Nursing and cleaning equipment
The system uses dryer condensate water to supply water and integrates ironing and cleaning functions, solving the problems of dryer condensate water cleaning and ironing machine scale, and realizing the versatility and space saving of the equipment.
Patent Information
- Application Number
- CN202422872069.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-25
AI Technical Summary
Existing clothes dryers require additional cleaning of condensed water and manual water addition, which increases the user's workload. Ironing machines are prone to scaling and take up space. Sweeping robots need to be cleaned separately, which also increases the user's workload.
The condensed water from the clothes dryer is used as the water source for the steam generator, integrating ironing and cleaning functions to reduce water waste and save space in home decoration.
Reduce user labor, avoid scale problems, improve steam generation efficiency, extend equipment life, and save space.
Smart Images

Figure CN223481533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of home equipment technology, and in particular to care and cleaning equipment. Background Art
[0002] During the operation of a clothes dryer, a circulating fan uses hot air heated by the heating module to be sent into the drum through the air duct, making full contact with the wet clothes and drying them by evaporating the moisture. Condensation will be produced during the drying process, which needs to be cleaned regularly, which is time-consuming and laborious.
[0003] While dryers remove moisture from washed clothes, they don't remove wrinkles. For users with higher quality of life requirements, ironing is necessary to smooth the clothes. However, existing irons require manual addition of tap or purified water to generate steam, increasing the user's workload. Furthermore, the heating element easily accumulates scale after prolonged use, reducing steam generation efficiency, and the scale can contaminate clothes when expelled with the steam. Similarly, robot vacuums require a separate cleaning station after cleaning the floor, which takes up additional home space and also requires manual addition of tap or purified water each time, increasing the user's workload.
[0004] Therefore, there is an urgent need for a nursing and cleaning device to solve the problems in existing technologies. Utility Model Content
[0005] The purpose of this invention is to provide a cleaning and care device that can effectively utilize the condensate water generated during the drying process, thereby reducing water waste and saving home decoration space.
[0006] To achieve this objective, the present invention adopts the following technical solution:
[0007] Nursing and cleaning equipment, including:
[0008] The housing contains a drying assembly for drying clothes, and the bottom of the housing contains a rinsing assembly and a storage compartment with an opening.
[0009] A drip tray is disposed inside the housing and is used to collect condensate during the drying process;
[0010] An ironing device is placed at the top of the housing and is used for ironing clothes;
[0011] A steam generating device includes a steam generator, wherein the water inlet of the steam generator is connected to the water receiving tray, and the steam outlet of the steam generator is selectively connected to the drying assembly and / or the ironing device;
[0012] A cleaning device for cleaning the floor and accessible through the opening to the storage compartment, wherein the input end of the rinsing component is connected to the water receiving tray and the output end of the rinsing component is configured to rinse the cleaning section of the cleaning device.
[0013] The condensate generated during the drying process is collected in a drip tray and used as the water source for the steam generator. The steam generator then delivers steam to the ironing unit and / or the drying assembly. This eliminates the need for users to add water to the steam generator, reducing user workload and preventing limescale buildup from prolonged use of tap water. This improves steam generation efficiency, extends the lifespan of the ironing unit, and avoids limescale staining of clothes. Additionally, a rinsing assembly and a storage compartment are located at the bottom of the housing. When the cleaning unit returns to the storage compartment, the rinsing assembly uses the condensate from the drip tray to clean the cleaning unit's sweeping section, reducing water waste. Furthermore, the cleaning unit can be stored at the bottom of the housing, saving space in the home.
[0014] Optionally, the steam generating device further includes:
[0015] A steam pipe and a first switching valve, wherein the first switching valve is disposed on the steam pipe, one end of the steam pipe is connected to the steam outlet, and the steam pipe is selectively connected to the drying assembly and / or the ironing device through the first switching valve.
[0016] The first switching valve in the steam pipeline can switch the steam output direction according to the usage scenario. It can supply steam to the drying unit or the ironing device. This flexibility allows users to choose the steam usage mode according to actual needs, so that drying and ironing can be operated simultaneously or independently, adapting to different usage needs and improving the versatility of the care and cleaning equipment.
[0017] Optionally, the first switching valve is a three-way solenoid valve, and the steam pipeline includes a main steam pipe, a first branch pipe and a second branch pipe. One end of the main steam pipe is connected to the steam outlet and the other end is connected to the inlet of the three-way solenoid valve. One end of the first branch pipe is connected to the first outlet of the three-way solenoid valve and the other end is connected to the drying assembly. One end of the second branch pipe is connected to the second outlet of the three-way solenoid valve and the other end is connected to the ironing device.
[0018] The three-way solenoid valve can automatically switch the direction of steam flow between different operating modes, so that the steam flow is precisely distributed between the drying unit and the ironing device.
[0019] Optionally, the top of the housing is provided with a support plate for placing clothes to be ironed. The support plate at the top of the housing provides a stable platform for ironing clothes, eliminating the need for an additional support plate and allowing users to complete the drying and ironing process on the same device, saving home space and realizing the device's versatility.
[0020] Optionally, the support plate is provided with a limiting groove, and at least a portion of the ironing device can be confined within the limiting groove. By confining the ironing device in a specific position, slippage or movement of the ironing device is prevented when it is not in use, thereby improving the stability of the ironing device.
[0021] Optionally, the rinsing assembly includes:
[0022] A water tank is located at the bottom of the shell, and the water tank can communicate with the water receiving tray;
[0023] A flushing pipe and a nozzle, wherein one end of the flushing pipe is connected to the water tank and the other end is provided with the nozzle;
[0024] The second water pump is installed on the rinsing pipeline. The second water pump is used to provide rinsing pressure to the nozzle, ensuring that the water flow sprayed during the cleaning process is strong and powerful. The strong water flow can remove dirt from the cleaning part more efficiently and improve the cleaning effect.
[0025] Optionally, the flushing assembly further includes a water intake pipe and a second switching valve. One end of the water intake pipe is connected to the water receiving tray, and the other end is connected to the water tank. The second switching valve is disposed on the water intake pipe. Specifically, when assembling the water receiving tray and the water tank, the water receiving tray is located above the water tank. When the second switching valve is opened, the condensate water can automatically flow into the water tank due to gravity.
[0026] Optionally, a water level sensor is installed in the water receiving tray, and the water level sensor is communicatively connected to the second switching valve. The water level sensor can monitor the water level in the water receiving tray in real time to ensure that the water volume does not exceed the design range. Specifically, the water level sensor is communicatively connected to the controller of the care and cleaning equipment, and the second switching valve is also communicatively connected to the controller of the care and cleaning equipment. When the water level reaches a predetermined upper limit, the water level sensor automatically sends a signal to the controller. After receiving the signal, the controller sends a signal to the second switching valve to control the second switching valve to open, allowing the condensate in the water receiving tray to flow into the water tank, thereby preventing condensate from overflowing from the water receiving tray and protecting the care and cleaning equipment from damage.
[0027] Optionally, the housing is provided with an air duct, and the clothes drying assembly includes:
[0028] A roller is rotatably disposed within the housing.
[0029] A heater and a circulating fan are provided, wherein the heater is disposed within the air duct and the circulating fan is used to deliver heated air into the drum.
[0030] An evaporator is provided inside the air duct, and a water collection tray is used to collect the condensate produced by the evaporator.
[0031] The heater is usually composed of heating elements (such as electric heaters). When it is working, it heats the air in the air duct to a suitable temperature. The circulating fan sends the heated air into the drum through the air duct. The rolling of the drum allows the hot air to come into full contact with the wet clothes. When the hot air comes into contact with the wet clothes, the moisture in the clothes is evaporated into water vapor. The water vapor enters the air duct with the air flow. Some of the water vapor is cooled and condensed into condensate by the evaporator. The condensate produced by the evaporator is collected by the drip tray.
[0032] Optionally, the drying assembly further includes a humidity sensor for detecting the humidity of the clothes inside the drum. Once the clothes reach a preset humidity level, the drying assembly can automatically stop drying, preventing over-drying and thus reducing wear and deformation, extending the lifespan of the clothes.
[0033] Beneficial effects:
[0034] The cleaning and care device provided by this utility model collects condensate generated during the drying process through a water tray. The condensate in the water tray is used as the water source for a steam generator, which then delivers steam to the ironing device and / or the drying assembly. This eliminates the need for users to add water to the steam generator, reducing user workload and preventing scale buildup from prolonged use of tap water. It also helps improve steam generation efficiency, extends the lifespan of the ironing device, and prevents scale from staining clothes. Furthermore, a rinsing component and a storage compartment are located at the bottom of the housing. When the cleaning device returns to the storage compartment, the rinsing component uses the condensate in the water tray to clean the cleaning part of the device, reducing water waste. The cleaning device can also be stored at the bottom of the housing, saving home space. Attached Figure Description
[0035] Figure 1 This is a structural schematic diagram of the nursing and cleaning equipment provided by this utility model from a first-view perspective;
[0036] Figure 2 This is a structural schematic diagram of the nursing and cleaning equipment provided by this utility model from a second perspective.
[0037] In the picture:
[0038] 100. Housing; 110. Drum; 120. Flushing assembly; 121. Water tank; 122. Flushing pipeline; 123. Nozzle; 124. Second water pump; 125. Water intake pipe; 126. Second switch valve; 130. Storage compartment; 140. Support plate; 141. Limiting groove;
[0039] 200. Water tray;
[0040] 300. Ironing equipment;
[0041] 400. Steam generating device; 410. Steam generator; 420. Water inlet pipe; 430. First water pump; 441. Main steam pipe; 442. First branch pipe; 443. Second branch pipe; 450. First switch valve;
[0042] 500. Cleaning equipment. DETAILED DESCRIPTION
[0043] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.
[0044] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0045] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0046] In the description of this embodiment, the terms "upper," "lower," "left," and "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0047] This embodiment provides a nursing and cleaning device, such as Figures 1-2 As shown, the cleaning and care equipment includes a housing 100, a drip tray 200, an ironing device 300, a steam generator 400, and a cleaning device 500. The housing 100 contains a drying assembly and a drip tray 200. The drying assembly is used to dry clothes, and the drip tray 200 is used to collect condensate during the drying process. The bottom of the housing 100 has a rinsing assembly 120 and a storage compartment 130 with an opening. The ironing device 300 is placed at the top of the housing 100 and is used to iron clothes. The steam generator 500... The device 400 includes a steam generator 410, the water inlet of which is connected to a water tray 200, and the steam outlet of which is selectively connected to a drying assembly and / or an ironing device 300; a cleaning device 500 is used to clean the floor, and after the cleaning device 500 has finished cleaning the floor, the cleaning device 500 enters the storage compartment 130 through the opening, the input end of the rinsing assembly 120 is connected to the water tray 200, and the output end of the rinsing assembly 120 rinses the cleaning part of the cleaning device 500.
[0048] The condensate generated during the drying process is collected by the drip tray 200 and used as the water source for the steam generator 410. The steam generator 410 delivers steam to the ironing device 300 and / or the drying component. This eliminates the need for the user to add water to the steam generator 410, reducing user workload and preventing scale buildup from prolonged use of tap water. This also helps improve steam generation efficiency, extends the lifespan of the ironing device 300, and prevents scale from staining clothes. Simultaneously, a rinsing assembly 120 and a storage compartment 130 are located below the housing 100. When the cleaning device 500 returns to the storage compartment 130, the rinsing assembly 120 can use the condensate from the drip tray 200 to clean the cleaning part of the cleaning device 500, reducing water waste. Furthermore, the cleaning device 500 can be stored below the housing 100, saving home space.
[0049] Alternatively, as Figure 1As shown, the steam generator 400 also includes a water inlet pipe 420 and a first water pump 430. The first water pump 430 is installed on the water inlet pipe 420. One end of the water inlet pipe 420 is connected to the water receiving pan 200, and the other end is connected to the water inlet of the steam generator 410. The first water pump 430 can transport the condensate in the water receiving pan 200 to the steam generator 410, thereby improving the efficiency of condensate transportation.
[0050] Optionally, the steam generator 400 further includes a steam pipeline and a first switching valve 450. The first switching valve 450 is disposed on the steam pipeline, one end of which is connected to a steam outlet. The steam pipeline is selectively connected to the drying assembly and / or the ironing device 300 via the first switching valve 450. The first switching valve 450 in the steam pipeline can switch the steam output direction according to the usage scenario, supplying steam to either the drying assembly or the ironing device 300. This flexibility allows users to select the steam usage mode according to actual needs, enabling simultaneous or independent operation of drying and ironing, adapting to different usage requirements, and enhancing the versatility of the cleaning and care equipment.
[0051] Alternatively, as Figure 1 As shown, the first switching valve 450 is a three-way solenoid valve. The steam pipeline includes a main steam pipe 441, a first branch pipe 442, and a second branch pipe 443. One end of the main steam pipe 441 is connected to the steam outlet, and the other end is connected to the inlet of the three-way solenoid valve. One end of the first branch pipe 442 is connected to the first outlet of the three-way solenoid valve, and the other end is connected to the drying assembly. One end of the second branch pipe 443 is connected to the second outlet of the three-way solenoid valve, and the other end is connected to the ironing device 300. The three-way solenoid valve can automatically switch the steam flow direction between different usage modes, so that the steam flow is precisely distributed between the drying assembly and the ironing device 300.
[0052] Optionally, the three-way solenoid valve is communicatively connected to the controller of the cleaning and care equipment. Through the controller, users can easily switch the steam flow between drying and ironing modes as needed, avoiding the hassle of manual adjustment and improving operational convenience and automation. It should be noted that the controller of the cleaning and care equipment can be a centralized or distributed controller. For example, the controller can be a single microcontroller or a combination of multiple distributed microcontrollers. The microcontroller can run a control program, which in turn drives the three-way solenoid valve to perform corresponding opening and closing actions.
[0053] In this embodiment, the steam generated by the steam generator 410 can be supplied separately to the drying assembly by controlling the opening and closing state of the three-way valve, so that the drying assembly can steam wash the clothes, or it can be supplied separately to the ironing device 300 for ironing the clothes. Alternatively, the steam generated by the steam generator 400 can be supplied to both the ironing device 300 and the drying assembly at the same time, so that steam washing and ironing can be carried out simultaneously.
[0054] Optionally, a support plate 140 is provided at the top of the housing 100 for placing clothes to be ironed. The support plate 140 provides a stable platform for ironing clothes at the top of the housing 100, eliminating the need for an additional support plate 140. This allows users to complete the drying and ironing process on the same device, saving home space and realizing the versatility of the device.
[0055] In this embodiment, the support plate 140 is made of heat-resistant material. For example, the support plate 140 can be made of high-temperature resistant plastic, ceramic or metal alloy.
[0056] Optionally, to ensure comfort during ironing, the overall height of the housing 100 is between 1.1m and 1.6m, thereby ensuring the support plate 140 is at a suitable height, avoiding the need to bend over during ironing, and improving the convenience of ironing. Specifically, the height of the housing 100 can be 1.1m, 1.2m, 1.3m, 1.4m, 1.5m, or 1.6m. In this embodiment, the height of the housing 100 is preferably 1.5m, and the corresponding height of the support plate 140 is at 1.5m, ensuring comfort during ironing.
[0057] Alternatively, as Figure 2 As shown, the support plate 140 is provided with a limiting groove 141, and at least part of the ironing device 300 can be limited within the limiting groove 141. By limiting the ironing device 300 to a specific position, the ironing device 300 is prevented from sliding or moving when not in use, thereby improving the stability of the ironing device 300.
[0058] Alternatively, as Figure 2 As shown, the rinsing assembly 120 includes a water tank 121, a rinsing pipe 122, a nozzle 123, and a second water pump 124. The water tank 121 is located at the bottom of the housing 100 and can communicate with the water receiving tray 200. One end of the rinsing pipe 122 is connected to the water tank 121, and the other end is provided with a nozzle 123. The second water pump 124 is located on the rinsing pipe 122. The second water pump 124 is used to provide rinsing pressure to the nozzle 123 to ensure that the water flow sprayed during the cleaning process is strong and powerful. The strong water flow can remove dirt from the cleaning part more efficiently and improve the cleaning effect.
[0059] Optionally, the cleaning device 500 can be a sweeper, the sweeping part of which is a brush. The rinsing component 120 can rinse the brush to ensure its cleanliness, thereby improving the cleaning effect and extending the service life of the brush. In other embodiments, the cleaning device 500 can be a sweeper-mop combo, the sweeping part of which is a brush and a mop. The rinsing component 120 can rinse the brush and mop to effectively remove dust, dirt, or residual liquid adsorbed on the brush and mop during the sweeping process, ensuring that the sweeper-mop combo maintains a highly efficient cleaning state every time it is used.
[0060] Optionally, the bottom of the housing 100 is provided with a water outlet that can be connected to the room's sewer. After rinsing and cleaning the cleaning part (such as a brush or mop) of the cleaning device 500, the wastewater generated can be directly discharged into the sewer through the water outlet without manual treatment or collection, reducing the time and effort required to maintain the cleaning device 500 and making the cleaning device 500 more convenient to use.
[0061] In this embodiment, as Figure 2 As shown, the flushing assembly 120 also includes a water intake pipe 125 and a second switching valve 126. One end of the water intake pipe 125 is connected to the water receiving tray 200, and the other end is connected to the water tank 121. The second switching valve 126 is disposed on the water intake pipe 125. Specifically, when the water receiving tray 200 and the water tank 121 are assembled, the water receiving tray 200 is located above the water tank 121. When the second switching valve 126 is opened, the condensate water can automatically flow into the water tank 121 due to gravity.
[0062] Optionally, the volume of the water tank 121 is larger than that of the drip tray 200. The water tank 121 can collect the condensate generated during the drying process multiple times, avoiding the hassle of frequently cleaning the drip tray 200 and improving the convenience of use for users.
[0063] Optionally, a water level sensor is installed in the drip tray 200, and the water level sensor is communicatively connected to the second switching valve 126. The water level sensor can monitor the water level in the drip tray 200 in real time to ensure that the water volume does not exceed the design range. Specifically, the water level sensor is communicatively connected to the controller of the care and cleaning equipment, and the second switching valve 126 is also communicatively connected to the controller of the care and cleaning equipment. When the water level reaches the predetermined upper limit, the water level sensor automatically sends a signal to the controller. After receiving the signal, the controller sends a signal to the second switching valve 126 to control the second switching valve 126 to open, allowing the condensate in the drip tray 200 to flow into the water tank 121, thereby preventing condensate from overflowing from the drip tray 200 and protecting the care and cleaning equipment from damage.
[0064] Optionally, the housing 100 is provided with an air duct. The drying assembly includes a heater, a circulating fan, a drum 110, and an evaporator. The heater, circulating fan, and evaporator are all located within the air duct. The drum 110 is rotatably mounted within the housing 100. The heater is used to heat the air, and the circulating fan sends the heated air into the drum 110 to dry the clothes inside. The evaporator is used to condense the air exiting from the drum 110, causing the hot and humid air to condense into water. The drip tray 200 is used to collect the condensate produced by the evaporator. Specifically, the heater is usually composed of a heating element (such as an electric heater). During operation, it heats the air in the air duct to a suitable temperature. The circulating fan sends the heated air into the drum 110 through the air duct. The rotation of the drum 110 ensures that the hot air comes into full contact with the wet clothes. When the hot air comes into contact with the wet clothes, the moisture in the clothes is evaporated into water vapor. The water vapor enters the air duct with the airflow, and some of the water vapor is cooled and condensed into condensate by the evaporator. The condensate produced by the evaporator is collected by the drip tray 200.
[0065] Optionally, the drying assembly also includes a condenser. When hot, humid air enters the evaporator from the drum 110, the evaporator condenses the moisture in the air into condensate. The air, with its humidity greatly reduced, then enters the condenser, which reheats the cooled air so that a circulating fan can send the reheated air back to the drum 110. The reheated dry air then re-enters the drum 110 and comes into contact with the wet clothes again, achieving further evaporation of moisture and thus completing the drying process.
[0066] Optionally, the drying assembly also includes a humidity sensor for detecting the humidity of the clothes inside the drum 110. Once the clothes reach the preset humidity, the drying assembly can automatically stop drying, thus avoiding over-drying the clothes, reducing wear and deformation, and extending the service life of the clothes.
[0067] Optionally, during the drying process, the preset humidity value reached by the clothes is 6%-12%, specifically 6%, 7%, 8%, 9%, 10%, 11%, and 12%. In this embodiment, it is preferable that the drying component stops when the clothes reach 8%, and the user manually removes the clothes and places them on the support plate 140, where the ironing device 300 irons the clothes flat. This saves energy and time, and also extends the life of the clothes.
[0068] It should be noted that, depending on the material of the clothing, users can manually select the steam pressure, steam speed, steam volume, and steam temperature of the ironing device 300, which can effectively remove wrinkles and improve the ironing effect.
[0069] For example, when the clothing is made of pure cotton, the steam pressure is 0.3MPa-0.45MPa, specifically 0.3MPa, 0.35MPa, 0.4MPa, or 0.45MPa; the steam rate is 20g / min-25g / min, specifically 20g / min, 21g / min, 22g / min, 23g / min, 24g / min, or 25g / min; the steam volume is 50g-70g, specifically 50g, 55g, 60g, 65g, or 70g; and the steam temperature is 150℃-180℃, specifically 150℃, 160℃, 170℃, or 180℃. In this embodiment, when the clothing is made of pure cotton, the preferred steam pressure is 0.3MPa, the steam rate is 20g / min, the steam volume is 50g, and the steam temperature is 150℃.
[0070] For example, when the clothing is made of synthetic fibers, such as polyester or nylon, the steam pressure is 0.15MPa-0.2MPa, specifically 0.15MPa, 0.16MPa, 0.17MPa, 0.18MPa, 0.19MPa, or 0.20MPa; the steam rate is 10g / min-12g / min, specifically 10g / min, 11g / min, or 12g / min; the steam volume is 15g-25g, specifically 15g, 16g, 17g, 18g, 19g, 20g, 21g, 22g, 23g, 24g, or 25g; and the temperature is 90℃-110℃, specifically 90℃, 100℃, or 110℃. When the clothing is made of pure cotton, in this embodiment, the preferred steam pressure is 0.15MPa, the steam rate is 10g / min, the steam volume is 15g, and the steam temperature is 90℃.
[0071] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A nursing and cleaning equipment, characterized in that, include: A housing (100) is provided inside the housing (100) for drying clothes. The drying assembly is used to dry clothes. The bottom end of the housing (100) is provided with a rinsing assembly (120) and a storage compartment (130) with an opening. A drip tray (200) is disposed inside the housing (100) and is used to collect condensate during the drying process; An ironing device (300) is placed at the top of the housing (100) and is used to iron clothes; A steam generating device (400) includes a steam generator (410), the water inlet of which is connected to the water receiving tray (200), and the steam outlet of which is selectively connected to the drying assembly and / or the ironing device (300). A cleaning device (500) is used to clean the floor and can enter the storage compartment (130) through the opening. The input end of the rinsing assembly (120) is connected to the water receiving tray (200), and the output end of the rinsing assembly (120) is configured to rinse the cleaning part of the cleaning device (500).
2. The nursing and cleaning equipment according to claim 1, characterized in that, The steam generating device (400) further includes: A steam pipe and a first switching valve (450) are provided on the steam pipe. One end of the steam pipe is connected to the steam outlet. The steam pipe is selectively connected to the drying assembly and / or the ironing device (300) through the first switching valve (450).
3. The nursing and cleaning equipment according to claim 2, characterized in that, The first switching valve (450) is a three-way solenoid valve. The steam pipeline includes a main steam pipe (441), a first branch pipe (442), and a second branch pipe (443). One end of the main steam pipe (441) is connected to the steam outlet, and the other end is connected to the inlet of the three-way solenoid valve. One end of the first branch pipe (442) is connected to the first outlet of the three-way solenoid valve, and the other end is connected to the drying assembly. One end of the second branch pipe (443) is connected to the second outlet of the three-way solenoid valve, and the other end is connected to the ironing device (300).
4. The nursing and cleaning equipment according to claim 1, characterized in that, The top of the housing (100) is provided with a support plate (140) for placing clothes to be ironed.
5. The nursing and cleaning equipment according to claim 4, characterized in that, The support plate (140) is provided with a limiting groove (141), and at least part of the ironing device (300) can be limited to the limiting groove (141).
6. The nursing and cleaning equipment according to claim 1, characterized in that, The flushing assembly (120) includes: A water tank (121) is disposed at the bottom of the housing (100), and the water tank (121) can communicate with the water receiving tray (200); A flushing pipe (122) and a nozzle (123) are provided, one end of the flushing pipe (122) being connected to the water tank (121) and the other end being provided with the nozzle (123); A second water pump (124) is installed on the flushing pipeline (122) and is used to provide flushing pressure to the nozzle (123).
7. The nursing and cleaning equipment according to claim 6, characterized in that, The flushing assembly (120) also includes a water intake pipe (125) and a second switch valve (126). One end of the water intake pipe (125) is connected to the water receiving tray (200), and the other end is connected to the water tank (121). The second switch valve (126) is disposed on the water intake pipe (125).
8. The nursing and cleaning equipment according to claim 7, characterized in that, The water receiving tray (200) is equipped with a water level sensor, which is communicatively connected to the second switch valve (126).
9. The nursing and cleaning equipment according to any one of claims 1-8, characterized in that, The housing (100) is provided with an air duct, and the clothes drying assembly includes: A roller (110) is rotatably disposed within the housing (100); A heater and a circulating fan, wherein the heater is disposed in the air duct and the circulating fan is used to deliver heated air to the drum (110); An evaporator is provided inside the air duct, and a water receiving tray (200) is used to receive the condensate produced by the evaporator.
10. The nursing and cleaning equipment according to claim 9, characterized in that, The drying assembly also includes a humidity sensor for detecting the humidity of the clothes inside the roller (110).