WO2020093570A1 - 空调室内机 - Google Patents

空调室内机 Download PDF

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Publication number
WO2020093570A1
WO2020093570A1 PCT/CN2018/125033 CN2018125033W WO2020093570A1 WO 2020093570 A1 WO2020093570 A1 WO 2020093570A1 CN 2018125033 W CN2018125033 W CN 2018125033W WO 2020093570 A1 WO2020093570 A1 WO 2020093570A1
Authority
WO
WIPO (PCT)
Prior art keywords
indoor unit
air
windshield
air conditioner
air outlet
Prior art date
Application number
PCT/CN2018/125033
Other languages
English (en)
French (fr)
Inventor
林裕亮
金海元
王朝新
陈圣文
曾庆和
李德清
傅凯凯
刘禾铭
刘胜辈
贾飞飞
李军
Original Assignee
珠海格力电器股份有限公司
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
Application filed by 珠海格力电器股份有限公司 filed Critical 珠海格力电器股份有限公司
Priority to EP18939464.6A priority Critical patent/EP3835677B1/en
Publication of WO2020093570A1 publication Critical patent/WO2020093570A1/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
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/003Ventilation in combination with air cleaning
    • 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
    • F24F1/0035Indoor units, e.g. fan coil units characterised by introduction of outside air to the room
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/52Indication arrangements, e.g. displays
    • 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
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/50Air quality properties

Definitions

  • the invention relates to the field of household appliances, in particular, to an indoor unit of an air conditioner.
  • the air-conditioned room In order to ensure the air-conditioning effect, the air-conditioned room must be closed. The result is that the indoor dust, smoke, bacteria, viruses, exhaust gas continue to increase, the oxygen content continues to decrease, and the air quality is getting worse.
  • the "air conditioning disease” has increasingly attracted people's attention, it has begun to require everyone not to stay in the air-conditioned room for a long time, and to open the window to open the fresh air or form a negative pressure through the indoor exhaust to leak through the gap between the door and the window The way to fill the room with fresh air, improve the indoor environment.
  • the main object of the present invention is to provide an air conditioner indoor unit to solve the problem of poor fresh air flow at the fresh air outlet of the air conditioner indoor unit in the prior art.
  • the present invention provides an air conditioner indoor unit, including a fresh air device, the fresh air device has a fresh air outlet, the air conditioner indoor unit further includes: an indoor unit panel for blocking the air outlet of the air conditioner indoor unit, the indoor unit panel has a housing The receiving hole is connected with the fresh air outlet, and the containing hole is located on the side of the fresh air device near the air outlet.
  • the air-conditioning indoor unit further includes: a wind shielding member, at least part of which is disposed in the accommodating hole, the wind shielding member has a first position and a second position, and the wind shielding member is between the first position and the second position It is movably arranged to block the accommodating hole when the windshield member is in the first position, and separate from the accommodating hole when the windshield member moves to the second position, so that the fresh air device passes between the accommodating hole and the windshield member There is wind in the gap.
  • a wind shielding member at least part of which is disposed in the accommodating hole, the wind shielding member has a first position and a second position, and the wind shielding member is between the first position and the second position It is movably arranged to block the accommodating hole when the windshield member is in the first position, and separate from the accommodating hole when the windshield member moves to the second position, so that the fresh air device passes between the accommodating hole and the windshield member There is wind in the gap.
  • the windshield member includes: a windshield member, the position of the windshield member is adjustably arranged in the accommodating hole, when the windshield member is in the first position, the windshield member is blocked in the accommodating hole; when the windshield member is in In the second position, the windshield is separated from the indoor unit panel.
  • the accommodating hole includes a tapered hole segment, and the outer wall surface of the wind shield matches the inner wall surface of the tapered hole segment.
  • the wind shielding component includes: a covering member connected to the wind shielding member and located on a side of the wind shielding member away from the fresh air device; the covering member cover is disposed on the wind shielding member to shield the wind shielding member.
  • the covering member has a disc structure, and the outer surface of the covering member is flush with the indoor unit panel.
  • the air conditioner indoor unit includes: an air outlet channel housing, the air outlet channel housing is disposed inside the indoor unit panel, the air outlet channel housing has an air outlet channel, one end of the air outlet channel communicates with the fresh air outlet, and the air outlet channel The other end of the is connected with the receiving hole, so that fresh air enters the receiving hole through the air outlet channel.
  • the windshield includes a windshield body portion and an accommodating portion connected to the windshield body portion, the accommodating portion is located on the side of the windshield body portion close to the fresh air device; the accommodating portion is provided below the wind passage, the windshield body portion It is arranged in front of the air outlet channel, so that when the windshield member is in the second position, fresh air is discharged from the gap between the accommodating hole and the windshield main body through the air outlet channel.
  • the accommodating part has a first accommodating space
  • the indoor unit of the air conditioner includes: a moving part, the moving part is connected to the air outlet channel housing, at least a part of the moving part is located in the first accommodating space, and the moving part is drivingly connected to the windshield part To drive the windshield components to move.
  • the end of the air outlet channel near the windshield member is a bar-shaped channel.
  • the strip-shaped channel is arc-shaped, the strip-shaped channel has an arc-shaped curved surface, and the accommodating portion has an outer wall surface adapted to the arc-shaped curved surface, so that when the windshielding member is in the first position, the accommodating portion is located below the air outlet channel .
  • the indoor unit panel includes: a front panel and a lower panel disposed below the front panel, a receiving hole is disposed on the front panel, the front panel has oppositely disposed first and second ends, and the front panel has a protruding second At least a part of the receiving hole of the end is provided on the protruding portion, and the lower panel has a groove suitable for the protruding portion, so that the lower panel is installed on the front panel.
  • the protruding portion has an installation surface and a stop surface connected with the installation surface, the inner side surface of the lower panel fits with the installation surface, and the groove abuts on the stop surface.
  • the stop surface is an arc-shaped curved surface
  • the groove is an arc groove suitable for the stop surface
  • the air conditioner indoor unit further includes: a cooling and heating device, the cooling and heating device is located above the fresh air device; wherein, the fresh air outlet is provided at the upper end of the fresh air device.
  • the indoor unit of the air conditioner further includes: a sensing device for detecting the air quality of the indoor air; a light emitting device, which is disposed on the cover and located in the windshield member, and the light emitting device is signal-connected with the sensing device to receive the detection of the sensing device Air quality information, and display the light of the corresponding color according to the air quality information.
  • the air conditioner indoor unit of the present invention can make the fresh air vent on the side close to the air outlet of the air conditioner by setting the accommodating hole on the side of the fresh air device close to the air outlet, such an arrangement can make the air conditioner air exit the fresh air outlet Fresh air is blown to different locations in the room to avoid short circuit of fresh air and dirty air, and enhance the mobility of fresh air.
  • FIG. 1 shows a front view of an embodiment of an air-conditioning indoor unit according to the present invention
  • FIG. 2 shows a side view of an embodiment of an air-conditioning indoor unit according to the present invention
  • FIG. 3 shows a top view of an embodiment of an air-conditioning indoor unit according to the present invention
  • FIG. 4 shows an exploded view of an embodiment of an air conditioner indoor unit according to the present invention
  • FIG. 5 shows a cross-sectional view of the air conditioner indoor unit according to the present invention at a first angle
  • FIG. 6 shows a second angle cross-sectional view of the air-conditioning indoor unit according to the present invention
  • FIG. 7 shows a cross-sectional view at a third angle of the air-conditioning indoor unit according to the present invention
  • FIG. 8 shows an assembly view of the evaporator part and the air inlet panel part of the air conditioner indoor unit according to the present invention
  • FIG. 9 shows an exploded view of an evaporator component and an air inlet panel component of an air-conditioning indoor unit according to the present invention.
  • FIG. 10 shows an assembly view of the air duct components of the air-conditioning indoor unit according to the present invention
  • FIG. 11 shows an exploded view of the air duct components of the air-conditioning indoor unit according to the present invention
  • FIG. 12 shows an assembly diagram of the fresh air device and the air outlet structure of the air conditioner indoor unit according to the present invention
  • FIG. 13 shows an exploded view of the structure of the fresh air device and the air outlet of the air-conditioning indoor unit according to the present invention
  • FIG. 14 shows an assembly view of the front panel of the air-conditioning indoor unit according to the present invention.
  • FIG. 16 shows an assembly view of the lower panel of the air-conditioning indoor unit according to the present invention.
  • FIG. 17 shows an exploded view of the lower panel of the air-conditioning indoor unit according to the present invention.
  • FIG. 18 shows an exploded view of an embodiment of an air outlet structure according to the present invention.
  • FIG. 19 shows a schematic structural view of an angle of the moving part of the air outlet structure according to the present invention.
  • FIG. 21 shows a schematic structural view of another angle of the moving part of the air outlet structure according to the present invention.
  • FIG. 22 shows an exploded view of another embodiment of the air outlet structure according to the present invention.
  • FIG. 23 shows a schematic structural view of an angle of another embodiment of the air outlet structure according to the present invention.
  • FIG. 24 shows a schematic structural view at another angle of another embodiment of the air outlet structure according to the present invention.
  • FIG. 25 shows a schematic structural view of the windshield according to the air outlet structure of the present invention.
  • FIG. 26 shows a front view of the windshield according to the air outlet structure of the present invention.
  • FIG. 27 shows an angled side view of the windshield of the air outlet structure according to the present invention.
  • FIG. 28 shows another side view of the windshield of the air outlet structure according to the present invention.
  • FIG. 29 shows a schematic structural view of a covering member of an air outlet structure according to the present invention.
  • FIG. 30 shows a front view of the covering member of the air outlet structure according to the present invention.
  • FIG. 31 shows an angled side view of the covering member of the air outlet structure according to the present invention.
  • FIG. 33 is a schematic diagram showing that the covering member of the air outlet structure according to the present invention is installed on the windshield member.
  • FIG. 34 is a schematic diagram showing that the cover member of the air outlet structure according to the present invention is removed from the windshield member.
  • Windshield 12, windshield body; 13, accommodating portion; 20, cover; 30, moving parts; 50, indoor unit panel; 51, front panel; 511, protrusion; 52, lower panel; 53, accommodating hole; 60, air outlet channel shell; 61, air outlet channel; 70, wind shield parts;
  • cooling and heating device 1100, air inlet panel parts; 1200, evaporator parts; 1300, air duct parts; 1400, air outlet frame parts; 1600, top cover;
  • Second connection assembly 111, first mounting portion; 1111, adjusting plate; 1112, first supporting portion; 1113, first mounting plate; 112, second mounting portion; 1121, second supporting portion; 1122, first Two mounting plates; 12.
  • Main body of the windshield 13, accommodating part; 20, covering member; 21, first connection assembly; 211, first clamping member; 2111, first connection part; 2112, hook; 212, The second clamping device; 2121, the second connection portion; 2122, the stop portion.
  • the present invention provides an air conditioner indoor unit, please refer to FIG. 1 to FIG. 17, including a fresh air device 2000, the fresh air device 2000 has a fresh air outlet 2220, the air conditioner indoor unit further includes: an indoor unit panel 50 for blocking the air conditioner indoor unit out The air vent, the indoor unit panel 50 has an accommodating hole 53, the accommodating hole 53 communicates with the fresh air outlet 2220, and the accommodating hole 53 is located on the side of the fresh air device 2000 near the air outlet.
  • the air conditioner indoor unit of the present invention can provide fresh air on the side close to the air outlet of the air conditioner indoor unit by placing the accommodating hole 53 on the side near the air outlet of the fresh air device 2000, such an arrangement can make the air conditioner output fresh air Fresh air at the outlet blows to different locations indoors to avoid short circuit of fresh air and dirty air, and enhance the mobility of fresh air.
  • the air-conditioning indoor unit further includes a wind shield member 70, at least part of which is disposed in the accommodating hole 53, the wind shield member 70 has a first position and a second position, and the wind shield member 70 is in the first position It is movably arranged between the position and the second position to block the accommodating hole 53 when the windshield member 70 is in the first position, and separate from the accommodating hole 53 when the windshield member 70 is moved to the second position to allow fresh air
  • the device 2000 emits wind through the gap between the accommodating hole 53 and the wind shield 70.
  • the windshield member 70 includes a windshield member 10, and the position of the windshield member 10 is adjustably disposed in the accommodating hole 53. When the windshield member 70 is in the first position, the windshield member 10 is blocked in the accommodating hole When the windshield member 70 is in the second position, the windshield 10 is separated from the indoor unit panel 50.
  • the accommodating hole 53 includes a tapered hole segment, and the outer wall surface of the windshield 10 matches the inner wall surface of the tapered hole segment.
  • Such setting can make the fresh air flow upward and forward, and the air flow of the air-conditioning indoor unit can bring the fresh air to a farther place.
  • the wind shielding member 70 includes a cover 20 that is connected to the wind shield 10 and is located on the side of the wind shield 10 away from the fresh air device 2000, and the cover 20 is placed on the wind shield 10, To shield the windshield 10.
  • the windshield 10 and the cover 20 form a relatively sealed space, which can protect the movement mechanism therein, and can also prevent dust, insects, and reduce the noise of movement; and, such an arrangement can prevent children from contacting moving parts and improve safety.
  • the cover 20 has a disc structure, and the outer surface of the cover 20 is flush with the indoor unit panel 50. This arrangement makes the air outlet structure more beautiful.
  • the indoor unit of the air conditioner includes an air outlet channel housing 60, which is provided inside the indoor unit panel 50, the air outlet housing 60 has an air outlet channel 61, and one end of the air outlet channel 61 Communicating with the fresh air outlet 2220, the other end of the air outlet channel 61 communicates with the accommodating hole, so that the fresh air enters the accommodating hole through the air outlet channel 61; wherein the fresh air is the gas generated by the fresh air device 2000.
  • the windshield 10 includes a windshield body 12 and an accommodating portion 13 connected to the windshield body 12.
  • the accommodating portion 13 is located on the side of the windshield body 12 close to the fresh air device 2000; the accommodating portion 13 is provided at the outlet Below the wind passage 61, the windshield main body portion 12 is provided in front of the wind outlet passage 61, so that when the windshield member 70 is in the second position, fresh air passes from the accommodating hole 53 and the windshield main body portion 12 through the wind passage 61 Clearance.
  • the accommodating portion 13 has a first accommodating space
  • the air conditioner indoor unit includes a moving member 30, and the moving member 30 is connected to the air outlet housing 60, and at least part of the moving member 30 is located in the first accommodating space
  • the moving member 30 is connected to the windshield member 70 to drive the windshield member 70 to move.
  • the first accommodating space is provided with a moving component mounting plate, and at least part of the moving component 30 is fixedly disposed on the moving component mounting plate, so that the moving component 30 drives the windshield 10 to move.
  • the end of the air outlet channel 61 close to the windshield member 70 is a bar-shaped channel.
  • the strip-shaped channel is arc-shaped
  • the strip-shaped channel has an arc-shaped curved surface
  • the accommodating portion 13 has an outer wall surface adapted to the arc-shaped curved surface, so that when the windshield member 70 is at the first position, the accommodating portion 13 is located at the wind outlet Below the channel 61.
  • the indoor unit panel 50 includes a front panel 51 and a lower panel 52 disposed below the front panel 51, and an accommodating hole 53 is disposed on the front panel 51.
  • the front panel 51 has first and second ends disposed oppositely.
  • the panel 51 has a protruding portion 511 protruding from the second end, at least part of the receiving hole is provided on the protruding portion 511, and the lower panel 52 has a groove matching the protruding portion 511, so that the lower panel 52 is installed in front On the panel 51.
  • the protruding portion 511 has an installation surface and a stop surface connected to the installation surface, the inner side surface of the lower panel 52 is attached to the installation surface, and the groove abuts on the stop surface.
  • the stop surface is an arc-shaped curved surface
  • the groove is an arc groove suitable for the stop surface
  • the air-conditioning indoor unit further includes a cooling and heating device 1000, which is located above the fresh air device 2000; wherein, the fresh air outlet 2220 is provided at the upper end of the fresh air device 2000.
  • the indoor unit of the air conditioner further includes a sensing device for detecting the air quality of the indoor air; the indoor unit of the air conditioner further includes a light emitting device, which is disposed on the cover 20 and located in the windshield member 70.
  • the sensor device is connected with signals to receive the air quality information detected by the sensor device, and displays light of a corresponding color according to the air quality information to inform the user of the air quality at this time.
  • the fresh air device 2000 further includes a fresh air shell 2100.
  • the fresh air shell 2100 is provided with a fresh air channel 2200 and a dirty air channel 2300.
  • the fresh air shell 2100 is provided with a fresh air inlet 2210 and fresh air communicating with the fresh air channel 2200.
  • the fresh air device 2000 further includes a heat exchange core 2400.
  • the heat exchange core 2400 is disposed in the fresh air casing 2100.
  • the heat exchange core 2400 communicates with the fresh air passage 2200 and the dirty air passage 2300, so that The fresh air in the fresh air channel 2200 and the dirty air in the dirty air channel 2300 exchange heat in the heat exchange core 2400.
  • fresh air can be introduced to renew indoor air and exhaust indoor dirty air to improve air quality.
  • Fresh air and dirty air can exchange energy through a full heat exchanger for energy recovery and reduce energy loss.
  • the air conditioner indoor unit of the present invention is mainly composed of upper and lower parts, the upper part is a cooling and heating device 1000, and the lower part is a fresh air device 2000. Among them, the assembly and disassembly of the various components of the air-conditioning indoor unit are shown in FIGS. 8 to 17.
  • the cooling and heating device 1000 includes an air inlet panel member 1100, an evaporator member 1200, an air duct member 1300, an air outlet frame member 1400, and a top cover 1600.
  • the air inlet panel component 1100 includes an air inlet panel and an air inlet filter.
  • the evaporator component 1200 includes an evaporator, a side plate, an evaporator bracket, and a water receiving tray.
  • the air duct component 1300 includes an air duct, a cross-flow air blade, an air outlet panel, a sweep blade, an air duct drive motor, and an air duct drive gear.
  • the evaporator component 1200 is fixed to the air inlet panel component 1100 by screws provided up, down, left, and right.
  • the air channel component 1300 is fixed to the evaporator component 1200 and the air inlet panel component 1100 by snaps on the left and right sides.
  • the fresh air device 2000 further includes a motor 2500, a fresh air blade 2600, an exhaust air blade 2700, a first filter 2800, and a second filter 2900.
  • the fresh air device drives the fresh air blade 2600 and the exhaust blade 2700 to rotate by the motor 2500, and the indoor dirty air passes through the dirty air channel 2300 and the heat exchange core 2400 and is discharged to the outside.
  • the outdoor fresh air is introduced into the room through the fresh air channel 2200, the first filter 2800, the heat exchange core 2400, and the first filter 2800.
  • the dirty air and the fresh air exchange sensible and latent heat in the heat exchange core 2400.
  • the outdoor air temperature is higher than the indoor air temperature, and the fresh air passes through the heat exchange core 2400, and a part of the energy is transferred to the indoor dirty air to be discharged to achieve the cooling effect.
  • the outdoor air temperature is lower than the indoor air temperature, and the fresh air passes the heat exchange core 2400 to absorb part of the energy from the dirty air to achieve the temperature increase effect.
  • the introduced fresh air will not be too high or too low in temperature, avoiding causing a severe increase in load after introduction or causing discomfort to the human body.
  • the exhaust air discharged can transfer part of the energy to the fresh air or absorb part of the energy from the fresh air to avoid energy waste.
  • fresh air can achieve a purification effect when passing through the first filter 2800 and the second filter 2900, thereby improving the quality of indoor air.
  • the fresh air is discharged upward through the fresh air outlet 2220, and can be brought to a distant place by the blower of the cooling and heating device 1000 to prevent the short circuit between the fresh air and the dirty air.
  • the indoor unit of the air conditioner includes an air outlet structure, the air outlet structure is connected to the fresh air device 2000, and the air outlet structure includes a wind blocking member 70, an air outlet channel housing 60 and a moving member 30 .
  • the moving member 30 is connected to the windshield member 70 and moves along the extending direction of the receiving hole to drive the windshield member 70 to move between the first position and the second position to move the windshield member
  • the accommodating hole is blocked, and when the windshield member 70 moves to the second position, it is separated from the accommodating hole, so that the air conditioner indoor unit emits wind through the gap between the accommodating hole and the windshield member 70.
  • the wind blocking member 70 can be extended outward, and when the indoor unit of the air conditioner is closed, the wind blocking member 70 can be retracted into the panel 50 of the indoor unit to be flush with the appearance , Beautify the appearance.
  • the moving member 30 includes a support member 31 that is connected to the fresh air outlet channel housing 60, and the wind shield member 70 is movably disposed relative to the support member 31 and is slidingly connected to the support member 31 to support the block ⁇ ⁇ 70 ⁇ The wind part 70.
  • the moving member 30 further includes a transmission assembly 32, which is connected to the windshield member 70 to drive the windshield member 70 to move.
  • the transmission assembly 32 includes a transmission gear 321 and a transmission rack 322 that meshes with the transmission gear 321, the transmission gear 321 is in transmission connection with the transmission rack 322, and the windshield member 70 is connected with the transmission rack 322, so that The windshield member 70 is moved by the transmission gear 321 and the transmission rack 322.
  • Such an arrangement has a simple structure, stable and reliable operation, easy installation and cost saving.
  • the moving member 30 further includes a support member 31, and the wind shield member 70 is slidingly connected to the support member 31; the moving member 33, the moving member 33 is slidingly connected to the support member 31 and is located on the support member 31 Above, the transmission rack 322 is disposed on the moving member 33, and the windshield member 70 is fixedly connected to the moving member 33, so that the windshield member 70 moves under the drive of the movable member 33.
  • the moving member 33 has a third accommodating space 331
  • the transmission gear 321 is located in the third accommodating space 331
  • the transmission rack 322 is disposed on the inner wall of the third accommodating space 331.
  • the moving part 30 further includes a driving motor 34, which is fixedly connected to the support 31, and the driving motor 34 is drivingly connected to the transmission gear 321, so that the transmission gear 321 is in the driving motor Rotate under the action of 34.
  • the driving motor 34 is disposed on a side of the supporting member 31 away from the moving member 33, and the supporting member 31 has a through hole so that the driving shaft of the driving motor 34 passes through the through hole and is connected to the transmission gear 321.
  • the motor mounting portion of the drive motor 34 is wrapped with a rubber washer and fixed on the support 31 by screws, so as to effectively reduce the noise caused by the vibration of the drive motor 34; wherein, the motor mounting portion is a mounting angle bracket.
  • the drive shaft is installed and matched with the transmission gear 321 through the edge-cutting method, and locked with the retaining ring 324 to prevent the transmission gear 321 from falling off.
  • the supporting member 31 has a first sliding groove 311
  • the moving member 33 has a first sliding portion 333 adapted to the first sliding groove 311, and at least part of the first sliding portion 333 is slidably disposed on the first Inside the chute 311.
  • the arrangement of the first sliding groove 311 guides the movement of the moving member 33 and restricts the moving member 33 from moving up and down.
  • the moving element 33 includes a moving element body portion, and the first sliding portion 333 is connected to the moving element body portion.
  • the moving element body portion has oppositely disposed first and second ends.
  • the first sliding groove 311 is two,
  • the two first sliding portions 333 are provided in one-to-one correspondence with the two first sliding grooves 311, and each first sliding portion 333 is slidably disposed in the corresponding first sliding groove 311.
  • the first sliding portion 333 has a plurality of first sliding posts 3331, which are spaced apart along the extending direction of the first sliding portion 333, and each of the first sliding posts 3331
  • the first sliding portion 333 extends in the width direction, and each first sliding post 3331 protrudes from an end surface of the first sliding portion 333 far away from the main body of the moving member, so that the first sliding portion 333 passes through the first sliding post 3331 and the first sliding groove
  • the groove bottom of 311 is in contact.
  • At least a portion of the outer surface of the first sliding post 3331 protruding from the end surface of the first sliding portion 333 away from the main body of the moving member is a spherical crown surface. Such an arrangement can reduce the frictional resistance between the moving member 33 and the first sliding groove 311.
  • At least a portion of the end surface of the first sliding portion 3331 protruding from the first sliding portion 333 away from the main body of the moving member is at least a portion of a spherical structure.
  • At least part of the end surface of the first sliding portion 3331 protruding from the first sliding portion 333 away from the main body of the moving member is hemispherical.
  • the first sliding post 3331 protrudes from the two side walls of the first sliding part 333, so that both side walls of the first sliding part 333 pass through the groove walls of the first sliding post 3331 and the first sliding groove 311 contact.
  • Such an arrangement can reduce the frictional resistance between the moving member 33 and the first sliding groove 311.
  • a groove wall of the first sliding groove 311 is located above the first sliding portion 333 to stop the first sliding portion 333, thereby preventing the first sliding portion 333 from jumping up and down.
  • the supporting member 31 is provided with a rolling portion 312, the moving member 33 has a fourth accommodating space 334, and the rolling portion 312 is disposed in the fourth accommodating space 334;
  • a rolling groove 335 suitable for the rolling portion 312 is provided on the inner wall, and the rolling portion 312 is rollably disposed in the rolling groove 335.
  • the provision of the rolling portion 312 can assist the movement of the moving member 33 and can also limit the displacement of the moving member 33 in a direction perpendicular to the moving direction.
  • the rolling portion 312 is a roller.
  • the rolling groove 335 there are two rolling grooves 335, and the two rolling grooves 335 are oppositely disposed on both sides of the rolling portion 312.
  • the rolling groove 335 is used to cooperate with the rolling part 312 to limit the displacement of the moving part 33 in a direction perpendicular to the moving direction.
  • the rolling part 312 is in rolling contact with the moving part 33, effectively reducing the moving parts 33 Friction resistance during movement.
  • a pillar is protruded from the supporting member 31 for installing the rolling portion 312, and the rolling portion 312 is installed on the pillar through the first screw 325.
  • a washer 326 is provided between the first screw 325 and the rolling portion 312 to facilitate smooth rolling of the rolling portion 312.
  • the moving member 33 has a first moving block 336, a first stop block 313 is provided on the support member 31, and the first stop block 313 is provided on the support member 31 is close to the end of the windshield member 70 to stop the first moving block 336.
  • the transmission assembly 32 includes a push rod 323. At least part of the push rod 323 moves along the extending direction of the receiving hole. The wind member 70 is moved by the push rod 323.
  • the push rod 323 is an electric push rod.
  • the electric push rod is an electric telescopic machine, one end of which is installed on the air outlet housing 60 by screws, and the other end of the telescopic rod is telescopically driven by electric power.
  • the hinged connection can drive the windshield member 70 to move.
  • the moving member 30 includes a support 31; the windshield member 70 has a second mounting portion 72 including a mounting rod 721 and two support plates 722, one end of the mounting rod 721 It is connected to one support plate 722, the other end of the mounting rod 721 is connected to another support plate 722, the push rod 323 is connected to the mounting rod 721, and the wind shield member 70 is slidingly connected to the support 31 through two support plates 722.
  • the support member 31 has a second sliding slot 314, and each supporting plate 722 has a second sliding portion 723 matching the second sliding slot 314, and there are two second sliding slots 314.
  • the two second sliding portions 723 are provided in one-to-one correspondence with the two second sliding grooves 314, and at least part of each second sliding portion 723 is slidably disposed in the corresponding second sliding groove 314.
  • the second chute 314 plays a guiding role.
  • a groove wall of the second sliding groove 314 is located above the second sliding portion 723 to stop the second sliding portion 723, thereby preventing the second sliding portion 723 from jumping up and down.
  • At least one support plate 722 is provided with a second moving block 724, and a second stop block 315 is provided on the support 31, and the second stop block 315 is provided on the support 31 Close to one end of the windshield member 70 to stop the second moving block 724.
  • the electric push rod is a telescopic mechanism, which has a simpler structure and higher assembly efficiency than a rack and pinion pushing mechanism.
  • the cover 20 has a to-be-operated position and an installation position.
  • the cover 20 is detachably provided on the windshield 10 so that the cover 20 is located It is positioned with the windshield 10 in the operating position, and fixedly connected with the windshield 10 when the cover 20 is in the installation position.
  • the cover 20 moves from the position to be operated to the installation position to complete the installation of the cover 20; when the cover 20 is removed, the cover 20 is moved from the installation position to the position to be operated to complete the cover 20 Demolition.
  • the cover 20 is provided with a first connection component 21 on the side near the windshield 10.
  • the windshield 10 includes a windshield body 12, and the windshield body 12 is near the cover
  • One side of the component 20 is provided with a second connection component 11 suitable for the first connection component 21, the first connection component 21 is connected to the second connection component 11, so that the cover 20 is connected to the second through the first connection component 21
  • the assembly 11 is connected to the windshield 10. This arrangement makes the assembly structure smooth on the inside and outside, is not easily deformed, and has a beautiful structure.
  • the second connection component 11 includes a first mounting portion 111
  • the first connection component 21 includes a first locking member 211 that cooperates with the first mounting portion 111.
  • the cover 20 is in the mounting position, the first card The setting piece 211 is locked in the first mounting portion 111; the first mounting portion 111 is adjustably disposed on the windshield body portion 12 to adjust the first mounting portion 111 to make the windshield body portion 12 and the first mounting portion 111 stuck or detached.
  • the first mounting portion 111 is located on the lower side of the first accommodating space.
  • an adjustment gap is provided on the windshield body 12, and the adjustment gap encloses an adjustment plate 1111 to move the first mounting portion 111 by pushing the adjustment plate 1111, so that the windshield body 12 and the first installation portion 111 Break away. In this way, disassembly by pressing the adjustment plate 1111 is convenient and simple, and the efficiency is high.
  • the cover 20 moves from the position to be operated to the mounting position.
  • the first mounting portion 111 is pressed and moves toward the cover 20
  • the first A mounting portion 111 is detached from the first locking member 211, so that the covering member 20 is moved from the mounting position to the position to be operated.
  • the adjustment gap includes a plurality of division grooves, and the plurality of division grooves extend from one end surface to the other end surface of the windshield main body portion 12.
  • a plurality of the divided grooves penetrate the windshield body 12.
  • the plurality of dividing grooves includes a first dividing groove, a second dividing groove, and a third dividing groove.
  • the first dividing groove is arranged parallel to the second dividing groove, and one end of the third dividing groove communicates with one end of the first dividing groove The other end of the third dividing groove communicates with the one end of the second dividing groove to surround the adjustment plate 1111 into a rectangular plate.
  • the first clamping member 211 has a first connecting portion 2111 and a hook 2112 perpendicularly connected to the first connecting portion 2111.
  • the first mounting portion 111 includes a first supporting portion 1112 and a connecting portion connected to the first supporting portion 1112
  • the first mounting plate 1113 and the first support portion 1112 are connected to the adjusting plate 1111.
  • the first mounting plate 1113 has a first through hole, so that when the cover 20 is in the mounting position, the hook 2112 is locked in the first through hole.
  • the hook 2112 When the cover 20 is in the position to be operated, the hook 2112 is located on the side of the first mounting plate 1113 near the fresh air channel, and when the cover 20 is in the installation position, the hook 2112 is locked in the first passage hole.
  • the second connection assembly 11 includes a plurality of second mounting portions 112, the plurality of second installation portions 112 are spaced around the middle of the windshield body portion 12, and the first connection component 21 includes a plurality of second clamping In the component 212, the plurality of second locking members 212 are provided in a one-to-one correspondence with the plurality of second mounting portions 112, and each second locking member 212 is locked in the corresponding second mounting portion 112.
  • one of the second mounting portions 112 is located on the upper side of the first accommodating space, and is disposed opposite to the first mounting portion 111, and the two second mounting portions 112 are relatively disposed in the first housing The left and right sides of the space.
  • the second clamping member 212 has a second connection portion 2121 and a stop portion 2122 perpendicularly connected to the second connection portion 2121, and the second mounting portion 112 has a second support portion 1121 and is connected to the second support portion 1121
  • the second mounting plate 1122, the second support portion 1121 is connected to the windshield 10, the second mounting plate 1122 is provided with a second through hole, at least part of the stop portion 2122 passes through the second through hole and is locked in the first Second mounting part 112.
  • the windshield 10 and the cover 20 are made of plastic material. Such set-up costs are low.
  • the air conditioner indoor unit of the present invention can provide fresh air on the side close to the air outlet of the air conditioner indoor unit by placing the accommodating hole 53 on the side near the air outlet of the fresh air device 2000, such an arrangement can make the air conditioner output fresh air Fresh air at the outlet blows to different locations indoors to avoid short circuit of fresh air and dirty air, and enhance the mobility of fresh air.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

一种空调室内机,包括新风装置(2000),新风装置(2000)具有新风出口(2220),空调室内机还包括:室内机面板(50),用于遮挡空调室内机的出风口,室内机面板具有容纳孔(53),容纳孔(53)与新风出口(2220)连通,容纳孔(53)位于新风装置(2000)靠近出风口的一侧。该空调室内机解决了现有技术中空调室内机的新风出口处的新风流动较差的问题。

Description

空调室内机 技术领域
本发明涉及家用电器领域,具体而言,涉及一种空调室内机。
背景技术
近年来,由于经济规模的迅速扩大和城市化进程加快,大气污染日趋严重,在中国大多数城市均出现了常年的雾霾天气。PM2.5浓度的增加,直接导致灰霾天气频发和雾中有毒、有害物质的大幅增加,已严重威胁着人类的身体健康。在这种情况下,常规的家用舒适性空调已不能满足人们的需要,健康、舒适、环保已成为现代空调发展的目标。
对于普通空调,为保证其空调效果,要求空调房间必须封闭,其结果是室内的微尘、烟雾、细菌、病毒、废气不断增加,氧气含量不断降低,空气质量越来越差。近年来,随着“空调病”日益引起人们的重视,已经开始要求大家不要长期呆在空调房间里,而且要通过开窗通新风或者是通过室内排风形成负压由门、窗缝隙渗漏的方式给房间补新风,改善室内的环境。
目前,市场上既有单一的空气过滤系统净化器,也有为节能将全热交换器与空气过滤系统相结合的纯新风系统净化器,可用以改善室内环境污染问题。
空调的发展趋势要求具备普通空调的功能外,还应该具备:
(1)换新风功能;
(2)消除污染净化空气功能;
(3)节能、热量回收功能。
发明内容
本发明的主要目的在于提供一种空调室内机,以解决现有技术中空调室内机的新风出口处的新风流动较差的问题。
为了实现上述目的,本发明提供了一种空调室内机,包括新风装置,新风装置具有新风出口,空调室内机还包括:室内机面板,用于遮挡空调室内机的出风口,室内机面板具有容纳孔,容纳孔与新风出口连通,容纳孔位于新风装置靠近出风口的一侧。
进一步地,空调室内机还包括:挡风部件,挡风部件的至少部分设置在容纳孔内,挡风部件具有第一位置和第二位置,挡风部件在第一位置和第二位置之间可移动地设置,以在挡风部件处于第一位置时封堵容纳孔,并在挡风部件运动至第二位置时与容纳孔分离,以使新风装置通过容纳孔与挡风部件之间的间隙出风。
进一步地,挡风部件包括:挡风件,挡风件位置可调节地设置在容纳孔内,当挡风部件处于第一位置时,挡风件封堵在容纳孔内;当挡风部件处于第二位置时,挡风件与室内机面板分离。
进一步地,容纳孔包括锥形孔段,挡风件的外壁面与锥形孔段的内壁面相配适。
进一步地,挡风部件包括:遮盖件,遮盖件与挡风件连接且位于挡风件远离新风装置的一侧,遮盖件盖设在挡风件上,以遮挡挡风件。
进一步地,遮盖件为圆盘结构,遮盖件的外表面与室内机面板平齐。
进一步地,空调室内机包括:出风通道壳体,出风通道壳体设置在室内机面板的内侧,出风通道壳体具有出风通道,出风通道的一端与新风出口连通,出风通道的另一端与容纳孔连通,以使新风通过出风通道进入容纳孔内。
进一步地,挡风件包括挡风主体部和与挡风主体部连接的容纳部,容纳部位于挡风主体部靠近新风装置的一侧;容纳部设置在出风通道的下方,挡风主体部设置在出风通道的前方,以在挡风部件位于第二位置时,新风经出风通道从容纳孔与挡风主体部之间的间隙排出。
进一步地,容纳部具有第一容纳空间,空调室内机包括:运动部件,运动部件与出风通道壳体连接,运动部件的至少部分位于第一容纳空间内,运动部件与挡风部件传动连接,以带动挡风部件移动。
进一步地,出风通道靠近挡风部件的一端为条形通道。
进一步地,条形通道为弧形,条形通道具有弧形曲面,容纳部具有与弧形曲面相配适的外壁面,以在挡风部件位于第一位置时,容纳部位于出风通道的下方。
进一步地,室内机面板包括:前面板和设置在前面板下方的下面板,容纳孔设置在前面板上,前面板具有相对设置的第一端和第二端,前面板具有凸出于第二端的凸出部,容纳孔的至少部分设置在凸出部上,下面板具有与凸出部相配适的凹槽,以使下面板安装在前面板上。
进一步地,凸出部具有安装面和与安装面连接的止挡面,下面板的内侧面与安装面贴合,凹槽抵接在止挡面上。
进一步地,止挡面为弧形曲面,凹槽为与止挡面相配适的弧形凹槽。
进一步地,空调室内机还包括:制冷制热装置,制冷制热装置位于新风装置的上方;其中,新风出口设置在新风装置的上端。
进一步地,空调室内机还包括:感应装置,用于检测室内空气的空气质量;发光装置,设置在遮盖件上且位于挡风部件内,发光装置与感应装置信号连接,以接收感应装置所检测到的空气质量信息,并根据空气质量信息显示相应颜色的光。
本发明的空调室内机通过将容纳孔设置在新风装置靠近出风口的一侧,可以使新风在靠近空调室内机的出风口的一侧出风,这样的设置可以使空调出风将新风出口处的新风吹送到室内的不同位置,避免新风和污风短路,增强新风的流动性。
附图说明
构成本申请的一部分的说明书附图用来提供对本发明的进一步理解,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1示出了根据本发明的空调室内机的实施例的正视图;
图2示出了根据本发明的空调室内机的实施例的侧视图;
图3示出了根据本发明的空调室内机的实施例的俯视图;
图4示出了根据本发明的空调室内机的实施例的爆炸图;
图5示出了根据本发明的空调室内机的第一个角度的剖视图;
图6示出了根据本发明的空调室内机的第二个角度的剖视图;
图7示出了根据本发明的空调室内机的第三个角度的剖视图;
图8示出了根据本发明的空调室内机的蒸发器部件和进风面板部件的装配图;
图9示出了根据本发明的空调室内机的蒸发器部件和进风面板部件的拆分图;
图10示出了根据本发明的空调室内机的风道部件的装配图;
图11示出了根据本发明的空调室内机的风道部件的拆分图;
图12示出了根据本发明的空调室内机的新风装置和出风口结构的装配图;
图13示出了根据本发明的空调室内机的新风装置和出风口结构的拆分图;
图14示出了根据本发明的空调室内机的前面板的装配图;
图15示出了根据本发明的空调室内机的前面板的拆分图;
图16示出了根据本发明的空调室内机的下面板的装配图;
图17示出了根据本发明的空调室内机的下面板的拆分图;
图18示出了根据本发明的出风口结构的一个实施例的拆分图;
图19示出了根据本发明的出风口结构的运动部件的一个角度的结构示意图;
图20示出了根据本发明的出风口结构的的运动部件的移动件的结构示意图;
图21示出了根据本发明的出风口结构的的运动部件的另一个角度的结构示意图;
图22示出了根据本发明的出风口结构的另一个实施例的拆分图;
图23示出了根据本发明的出风口结构的另一个实施例的一个角度的结构示意图;
图24示出了根据本发明的出风口结构的另一个实施例的另一个角度的结构示意图;
图25示出了根据本发明的出风口结构的挡风件的结构示意图;
图26示出了根据本发明的出风口结构的挡风件的正视图;
图27示出了根据本发明的出风口结构的挡风件的一个角度的侧视图;
图28示出了根据本发明的出风口结构的挡风件的另一个角度的侧视图;
图29示出了根据本发明的出风口结构的遮盖件的结构示意图;
图30示出了根据本发明的出风口结构的遮盖件的正视图;
图31示出了根据本发明的出风口结构的遮盖件的一个角度的侧视图;
图32示出了根据本发明的出风口结构的遮盖件的另一个角度的侧视图;
图33示出了根据本发明的出风口结构的遮盖件安装在挡风件上的示意图;以及
图34示出了根据本发明的出风口结构的遮盖件从挡风件上拆除的示意图。
其中,上述附图包括以下附图标记:
10、挡风件;12、挡风主体部;13、容纳部;20、遮盖件;30、运动部件;50、室内机面板;51、前面板;511、凸出部;52、下面板;53、容纳孔;60、出风通道壳体;61、出风通道;70、挡风部件;
1000、制冷制热装置;1100、进风面板部件;1200、蒸发器部件;1300、风道部件;1400、出风框部件;1600、顶盖;
2000、新风装置;2100、新风壳体;2200、新风通道;2210、新风进口;2220、新风出口;2300、污风通道;2310、污风进口;2320、污风出口;2400、热交换芯体;2500、电机;2600、新风风叶;2700、排风风叶;2800、第一过滤网;2900、第二过滤网;
31、支撑件;311、第一滑槽;312、滚动部;313、第一止挡块;314、第二滑槽;315、第二止挡块;32、传动组件;321、传动齿轮;322、传动齿条;323、推杆;324、挡圈;325、第一螺钉;326、垫片;33、移动件;331、第三容纳空间;333、第一滑动部;3331、第一滑动柱;334、第四容纳空间;335、滚动槽;336、第一移动块;34、驱动电机;72、第二安装部;721、安装杆;722、支撑板;723、第二滑动部;724、第二移动块;
11、第二连接组件;111、第一安装部;1111、调节板;1112、第一支撑部;1113、第一安装板;112、第二安装部;1121、第二支撑部;1122、第二安装板;12、挡风主体部;13、 容纳部;20、遮盖件;21、第一连接组件;211、第一卡设件;2111、第一连接部;2112、卡钩;212、第二卡设件;2121、第二连接部;2122、止挡部。
具体实施方式
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本发明。
本发明提供了一种空调室内机,请参考图1至图17,包括新风装置2000,新风装置2000具有新风出口2220,空调室内机还包括:室内机面板50,用于遮挡空调室内机的出风口,室内机面板50具有容纳孔53,容纳孔53与新风出口2220连通,容纳孔53位于新风装置2000靠近出风口的一侧。
本发明的空调室内机通过将容纳孔53设置在新风装置2000靠近出风口的一侧,可以使新风在靠近空调室内机的出风口的一侧出风,这样的设置可以使空调出风将新风出口处的新风吹送到室内的不同位置,避免新风和污风短路,增强新风的流动性。
在本实施例中,空调室内机还包括挡风部件70,挡风部件70的至少部分设置在容纳孔53内,挡风部件70具有第一位置和第二位置,挡风部件70在第一位置和第二位置之间可移动地设置,以在挡风部件70处于第一位置时封堵容纳孔53,并在挡风部件70运动至第二位置时与容纳孔53分离,以使新风装置2000通过容纳孔53与挡风部件70之间的间隙出风。
具体实施时,挡风部件70包括挡风件10,挡风件10位置可调节地设置在容纳孔53内,当挡风部件70处于第一位置时,挡风件10封堵在容纳孔内;当挡风部件70处于第二位置时,挡风件10与室内机面板50分离。
具体实施时,容纳孔53包括锥形孔段,挡风件10的外壁面与锥形孔段的内壁面相配适。这样的设置可以使得新风往上前方出风,可以使空调室内机的出风将新风带到较远的地方。
在本实施例中,挡风部件70包括遮盖件20,遮盖件20与挡风件10连接且位于挡风件10远离新风装置2000的一侧,遮盖件20盖设在挡风件10上,以遮挡挡风件10。这样,挡风件10和遮盖件20组成较为密封的空间,可以保护其中的运动机构,还可以防尘、防虫、降低运动的噪音;并且,这样的设置可以避免孩童可能接触到运动部件,提高安全性。
具体实施时,遮盖件20为圆盘结构,遮盖件20的外表面与室内机面板50平齐。这样的设置使得出风口结构更为美观。
在本实施例中,空调室内机包括出风通道壳体60,出风通道壳体60设置在室内机面板50的内侧,出风通道壳体60具有出风通道61,出风通道61的一端与新风出口2220连通,出风通道61的另一端与容纳孔连通,以使新风通过出风通道61进入容纳孔内;其中,新风为新风装置2000产生的气体。
具体实施时,挡风件10包括挡风主体部12和与挡风主体部12连接的容纳部13,容纳部13位于挡风主体部12靠近新风装置2000的一侧;容纳部13设置在出风通道61的下方,挡风主体部12设置在出风通道61的前方,以在挡风部件70位于第二位置时,新风经出风通道61从容纳孔53与挡风主体部12之间的间隙排出。
为了实现挡风部件70的运动,容纳部13具有第一容纳空间,空调室内机包括运动部件30,运动部件30与出风通道壳体60连接,运动部件30的至少部分位于第一容纳空间内,运动部件30与挡风部件70传动连接,以带动挡风部件70移动。
具体实施时,第一容纳空间设置有运动部件安装板,运动部件30的至少部分固定设置在运动部件安装板上,以使运动部件30带动挡风件10移动。
具体实施时,出风通道61靠近挡风部件70的一端为条形通道。
优选地,条形通道为弧形,条形通道具有弧形曲面,容纳部13具有与弧形曲面相配适的外壁面,以在挡风部件70位于第一位置时,容纳部13位于出风通道61的下方。
具体实施时,室内机面板50包括前面板51和设置在前面板51下方的下面板52,容纳孔53设置在前面板51上,前面板51具有相对设置的第一端和第二端,前面板51具有凸出于第二端的凸出部511,容纳孔的至少部分设置在凸出部511上,下面板52具有与凸出部511相配适的凹槽,以使下面板52安装在前面板51上。
具体实施时,凸出部511具有安装面和与安装面连接的止挡面,下面板52的内侧面与安装面贴合,凹槽抵接在止挡面上。
具体实施时,止挡面为弧形曲面,凹槽为与止挡面相配适的弧形凹槽。
在本实施例中,空调室内机还包括制冷制热装置1000,制冷制热装置1000位于新风装置2000的上方;其中,新风出口2220设置在新风装置2000的上端。
在本实施例中,空调室内机还包括感应装置,用于检测室内空气的空气质量;空调室内机还包括发光装置,发光装置设置在遮盖件20上且位于挡风部件70内,发光装置与感应装置信号连接,以接收感应装置所检测到的空气质量信息,并根据空气质量信息显示相应颜色的光,以告知用户此时的空气质量。
在本实施例中,新风装置2000还包括新风壳体2100,新风壳体2100内设置有新风通道2200和污风通道2300,新风壳体2100上设置有与新风通道2200连通的新风进口2210和新风出口2220、以及与污风通道2300连通的污风进口2310和污风出口2320。
在本实施例中,新风装置2000还包括热交换芯体2400,热交换芯体2400设置在新风壳体2100内,热交换芯体2400与新风通道2200和污风通道2300均连通,以使位于新风通道2200内的新风与位于污风通道2300内的污风在热交换芯体2400内发生热交换。通过将普通空调与全热交换进行结合,可以引进新风更新室内空气,排出室内污风提高空气品质,新风与污风通过全热交换器可以交换能量,进行能量回收,降低能量损失。
本发明的空调室内机主要由上下两部分组成,上部分是制冷制热装置1000,下部分是新风装置2000。其中,空调室内机的各个部件的装配与拆分如图8至图17所示。
在本实施例中,制冷制热装置1000包括进风面板部件1100、蒸发器部件1200、风道部件1300、出风框部件1400和顶盖1600。
具体实施时,进风面板部件1100包括进风面板和进风过滤网。
具体实施时,蒸发器部件1200包括蒸发器、边板、蒸发器支架和接水盘。
具体实施时,风道部件1300包括风道、贯流风叶、出风面板、扫风叶片、风道驱动电机和风道驱动齿轮。
具体实施时,蒸发器部件1200通过上下左右设置的螺钉与进风面板部件1100固定。
具体实施时,风道部件1300通过左右两边的卡扣与蒸发器部件1200和进风面板部件1100固定。
在本实施例中,新风装置2000还包括电机2500、新风风叶2600、排风风叶2700、第一过滤网2800和第二过滤网2900。
在本实施例中,新风装置通过电机2500带动新风风叶2600和排风风叶2700旋转,室内污风通过污风通道2300、热交换芯体2400,排出到室外。室外新风通过新风通道2200、第一过滤网2800、热交换芯体2400、第一过滤网2800,引入到室内。污风和新风在热交换芯体2400内进行显热和潜热的交换。
例如,在夏天,室外空气温度高于室内空气温度,新风通过热交换芯体2400,一部分能量传递给室内污风排出,实现降温效果。
例如,在冬天,室外空气温度低于室内空气温度,新风通过热交换芯体2400,从污风中吸收一部分能量,实现升温效果。
由此,可以实现引进的新风不至于温度太高或者太低,避免导致引进后造成严重增加负荷或者造成人体的不适。同时排出的污风可以将一部分能量传递给新风或者从新风中吸收一部分能量,避免能量浪费。
在本实施例中,新风经过第一过滤网2800和第二过滤网2900时可以实现净化效果,从而提高室内空气的质量。新风通过新风出口2220往上前方出风,可以通过制冷制热装置1000的风机吹出风带到较远处,防止新风与污风短路。
在一个实施例中,请参考图18至图24,空调室内机包括出风口结构,出风口结构与新风装置2000连接,出风口结构包括挡风部件70、出风通道壳体60和运动部件30。
在本实施例中,运动部件30的至少部分与挡风部件70连接且沿容纳孔的延伸方向移动,以带动挡风部件70在第一位置和第二位置之间移动,以在挡风部件70运动至第一位置时封堵容纳孔,并在挡风部件70运动至第二位置时与容纳孔分离,以使空调室内机通过容纳孔与 挡风部件70之间的间隙出风。通过设置挡风部件70和运动部件30,且运动部件30沿容纳孔的延伸方向移动,以带动挡风部件70伸缩,可以使运动部件30方便快捷地带动挡风部件70伸缩,结构简单,运行平稳可靠,装配效率更高,同时节约成本。
其中,采用该运动部件30,可以在使用空调室内机时,使挡风部件70向外伸出,并在关闭空调室内机时,使挡风部件70收回室内机面板50内,与外观平齐,美化外观。
在本实施例中,运动部件30包括支撑件31,支撑件31与新风出风通道壳体60连接,挡风部件70相对支撑件31可移动地设置且与支撑件31滑动连接,以支撑挡风部件70。
为了实现挡风部件70的伸缩,运动部件30还包括传动组件32,传动组件32与挡风部件70传动连接,以带动挡风部件70移动。
在一个实施例中,传动组件32包括传动齿轮321和与传动齿轮321相啮合的传动齿条322,传动齿轮321与传动齿条322传动连接,挡风部件70与传动齿条322连接,以使挡风部件70在传动齿轮321与传动齿条322的作用下移动。这样的设置结构简单,运行稳定可靠,安装方便且节约成本。
在本实施例中,如图18所示,运动部件30还包括支撑件31,挡风部件70与支撑件31滑动连接;移动件33,移动件33与支撑件31滑动连接且位于支撑件31的上方,传动齿条322设置在移动件33上,挡风部件70与移动件33固定连接,以使挡风部件70在移动件33的带动下移动。
具体实施时,移动件33具有第三容纳空间331,传动齿轮321位于第三容纳空间331内,传动齿条322设置在第三容纳空间331的内壁上。
为了驱动传动齿轮321转动,如图18所示,运动部件30还包括驱动电机34,驱动电机34与支撑件31固定连接,驱动电机34与传动齿轮321驱动连接,以使传动齿轮321在驱动电机34的作用下转动。
具体实施时,驱动电机34设置在支撑件31远离移动件33的一侧,支撑件31上具有通过孔,以使驱动电机34的驱动轴穿过通过孔与传动齿轮321连接。
具体实施时,驱动电机34的电机安装部被橡胶垫圈包裹,并通过螺钉固定在支撑件31上,以便有效减小驱动电机34震动引起的噪音;其中,电机安装部为安装角架。
具体实施时,驱动轴通过削边方式与传动齿轮321安装配合,并用挡圈324锁紧,防止传动齿轮321脱落。
在本实施例中,支撑件31具有第一滑槽311,移动件33具有与第一滑槽311相配适的第一滑动部333,第一滑动部333的至少部分可滑动地设置在第一滑槽311内。第一滑槽311的设置对移动件33的移动起导向作用,且限制移动件33上下移动。
具体实施时,如图19所示,移动件33包括移动件主体部,第一滑动部333与移动件主体部连接,移动件主体部具有相对设置的第一端和第二端,第一滑动部333为两个,一个第 一滑动部333设置在移动件主体部的第一端,另一个第一滑动部333设置在移动件主体部的第二端;第一滑槽311为两个,两个第一滑动部333与两个第一滑槽311一一对应地设置,各个第一滑动部333可滑动地设置在相应的第一滑槽311内。
具体实施时,如图20所示,第一滑动部333具有多个第一滑动柱3331,多个第一滑动柱3331沿第一滑动部333的延伸方向间隔设置,各个第一滑动柱3331沿第一滑动部333的宽度方向延伸,各个第一滑动柱3331突出于第一滑动部333的远离移动件主体部的端面,以使第一滑动部333通过第一滑动柱3331与第一滑槽311的槽底接触。
具体实施时,第一滑动柱3331突出于第一滑动部333的远离移动件主体部的端面的至少部分的外表面为球冠面。这样的设置可以减小移动件33与第一滑槽311间的摩擦阻力。
具体实施时,第一滑动柱3331突出于第一滑动部333的远离移动件主体部的端面的至少部分为球状结构的至少部分。
优选地,第一滑动柱3331突出于第一滑动部333的远离移动件主体部的端面的至少部分为半球状。
具体实施时,第一滑动柱3331突出于第一滑动部333的两个侧壁,以使第一滑动部333的两个侧壁均通过第一滑动柱3331与第一滑槽311的槽壁接触。这样的设置可以减小移动件33与第一滑槽311间的摩擦阻力。
在本实施例中,第一滑槽311的一个槽壁位于第一滑动部333的上方,以止挡第一滑动部333,进而避免第一滑动部333上下蹿动。
在本实施例中,如图18所示,支撑件31上设置有滚动部312,移动件33具有第四容纳空间334,滚动部312设置在第四容纳空间334内;第四容纳空间334的内壁上设置有与滚动部312相配适的滚动槽335,滚动部312可滚动地设置在滚动槽335内。滚动部312的设置可以助力移动件33的移动,还可以限制移动件33的沿垂直于移动方向上的位移。
优选地,滚动部312为滚轮。
具体实施时,滚动槽335为两个,两个滚动槽335相对设置在滚动部312的两侧。滚动槽335用以和滚动部312配合,起到限制移动件33沿垂直于移动方向上的位移的作用,同时移动件33前后移动时,滚动部312与移动件33滚动接触,有效减少移动件33移动过程中的摩擦阻力。
具体实施时,支撑件31上凸起一根立柱,用于安装滚动部312,滚动部312通过第一螺钉325安装到立柱上。
具体实施时,第一螺钉325与滚动部312之间设置有垫片326,以便于滚动部312顺畅滚动。
为了限制移动件33最终推出时的位置,如图21所示,移动件33具有第一移动块336,支撑件31上设置有第一止挡块313,第一止挡块313设置在支撑件31靠近挡风部件70的一端,以止挡第一移动块336。
在另一个实施例中,如图22所示,传动组件32包括推杆323,推杆323的至少部分沿容纳孔的延伸方向移动,推杆323的一端与挡风部件70连接,以使挡风部件70在推杆323的作用下移动。
优选地,推杆323为电动推杆。其中,电动推杆是一种电动伸缩机器,其一端通过螺钉安装在出风通道壳体60上,其另一端的伸缩杆由电力驱动伸缩,该伸缩杆和挡风部件70的安装杆721为铰链式连接,从而可带动出挡风部件70移动。
具体实施时,如图23所示,运动部件30包括支撑件31;挡风部件70具有第二安装部72,第二安装部72包括安装杆721和两个支撑板722,安装杆721的一端与一个支撑板722连接,安装杆721的另一端与另一个支撑板722连接,推杆323与安装杆721连接,挡风部件70通过两个支撑板722与支撑件31滑动连接。
具体实施时,如图24所示,支撑件31具有第二滑槽314,各个支撑板722均具有与第二滑槽314相配适的第二滑动部723,第二滑槽314为两个,两个第二滑动部723与两个第二滑槽314一一对应地设置,各个第二滑动部723的至少部分可滑动地设置在相应的第二滑槽314内。第二滑槽314起到导向作用。
在本实施例中,第二滑槽314的一个槽壁位于第二滑动部723的上方,以止挡第二滑动部723,进而避免第二滑动部723上下蹿动。
为了限制挡风部件70最终推出时的位置,至少一个支撑板722上设置有第二移动块724,支撑件31上设置有第二止挡块315,第二止挡块315设置在支撑件31靠近挡风部件70的一端,以止挡第二移动块724。
在本实施例中,电动推杆为伸缩机构,相对齿轮齿条推送机构,结构更简单、装配效率更高。
在一个实施例中,请参考图25至图34,具体实施时,遮盖件20具有待操作位置和安装位置,遮盖件20可拆卸地设置在挡风件10上,以在遮盖件20位于待操作位置时与挡风件10定位,并在遮盖件20位于安装位置时与挡风件10固定连接。在安装遮盖件20时,遮盖件20由待操作位置移动至安装位置,以完成遮盖件20的安装;在拆除遮盖件20时,遮盖件20由安装位置移动至待操作位置,以完成遮盖件20的拆除。
为了实现挡风件10与遮盖件20的连接,遮盖件20靠近挡风件10的一侧设置有第一连接组件21,挡风件10包括挡风主体部12,挡风主体部12靠近遮盖件20的一侧设置有与第一连接组件21相配适的第二连接组件11,第一连接组件21与第二连接组件11连接,以使遮盖件20通过第一连接组件21与第二连接组件11与挡风件10连接。这样的设置使得装配结构在内侧,外侧平滑,不易变形,结构较为美观。
具体实施时,第二连接组件11包括第一安装部111,第一连接组件21包括与第一安装部111相配合的第一卡设件211,当遮盖件20处于安装位置时,第一卡设件211卡设在第一安装部111内;第一安装部111可调节地设置在挡风主体部12上,以通过调节第一安装部111,使挡风主体部12与第一安装部111卡紧或脱离。
优选地,第一安装部111位于第一容纳空间的下侧。
具体实施时,挡风主体部12上设置有调整间隙,调整间隙围成调节板1111,以通过推动调节板1111使第一安装部111移动,以使挡风主体部12与第一安装部111脱离。这样,采用按压调节板1111的方式拆卸,方便简单,效率较高。
其中,在第一卡设件211卡设在第一安装部111内的过程中,遮盖件20由待操作位置移动至安装位置,在第一安装部111受压朝向遮盖件20移动时,第一安装部111脱离第一卡设件211,以使遮盖件20由安装位置移动至待操作位置。
具体实施时,调整间隙包括多个分割槽,多个分割槽由挡风主体部12的一个端面延伸至另一个端面。
具体实施时,多个所述分割槽贯穿挡风主体部12。
具体实施时,多个分割槽包括第一分割槽、第二分割槽和第三分割槽,第一分割槽与第二分割槽平行设置,第三分割槽的一端与第一分割槽的一端连通,第三分割槽的另一端与第二分割槽的一端连通,以将调节板1111围成矩形板。
具体实施时,第一卡设件211具有第一连接部2111和与第一连接部2111垂直连接的卡钩2112,第一安装部111包括第一支撑部1112和与第一支撑部1112连接的第一安装板1113,第一支撑部1112与调节板1111连接,第一安装板1113具有第一通过孔,以在遮盖件20位于安装位置时卡钩2112卡设在第一通过孔内。
其中,在遮盖件20位于待操作位置时,卡钩2112位于第一安装板1113靠近新风通道的一侧,在遮盖件20位于安装位置时,卡钩2112卡设在第一通过孔内。
在本实施例中,第二连接组件11包括多个第二安装部112,多个第二安装部112绕挡风主体部12的中部间隔设置,第一连接组件21包括多个第二卡设件212,多个第二卡设件212与多个第二安装部112一一对应地设置,各个第二卡设件212卡设在相应的第二安装部112内。
优选地,第二安装部112为三个,其中一个第二安装部112位于第一容纳空间的上侧,与第一安装部111相对设置,两个第二安装部112相对设置在第一容纳空间的左右两侧。
具体实施时,第二卡设件212具有第二连接部2121和与第二连接部2121垂直连接的止挡部2122,第二安装部112具有第二支撑部1121和与第二支撑部1121连接的第二安装板1122,第二支撑部1121与挡风件10连接,第二安装板1122上设置有第二通过孔,止挡部2122的至 少部分穿过第二通过孔并卡设在第二安装部112上。在安装遮盖件20时,采用推入向下滑的方式装配,生产效率高。
具体实施时,挡风件10和遮盖件20由塑料材料制成。这样的设置成本较低。
从以上的描述中,可以看出,本发明上述的实施例实现了如下技术效果:
本发明的空调室内机通过将容纳孔53设置在新风装置2000靠近出风口的一侧,可以使新风在靠近空调室内机的出风口的一侧出风,这样的设置可以使空调出风将新风出口处的新风吹送到室内的不同位置,避免新风和污风短路,增强新风的流动性。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (16)

  1. 一种空调室内机,包括新风装置(2000),所述新风装置(2000)具有新风出口(2220),其特征在于,所述空调室内机还包括:
    室内机面板(50),用于遮挡所述空调室内机的出风口,所述室内机面板(50)具有容纳孔(53),所述容纳孔(53)与所述新风出口(2220)连通,所述容纳孔(53)位于所述新风装置(2000)靠近所述出风口的一侧。
  2. 根据权利要求1所述的空调室内机,其特征在于,所述空调室内机还包括:
    挡风部件(70),所述挡风部件(70)的至少部分设置在所述容纳孔(53)内,所述挡风部件(70)具有第一位置和第二位置,所述挡风部件(70)在所述第一位置和所述第二位置之间可移动地设置,以在所述挡风部件(70)处于第一位置时封堵所述容纳孔(53),并在所述挡风部件(70)运动至第二位置时与所述容纳孔(53)分离,以使所述新风装置(2000)通过所述容纳孔(53)与所述挡风部件(70)之间的间隙出风。
  3. 根据权利要求2所述的空调室内机,其特征在于,所述挡风部件(70)包括:
    挡风件(10),所述挡风件(10)位置可调节地设置在所述容纳孔(53)内,当所述挡风部件(70)处于所述第一位置时,所述挡风件(10)封堵在所述容纳孔(53)内;当所述挡风部件(70)处于所述第二位置时,所述挡风件(10)与所述室内机面板(50)分离。
  4. 根据权利要求3所述的空调室内机,其特征在于,所述容纳孔(53)包括锥形孔段,所述挡风件(10)的外壁面与所述锥形孔段的内壁面相配适。
  5. 根据权利要求3所述的空调室内机,其特征在于,所述挡风部件(70)包括:
    遮盖件(20),所述遮盖件(20)与所述挡风件(10)连接且位于所述挡风件(10)远离所述新风装置(2000)的一侧,所述遮盖件(20)盖设在所述挡风件(10)上,以遮挡所述挡风件(10)。
  6. 根据权利要求5所述的空调室内机,其特征在于,所述遮盖件(20)为圆盘结构,所述遮盖件(20)的外表面与所述室内机面板(50)平齐。
  7. 根据权利要求3所述的空调室内机,其特征在于,所述空调室内机包括:
    出风通道壳体(60),所述出风通道壳体(60)设置在室内机面板(50)的内侧,所述出风通道壳体(60)具有出风通道(61),所述出风通道(61)的一端与所述新风出口(2220)连通,所述出风通道(61)的另一端与所述容纳孔(53)连通,以使新风通过所述出风通道(61)进入所述容纳孔(53)内。
  8. 根据权利要求7所述的空调室内机,其特征在于,所述挡风件(10)包括挡风主体部(12)和与所述挡风主体部(12)连接的容纳部(13),所述容纳部(13)位于所述挡风主体部(12)靠近所述新风装置(2000)的一侧;所述容纳部(13)设置在所述出风通道(61) 的下方,所述挡风主体部(12)设置在所述出风通道(61)的前方,以在所述挡风部件(70)位于所述第二位置时,所述新风经所述出风通道(61)从所述容纳孔(53)与所述挡风主体部(12)之间的间隙排出。
  9. 根据权利要求8所述的空调室内机,其特征在于,所述容纳部(13)具有第一容纳空间,所述空调室内机包括:
    运动部件(30),所述运动部件(30)与所述出风通道壳体(60)连接,所述运动部件(30)的至少部分位于所述第一容纳空间内,所述运动部件(30)与所述挡风部件(70)传动连接,以带动所述挡风部件(70)移动。
  10. 根据权利要求8所述的空调室内机,其特征在于,所述出风通道(61)靠近所述挡风部件(70)的一端为条形通道。
  11. 根据权利要求10所述的空调室内机,其特征在于,所述条形通道为弧形,所述条形通道具有弧形曲面,所述容纳部(13)具有与所述弧形曲面相配适的外壁面,以在所述挡风部件(70)位于所述第一位置时,所述容纳部(13)位于所述出风通道(61)的下方。
  12. 根据权利要求1所述的空调室内机,其特征在于,所述室内机面板(50)包括:
    前面板(51)和设置在所述前面板(51)下方的下面板(52),所述容纳孔(53)设置在所述前面板(51)上,所述前面板(51)具有相对设置的第一端和第二端,所述前面板(51)具有凸出于所述第二端的凸出部(511),所述容纳孔(53)的至少部分设置在所述凸出部(511)上,所述下面板(52)具有与所述凸出部(511)相配适的凹槽,以使所述下面板(52)安装在所述前面板(51)上。
  13. 根据权利要求12所述的空调室内机,其特征在于,所述凸出部(511)具有安装面和与所述安装面连接的止挡面,所述下面板(52)的内侧面与所述安装面贴合,所述凹槽抵接在所述止挡面上。
  14. 根据权利要求13所述的空调室内机,其特征在于,所述止挡面为弧形曲面,所述凹槽为与所述止挡面相配适的弧形凹槽。
  15. 根据权利要求1所述的空调室内机,其特征在于,所述空调室内机还包括:
    制冷制热装置(1000),所述制冷制热装置(1000)位于所述新风装置(2000)的上方;其中,所述新风出口(2220)设置在所述新风装置(2000)的上端。
  16. 根据权利要求5所述的空调室内机,其特征在于,所述空调室内机还包括:
    感应装置,用于检测室内空气的空气质量;
    发光装置,设置在所述遮盖件(20)上且位于所述挡风部件(70)内,所述发光装置与所述感应装置信号连接,以接收感应装置所检测到的空气质量信息,并根据所述空气质量信息显示相应颜色的光。
PCT/CN2018/125033 2018-11-07 2018-12-28 空调室内机 WO2020093570A1 (zh)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024060715A1 (zh) * 2022-09-20 2024-03-28 青岛海尔空调器有限总公司 新风装置、空调器室内机及空调器

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI789825B (zh) * 2021-07-13 2023-01-11 魏榮宗 空調系統

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002130730A (ja) * 2000-10-30 2002-05-09 Kazutaro Oyabu 下吹出し上吸込み式空調機の改良
CN105371370A (zh) * 2015-11-19 2016-03-02 珠海格力电器股份有限公司 室内机的出风组件及具有其的空调器
CN105757950A (zh) * 2016-04-19 2016-07-13 宁波奥克斯空调有限公司 一种空调器
CN207299214U (zh) * 2017-08-18 2018-05-01 广东美的制冷设备有限公司 立式空调室内机和具有其的空调器
CN207962866U (zh) * 2018-01-30 2018-10-12 广东美的制冷设备有限公司 空调柜机和具有其的空调器
CN108679713A (zh) * 2018-05-21 2018-10-19 青岛海尔空调器有限总公司 空调室内机及其控制方法
CN209026956U (zh) * 2018-11-07 2019-06-25 珠海格力电器股份有限公司 空调室内机

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105485774A (zh) * 2016-01-22 2016-04-13 广东美的制冷设备有限公司 立式空调器室内机
CN106196358A (zh) * 2016-08-17 2016-12-07 张忠 新风空调一体机
CN107525169A (zh) * 2017-09-25 2017-12-29 广东美的制冷设备有限公司 空气处理模块和空调器

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002130730A (ja) * 2000-10-30 2002-05-09 Kazutaro Oyabu 下吹出し上吸込み式空調機の改良
CN105371370A (zh) * 2015-11-19 2016-03-02 珠海格力电器股份有限公司 室内机的出风组件及具有其的空调器
CN105757950A (zh) * 2016-04-19 2016-07-13 宁波奥克斯空调有限公司 一种空调器
CN207299214U (zh) * 2017-08-18 2018-05-01 广东美的制冷设备有限公司 立式空调室内机和具有其的空调器
CN207407438U (zh) * 2017-08-18 2018-05-25 广东美的制冷设备有限公司 立式空调室内机和具有其的空调器
CN207962866U (zh) * 2018-01-30 2018-10-12 广东美的制冷设备有限公司 空调柜机和具有其的空调器
CN108679713A (zh) * 2018-05-21 2018-10-19 青岛海尔空调器有限总公司 空调室内机及其控制方法
CN209026956U (zh) * 2018-11-07 2019-06-25 珠海格力电器股份有限公司 空调室内机

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024060715A1 (zh) * 2022-09-20 2024-03-28 青岛海尔空调器有限总公司 新风装置、空调器室内机及空调器

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