotating excessively and causing the traction rope 6 to become entangled or the structure to jam. While ensuring that the handle 7 can rotate to the correct position to achieve pulling or storage, the rotation range is stably controlled, further improving the working stability and reliability of the handle 7 structure.
[0103] For further information, please refer to [link / reference]. Figure 11 As shown, the rotating disk 72 is provided with a fourth limiting protrusion 722 on the side surface facing the housing 4. Along the circumference of the rotating disk 72, the fourth limiting protrusion 722 is located between the second limiting protrusion 491 and the third limiting protrusion 492, and is arranged opposite to the first limiting protrusion 721. When the handle 7 is in the free state, the fourth limiting protrusion 722 and the third limiting protrusion 492 stop at the ends opposite to the first limiting protrusion 721. When the handle 7 is in the pulled-up state, the fourth limiting protrusion 722 and the second limiting protrusion 491 stop at the ends opposite to the first limiting protrusion 721.
[0104] Therefore, through the cooperation of the first limiting protrusion 721 and the fourth limiting protrusion 722, the rotation range of the rotating disk 72 can be limited at two different positions along the circumferential direction of the rotating disk 72. The two limiting structures are subjected to force at the same time, which can disperse the impact force when the rotating disk 72 is in place, avoid the structural deformation or wear caused by excessive impact force on a single point limiting position, and further improve the service life of the limiting structure. At the same time, it also makes the positioning of the rotating disk 72 more stable after it is rotated into place, avoids the rotating disk 72 from wobbling, and further improves the overall stability of the handle 7 structure.
[0105] In the description of this specification, specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments or examples without contradicting each other.
[0106] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure, and are not intended to limit them. Although this disclosure has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this disclosure.
Claims
1. A clean base station, characterized in that, include: The housing (4) has a mounting port (41) at its bottom; The suction cup (5) is located at the bottom of the housing (4), and the top of the suction cup (5) has an air inlet (51) corresponding to the mounting port (41). A sealing plug (3) is movably disposed in the housing (4) between a first position and a second position in the vertical direction. In the first position, at least a portion of the sealing plug (3) is located inside the air inlet (51) to block the air inlet (51); in the second position, the sealing plug (3) opens the air inlet (51). A handle (7) and a traction rope (6) are provided. The handle (7) is movably disposed on the top of the housing (4) to switch between a free state and a pulled-up state. The traction rope (6) is connected between the handle (7) and the sealing plug (3). During the process of the handle (7) switching from the free state to the pulled-up state, the sealing plug (3) moves from the first position to the second position.
2. The clean base station according to claim 1, characterized in that, include: Mounting housing (1), which is located inside housing (4), has a wire hole (11) at the top and a clearance hole (12) at the bottom; part of the traction rope (6) passes through the wire hole (11) and is located inside the mounting housing (1); the sealing plug (3) is movably mounted on the mounting housing (1). A reset assembly (2) is disposed inside the mounting housing (1). The reset assembly (2) is used to drive the sealing plug (3) to move from the second position to the first position. The reset assembly (2) or the sealing plug (3) passes through the clearance hole (12).
3. The clean base station according to claim 2, characterized in that, The reset component (2) includes: A rigid connecting seat (21) is movably installed inside the mounting housing (1) and connects the traction rope (6) and the sealing plug (3). An elastic reset member (22) is installed inside the mounting shell (1) and located at at least one end of the rigid connecting seat (21) along the moving direction of the rigid mounting seat.
4. The clean base station according to claim 1, characterized in that, The two ends of the handle (7) along its length are respectively connected to the two ends of the housing (4) along the first direction, and the traction rope (6) is connected to one end of the handle (7) along its length. The first direction is perpendicular to the up and down direction.
5. The clean base station according to claim 4, characterized in that, include: Mounting shell (1), which is located inside housing (4), has a wire hole (11) at the top of mounting shell (1), and the sealing plug (3) is movably mounted on mounting shell (1); the outer surface of mounting shell (1) is provided with a lead wire portion (13), which has a lead wire hole (131), which passes through the lead wire portion (13) along a first direction. Along the first direction, the lead wire portion (13) is located between the wire hole (11) and one end of the handle (7) in the length direction, and the traction rope (6) passes through the lead wire hole (131).
6. The clean base station according to claim 5, characterized in that, The housing (4) includes an inner shell (42) and an outer shell (43). The inner shell (42) is located inside the outer shell (43). The handle (7) is provided in the outer shell (43). The mounting port (41) penetrates the bottom of the inner shell (42) and the bottom of the outer shell (43). One side wall of the inner shell (42) along the first direction is spaced apart from one side wall of the outer shell (43) along the first direction to form a mounting gap. A portion of the traction rope (6) is located in the mounting gap. Along the first direction, the installation gap is located between the lead wire portion (13) and one end of the handle (7) in the length direction; The inner shell (42) has a wire hole (422), the installation gap is connected to the space inside the inner shell (42) through the wire hole (422), the traction rope (6) is passed through the wire hole (422), and the first direction is perpendicular to the up and down direction.
7. The clean base station according to claim 6, characterized in that, The traction rope (6) includes a first rope segment (61), a second rope segment (62), and a third rope segment (63). The first rope segment (61) passes through the threading hole (11). One end of the first rope segment (61) is connected to the sealing plug (3), and the other end is connected to the second rope segment (62). The second rope segment (62) passes through the lead hole (131). The end of the second rope segment (62) facing away from the first rope segment (61) passes through the thread hole (422) and is connected to the third rope segment (63). The third rope segment (63) is located in the installation gap, and the end of the third rope segment (63) facing away from the second rope segment (62) is connected to the handle (7).
8. The clean base station according to claim 5, characterized in that, The lead wire portion (13) is located on the upper end face of the mounting shell (1).
9. The clean base station according to claim 5, characterized in that, The mounting housing (1) includes a first housing portion (14) and a second housing portion (15), which are detachably connected. The lead wire portion (13) is integrally disposed on the first shell portion (14).
10. The clean base station according to claim 9, characterized in that, The first shell portion (14) includes an integrally connected first part (141) and a second part (142), and the second shell portion (15) includes an integrally connected third part (151) and a fourth part (152). The first part (141) and the third part (151) are connected, and the second part (142) is connected to the fourth part (152) to form an extension structure; one of the extension structure and the inner wall of the shell (4) is provided with a positioning post (421), and the other is provided with a positioning hole (171) that cooperates with the positioning post (421); The first part (141) has a wire hole (11), the sealing plug (3) is connected to the third part (151), and the lead wire (13) is provided in the second part (142).
11. The clean base station according to claim 10, characterized in that, The second part (142) protrudes upward from the first part (141).
12. The clean base station according to claim 2 or 5, characterized in that, The housing (4) has a spaced-apart receiving cavity (44) and a storage cavity (45), the receiving cavity (44) and the storage cavity (45) are arranged in a second direction, the side of the receiving cavity (44) facing away from the storage cavity (45) is open to form an opening (431), the mounting shell (1) is located in the receiving cavity (44), and the storage cavity (45) is suitable for storing the cleaning host. The second direction is perpendicular to the up and down direction. The clean base station further includes a storage module (8), which is detachably disposed in the receiving cavity (44) via the opening (431) and located on the side of the mounting shell (1) opposite to the receiving cavity (45).
13. The clean base station according to claim 12, characterized in that, The storage module (8) includes: Storage box (81), the storage box (81) having an opening (811) facing the same direction as the opening (431); A cover plate (82) is movably connected to the storage box (81) to switch between closing the opening (431) and opening the opening (431); the cover plate is provided with a first magnetic member (821), and the housing (4) is provided with a second magnetic member. When the cover plate opens the opening (431), the second magnetic member is magnetically attracted to the first magnetic member (821).
14. The clean base station according to claim 1, characterized in that, The handle (7) includes a handle portion (71) and a rotating disk (72). The handle portion (71) is connected to the rotating disk (72). One of the rotating disk (72) and the housing (4) is provided with a pivot shaft (73), and the other is provided with a pivot hole (46). The pivot shaft (73) and the pivot hole (46) are rotatably engaged. The rotating disk (72) is provided with a connector (75), which is located on the outer periphery of the pivot shaft (73); the housing (4) has a connecting hole (47) that communicates with the space inside the housing (4), and the traction rope (6) passes through the connecting hole (47) and is connected to the connector (75).
15. The clean base station according to claim 14, characterized in that, The handle (7) also includes a decorative cover (74), which is located on the side of the rotating disk (72) opposite to the housing (4), and the connector (75) connects the rotating disk (72) and the decorative cover (74).
16. The clean base station according to claim 14, characterized in that, An installation groove (48) is formed on the outer surface of the housing (4), the rotating disk (72) is located in the installation groove (48), and the connecting hole (47) is located at the bottom wall of the installation groove (48).
17. The clean base station according to claim 14, characterized in that, The rotating disk (72) has a first limiting protrusion (721) on the side facing the housing (4), and the outer surface of the housing (4) has a second limiting protrusion (491) and a third limiting protrusion (492) arranged opposite to each other along the circumference of the rotating disk (72). Along the circumference of the rotating disk (72), the first limiting protrusion (721) is located between the second limiting protrusion (491) and the third limiting protrusion (492). In the free state, the first limiting protrusion (721) and the second limiting protrusion (491) abut against each other. In the pulled-up state, the first limiting protrusion (721) and the third limiting protrusion (492) abut against each other.
18. A cleaning component, characterized in that, include: The cleaning base station according to any one of claims 1-17, wherein the cleaning base station has a receiving cavity (45); The cleaning host has a usage state and a storage state. In the storage state, the cleaning host is located inside the storage cavity. In the usage state, the cleaning host is located outside the cleaning base station.