Cleaning device and smart appliance
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HUNAN MEGMEET ELECTRICAL TECH CO LTD
- Filing Date
- 2026-04-08
- Publication Date
- 2026-07-14
Smart Images

Figure CN122384282A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of smart appliances, and in particular to a cleaning device and a smart appliance. Background Technology
[0002] Existing conventional shower systems are limited by indoor power supply or natural gas heating, lacking diverse and flexible application scenarios. They are typically confined to a fixed indoor environment for showering. However, with the rapid development of new energy sources, various portable power supplies have emerged to support daily life, and new energy vehicles, in particular, can provide external power. This has created a greater demand for outdoor activities. Nevertheless, existing shower devices are cumbersome to install, impacting the user experience. Summary of the Invention
[0003] This application provides a cleaning device to solve the problem of poor ease of use of existing cleaning devices.
[0004] To address the aforementioned technical problems, this application provides a cleaning device, comprising: a tub body having a first accommodating space; a snap-fit assembly disposed at the bottom of the tub body and spaced apart from the first accommodating space, the snap-fit assembly including a push rod connected to the bottom of the tub body, the push rod having a snap-fit interface; a base having a snap-fit buckle corresponding to the snap-fit assembly, the snap-fit interface and the snap-fit buckle being detachably connected; and a limiting assembly including a movably disposed limiting buckle and a limiting post, the limiting buckle being disposed on the push rod and the limiting post being disposed on the base, wherein the connection state between the snap-fit interface and the snap-fit buckle is controlled by the limiting assembly.
[0005] The base is equipped with a positioning component, which is movably connected to the bottom of the barrel to position the connection state between the barrel and the base.
[0006] The barrel body is provided with a slide rail, and the push rod is slidably disposed in the slide rail; the snap-fit assembly also includes an elastic element, which is disposed on the outside of the push rod, and one end of the push rod is connected to a pressing part, which is at least partially exposed in the barrel body; wherein, one end of the elastic element abuts against the pressing part, and the other end abuts against the side wall of the slide rail.
[0007] There are two card connectors and card interfaces, with two card interfaces corresponding to two card connectors. A limit component is located between the two card interfaces and the two card connectors.
[0008] The base has a second accommodating space, and the base has a first water inlet and a first water outlet that communicate with the second accommodating space. The second accommodating space is equipped with a heating component that communicates with the first water inlet and the first water outlet. The bottom of the tank has a second water inlet and a second water outlet that communicate with the first accommodating space. The second water inlet is connected to the first water outlet, and the second water outlet is connected to the first water inlet.
[0009] The heating component includes a water pump and a heating element. One end of the water pump is connected to the first water inlet, and the other end is connected to the heating element. The three-way component includes a third water inlet, a third water outlet, and a fourth water outlet. The third water inlet is connected to the heating element, the third water outlet is connected to the first water outlet, and the fourth water outlet is connected to an external component.
[0010] The heating component also includes a gate component, one end of which is connected to the third outlet and the other end of which is connected to the first outlet. The gate component controls the connection state between the third outlet and the first outlet.
[0011] The heating component further includes a control component, which is coupled to the water pump and the selection component. The control component is provided with a heat sink, one end of which is connected to the water pump and the other end of which is connected to the heating component.
[0012] The base also includes a button assembly, which is coupled to the control assembly and is displayed via the base.
[0013] The heat sink is equipped with a valve at the end where it connects to the water pump. The valve is coupled to a control component, which controls the conduction state of the valve to control the conduction state between the water pump and the heat sink.
[0014] To address the aforementioned problems, a second aspect of this application provides a smart appliance that includes a cleaning device according to any of the above-mentioned claims.
[0015] The beneficial effects of this application are as follows: Unlike the prior art, this application sets a limiting component, which includes a movable limiting buckle and a limiting post. The limiting port is set on the push rod, and the limiting post is set on the base. The bottom of the bucket is set with a push rod, and the base is set with a locking interface corresponding to the locking interface on the push rod. Thus, when connecting the bucket to the base, the locking interface and the locking buckle can be locked together to fix the bucket to the base. When the limiting post and the limiting buckle are locked together, the bucket can be removed from the base. The connection state of the locking interface and the locking buckle is controlled by the limiting component, thereby effectively improving the convenience of connecting the base and the bucket. Attached Figure Description
[0016] Figure 1 This is a structural schematic diagram of the first embodiment of the cleaning device of this application (cross-sectional view); Figure 2This is a structural schematic diagram of the second embodiment of the cleaning device of this application (cross-sectional view); Figure 3 This is a schematic diagram of the structure of one embodiment of the base of this application; Figure 4 This is a structural schematic diagram of the first embodiment of the exploded view of the base and barrel body of this application; Figure 5 This is a structural schematic diagram of the second embodiment of the exploded view of the base and barrel body of this application; Figure 6 This is a schematic diagram of the connection between the base and the barrel body in this application; Figure 7 This is a schematic diagram of the exploded view of the base of this application; Figure 8 This is a structural schematic diagram of the third embodiment of the cleaning device of this application, shown in cross-section. Detailed Implementation
[0017] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0018] It should be noted that if the embodiments of this application involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.
[0019] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0020] Please see Figure 1 , Figure 1 This is a structural schematic diagram of the first embodiment of the cleaning device provided in this application.
[0021] This application provides a cleaning device. For example... Figure 1 and Figure 2 As shown, the cleaning device of this embodiment includes: a tub body 10, a snap-fit assembly 20, a base 30, and a limiting assembly 40. The tub body 10 forms a first accommodating space 11. The snap-fit assembly 20 is disposed at the bottom of the tub body 10 and spaced apart from the first accommodating space 11. The snap-fit assembly 20 includes a push rod 21, which is connected to the bottom of the tub body 10. A snap-fit interface 22 is formed on the push rod 21. A snap-fit buckle 31 corresponding to the snap-fit assembly 20 is formed on the base 30. The snap-fit interface 22 and the snap-fit buckle 31 are detachably connected. The limiting assembly 40 includes a movably disposed limiting buckle 41 and a limiting post 42. The limiting buckle 41 is disposed on the push rod 21, and the limiting post 42 is disposed on the base 30. The limiting assembly 40 indicates that the connection state between the snap-fit interface 22 and the snap-fit buckle 31 is controlled by the limiting assembly 40.
[0022] In an optional embodiment, the barrel 10 has a first accommodating space 11, which is used to accommodate liquid water, and a base 30 is provided on which the barrel 10 is placed. A snap-fit component 20 is provided at the bottom of the barrel 10, meaning that when the barrel 10 is installed on the base 30, it can be snapped and fixed in place by the snap-fit component 20. Specifically, the snap-fit component 20 includes a snap-fit interface 22, and a snap-fit buckle 31 corresponding to the snap-fit component 20 is formed on the base 30. The snap-fit interface 22 and the snap-fit buckle 31 are detachably connected, so that the barrel 10 and the base 30 can be fixed by connecting the snap-fit buckle 31 and the snap-fit interface 22. Specifically, when the barrel 10 is installed on the base 30, the snap-fit component 20 on the barrel 10 can be aligned with the snap-fit buckle 31 on the base 30, and then the barrel 10 is fixed via the base 30.
[0023] In this embodiment, the cleaning device further includes a limiting component 40, which includes a movably configured limiting buckle 41 and a limiting post 42. The limiting buckle 41 and the limiting post 42 are movably connected. Specifically, the limiting buckle 41 is mounted on the push rod 21, and the limiting post 42 is mounted on the base 30. The connection state between the locking interface 22 and the locking buckle 31 is controlled by the limiting component 40. When the limiting post 42 and the limiting buckle 41 are engaged, the locking interface 22 and the locking buckle 31 are in a movable connection state, allowing the tub 10 to be removed from the base 30. When the limiting post 42 and the limiting buckle 41 are movably connected, the locking interface 22 and the locking buckle 31 are engaged, thereby fixing the tub 10 to the base 30.
[0024] In an optional embodiment, when it is necessary to install the bucket 10 on the base 30, the bucket 10 can be placed in a designated position on the base 30, and then, under its own weight, the bucket 10 can be snapped onto the base 30. Specifically, when installing the bucket 10 on the base 30, the bucket 10 needs to be snapped onto the base 30 by the snap-fit assembly 20, that is, the snap-fit interface 22 on the push rod 21 snaps onto the snap-fit buckle 31 on the base 30 to fix the base 30 and the bucket 10. The snap fastener 31 has a wedge-shaped end facing the barrel 10. When the barrel 10 is installed on the base 30, the wedge-shaped structure of the snap fastener 31 facing the base 30 abuts against the snap-in interface 22 under the action of the barrel 10's own weight. This pushes the push rod 21 to slide. The direction of the push rod 21's sliding is perpendicular to the axis of the snap fastener 31. That is, when the barrel 10 is placed on the base 30 along the axis of the snap fastener 31, the snap-in interface 22 can generate a force at a preset angle to the snap-in interface 22 on the push rod 21 because the snap fastener 31 has a wedge-shaped end facing the barrel 10. This pushes the push rod 21 to slide on the base 30 in a direction perpendicular to the axis of the snap fastener 31. The snap-in interface 22 abuts against the snap fastener 31, so that the snap-in interface 22 is snapped into the snap fastener 31 to fix the barrel 10 and the base 30. After the card interface 22 and the card latch 31 are locked together, the push rod 21 will retract to the initial position, thereby locking the wedge structure on the card latch 31 through the card interface 22 to prevent the card latch 31 from detaching from the card interface 22.
[0025] In this embodiment, when it is necessary to remove the barrel 10 from the base 30, the push rod 21 can be pushed in advance, so that the limiting buckle 41 on the push rod 21 engages with the limiting post 42 on the base 30. This engagement of the limiting buckle 41 and the limiting post 42 fixes the position of the push rod 21 on the base 30, thus aligning the locking interface 22 on the push rod 21 with the locking buckle 31 on the base 30. At this time, the locking buckle 31 on the base 30 corresponds to the locking interface 22 on the barrel 10, meaning the locking interface 22 on the push rod 21 disengages from the wedge-shaped structure on the locking buckle 31, i.e., the axial direction of the locking buckle 31 is collinear with the axial direction of the locking interface 22. Clearly, when the base 30 and the barrel 10 are engaged, the axial directions of the locking interface 22 and the locking buckle 31 are not collinear. When the locking interface 22 on the push rod 21 corresponds to the locking buckle 31 on the base 30, that is, when the locking interface 22 and the locking buckle 31 are collinear, the barrel 10 can be removed from the base 30. When removing the barrel 10, the barrel 10 can be removed along the axial direction of the locking buckle 31. When removing the barrel 10, the push rod 21 will return to the initial position because the limiting post 42 and the limiting buckle 41 are disengaged.
[0026] In the above embodiment, by setting a limiting component 40, which includes a movably set limiting buckle 41 and a limiting post 42, the limiting buckle 41 is set on the push rod 21, the limiting post 42 is set on the base 30, and the bottom of the barrel 10 is set with the push rod 21, and the base 30 is set with a locking interface 22 corresponding to the locking interface 22 on the push rod 21, the barrel 10 and the base 30 can be fixed by locking the locking interface 22 and the locking buckle 31 when connecting the barrel 10 and the base 30. When the limiting post 42 and the limiting buckle 41 are locked, the barrel 10 can be removed from the base 30. The connection state of the locking interface 22 and the locking buckle 31 is controlled by the limiting component 40, thereby effectively improving the convenience of connecting the base 30 and the barrel 10.
[0027] In an optional embodiment, such as Figure 3 As shown, a positioning component 32 is provided on the base 30. The positioning component 32 is movably connected to the bottom of the barrel 10 to position the connection state between the barrel 10 and the base 30. Specifically, four positioning components 32 can be provided. The four positioning components 32 are provided on the side end face of the base 30 facing the barrel 10, and the four positioning components 32 are respectively provided around the base 30. That is, the four positioning components 32 can be respectively provided at the four corners of the bottom of the barrel 10. Thus, when the barrel 10 is installed on the base 30, the base 30 of the barrel 10 can be aligned with the four positioning components 32, so that the snap-fit component 20 on the barrel 10 corresponds to the snap-fit interface 22 on the base 30. This avoids the situation where the snap-fit interface 22 on the push rod 21 is misaligned with the snap-fit buckle 31 on the base 30, which would cause the barrel 10 to fail to install.
[0028] In this embodiment, the positioning component 32 can be configured such that the positioning component 32 and the base 30 are set at a preset angle, thereby positioning the four corners of the edge barrel 10 between the base 30 and the base 30. Specifically, along the axial direction of the vertical snap fastener 31, from the end away from the base 30 to the end close to the base 30, the included angle between the two positioning components 32 gradually decreases, thereby setting the two positioning components 32 at a preset angle to position the barrel 10.
[0029] In an optional embodiment, such as Figure 5 and Figure 6 As shown, the tub body 10 can be configured as a foldable tub body 10, thereby effectively reducing the volume occupied by the cleaning device when it is not in use. Combined with... Figure 1 As shown, the barrel body 10 is provided with a bending part 16, which means that when the barrel body 10 is folded, it can be bent through the bending part 16, thereby effectively reducing the volume occupied by the barrel body 10. The barrel body 10 is provided with a handle 15, which means that the barrel body 10 can be lifted through the handle 15 when it is needed.
[0030] In an optional embodiment, such as Figure 2 and Figure 8 As shown, a slide rail 12 is provided on the barrel body 10, and the push rod 21 is slidably disposed within the slide rail 12. Specifically, the slide rail 12 is located at the bottom of the barrel body 10, that is, the slide rail 12 is spaced apart from the first accommodating space 11. The slide rail 12 is used to accommodate the push rod 21, that is, the push rod 21 can slide within the slide rail 12. In other words, when the barrel body 10 is installed on the base 30, the snap fastener 31 on the base 30 abuts against the snap interface 22 on the push rod 21, thereby causing the push rod 21 to slide within the slide rail 12 under the abutment of the snap fastener 31, so that the snap interface 22 corresponds with the snap fastener 31. The snap assembly 20 also includes an elastic element 23, which is disposed on the outside of the push rod 21. One end of the push rod 21 is connected to a pressing part 24, and the pressing part 24 is at least partially exposed outside the barrel body 10. After the card interface 22 is aligned with the card latch 31, under the weight of the barrel 10 itself, the card latch 31 can accommodate a portion of itself. That is, after the card latch 31 is located within the card interface 22, the elastic element 23 can push the push rod 21 back, thus engaging one end of the card interface 22 with the card latch 31 to fix the barrel 10 and the base 30. One end of the elastic element 23 abuts against the pressing part 24, and the other end abuts against the side wall of the slide rail 12. In other words, the elastic element 23 can apply a certain elastic force to the push rod 21, allowing the push rod 21 to slide within the slide rail 12.
[0031] In this embodiment, as Figure 4As shown, when the barrel 10 is installed on the base 30, the bottom of the barrel 10 can be positioned corresponding to the positioning component 32 so that the locking interface 22 on the push rod 21 abuts against the locking buckle 31 on the base 30. After the locking interface 22 abuts against the locking buckle 31, under the action of the barrel 10's own weight, the locking buckle 31 can abut against the locking interface 22 on the push rod 21, so that the push rod 21 slides in the slide rail 12 along the first direction (not shown). When the push rod 21 slides along the first direction, it can simultaneously drive the pressing part 24 to move along the first direction, so that the pressing part 24 compresses the elastic member 23. After the wedge structure on one end of the locking buckle 31 is located in the locking interface 22, under the action of the elastic member 23, it will drive the push rod 21 to slide in the opposite direction of the first direction, so that the push rod 21 and the locking buckle 31 are locked and fixed, thereby fixing the barrel 10 and the base 30. When it is necessary to remove the barrel 10, the pressing part 24 can be pressed to compress the elastic element 23, thereby causing the push rod 21 to slide in the slide rail 12 along the first direction, so that the limiting buckle 41 on the push rod 21 is engaged with the limiting post 42 on the base 30. At this time, the locking buckle 31 and the locking interface 22 are arranged in the same direction, which means that the locking buckle 31 and the locking interface 22 can be disengaged from each other, and the barrel 10 can be removed along the axial direction of the locking buckle 31. After the barrel 10 is removed, the limiting buckle 41 and the limiting post 42 are dragged, that is, the compressed elastic element 23 will rebound, so as to drive the push rod 21 to retract in the slide rail 12 in the opposite direction of the first direction to the initial position, so as to facilitate the next placement of the barrel 10 on the base 30.
[0032] In this embodiment, the first direction can be represented as the axial direction of the push rod 21, and the first direction can be perpendicular to the axial direction of the snap fastener 31.
[0033] In an optional embodiment, two latches 31 and two latch interfaces 22 are provided, with two latch interfaces 22 corresponding to two latches 31. A limiting component 40 is disposed between the two latch interfaces 22 and the two latches 31. By providing two latches 31 and two latch interfaces 22, when the bucket body 10 is installed on the base 30, the bucket body 10 can be fixed by the latching of the two latch interfaces 22 and the latches 31, thereby preventing the bucket body 10 from tilting to one side.
[0034] In an optional embodiment, such as Figure 7 and Figure 8As shown, a second accommodating space 35 is provided inside the base 30. A first water inlet 34 and a first water outlet 33 communicating with the second accommodating space 35 are provided on the base 30. A heating component 50 communicating with the first water inlet 34 and the first water outlet 33 is provided inside the second accommodating space 35. A second water inlet 13 and a second water outlet 14 communicating with the first accommodating space 11 are provided at the bottom of the tank body 10. The second water inlet 13 communicates with the first water outlet 33, and the second water outlet 14 communicates with the first water inlet 34. The first water inlet 34 and the first water outlet 33 communicating with the second accommodating space 35 are provided on the base 30, and the second water inlet 13 and the second water outlet 14 communicating with the first water inlet 34 are provided at the bottom of the tank body 10. The first accommodating space 11 of the tank 10 contains liquid water. When a cleaning device is needed, the liquid water in the tank 10 can be heated by the heating component 50 in the base 30. Specifically, the liquid water in the first accommodating space 11 can be transferred to the heating component 50 through the second outlet 14 and the first inlet 34. After being heated by the heating component 50, the heated water can be transferred to the first accommodating space 11 through the first outlet 33 and the second inlet 13, thereby heating the liquid water in the tank 10 for user use.
[0035] In this embodiment, both the second inlet 13 and the second outlet 14 are equipped with one-way valves (not shown in the figure). That is, when the barrel 10 is not installed on the base 30, the one-way valves can prevent the water in the first accommodating space 11 from being discharged. The one-way valve in the second inlet 13 can be represented as follows: the direction of water flow in the second inlet 13 is such that the water in the heating component 50 is transmitted to the first accommodating space 11 through the first outlet 33. When the second inlet 13 is connected to the first outlet 33, the second inlet 13 is connected to the first outlet 33. When the second inlet 13 is disconnected from the first outlet 33, the second inlet 13 is in a closed state. Furthermore, the one-way valve in the second outlet 14 can be represented as follows: water flow in the first accommodating space 11 is transmitted to the heating component 50 through the second outlet 14 and the first inlet 34. When the second outlet 14 is connected to the first inlet 34, the second outlet 14 is in communication with the first inlet 34. When the second outlet 14 is disconnected from the first inlet 34, the second outlet 14 is in a closed state. That is, when the first inlet 34 is connected to the second outlet 14 and the first outlet 33 is connected to the second inlet 13, the heating component 50 and the first accommodating space 11 can be connected. When the first inlet 34 is disconnected from the second outlet 14 and the first outlet 33 is disconnected from the second inlet 13, the water flow in the first accommodating space 11 can be closed by the one-way valve in the second outlet 14 and the second inlet 13.
[0036] In an optional embodiment, such as Figure 7 As shown, the heating assembly 50 includes a water pump 61, a heating element 62, and a three-way assembly 63. One end of the water pump 61 is connected to the first water inlet 34, and the other end is connected to the heating element 62. The three-way assembly 63 includes a third water inlet 631, a third water outlet 632, and a fourth water outlet 633. The third water inlet 631 is connected to the heating element 62, the third water outlet 632 is connected to the first water outlet 33, and the fourth water outlet 633 is connected to an external component. Specifically, the fourth water outlet 633 can be connected to a shower head, etc., and water can be transmitted to the shower head through the fourth water outlet 633 and discharged through the shower head. One end of the water pump 61 is connected to the first inlet 34, and the other end is connected to the heating element 62. That is, when the tank 10 is placed on the base 30, the first inlet 34 is connected to the second outlet 14. Therefore, when the heating element 62 needs to heat the liquid water in the first containment space 11, the water pump 61 can be started to draw water from the first containment space 11. The water from the first containment space 11 enters the heating element 62 through the second outlet 14 and the first inlet 34, thus being heated by the heating element 62. When circulating and heating the liquid water in the first containment space 11, after the water pump 61 pumps the water from the first containment space 11 into the heating element 62 for heating, it can be transferred back to the first containment space 11 through the first outlet 33 and the second inlet 13, thereby completing the heating treatment of the liquid water in the first containment space 11.
[0037] In this embodiment, the heating component 50 further includes a three-way component 63, which includes a third inlet 631, a third outlet 632, and a fourth outlet 633. The third inlet 631 of the three-way component 63 is connected to the heating element 62, and the third outlet 632 is connected to the first outlet 33. That is, after the water pump 61 draws water from the first accommodating space 11 and transmits it to the heating element 62, it can be heated by the heating element 62 and then transmitted to the three-way component 63. Then, it is transmitted to the first accommodating space 11 through the third outlet 632, the first outlet 33, and the second inlet 13 of the three-way component 63 to heat the water flow in the first accommodating space 11.
[0038] In an optional embodiment, when the water flow in the first accommodating space 11 needs to be used directly, it can be discharged through the fourth outlet 633 of the three-way assembly 63 to directly use the water flow in the first accommodating space 11. Specifically, when the water flow in the first accommodating space 11 needs to be used directly, the water flow in the first accommodating space 11 can be drawn by the water pump 61 and transmitted to the heating element 62. After the water flow is heated by the heating element 62, it is transmitted to the three-way assembly 63, and then discharged through the fourth outlet 633 of the three-way assembly 63. After the liquid water is heated by the heating element 62, the user can directly use the water flow in the first accommodating space 11.
[0039] In an optional embodiment, the heating component 50 further includes a gate component 64 and a metering component 65. One end of the gate component 64 is connected to the third outlet 632 and the other end is connected to the first outlet 33. The gate component 64 controls the connection state between the third outlet 632 and the first outlet 33. When the first accommodating space 11 needs to be circulated and heated, the third outlet 632 and the first outlet 33 can be connected through the selector component 64. That is, when the first accommodating space 11 is circulated and heated, the water pump 61 can be controlled to start working so that the water pump 61 draws water from the first accommodating space 11. The water from the first accommodating space 11 is transmitted to the water pump 61 through the second outlet 14 and the first inlet 34. Then the water pump 61 transmits the water to the heating element 62 so that the water is heated by the heating element 62. Then the water from the heating element 62 is transmitted to the three-way component 63. Since the selector component 64 connects the third outlet 632 and the first outlet 33, the water from the three-way component 63 can be transmitted to the first accommodating space 11 through the third outlet 632 and the first outlet 33, thereby circulating and heating the water in the first accommodating space 11.
[0040] It should be noted that the fourth outlet 633 of the three-way assembly 63 can be used to connect external components, such as a shower head, etc. That is, the conduction state of the fourth outlet 633 can be conducted by external components, so that when the water flow in the first accommodating space 11 is circulated and heated, the water flow can be prevented from being discharged through the fourth outlet 633 of the three-way assembly 63.
[0041] In an optional embodiment, when it is necessary to directly use the water flow in the first accommodating space 11, the fourth outlet 633 of the three-way assembly 63 can be connected to an external component. Then, the third outlet 632 is controlled to disconnect from the first outlet 33 via the selector assembly 64. Then, the water pump 61 is controlled to start working so that the water pump 61 draws water from the first accommodating space 11. The water flow in the first accommodating space 11 is transmitted to the water pump 61 via the second outlet 14 and the first inlet 34. Then, the water pump 61 transmits the water flow to the heating element 62 to heat the water flow. Then, the water flow in the heating element 62 is transmitted to the three-way assembly 63 and then to the external component via the fourth outlet 633 so that the water flow in the first accommodating space 11 can be used directly.
[0042] In this embodiment, the metering component 65 is disposed at the fourth water outlet 633, so that when the cleaning device is used on the external component, the amount of water used can be obtained through the metering component 65.
[0043] In an optional embodiment, the heating component 50 further includes a control component 66 and an exhaust component 67. The control component 66 is coupled to the water pump 61 and the gate component 64. A heat sink 661 is provided on the control component 66, with one end of the heat sink 661 connected to the water pump 61 and the other end connected to the heating component 62. The control component 66 is coupled to the water pump 61 and the gate component 64, thereby controlling the operating state of the gate component 64 and the water pump 61 through the control component 66. Furthermore, the heat sink 661 on the control component 66, with one end connected to the water pump 61 and the other end connected to the heating component 62, means that when the water pump 61 draws water from the first accommodating space 11, the water in the first accommodating space 11 can be pre-transmitted to the heat sink 661 of the control component 66 to remove heat from the control component 66. The base 30 also includes a button assembly, which is coupled to the control assembly 66. The button assembly can be displayed on the base 30, so that when the control assembly 66 needs to control the water pump 61 and the selection assembly 64, the user can press the button assembly to realize the corresponding function.
[0044] In other embodiments, a valve may be provided at the end of the heat sink 661 connected to the water pump 61. This valve may be coupled to the control component 66 to control the conduction state of the valve. The outlet of the water pump 61 may be directly coupled to the heating element 62, meaning that the outlet of the water pump 61 may be divided into two water flows. One of the two water flows is transmitted to the heat sink 611, and the other is transmitted directly to the heating element 62. Both water flows are equipped with valves. Based on this, when the water flow in the first accommodating space 11 is at a low temperature, the control component 66 may control the water flow to pass through the water pump 61 and the heat sink 611 before being transmitted to the heating element 62. After circulating heating in the first accommodating space 11, the control component 66 may control the water flow to be transmitted directly through the water pump 61 to the heat sink 611. In other words, the control component 66 controls the valve between the heat sink 661 and the water pump 61 to be closed, thereby preventing the high-temperature liquid water from transferring heat to the heat sink 661. When the water flow in the first accommodating space 11 is low temperature water, the water flow can be controlled to flow through the heat dissipation component 661; when the water flow in the first accommodating space 11 is high temperature water, the water flow can be controlled not to flow through the heat dissipation component 661.
[0045] In an optional embodiment, to avoid siphoning, an exhaust assembly 67 can be connected between the heat sink 661 and the heating element 62, thereby exhausting the air inside the heating element 50 through the exhaust assembly 67.
[0046] Unlike the prior art, the second aspect of this application also discloses a smart appliance, including a cleaning device, which is the cleaning device of any of the above embodiments.
[0047] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. A cleaning device, characterized in that, The cleaning device includes: A barrel body, wherein the barrel body forms a first accommodating space; A snap-fit assembly is disposed at the bottom of the barrel and spaced apart from the first accommodating space. The snap-fit assembly includes a push rod connected to the bottom of the barrel, and a snap-fit interface is formed on the push rod. A base, on which a snap-fit buckle corresponding to the snap-fit assembly is formed, and the snap-fit interface is detachably connected to the snap-fit buckle; A limiting component, comprising a movably configured limiting buckle and a limiting post, wherein the limiting buckle is disposed on the push rod and the limiting post is disposed on the base, and the limiting component is such that the connection state between the card interface and the card buckle is controlled by the limiting component.
2. The cleaning device according to claim 1, characterized in that, The base is provided with a positioning component, which is movably connected to the bottom of the barrel to position the connection state between the barrel and the base.
3. The cleaning device according to claim 1, characterized in that, The barrel is provided with a slide rail, and the push rod is slidably disposed within the slide rail; The snap-fit assembly also includes an elastic element, which is disposed on the outside of the push rod. One end of the push rod is connected to a pressing part, which is at least partially exposed to the barrel body. One end of the elastic element abuts against the pressing part, and the other end abuts against the side wall of the slide rail.
4. The cleaning device according to claim 1, characterized in that, There are two card fasteners and two card interfaces, with the two card interfaces corresponding to the two card fasteners. The limiting component is located between the two card interfaces and the two card fasteners.
5. The cleaning device according to claim 1, characterized in that, The base has a second accommodating space, and the base has a first water inlet and a first water outlet communicating with the second accommodating space. The second accommodating space is provided with a heating component communicating with the first water inlet and the first water outlet. The bottom of the barrel is provided with a second water inlet and a second water outlet that are connected to the first accommodating space. The second water inlet is connected to the first water outlet, and the second water outlet is connected to the first water inlet.
6. The cleaning apparatus according to claim 5, characterized in that, The heating assembly includes a water pump and a heating element. One end of the water pump is connected to the first water inlet, and the other end is connected to the heating element. The three-way assembly includes a third inlet, a third outlet, and a fourth outlet. The third inlet is connected to the heating element, the third outlet is connected to the first outlet, and the fourth outlet is connected to an external component.
7. The cleaning apparatus according to claim 6, characterized in that, The heating assembly also includes: A gating component, one end of which is connected to the third outlet and the other end of which is connected to the first outlet, controls the connection state between the third outlet and the first outlet.
8. The cleaning apparatus according to claim 7, characterized in that, The heating assembly further includes: A control component is coupled to the water pump and the selection component. The control component is provided with a heat sink, one end of which is connected to the water pump and the other end of which is connected to the heating element.
9. The cleaning apparatus according to claim 8, characterized in that, The base also includes a button assembly, which is coupled to the control assembly and is displayed via the base.
10. The cleaning apparatus according to claim 8, characterized in that, A valve is provided at one end of the heat sink that is connected to the water pump. The valve is coupled to the control component, and the control component controls the conduction state of the valve to control the conduction state between the water pump and the heat sink.
11. A smart electrical appliance, characterized in that, The smart appliance includes the cleaning device as described in any one of claims 1-10.