Cleaning base station and cleaning system
By using the elastic connection and gap design between the dust collection power component and the base in the cleaning base station, noise and vibration are reduced, improving the user experience. This solves the noise problem of existing base stations, effectively addressing noise and vibration issues and enhancing the user experience of the cleaning equipment.
Patent Information
- Application Number
- CN202423192767.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The noise from existing cleaning equipment base stations negatively impacts user experience, necessitating noise reduction to improve user experience.
By using a dust collection power component that is elastically connected to the first and second bases in the clean base station, some gas can be discharged through the gaps. Combined with the design of the base and the top cover, double sound insulation is achieved. The dust collection component, along with the components of the first and second bases, reduces noise transmission.
The noise of the dust collection power components is effectively reduced. Gas is discharged through the first and second gaps. The sound insulation effect of the base is utilized to reduce noise and vibration during the dust collection process, thereby improving the user experience.
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Figure CN223682477U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the field of cleaning equipment, in particular to a cleaning base station and a cleaning system. BACKGROUND
[0002] In recent years, cleaning robots and other cleaning equipment have been increasingly popular due to their high degree of intelligence, bringing great convenience to people's lives. The cleaning equipment is configured with a base station, which can provide the cleaning equipment with docking and cleaning mop, charging, dust collection and other functions, and the noise generated during use affects the user experience. UTILITY MODEL CONTENT
[0003] The present disclosure aims to at least solve one of the technical problems existing in the prior art. Therefore, it is necessary to provide a cleaning base station and a cleaning system, which can reduce noise and improve user experience.
[0004] Embodiments of the present disclosure provide a cleaning base station, which is used in cooperation with a cleaning equipment and at least for maintaining the cleaning equipment. The cleaning base station comprises a first base, a second base and a dust collection assembly. The first base is provided with a dust collection port, a chamber and an opening communicating with the chamber. The dust collection port is used to communicate with a dust box of the cleaning equipment. The chamber is used to accommodate the cleaning equipment. The opening is used for the cleaning equipment to enter and exit the chamber. The second base is detachably connected to the first base. A first accommodation cavity and a first gap communicating with the first accommodation cavity are formed between the second base and the first base. The dust collection assembly comprises a dust collection power component and a dust collection accommodation component communicating with the dust collection power component. The dust collection power component is mounted to the second base from the direction of the first base towards the second base, and at least part of the dust collection power component is located in the first accommodation cavity. The dust collection power component is elastically connected to the first base and the second base, and communicates with the dust collection port. When the cleaning equipment enters the chamber to perform a dust collection operation, the dust collection power component works to suck the garbage in the dust box into the dust collection accommodation component, and at least part of the gas discharged from the dust collection power component is discharged to the outside of the cleaning base station through the first gap.
[0005] In one or more optional embodiments described above, the dust collection power component comprises at least two connecting portions connected to the second base. A first damping member is arranged between each connecting portion and the second base. An elastic member is arranged between the dust collection power component and the first base. The dust collection power component elastically compresses the elastic member in the direction of gravity.
[0006] In one or more optional embodiments described above, the dust collection power component comprises a shell and a power portion arranged in the shell. A second damping member and a third damping member are arranged between the power portion and the shell.
[0007] In one or more optional embodiments described above, the second damping member and the third damping member are respectively arranged on opposite sides of the power component.
[0008] In one or more optional embodiments of the above, the cleaning base station further comprises an upper cover, the upper cover being detachably connected to the second base, a second accommodating cavity and a second gap communicating with the second accommodating cavity being formed between the upper cover and the second base, and the dust collecting container being arranged in the second accommodating cavity.
[0009] In one or more optional embodiments of the above, the shell comprises an air outlet, the air outlet being located in the first accommodating cavity or the second accommodating cavity; when the air outlet is located in the first accommodating cavity, at least part of the gas discharged by the dust collecting power component is discharged to the outside of the cleaning base station through the first gap; or when the air outlet is located in the second accommodating cavity, at least part of the gas discharged by the dust collecting power component is discharged to the outside of the cleaning base station through the second gap.
[0010] In one or more optional embodiments of the above, the second base is provided with a through hole away from the air outlet, the through hole communicating the first accommodating cavity and the second accommodating cavity; when the air outlet is located in the first accommodating cavity, at least part of the gas discharged by the dust collecting power component flows into the second accommodating cavity through the through hole and is discharged to the outside of the cleaning base station through the second gap; or when the air outlet is located in the second accommodating cavity, at least part of the gas discharged by the dust collecting power component flows into the first accommodating cavity through the through hole and is discharged to the outside of the cleaning base station through the first gap.
[0011] In one or more optional embodiments of the above, the cleaning base station further comprises a sound-absorbing component, the sound-absorbing component being connected to the air outlet and forming an air outlet channel together with the second base.
[0012] In one or more optional embodiments of the above, the sound-absorbing component gradually increases in width along the air outlet direction, or the sound-absorbing component comprises an expansion cavity, a narrowing cavity and a connecting cavity which are sequentially communicated, the expansion cavity being communicated with the air outlet, and the inner diameter of the expansion cavity being greater than the inner diameter of the narrowing cavity.
[0013] In one or more optional embodiments of the above, the air outlet channel is provided with a sound-absorbing layer.
[0014] The embodiments of the present disclosure provide a cleaning base station, which is used in cooperation with a cleaning device and at least for maintaining the cleaning device. The cleaning base station comprises a first base, a second base, an upper cover and a dust collection assembly. The first base is provided with a dust collection port, a chamber and an opening communicating with the chamber. The dust collection port is used for communicating with a dust box of the cleaning device. The chamber is used for accommodating the cleaning device. The opening is used for allowing the cleaning device to enter or exit the chamber. The second base is connected to the first base, and a first accommodation cavity is formed between the first base and the second base. The upper cover is detachably connected to the second base, and a second gap is formed between the second base and the upper cover. The dust collection assembly comprises a dust collection power component and a dust collection accommodation component in communication with the dust collection power component. At least part of the dust collection power component is located in the first accommodation cavity. The dust collection power component is elastically connected to the first base and the second base respectively and in communication with the dust collection port. When the cleaning device enters the chamber to perform a dust collection operation, the dust box is in communication with the dust collection port, the dust collection power component works to suck the garbage in the dust box into the dust collection accommodation component, and at least part of the gas discharged from the dust collection power component is discharged to the outside of the cleaning base station through the second gap.
[0015] The embodiments of the present disclosure provide a cleaning system, which comprises a cleaning device and a cleaning base station. The cleaning base station and the cleaning device are used in cooperation and at least for maintaining the cleaning device. The cleaning base station comprises a first base, a second base and a dust collection assembly. The first base is provided with a dust collection port, a chamber and an opening communicating with the chamber. The dust collection port is used for communicating with a dust box of the cleaning device. The chamber is used for accommodating the cleaning device. The opening is used for allowing the cleaning device to enter or exit the chamber. The second base is detachably connected to the first base. A first accommodation cavity and a first gap communicating with the first accommodation cavity are formed between the first base and the second base. The dust collection assembly comprises a dust collection power component and a dust collection accommodation component in communication with the dust collection power component. The dust collection power component is mounted to the second base from the direction of the first base towards the second base, and at least part of the dust collection power component is located in the first accommodation cavity. The dust collection power component is elastically connected to the first base and the second base respectively and in communication with the dust collection port. When the cleaning device enters the chamber to perform a dust collection operation, the dust collection power component works to suck the garbage in the dust box into the dust collection accommodation component, and at least part of the gas discharged from the dust collection power component is discharged to the outside of the cleaning base station through the first gap.
[0016] The cleaning device and the cleaning system of the present disclosure are provided. The dust collection power component is elastically connected to the first base and the second base respectively to alleviate the vibration generated when the dust collection power component works. At least part of the gas is discharged through the first gap. The first base and the second base are used for sound insulation to reduce the noise generated by the flow of the gas stream when the dust collection power component works, thereby improving the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The structure of the cleaning base station in some embodiments is shown.
[0018] Figure 2A disassembled view of the cleaning base station is shown in some embodiments.
[0019] Figure 3 A cross-sectional view of the cleaning base station is shown in some embodiments.
[0020] Figure 4 A cross-sectional view of the cleaning base station is shown in some embodiments.
[0021] Figure 5 A partial structural view of the cleaning base station is shown in some embodiments.
[0022] Figure 6 A structural view of the second base and dust collection assembly is shown in some embodiments.
[0023] Figure 7 A structural view of the dust collection power member is shown in some embodiments.
[0024] Figure 8 A cross-sectional view of the cleaning base station is shown in some embodiments.
[0025] Figure 9 A structural view of the dust collection power member is shown in some embodiments.
[0026] Figure 10 A cross-sectional view of the dust collection power member is shown in some embodiments.
[0027] Figure 11 A structural view of the second base station is shown in some embodiments.
[0028] Figure 12 A structural view of the sound dampening member is shown in some embodiments.
[0029] Figure 13 A disassembled view of the cleaning base station is shown in some embodiments.
[0030] Figure 14 A structural view of the cleaning base station is shown in some embodiments.
[0031] Figure 15 A structural view of the cleaning base station is shown in some embodiments.
[0032] Figure 16 A structural view of the cleaning system is shown in some embodiments.
[0033] Explanation of main element symbols:
[0034] Cleaning base station 100, first base 10, chamber 11, opening 12, dust collection port 13, first dust collection air duct 131, functional module 14, second base 20, mounting recess 21, through hole 22, dust collection assembly 30, dust collection power component 31, housing 31a, power unit 31b, air outlet 301, air outlet channel 302, connecting part 311, first vibration damping component 312, elastic component 313, first connecting protrusion 314, fixing component 315, second vibration damping component 316, third vibration damping component 317, extension part 3171, dust collection housing component 32, second dust collection air duct 321, top cover 40, soundproofing component 50, expansion cavity 51, narrowing cavity 52, connecting cavity 53, first housing cavity 101, first gap 102, second housing cavity 103, second gap 104, cleaning equipment 200, cleaning component 210, cleaning system 300.
[0035] The following specific embodiments will further illustrate this disclosure in conjunction with the above-described accompanying drawings. Detailed Implementation
[0036] The technical solutions of the present disclosure will be described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present disclosure, and not all embodiments.
[0037] When a component is considered to be "located" on another component, it can be directly on the other component or may also be interspersed with other components. When a component is considered to be "connected" to another component, it can be directly connected to the other component or may also be interspersed with other components.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.
[0039] Unless otherwise defined, the term "multiple" in this document, when used to describe the number of components, specifically means that the component is two or more.
[0040] The following detailed description of some embodiments of this disclosure is provided in conjunction with the accompanying drawings. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0041] Please see Figures 1 to 3 and Figure 16 One embodiment of this disclosure provides a cleaning base station 100, which is used in conjunction with a cleaning device 200 and is at least used for maintaining the cleaning device 200.
[0042] In some embodiments, the cleaning base station 100 comprises a first base 10, the first base 10 is provided with a dust inlet 13, a chamber 11 and an opening 12 communicating with the chamber 11, the dust inlet 13 is used to communicate with a dust bin of the cleaning device 200, the chamber 11 is used to accommodate the cleaning device 200, and the opening 12 is used for the cleaning device 200 to enter and exit the chamber 11.
[0043] Please refer to Figure 2 For example, the dust inlet 13 is located at the bottom of the first base 10 and communicates with the chamber 11, when the cleaning device 200 enters the chamber 11 through the opening 12 and performs the dust collection operation, the dust inlet 13 communicates with the dust bin of the cleaning device 200, wherein the dust bin is used to store the garbage collected by the cleaning device 200 during the cleaning task, including but not limited to dust, hair, food residue, etc. For example, the bottom surface of the cleaning device 200 is provided with a hole communicating with the dust bin thereof, when the cleaning device 200 enters the chamber 11 and is in place, the hole is docked with the dust inlet 11; the opening 12 is opened on one side surface of the first base 10, and the opening size along the height direction thereof is greater than the height of the cleaning device 200, so as to facilitate the cleaning device 200 to enter and exit. The chamber 11 is arranged below the first base 10, and the volume thereof is greater than the size of the cleaning device 200, so as to facilitate the accommodation of the cleaning device 200. For example, the first base 10 is a hollow rectangular body with one side opening, and the hollow part forms the chamber 11, and the side opening forms the opening 12.
[0044] In some embodiments, the cleaning base station 100 comprises a second base 20, the second base 20 is detachably connected to the first base 10, and a first accommodation cavity 101 and a first gap 102 communicating with the first accommodation cavity 101 are formed between the second base 20 and the first base 10, the first accommodation cavity 101 is used to place some components of the cleaning base station 100 (described in detail below). For example, the first accommodation cavity 101 is located above the chamber 11 and is arranged separately from the chamber 11, and the first gap 102 communicates with the outside of the cleaning base station 100. That is, the second base 20 is located above the first base 10.
[0045] For example, one side of the first base 10 towards the second base 20 is provided with a first recess, after the second base 20 is connected to the first base 10, the first recess serves as the first accommodation cavity 101. Alternatively, one side of the second base 20 towards the first base 10 is provided with a second recess, after the second base 20 is connected to the first base 10, the second recess serves as the first accommodation cavity 101. Alternatively, one side of the first base 10 towards the second base 20 is provided with a first recess, one side of the second base 20 towards the first base 10 is provided with a second recess, after the second base 20 is connected to the first base 10, the first recess and the second recess jointly serve as the first accommodation cavity 101.
[0046] Exemplarily, the detachable connection between the first base 10 and the second base 20 includes, but is not limited to, buckles, fasteners, etc. For example, one of the first base 10 and the second base 20 is provided with buckles, and the other is provided with a buckle slot, and the first base 10 and the second base 20 are detachably connected through the buckles and the buckle slot. For another example, the fastener includes a screw, and the first base 10 and the second base 20 are detachably connected through the screw.
[0047] Exemplarily, the first gap 102 can be an assembly gap between the first base 10 and the second base 20, or a gap provided on the first base 10 or the second base 20.
[0048] In some embodiments, the cleaning base station 100 includes a dust collection assembly 30, which includes a dust collection power component 31 and a dust collection receiving component 32 in communication with the dust collection power component 31. The dust collection power component 31 is mounted to the second base 20 from the direction of the first base 10 towards the second base 20, and at least part of it is located in the first receiving cavity 101. The dust collection power component 31 is elastically connected to the first base 10 and the second base 20, respectively, and is in communication with the dust inlet 13. When the cleaning device 200 enters the cavity 11 to perform a dust collection operation, the dust collection power component 31 works to suck the garbage in the dust box into the dust collection receiving component 32, and at least part of the exhaust gas is discharged to the outside of the cleaning base station 100 from the first gap 102.
[0049] In some embodiments, the bottom of the first base 10 is further provided with a dust collection channel in communication with the dust inlet 13, which is in communication with the dust collection power component 31 (the dust collection channel is directly connected to the dust collection power component 31, or indirectly connected to the dust collection power component 31 through other channels), and the dust collection power component 31 starts to work when the cleaning device 200 enters the cleaning base station 100 to perform a dust collection operation. Exemplarily, the dust collection power component 31 generates a suction air flow when it works, and the garbage in the dust box is sucked into the dust collection receiving component 32 through the suction air flow. For example, the dust collection power component 31 includes a fan, and when the fan starts to work, it generates a negative pressure effect through rotation to suck the garbage in the dust box into the dust collection receiving component 32. For another example, the dust collection receiving component 32 is a garbage collection container with a larger volume than the dust box of the cleaning device 200, so as to store more garbage and reduce the frequency of user maintenance. It can be in different forms such as a dust bag, a dust tank, etc., and can be in different forms such as disposable use, repeated use, etc.
[0050] Exemplarily, please refer to Figure 14 and Figure 15The dust collecting opening 13 is connected with a first dust collecting air duct 131. The first dust collecting air duct 131 can be arranged on the bottom of the first base 10. Specifically, the first dust collecting air duct 131 is arranged on the side of the first base 10 facing the surface to be cleaned, so as not to occupy the space of the cavity 11. The dust collecting and containing member 32 is connected with a second dust collecting air duct 321. The second dust collecting air duct 321 can be arranged on the side wall between the first base 10 and the second base 20, so as not to occupy or as little as possible to occupy the space of the first containing cavity 101 or the second containing cavity 103. When the first base 10 is connected with the second base 20, the first dust collecting air duct 131 is connected with the second dust collecting air duct 321. When the cleaning device 200 returns to the cleaning base station 100 after completing cleaning, the dust box of the cleaning device 200 is connected with the dust collecting opening 13 and is connected, and the cleaning base station 100 performs dust collecting operation. The dust collecting power member 31 generates suction force, and the garbage is sucked into the dust collecting and containing member 32 from the dust box through the dust collecting opening 13, the first dust collecting air duct 131 and the second dust collecting air duct 321.
[0051] The dust collecting power member 31 is elastically connected with the first base 10 and the second base 20 respectively, so as to alleviate the at least part of the gas generated when the dust collecting power member 31 works and discharged through the first gap 102, without specially arranging an air outlet on the first base 10 and / or the second base 20, and using the first base 10 and the second base 20 to soundproof, so as to prevent the noise from being transmitted through the air outlet, reduce the noise caused by the flow of the air current when the dust collecting power member 31 works, and improve the user experience.
[0052] In some embodiments, at least part of the functional module 14 is arranged in the first containing cavity 101.
[0053] For example, the cleaning module includes a cleaning tank arranged in the first containing cavity 101 and used for containing and cleaning the cleaning member (such as a mop) of the cleaning device 200; the drying module includes a drying member arranged in the first containing cavity 101 or the second containing cavity 103 and a duct connected with the drying member. The duct is connected with the first containing cavity for drying the cleaning member of the cleaning device 200, or the duct is connected with the dust collecting and containing member 32 for drying the dust collecting and containing member 32; the charging module includes a charging electrode arranged in the first containing cavity 101 and an adapter arranged in the first containing cavity 101 or the second containing cavity 103. The charging electrode is electrically connected with the adapter, and the charging electrode is used for connecting with the charging sheet of the cleaning device 200 to charge the cleaning device; the control module includes a circuit board arranged in the first containing cavity 101 or the second containing cavity 103, so as to control the working of the cleaning base station 100 or to be electrically connected with the cleaning device 200 to control the working of the cleaning device 200; the heating module is used for heating the water for cleaning the cleaning member, so as to perform hot cleaning on the cleaning member or to perform hot water mopping through the cleaning member.
[0054] Referring to Figures 5 to 7 In some embodiments, the dust collection power component 31 comprises at least two connecting portions 311 fixed to the second base 20, and a first damping member 312 is arranged between each connecting portion 311 and the second base 20. The first damping member 312 can buffer part of the vibration of the dust collection power component 31 and transmit part of the vibration of the dust collection power component 31 to the second base 20, which is conducive to reducing the vibration of the dust collection power component 31 and further reducing the noise generated by the vibration of the dust collection power component 31.
[0055] For example, the first damping member 312 comprises a damping pad, such as a rubber pad with certain elasticity. The present disclosure is described by taking the damping pad as an example.
[0056] For example, the first damping member 312 comprises an elastic member, such as a spring.
[0057] Specifically, the dust collection power component 31 comprises two connecting portions 311, and the two connecting portions 311 are located on both sides of the dust collection power component 31 along the width direction of the dust collection power component 31. The line connecting the two connecting portions 311 passes through or is close to the center of mass of the dust collection power component 31, which is conducive to installing the first damping member 312 between the connecting portion 311 and the second base 20.
[0058] In some embodiments, the dust collection power component 31 comprises three connecting portions 311, two connecting portions 311 are located on both sides of the dust collection power component 31 along the width direction of the dust collection power component 31, and the other connecting portion 311 is located on the side of the dust collection power component 31 away from the dust collection and storage component 32. The line connecting the three connecting portions 311 forms a triangular structure, which improves the stability of the installation of the dust collection power component 31 to the second base 20 and is further conducive to reducing the vibration of the dust collection power component 31.
[0059] In other embodiments, the dust collection power component 31 comprises more than three connecting portions 311, and the more than three connecting portions 311 can be arranged at intervals along the peripheral wall of the dust collection power component 31. The number of connecting portions 311 can be set according to actual needs, and the present disclosure does not limit this.
[0060] In some embodiments, an elastic member 313 is arranged between the dust collection power component 31 and the first base 10, and the dust collection power component 31 elastically compresses the elastic member 313 along the direction of gravity, which improves the stability of the installation of the dust collection power component 31, provides dynamic support for the dust collection power component 31, and is conducive to relieving the vibration of the dust collection power component 31. For example, the elastic member 313 comprises a spring.
[0061] In some embodiments, the elastic member 313 can be fixedly connected or detachably connected to the dust collection power component 31 and the first base 10. For example, both ends of the elastic member 313 are fixedly connected. For another example, one end of the elastic member 313 is fixedly connected, and the other end is detachably connected. For another example, both ends of the elastic member 313 are detachably connected.
[0062] For example, the dust collection power component 31 is provided with a first connecting protrusion 314 protruding in the direction of the first base 10, and one end of the elastic member 313 is sleeved on the first connecting protrusion 314 to limit the elastic member 313, and the other end abuts against the first base 10.
[0063] For example, the first base 10 is provided with a second connecting protrusion on the side facing the second base 20, one end of the elastic member 313 is sleeved on the first connecting protrusion 314, and the other end is sleeved on the second connecting protrusion, which further limits the elastic member 313 and reduces the possibility of the elastic member 313 being separated from the first base 10 and the dust collection power component 31.
[0064] In some embodiments, the elastic member 313 is close to the center of mass of the dust collection power component 31, which is beneficial to provide dynamic support for the dust collection power component 31 and reduce the vibration of the dust collection power component 31.
[0065] In some embodiments, the mass of the dust collection power component 31 is defined as A, and the elastic force of the elastic member 313 is K, and 0.5Ag≤K≤Ag, where g is 9.8 m / s 2 For example, K can be any one of 0.5Ag, 0.6Ag, 0.7Ag, 0.8Ag, 0.9Ag, 1.0Ag or a range formed by any two of them.
[0066] Too low stiffness can easily cause the elastic member 313 to produce too much deformation when bearing load, thereby affecting its stability and durability, and too high stiffness can easily reduce its damping effect. If K is less than 0.5Ag, it is not conducive to reducing the stiffness of the elastic member 313, which reduces the damping effect of the elastic member 313. If K is greater than Ag, the pre-compression amount of the elastic member 313 is too large, which is not conducive to installation, and the stiffness coefficient of the elastic member 313 is too large, which reduces the vibration isolation effect of the elastic member 313. The present disclosure limits 0.5Ag≤K≤Ag to facilitate the installation of the elastic member 313 and improve the damping effect of the elastic member 313.
[0067] In some embodiments, each connecting part 311 is connected by a fixing part 315 and the second base 20, and the dust collection power part 31 is installed by the fixing part 315 from the first base 10 towards the second base 20, and by hanging the dust collection power part 31 on the side of the second base 20 towards the first base 10, the dust collection power part 31 is elastically connected with the first base 10 and the second base 20 respectively, which is conducive to improving the damping effect and reducing the pressure of the self-weight of the dust collection power part 31 on the first damping part 312, and further conducive to improving the damping effect.
[0068] In some embodiments, the side of the second base 20 towards the first base 10 is provided with a mounting recess 21, the mounting recess 21 is recessed from the direction of the first base 10 towards the second base 20, the mounting recess 21 is communicated with the first receiving cavity 101, part of the dust collection power part 31 is arranged in the mounting recess 21, and the remaining part of the dust collection power part 31 is arranged in the first receiving cavity 101.
[0069] Exemplarily, the fixing part 315 includes a screw or a bolt, when the dust collection power part 31 is installed, the dust collection power part 31 is placed in the mounting recess 21, the first damping part 312 is installed between the connecting part 311 and the second base 20, the screw or the bolt is sequentially threaded through the connecting part 311 and the first damping part 312, and is fixed to the second base 20, then the second base 20 is installed on the first base 10, so that the elastic part 313 is compressed between the dust collection power part 31 and the first base 10.
[0070] Exemplarily, the fixing part 315 includes a limiting column, and the limiting column is in interference fit with a fixing hole on the second base 20.
[0071] Specifically, the dust collection power component 31 is mounted to the second base 20 from the direction of the first base 10 towards the second base 20, i.e. is suspended on the second base 20, and a part of the dust collection power component 31 is located in the first receiving cavity 101 and another part is located in the second receiving cavity 103. Since the vibration and noise generated by the dust collection power component 31 during operation are relatively large, the dust collection power component 31 is mounted in a suspended manner on the second base 20 to effectively disperse the vibration generated by the dust collection power component 31 to the first base 10 and the second base 20, and the first damping component 312 and the elastic component 313 are used to alleviate the vibration generated thereby. Compared with the scheme of separately arranging the dust collection power component 31 on the first base 10 or the second base 20, the vibration generated by the dust collection power component 31 can effectively reduce the influence on the first base 10 or the second base 20. In addition, by arranging a part of the dust collection power component 31 in the first receiving cavity 101 and another part in the second receiving cavity 103, the noise generated by the vibration or the flow noise of the airflow generated during operation can be effectively dispersed, and the shell of the first base 10 and the second base 20 and other components arranged in the first receiving cavity 101 and the second receiving cavity 103 are used to effectively soundproof. Compared with the scheme of separately arranging the dust collection power component 31 in the first receiving cavity 101 or the second receiving cavity 103, the noise can be effectively reduced.
[0072] Please refer to Figures 8 to 10 In some embodiments, the dust collection power component 31 includes a shell 31a and a power part 31b arranged in the shell 31a, and a second damping component 316 and a third damping component 317 are arranged between the power part 31b and the shell 31a. The second damping component 316 and the third damping component 317 can buffer the vibration of the power part 31b, which is conducive to reducing the vibration generated by the dust collection power component 31 and the noise generated thereby.
[0073] Exemplarily, the second damping component 316 includes a damping pad, such as a rubber pad with a certain elasticity.
[0074] Exemplarily, the third damping component 317 includes a damping pad, such as a rubber pad with a certain elasticity.
[0075] In some embodiments, the second damping member 316 and the third damping member 317 are respectively arranged on opposite sides of the power part 31b, and exemplarily, the second damping member 316 and the third damping member 317 are respectively arranged at the rear and the front of the power part 31b in the direction of the dust collection power member 31 towards the dust collection container 32. The second damping member 316 is arranged around the rear of the power part 31b, and the third damping member 317 is arranged around the front of the power part 31b. Exemplarily, the airflow generated by the dust collection power member 31 flows from the dust collection power member 31 towards the dust collection container 32, and the third damping member 317 and the second damping member 316 are respectively installed in front of and behind the flow direction of the airflow. That is, the third damping member 317 is closer to the dust collection container 32 than the second damping member 316.
[0076] In some embodiments, the third damping member 317 includes an extension part 3171 beyond the shell 31a, the extension part 3171 connects the dust collection container 32, improves the sealing between the dust collection power member 31 and the dust collection container 32, and is conducive to reducing noise.
[0077] Please refer to Figure 1 and Figure 2 In some embodiments, the cleaning base station 100 further includes a cover 40, the cover 40 is detachably connected to the second base 20, and a second accommodation cavity 103 and a second gap 104 communicating with the second accommodation cavity 103 are formed between the cover 40 and the second base 20. The dust collection container 32 is arranged in the second accommodation cavity 103.
[0078] Exemplarily, one side of the second base 20 towards the cover 40 is provided with a third recess, and after the cover 40 is connected to the second base 20, the third recess serves as the second accommodation cavity 103. Alternatively, one side of the cover 40 towards the second base 20 is provided with a fourth recess, and after the cover 40 is connected to the second base 20, the fourth recess serves as the second accommodation cavity 103. Alternatively, one side of the second base 20 towards the cover 40 is provided with a third recess, and one side of the cover 40 towards the second base 20 is provided with a fourth recess, and after the cover 40 is connected to the second base 20, the third recess and the fourth recess together serve as the second accommodation cavity 103.
[0079] Please refer to Figure 4 In some embodiments, the shell 31a is provided with an air outlet 301, and the air outlet 301 is located in the first accommodation cavity 101. Exemplarily, during the dust collection process, the airflow generated by the dust collection power member 31 enters the first accommodation cavity 101 through the air outlet 301, and at least part of the gas is discharged from the first gap 102 to the outside of the cleaning base station 100, at this time, the first base 10 and the second base 20 are used for double sound insulation to reduce the noise caused by the airflow flowing when the dust collection power member 31 works.
[0080] Please refer to Figure 3In some embodiments, the air outlet 301 is located in the second receiving cavity 103. The upper cover 40 and the second base 20 form a second gap 104 communicating with the second receiving cavity 103. The air discharged by the dust collection power unit 31 through the air outlet 301 enters the second receiving cavity 103, and at least part of the gas is discharged from the second gap 104 to the outside of the cleaning base station 100. Since the second receiving cavity 103 has more unused space compared to the first receiving cavity 101, some of the space can be used to design an airflow channel, thereby reducing the noise caused by the airflow.
[0081] For example, the detachable connection between the upper cover 40 and the second base 20 can be achieved by means including but not limited to snaps, fasteners, etc. For example, fasteners include screws. The second gap 104 can be an assembly gap between the upper cover 40 and the second base 20, or it can be a gap opened on the upper cover 40 or the second base 20.
[0082] In some embodiments, the second receiving cavity 103 is located above the first receiving cavity 101 and is separated from the first receiving cavity 101, and the second gap 104 communicates with the outside of the cleaning base station 100.
[0083] For example, during the dust collection process, the airflow generated by the dust collection power unit 31 enters the second receiving cavity 103 through the air outlet 301, and is discharged to the outside of the cleaning base station 100 through the second gap 104. The second base 20 and the top cover 40 are used for sound insulation to reduce the noise caused by the airflow when the dust collection power unit 31 is working.
[0084] Please see Figure 2 In some embodiments, the second base 20 is provided with a through hole 22 away from the air outlet 301. The through hole 22 connects the first receiving cavity 101 and the second receiving cavity 103. Exemplarily, the through hole 22 penetrates the second base 20 along the thickness direction of the cleaning base station 100. When the air outlet 301 is located in the first receiving cavity 101, at least a portion of the gas discharged by the dust collection power unit 31 flows into the second receiving cavity 103 through the through hole 22 and is discharged to the outside of the cleaning base station 100 from the second gap 104; or, when the air outlet 301 is located in the second receiving cavity 103, at least a portion of the gas discharged by the dust collection power unit 31 flows into the first receiving cavity 101 through the through hole 22 and is discharged to the outside of the cleaning base station 100 from the first gap 102. Therefore, regardless of whether the air outlet 301 is located in the first receiving cavity 101 or the second receiving cavity 103, the through hole 22 can effectively disperse the gas discharged by the dust collection power unit 31, so that the airflow can flow between the upper and lower shells of the cleaning base station 100, thereby reducing flow resistance and increasing the flow channel distance. At the same time, the gas can be discharged outside the cleaning base station 100 through the first gap 102 and the second gap 104 simultaneously, improving the dust collection efficiency of the dust collection power unit 31, and effectively reducing the noise generated by the airflow.
[0085] Exemplarily, the through hole 22 is arranged away from the air outlet 301, and the air outlet 301 and the through hole 22 are arranged on two opposite sides of the second base 20, for example, left and right sides of the second base 20 in the width direction.
[0086] Referring to Figure 11 and Figure 12 In some embodiments, the cleaning base 100 comprises a sound-damping piece 50, which is connected with the air outlet 301 and cooperates with the second base 20 to form the air outlet channel 302. When the air outlet 301 is located in the first receiving cavity 101, the sound-damping piece 50 can be arranged on the lower surface of the bottom of the second base 20, that is, the side of the second base 20 facing the first base 10, and cooperates with the lower surface of the bottom of the second base 20 to form the air outlet channel 302; or when the air outlet 301 is located in the second receiving cavity 103, the sound-damping piece 50 can be arranged on the upper surface of the bottom of the second base 20, that is, the side of the second base 20 away from the first base 10, and cooperates with the upper surface of the bottom of the second base 20 to form the air outlet channel 302.
[0087] Exemplarily, the airflow generated by the dust collection power piece 31 passes through the air outlet 301, enters the air outlet channel 302, and enters the second receiving cavity 103 through the air outlet channel 302, which is conducive to reducing noise.
[0088] In some embodiments, one end of the sound-damping piece 50 is in communication with the air outlet 301, and the other end is connected with the second base 20 and covers the through hole 22. Exemplarily, the airflow generated by the dust collection power piece 31 passes through the air outlet 301, enters the air outlet channel 302, and enters the second receiving cavity 103 from the first receiving cavity 101 through the air outlet channel 302 and the through hole 22, and is discharged from the second gap 104 to the outside of the cleaning base 100; or enters the first receiving cavity 101 from the second receiving cavity 103, and is discharged from the first gap 102 to the outside of the cleaning base 100, which is conducive to reducing noise.
[0089] In some embodiments, the sound-damping piece 50 gradually increases in width along the air outlet direction, which is conducive to reducing noise.
[0090] In some embodiments, the sound-absorbing member 50 comprises a dilated cavity 51, a narrowed cavity 52 and a connecting cavity 53 in sequence. The dilated cavity 51 is in communication with the air outlet 301, the inner diameter of the dilated cavity 51 is greater than that of the narrowed cavity 52, and further, the connecting cavity 53 is in communication with the through hole 22. When the sound wave enters the dilated cavity 51, the sound wave will be reflected due to the sudden increase of the cross section when propagating in the dilated cavity 51. The sound wave is reflected multiple times in the dilated cavity 51, so that the sound wave energy interferes with each other, and part of the sound energy is consumed. When the sound wave enters the narrowed cavity 52 from the dilated cavity 51, the sound wave will change the acoustic impedance when entering a smaller cross section from a larger cross section, resulting in partial reflection and transmission of the sound wave. The reflected sound wave and the transmitted sound wave interfere with each other in the narrowed cavity 52, and cancel each other out, thereby reducing the intensity of the noise.
[0091] In some embodiments, the sound-absorbing layer is arranged in the air outlet channel 302, which is further beneficial to reduce the noise. The sound-absorbing layer may, for example, comprise sound-absorbing cotton, mineral wool, foam material, etc.
[0092] Referring to Figure 1 and Figure 13 , another embodiment of the disclosure provides a cleaning base station 100, which is used in cooperation with the cleaning device 200 and at least for maintaining the cleaning device 200.
[0093] In some embodiments, the cleaning base station 100 comprises a first base 10, a second base 20, a dust collection assembly 30 and an upper cover 40. The first base 10 is provided with a dust collection port 13, a cavity 11 and an opening 12 in communication with the cavity 11. The dust collection port 13 is used to communicate with the dust box of the cleaning device 200, the cavity 11 is used to accommodate the cleaning device 200, and the opening 12 is used for the cleaning device 200 to enter and exit the cavity 11. The second base 20 is connected to the first base 10, and a first accommodation cavity 101 is formed between the second base 20 and the first base 10. The upper cover 40 is detachably connected to the second base 20, and the upper cover 40 and the second base 20 form a second gap 104. The cleaning base station 100 comprises the dust collection assembly 30, which comprises a dust collection power member 31 and a dust collection accommodation member 32 in communication with the dust collection power member 31. At least part of the dust collection power member 31 is located in the first accommodation cavity 101, the dust collection power member 31 is elastically connected to the first base 10 and the second base 20 respectively, and is in communication with the dust collection port 13.
[0094] When the cleaning device 200 enters the cavity 11 to perform the dust collection operation, the dust collection power member 31 works to suck the garbage in the dust box into the dust collection accommodation member 32, and at least part of the gas discharged from the dust collection power member 31 is discharged to the outside of the cleaning base station 100 through the second gap 104.
[0095] The first base 10, the second base 20, the dust collection assembly 30 and the upper cover 40 disclosed in the embodiment can be the same as or similar to the features disclosed in the previous embodiment. For example, the dust collection power component 31 is mounted to the second base 20 from the first base 10 in a direction and at least partially located in the first receiving cavity 101. For another example, the dust collection power component 31 includes at least two connecting portions 311 connected with the second base 20, and a first damping component 312 is arranged between each connecting portion 311 and the second base 20. A resilient component 313 is arranged between the dust collection power component 31 and the first base 10, and the dust collection power component 31 elastically compresses the resilient component 313 in the direction of gravity. For another example, the dust collection power component 31 includes a housing 31a and a power portion 31b arranged in the housing 31a, and a second damping component 316 and a third damping component 317 are arranged between the power portion 31b and the housing 31a. The housing 31a includes an air outlet 301 located in the first receiving cavity 101 or the second receiving cavity 103. The second base 20 is provided with a through hole 22 away from the air outlet 301, and the through hole 22 communicates the first receiving cavity 101 and the second receiving cavity 103. The cleaning base 100 further includes a sound attenuation component 50 connected with the air outlet 301 and forming an air outlet channel 302 together with the second base 20. Other features and specific details are not described herein.
[0096] The dust collection power component 31 is elastically connected with the first base 10 and the second base 20, respectively, to reduce the noise generated by the vibration of the dust collection power component 31 during operation. At least part of the gas is discharged through the second gap 104, and the upper cover 40 and the second base 20 are used for sound insulation to reduce the noise caused by the flow of air or the vibration of the dust collection power component 31 during operation, thereby improving the user experience.
[0097] In some embodiments, the first base 10 and the second base 20 are integrally arranged or separately arranged. The integrally arranged first base 10 and the second base 20 can be integrally injection molded, and a first gap 102 can or can not be arranged between the two bases. The separately arranged first base 10 and the second base 20 can be detachably connected or non-detachably connected, and a first gap 102 can or can not be arranged between the two bases.
[0098] Referring to Figure 16The present disclosure provides a cleaning system 300, comprising a cleaning device 200 and a cleaning base station 100, the cleaning base station 100 is used for at least maintaining the cleaning device 200, the cleaning base station 100 is the cleaning base station 100 in any one of the above embodiments, the cleaning base station 100 is the cleaning base station 100 in any one of the above embodiments. Specifically, the cleaning base station 100 comprises a first base 10, a second base 20 and a dust collection assembly 30, the first base 10 is provided with a dust collection port 13, a cavity 11 and an opening 12 communicating with the cavity 11, the dust collection port 13 is used for communicating with a dust box of the cleaning device 200, the cavity 11 is used for accommodating the cleaning device 200, and the opening 12 is used for the cleaning device 200 to enter and exit the cavity 11; the second base 20 is detachably connected to the first base 10, and a first accommodation cavity 101 and a first gap 102 communicating with the first accommodation cavity 101 are formed between the second base 20 and the first base 10; the dust collection assembly 30 comprises a dust collection power component 31 and a dust collection accommodation component 32 communicating with the dust collection power component 31, the dust collection power component 31 is installed to the second base 20 from the direction of the first base 10 to the second base 20, and at least part of the dust collection power component 31 is located in the first accommodation cavity 101, the dust collection power component 31 is elastically connected to the first base 10 and the second base 20 respectively, and communicates with the dust collection port 13. When the cleaning device 200 enters the cavity 11 to perform a dust collection operation, the dust collection power component 31 works to suck the garbage in the dust box into the dust collection accommodation component 32, and at least part of the gas discharged from the first gap 102 is discharged to the outside of the cleaning base station 100.
[0099] It should be noted that the maintenance described herein includes but is not limited to charging, dust collection, washing the mop, drying, pumping dirty water from the cleaning device 200 and / or adding clean water, etc. It can be understood that the cleaning device 200 can complete at least one of the following in the cleaning base station 100: 1. the cleaning base station 100 charges the cleaning device 200; 2. the cleaning base station 100 recycles garbage in the cleaning device 200 into its dust collection container; 3. the cleaning base station 100 washes the cleaning component 210 (e.g. mop, roller, etc.) of the cleaning device 200 in the cleaning base station 100; 4. the cleaning base station 100 supplements clean water to the clean water box of the cleaning device 200; 5. the cleaning base station 100 recycles dirty water in the dirty water box of the cleaning device 200 into its dirty water container. The above maintenance types are only exemplary descriptions and are not limiting to the present disclosure. The cleaning device 200 described herein includes but is not limited to a sweeping machine, a mopping machine, a sweeping and mopping all-in-one machine, a washing machine, a dust collector, etc. cleaning device, which includes but is not limited to having cleaning function.
[0100] In summary, compared with the prior art, the cleaning base station 100 and the cleaning system 300 at least have the following beneficial effects:
[0101] The first base 10 and the second base 20 are elastically connected with the dust collecting power component 31 respectively, so as to reduce the noise caused by vibration of the dust collecting power component 31 during operation, and the first base 10 and the second base 20 or the upper cover 40 and the second base 20 are used for sound insulation, so as to reduce the noise caused by airflow during operation of the dust collecting power component 31 or the noise caused by vibration, and the user experience is improved.
[0102] Those skilled in the art should recognize that the above embodiments are only used to illustrate the present disclosure, but not as a limitation to the present disclosure, and any appropriate changes and variations to the above embodiments within the spirit and principles of the present disclosure are within the scope of the present disclosure.
Claims
1. A cleaning base station for use with a cleaning device and for at least maintaining the cleaning device, characterized in that, The cleaning base station comprises: a first base provided with a dust collecting opening, a chamber and an opening communicating with the chamber, the dust collecting opening being used for communicating with a dust box of the cleaning device, the chamber being used for accommodating the cleaning device, and the opening being used for allowing the cleaning device to enter or exit the chamber; a second base detachably connected with the first base, a first accommodating cavity and a first gap communicating with the first accommodating cavity being formed between the second base and the first base; and a dust collecting assembly comprising a dust collecting power component and a dust collecting accommodating component communicating with the dust collecting power component, the dust collecting power component being mounted to the second base from the direction of the first base towards the second base, and at least a part of the dust collecting power component being located in the first accommodating cavity, the dust collecting power component being elastically connected with the first base and the second base respectively and communicating with the dust collecting opening; wherein, when the cleaning device enters the chamber to perform a dust collecting operation, the dust box communicates with the dust collecting opening, the dust collecting power component works to suck the garbage in the dust box into the dust collecting accommodating component, and at least a part of the gas discharged from the dust collecting power component is discharged to the outside of the cleaning base station through the first gap.
2. The cleaning station of claim 1, wherein, The dust collecting power component comprises at least two connecting portions connected with the second base, and a first damping component is arranged between each connecting portion and the second base; A resilient component is arranged between the dust collecting power component and the first base, and the dust collecting power component elastically compresses the resilient component along the direction of gravity.
3. The cleaning station of claim 1, wherein, The dust collecting power component comprises a shell and a power portion arranged in the shell, and a second damping component and a third damping component are arranged between the power portion and the shell.
4. The cleaning station of claim 3, wherein, The second damping component and the third damping component are arranged on opposite sides of the power portion respectively, the third damping component comprises an extension portion beyond the shell, and the extension portion is connected with the dust collecting accommodating component.
5. The cleaning station of claim 3, wherein, The cleaning base station further comprises an upper cover, the upper cover is detachably connected with the second base, a second accommodating cavity and a second gap communicating with the second accommodating cavity are formed between the upper cover and the second base, and the dust collecting accommodating component is arranged in the second accommodating cavity.
6. The cleaning station of claim 5, wherein, The shell comprises an air outlet, and the air outlet is located in the first accommodating cavity or the second accommodating cavity; wherein, when the air outlet is located in the first accommodating cavity, at least a part of the gas discharged from the dust collecting power component is discharged to the outside of the cleaning base station through the first gap; or, when the air outlet is located in the second accommodating cavity, at least a part of the gas discharged from the dust collecting power component is discharged to the outside of the cleaning base station through the second gap.
7. The cleaning station of claim 6, wherein, The second base is provided with a through hole away from the air outlet, and the through hole communicates with the first accommodating cavity and the second accommodating cavity; wherein, when the air outlet is located in the first accommodating cavity, at least a part of the gas discharged from the dust collecting power component flows into the second accommodating cavity through the through hole and is discharged to the outside of the cleaning base station through the second gap; or, when the air outlet is located in the second accommodating cavity, at least a part of the gas discharged from the dust collecting power component flows into the first accommodating cavity through the through hole and is discharged to the outside of the cleaning base station through the first gap.
8. The cleaning station of claim 6, wherein, The cleaning base station further comprises a sound-damping member connected with the air outlet and forming an air outlet channel together with the second base.
9. The cleaning station of claim 8, wherein, The sound-damping member gradually increases in width along the air outlet direction, or the sound-damping member comprises an expanding cavity, a narrowing cavity and a connecting cavity connected in sequence, the expanding cavity is connected with the air outlet, and the inner diameter of the expanding cavity is greater than that of the narrowing cavity.
10. The cleaning station of claim 8, wherein, An acoustic layer is arranged in the air outlet channel.
11. A cleaning base station for use with a cleaning device, at least for maintaining the cleaning device, characterized in that, The cleaning base station comprises: The first base is provided with a dust collection port, a chamber and an opening communicating with the chamber, the dust collection port is used for communicating with a dust box of the cleaning equipment, the chamber is used for accommodating the cleaning equipment, and the opening is used for allowing the cleaning equipment to enter and exit the chamber; The second base is connected with the first base, and a first accommodation cavity is formed between the second base and the first base; The upper cover is detachably connected with the second base, and a second gap is formed between the second base and the upper cover; and The dust collection assembly comprises a dust collection power member and a dust collection accommodation member in communication with the dust collection power member, at least part of the dust collection power member is located in the first accommodation cavity, the dust collection power member is elastically connected with the first base and the second base respectively, and is in communication with the dust collection port; When the cleaning equipment enters the chamber to perform a dust collection operation, the dust box is in communication with the dust collection port, the dust collection power member works to suck the garbage in the dust box into the dust collection accommodation member, and at least part of the gas discharged from the second gap is discharged to the outside of the cleaning base station.
12. A cleaning system characterized by, It comprises: A cleaning device, and A cleaning base station used in cooperation with the cleaning device and at least for maintaining the cleaning device, the cleaning base station comprises: The first base is provided with a dust collection port, a chamber and an opening communicating with the chamber, the dust collection port is used for communicating with a dust box of the cleaning equipment, the chamber is used for accommodating the cleaning equipment, and the opening is used for allowing the cleaning equipment to enter and exit the chamber; The second base is detachably connected with the first base, and a first accommodation cavity and a first gap communicating with the first accommodation cavity are formed between the second base and the first base; The dust collection assembly comprises a dust collection power member and a dust collection accommodation member in communication with the dust collection power member, the dust collection power member is mounted to the second base from the direction of the first base towards the second base, and at least part of the dust collection power member is located in the first accommodation cavity, the dust collection power member is elastically connected with the first base and the second base respectively, and is in communication with the dust collection port; When the cleaning equipment enters the chamber to perform a dust collection operation, the dust box is in communication with the dust collection port, the dust collection power member works to suck the garbage in the dust box into the dust collection accommodation member, and at least part of the gas discharged from the first gap is discharged to the outside of the cleaning base station.