WO2022252489A1 - 空调室内机 - Google Patents

空调室内机 Download PDF

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Publication number
WO2022252489A1
WO2022252489A1 PCT/CN2021/127462 CN2021127462W WO2022252489A1 WO 2022252489 A1 WO2022252489 A1 WO 2022252489A1 CN 2021127462 W CN2021127462 W CN 2021127462W WO 2022252489 A1 WO2022252489 A1 WO 2022252489A1
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WO
WIPO (PCT)
Prior art keywords
filter screen
air
indoor unit
processing chamber
processing
Prior art date
Application number
PCT/CN2021/127462
Other languages
English (en)
French (fr)
Inventor
黄博义
曾德森
张杰乾
张帆
李宝华
郑辉
Original Assignee
芜湖美智空调设备有限公司
广东美的制冷设备有限公司
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 CN202121204474.XU external-priority patent/CN215260169U/zh
Priority claimed from CN202110602613.2A external-priority patent/CN115479318A/zh
Application filed by 芜湖美智空调设备有限公司, 广东美的制冷设备有限公司 filed Critical 芜湖美智空调设备有限公司
Publication of WO2022252489A1 publication Critical patent/WO2022252489A1/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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/28Arrangement or mounting of filters
    • 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 field of air conditioners, in particular to an air conditioner indoor unit.
  • the existing air-conditioning indoor unit is provided with a filter screen, which is set corresponding to the air inlet of the air-conditioning indoor unit, and the installation position of the filter screen is fixed.
  • a filter screen which is set corresponding to the air inlet of the air-conditioning indoor unit, and the installation position of the filter screen is fixed.
  • the filter screen The adsorption capacity gradually decreases, and the air resistance of the filter screen gradually increases.
  • the air conditioner is cooling or heating, the air output of the air conditioner is small, which affects the performance of the air conditioner.
  • the existing air conditioner indoor unit cannot Automatically clean the adsorbent on the filter, but users need to manually remove the adsorbate on the filter, which is likely to cause complaints from users.
  • the application aims to solve at least one of the technical problems existing in the prior art. For this reason, the application proposes an air-conditioning indoor unit, which can ensure the air output of the air conditioner, and can also automatically clean up the adsorbed matter on the filter.
  • the air conditioner indoor unit includes: a casing, the casing is provided with an air inlet, and a processing chamber is arranged in the casing; a filter screen support, the filter screen support is arranged in the casing and connected with The air inlet is arranged oppositely, and a sliding space is defined between the filter screen bracket and the casing; the filter screen, at least a part of the filter screen is located in the sliding space and is slidable relative to the filter screen bracket
  • a processing module is arranged in the processing chamber, the processing module includes a driving member, a rotating wheel and a processing member, the driving member is connected with the rotating wheel to drive the rotating wheel to rotate, the One end of the filter is connected to the rotating wheel, and when the rotating wheel rotates, at least a part of the filter in the sliding space is recovered into the processing chamber or the filter in the processing chamber is transported to the sliding In the space, the treatment element is configured to treat the adsorbate on the filter to purify the filter.
  • the air output of the air conditioner can be guaranteed, the performance of the air conditioner can be guaranteed, and the adsorbate on the filter screen can also be automatically cleaned.
  • the air conditioner indoor unit further includes auxiliary wheels, the auxiliary wheels are rotatably arranged in the processing chamber, the filter screen is matched with the auxiliary wheels, and the auxiliary wheels are matched with the auxiliary wheels.
  • the rotating wheels rotate in the same direction.
  • the driving members are connected with the auxiliary wheels to drive the auxiliary wheels to rotate.
  • the air-conditioning indoor unit further includes: a reset shaft, the reset shaft is rotatably provided in the casing; a pull cord, one end of the pull cord is connected to the reset shaft, The other end of the pull cord is connected to the other end of the filter screen; a reset driver, the reset drive is connected to the reset shaft to drive the reset shaft to rotate so that the pull cord is wound and pulled The filter screen is slid to face the air inlet.
  • the casing includes a main support, the air inlet is arranged on the main support, the filter screen support is arranged inside the main support, and the filter screen support is connected to the main support.
  • the bracket cooperates to define the sliding space on both sides of the filter screen support, and the filter screen is configured such that a part is located in one of the sliding spaces, and the other part is located in the processing chamber.
  • the processing element is a heating element for heating the filter screen, and the filter screen is configured such that when heated, mesh openings increase to remove the adsorbate.
  • the processing element is a carbon radiation heating tube provided on one side of the rotating wheel.
  • the processing element is arranged in the rotating wheel.
  • the casing is provided with a discharge pipe communicating with the processing chamber, and the air-conditioning indoor unit further includes a processing fan, and the processing fan operates to discharge the The adsorbate is discharged through the discharge pipe.
  • the processing unit includes: a light source, the light source is disposed in the processing chamber; a catalytic module, the catalytic module is disposed in the processing chamber, and the light source is turned on to photocatalyze the catalytic module Decompose the adsorbate.
  • the air-conditioning indoor unit further includes a disturbance member configured to disturb the air flow in the processing chamber.
  • the air-conditioning indoor unit further includes a detection device for detecting the gas concentration in the processing chamber, and when the detection result of the detection device is lower than the set concentration, the rotating member is controlled to rotate to transport the filter in the processing chamber to the sliding space.
  • a plurality of slideways arranged at intervals are arranged in the processing chamber, and the plurality of slideways are arranged at intervals in a sliding direction parallel to the sliding space, and the filter screen and the plurality of slideways are arranged at intervals.
  • the slides are a sliding fit.
  • the processing member is disposed in a space between adjacent slideways.
  • FIG. 1 is a schematic diagram of an air conditioner indoor unit according to an embodiment of the present application
  • Fig. 2 is an exploded view of an air conditioner indoor unit according to an embodiment of the present application
  • Fig. 3 is a cross-sectional view of the filter screen of the air conditioner indoor unit retracted into the processing chamber according to the embodiment of the present application;
  • Fig. 4 is a cross-sectional view of the filter screen of the air conditioner indoor unit opposite to the air inlet according to the embodiment of the present application;
  • Fig. 5 is a schematic diagram of an air-conditioning indoor unit according to an embodiment of the present application, in which the processing parts are arranged on the rotating wheel and the auxiliary wheel;
  • Fig. 6 is a schematic diagram showing that the processing part of the indoor unit of the air conditioner is set as a carbon radiation heating tube according to an embodiment of the present application;
  • Fig. 7 is a schematic diagram of a driving member and a rotating wheel of an air conditioner indoor unit driven by a belt according to an embodiment of the present application;
  • Fig. 8 is a schematic diagram of driving parts provided with both the rotating wheel and the auxiliary wheel of the air conditioner indoor unit according to the embodiment of the present application;
  • Fig. 9 is a schematic diagram of a main bracket of an air conditioner indoor unit according to an embodiment of the present application.
  • Fig. 10 is a partial structural schematic diagram of the main bracket of the air conditioner indoor unit according to the embodiment of the present application.
  • Fig. 11 is a schematic diagram of the assembly of the main bracket and the filter screen bracket of the air conditioner indoor unit according to the embodiment of the present application;
  • Fig. 12 is a schematic diagram of cooperation between the main bracket and the filter screen of the air conditioner indoor unit according to the embodiment of the present application;
  • Fig. 13 is a schematic diagram of the filter screen of the air conditioner indoor unit located in the sliding space in the main bracket according to the embodiment of the present application;
  • Fig. 14 is a schematic diagram of another partial structure of the main bracket of the air conditioner indoor unit according to the embodiment of the present application.
  • connection should be understood in a broad sense, for example, it can be a fixed connection or a detachable connection. Connected, or integrally connected; it may be mechanically connected or electrically connected; it may be directly connected or indirectly connected through an intermediary, and it may be the internal communication of two components. Those of ordinary skill in the art can understand the specific meanings of the above terms in this application in specific situations.
  • the air conditioner indoor unit 100 according to the embodiment of the present application will be described below with reference to FIGS. 1-14 .
  • the air conditioner indoor unit 100 is a structure of an air conditioner.
  • the indoor unit 100 blows hot air toward the room.
  • an air conditioner indoor unit 100 includes: a casing 10 , a filter screen 20 and a processing module 40 .
  • An air inlet 11 is arranged on the casing 10, and a processing chamber 12 is arranged inside the casing 10.
  • the casing 10 may include a first casing 15 and a second casing 16, and an air-conditioning core 80 is arranged inside the air-conditioning indoor unit 100.
  • the air-conditioning core 80 includes a fan and a cross-flow wind wheel
  • the first casing 15 and the air-conditioning core 80 are both arranged in the second casing 16
  • the second casing 16 is configured as a surface frame of the air-conditioning indoor unit 100
  • the first casing 15 A processing chamber 12 can be defined
  • the first housing 15 can be provided with a first air inlet 17.
  • the length direction of the air conditioner indoor unit 100 that is, the left and right directions in FIG.
  • the partial structure of the first housing 15 is arranged on the upper side of the air conditioner core 80, the second housing 16 is provided with a second air inlet 18 and an air outlet 19, and the second air inlet 18 is correspondingly arranged and communicated with the first air inlet 17 , the first air inlet 17 constitutes the air inlet 11 on the casing 10 .
  • the air-conditioning core 80 of the air-conditioning indoor unit 100 When the air-conditioning core 80 of the air-conditioning indoor unit 100 is working, the indoor air flows through the second air inlet 18 and the first air inlet 17 into the air-conditioning indoor unit 100 in sequence. The air is blown into the room from the air outlet 19 , and the air outlet 19 may be arranged at the lower end of the second casing 16 .
  • the first housing 15 can be fixedly installed on the air conditioner core 80 through screws or buckles.
  • the filter screen support is arranged in the casing 10, and the filter screen support is arranged facing the air inlet 11, and a sliding space 31 is defined between the casing 10 and the filter screen support. Further, the filter screen support is arranged on the first casing 15 Inside, a sliding space 31 is defined between the first casing 10 and the filter screen support, and the sliding space 31 communicates with the processing chamber 12 .
  • the processing module 40 is arranged in the processing chamber 12, that is, the processing module 40 is arranged in the processing chamber 12, and the processing module 40 includes a processing part 43, a rotating wheel 42 and a driving part 41, and the rotating wheel 42 is connected with the driving part 41, and the driving part 41 can drive the rotating wheel 42 to rotate, and one end of the filter screen 20 is connected to the rotating wheel 42.
  • the driving member 41 drives the rotating wheel 42 to rotate
  • at least a part of the filter screen 20 in the sliding space 31 can be recovered under the drive of the rotating wheel 42 into the processing chamber 12, or when the rotating wheel 42 rotates, the filter screen 20 in the processing chamber 12 is transported to the sliding space 31 under the drive of the rotating wheel 42, and the processing part 43 is configured to process the adsorbent on the filter screen 20 , the processing part 43 can purify the filter screen 20 after processing the adsorbate on the filter screen 20, so that the filter screen 20 is clean.
  • the filter screen 20 when the filter screen 20 is located in the sliding space 31, the indoor air flows through the filter screen 20 from the air inlet 11 and then enters the air conditioner indoor unit 100.
  • the filter screen 20 has a filtering effect on the gas, and the gas is filtered through the filter screen 20, which can prevent particles, etc.
  • the object flows into the air conditioner indoor unit 100 .
  • the adsorbate can be particles, benzene, aldehyde, cotton and other objects
  • the driving member 41 drives the rotating wheel 42 to rotate, and the rotating wheel 42 drives the filter screen 20 to move so that the filter screen 20 can be recovered to the processing chamber 12, the processing part 43 processes the adsorbate on the filter screen 20, under the action of the processing part 43, the adsorbate and the filter screen 20 can be separated, the filter screen 20 can be made clean, and the effect of purifying the filter screen 20 can be achieved.
  • the driving member 41 drives the rotating wheel 42 to rotate, so that the filter screen 20 in the processing chamber 12 is transported to the sliding space 31.
  • the air resistance of the filter screen 20 is small, can ensure the air intake of the air conditioner indoor unit 100 , thus can ensure the air output of the air conditioner indoor unit 100 , and then can ensure the performance of the air conditioner indoor unit 100 .
  • the air conditioner indoor unit 100 needs a higher air intake at this time, and the driving part 41 drives the rotating wheel 42 to rotate to collect the filter screen 20 in the processing chamber 12.
  • the driving part 41 drives the rotating wheel 42 to rotate to collect the filter screen 20 in the processing chamber 12.
  • the rotation direction of the rotating wheel 42 is opposite to that of retrieving the filter screen 20 into the processing chamber 12, for example: the filter screen 20
  • the rotating wheel 42 rotates counterclockwise when it is recovered into the processing chamber 12 , and rotates clockwise when the filter screen 20 in the processing chamber 12 is transported into the sliding space 31 .
  • the driving member 41 drives the rotating wheel 42 to rotate, so that the filter screen 20 in the processing chamber 12 is transported into the sliding space 31, so that the filter screen 20 corresponds to the position of the air inlet 11, preferably , the filter screen 20 covers the entire air inlet 11, and under the action of the cross-flow fan wheel, a negative pressure is formed in the air conditioner indoor unit 100 to circulate the indoor air, and the gas is purified by the filter screen 20.
  • particulate matter, benzene, aldehyde, etc. Adsorbed on the filter screen 20.
  • the filter screen 20 in the processing chamber 12 is transported into the sliding space 31 under the drive of the rotating wheel 42, and this At this time, the air inlet 11 of the air conditioner is not blocked by the filter screen 20, which can realize the operation without wind resistance.
  • the air output of the air conditioner can be guaranteed, the performance of the air conditioner can be guaranteed, and the adsorbate on the filter screen 20 can also be automatically cleaned, so that the filter The net 20 is reused.
  • the air conditioner indoor unit 100 may further include: auxiliary wheels 50 , the auxiliary wheels 50 are arranged in the processing chamber 12 , and the auxiliary wheels 50 are rotatable in the processing chamber 12 ,
  • the filter screen 20 cooperates with the auxiliary wheel 50, and the rotating wheel 42 and the auxiliary wheel 50 rotate in the same direction.
  • the auxiliary wheels 50 can support the filter screen 20.
  • the auxiliary wheels 50 support the filter screen 20, which can prevent the structure of the filter screen 20 from stacking together, and can make the filter screen 20 smoothly Moving from the sliding space 31 to the processing cavity 12 can also make the filter screen 20 smoothly move from the processing cavity 12 to the sliding space 31 .
  • the driving member 41 can be arranged between the rotating wheel 42 and the auxiliary wheel 50, and the driving member 41 and the rotating wheel 42 can be connected by a belt 90, and the driving member 41 can be connected by a belt. 90 drives the rotating wheel 42 to rotate clockwise or counterclockwise.
  • multiple driving parts 41 can be provided, for example: two driving parts 41 are provided, and one driving part 41 of the two driving parts 41 is connected to the auxiliary wheel 50 , the driving member 41 can drive the auxiliary wheel 50 to rotate, and one of the driving members 41 is connected to the rotating wheel 42, and the auxiliary wheel 50 and the rotating wheel 42 are simultaneously driven by the two driving members 41 to rotate, which can ensure that the filter screen 20 Being able to move from the sliding space 31 to the processing chamber 12 can also ensure that the filter screen 20 can move from the processing chamber 12 to the sliding space 31 , thereby ensuring the working reliability of the air conditioner indoor unit 100 .
  • the air conditioner indoor unit 100 may further include: a reset shaft 60 , a pull cord and a reset driver.
  • the reset rotating shaft 60 can be arranged in the casing 10 , and the reset rotating shaft 60 can rotate in the casing 10 . Further, the reset rotating shaft 60 is arranged in the sliding space 31 in the first casing 15 .
  • One end of the stay rope is connected with the reset rotating shaft 60 , and the other end of the stay rope is connected with the other end of the filter screen 20 .
  • the reset rotating shaft 60 is connected with the reset driving part, and the reset driving part can drive the reset rotating shaft 60 to rotate.
  • the pull rope When the reset rotating shaft 60 rotates, the pull rope can be wound around the reset rotating shaft 60, and the pull rope pulls the filter screen 20 to slide to face the air inlet 11. s position.
  • the reset driver can be set as a motor
  • the pull cord can be made of a coilable material, for example: the pull cord is set as a steel wire, and the reset rotating shaft 60 can be set at the end of the sliding space 31 away from the processing chamber 12.
  • the reset driving part drives the reset rotating shaft 60 to rotate, for example: the reset rotating shaft 60 is driven to rotate clockwise, and the filter screen 20 is driven to the sliding space by the pull rope during the rotating process of the reset rotating shaft 60 31, so that the filter screen 20 moves to the position corresponding to the air inlet 11, so that the filter screen 20 is sent back to the position corresponding to the air inlet 11 more smoothly.
  • the casing 10 may include: a main bracket 13 (that is, the above-mentioned first housing 15 ), and the main bracket 13 may be provided with There is a motor fixing structure, the reset driver can be arranged on the motor fixing structure, the air inlet 11 can be arranged on the main bracket 13, and a filter screen bracket can be arranged in the main bracket 13, and the filter screen bracket and the main bracket 13 cooperate to define a position in the filter screen.
  • the sliding spaces 31 on both sides of the net support, the filter screen 20 is configured such that a part of the structure is located in one of the sliding spaces 31 , and the other part of the structure of the filter screen 20 is located in the processing chamber 12 .
  • the first sliding space 32 can be defined between the upper surface of the filter screen support and the main support 13
  • the second sliding space 33 can be defined between the lower surface of the filter screen support and the main support 13
  • a part of the structure of the filter screen 20 Can be arranged in the first sliding space 32 and/or the second sliding space 33
  • another part of the structure of the filter screen 20 can be arranged in the processing chamber 12
  • the filter screen bracket can play a supporting role for the filter screen 20, preventing the filter screen 20 from Bending and deformation occur in the sliding space 31 due to the influence of its own gravity, thereby preventing the filter screen 20 from being stuck in the sliding space 31 , thereby ensuring that the filter screen 20 can move in the sliding space 31 and the processing chamber 12 .
  • the driving member 41 can be set as a stepping motor, and the rotating wheel 42 can be set as a gear, and the rotating wheel 42 is engaged with the side edge of the filter screen 20 for transmission, wherein , the stepper motor controls the rotation of the rotating wheel 42 through the gear set 191.
  • the filter screen 20 entering the first sliding space 32 begins to filter and absorb, and at the same time, during the movement of the filter screen 20, the filter screen 20 in the second sliding space 33 moves from the second sliding space 33 to the processing chamber 12, and the processing The processing part 43 in the chamber 12 desorbs the filter screen 20 in the processing chamber 12.
  • the filter screen 20 in the first sliding space 32 absorbs and filters the air-conditioning indoor unit Gas within 100.
  • the filter screen 20 in the first sliding space 32 enters the processing chamber 12, and the processing member 43 in the processing chamber 12 removes the filter screen 20 in the processing chamber 12. Attach processing, and the filter screen 20 in the processing chamber 12 moves into the second sliding space 33, as shown in FIG. 9, the filter screen 20 in the second sliding space 33 starts to filter and absorb.
  • the filter screen 20 can be set as an annular structure, and at this time, the first sliding space 32, the second sliding space 33 and the processing chamber 12 are simultaneously provided with a filter screen 20, and the filter screen 20 is in the air-conditioning room
  • the inside of the air conditioner 100 can circulate.
  • the driving member 41 drives the rotating wheel 42 to rotate, and the filter screen 20 can move between the first sliding space 32, the second sliding space 33 and the processing chamber 12.
  • the processing member 43 in the processing chamber 12 desorbs the filter screen 20 in the processing chamber 12, the filter screen 20 located in the first sliding space 32 and the second sliding space 33 can perform filtration and adsorption.
  • the processing element 43 can be set as a heating element 44, and the heating element 44 is used to heat the filter screen 20, and the filter screen 20 is configured to be heated , the mesh of the filter screen 20 is enlarged so that the adsorbate on the filter screen 20 falls off from the filter screen 20 .
  • the heating element 44 can be set as a PTC heater. When the filter screen 20 moves into the processing chamber 12 and the heating element 44 starts to work, the heating element 44 can heat the filter screen 20 to make the filter screen 20 warm up to 80°C-100°C. The mesh size of the filter screen 20 is enlarged, so that the adsorbed substances on the filter screen 20 fall into the processing chamber 12 to achieve the effect of purifying the filter screen 20 .
  • the processing part 43 can also be set as a carbon radiation heating tube 45, and the carbon radiation heating tube 45 can be set on one side of the rotating wheel 42, for example: carbon radiation heating
  • the tube 45 is arranged on the left side of the rotating wheel 42 in FIG.
  • the rapid heating of the filter screen 20 in 12 can also make the filter screen 20 evenly heated, which can ensure that the adsorbate on the filter screen 20 falls into the processing chamber 12, thereby improving the working reliability of the processing part 43.
  • the processing member 43 can be arranged in the rotating wheel 42. Further, the processing member 43 can also be arranged in the auxiliary wheel 50. It should be noted that the rotating wheel 42 and The auxiliary wheel 50 is close to the filter screen 20. When the turning wheel 42 and the auxiliary wheel 50 are provided with the processing element 43, for example: when the turning wheel 42 and the auxiliary wheel 50 are equipped with the heating element 44, the heating element 44 can be faster.
  • Heating the filter screen 20 can improve the heating efficiency of the heating element 44, and can make the filter screen 20 heat up quickly, so that the adsorbate can be quickly dropped off, thereby saving the processing and purification time of the processing part 43 on the filter screen 20, and reducing the work of the processing part 43 time and save energy.
  • a discharge pipe 70 may be provided on the casing 10, and the discharge pipe 70 communicates with the processing chamber 12, and further, the first housing 15 is provided with a discharge pipe 70, one end of the discharge pipe 70 communicates with the processing chamber 12, and the other end of the discharge pipe 70 can communicate with the outdoor environment after passing through the second housing 16, but the application is not limited thereto, and the other end of the discharge pipe 70 can also be connected to the storage
  • the object box is communicated, and the application illustrates that the other end of the discharge pipe 70 is communicated with the outdoor environment.
  • the air conditioner indoor unit 100 may further include: a processing fan 71 , which can discharge the adsorbate in the processing chamber 12 through the discharge pipe 70 when the processing fan 71 is running.
  • the processing fan 71 can be set as a centrifugal fan. In the length direction of the air-conditioning indoor unit 100, that is, the left-right direction in FIG. 12.
  • the adsorbate in the processing chamber 12 can be discharged to the outdoor environment through the discharge pipe 70 through the action of negative pressure, so as to avoid pollutants (that is, adsorbate) remaining inside the air conditioner indoor unit 100 and causing secondary pollution. pollution, and when the treatment fan 71 is working, it can also discharge the carbon dioxide in the indoor environment to the outside, which can reduce the concentration of carbon dioxide in the indoor environment, thereby improving user comfort.
  • the processing unit 43 may include: a light source 46 and a catalytic module 47, the light source 46 and the catalytic module 47 may be arranged in multiples, and the catalytic module 47 is arranged in the processing chamber 12 , the light source 46 is turned on and the photocatalytic module 47 decomposes the adsorbate in the processing chamber 12 .
  • the catalytic light source 46 is turned on, and the photocatalytic catalytic module 47 decomposes the VOC (Volatile Organic Compounds-volatile organic substances) adsorbed on the filter screen 20, so that the adsorbate is removed from the filter screen. desorption on the net 20 to achieve the effect of purifying the filter screen 20.
  • VOC Volatile Organic Compounds-volatile organic substances
  • the air conditioner indoor unit 100 may further include: a disturbance member 48, which may be set as a fan, and the disturbance member 48 is configured to disturb the air in the processing chamber 12 flow.
  • a disturbance member 48 which may be set as a fan
  • the disturbance member 48 is configured to disturb the air in the processing chamber 12 flow.
  • the air conditioner indoor unit 100 may also include: a detection device 49, which may be a detection sensor, and the detection device 49 is used to detect the gas concentration in the processing chamber 12, and the detection result of the detection device 49 is lower than
  • the rotating member is controlled to rotate, so that the filter screen 20 in the processing chamber 12 can be transported into the sliding space 31 .
  • the disturbance member 48 is started to work, and the fan generates a weak air flow to flow in the processing chamber 12, so that the gas in the processing chamber 12 is more uniform.
  • the detection device 49 Real-time detection of the VOC concentration in the processing chamber 12, until the VOC concentration in the processing chamber 12 is lower than 0.6mg/m3, it means that the adsorbate on the filter screen 20 is completely treated, and the filter screen 20 can move to the air inlet 11 for filtering.
  • a slideway 14 may be provided in the processing chamber 12, and a plurality of slideways 14 may be provided, and the plurality of slideways 14 are arranged at intervals.
  • the filter screen 20 is slidably matched with the plurality of slideways 14 .
  • the slideway 14 can play a guiding role for the filter screen 20 , and can make the filter screen 20 move smoothly between the processing chamber 12 and the sliding space 31 .
  • a plurality of slideways 14 are sequentially connected to form one slideway 14 , such arrangement can simplify the setting process of the slideway 14 and improve the production efficiency of the air conditioner indoor unit 100 .
  • the filter screen 20 is arranged in the slideway 14, and the side surface of the slideway 14 opposite to the filter screen 20 can be provided with guide wheels, the guide wheels can rotate, and the guide wheels can support and guide the filter screen 20,
  • the filter screen 20 moves between the processing chamber 12 and the sliding space 31, under the action of the guide wheels, the friction between the slideway 14 and the filter screen 20 can be reduced, so that the filter screen 20 can be moved more smoothly in the processing chamber 12. And move between sliding space 31.
  • a processing part 43 may be arranged in the interval space between adjacent slideways 14, so that the processing part 43 may The layout position of the filter is reasonable, which can improve the purification effect of the filter screen 20, so that the adsorbate on the filter screen 20 can be separated from the filter screen 20 quickly.
  • an air guide plate may be provided at the air outlet 19, and the air guide plate may be rotatably arranged at the air outlet 19.
  • the air conditioner may be controlled.
  • the air outlet direction of the indoor unit 100 can realize the requirement of blowing air to different positions.
  • the air-conditioning indoor unit 100 may be provided with a driving device, the driving device may be configured as a driving motor, and the driving device may drive the wind deflector to rotate to change the blowing direction of the air-conditioning indoor unit 100 .
  • the driving device can be connected in communication with the controller of the air conditioner.
  • the controller of the air conditioner controls the drive device to drive the wind deflector to rotate, so as to change the blowing direction of the air conditioner indoor unit 100. the goal of.
  • the air conditioner indoor unit 100 can be hung on the indoor wall, the air conditioner indoor unit 100 can also include a hanging board, the air conditioner core 80 can be installed on the hanging board, and the casing 10 can also be installed on the hanging board , hanging board and indoor wall.
  • the air-conditioning core 80 and the hanging plate may be clamped, but the application is not limited thereto, and the air-conditioning core 80 and the hanging plate may also be connected by bolts.
  • the casing 10 and the hanging plate may be snap-connected, but the present application is not limited thereto, and the casing 10 and the hanging plate may also be connected by bolts.
  • Such arrangement can reliably connect the air-conditioning core 80 and the hanging board, and the casing 10 and the hanging board together, avoid shaking of the air-conditioning indoor unit 100 , and thereby improve the positional stability of the air-conditioning indoor unit 100 .
  • the hanging plate can be provided with mounting holes, which can be connected with the wall through fasteners passing through the mounting holes, the fasteners can be provided with bolts, and the wall can also be provided with mounting holes, and the mounting holes on the wall can be Nuts are provided, and the bolts pass through the mounting holes on the hanging plate and are threadedly connected with the nuts in the mounting holes on the wall, so that the hanging plate can be firmly installed on the wall, thereby preventing the air conditioner indoor unit 100 from falling.
  • a first positioning structure may be provided on the hanging board, and a second positioning structure may be provided on the wall, and the first positioning structure and the second positioning structure are positioned and matched.
  • the first The positioning of the positioning structure and the second positioning structure can facilitate the installation of the air conditioner indoor unit 100 on the wall, thereby improving the installation efficiency of the air conditioner indoor unit 100 .
  • one of the air-conditioning core 80 and the hanging plate may be provided with a first positioning piece, and the other of the air-conditioning core 80 and the hanging plate may be provided with a second positioning piece, and the first positioning piece and the second positioning piece are positioned and matched.
  • positioning the first positioning member and the second positioning member can facilitate the assembly of the air-conditioning core 80 and the hanging board, thereby improving the assembly efficiency of the air-conditioning core 80 and the hanging board.
  • one of the first positioning piece and the second positioning piece is set as a positioning column
  • the other of the first positioning piece and the second positioning piece is set as a positioning hole, through which the positioning hole is matched with the positioning column, and the air conditioner core is installed 80 and the hanging board can play a positioning role, thereby improving the assembly efficiency of the air-conditioning core 80 and the hanging board
  • setting the first positioning part and the second positioning part as positioning columns and positioning holes can simplify the first positioning
  • the structure of the first positioning piece and the second positioning piece can reduce the difficulty of setting the first positioning piece and the second positioning piece.
  • one of the casing 10 and the hanging plate may be provided with a third positioning piece, and the other of the casing 10 and the hanging plate may be provided with a fourth positioning piece, and the third positioning piece and the fourth positioning piece are positioned and matched,
  • positioning by the third positioning member and the fourth positioning member can facilitate the assembly of the cabinet 10 and the hanging board, thereby improving the assembly efficiency of the cabinet 10 and the hanging board.
  • one of the third positioning piece and the fourth positioning piece is set as a positioning column
  • the other of the third positioning piece and the fourth positioning piece is set as a positioning hole, through which the positioning hole cooperates with the positioning column, and when the casing is installed 10 and the hanging plate can play a positioning role, thereby improving the assembly efficiency of the casing 10 and the hanging plate
  • setting the third positioning piece and the fourth positioning piece as positioning columns and positioning holes can simplify the third positioning
  • the structure of the third positioning member and the fourth positioning member can reduce the difficulty of setting the third positioning member and the fourth positioning member.
  • an air outlet grille (not shown in the figure) may be provided at the air outlet 19 of the air conditioner indoor unit 100.
  • the air grill Under the action of the air outlet grill, the gas can be evenly blown from the air outlet 19 to the indoor environment, thereby further improving the comfort of blowing.
  • a humidification module can be provided inside the air outlet 19. Before the gas flows through the air outlet 19, the humidification module can humidify the gas, and the humidified gas is blown from the air outlet 19 to the indoor environment, so The setting can increase the humidity of the air blown out by the air conditioner indoor unit 100, so that the indoor environment can maintain a suitable humidity, thereby improving the user's comfort.
  • the air outlet 19 can be provided with an air purification module, and before the air flows through the air outlet 19, the air purification module can purify the gas, so as to clean the air blown into the room, so as to avoid pollution of the air blown out by the indoor unit 100 of the air conditioner. Indoor environment, which in turn can ensure the health of users.
  • Both the humidification module and the air purification module can be connected to the controller of the air conditioner, and the controller can control whether the humidification module and the air purification module work.
  • the controller controls the humidification module and/or The air purification module works, and when the humidification module and/or the air purification module do not need to work, the controller controls the humidification module and/or the air purification module to stop working.
  • the air conditioner can be provided with a control button, and the user can adjust the working mode of the air conditioner through the control button.
  • the control button When the humidification module is required to work, the user can press the control button to make the controller control the humidification module to work.
  • the air purification module is required When working, the user can press the control button to make the controller control the air purification module to work.
  • references to the terms “one embodiment,” “some embodiments,” “exemplary embodiments,” “example,” “specific examples,” or “some examples” are intended to mean that the implementation A specific feature, structure, material, or characteristic described by an embodiment or example is included in at least one embodiment or example of the present application.
  • schematic representations of the above terms do not necessarily refer to the same embodiment or example.
  • the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

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Abstract

一种空调室内机(100),包括:机壳(10),机壳(10)上设有进风口(11),机壳(10)内设有处理腔(12);滤网支架(30)和机壳(10)间限定出滑动空间(31);滤网(20)位于滑动空间(31)内;处理模块(40)包括驱动件(41)、转动轮(42)和处理件(43),驱动件(41)驱动转动轮(42)转动,转动轮(42)转动时将滑动空间(31)内的至少一部分滤网(20)回收至处理腔(12)内或者将处理腔(12)内的滤网(20)输送至滑动空间(31)内,处理件(43)被构造成处理滤网(20)上的吸附物以净化滤网(20)。

Description

空调室内机
相关申请的交叉引用
本申请要求“芜湖美智空调设备有限公司、广东美的制冷设备有限公司”于2021年05月31日提交的、名称为“空调室内机”的、中国专利申请号“202110602613.2”和“202121204474.X”的优先权。
技术领域
本申请涉及空调领域,尤其是涉及一种空调室内机。
背景技术
相关技术中,现有空调室内机设置有滤网,滤网设置在与空调室内机的进风口对应设置,滤网安装位置固定,随着使用时间的增加,物体吸附在滤网上,滤网的吸附能力逐渐下降,滤网的风阻逐渐增加,空调器制冷或制热时,空调器的出风量小,影响空调器的使用性能,并且,当滤网上有吸附物时,现有空调室内机不能自动将滤网上的吸附物处理干净,需要用户手动处理掉滤网上的吸附物,容易引起用户抱怨。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请提出一种空调室内机,该空调室内机可以保证空调器的出风量,也可以自动将滤网上的吸附物处理干净。
根据本申请的空调室内机包括:机壳,所述机壳上设有进风口,所述机壳内设有处理腔;滤网支架,所述滤网支架设在所述机壳内且与所述进风口正对设置,所述滤网支架和所述机壳之间限定出滑动空间;滤网,所述滤网的至少一部分位于所述滑动空间内且相对所述滤网支架可滑动;处理模块,所述处理模块设在所述处理腔内,所述处理模块包括驱动件、转动轮和处理件,所述驱动件与所述转动轮相连以驱动所述转动轮转动,所述滤网的一端连接至转动轮上,所述转动轮转动时以将所述滑动空间内的至少一部分滤网回收至所述处理腔内或者将所述处理腔内的滤网输送至所述滑动空间内,所述处理件被构造成处理所述滤网上的吸附物以净化所述滤网。
根据本申请的空调室内机,通过滤网支架、滤网和处理模块配合,能够保证空调器的出风量,可以保证空调器使用性能,并且,也可以自动将滤网上的吸附物处理干净。
在本申请的一些示例中,所述的空调室内机还包括辅助轮,所述辅助轮可转动地设在处理腔内,所述滤网与所述辅助轮配合,所述辅助轮与所述转动轮同向转动。
在本申请的一些示例中,所述驱动件为多个,所述驱动件与所述辅助轮相连以驱动所述辅助轮转动。
在本申请的一些示例中,所述的空调室内机还包括:复位转轴,所述复位转轴可转动地设在所述机壳内:拉绳,所述拉绳的一端连接所述复位转轴,所述拉绳的另一端与所述滤网的另一端相连;复位驱动件,所述复位驱动件与所述复位转轴相连以驱动所述复位转轴转动以使所述拉绳缠绕并拉动所述滤网滑动至与所述进风口正对。
在本申请的一些示例中,所述机壳包括主支架,所述进风口设在所述主支架上,所述主支架内设有所述滤网支架,所述滤网支架与所述主支架配合限定出位于所述滤网支架两侧的所述滑动空间,所述滤网被构造成一部分位于其中一个滑动空间内、另一部分位于所述处理腔内。
在本申请的一些示例中,所述处理件为用于对所述滤网进行加热的加热件,所述滤网被构造成在被加热时网孔增大以使所述吸附物脱落。
在本申请的一些示例中,所述处理件为设在所述转动轮一侧的碳素辐射加热管。
在本申请的一些示例中,所述处理件设在所述转动轮内。
在本申请的一些示例中,所述机壳上设有与所述处理腔连通的排出管,所述空调室内机 还包括处理风机,所述处理风机运行以将所述处理腔内的所述吸附物通过所述排出管排出。
在本申请的一些示例中,所述处理件包括:光源,所述光源设在处理腔内;催化模块,所述催化模块设在所述处理腔内,所述光源开启时光催化所述催化模块分解所述吸附物。
在本申请的一些示例中,所述的空调室内机还包括扰动件,所述扰动件被构造成用于扰动所述处理腔内的空气流动。
在本申请的一些示例中,所述的空调室内机还包括用于检测所述处理腔内气体浓度的检测装置,所述检测装置的检测结果低于设定浓度时,控制所述转动件转动以将所述处理腔内的滤网输送至所述滑动空间内。
在本申请的一些示例中,所述处理腔内设有多个间隔设置的滑道,多个所述滑道在平行于所述滑动空间的滑动方向上间隔设置,所述滤网与多个所述滑道滑动配合。
在本申请的一些示例中,相邻的所述滑道之间的间隔空间设置有所述处理件。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
图1是根据本申请实施例的空调室内机的示意图;
图2是根据本申请实施例的空调室内机的爆炸图;
图3是根据本申请实施例的空调室内机的滤网收回至处理腔内的截面图;
图4是根据本申请实施例的空调室内机的滤网与进风口相对的截面图;
图5是根据本申请实施例的空调室内机的处理件设置在转动轮、辅助轮的示意图;
图6是根据本申请实施例的空调室内机的处理件设置为碳素辐射加热管的示意图;
图7是根据本申请实施例的空调室内机的驱动件和转动轮通过皮带传动的示意图;
图8是根据本申请实施例的空调室内机的转动轮和辅助轮均设有驱动件的示意图;
图9是根据本申请实施例的空调室内机的主支架的示意图;
图10是根据本申请实施例的空调室内机的主支架的局部结构示意图;
图11是根据本申请实施例的空调室内机的主支架和滤网支架装配示意图;
图12是根据本申请实施例的空调室内机的主支架和滤网配合的示意图;
图13是根据本申请实施例的空调室内机的滤网位于主支架内滑动空间的示意图;
图14是根据本申请实施例的空调室内机的主支架的另一个局部结构示意图。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上 述术语在本申请中的具体含义。
下面参考图1-图14描述根据本申请实施例的空调室内机100,空调室内机100为空调器的结构,空调器制冷时,空调室内机100朝向室内吹冷风,空调器制热时,空调室内机100朝向室内吹热风。
如图1-图14所示,根据本申请实施例的空调室内机100包括:机壳10、滤网20和处理模块40。机壳10上设置有进风口11,机壳10内设置有处理腔12,进一步地,机壳10可以包括第一壳体15和第二壳体16,空调室内机100内设置有空调内核80,空调内核80包括风机和贯流风轮,第一壳体15和空调内核80均设置在第二壳体16内,第二壳体16构造为空调室内机100的面框,第一壳体15可以限定出处理腔12,第一壳体15可以设置有第一进风口17,在空调室内机100的长度方向,即图2中的左右方向,处理腔12可以设置在空调内核80的一侧,第一壳体15的部分结构设置在空调内核80的上侧,第二壳体16设置有第二进风口18和出风口19,第二进风口18与第一进风口17对应设置且连通,第一进风口17构成机壳10上的进风口11。当空调室内机100的空调内核80工作时,室内气体依次流过第二进风口18、第一进风口17进入空调室内机100内,在空调内核80的作用下,空调室内机100内的气体从出风口19吹至室内,出风口19可以设置在第二壳体16的下端。第一壳体15可以通过螺钉或卡扣固定安装在空调内核80上。
滤网支架设置在机壳10内,且滤网支架与进风口11正对设置,机壳10和滤网支架之间限定出滑动空间31,进一步地,滤网支架设置在第一壳体15内,滑动空间31由第一机壳10和滤网支架之间限定出,滑动空间31与处理腔12的连通。并且,处理模块40设置在处理腔12内,即处理腔12内设置有处理模块40,处理模块40包括处理件43、转动轮42和驱动件41,转动轮42与驱动件41相连,驱动件41可以驱动转动轮42转动,滤网20的一端连接至转动轮42上,驱动件41驱动转动轮42转动时,在转动轮42的带动下可以将滑动空间31内的至少一部分滤网20回收至处理腔12内,或者转动轮42转动时,在转动轮42的带动下将处理腔12内的滤网20输送至滑动空间31内,处理件43被构造成处理滤网20上的吸附物,处理件43处理滤网20上的吸附物后可以净化滤网20,使滤网20干净。
其中,滤网20位于滑动空间31内时,室内气体从进风口11流过滤网20后进入空调室内机100内,滤网20对气体有过滤作用,通过滤网20过滤气体,可以防止颗粒物等物体流入空调室内机100内。当滤网20上附着有吸附物时,吸附物可以为颗粒物、苯、醛、棉花等物体,驱动件41驱动转动轮42转动,转动轮42带动滤网20运动使滤网20回收至处理腔12内,处理件43处理滤网20上的吸附物,在处理件43作用下,能够使吸附物和滤网20分离,可以使滤网20变干净,达到净化滤网20的效果。进一步地,滤网20被净化完之后,驱动件41驱动转动轮42转动,使处理腔12内的滤网20输送至滑动空间31内,此时滤网20上没有吸附物或者有极少的吸附物,滤网20的风阻较小,可以保证空调室内机100的进风量,从而可以保证空调室内机100的出风量,进而可以保证空调室内机100的性能。另外,当空调器需要向室内强劲吹风时,例如:空调器需要强劲制冷时,此时空调室内机100需要较高进风量,驱动件41驱动转动轮42转动将滤网20收集在处理腔12内,进风口11处无风阻,单位时间内,流入空调室内机100的风量增加,可以保证空调器的出风量,从而可以保证空调器使用性能。
需要说明的是,将处理腔12内的滤网20输送至滑动空间31内时转动轮42转动方向与将滤网20回收至处理腔12内转动轮42转动方向相反,例如:使滤网20回收至处理腔12内时转动轮42逆时针转动,将处理腔12内的滤网20输送至滑动空间31内时转动轮42顺时针转动。
具体地,当空调器需要开启净化功能时,驱动件41驱动转动轮42转动,使处理腔12内的滤网20输送至滑动空间31内,使滤网20与进风口11位置对应,优选地,滤网20覆盖整个进风口11,在贯流风轮作用下使空调室内机100内形成负压,将室内空气循环,气 体经过滤网20净化,此时室内空气中的颗粒物、苯、醛等被吸附在滤网20上。当空调器需要开启强劲制冷模式或制热模式时,即空调器需要更加大的循环风量需求时,在转动轮42的带动下将处理腔12内的滤网20输送至滑动空间31内,此时,空调器的进风口11无滤网20阻挡,可实现无风阻运转。
由此,通过滤网支架、滤网20和处理模块40配合,能够保证空调器的出风量,可以保证空调器使用性能,并且,也可以自动将滤网20上的吸附物处理干净,使滤网20重复使用。
在本申请的一些实施例中,如图2-图8所示,空调室内机100还可以包括:辅助轮50,辅助轮50设置在处理腔12内,辅助轮50在处理腔12内可转动,滤网20与辅助轮50配合工作,转动轮42与辅助轮50同向转动。其中,辅助轮50可以对滤网20起到支撑作用,在滤网20运动过程中,通过辅助轮50支撑滤网20,能够防止滤网20的结构堆叠在一起,可以使滤网20顺利地从滑动空间31内运动至处理腔12内,也可以使滤网20顺利地从处理腔12内运动至滑动空间31内。
在本申请的一些实施例中,如图7所示,驱动件41可以设置在转动轮42和辅助轮50之间,驱动件41与转动轮42可以通过皮带90传动连接,驱动件41通过皮带90驱动转动轮42顺时针转动或逆时针转动。
在本申请的一些实施例中,如图8所示,驱动件41可以设置为多个,例如:驱动件41设置为两个,两个驱动件41中的一个驱动件41与辅助轮50相连,驱动件41可以驱动辅助轮50转动,两个驱动件41中的一个驱动件41与转动轮42连接,通过两个驱动件41同时驱动辅助轮50和转动轮42转动,可以保证滤网20能从滑动空间31内运动至处理腔12内,也可以保证滤网20从处理腔12内运动至滑动空间31内,从而可以保证空调室内机100的工作可靠性。
在本申请的一些实施例中,如图3-图8所示,空调室内机100还可以包括:复位转轴60、拉绳和复位驱动件。复位转轴60可以设置在机壳10内,复位转轴60在机壳10内可转动,进一步地,复位转轴60设置在第一壳体15内的滑动空间31内。拉绳的一端与复位转轴60连接,拉绳的另一端与滤网20的另一端相连。复位转轴60与复位驱动件相连,复位驱动件可以驱动复位转轴60转动,复位转轴60转动时可以使拉绳缠绕在复位转轴60上,并且拉绳拉动滤网20滑动至与进风口11正对的位置。其中,复位驱动件可以设置为电机,拉绳可以由可卷绕的材料制成,例如:拉绳设置为钢丝,复位转轴60可以设置在滑动空间31的远离处理腔12的一端,当需要将滤网20运送至与进风口11对应的位置时,复位驱动件驱动复位转轴60转动,例如:驱动复位转轴60顺时针转动,在复位转轴60转动过程中通过拉绳带动滤网20向滑动空间31内运动,使滤网20运动至与进风口11对应的位置,从而使滤网20更加顺畅地被送回至与进风口11对应的位置。
在本申请的一些实施例中,如图2、图9、图10和图11所示,机壳10可以包括:主支架13(即上述的第一壳体15),主支架13上可以设置有电机固定结构,复位驱动件可以设置于电机固定结构上,进风口11可以设置在主支架13上,主支架13内可以设置有滤网支架,滤网支架与主支架13配合限定出位于滤网支架两侧的滑动空间31,滤网20被构造成一部分结构位于其中一个滑动空间31内,滤网20的另一部分结构位于处理腔12内。其中,滤网支架的上表面与主支架13之间可以限定出第一滑动空间32,滤网支架的下表面与主支架13之间可以限定出第二滑动空间33,滤网20的一部分结构可以设置在第一滑动空间32和/或第二滑动空间33内,滤网20的另一部分结构可以设置在处理腔12内,滤网支架对滤网20可以起到支撑作用,防止滤网20在滑动空间31内因自身重力影响发生弯曲和变形,从而可以防止滤网20卡在滑动空间31内,进而保证滤网20能在滑动空间31和处理腔12内运动。
作为本申请的一个具体实施例,如图9-图12所示,驱动件41可以设置为步进电机,转动轮42可以设置为齿轮,转动轮42与滤网20的侧边缘啮合传动,其中,步进电机通过 齿轮组191来控制转动轮42旋转,根据图12中转动轮42与滤网20啮合情况可知,当转动轮42顺时针旋转时,滤网20的一端进入第一滑动空间32,进入第一滑动空间32内的滤网20开始进行过滤吸附,同时,滤网20运动过程中,第二滑动空间33内的滤网20由第二滑动空间33运动至处理腔12内,处理腔12内的处理件43对处理腔12内的滤网20进行脱附处理,当滤网20完全覆盖第一滑动空间32时,第一滑动空间32内的滤网20吸附过滤流入空调室内机100内的气体。如图13所示,当转动轮42逆时针旋转时,第一滑动空间32中的滤网20进入处理腔12内,处理腔12内的处理件43对处理腔12内的滤网20进行脱附处理,而处理腔12内的滤网20运动至第二滑动空间33内,如图9所示,第二滑动空间33内的滤网20开始进行过滤吸附。
作为本申请的另一个具体实施例,滤网20可以设置为环形结构,此时第一滑动空间32、第二滑动空间33和处理腔12内同时设置有滤网20,滤网20在空调室内机100内可以循环运动,在空调器工作过程中,通过开启脱附功能,驱动件41驱动转动轮42转动,滤网20能够在第一滑动空间32、第二滑动空间33和处理腔12之间往复运动,在处理腔12内的处理件43对处理腔12内的滤网20进行脱附处理时,位于第一滑动空间32和第二滑动空间33内的滤网20可以进行过滤吸附。
在本申请的一些实施例中,如图2-图5所示,处理件43可以设置为加热件44,加热件44用于对滤网20进行加热,滤网20被构造成在被加热时,滤网20的网孔增大以使滤网20上的吸附物从滤网20上脱落。其中,加热件44可以设置为PTC加热器,当滤网20运动至处理腔12内,加热件44开始工作时,加热件44可以加热滤网20使滤网20升温至80摄氏度-100摄氏度,使滤网20上的网孔尺寸变大,从而使滤网20上的吸附物掉落至处理腔12内,达到净化滤网20的效果。
在本申请的一些实施例中,如图6所示,处理件43也可以设置为碳素辐射加热管45,碳素辐射加热管45可以设置在转动轮42一侧,例如:碳素辐射加热管45设置在图6中转动轮42左侧,并且,碳素辐射加热管45升温迅速、热滞后小、发热均匀、热辐射传递距离远,碳素辐射加热管45工作时,可以对处理腔12内的滤网20进行快速加热,也能够使滤网20加热均匀,可以保证滤网20上的吸附物掉落至处理腔12内,从而可以提升处理件43的工作可靠性。
在本申请的一些实施例中,如图5所示,处理件43可以设置在转动轮42内,进一步地,辅助轮50内也可以设置有处理件43,需要说明的是,转动轮42和辅助轮50与滤网20近,当转动轮42和辅助轮50内均设置有处理件43时,例如:转动轮42和辅助轮50内均设置有加热件44时,加热件44可以更加快速加热滤网20,能够提升加热件44的加热效率,可以使滤网20快速升温,从而可以使吸附物快速脱落,进而可以节省处理件43对滤网20的处理净化时间,减少处理件43工作时间,节约电能。
在本申请的一些实施例中,如图1和图2所示,机壳10上可以设置有排出管70,排出管70与处理腔12连通,进一步地,第一壳体15设有排出管70,排出管70的一端与处理腔12连通,排出管70的另一端穿过第二壳体16后可以与室外环境连通,但本申请不限于此,排出管70的另一端也可以与储物盒连通,本申请以排出管70的另一端与室外环境连通进行说明。空调室内机100还可以包括:处理风机71,处理风机71运行时可以将处理腔12内的吸附物通过排出管70排出。其中,处理风机71可以设置为离心风机,在空调室内机100的长度方向,即图2中的左右方向,处理风机71可以设置在处理腔12的外侧,处理风机71连通排出管70和处理腔12,处理风机71工作时,通过负压的作用,处理腔12内的吸附物可以通过排出管70排出至室外环境中,避免污染物(即吸附物)残留在空调室内机100内部造成二次污染,并且,处理风机71工作时,也能够将室内环境中的二氧化碳排放至室外,可以使室内环境中的二氧化碳浓度降低,从而可以提升用户舒适性。
在本申请的一些实施例中,如图10所示,处理件43可以包括:光源46和催化模块47,光源46和催化模块47均可以设置为多个,催化模块47设置在处理腔12内,光源46开启 时光催化催化模块47分解处理腔12内的吸附物。其中,当滤网20被回收到处理腔12内时,开启催化光源46,光催化催化模块47分解滤网20上吸附的VOC(Volatile Organic Compounds-易挥发的有机物质),使吸附物从滤网20上脱附掉,达到净化滤网20的效果。
在本申请的一些实施例中,如图10所示,空调室内机100还可以包括:扰动件48,扰动件48可以设置为风扇,扰动件48被构造成用于扰动处理腔12内的空气流动。其中,光催化催化模块47分解滤网20上吸附物过程中,启动扰动件48工作,风扇产生微弱的气流在处理腔12内流动,使得气体在处理腔12中更加均匀。
进一步地,如图10所示,空调室内机100还可以包括:检测装置49,检测装置49可以为检测传感器,检测装置49用于检测处理腔12内气体浓度,检测装置49的检测结果低于设定浓度时,控制转动件转动,从而可以将处理腔12内的滤网20输送至滑动空间31内。进一步地,光催化催化模块47分解滤网20上吸附物过程中,启动扰动件48工作,风扇产生微弱的气流在处理腔12内流动,使处理腔12中气体更加均匀,此时检测装置49实时检测处理腔12内VOC浓度,直至处理腔12内VOC浓度低于0.6mg/m3,则代表滤网20上的吸附物处理干净,滤网20可以运动至进风口11处进行过滤。
在本申请的一些实施例中,如图14所示,处理腔12内可以设置有滑道14,滑道14可以设置有多个,多个滑道14间隔开设置,多个滑道14在平行于滑动空间31的滑动方向上间隔设置,滤网20与多个滑道14滑动配合。其中,在滤网20运动过程中,滑道14可以对滤网20起到导向作用,可以使滤网20平顺地在处理腔12和滑动空间31之间运动。
进一步地,如图3-图8所示,多个滑道14依次连接形成一条滑道14,如此设置可以简化滑道14的设置工艺,可以提升空调室内机100的生产效率。
进一步地,滤网20设置在滑道14内,滑道14的与滤网20相对的侧表面可以设置有导向轮,导向轮可以转动,导向轮能够对滤网20起到支撑导向的作用,滤网20在处理腔12和滑动空间31之间运动时,在导向轮的作用下,可以减少滑道14与滤网20间的摩擦力,从而可以使滤网20更加顺畅地在处理腔12和滑动空间31之间运动。
在本申请的一些实施例中,如图10、图12、图13和图14所示,相邻的滑道14之间的间隔空间内可以设置有处理件43,这样设置能够使处理件43的布置位置合理,可以提升对滤网20的净化效果,从而使滤网20上的吸附物与滤网20快速分离。
在本申请的一些实施例中,出风口19处可以设置有导风板,导风板可转动地设置在出风口19处,通过控制导风板在出风口19内的转动角度,可以控制空调室内机100的出风方向,从而可以实现向不同位置吹风的需求。
进一步地,空调室内机100上可以设置有驱动装置,驱动装置可以设置为驱动电机,驱动装置可以驱动导风板转动以改变空调室内机100的吹风方向。
进一步地,驱动装置可以与空调器的控制器通讯连接,需要控制空调室内机100的出风方向时,空调器的控制器控制驱动装置驱动导风板转动,达到改变空调室内机100的吹风方向的目的。
在本申请的一些实施例中,空调室内机100可以挂在室内墙壁上,空调室内机100还可以包括挂板,空调内核80可以安装在挂板上,机壳10也可以安装在挂板上,挂板与室内墙壁挂接。进一步地,空调内核80与挂板可以卡接,但本申请不限于此,空调内核80与挂板也可以通过螺栓连接。进一步地,机壳10与挂板可以卡接连接,但本申请不限于此,机壳10与挂板也可以通过螺栓连接。这样设置能够将空调内核80与挂板、机壳10与挂板可靠地连接在一起,可以避免空调室内机100晃动,从而可以提升空调室内机100的位置稳定性。
进一步地,挂板上可以设置有安装孔,可以通过紧固件穿过安装孔后与墙壁连接,紧固件可以设置有螺栓,墙壁上也可以设置有安装孔,墙壁上的安装孔内可以设置有螺母,螺栓穿过挂板上的安装孔后与墙壁上安装孔内的螺母螺纹配合连接,从而可以将挂板稳固地安装在墙壁上,进而可以避免空调室内机100掉落。
进一步地,挂板上可以设置有第一定位结构,墙壁上可以设置有第二定位结构,第一定位结构与第二定位结构定位配合,在向墙壁上安装空调室内机100时,通过第一定位结构与第二定位结构进行定位,可以便于将空调室内机100安装在墙壁上,从而可以提升空调室内机100的安装效率。
进一步地,空调内核80与挂板中的一个可以设置有第一定位件,空调内核80与挂板中的另一个可以设置有第二定位件,第一定位件与第二定位件定位配合,在安装空调内核80与挂板时,通过第一定位件与第二定位件进行定位,可以便于将空调内核80与挂板装配在一起,从而可以提升空调内核80与挂板的装配效率。
进一步地,第一定位件与第二定位件中的一个设置为定位柱,第一定位件与第二定位件中的另一个设置为定位孔,通过定位孔与定位柱配合,在安装空调内核80与挂板时,可以起到定位作用,从而可以提升空调内核80与挂板的装配效率,并且,将第一定位件和第二定位件设置为定位柱以及定位孔,可以简化第一定位件与第二定位件结构,从而可以降低第一定位件与第二定位件的设置难度。
进一步地,机壳10与挂板中的一个可以设置有第三定位件,机壳10与挂板中的另一个可以设置有第四定位件,第三定位件与第四定位件定位配合,在安装机壳10与挂板时,通过第三定位件与第四定位件进行定位,可以便于将机壳10与挂板装配在一起,从而可以提升机壳10与挂板的装配效率。
进一步地,第三定位件与第四定位件中的一个设置为定位柱,第三定位件与第四定位件中的另一个设置为定位孔,通过定位孔与定位柱配合,在安装机壳10与挂板时,可以起到定位作用,从而可以提升机壳10与挂板的装配效率,并且,将第三定位件和第四定位件设置为定位柱以及定位孔,可以简化第三定位件与第四定位件结构,从而可以降低第三定位件与第四定位件的设置难度。
在本申请的一些实施例中,空调室内机100的出风口19处可以设置有出风格栅(图中未示出),气流从出风口19吹出时经过出风格栅,气流流过出风格栅时,在出风格栅的作用下,能使气体均匀地从出风口19吹至室内环境中,从而可以进一步提升吹风舒适性。
在本申请的一些实施例中,出风口19的内侧可以设置有加湿模块,气体流过出风口19之前,加湿模块可以将气体加湿,加湿后的气体从出风口19吹至室内环境中,如此设置能够提升空调室内机100吹出风的湿度,可以使室内环境保持适宜的湿度,从而可以提升用户的舒适性。进一步地,出风口19可以设置有空气净化模块,气体流过出风口19之前,空气净化模块可以对气体进行净化,可以使吹入室内的气体清洁,从而可以避免空调室内机100吹出的气体污染室内环境,进而可以保证用户的身体健康。
加湿模块和空气净化模块均可以与空调器的控制器连接,控制器可以控制加湿模块、空气净化模块是否工作,当需要加湿模块和/或空气净化模块工作时,控制器控制加湿模块和/或空气净化模块工作,当不需要加湿模块和/或空气净化模块工作时,控制器控制加湿模块和/或空气净化模块停止工作。进一步地,空调器上可以设置有控制按钮,用户可以通过控制按钮调节空调器的工作模式,当需要加湿模块工作时,用户按动控制按钮可以使控制器控制加湿模块工作,当需要空气净化模块工作时,用户按动控制按钮可以使控制器控制空气净化模块工作。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (14)

  1. 一种空调室内机,其中,包括:
    机壳,所述机壳上设有进风口,所述机壳内设有处理腔;
    滤网支架,所述滤网支架设在所述机壳内且与所述进风口正对设置,所述滤网支架和所述机壳之间限定出滑动空间;
    滤网,所述滤网的至少一部分位于所述滑动空间内且相对所述滤网支架可滑动;
    处理模块,所述处理模块设在所述处理腔内,所述处理模块包括驱动件、转动轮和处理件,所述驱动件与所述转动轮相连以驱动所述转动轮转动,所述滤网的一端连接至转动轮上,所述转动轮转动时以将所述滑动空间内的至少一部分滤网回收至所述处理腔内或者将所述处理腔内的滤网输送至所述滑动空间内,所述处理件被构造成处理所述滤网上的吸附物以净化所述滤网。
  2. 根据权利要求1所述的空调室内机,其中,还包括辅助轮,所述辅助轮可转动地设在处理腔内,所述滤网与所述辅助轮配合,所述辅助轮与所述转动轮同向转动。
  3. 根据权利要求2所述的空调室内机,其中,所述驱动件为多个,所述驱动件与所述辅助轮相连以驱动所述辅助轮转动。
  4. 根据权利要求1-3中任一项所述的空调室内机,其中,还包括:
    复位转轴,所述复位转轴可转动地设在所述机壳内:
    拉绳,所述拉绳的一端连接所述复位转轴,所述拉绳的另一端与所述滤网的另一端相连;
    复位驱动件,所述复位驱动件与所述复位转轴相连以驱动所述复位转轴转动以使所述拉绳缠绕并拉动所述滤网滑动至与所述进风口正对。
  5. 根据权利要求1-4中任一项所述的空调室内机,其中,所述机壳包括主支架,所述进风口设在所述主支架上,所述主支架内设有所述滤网支架,所述滤网支架与所述主支架配合限定出位于所述滤网支架两侧的所述滑动空间,所述滤网被构造成一部分位于其中一个滑动空间内、另一部分位于所述处理腔内。
  6. 根据权利要求1-5中任一项所述的空调室内机,其中,所述处理件为用于对所述滤网进行加热的加热件,所述滤网被构造成在被加热时网孔增大以使所述吸附物脱落。
  7. 根据权利要求6所述的空调室内机,其中,所述处理件为设在所述转动轮一侧的碳素辐射加热管。
  8. 根据权利要求6所述的空调室内机,其中,所述处理件设在所述转动轮内。
  9. 根据权利要求6所述的空调室内机,其中,所述机壳上设有与所述处理腔连通的排出管,所述空调室内机还包括处理风机,所述处理风机运行以将所述处理腔内的所述吸附物通过所述排出管排出。
  10. 根据权利要求1-5中任一项所述的空调室内机,其中,所述处理件包括:
    光源,所述光源设在处理腔内;
    催化模块,所述催化模块设在所述处理腔内,所述光源开启时光催化所述催化模块分解所述吸附物。
  11. 根据权利要求10所述的空调室内机,其中,还包括扰动件,所述扰动件被构造成用于扰动所述处理腔内的空气流动。
  12. 根据权利要求10所述的空调室内机,其中,还包括用于检测所述处理腔内气体浓度的检测装置,所述检测装置的检测结果低于设定浓度时,控制所述转动件转动以将所述处理腔内的滤网输送至所述滑动空间内。
  13. 根据权利要求10所述的空调室内机,其中,所述处理腔内设有多个间隔设置的滑道,多个所述滑道在平行于所述滑动空间的滑动方向上间隔设置,所述滤网与多个 所述滑道滑动配合。
  14. 根据权利要求13所述的空调室内机,其中,相邻的所述滑道之间的间隔空间设置有所述处理件。
PCT/CN2021/127462 2021-05-31 2021-10-29 空调室内机 WO2022252489A1 (zh)

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CN107435997A (zh) * 2017-07-21 2017-12-05 广东美的制冷设备有限公司 空调室内机和具有其的空调器
CN107504559A (zh) * 2017-07-21 2017-12-22 广东美的制冷设备有限公司 空调室内机和具有其的空调器
CN207137575U (zh) * 2017-07-21 2018-03-27 广东美的制冷设备有限公司 空调过滤网的除尘装置及空调室内机
CN111043674A (zh) * 2019-11-20 2020-04-21 珠海格力电器股份有限公司 一种空调器及其控制方法
CN111964161A (zh) * 2020-08-26 2020-11-20 珠海格力电器股份有限公司 空调器

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CN104602793A (zh) * 2012-06-29 2015-05-06 首尔伟傲世有限公司 净化流体的装置
JP2014159937A (ja) * 2013-02-21 2014-09-04 Panasonic Corp 空気調和機
CN107435997A (zh) * 2017-07-21 2017-12-05 广东美的制冷设备有限公司 空调室内机和具有其的空调器
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