WO2023130712A1 - 空气处理装置、空调室内机和空调器 - Google Patents

空气处理装置、空调室内机和空调器 Download PDF

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Publication number
WO2023130712A1
WO2023130712A1 PCT/CN2022/107416 CN2022107416W WO2023130712A1 WO 2023130712 A1 WO2023130712 A1 WO 2023130712A1 CN 2022107416 W CN2022107416 W CN 2022107416W WO 2023130712 A1 WO2023130712 A1 WO 2023130712A1
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WO
WIPO (PCT)
Prior art keywords
air
module
duct
treatment device
air duct
Prior art date
Application number
PCT/CN2022/107416
Other languages
English (en)
French (fr)
Inventor
黄博义
张帆
张卫东
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202210024305.0A external-priority patent/CN116447689A/zh
Priority claimed from CN202220054013.7U external-priority patent/CN216716494U/zh
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2023130712A1 publication Critical patent/WO2023130712A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0071Indoor units, e.g. fan coil units with means for purifying supplied air
    • F24F1/0073Indoor units, e.g. fan coil units with means for purifying supplied air characterised by the mounting or arrangement of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0087Indoor units, e.g. fan coil units with humidification means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/108Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering using dry filter elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/90Cleaning of purification apparatus

Definitions

  • the present application relates to the technical field of air treatment, in particular to an air treatment device, an air conditioner indoor unit and an air conditioner.
  • the main purpose of this application is to propose an air treatment device, aiming to solve the problems of the traditional air treatment device, which have weak filter capacity, short service life, and need to be replaced regularly, resulting in high cost of use of the air treatment device.
  • the air treatment device proposed by the present application includes:
  • the casing is provided with an air duct
  • a purification module arranged in the air duct, is used to adsorb pollutants and desorb the pollutants under the action of hot steam;
  • the steam generation module is used to deliver hot steam to the purification module.
  • the housing is further provided with an installation cavity independent of the air duct, the steam generating module is arranged in the installation cavity, and the installation cavity has a first A diversion port, the first diversion port is used to direct the steam generated by the steam generation module to the air intake side of the purification module.
  • the housing is further provided with a fresh air inlet passage, and the fresh air inlet passage is used to communicate the outdoor environment with the air inlet end of the air duct.
  • the air handling device further includes an exhaust switching door movably installed on the casing, the exhaust switching door has a first position and a second position, and in the first position, Both the fresh air inlet passage and the first diversion port are in communication with the air duct; at the second position, the fresh air inlet passage is cut off from the air duct and the first diversion port is connected to the air duct.
  • the air ducts are connected.
  • the air treatment device further includes a humidification module disposed in the air duct, and the humidification module is located downstream of the purification module.
  • the installation cavity further has a second guide port communicating with the air duct, the second guide port is located downstream of the air outlet side of the purification module and faces the inlet of the humidification module.
  • the air treatment device also includes a humidification switching door that can be opened and closed at the second diversion port;
  • the exhaust switching door also has a third position, and in the third position, the Both the fresh air inlet channel and the first diversion opening are isolated from the air channel.
  • the steam generation module includes a temperature adjustment member, and the temperature adjustment member is used to adjust the temperature of the steam output by the steam generation module.
  • the air handling device further includes an air duct part provided on the housing, the air duct part is provided with a suction air duct, and the housing is also provided with an air inlet and an air outlet,
  • the air inlet, the air duct, the air suction duct and the air outlet are sequentially connected
  • the air treatment device also includes an air inlet switch door and an air outlet switch door, and the air inlet switch door can be opened and closed.
  • the air outlet is arranged at the air inlet
  • the air outlet switch door is openably and closably arranged at the air outlet
  • the housing is also provided for connecting the air outlet end of the air suction duct with the outdoor environment. Open ventilation channels.
  • the casing is provided with a fresh air pipe, and a fresh air inlet passage is formed in the fresh air pipe, and one end of the fresh air pipe communicates with the air outlet end of the exhaust passage, and the fresh air
  • the other end of the pipe is used to communicate with the outdoor environment, and the side of the fresh air pipe is provided with a communication port connecting the fresh air inlet channel with the air duct.
  • the present application also proposes an air-conditioning indoor unit, including the above-mentioned air handling device.
  • the present application also proposes an air conditioner, which includes an air conditioner outdoor unit and the above-mentioned air conditioner indoor unit, and the air conditioner outdoor unit communicates with the air conditioner indoor unit through a refrigerant pipeline.
  • the technical solution of the present application is to install a purification module in the air duct of the casing, and the pollutants are adsorbed by the purification module to purify the air; at the same time, a steam generation module is provided.
  • the steam generation module The hot steam is sent to the purification module, and the purification module desorbs the pollutants under the action of the hot steam, so that the purification module can realize the regenerative adsorption function, so that the service life of the purification module can be extended infinitely; and the adsorption module is heated by the hot steam It can also effectively improve the adsorption capacity.
  • the adsorption capacity of the purification module of the air treatment device of the present application is effectively improved, and the service life can be effectively extended without frequent and regular replacement, which can effectively reduce the cost of use.
  • Fig. 1 is a schematic diagram of an exploded structure of an embodiment of the air treatment device of the present application
  • Fig. 3 is a schematic diagram of the air flow from another perspective when the air treatment device in Fig. 2 is in the purification mode;
  • Fig. 4 is a schematic diagram of the airflow direction of the air treatment device in Fig. 1 in the desorption mode
  • Fig. 5 is a schematic diagram of the air flow from another perspective when the air treatment device in Fig. 4 is in the desorption mode;
  • Fig. 6 is a schematic diagram of the airflow direction of the air handling device in Fig. 1 in the fresh air mode
  • Fig. 7 is a schematic diagram of the airflow direction from another perspective when the air handling device in Fig. 6 is in the fresh air mode;
  • Fig. 8 is a schematic diagram of the airflow direction of the air treatment device in Fig. 1 in the steam humidification mode.
  • the directional indication is only used to explain the relationship between the components in a certain posture. If the specific posture changes, the directional indication will also change accordingly.
  • the present application proposes an air treatment device 100 .
  • the air treatment device 100 includes a casing 10 , a purification module 20 and a steam generation module 30 .
  • the housing 10 is provided with an air duct 11; the purification module 20 is arranged in the air duct 11, and the purification module 20 is used for adsorbing pollutants and can remove the pollutants under the action of hot steam. Attached; the steam generation module 30 is used to deliver hot steam to the purification module 20.
  • the casing 10 is used to form the main support structure of the air treatment device 100 , and an air channel 11 is formed in the casing 10 , and the air channel 11 can allow air flow to flow along a preset route.
  • the purification module 20 is set in the air duct 11 of the housing 10. When the air with pollutants (such as benzene, aldehyde and other macromolecular particles) passes through the air duct 11, the purification module 20 can absorb the pollutants in the air, To play the role of air purification.
  • pollutants such as benzene, aldehyde and other macromolecular particles
  • the steam generation module 30 can be arranged inside the casing 10 or outside the casing 10, as long as it can deliver hot steam to the purification module 20, the hot steam here specifically refers to high-temperature steam above 80 degrees Celsius, and the purification module 20
  • the desorption effect can be realized under the action of the high-temperature steam, and at the same time, the high-temperature steam can also energize the purification module 20 to improve the adsorption capacity of the purification module 20 .
  • the purification module 20 may include a filter body and a regenerated catalyst disposed on the filter body. When the air flows through the purification module 20 , the pollutants in the air can be adsorbed and filtered through the filter body (such as a filter screen).
  • the steam generation module 30 starts to work, and the hot steam is delivered to the purification module 20 through the steam generation module 30, and the regenerated catalyst on the filter body is heated for thermal catalysis, so that the previous stage can be adsorbed in the filter.
  • the pollutants on the main body are desorbed.
  • the purification module 20 may include a filter body and a molecular sieve disposed on the filter body.
  • molecular sieves can be loaded on the filter body (such as metal mesh or ceramic fiber mesh) to form a filter mesh with stable structure and excellent filtration performance.
  • a purification module 20 is provided in the air duct 11 of the casing 10, and the pollutants are adsorbed by the purification module 20 to purify the air; at the same time, a steam generation module 30 is provided, when the pollutants accumulate to a certain extent Finally, the hot steam is sent to the purification module 20 through the steam generation module 30, and the purification module 20 desorbs the pollutants under the action of the hot steam, so that the purification module 20 can realize the regenerative adsorption function, so that the service life of the purification module 20 can be extended infinitely ; and the adsorption module can effectively improve the adsorption capacity under the heating effect of hot steam.
  • the adsorption capacity of the purification module 20 of the air treatment device 100 of the present application is effectively improved, and the service life can be effectively extended, without frequent and regular replacement, which can effectively reduce the use of cost.
  • the housing 10 is also provided with an installation cavity 12 independent of the air duct 11 , and the steam generating module 30 is arranged in the installation cavity 12 , the installation cavity 12 has a first guide port 121 communicating with the air channel 11, and the first guide port 121 is used to guide the steam generated by the steam generating module 30 to the inlet of the purification module 20. windy side.
  • the steam generation module 30 works to generate hot steam, and the hot steam is transported to the air intake of the purification module 20 through the first diversion port 121 As the air flow infiltrates into the purification module 20, the temperature of the purification module 20 rises rapidly under the action of hot steam and desorbs the adsorbed pollutants, thereby realizing the regenerative adsorption function of the purification module 20.
  • the steam generation module 30 can be installed independently of the air duct 11, which can prevent the steam generation module 30 from occupying the air inlet of the air duct 11. Or the internal space of the air duct, which can ensure that the air intake efficiency and air intake volume will not be affected.
  • the housing 10 is further provided with a fresh air inlet passage 13 , and the fresh air inlet passage 13 is used to communicate the outdoor environment with the air inlet end of the air duct 11 .
  • the casing 10 is provided with a fresh air duct 17 extending vertically, and a fresh air inlet passage 13 is formed inside the fresh air duct 17 , and one end of the fresh air duct 17 is used for connecting with the outdoor air.
  • the atmosphere is connected, and the side of the fresh air duct 17 is provided with a communication port for communicating with the air inlet end of the air duct 11 .
  • the air handling device 100 turns on the fresh air mode, the outdoor fresh air enters the air duct 11 through the fresh air inlet channel 13, and after being purified by the purification module 20, the clean fresh air is transported indoors to provide clean fresh air for users.
  • the steam generating module 30 is turned on, and the hot steam generated by the steam generating module 30 is mixed with the fresh air in the fresh air inlet channel 13, and then blows into the room together. , so that the fresh air with a lower outdoor temperature can become warmer and more comfortable, which can effectively improve user experience.
  • the hot steam generated by the steam generating module 30 is mixed with the outdoor fresh air, and the temperature of the steam is lowered, and the pollutants on the purification module 20 will not be desorbed when it flows through the purification module 20. To prevent pollutants from entering the room.
  • the air handling device 100 further includes an exhaust switching door 40 movably installed on the casing 10, the exhaust switching door 40 has a first position and a second position, and in the first position , the fresh air inlet passage 13 and the first guide port 121 are in communication with the air duct 11; in the second position, the fresh air inlet passage 13 is isolated from the air duct 11 and the The first guide port 121 communicates with the air duct 11 .
  • the exhaust switching door 40 has a first position and a second position.
  • the exhaust switching door 40 is switched to the first position (as shown in FIG. 6 ), and the fresh air inlet channel 13 Connected with the air duct 11, the outdoor fresh air can enter the air duct 11 through the fresh air inlet channel 13, and then enter the room through the suction air duct 71; and in the first position, the first guide port 121 is connected with the air duct 11
  • the steam generating module 30 is turned on, the hot steam generated by the steam generating module 30 can flow out from the first diversion port 121 and mix with the fresh air delivered by the fresh air inlet channel 13 to enter the air duct 11.
  • the exhaust switch door 40 can be switched to the second position (as shown in Figure 4 ), so that the fresh air inlet passage 13 is separated from the air duct 11 to prevent the fresh air from entering the room; and in the second position, the first diversion port 121 communicates with the air duct 11 , which will not affect the delivery of hot steam from the steam generation module 30 to the purification module 20 in the air duct 11 .
  • the air exhaust switching door 40 can also be switched to the second position, so that the internal circulating air in the air handling device 100 can be discharged to the outside through the specific exhaust channel 16 .
  • the exhaust air switching door 40 is rotatably mounted on the casing 10 through a vertically extending rotating shaft, and one end of the rotating shaft is connected with a driving member, and the rotating shaft is driven to rotate by the driving member, thereby switching the exhaust air.
  • the door 40 can be switched between the first position and the second position.
  • the driving parts include but are not limited to the use of motors, rotary cylinders and the like.
  • the driving member can also use a push-pull rod or a link mechanism to drive the exhaust switching door 40 to switch between the first position and the second position.
  • the exhaust switching door 40 and the housing 10 form a sliding connection structure through the cooperation of slide rails and slide grooves, and the switching door is driven by a power element to slide and switch between the first position and the second position.
  • the air treatment device 100 further includes a humidification module 50 disposed in the air duct 11 , and the humidification module 50 is located downstream of the purification module 20 .
  • the humidification module 50 is mainly used to humidify the air passing through, and the humidification methods include but not limited to wet film humidification, spray humidification and the like.
  • the humidity of the air can be increased through the humidification of the humidification module 50, and finally clean air with a certain humidity is blown into the room to meet user needs.
  • the steam generating module 30 includes a temperature regulating member, and the temperature regulating member is used to adjust the temperature of the steam output by the steam generating module 30 .
  • the steam generation module 30 sends hot steam (greater than or equal to 80 degrees Celsius) to the purification module 20 to enable the purification module 20 to desorb the pollutants.
  • the steam temperature can be adjusted through the steam generating module 30 so that the temperature of the output hot steam is less than 80 degrees Celsius, and the hot steam will not desorb the purification module 20 at this time , At the same time, it can also meet the needs of users for blowing hot air.
  • the steam generation module 30 can realize steam temperature adjustment in many ways, for example, a temperature adjustment member (including a heating member and a cooling member) can be set at the steam output port of the steam generation module 30, so as to realize the temperature adjustment at the steam output port.
  • a temperature adjustment member including a heating member and a cooling member
  • a temperature sensor can also be installed at the steam output port, the temperature sensor is electrically connected to the temperature adjustment part, and the temperature of the steam is detected in real time through the temperature sensor.
  • the temperature adjustment part stops Work.
  • the installation cavity 12 also has a second guide port 122 communicating with the air duct 11, the second guide port 122 is located downstream of the air outlet side of the purification module 20 and faces the humidification module 50;
  • the air handling device 100 also includes a humidification switching door 60 that can be opened and closed at the second diversion port 122;
  • the exhaust switching door 40 also has a third position, in which In the third position, both the fresh air inlet passage 13 and the first guide port 121 are isolated from the air duct 11 .
  • the humidification switching door 60 is movably connected with the housing 10 , and the second diversion port 122 is opened or closed through the humidification switching door 60 .
  • the movable connection mode between the humidification switching door 60 and the casing 10 includes but not limited to a sliding connection, a rotating connection and the like. Under normal circumstances (such as desorption mode or fresh air mode), the humidification switching door 60 closes the second diversion port 122, and the hot steam generated by the steam generation module 30 can only flow out from the first diversion port 121 and blow to the purification module 20 .
  • the exhaust air switching door 40 in the steam humidification mode, the exhaust air switching door 40 is in the third position, the fresh air inlet passage 13 and the first diversion port 121 are all separated from the air duct 11, and the humidification switching door 60 guides the second flow The port 122 is opened.
  • the hot steam generated by the steam generating module 30 is directly sent to the humidification module 50 through the second diversion port 122, and finally sent to the room through the suction air duct 71.
  • the hot steam can be bypassed
  • the desorption of the purification module 20 can prevent pollutants from entering the room.
  • the humidification module 50 includes a water tank, a humidification membrane assembly disposed in the water tank, and a water tank 51 for supplying water to the water tank, and the casing 10 is provided with a suction port for the water tank 51 to be drawn out .
  • water is injected into the water tank through the water tank 51.
  • the humidifying membrane assembly includes a bracket and an adsorption film arranged on the bracket. The adsorption film can absorb the water in the water tank. To the room, so as to achieve the humidification function.
  • a suction port on the housing 10 when the water tank 51 is short of water, the user can pull out the water tank 51 from the suction port so as to replenish water into the water tank 51 .
  • a liquid level alarm is also provided in the water tank 51. When the water tank 51 is short of water, the liquid level alarm sends an alarm signal to prompt the user to replenish water in the water tank 51 in time.
  • the air handling device 100 further includes an air duct component 70 arranged on the housing 10 , and the air duct component 70 A suction air duct 71 is provided, and the housing 10 is also provided with an air inlet 14 and an air outlet 15, the air inlet 14, the air duct 11, the suction air duct 71 and the air outlet 15 in turn
  • the air treatment device 100 also includes an air inlet switch door 80 and an air outlet switch door 90, the air inlet switch door 80 is openably and
  • the housing 10 is also provided with an exhaust channel 16 for connecting the air outlet end of the suction air channel 71 with the outdoor environment.
  • the air duct component 70 includes an air duct housing and a fan disposed in the air duct housing.
  • the fan may specifically be a turbo fan, and a suction air duct 71 is formed in the air duct housing.
  • the air outlet side of the channel 11 is connected to and communicated with, and the air outlet side of the suction air channel 71 corresponds to the air outlet 15 .
  • the air can enter into the air duct 11 through the air inlet 14 and is purified by the purification module 20 of the air duct 11 .
  • the purification module 20 desorbs the pollutants, and the desorbed pollutants enter under the action of the fan components.
  • the suction air duct 71 enters the exhaust air duct 16 through the air suction duct 71 , and finally the pollutants can be discharged to the outside through the exhaust air duct 16 .
  • the housing 10 is provided with a fresh air duct 17, and a fresh air inlet passage 13 is formed in the fresh air duct 17, and one end of the fresh air duct 17 is connected to the exhaust passage 16.
  • the air outlet end of the fresh air pipe 17 is used to communicate with the outdoor environment. connection port.
  • the hot steam generated by the steam generating module 30 can pass through the air duct 11, the suction air duct 71, and the exhaust duct 16 in sequence, and finally be discharged outside through the fresh air pipe 17, so that the air duct 11,
  • the purification and sterilization function of the suction air duct 71 and the exhaust air duct 16 can also purify and sterilize the interior of the fresh air duct 17 to provide users with a cleaner environment.
  • the air inlet switch door 80, the air outlet switch door 90, the exhaust air switch door 40 and the humidification switch door 60 can be switched to different positions according to different functional modes, so as to realize different function mode.
  • Several functional modes of the air treatment device 100 of this embodiment will be described in detail below with reference to FIG. 2 to FIG. 8 .
  • the upper, lower, left, right, front and rear orientations of the air treatment device 100 are marked in the figure, but this does not constitute a specific limitation on the air treatment device 100 .
  • the bold arrows in Fig. 2 to Fig. 8 indicate the flow direction of the airflow.
  • FIG. 2 and Fig. 3 it shows the schematic diagram of the air flow direction of the air treatment device 100 in the purification mode.
  • Tuyere 15 Indoor air enters the air duct 11 through the air inlet 14, and the pollutants in the air (such as benzene, aldehyde and other macromolecular particles) can be adsorbed by the purification module 20. Send to air outlet 15 and blow to indoor under the effect, realize air purification function.
  • pollutants in the air such as benzene, aldehyde and other macromolecular particles
  • FIG. 4 and Fig. 5 it shows a schematic diagram of the air flow direction of the air treatment device 100 in the desorption mode.
  • the air duct 13 is isolated from the air duct 11 , while the first diversion opening 121 is connected to the air duct 11 , and the air outlet opening and closing door 90 closes the air outlet 15 .
  • the steam generation module 30 starts to work, and the high-temperature steam sent by the steam generation module 30 can enter the purification module 20 through the first guide port 121. After the regeneration catalyst of the purification module 20 is thermally catalyzed, it starts to absorb the previous stage on the filter body.
  • the pollutants are desorbed, enter the exhaust channel 16 through the suction air channel 71, and finally are discharged to the outside by the exhaust channel 16 to realize the purification and regeneration function of the purification module 20, and the pollutants are discharged to the outside, which can avoid indoor air pollution. Secondary pollution.
  • the exhaust air channel 16 is connected with the fresh air pipe 17 , and pollutants enter the fresh air pipe 17 through the exhaust air channel 16 and are discharged to the outside. In this way, by arranging a fresh air pipe 17, the functions of fresh air intake and exhaust can be realized, and when high-temperature steam passes through the fresh air pipe 17, the fresh air pipe 17 can also be sterilized.
  • FIG. 6 and 7 a schematic diagram of the airflow direction of the air handling device 100 in the fresh air mode is shown.
  • the air inlet switch door 80 closes the air inlet 14, and the air outlet switch door 90 opens the outlet.
  • the tuyere 15 and the exhaust switching door 40 are switched to the first position to connect the fresh air inlet channel 13 with the air channel 11 .
  • the outdoor fresh air enters the air channel 11 through the fresh air inlet channel 13, is purified and adsorbed by the purification module 20, and then enters the suction air channel 71, and is sent to the air outlet 15 to blow indoors under the action of the fan, so as to provide users with clean air. Comfortable fresh air.
  • the steam generating module 30 can be opened, and the hot steam generated by the steam generating module 30 flows out through the first diversion port 121 and mixes with the fresh air in the fresh air inlet passage 13 before entering the air duct 11 and The suction air duct 71 is finally sent out by the air outlet 15, which can provide clean, warm and comfortable purified air for the user, thereby effectively avoiding the problem of a large gap between the fresh air temperature and the indoor temperature in winter.
  • FIG. 8 it shows a schematic diagram of the airflow direction of the air treatment device 100 in the steam humidification mode.
  • the exhaust switching door 40 is switched to the third position, and the fresh air inlet channel 13 and the first One diversion port 121 is separated from the air duct 11, and the humidification switching door 60 opens the second diversion port 122.
  • the hot steam generated by the steam generation module 30 is directly transported to the humidification module 50 through the second diversion port 122, And finally sent to the room through the suction air duct 71, in this mode, the hot steam can bypass the purification module 20, so as to prevent the desorption of the purification module 20 and cause pollutants to enter the room.
  • the present application also proposes an air-conditioning indoor unit, which includes a main body and an air treatment device 100 installed on the main body. All the technical solutions of all the embodiments therefore at least have all the beneficial effects brought by the technical solutions of the above embodiments, and will not be repeated here.
  • the air conditioner indoor unit may be a wall-mounted air conditioner indoor unit or a cabinet type air conditioner indoor unit.
  • the present application also proposes an air conditioner, which includes an air conditioner outdoor unit and an air conditioner indoor unit, and the air conditioner outdoor unit communicates with the air conditioner indoor unit through a refrigerant pipeline.
  • the air conditioner indoor unit includes a main body and an air treatment device 100 installed on the main body.
  • the air treatment device 100 For the specific structure of the air treatment device 100, refer to the above-mentioned embodiments. Since this air-conditioner indoor unit adopts all the technical solutions of the above-mentioned embodiments, at least All the beneficial effects brought by the technical solutions of the above embodiments will not be repeated here.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Humidification (AREA)

Abstract

本申请公开一种空气处理装置、空调室内机和空调器,其中,空气处理装置,包括:壳体,设有风道;净化模块,设于所述风道,用于吸附污染物并能够在热蒸汽作用下将所述污染物进行脱附;以及蒸汽发生模块,用于向所述净化模块输送热蒸汽。

Description

空气处理装置、空调室内机和空调器
本申请要求于2022年1月10日申请的、申请号为202210024305.0以及202220054013.7的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及空气处理技术领域,特别涉及一种空气处理装置、空调室内机和空调器。
背景技术
随着生活水平的提高,人们越来越注重生活环境的舒适性,因此具有空气净化功能的装置越来越受到消费者的青睐。然而,传统的空气处理装置大多采用耗材型滤网进行吸附,通常吸附能力弱,使用寿命短,且需要定期更换,导致空气处理装置的使用成本较高。
技术问题
本申请的主要目的是提出一种空气处理装置,旨在解决传统的空气处理装置的滤网吸附能力弱,使用寿命短,且需要定期更换,导致空气处理装置的使用成本较高的问题。
技术解决方案
为实现上述目的,本申请提出的空气处理装置,包括:
壳体,设有风道;
净化模块,设于所述风道,用于吸附污染物并能够在热蒸汽作用下将所述污染物进行脱附;以及
蒸汽发生模块,用于向所述净化模块输送热蒸汽。
在一实施例中,所述壳体还设有独立于所述风道外的安装腔,所述蒸汽发生模块设于所述安装腔内,所述安装腔具有与所述风道连通的第一导流口,所述第一导流口用于将所述蒸汽发生模块产生的蒸汽导向所述净化模块的进风侧。
在一实施例中,所述壳体还设有新风进风通道,所述新风进风通道用于将室外环境与所述风道的进风端相连通。
在一实施例中,所述空气处理装置还包括可活动地安装于所述壳体的排风切换门,所述排风切换门具有第一位置和第二位置,在所述第一位置,所述新风进风通道及所述第一导流口均与所述风道连通;在所述第二位置,所述新风进风通道与所述风道隔断且所述第一导流口与所述风道连通。
在一实施例中,所述空气处理装置还包括设于所述风道内的加湿模块,所述加湿模块位于所述净化模块的下游。
在一实施例中,所述安装腔还具有与所述风道连通的第二导流口,所述第二导流口位于所述净化模块的出风侧下游并朝向所述加湿模块的进风侧;所述空气处理装置还包括可开合地设于所述第二导流口处的加湿切换门;所述排风切换门还具有第三位置,在所述第三位置,所述新风进风通道及所述第一导流口均与所述风道隔断。
在一实施例中,所述加湿模块包括水槽、设于所述水槽内加湿膜组件,以及用于向所述水槽供水的水箱,所述壳体设有供所述水箱抽出的抽出口。
在一实施例中,所述蒸汽发生模块包括温度调节件,所述温度调节件用于对所述蒸汽发生模块输出的蒸汽温度进行调节。
在一实施例中,所述空气处理装置还包括设于所述壳体上的风道部件,所述风道部件设有吸风风道,所述壳体还设有进风口和出风口,所述进风口、所述风道、所述吸风风道和所述出风口依次连通,所述空气处理装置还包括进风开关门及出风开关门,所述进风开关门可开合地设于所述进风口处,所述出风开关门可开合地设于所述出风口处,所述壳体还设有用于将所述吸风风道的出风端与室外环境相连通的排风通道。
在一实施例中,所述壳体设有新风管,所述新风管内形成新风进风通道,所述新风管的一端与所述排风通道的出风端相连通,所述新风管的另一端用于与室外环境相连通,所述新风管的侧部设有将所述新风进风通道与所述风道连通的连通口。
本申请还提出一种空调室内机,包括如上所述的空气处理装置。
本申请还提出一种空调器,包括空调室外机及如上所述的空调室内机,所述空调室外机通过冷媒管道与所述空调室内机相连通。
有益效果
本申请的技术方案通过在壳体的风道内设置净化模块,通过净化模块吸附污染物以起到空气净化的作用;同时设置有蒸汽发生模块,当污染物积累到一定程度后,通过蒸汽发生模块向净化模块输送热蒸汽,净化模块在热蒸汽作用下将污染物进行脱附,使得净化模块实现可再生吸附功能,从而能够无限延长净化模块的使用寿命;并且吸附模块在热蒸汽的加热作用下还能够有效提升吸附能力。相较于传统的空气处理装置采用耗材型滤网进行吸附,本申请的空气处理装置的净化模块吸附能力得到有效提升,同时使用寿命能够有效延长,无需频繁定期更换,可有效降低使用成本。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请空气处理装置一实施例的分解结构示意图;
图2为图1中空气处理装置处于净化模式的气流走向示意图;
图3为图2中空气处理装置处于净化模式的另一视角的气流走向示意图;
图4为图1中空气处理装置处于脱附模式的气流走向示意图;
图5为图4中空气处理装置处于脱附模式的另一视角的气流走向示意图;
图6为图1中空气处理装置处于新风模式的气流走向示意图;
图7为图6中空气处理装置处于新风模式的另一视角的气流走向示意图;
图8为图1中空气处理装置处于蒸汽加湿模式的气流走向示意图。
附图标号说明:
标号 名称 标号 名称
100 空气处理装置 20 净化模块
10 壳体 30 蒸汽发生模块
11 风道 40 排风切换门
12 安装腔 50 加湿模块
121 第一导流口 51 水箱
122 第二导流口 60 加湿切换门
13 新风进风通道 70 风道部件
14 进风口 71 吸风风道
15 出风口 80 进风开关门
16 排风通道 90 出风开关门
17 新风管    
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,若全文中出现的“和/或”或者“及/或”,其含义包括三个并列的方案,以“A和/或B”为例,包括A方案、或B方案、或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种空气处理装置100。
请参照图1和图2,在本申请一实施例中,该空气处理装置100包括壳体10、净化模块20和蒸汽发生模块30。其中,所述壳体10设有风道11;所述净化模块20设于所述风道11,所述净化模块20用于吸附污染物并能够在热蒸汽作用下将所述污染物进行脱附;所述蒸汽发生模块30用于向所述净化模块20输送热蒸汽。
具体地,壳体10用于形成空气处理装置100的主体支撑结构,壳体10内形成有风道11,风道11能够供气流按照预设路线进行流通。净化模块20设于壳体10的风道11内,当带有污染物(例如苯,醛等大分子颗粒)的空气通过风道11时,净化模块20可将空气中的污染物进行吸附,以起到空气净化的作用。蒸汽发生模块30可设于壳体10内也可以设于壳体10外,只要能够向净化模块20输送热蒸汽即可,此处的热蒸汽具体是指80摄氏度以上的高温蒸汽,净化模块20在高温蒸汽作用下能够实现脱附作用,同时高温蒸汽还能为净化模块20赋能,提升净化模块20的吸附能力。其中,净化模块20可包括过滤主体及设置于过滤主体上的再生催化剂。当空气流经净化模块20时,通过过滤主体(如滤网)可对空气中的污染物进行吸附过滤。当需要将污染物进行脱附时,蒸汽发生模块30开始工作,通过蒸汽发生模块30向净化模块20输送热蒸汽,过滤主体上的再生催化剂受热进行热催化,从而能够使上一阶段吸附在过滤主体上的污染物脱附下来。或者,净化模块20可包括过滤主体及设置于过滤主体上的分子筛。例如,可将分子筛负载在过滤主体(如金属网或陶瓷纤维网)上,从而形成结构稳定、过滤性能优良的滤网。
本申请的技术方案通过在壳体10的风道11内设置净化模块20,通过净化模块20吸附污染物以起到空气净化的作用;同时设置有蒸汽发生模块30,当污染物积累到一定程度后,通过蒸汽发生模块30向净化模块20输送热蒸汽,净化模块20在热蒸汽作用下将污染物进行脱附,使得净化模块20实现可再生吸附功能,从而能够无限延长净化模块20的使用寿命;并且吸附模块在热蒸汽的加热作用下还能够有效提升吸附能力。相较于传统的空气处理装置100采用耗材型滤网进行吸附,本申请的空气处理装置100的净化模块20吸附能力得到有效提升,同时使用寿命能够有效延长,无需频繁定期更换,可有效降低使用成本。
进一步地,如图2所示,在本实施例中,所述壳体10还设有独立于所述风道11外的安装腔12,所述蒸汽发生模块30设于所述安装腔12内,所述安装腔12具有与所述风道11连通的第一导流口121,所述第一导流口121用于将所述蒸汽发生模块30产生的蒸汽导向所述净化模块20的进风侧。
具体地,如图4所示,当需要对净化模块20上的污染物进行脱附时,蒸汽发生模块30工作产生热蒸汽,热蒸汽经由第一导流口121输送至净化模块20的进风侧,并随着气流渗入到净化模块20内,净化模块20在热蒸汽的作用下迅速升温并将所吸附的污染物进行脱附,从而实现净化模块20的再生吸附功能。另外,通过在壳体10内设置独立的安装腔12用于安装蒸汽发生模块30,使得蒸汽发生模块30能够独立于风道11之外设置,可避免蒸汽发生模块30占用风道11的进风口或风道内部空间,可保证进风效率和进风量不受影响。
进一步地,请参照图6和图7,所述壳体10还设有新风进风通道13,所述新风进风通道13用于将室外环境与所述风道11的进风端相连通。
具体地,请结合图1和图7,壳体10上设有竖向延伸的新风管17,新风管17的内部形成有新风进风通道13,新风管17的一端用于与室外大气相连通,新风管17的侧面设有用于与风道11的进风端相连通的连通口。当空气处理装置100开启新风模式时,室外的新风通过新风进风通道13进入到风道11内,并通过净化模块20进行净化处理后将干净的新风输送至室内,以为用户提供干净的新风。另外,在寒冷干燥的冬季,当用户需要对空气进行加热加湿时,蒸汽发生模块30开启,蒸汽发生模块30所产生的热蒸汽与新风进风通道13内的新风混合后,再一起吹向室内,从而能够使得室外温度较低的新风变得更加温暖、舒适,可有效提升用户体验。需要说明的是,在新风加热模式下,蒸汽发生模块30所产生的热蒸汽与室外新风混合后蒸汽温度降低,再流经净化模块20时不会使净化模块20上的污染物脱附下来,可避免污染物进入室内。
进一步地,所述空气处理装置100还包括可活动地安装于所述壳体10的排风切换门40,所述排风切换门40具有第一位置和第二位置,在所述第一位置,所述新风进风通道13及所述第一导流口121均与所述风道11连通;在所述第二位置,所述新风进风通道13与所述风道11隔断且所述第一导流口121与所述风道11连通。
具体地,排风切换门40具有第一位置和第二位置,当需要开启新风模式时,将排风切换门40切换至第一位置(如图6所示),此时新风进风通道13与风道11相连通,室外的新风能够经由新风进风通道13进入风道11,进而经由吸风风道71进入室内;并且在第一位置时,第一导流口121与风道11相连通,此时若开启蒸汽发生模块30,蒸汽发生模块30产生的热蒸汽能够自第一导流口121处流出并与新风进风通道13输送的新风混合后进入风道11内。当需要关闭新风模式时,可将排风切换门40切换至第二位置(如图4所示),以使新风进风通道13与风道11相隔断,避免新风进入室内;并且在第二位置时,第一导流口121与风道11相连通,不会影响蒸汽发生模块30向风道11内的净化模块20输送热蒸汽。此外,当需要使空气处理装置100向外排风时,也可将排风切换门40切换至第二位置,以使空气处理装置100内的内循环空气通过特定的排风通道16排出至室外。
其中,排风切换门40与壳体10之间的活动安装方式有多种,包括但不限于转动连接、滑动连接等,只要能够保证排风切换门40在第一位置和第二位置之间自由切换即可。可选地,在本实施例中,排风切换门40通过竖向延伸的转轴可转动地安装于壳体10,转轴的一端连接有驱动件,通过驱动件驱动转轴旋转,进而使排风切换门40在第一位置与第二位置之间进行切换,此种设置整体结构简单,便于控制。驱动件包括但不限于采用电机、旋转气缸等。当然,在其他实施例中驱动件也可采用推拉杆或者连杆机构带动排风切换门40在第一位置和第二位置之间进行切换。或者,在其他实施例中,排风切换门40与壳体10通过滑轨与滑槽配合形成滑动连接结构,通过动力件带动切换门在第一位置与第二位置之间进行滑动切换。
进一步地,请参照图2,所述空气处理装置100还包括设于所述风道11内的加湿模块50,所述加湿模块50位于所述净化模块20的下游。具体地,加湿模块50主要用于对流经的空气进行加湿,加湿方式包括但不限于采用湿膜加湿、喷雾加湿等等。经过净化模块20净化后的干净空气流经加湿模块50时,通过加湿模块50的加湿作用,能够增加空气湿度,最终使得干净且具有一定湿度的空气吹向室内,以满足用户需求。
进一步地,所述蒸汽发生模块30包括温度调节件,所述温度调节件用于对所述蒸汽发生模块30输出的蒸汽温度进行调节。在脱附模式下,蒸汽发生模块30向净化模块20输送热蒸汽(大于或等于80摄氏度),能够使净化模块20将污染物脱附下来。当需要将室内循环风或者新风进行加热时,可通过蒸汽发生模块30对蒸汽温度进行调节,使输出的热蒸汽的温度小于80摄氏度,此时热蒸汽便不会使净化模块20产生脱附作用,同时也能够满足用户吹热风的需求。其中,蒸汽发生模块30实现蒸汽温度调节的方式有多种,例如可在蒸汽发生模块30的蒸汽输出口处设置温度调节件(包括加热件和冷却件),从而实现对蒸汽输出口处的温度进行加热或冷却,同时还可以在蒸汽输出口处设置温度传感器,温度传感器与温度调节件电性连接,通过温度传感器对蒸汽温度进行实时检测,当蒸汽温度达到预设温度时,温度调节件停止工作。
进一步地,所述安装腔12还具有与所述风道11连通的第二导流口122,所述第二导流口122位于所述净化模块20的出风侧下游并朝向所述加湿模块50的进风侧;所述空气处理装置100还包括可开合地设于所述第二导流口122处的加湿切换门60;所述排风切换门40还具有第三位置,在所述第三位置,所述新风进风通道13及所述第一导流口121均与所述风道11隔断。
具体地,加湿切换门60与壳体10活动连接,通过加湿切换门60打开或者关闭第二导流口122。其中,加湿切换门60与壳体10之间的活动连接方式包括但不限于滑动连接、转动连接等。在通常情况下(例如脱附模式或者新风模式),加湿切换门60关闭第二导流口122,蒸汽发生模块30产生的热蒸汽只能从第一导流口121流出并吹向净化模块20。如图8所示,在蒸汽加湿模式时,排风切换门40处于第三位置,新风进风通道13及第一导流口121均与风道11隔断,加湿切换门60将第二导流口122打开,此时,蒸汽发生模块30产生的热蒸汽经由第二导流口122直接输送至加湿模块50,并最终经由吸风风道71送向室内,在此模式下,热蒸汽可绕过净化模块20,从而能够避免净化模块20发生脱附而导致污染物进入室内。
进一步地,所述加湿模块50包括水槽,设于所述水槽内的加湿膜组件,以及用于向所述水槽供水的水箱51,所述壳体10设有供所述水箱51抽出的抽出口。具体地,通过水箱51向水槽内注入水,加湿膜组件包括支架及设于支架上的吸附膜,吸附膜能够吸附水槽内的水,当空气通过吸附膜时能够将水汽一并带出并吹向室内,从而实现加湿功能。通过在壳体10设置抽出口,当水箱51内缺水时,用户可从抽出口处将水箱51抽出,以便于向水箱51内补水。可选地,水箱51内还设有液位报警器,当水箱51内缺水时,液位报警器发出报警信号,以提示用户及时向水箱51内补水。
请结合图1、图2和图5,在上述实施例的基础上,进一步地,所述空气处理装置100还包括设于所述壳体10上的风道部件70,所述风道部件70设有吸风风道71,所述壳体10还设有进风口14和出风口15,所述进风口14、所述风道11、所述吸风风道71和所述出风口15依次连通,所述空气处理装置100还包括进风开关门80及出风开关门90,所述进风开关门80可开合地设于所述进风口14处,所述出风开关门90可开合地设于所述出风口15处,所述壳体10还设有用于将所述吸风风道71的出风端与室外环境相连通的排风通道16。
具体地,风道部件70包括风道壳及设于风道壳内的风机,风机具体可采用涡轮风机,风道壳内形成吸风风道71,吸风风道71的进风侧与风道11的出风侧对接并连通,吸风风道71的出风侧与出风口15相对应。空气可经由进风口14进入到风道11,经由风道11的净化模块20净化,净化后的空气在风机的作用下被吸入吸风风道71,最终从出风口15输送至室内。另外,通过设置排风通道16,在脱附模式下,高温蒸汽进入风道11内与净化模块20作用,净化模块20将污染物脱附下来,脱附的污染物在风机部件的作用下进入吸风风道71,再经由吸风风道71进入排风通道16,最终可通过排风通道16将污染物排向室外。
进一步地,如图5所示,所述壳体10设有新风管17,所述新风管17内形成新风进风通道13,所述新风管17的一端与所述排风通道16的出风端相连通,所述新风管17的另一端用于与室外环境相连通,所述新风管17的侧部设有将所述新风进风通道13与所述风道11连通的连通口。在排风模式下,蒸汽发生模块30产生的热蒸汽能够依次经过风道11、吸风风道71、排风通道16,最后经过新风管17排出室外,从而能够起到对风道11、吸风风道71及排风通道16内部的净化杀菌作用,同时还能够对新风管17内部进行净化杀菌,为用户提供更加洁净的使用环境。
上述实施例的空气处理装置100在使用时,可根据不同的功能模式选择将进风开关门80、出风开关门90、排风切换门40及加湿切换门60切换至不同位置,从而实现不同的功能模式。以下结合图2至图8对本实施例的空气处理装置100的几种功能模式进行详细说明。为了便于理解,图中对空气处理装置100的上、下、左、右、前、后方位进行了标识,但这并不构成对空气处理装置100的具体限定。图2至图8中的加粗箭头为气流的流动方向。
如图2和图3所示,展示了空气处理装置100处于净化模式的气流走向示意图,当空气处理装置100处于净化模式时,进风开关门80打开进风口14,出风开关门90打开出风口15。室内空气经由进风口14进入风道11,通过净化模块20可将空气中的污染物(如苯,醛等大分子颗粒)进行吸附,净化后的空气进入吸风风道71,并在风机的作用下送至出风口15吹向室内,实现空气净化功能。
如图4和图5所示,展示了空气处理装置100处于脱附模式的气流走向示意图,当空气处理装置100处于脱附模式时,排风切换门40切换至第二位置,此时新风进风通道13与风道11隔断,同时第一导流口121与风道11连通,出风开关门90关闭出风口15。蒸汽发生模块30开始工作,蒸汽发生模块30送出的高温蒸汽能够经由第一导流口121进入净化模块20,净化模块20的再生催化剂受到热催化之后,开始将上一阶段吸附在过滤主体上的污染物脱附下来,经过吸风风道71进入排风通道16,最终由排风通道16排至室外,实现净化模块20的净化再生功能,并且污染物被排放至室外,可避免室内空气的二次污染。如图5所示,可选地,排风通道16与新风管17相连通,污染物经由排风通道16进入新风管17后排出至室外。如此,通过设置一根新风管17,便可实现进新风及排风功能,高温蒸汽通过新风管17时还能对新风管17进行杀菌消毒。
如图6和图7所示,展示了空气处理装置100处于新风模式的气流走向示意图,当空气处理装置100处于新风模式时,进风开关门80关闭进风口14,出风开关门90打开出风口15,排风切换门40切换至第一位置以将新风进风通道13与风道11相连通。室外的新鲜空气经由新风进风通道13进入到风道11,通过净化模块20进行净化吸附,再进入吸风风道71,在风机的作用下送至出风口15吹向室内,以为用户提供干净舒适的新风。另外,在寒冷的冬季,可将蒸汽发生模块30打开,蒸汽发生模块30产生的热蒸汽经由第一导流口121流出并与新风进风通道13内的新风混合后再依次进入风道11及吸风风道71,最后由出风口15送出,可为用户提供干净温暖舒适的净化风,从而能够有效避免冬季新风温度与室内温度差距大的问题。
如图8所示,展示了空气处理装置100处于蒸汽加湿模式的气流走向示意图,当空气处理装置100处于蒸汽加湿模式时,排风切换门40切换至第三位置,新风进风通道13及第一导流口121均与风道11隔断,加湿切换门60将第二导流口122打开,此时,蒸汽发生模块30产生的热蒸汽经由第二导流口122直接输送至加湿模块50,并最终经由吸风风道71送向室内,在此模式下,热蒸汽可绕过净化模块20,从而能够避免净化模块20发生脱附而导致污染物进入室内。
本申请还提出一种空调室内机,该空调室内机包括主机体和安装于主机体上的空气处理装置100,该空气处理装置100的具体结构参照上述实施例,由于本空调室内机采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。其中,该空调室内机可采用壁挂式空调室内机或者柜式空调室内机。
本申请还提出一种空调器,该空调器包括空调室外机及空调室内机,所述空调室外机通过冷媒管道与所述空调室内机相连通。该空调室内机包括主机体和安装于主机体上的空气处理装置100,该空气处理装置100的具体结构参照上述实施例,由于本空调室内机采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的发明构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (12)

  1. 一种空气处理装置,其中,包括:
    壳体,设有风道;
    净化模块,设于所述风道,用于吸附污染物并能够在热蒸汽作用下将所述污染物进行脱附;以及
    蒸汽发生模块,用于向所述净化模块输送热蒸汽。
  2. 如权利要求1所述的空气处理装置,其中,所述壳体还设有独立于所述风道外的安装腔,所述蒸汽发生模块设于所述安装腔内,所述安装腔具有与所述风道连通的第一导流口,所述第一导流口用于将所述蒸汽发生模块产生的蒸汽导向所述净化模块的进风侧。
  3. 如权利要求2所述的空气处理装置,其中,所述壳体还设有新风进风通道,所述新风进风通道用于将室外环境与所述风道的进风端相连通。
  4. 如权利要求3所述的空气处理装置,其中,还包括可活动地安装于所述壳体的排风切换门,所述排风切换门具有第一位置和第二位置,在所述第一位置,所述新风进风通道及所述第一导流口均与所述风道连通;在所述第二位置,所述新风进风通道与所述风道隔断且所述第一导流口与所述风道连通。
  5. 如权利要求4所述的空气处理装置,其中,还包括设于所述风道内的加湿模块,所述加湿模块位于所述净化模块的下游。
  6. 如权利要求5所述的空气处理装置,其中,所述安装腔还具有与所述风道连通的第二导流口,所述第二导流口位于所述净化模块的出风侧下游并朝向所述加湿模块的进风侧;所述空气处理装置还包括可开合地设于所述第二导流口处的加湿切换门;所述排风切换门还具有第三位置,在所述第三位置,所述新风进风通道及所述第一导流口均与所述风道隔断。
  7. 如权利要求5所述的空气处理装置,其中,所述加湿模块包括水槽、设于所述水槽内加湿膜组件,以及用于向所述水槽供水的水箱,所述壳体设有供所述水箱抽出的抽出口。
  8. 如权利要求1所述的空气处理装置,其中,所述蒸汽发生模块包括温度调节件,所述温度调节件用于对所述蒸汽发生模块输出的蒸汽温度进行调节。
  9. 如权利要求1至8任意一项所述的空气处理装置,其中,还包括设于所述壳体上的风道部件,所述风道部件设有吸风风道,所述壳体还设有进风口和出风口,所述进风口、所述风道、所述吸风风道和所述出风口依次连通,所述空气处理装置还包括进风开关门及出风开关门,所述进风开关门可开合地设于所述进风口处,所述出风开关门可开合地设于所述出风口处,所述壳体还设有用于将所述吸风风道的出风端与室外环境相连通的排风通道。
  10. 如权利要求9所述的空气处理装置,其中,所述壳体设有新风管,所述新风管内形成新风进风通道,所述新风管的一端与所述排风通道的出风端相连通,所述新风管的另一端用于与室外环境相连通,所述新风管的侧部设有将所述新风进风通道与所述风道连通的连通口。
  11. 一种空调室内机,其中,包括如权利要求1至10任意一项所述的空气处理装置。
  12. 一种空调器,其中,包括空调室外机及如权利要求11所述的空调室内机,所述空调室外机通过冷媒管道与所述空调室内机相连通。
PCT/CN2022/107416 2022-01-10 2022-07-22 空气处理装置、空调室内机和空调器 WO2023130712A1 (zh)

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JP2003070892A (ja) * 2001-09-06 2003-03-11 Matsushita Electric Ind Co Ltd 空気浄化装置
JP2004351312A (ja) * 2003-05-29 2004-12-16 Shinryo Corp 活性炭を再生する方法と装置及びそれを組み込んだ空気浄化システム
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