Cleaning equipment and cleaning system
By setting the adjustment component to drive the motor assembly in the cleaning equipment, the cleaning equipment can switch between cleaning and dust collection states, which solves the problem of high cost of base station motors in the prior art and reduces the cost of base station setup.
Patent Information
- Application Number
- CN202423106120.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing vacuum cleaners require a suction motor to function at their own dust collection station, resulting in higher costs.
By setting an adjustment component in the cleaning equipment, the drive motor assembly switches between a first position and a second position, allowing the cleaning equipment to switch between cleaning and dust collection states. The motor assembly blows the dust from the dust cup assembly into the dust bag, thus avoiding the need to install a motor in the base station.
This reduces the setup cost of base stations and enables the cleaning of dust and debris inside the dust cup assembly without the need for a motor in the base station.
Smart Images

Figure CN223614740U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cleaning equipment technology, and more particularly to a cleaning device and cleaning system. Background Technology
[0002] Cleaning equipment (such as vacuum cleaners) uses an electric motor to drive the blades to rotate at high speed, creating negative air pressure inside a sealed housing, which in turn sucks external dust into the dust cup.
[0003] In the prior art, a self-collecting dust base station can be provided. After the vacuum cleaner is used, in order to prevent bacteria from growing inside the dust cup, the dust cup needs to be placed on the self-collecting dust base station. The suction motor on the self-collecting dust base station collects the dust in the dust cup into the dust bag of the self-collecting dust base station.
[0004] However, the aforementioned self-collecting dust collection base station requires a suction motor, which is costly. Utility Model Content
[0005] Based on this, this application provides a cleaning device and a cleaning system to address the shortcomings of the prior art.
[0006] On the one hand, the cleaning device provided in this application includes: a body, a motor assembly, a dust cup assembly, and an adjustment assembly;
[0007] The motor assembly is rotatably mounted on the machine body, and the motor assembly has a first air inlet and a first air outlet that are connected to each other.
[0008] The dust cup assembly is mounted on the machine body;
[0009] The adjustment assembly includes an adjustment member connected to the motor assembly. The adjustment member drives the motor assembly to rotate relative to the body, so that the motor assembly switches between a first position and a second position. In the first position, the first air inlet is connected to the dust cup assembly, and the first air outlet is connected to the outside. In the second position, the first air inlet is connected to the outside, and the first air outlet is used to connect to the dust bag of the base station through the dust cup assembly, so that the dust in the dust cup assembly is blown into the dust bag through the motor assembly.
[0010] The cleaning equipment provided in this application uses an adjusting component to drive a motor assembly to rotate relative to the main body, thereby switching the motor assembly between a first position and a second position. In the first position, the cleaning equipment is in a cleaning state, with the area to be cleaned, the dust cup assembly, the first air inlet, and the first air outlet sequentially connected. The motor assembly draws dust from the area to be cleaned into the dust cup assembly, thus cleaning the area. In the second position, the cleaning equipment is in a dust collection state, with the first air inlet, the first air outlet, the dust cup assembly, and the dust bag sequentially connected. The motor assembly blows the dust collected in the dust cup assembly into the dust bag, thus cleaning the dust inside the dust cup assembly. In this way, there is no need to install a motor in the base station; the motor assembly of the cleaning equipment can collect dust from the dust cup assembly into the dust bag, reducing the installation cost of the base station.
[0011] In one possible implementation, the cleaning device provided in this application has a second air inlet and a second air outlet on the dust cup assembly. In the first position, the first air inlet is connected to the second air outlet, and the motor assembly closes the second air inlet. In the second position, the second air inlet is connected to the first air outlet, and the motor assembly closes the second air outlet.
[0012] Thus, by setting a second air inlet and a second air outlet, in the first position, the second air outlet is connected to the first air inlet, thereby connecting the first air inlet to the dust cup assembly; in the second position, the second air inlet is connected to the first air outlet, thereby connecting the first air outlet to the dust cup assembly.
[0013] In one possible implementation, the cleaning device provided in this application has multiple second air inlets, each of which is arranged around the periphery of the second air outlet.
[0014] Thus, by setting multiple second air inlets, the first air outlet and the second air inlet are positioned opposite each other in the second position, thereby facilitating the connection between the first air outlet and the second air inlet.
[0015] In one possible implementation, the cleaning device provided in this application further includes at least one reset member, which connects the motor assembly to the body, and drives the motor assembly to switch from the second position to the first position.
[0016] Thus, by setting a reset element, the motor assembly can be switched from the first position to the second position.
[0017] In one possible implementation, the cleaning device provided in this application has a resilient element as the reset element.
[0018] Thus, when the motor assembly rotates relative to the body to switch from the first position to the second position, the reset member deforms, and the elastic force of the reset member can drive the motor assembly to switch from the second position to the first position.
[0019] In one possible implementation, the cleaning device provided in this application has an adjusting member rotatably connected to the motor assembly, and the adjusting member moves relative to the body to drive the motor assembly to rotate relative to the body.
[0020] Thus, by moving the adjusting component relative to the machine body, the motor assembly can be rotated relative to the machine body, thereby allowing the motor assembly to switch between a first position and a second position, which facilitates driving the motor assembly to rotate relative to the machine body.
[0021] In one possible implementation, the cleaning device provided in this application has a first limiting part on the body and at least two second limiting parts on the adjusting member. In the first position, one second limiting part is connected to the first limiting part, and in the second position, the other second limiting part is connected to the first limiting part.
[0022] In this way, the adjusting member can be limited by the first limiting part and the second limiting part, thereby limiting the motor assembly to the first position or the second position, thus ensuring the stability and reliability of the motor assembly 200 in the first position and the second position.
[0023] In one possible implementation, the cleaning device provided in this application further includes an unlocking component disposed on the machine body, which moves toward the adjusting component to disengage the second limiting portion from the first limiting portion.
[0024] Thus, by setting an unlocking component, the second limiting part and the first limiting part can be disengaged, thereby releasing the limiting of the adjusting part and allowing the adjusting part to move relative to the machine body.
[0025] In one possible implementation, the cleaning device provided in this application further includes a first control element, which controls the motor assembly to turn on or off when in the first position;
[0026] The unlocking component is disposed on the first control component. In the second position, the first control component moves relative to the body to drive the unlocking component to move toward the adjusting component.
[0027] Thus, by setting a first control member, in the first position, the first control member controls the switch of the motor assembly, and in the second position, the first control member can be moved relative to the machine body to drive the unlocking member to move toward the adjusting member, thereby disengaging the first limiting part and the second limiting part through the unlocking member.
[0028] In one possible implementation, the cleaning device provided in this application has a second limiting portion that is a toothed portion disposed on the adjusting member, the toothed portion abutting against the first limiting portion.
[0029] Thus, the adjusting member is limited by the teeth abutting against the first limiting part.
[0030] In one possible implementation, the cleaning device provided in this application has a guide groove on the body, and the adjusting member is at least partially located in the guide groove. The adjusting member moves along the guide groove to drive the motor assembly to rotate relative to the body.
[0031] In this way, the guide groove can provide guidance for the adjusting component, making it easier for the adjusting component to move relative to the machine body.
[0032] In one possible implementation, the cleaning device provided in this application further includes a second control unit disposed on the machine body, the second control unit controlling the motor assembly to turn on or off;
[0033] The machine body is provided with a first clearance hole. In the second position, the second control component is exposed through the first clearance hole in the machine body; in the first position, the adjustment component covers the second control component.
[0034] Thus, by providing a second control component, in the second position, the motor assembly is activated via the second control component, thereby blowing dust from the dust cup assembly into the dust bag. A first clearance hole is provided so that in the second position, the second control component can be exposed through the first clearance hole, facilitating its operation.
[0035] In one possible implementation, the cleaning device provided in this application has a second clearance hole on the adjusting member, and in the second position, the first clearance hole is opposite to the second clearance hole.
[0036] Thus, in the first position, the second clearance hole is offset from the first clearance hole, and the first clearance hole is covered by the adjusting member to cover the second control member. In the second position, the second clearance hole is opposite to the first clearance hole, so that the second control member can be exposed through the first clearance hole and the second clearance hole in sequence, thereby facilitating the operation of the second control member.
[0037] In one possible implementation, the cleaning device provided in this application has the adjusting member rotating relative to the body to drive the motor assembly to rotate relative to the body.
[0038] Thus, by rotating the adjusting component relative to the machine body, the motor assembly is driven to rotate relative to the machine body. This makes it easier to rotate the motor assembly relative to the machine body.
[0039] In one possible implementation, the cleaning device provided in this application has a guide hole on the body, the extension direction of the guide hole matching the rotation path of the body, the adjusting member extending out of the body through the guide hole, and the adjusting member rotating along the guide hole.
[0040] Thus, by setting a guide hole, the motor assembly can be rotated relative to the machine body by rotating the adjusting component along the guide hole; by extending the adjusting component out of the machine body through the guide hole, it is convenient to operate the adjusting component and rotate it along the guide hole.
[0041] In one possible implementation, the cleaning device provided in this application has a first air duct inside the body. In the first position, the first air duct connects the first air inlet and the dust cup assembly, and in the second position, the first air duct is closed.
[0042] Thus, in the first position, the first air inlet and the dust cup assembly can be connected through the first air duct.
[0043] In one possible implementation, the cleaning device provided in this application has a second air duct inside the body. In the second position, the second air duct connects the first air outlet and the dust cup assembly. In the first position, the second air duct is closed.
[0044] Thus, in the second position, the first air outlet and the second air inlet can be connected through the second air duct.
[0045] In one possible implementation, the cleaning device provided in this application has rotating shafts on both sides of the motor assembly, the rotating shafts being inserted into the machine body, and two reset members being correspondingly sleeved on the rotating shafts.
[0046] Thus, by setting a rotating shaft that is inserted into the machine body, the motor assembly is rotatably connected to the machine body, allowing the motor assembly to rotate relative to the machine body. A reset component is correspondingly fitted onto the rotating shaft, so that the reset component can drive the motor assembly, thereby switching the motor assembly from the second position to the first position.
[0047] On the other hand, this application provides a cleaning system including a base station and any of the above-mentioned cleaning devices, wherein the base station is used to collect dust and debris from the dust cup assembly of the cleaning device.
[0048] In addition to the technical problems solved by the embodiments of this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that the cleaning equipment and cleaning system provided by this application can solve, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments. Attached Figure Description
[0049] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0050] Figure 1 Schematic diagram of the cleaning equipment provided in the embodiments of this application Figure 1 ;
[0051] Figure 2 When in the first position Figure 1 Sectional view of AA;
[0052] Figure 3 For the second position Figure 1 Sectional view of BB;
[0053] Figure 4 for Figure 3 Enlarged view of point C in the middle;
[0054] Figure 5 for Figure 1 Another structural diagram from another perspective;
[0055] Figure 6 for Figure 1 Schematic diagram of the structure of the motor assembly and reset component;
[0056] Figure 7 for Figure 1 An explosion diagram;
[0057] Figure 8 for Figure 7 Enlarged view of point D in the middle;
[0058] Figure 9 for Figure 8 Schematic diagram of the structure of the adjustment component;
[0059] Figure 10 for Figure 1 Cross-sectional view of the central adjustment components and part of the fuselage;
[0060] Figure 11 Schematic diagram of the cleaning equipment provided in the embodiments of this application Figure 2 ;
[0061] Figure 12 for Figure 10 Schematic diagram of the structure of the motor assembly and reset component;
[0062] Figure 13 for Figure 11 Another structural diagram from another perspective;
[0063] Figure 14 When in the first position Figure 10 A cross-sectional view of the cleaning equipment;
[0064] Figure 15 For the second position Figure 10 A cross-sectional view of a cleaning equipment.
[0065] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments.
[0066] Explanation of reference numerals in the attached figures:
[0067] 100. Fuselage; 110. First limiting part; 120. Guide groove; 121. Wide part; 122. Narrow part; 130. First clearance hole; 140. First air duct; 150. Second air duct; 160. Shell part; 161. Insertion hole;
[0068] 200, Motor assembly; 210, First air inlet; 220, First air outlet; 230, Rotating shaft;
[0069] 300. Dust cup assembly; 310. Second air inlet; 320. Second air outlet; 330. Third air inlet; 340. Cover plate;
[0070] 400. Adjustment assembly; 410. Adjustment component; 411. Second limiting part; 412. Mounting plate; 413. Second clearance hole; 414. First section; 415. Second section; 416. Rotating part; 420. Reset component; 421. Torsion spring; 422. Connecting block; 430. Unlocking component;
[0071] 500, First control component; 600, Second control component. Detailed Implementation
[0072] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0073] In existing technology, after a vacuum cleaner cleans the floor, dust and debris are collected in the dust cup. If the dust and debris in the dust cup are not emptied in time, bacteria can grow inside. To facilitate cleaning the dust cup, vacuum cleaners are usually equipped with a self-collecting dust collection station. After using the vacuum cleaner, the dust cup needs to be placed on the self-collecting dust collection station, which opens the dust cup. Then, the suction motor on the self-collecting dust collection station turns on, sucking the dust and debris from the dust cup into the dust bag of the self-collecting dust collection station, thus cleaning the dust cup. However, the aforementioned self-collecting dust collection station itself is also equivalent to a vacuum cleaner, and it must be equipped with a suction motor to suck the dust and debris into the dust bag. However, suction motors are expensive, resulting in a high cost for installing such a station.
[0074] Based on this, this application provides a cleaning device that uses an adjusting component to drive a motor assembly to rotate relative to the main body, thereby switching the motor assembly between a first position and a second position, and allowing the cleaning device to switch between a cleaning state and a dust collection state. The motor assembly has a first air inlet and a first air outlet connected to each other. In the first position, the cleaning device is in a cleaning state, with the area to be cleaned, the dust cup assembly, the first air inlet, and the first air outlet sequentially connected, so that the motor assembly draws dust from the area to be cleaned into the dust cup assembly, thus cleaning the area. In the second position, the cleaning device is in a dust collection state, with the first air inlet, the first air outlet, the dust cup assembly, and the dust bag sequentially connected, so that the motor assembly blows the dust collected in the dust cup assembly into the dust bag, thus cleaning the dust in the dust cup assembly. In this way, there is no need to install a motor in the base station; the motor assembly of the cleaning device can collect dust from the dust cup assembly into the dust bag, reducing the installation cost of the base station.
[0075] The specific implementation methods of the cleaning equipment and cleaning system provided in this application will be described in detail below with reference to the accompanying drawings.
[0076] Reference Figures 1 to 15 The cleaning device provided in this application embodiment includes: a body 100, a motor assembly 200, a dust cup assembly 300, and an adjustment assembly 400. The motor assembly 200 is rotatably mounted on the body 100, and has a first air inlet 210 and a first air outlet 220 communicating with each other. The dust cup assembly 300 is mounted on the body 100.
[0077] The adjustment assembly 400 includes an adjustment member 410, which is connected to the motor assembly 200. The adjustment member 410 drives the motor assembly 200 to rotate relative to the body 100, so that the motor assembly 200 switches between a first position and a second position. In the first position, the first air inlet 210 is connected to the dust cup assembly 300, and the first air outlet 220 is connected to the outside. In the second position, the first air inlet 210 is connected to the outside, and the first air outlet 220 is used to connect to the dust bag of the base station through the dust cup assembly 300, so that the dust in the dust cup assembly 300 is sucked into the dust bag of the base station through the motor assembly 200.
[0078] For example, the motor assembly 200 is disposed within the body 100. In a first position, the first air outlet 220 is connected to the outside through the body 100; in a second position, the first air inlet 210 is connected to the outside through the body 100. For instance, the body 100 is provided with an air inlet channel and an air outlet channel. In the first position, the air outlet channel connects the first air outlet 220 to the outside, and the air inlet channel is offset from both the first air inlet 210 and the first air outlet 220 to close the air inlet channel. In the second position, the air inlet channel connects the first air inlet 210 to the outside, and the air outlet channel is offset from both the first air inlet 210 and the first air outlet 220 to close the air outlet channel.
[0079] In this application, reference is made to Figure 2 and Figure 14 The dust cup assembly 300 has a third air inlet 330. In the first position, the third air inlet 330 is connected to the area to be cleaned through the body 100, so that the area to be cleaned, the body 100, the dust cup assembly 300, the first air inlet 210 and the first air outlet 220 are connected in sequence. Thus, when the motor assembly 200 is turned on, the motor assembly 200 can drive the airflow along... Figure 2 The path indicated by the dashed arrow or Figure 13 The flow path indicated by the dashed arrow creates negative pressure inside the dust cup assembly 300, drawing dust and debris from the area to be cleaned into the assembly. This allows for cleaning of the area.
[0080] Reference Figure 3 and Figure 15 In the second position, the first air inlet 210, the first air outlet 220, the dust cup assembly 300, the second air inlet 310, and the dust bag of the base station are connected in sequence. When the motor assembly 200 is turned on, the motor assembly 200 can drive the airflow along... Figure 3 The path indicated by the dashed arrow or Figure 14The path indicated by the dashed arrow flows to blow dust from the dust cup assembly 300 into the dust bag via the motor assembly 200, thereby collecting the dust from the dust cup assembly 300 and cleaning the dust cup assembly 300.
[0081] Reference Figure 3 and Figure 7 Specifically, the dust bag is located on the side of the dust cup assembly 300 away from the motor assembly 200. A cover plate 340 is provided on the side of the dust cup assembly 300 away from the motor assembly 200. In the second position, the cover plate 340 is open, allowing communication between the dust cup assembly 300 and the dust bag. In the first position, the cover plate 340 is closed, sealing the interior of the dust cup assembly 300.
[0082] The cleaning device provided in this embodiment uses an adjusting member 410 to drive the motor assembly 200 to rotate relative to the body 100, thereby switching the motor assembly 200 between a first position and a second position, and allowing the cleaning device to switch between a cleaning state and a dust collection state. The motor assembly 200 is provided with a first air inlet 210 and a first air outlet 220 that are connected to each other. In the first position, the cleaning device is in a cleaning state, with the area to be cleaned, the dust cup assembly 300, the first air inlet 210, and the first air outlet 220 sequentially connected, so that the motor assembly 200 draws dust from the area to be cleaned into the dust cup assembly 300, thereby cleaning the area. In the second position, the cleaning device is in a dust collection state, with the first air inlet 210, the first air outlet 220, the dust cup assembly 300, and the dust bag sequentially connected, so that the motor assembly 200 blows the dust collected in the dust cup assembly 300 into the dust bag, thereby cleaning the dust in the dust cup assembly 300. In this way, there is no need to install a motor in the base station. The dust in the dust cup assembly 300 can be collected into the dust bag by the motor assembly 200 of the cleaning equipment, which reduces the installation cost of the base station.
[0083] Reference Figure 2 , Figure 3 , Figure 14 and Figure 15 The cleaning device provided in this application embodiment has a second air inlet 310 and a second air outlet 320 on the dust cup assembly 300. In the first position, the first air inlet 210 is connected to the second air outlet 320, and the motor assembly 200 closes the second air inlet 310. In the second position, the second air inlet 310 is connected to the first air outlet 220, and the motor assembly 200 closes the second air outlet 320.
[0084] In the first position, the second air inlet 310 is offset from both the first air inlet 210 and the first air outlet 220, so that the second air inlet 310 can be closed by the motor assembly 200. In the second position, the second air outlet 320 is offset from both the first air inlet 210 and the first air outlet 220, so that the second air outlet 320 can be closed by the motor assembly 200.
[0085] Thus, by setting a second air inlet 310 and a second air outlet 320, in the first position, the second air outlet 320 is connected to the first air inlet 210, thereby connecting the first air inlet 210 to the dust cup assembly 300; in the second position, the second air inlet 310 is connected to the first air outlet 220, thereby connecting the first air outlet 220 to the dust cup assembly 300.
[0086] Reference Figure 7 The cleaning device provided in this application embodiment has multiple second air inlets 310, each second air inlet 310 being arranged around the second air outlet 320.
[0087] Thus, by setting multiple second air inlets 310, in the second position, it is convenient for the first air outlet 220 to be opposite to the second air inlet 310, thereby facilitating the connection between the first air outlet 220 and the second air inlet 310.
[0088] Reference Figure 2 and Figure 14 The cleaning device provided in this application embodiment has a first air duct 140 inside the body 100. In the first position, the first air duct 140 connects the first air inlet 210 and the dust cup assembly 300. In the second position, the first air duct 140 is closed.
[0089] Specifically, the first air duct 140 is connected to the second air outlet 320. In the first position, the first air duct 140 is opposite to the first air inlet 210, so that the first air duct 140 is connected to the first air inlet 210, and thus the first air inlet 210 and the second air outlet 320 can be connected through the first air duct 140. In the second position, the first air duct 140 is staggered from both the first air outlet 220 and the first air inlet 210, so that the first air duct 140 is closed by the motor assembly 200.
[0090] Reference Figure 3 and Figure 15 The cleaning device provided in this application embodiment has a second air duct 150 inside the body 100. In the second position, the second air duct 150 connects the first air outlet 220 and the dust cup assembly 300. In the first position, the second air duct 150 is closed.
[0091] Specifically, the second air duct 150 is connected to the second air inlet 310. In the second position, the second air duct 150 is opposite to the first air outlet 220, so that the second air duct 150 is connected to the first air outlet 220, and thus the first air outlet 220 and the second air inlet 310 can be connected through the second air duct 150. In the first position, the second air duct 150 is staggered from both the first air outlet 220 and the first air inlet 210, so that the second air duct 150 is closed by the motor assembly 200.
[0092] Reference Figure 6 , Figure 7 and Figure 12 The cleaning device provided in this application embodiment includes an adjustment component 400 that further includes at least one reset component 420. The reset component 420 is connected to the motor assembly 200 and the body 100. The reset component 420 drives the motor assembly 200 to switch from a second position to a first position.
[0093] Thus, by setting the reset element 420, the motor assembly 200 can be switched from the first position to the second position.
[0094] Reference Figure 6 , Figure 7 and Figure 12 In the cleaning equipment provided in this application embodiment, the reset member 420 is an elastic member.
[0095] In this application, in the first position, the reset member 420 is in a natural state. The reset member 420 is connected to the motor assembly 200 so that the motor assembly 200 rotates relative to the body 100. When switching from the first position to the second position, the motor assembly 200 can cause the reset member 420 to undergo elastic deformation, thereby driving the motor assembly 200 to switch from the second position to the first position through the elastic force of the reset member 420.
[0096] For example, the reset member 420 includes a torsion spring 421, which has a first extension and a second extension. The first extension is connected to the motor assembly 200, and the second extension is connected to the housing 100. When the motor assembly 200 rotates relative to the housing 100, the motor assembly 200 causes the torsion spring 421 to twist, thereby generating torque in the torsion spring 421. The torque of the torsion spring 421 can drive the motor assembly 200 to reset.
[0097] Reference Figure 6 , Figure 7 and Figure 12 The cleaning device provided in this application embodiment has a rotating shaft 230 on both sides of the motor assembly 200. The rotating shaft 230 is inserted into the body 100. There are two reset pieces 420, and the two reset pieces 420 are correspondingly sleeved on the rotating shaft 230.
[0098] Specifically, a rotating shaft 230 is provided and inserted into the machine body 100, so that the motor assembly 200 is rotatably connected to the machine body 100, thereby allowing the motor assembly 200 to rotate relative to the machine body 100. Two reset members 420 are provided so that the reset members 420 can drive the motor assembly 200 to rotate relative to the machine body 100, thus facilitating the switching of the motor assembly 200 from the second position to the first position.
[0099] For example, torsion spring 421 is fitted onto rotating shaft 230.
[0100] Furthermore, the reset member 420 also includes a connecting block 422, which connects the torsion spring 421 to the motor assembly 200. Specifically, the connecting block 422 connects the first extension to the motor assembly 200.
[0101] In some examples, the housing 100 includes two housing portions 160 disposed opposite each other, located on both sides of the motor assembly 200, and two reset members 420 are correspondingly connected to the two housing portions 160. The housing portion 160 has a insertion hole 161, and the rotating shaft 230 is correspondingly inserted into the insertion hole 161.
[0102] The housing 160 has an arc-shaped groove surrounding the insertion hole 161, and the connecting block 422 is located within the arc-shaped groove. When the motor assembly 200 rotates relative to the housing 160, the connecting block 422 rotates along the arc-shaped groove.
[0103] Reference Figures 1 to 10 In the cleaning equipment provided in this application embodiment, the adjusting member 410 is rotatably connected to the motor assembly 200. The adjusting member 410 moves relative to the machine body 100 to drive the motor assembly 200 to rotate relative to the machine body 100.
[0104] Thus, by moving the adjusting member 410 relative to the machine body 100, the motor assembly 200 can be rotated relative to the machine body 100, thereby allowing the motor assembly 200 to switch between a first position and a second position, which facilitates the rotation of the motor assembly 200 relative to the machine body 100.
[0105] Reference Figure 4 and Figure 8 The cleaning device provided in this application embodiment has a first limiting part 110 on the body 100 and at least two second limiting parts 411 on the adjusting member 410. In the first position, one second limiting part 411 is connected to the first limiting part 110, and in the second position, the other second limiting part 411 is connected to the first limiting part 110.
[0106] Specifically, in the first position, one of the second limiting parts 411 is connected to the first limiting part 110 to limit the adjusting member 410 to the current position, thereby limiting the motor assembly 200 to the first position. In the second position, the other second limiting part 411 is connected to the first limiting part 110 to limit the adjusting member 410 to the current position, thereby limiting the motor assembly 200 to the second position.
[0107] Reference Figure 4 and Figure 8 In the cleaning device provided in this application embodiment, the second limiting part 411 is a tooth provided on the adjusting member 410, and the tooth abuts against the first limiting part 110.
[0108] The adjusting member 410 is limited by the teeth abutting against the first limiting part 110. At the same time, in the first position, the user can push the teeth to move the adjusting member 410 relative to the body 100, which in turn can drive the motor assembly 200 to rotate relative to the body 100, so that the motor assembly 200 switches from the first position to the second position.
[0109] For example, the tooth has a vertical surface and an inclined surface, the vertical surface being adjacent to the inclined surface, and the vertical surface being used to abut against the first limiting part 110.
[0110] In this application, there are multiple teeth, which are arranged sequentially.
[0111] Reference Figure 3 and Figure 4 The cleaning device provided in this application embodiment includes an adjustment component 400 that further includes an unlocking component 430. The unlocking component 430 is disposed on the body 100 and moves toward the adjustment component 410 to disengage the second limiting part 411 from the first limiting part 110.
[0112] For example, the unlocking member 430 can be a push rod that moves toward the adjusting member 410 to push the adjusting member 410 to rotate relative to the motor assembly 200, thereby causing the second limiting part 411 to disengage from the first limiting part 110.
[0113] Thus, by providing the unlocking member 430, the second limiting part 411 and the first limiting part 110 are disconnected, thereby releasing the first limiting part 110 from limiting the adjusting member 410, allowing the adjusting member 410 to move relative to the body 100. In this application, in the second position, after the limiting of the adjusting member 410 is released by the unlocking member 430, the motor assembly 200 can switch from the second position to the first position under the drive of the reset member 420.
[0114] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 The cleaning device provided in this application embodiment also includes a first control member 500. In a first position, the first control member 500 controls the motor assembly 200 to open or close. An unlocking member 430 is disposed on the first control member 500. In a second position, the first control member 500 moves relative to the body 100 to drive the unlocking member 430 to move toward the adjusting member 410.
[0115] The first control unit 500 is electrically connected to the motor assembly 200. In the first position, the first control unit 500 controls the motor assembly 200 to turn on, so that dust and debris in the area to be cleaned are sucked into the dust cup assembly 300. In the second position, by moving the first control unit 500 relative to the body 100, the unlocking member 430 is moved toward the adjusting member 410, thereby disengaging the first limiting part 110 and the second limiting part 411 through the unlocking member 430. Afterwards, the motor assembly 200 can be switched from the second position to the first position by the action of the reset member 420. At this time, the first control unit 500 can control the motor assembly 200 to turn on.
[0116] Reference Figure 7 , Figure 8 and Figure 10 The cleaning device provided in this application embodiment has a guide groove 120 on the body 100, and the adjusting member 410 is at least partially located in the guide groove 120. The adjusting member 410 moves along the guide groove 120 to drive the motor assembly 200 to rotate relative to the body 100.
[0117] The adjusting member 410 moves along the guide groove 120, and the direction of movement of the adjusting member 410 along the guide groove 120 is the same as the extension direction of the adjusting member 410. By providing the guide groove 120, the adjusting member 410 can be guided, which facilitates the movement of the adjusting member 410 relative to the machine body 100.
[0118] Reference Figure 1 , Figure 2 and Figure 10 The cleaning equipment provided in this application embodiment also includes a second control component 600, which is disposed on the body 100 and controls the motor assembly 200 to open or close. A first clearance hole 130 is provided on the body 100. In the second position, the second control component 600 is exposed through the first clearance hole 130 on the body 100; in the first position, the adjusting component 410 covers the second control component 600.
[0119] Specifically, in the second position, pressing the first control element 500 will unlock the adjusting element 410 via the unlocking element 430, thereby causing the motor assembly 200 to switch to the first position under the action of the reset element 420. This prevents the motor assembly 200 from being turned on via the first control element 500 in the second position. Accordingly, the cleaning device provided in this embodiment also includes a second control element 600, which allows the motor assembly 200 to be turned on and off in the second position.
[0120] For example, the first clearance hole 130 penetrates the bottom of the guide groove 120.
[0121] Thus, by providing a second control element 600, in the second position, the second control element 600 controls the motor assembly 200 to open, thereby blowing dust from the dust cup assembly 300 into the dust bag. A first clearance hole 130 is provided so that in the second position, the second control element 600 can be exposed through the first clearance hole 130, facilitating its operation. In the first position, the adjusting member 410 covers the first clearance hole 130, thus covering the second control element 600, so that in the first position, only the first control element 500 can be used to control the opening or closing of the motor assembly 200, preventing simultaneous use of the first control element 500 and the second control element 600 from causing a conflict in the control signals to the motor assembly 200.
[0122] Reference Figure 8 , Figure 9 and Figure 10 The cleaning device provided in this application embodiment has a second clearance hole 413 on the adjusting member 410. In the second position, the first clearance hole 130 is opposite to the second clearance hole.
[0123] In this application, in the first position, the second clearance hole 413 is offset from the first clearance hole 130, and the first clearance hole 130 is covered by the adjusting member 410 to cover the second control member 600; in the second position, the second clearance hole 413 is opposite to the first clearance hole 130, so that the second control member 600 can be exposed through the first clearance hole 130 and the second clearance hole 413 in sequence, thereby facilitating the operation of the second control member 600.
[0124] For example, the adjusting member 410 includes a mounting plate 412, and a second clearance hole 413 is located on the mounting plate 412. The extending direction of the mounting plate 412 is the moving direction of the adjusting member 410 along the guide groove 120, and the second limiting part 411 is arranged sequentially along the extending direction of the mounting plate 412.
[0125] Mounting plate 412 includes a first segment 414 and two second segments 415, which are arranged parallel to each other on the same side of the first segment 414 to form a second clearance hole 413 between the two second segments 415. A second limiting part 411 is provided on both the first segment 414 and the second segment 415. A rotating part 416 is provided on the side of the first segment 414 away from the second segment 415, and the rotating part 416 is rotatably connected to the motor assembly 200.
[0126] The unlocking member 430 is opposite to the mounting plate 412. The unlocking member 430 moves toward the mounting plate 412 to push the mounting plate 412 to rotate relative to the motor assembly 200. At the same time, the mounting plate 412 can drive the second limiting part 411 to move relative to the first limiting part 110 so that the second limiting part 411 disengages from the first limiting part 110, thereby releasing the limitation on the adjusting member 410 and allowing the adjusting member 410 to move along the guide groove 120.
[0127] For example, the guide groove 120 is a T-shaped groove, including a wide portion 121 and a narrow portion 122. The mounting plate 412 is located within the wide portion 121, and there is a gap between the mounting plate 412 and the bottom surface of the wide portion 121 to allow for rotational allowance of the mounting plate 412, facilitating rotation of the mounting plate 412 relative to the motor assembly 200. The second limiting portion 411 is located within the narrow portion 122.
[0128] Reference Figures 11 to 15 In the cleaning equipment provided in this application embodiment, the adjusting member 410 rotates relative to the body 100 to drive the motor assembly 200 to rotate relative to the body 100.
[0129] Thus, by rotating the adjusting member 410 relative to the machine body 100, the motor assembly 200 is driven to rotate relative to the machine body 100. This makes it easier to rotate the motor assembly 200 relative to the machine body 100.
[0130] The cleaning device provided in this application embodiment has a guide hole on the body 100. The extension direction of the guide hole matches the rotation path of the motor assembly 200. The adjusting member 410 extends out of the body 100 through the guide hole and rotates along the guide hole.
[0131] Thus, by setting a guide hole, the motor assembly 200 can be rotated relative to the machine body 100 by rotating the adjusting member 410 along the guide hole; by extending the adjusting member 410 out of the machine body 100 through the guide hole, it is convenient to operate the adjusting member 410 and rotate it along the guide hole.
[0132] Based on the above embodiments, this application provides a cleaning system, including a base station and any of the above-described cleaning devices.
[0133] The specific structure of the cleaning equipment has been described in detail in the above embodiments, and will not be repeated here.
[0134] In this application, a dust bag is provided on the base station. In the second position, the dust bag is connected to the dust cup assembly 300 to collect dust from the dust cup assembly 300.
[0135] For example, a pushing member is provided on the base station. When the cleaning equipment is placed on the base station, the pushing member abuts against the adjusting member 410 and pushes the adjusting member 410 to rotate relative to the body 100, thereby driving the motor assembly 200 to rotate relative to the body 100, causing the motor assembly 200 to switch from a first position to a second position. Furthermore, a portion of the adjusting member 410 extends outside the body 100 to facilitate the pushing member pushing the adjusting member 410.
[0136] In some examples, a conductor is provided on the base station. In the second position, the conductor connects the first air inlet 210 and the dust bag, so that the conductor, the first air inlet 210, the first air outlet 220, the dust cup assembly 300 and the dust bag are connected in sequence, thereby allowing the dust in the dust cup assembly 300 to be collected in the dust bag under the action of the motor assembly 200.
[0137] The cleaning device provided in this application embodiment, in its second position, has a first air inlet 210, a first air outlet 220, a dust cup assembly 300, and a dust bag connected in sequence. This allows the motor assembly 200 to blow dust collected in the dust cup assembly 300 into the dust bag, thereby cleaning the dust inside the dust cup assembly 300. Thus, there is no need to install a motor in the base station; the motor assembly 200 of the cleaning device can collect dust from the dust cup assembly 300 into the dust bag, reducing the installation cost of the base station.
[0138] The terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.
[0139] In the embodiments of this application, the terms "upper," "lower," "inner," "middle," "outer," "front," and "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for better description of this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation. Furthermore, some of the above terms may be used to indicate other meanings besides orientation or positional relationship; for example, the term "upper" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in the embodiments of this application according to the specific circumstances.
[0140] Furthermore, the terms "set up," "connect," and "fix" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this disclosure according to the specific circumstances.
[0141] Unless otherwise stated, the term "multiple" means two or more.
[0142] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the application disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and embodiments are to be considered exemplary only, and the scope of this application is limited only by the appended claims.
Claims
1. A cleaning device, characterized in that, include: fuselage (100); A motor assembly (200) is rotatably mounted on the body (100) and has a first air inlet (210) and a first air outlet (220) communicating with each other. A dust cup assembly (300) is disposed on the body (100); An adjustment assembly (400) includes an adjustment member (410) connected to the motor assembly (200). The adjustment member (410) drives the motor assembly (200) to rotate relative to the body (100) so that the motor assembly (200) switches between a first position and a second position. In the first position, the first air inlet (210) is connected to the dust cup assembly (300), and the first air outlet (220) is connected to the outside. In the second position, the first air inlet (210) is connected to the outside, and the first air outlet (220) is used to connect to the dust bag of the base station through the dust cup assembly (300) so that the dust in the dust cup assembly (300) is blown into the dust bag through the motor assembly (200).
2. The cleaning equipment according to claim 1, characterized in that, The dust cup assembly (300) has a second air inlet (310) and a second air outlet (320). In the first position, the first air inlet (210) is connected to the second air outlet (320), and the motor assembly (200) closes the second air inlet (310). In the second position, the second air inlet (310) is connected to the first air outlet (220), and the motor assembly (200) closes the second air outlet (320).
3. The cleaning equipment according to claim 2, characterized in that, There are multiple second air inlets (310), and each second air inlet (310) is arranged around the periphery of the second air outlet (320).
4. The cleaning equipment according to claim 1, characterized in that, The adjustment assembly (400) further includes at least one reset member (420), which connects the motor assembly (200) and the body (100) and drives the motor assembly (200) to switch from the second position to the first position.
5. The cleaning equipment according to claim 4, characterized in that, The reset element (420) is an elastic element.
6. The cleaning equipment according to any one of claims 1-5, characterized in that, The adjusting member (410) is rotatably connected to the motor assembly (200), and the adjusting member (410) moves relative to the body (100) to drive the motor assembly (200) to rotate relative to the body (100).
7. The cleaning equipment according to claim 6, characterized in that, The body (100) has a first limiting part (110), and the adjusting member (410) has at least two second limiting parts (411). In the first position, one second limiting part (411) is connected to the first limiting part (110), and in the second position, the other second limiting part (411) is connected to the first limiting part (110).
8. The cleaning equipment according to claim 7, characterized in that, The adjustment assembly (400) further includes an unlocking member (430) disposed on the body (100). The unlocking member (430) moves toward the adjustment member (410) to disengage the second limiting part (411) from the first limiting part (110).
9. The cleaning equipment according to claim 8, characterized in that, It also includes a first control unit (500), which, when in the first position, controls the motor assembly (200) to turn on or off; The unlocking member (430) is disposed on the first control member (500). In the second position, the first control member (500) moves relative to the body (100) to drive the unlocking member (430) toward the adjusting member (410).
10. The cleaning equipment according to claim 7, characterized in that, The second limiting part (411) is a tooth provided on the adjusting member (410), and the tooth abuts against the first limiting part (110).
11. The cleaning equipment according to claim 6, characterized in that, The body (100) is provided with a guide groove (120), and the adjusting member (410) is at least partially located in the guide groove (120). The adjusting member (410) moves along the guide groove (120) to drive the motor assembly (200) to rotate relative to the body (100).
12. The cleaning equipment according to claim 6, characterized in that, It also includes a second control unit (600), which is disposed on the body (100) and controls the motor assembly (200) to turn on or off; The body (100) is provided with a first clearance hole (130). In the second position, the second control member (600) is exposed through the first clearance hole (130) in the body (100). In the first position, the adjustment member (410) covers the second control member (600).
13. The cleaning equipment according to claim 12, characterized in that, The adjusting member (410) is provided with a second clearance hole (413). In the second position, the first clearance hole (130) is opposite to the second clearance hole (413).
14. The cleaning equipment according to any one of claims 1-5, characterized in that, The adjusting member (410) rotates relative to the body (100) to drive the motor assembly (200) to rotate relative to the body (100).
15. The cleaning equipment according to claim 14, characterized in that, The body (100) has a guide hole, the extension direction of which matches the rotation path of the body (100), the adjusting member (410) extends out of the body (100) through the guide hole, and the adjusting member (410) rotates along the guide hole.
16. The cleaning equipment according to any one of claims 1-5, characterized in that, The body (100) has a first air duct (140). In the first position, the first air duct (140) connects the first air inlet (210) and the dust cup assembly (300). In the second position, the first air duct (140) is closed.
17. The cleaning equipment according to any one of claims 1-5, characterized in that, The body (100) has a second air duct (150). In the second position, the second air duct (150) connects the first air outlet (220) and the dust cup assembly (300). In the first position, the second air duct (150) is closed.
18. The cleaning equipment according to claim 4, characterized in that, The motor assembly (200) has a rotating shaft (230) on both sides. The rotating shaft (230) is inserted into the body (100). There are two reset pieces (420), and the two reset pieces (420) are respectively sleeved on the rotating shaft (230).
19. A cleaning system, characterized in that, Includes a base station and a cleaning device according to any one of claims 1-18, wherein the base station is used to collect dust and debris within the dust cup assembly (300) of the cleaning device.