WO2023060887A1 - 空调室内柜机和空调器 - Google Patents

空调室内柜机和空调器 Download PDF

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Publication number
WO2023060887A1
WO2023060887A1 PCT/CN2022/092425 CN2022092425W WO2023060887A1 WO 2023060887 A1 WO2023060887 A1 WO 2023060887A1 CN 2022092425 W CN2022092425 W CN 2022092425W WO 2023060887 A1 WO2023060887 A1 WO 2023060887A1
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WO
WIPO (PCT)
Prior art keywords
air
guide
conditioning indoor
heat exchange
volutes
Prior art date
Application number
PCT/CN2022/092425
Other languages
English (en)
French (fr)
Inventor
尹晓英
王永涛
张蕾
袁俊军
Original Assignee
青岛海尔空调器有限总公司
青岛海尔空调电子有限公司
海尔智家股份有限公司
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Application filed by 青岛海尔空调器有限总公司, 青岛海尔空调电子有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2023060887A1 publication Critical patent/WO2023060887A1/zh

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    • 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
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • F24F1/0033Indoor units, e.g. fan coil units characterised by fans having two or more fans
    • 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
    • F24F1/0014Indoor units, e.g. fan coil units characterised by air outlets having two or more outlet openings
    • 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
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • F24F13/1413Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre using more than one tilting member, e.g. with several pivoting blades
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

Definitions

  • the present application relates to the technical field of air conditioning, in particular to an air conditioning indoor cabinet and an air conditioner.
  • the current air-conditioning indoor cabinet usually only has a single air supply system, and the air outlet is provided with a vertical swing leaf assembly, and the air supply direction from the air outlet to the space is adjusted by adjusting the deflection angle of the vertical swing leaf assembly.
  • the air supply range of the air outlet is small, which can only meet the air supply demand in a small space. If it is necessary to meet the air supply demand of a larger space, the space can only be swept by driving the swing blade assembly to swing.
  • the rotation speed of the wind rotor is constant, the air supply volume cannot be adjusted to meet the diversified air supply requirements of users, and there is a problem of insufficient air supply volume for larger spaces.
  • This application provides an air-conditioning indoor cabinet and an air conditioner, which are used to solve the problems that the air-conditioning indoor cabinet in the prior art cannot adjust the air supply volume when the wind wheel rotates at a constant speed, and the air supply volume is insufficient for larger spaces. .
  • the application provides an air conditioner indoor cabinet, including:
  • the casing has two first volutes arranged opposite to each other and two second volutes corresponding to the two first volutes, each of the first volutes is connected to the corresponding
  • An air passage is provided between the second volute, and a wind wheel is provided at the entrance of each air passage;
  • An air guide the air guide has two air guide surfaces arranged at an angle, and the two air guide surfaces are set in one-to-one correspondence with the two second volutes, so as to form two
  • the air duct corresponds to the two connected heat exchange air outlets, and the air guide can be movably installed on the housing to change the area of the two heat exchange air outlets; the air guide is provided with a fresh air outlet. duct and the fresh air outlet connected to the fresh air duct.
  • the fresh air outlet is arranged along the length direction of the heat exchange air outlet.
  • the fresh air duct extends along the length direction of the heat exchange air outlet, and a plurality of deflectors are arranged in the fresh air duct, and the plurality of deflectors Arranged at intervals along the extending direction of the fresh air ducts, for guiding the fresh air to the fresh air outlets.
  • the air guiding member is provided with two fresh air outlets, and the axes of the two fresh air outlets are arranged at an angle.
  • the housing includes a front panel, and the front panel is provided with a through hole corresponding to the position between the two second volutes, and the front panel includes two The two second volutes are connected to the two front panel parts in a one-to-one correspondence with the adjacent front panel parts arranged at an angle, and the air guiding element can move through the through hole.
  • the air guiding member includes a first panel and a second panel arranged at an angle, and the first panel and the second panel are respectively connected to the adjacent air guiding surface.
  • the fresh air outlets are respectively provided on the first panel and the second panel.
  • the air-conditioning indoor cabinet machine when the air guiding member is in the first position, the first panel and the second panel are respectively flush with the corresponding front panel parts.
  • the housing is provided with a mounting base, and the mounting base is provided with a first guide, and the air guide can be slidably installed on the first guide, so that the The air guiding member can move along the extension direction of the end of the first volute close to the heat exchange air outlet.
  • the second volute includes a volute tongue and an air guide part, one end of the air guide part is connected to the volute tongue, and the other end of the air guide part faces away from the corresponding
  • the direction of the first volute extends obliquely, and an air guiding passage is provided between each of the air guiding parts and the corresponding air guiding surface.
  • an air conditioner indoor cabinet provided by the present application, it further includes two vertical swing leaf assemblies, and the two vertical swing leaf assemblies are provided in one-to-one correspondence with the two heat exchange air outlets.
  • the vertical swing leaf assembly includes a plurality of vertical swing leaves, and when the air guiding member is in the first position, each of the vertical swing leaf assemblies Each of the vertical swing vanes can rotate to close the corresponding heat exchange air outlet.
  • the present application also provides an air conditioner, including an indoor unit and an outdoor unit, the indoor unit and the outdoor unit are connected through a connecting pipe, and the indoor unit is any one of the air-conditioning indoor cabinet machines mentioned above.
  • the present application also provides an air-conditioning indoor cabinet machine and an air conditioner.
  • two angled air guide surfaces on the air guide are respectively formed with two second volutes for heat exchange.
  • the two air ducts are respectively equipped with wind wheels, so that the two heat exchange air outlets can respectively supply air to two areas in the space, so as to realize partitioned air supply, increase the air volume and avoid direct blowing of cold wind.
  • the air outlet area of the two heat exchange air outlets can be changed by adjusting the position of the air guide, so that the air supply volume can be adjusted at a certain speed of the wind wheel to meet the user's diversified air supply need.
  • make full use of the structural space of the air guide to set up fresh air ducts and fresh air outlets to add fresh air functions to the air conditioner and avoid the stuffiness and air pollution caused by long-term use of the air conditioner in a confined space.
  • Fig. 1 is one of the structural schematic diagrams of the air-conditioning indoor cabinet machine provided by the present application
  • Fig. 2 is a side view of the air-conditioning indoor cabinet machine provided by the present application.
  • Fig. 3 is the second structural diagram of the air-conditioning indoor cabinet machine provided by the present application.
  • Fig. 4 is the third structural diagram of the air-conditioning indoor cabinet machine provided by the present application.
  • Fig. 5 is the fourth schematic structural view of the air-conditioning indoor cabinet machine provided by the present application.
  • Fig. 6 is the fifth structural diagram of the air-conditioning indoor cabinet machine provided by the present application.
  • Fig. 7 is the sixth schematic diagram of the structure of the air-conditioning indoor cabinet machine provided by the present application.
  • Air guiding parts 21. Air guiding surface; 22. Fresh air duct;
  • connection should be understood in a broad sense, for example, it can be a fixed connection or a detachable connection, or integrally connected; it may be directly connected or indirectly connected through an intermediary.
  • connection should be understood in a broad sense, for example, it can be a fixed connection or a detachable connection, or integrally connected; it may be directly connected or indirectly connected through an intermediary.
  • FIG. 1 is one of the schematic structural diagrams of the air-conditioning indoor cabinet provided by the present application
  • FIG. 2 is a side view of the air-conditioning indoor cabinet provided by the present application.
  • the air conditioner indoor cabinet provided in the embodiment of the present application includes a housing 1 and an air guide 2 .
  • the casing 1 has two first volutes 11 arranged opposite to each other and two second volutes 12 arranged one-to-one corresponding to the two first volutes 11 .
  • An air passage 13 is provided between each first volute 11 and the corresponding second volute 12 .
  • the entrance of each air duct 13 is provided with a wind wheel 3 .
  • the air guide member 2 has two air guide surfaces 21 arranged at an angle, and the two air guide surfaces 21 are arranged in one-to-one correspondence with the two second volutes 12, so as to form two exchange valves corresponding to the two air ducts 13 respectively.
  • Hot air outlet 14 The air guide 2 can be movably installed on the housing 1 to change the areas of the two heat exchange air outlets 14 .
  • the air guide 2 is provided with a fresh air duct 22 and a fresh air outlet 23 connected to the fresh air duct 22 .
  • first volutes 11 and two second volutes 12 there are two first volutes 11 and two second volutes 12 inside the casing 1, and the two first volutes 11 and the two second volutes 12 are arranged in one-to-one correspondence so that they are arranged in the casing 1
  • Two air ducts 13 are defined.
  • the two first volutes 11 are arranged opposite to each other, and the two air ducts 13 are symmetrically distributed.
  • the wind wheel 3 is used to blow the air from the heat exchanger out from the corresponding heat exchange air outlet 14 .
  • the wind wheel 3 is a cross-flow wind wheel whose axis is arranged along the vertical direction.
  • the two wind guiding surfaces 21 are plane plates extending along the vertical direction, and the two form an angle of 90°-130°, for example, the two form an angle of 110°.
  • the two wind guiding surfaces 21 can be connected directly or indirectly through other transition panels.
  • the heat exchange air outlet 14 is formed between one end of the air guiding surface 21 facing the airflow direction and one end of the second volute 12 facing the airflow direction. Driven by the wind wheel 3 , the air flows out from the outlet of the air duct 13 , and then is blown out from the heat exchange air outlet 14 under the guide action of the air guide surface 21 .
  • a driving part is also installed in the housing 1, and the driving part is drivingly connected with the air guiding part 2, and is used to drive the air guiding part 2 to move relative to the housing 1, so that the air guiding part 2 can move between the first position and the second position .
  • the size of the heat exchange air outlet 14 affects the size of the air supply.
  • the area of the two heat exchange air outlets 14 is adjusted by adjusting the position of the air guide member 2, thereby adjusting the air supply volume of the two heat exchange air outlets 14, so that the two heat exchange air outlets 14 supply air in different air volume modes.
  • the two angled air guiding surfaces 21 can guide the air to both sides to prevent the cold air from blowing directly.
  • the air-conditioning indoor cabinet machine provided by the present application, by setting the air guide 2, two air guide surfaces 21 arranged at an angle on the air guide 2 and two second volutes 12 respectively form two heat exchange air
  • the outlet 14 and the two air ducts 13 are respectively equipped with wind wheels, so that the two heat exchange air outlets 14 can respectively supply air to two areas in the space, thereby realizing partitioned air supply, increasing the air volume and avoiding direct blowing of cold wind.
  • the air outlet area of the two heat exchange air outlets 14 can be changed by adjusting the position of the air guide 2, so that the air supply volume can be adjusted at a certain speed of the wind wheel to meet the diversification of users air supply requirements.
  • the fresh air outlet 23 is arranged along the length direction of the heat exchange air outlet 14 .
  • the first volute 11 , the second volute 12 and the two air guide surfaces 21 all extend along the vertical direction, that is, the length direction of the heat exchange air outlet 14 is the same as the vertical direction.
  • the two heat exchange air outlets 14 are respectively located on the left and right sides of the air guide 2, and the fresh air outlet 23 is arranged vertically and between the two heat exchange air outlets 14.
  • the fresh air outlet 23 may be a strip-shaped outlet arranged along the vertical direction, or may include a plurality of outlets arranged at intervals along the vertical direction.
  • the heat-exchanging air outlet and the fresh air outlet of the air-conditioning indoor cabinet with the fresh air function are usually distributed up and down.
  • the air-conditioning indoor cabinet machine provided by the present application is provided with a fresh air duct 22 and a fresh air outlet 23 on the air guide 2, so that the fresh air outlet 23 is located between the two heat exchange air outlets 14 and distributed along the vertical direction, which relieves its air-conditioning.
  • it leads to the problem of uneven temperature distribution in the upper and lower spaces, which improves the user experience.
  • the housing 1 is provided with a mounting seat, and the mounting seat is provided with a first guide (not shown in the figure), and the air guide 2 can be slidably installed on the first guide, so that the air guide 2 It can move along the extension direction of the end of the first volute 11 close to the heat exchange air outlet 14 .
  • the two first volutes 11 are provided with an air guide part near the outlet of the air duct 13, the two first volutes 11 are connected, and the air guide parts of the two first volutes 11 are parallel set up.
  • the first guide member extends along the extension direction of the air guide part of the first volute 11 , so that the air guide member 2 can move back and forth relative to the casing 1 .
  • the two air ducts 13 are arranged symmetrically, when the air guide 2 slides along the first guide, the areas of the two heat exchange air outlets 14 increase or decrease at the same time, and the change in the area of the two heat exchange air outlets 14 same.
  • the housing 1 is provided with a mounting seat, and a second guide member (not shown in the figure) is provided on the mounting seat.
  • the air guiding element 2 is slidably mounted on the second guiding element, so that the air guiding element 2 can be close to one of the second volutes 12 and away from the other second volute 12 .
  • the ends of the two first volutes 11 near the outlet of the air duct 13 are provided with air guiding parts, and the air guiding parts of the two first volutes 11 are arranged in parallel.
  • the second guide member extends along a direction perpendicular to the air guide portion of the first volute 11 , so that the air guide member 2 can move left and right.
  • the air guide 2 moves to the left, the area of the heat exchange air outlet 14 on the left decreases, and the area of the heat exchange air outlet 14 on the right increases; The area of the heat exchange air outlet 14 increases.
  • both the first guide piece and the second guide piece can be guide rails arranged on the mounting base, and the air guide piece 2 can be slidably installed on the guide rails.
  • the air guide 2 is rotatably mounted on the casing 1, and by rotating the air guide 2, one end of the air guide surface 21 facing the air outlet 14 is close to the corresponding second volute 12, so that The area of the corresponding air outlet 14 is reduced; the end of the other air guiding surface 21 facing the air outlet 14 is away from the corresponding second volute, so that the area of the corresponding air outlet 14 is increased.
  • the fresh air duct 22 extends along the length direction of the heat exchange air outlet 14 .
  • the fresh air duct 22 is provided with a plurality of deflectors 25 arranged at intervals along the extension direction of the fresh air duct 22 for guiding the fresh air to the fresh air outlet 23 .
  • the lower part of the air guide 2 is provided with a fresh air inlet
  • the bottom of the housing 1 is provided with a fan 5 for driving outdoor fresh air to enter the fresh air duct 22 from the fresh air inlet and blow out from the fresh air outlet 23 .
  • the deflector 25 is an arc-shaped plate extending from the fresh air inlet to the fresh air outlet.
  • the air guide member 2 is provided with two fresh air outlets 23, and the axes of the two fresh air outlets 23 are arranged at an angle. That is, the two fresh air outlets 23 respectively blow fresh air obliquely towards the front and both sides to promote the mixing of the heat exchange air blown out by the heat exchange air outlet 14 and the outdoor fresh air in front of the cabinet, so that the actual air output from the air conditioner is cool but not cold, improving comfort.
  • the air deflector 2 includes a panel and two air deflectors arranged at an angle, a fresh air duct 22 is provided between the two air deflectors and the panel, and two air guide surfaces 21 are respectively arranged on the two air deflectors.
  • the panel may be an arc-shaped plate-shaped member, and the two fresh air outlets 23 are distributed at intervals along the arc-shaped direction of the arc-shaped plate-shaped member.
  • the wind guide 2 includes a first panel 241 and a second panel 242 arranged at an angle, and the first panel 241 and the second panel 242 are respectively connected to the adjacent wind guide surface 21 correspondingly, and the first panel 241 and the second panel 242 There are fresh air outlets on each.
  • the panel is a folded plate-shaped member with a "V"-shaped cross section on the horizontal plane.
  • the casing 1 includes a front panel, and the front panel is provided with a through hole corresponding to a position between the two second volutes 12 .
  • the front panel includes two adjacent front panel parts 15 arranged at an angle, and the two second volutes 12 are connected to the two front panel parts 15 in one-to-one correspondence.
  • the air guiding member 2 can move through the through hole.
  • the front panel is a folded plate-shaped member with a cross-sectional shape of "V" on the horizontal plane.
  • the two front panel parts 15 are plane panels arranged along the vertical direction, the two front panel parts 15 are connected and protrude forward of the front panel.
  • the angle between the two front panel parts 15 on the horizontal plane is 90°-130°.
  • the angle between the two front panel parts 15 is 110°.
  • the two front panel parts 15 are arranged symmetrically with respect to the middle vertical plane of the front panel, and the two air ducts 13 are arranged symmetrically with respect to the middle vertical plane of the front panel.
  • one end of the two second volutes 12 close to the heat exchange air outlet 14 is respectively connected to the two front panel parts 15 .
  • the through hole is located on the front panel corresponding to the position between the ends of the two second volutes 12 close to the heat exchange air outlet 14, that is, a part of the through hole is located on one of the front panel parts 15, and the other part of the through hole is located on the other front panel part.
  • Panel part 15 the two sides of the through hole in the vertical direction have opposite first side edges and second side edges, and the two second volutes 12 are respectively connected to the first side edges and the second side edges.
  • the air guide member 2 can move through the through hole, which means that the air guide member 2 shuttles along the axial direction of the through hole, or the air guide member 2 shuttles along the axis direction perpendicular to the through hole, or the air guide member 2 travels along the axial direction of the through hole.
  • Shuttle in a direction inclined relative to the axis of the through hole.
  • the air guiding member 2 divides the through hole into two air outlets, and the air in the two air ducts 13 is blown out from the two air outlets respectively.
  • the cross-sectional shape of the housing 1 on the horizontal plane is a pentagon symmetrical to the vertical plane of the front panel, and the "V"-shaped front panel corresponds to the pentagon connected to the symmetrical centerline of the pentagon. of the two sides.
  • the rear panel of the housing 1 includes three rear panel portions corresponding to the other three sides of the pentagon.
  • the casing 1 is provided with air inlets respectively connected with the two air ducts 13 , and the two air inlets are respectively arranged on the rear panel part connected with the two front panel parts 15 correspondingly.
  • the front panel may also be a flat plate-shaped part or an arc-shaped plate-shaped part, and the present application does not specifically limit the shape of the front panel.
  • the cross-sectional shape of the housing 1 on the horizontal plane may be other shapes such as rectangle, circle or ellipse.
  • the first panel 241 and the second panel 242 are respectively flush with the corresponding front panel part 15 . That is, the angle between the two front panels is the same as the angle between the first panel 241 and the second panel 242 .
  • the air guiding member 2 has a first position state close to the first volute 11 and a second position state away from the first volute 11 .
  • FIG. 3 the second structural diagram of the air-conditioning indoor cabinet provided by the present application
  • the air guide 2 in FIG. 1 is in the first position
  • the air guide in FIG. 3 is in the second position.
  • the air guide 2 has a first position in the middle of the two second volutes 12 and is close to one of the second volutes 12 and away from the other. The second position state of the second volute 12 .
  • the outer surface of the first panel 241 is flush with the outer surface of the left front panel part 15, and the outer surface of the second panel 242 is flush with the outer surface of the right side.
  • the outer surfaces of the side front panel portions 15 are flush.
  • the front part of the air-conditioning indoor cabinet has a better appearance when the air guide 2 is in the first position.
  • the axes of the two heat exchange air outlets 14 are set at an angle, that is, the two heat exchange air outlets 14 are always facing different directions. The direction is conducive to increasing the air supply angles of the two heat exchange air outlets 14 to the front sides of the air-conditioning indoor cabinet.
  • the angle between the axes of the two heat exchange air outlets 14 is 50°-90°, for example, the angle between the axes of the two heat exchange air outlets 14 is 70°.
  • the two air guiding surfaces 21 are respectively connected to the ends of the two first volutes 11 close to the heat exchange air outlet 14 .
  • the cross-sectional shape of the air guide 2 on the horizontal plane is a rhombus, and a symmetrical center line of the rhombus is located on the vertical plane of the front panel. That is, the two wind guiding surfaces 21 respectively correspond to the two sides of the rhombus close to the inside of the housing 1 , and the first panel 241 and the second panel 242 respectively correspond to the two sides of the rhombus close to the outside of the housing 1 .
  • the second volute 12 includes a volute tongue 121 and an air guiding portion 122 , one end of the air guiding portion 122 is connected to the volute tongue 121 , and the other end of the air guiding portion 122 faces away from the corresponding first volute 11
  • the direction extends obliquely, and an air guide passage is provided between each air guide portion 122 and the corresponding air guide surface 21 .
  • the air guide channel 16 is an air guide section connecting the air channel 13 and the heat exchange air outlet 14 .
  • the air guide channel 16 can guide the air from the heat exchange air outlet 14, which is beneficial to increase the air supply distance.
  • the other end of the air guiding portion 122 extends obliquely in a direction away from the corresponding first volute 11 , which is beneficial to increase the angle at which the heat exchange air outlet 14 blows air to both sides in front of the air-conditioning indoor cabinet.
  • the ends of the two air guiding parts 122 away from the volute tongue 121 respectively extend to the first side edge and the second side edge of the through hole on the front panel, and are correspondingly connected to the first side edge and the second side edge.
  • the air-conditioning indoor cabinet machine provided in the present application further includes two vertical swing leaf assemblies 4 , and the two vertical swing leaf assemblies 4 are provided in one-to-one correspondence with the two heat exchange air outlets 14 .
  • it also includes two driving parts (not shown in the figure), and the two driving parts are drivingly connected with the two vertical swing leaf assemblies 4 in one-to-one correspondence.
  • the air supply direction of each heat exchange air outlet 14 is adjusted by adjusting the deflection angles of the two vertical swing blade assemblies 4 to realize the anti-direct blowing mode.
  • By driving the vertical swing blade assembly 4 to realize the left and right swing mode the air supply range of each heat exchange air outlet 14 is increased.
  • the combination of the air guide 2 and the vertical swing leaf assembly 4 can flexibly realize the comprehensive adjustment of the air supply range and air supply volume.
  • the air supply angles on the left and right sides can be increased by adjusting the deflection angle of the vertical swing blade assembly 4 to realize wide-area air supply.
  • the axes of the two heat exchange air outlets 14 are 70° as a specific example for illustration.
  • the air guide 2 is in the first position state, and the vertical swing leaves of the two vertical swing leaf assemblies 4 are connected to the corresponding heat exchange air outlet 14
  • the axes are parallel, and the air outlet angles of the two heat exchange air outlets 14 are 70°.
  • FIG. 5 it is the fourth structural diagram of the air-conditioning indoor cabinet machine provided by the present application.
  • the air guide member 2 is in the first position state, and the vertical swing leaves of the two vertical swing leaf assemblies 4 are opposite to the corresponding heat exchange air outlets.
  • the axis of 14 is deflected by 35° toward the direction of the wind guide 2, and the air supply directions of the two heat exchange air outlets 14 are the same.
  • the air guide 2 is in the first position, and the vertical swing leaf of the left vertical swing leaf assembly 4 is connected to the corresponding heat exchange air outlet 14.
  • the axes are parallel, the vertical swing leaf of the right vertical swing leaf assembly 4 is deflected by 35° in the direction away from the air guide 2 relative to the axis of the corresponding heat exchange air outlet 14, and the air supply angle of the two heat exchange air outlets 14 is 105° °. If the vertical swing blades of the two vertical swing blade assemblies 4 are both deflected by 35° in the direction away from the air guide 2 relative to the axis of the corresponding heat exchange air outlet 14, the air supply angle of the two heat exchange air outlets 14 is 14° °.
  • the state shown in FIG. 3 can be achieved by driving the air guide 2 away from the first volute 11 along the extension direction of the first volute 11 to increase the area of the heat exchange air outlet 14 , so that the air can be blown out from the gap between the vertical swing leaf assembly 4 and the wind guide surface 21, so as to realize the small air volume anti-direct blowing mode.
  • FIG 7 it is the sixth structural schematic diagram of the air-conditioning indoor cabinet machine provided by the present application.
  • the first volute 11 can be moved away from the first volute 11 along the extension direction of the first volute 11 by driving the air guide 2
  • Direct blowing mode or high-volume air supply mode can meet the needs of strong and fast cooling and heating.
  • the vertical swing leaf assembly 4 includes a plurality of vertical swing leaves, and when the air guide 2 is in the first position, the multiple vertical swing leaves of each vertical swing leaf assembly 4 can rotate to close the corresponding heat exchange Air outlet 14.
  • the corresponding vertical swing blade assembly 4 can be driven by any driving member to close the corresponding heat exchange air outlet 14, so as to switch different heat exchange air outlets 14 for air supply.
  • the corresponding heat exchange air outlet 14 can also be closed by driving the corresponding vertical swing blade assembly 4 to reduce the volume of the internal air channel 13. dust.
  • the heat exchange air outlet 14 can be closed by driving the vertical swing vanes of the vertical swing vane assembly 4 to deflect and be connected end-to-end.
  • the deflection of a plurality of vertical pendulum leaves to end-to-end means that adjacent vertical pendulum vanes are butted or partially overlapped on the surface where the heat exchange air outlet 14 is located.
  • the present application also provides an air conditioner, the air conditioner includes an indoor unit and an outdoor unit, the indoor unit and the outdoor unit are connected through a connecting pipe, and the indoor unit is the air-conditioning indoor cabinet machine described in any one of the above embodiments.

Abstract

本申请涉及空调技术领域,提供一种空调室内柜机和空调器。所述空调室内柜机包括壳体和导风件,壳体内具有相背设置的两个第一蜗壳以及与两个第一蜗壳一一对应设置的两个第二蜗壳,每一第一蜗壳与对应的第二蜗壳之间设有风道,每一风道的入口均设有风轮;导风件具有呈角度设置的两个导风面,两个导风面与两个第二蜗壳一一对应设置,以形成分别与两个风道对应连通的两个换热风出口,导风件可活动安装于壳体用以改变两个换热风出口的面积;导风件设有新风风道以及连通新风风道的新风出口。本申请提供的空调室内柜机能够可满足大空间的送风量需求,能够在风轮转速一定的情况下实现对送风范围的调节,满足用户的多样化送风需求。

Description

空调室内柜机和空调器
相关申请的交叉引用
本申请要求于2021年10月12日提交的申请号为202111189245X,发明名称为“空调室内柜机和空调器”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本申请涉及空调技术领域,尤其涉及一种空调室内柜机和空调器。
背景技术
目前的空调室内柜机通常仅设有单个送风系统,出风口处设置有竖摆叶组件,通过调节竖摆叶组件的偏转角度调节出风口向空间的送风方向。在竖摆叶组件特定偏转角度下,出风口的送风范围较小,只能满足较小空间以内的送风需求。如若需要满足较大空间的送风需求,则只能通过驱动摆叶组件摆动以对空间进行扫风。在风轮转速一定的情况下不能调节送风量以满足用户的多样化送风需求,且对于较大空间存在送风量不足的问题。
发明内容
本申请提供一种空调室内柜机和空调器,用以解决现有技术中的空调室内柜机在风轮转速一定的情况下不能调节送风量以及对于较大空间存在送风量不足的问题。
本申请提供一种空调室内柜机,包括:
壳体,所述壳体内具有相背设置的两个第一蜗壳以及与两个所述第一蜗壳一一对应设置的两个第二蜗壳,每一所述第一蜗壳与对应的所述第二蜗壳之间设有风道,每一所述风道的入口均设有风轮;
导风件,所述导风件具有呈角度设置的两个导风面导风面,两个所述导风面与两个所述第二蜗壳一一对应设置,以形成分别与两个所述风道对应连通的两个换热风出口,所述导风件可活动安装于所述壳体用以改变两个所述换热风出口的面积;所述导风件设有新风风道以及连通所述新风风 道的新风出口。
根据本申请提供的一种空调室内柜机,所述新风出口沿所述换热风出口的长度方向设置。
根据本申请提供的一种空调室内柜机,所述新风风道沿所述换热风出口的长度方向延伸,所述新风风道内设有多个导流板,多个所述导流板沿所述新风风道的延伸方向间隔排布,用于将新风导流至所述新风出口。
根据本申请提供的一种空调室内柜机,所述导风件设有两个所述新风出口,两个所述新风出口的轴线呈角度设置。
根据本申请提供的一种空调室内柜机,所述壳体包括前面板,所述前面板对应于两个所述第二蜗壳之间的部位设有通孔,所述前面板包括两个相邻且呈角度设置的前面板部,两个所述第二蜗壳与两个所述前面板部一一对应相连,所述导风件可活动穿梭于所述通孔。
根据本申请提供的一种空调室内柜机,所述导风件包括呈角度设置的第一面板和第二面板,所述第一面板和所述第二面板分别与靠近的所述导风面对应相连,所述第一面板和所述第二面板上分别设有所述新风出口。
根据本申请提供的一种空调室内柜机,在所述导风件处于第一位置状态的情况下,所述第一面板和所述第二面板分别与对应的所述前面板部平齐。
根据本申请提供的一种空调室内柜机,所述壳体内设有安装座,所述安装座设有第一导向件,所述导风件可滑动安装于所述第一导向件,使所述导风件能够沿所述第一蜗壳靠近所述换热风出口的一端的延伸方向运动。
根据本申请提供的一种空调室内柜机,所述第二蜗壳包括蜗舌和导风部,所述导风部的一端连接于蜗舌,导风部的另一端朝向远离对应的所述第一蜗壳的方向倾斜延伸,每一所述导风部与对应的所述导风面之间设有导风通道。
根据本申请提供的一种空调室内柜机,还包括两个竖摆叶组件,两个竖摆叶组件与两个所述换热风出口一一对应设置。
根据本申请提供的一种空调室内柜机,所述竖摆叶组件包括多个竖摆叶,在所述导风件处于第一位置状态的情况下,每一所述竖摆叶组件的多 个所述竖摆叶能够旋转至关闭对应的所述换热风出口。
本申请还提供一种空调器,包括室内机和室外机,室内机和室外机通过连接管连接,所述室内机为上述任一种空调室内柜机。
本申请还提供一种空调室内柜机和空调器,通过设置导风件,并使导风件上两个呈角度设置的导风面分别与两个第二蜗壳之间形成两个换热风出口,两个风道分别对应设有风轮,使两个换热风出口能够分别向空间内的两个区域送风,从而实现分区送风、增大风量和避免冷风直吹。在此基础上,可通过调节导风件的位置改变两个换热风出口的出风面积,从而可在风轮转速一定的情况下实现对送风量的调节,满足用户的多样化送风需求。同时充分利用导风件的结构空间设置新风风道和新风出口,为空调增加新风功能,避免在密闭空间中长期使用空调导致的憋闷和空气污浊。
附图说明
为了更清楚地说明本申请或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供的空调室内柜机的结构示意图之一;
图2是本申请提供的空调室内柜机的侧视图;
图3是本申请提供的空调室内柜机的结构示意图之二;
图4是本申请提供的空调室内柜机的结构示意图之三;
图5是本申请提供的空调室内柜机的结构示意图之四;
图6是本申请提供的空调室内柜机的结构示意图之五;
图7是本申请提供的空调室内柜机的结构示意图之六;
附图标记:
1、壳体;          11、第一蜗壳;     12、第二蜗壳;
121、蜗舌;        122、导风部;      13、风道;
14、换热风出口;   15、前面板部;     16、导风通道;
2、导风件;        21、导风面;       22、新风风道;
23、新风出口;     241、第一面板;    242、第二面板;
25、导流板;       3、风轮;          4、竖摆叶组件;
5、风机。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请中的附图,对本申请中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在本申请实施例的描述中,需要说明的是,除非另有明确的规定和限定,术语“第一”“第二”是为了清楚说明产品部件进行的编号,不代表任何实质性区别。“左”“右”的方向均以附图所示方向为准。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请实施例中的具体含义。此外,“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;可以是直接相连,也可以通过中间媒介间接相连。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。
下面结合图1至图7描述本申请的空调室内柜机。
如图1所示为本申请提供的空调室内柜机的结构示意图之一,如图2所示为本申请提供的空调室内柜机的侧视图。本申请实施例提供的空调室内柜机包括壳体1和导风件2。壳体1内具有相背设置的两个第一蜗壳11以及与两个第一蜗壳11一一对应设置的两个第二蜗壳12。每一第一蜗壳11与对应的第二蜗壳12之间设有风道13。每一风道13的入口均设有风轮3。导风件2具有呈角度设置的两个导风面21,两个导风面21与两个第二蜗壳12一一对应设置,以形成分别与两个风道13对应连通的两个换热风出口14。导风件2可活动安装于壳体1用以改变两个换热风出口14的面积。导风件2设有新风风道22以及连通新风风道22的新风出口23。
具体地,壳体1内设有两个第一蜗壳11和两个第二蜗壳12,两个第一蜗壳11和两个第二蜗壳12一一对应设置以在壳体1内限定出两个风道13。其中,两个第一蜗壳11相背设置,且两个风道13呈对称分布。风轮3用于将来自换热器的空气从对应的换热风出口14吹出。其中,风轮3为轴线沿竖直方向设置的贯流风轮。
可选地,两个导风面21均为沿竖直方向延伸的平面板,二者呈90°~130°角,如二者呈110°角。两个导风面21可直接相连也可以通过其他过渡面板间接相连。换热风出口14形成于导风面21朝向气流方向的一端与第二蜗壳12朝向气流方向的一端之间。在风轮3的驱动作用下,空气从风道13的出口流出,接着在导风面21的导流作用下从换热风出口14吹出。
壳体1内还安装有驱动件,该驱动件与导风件2驱动连接,用于驱动导风件2相对壳体1运动,使导风件2活动于第一位置和第二位置之间。在一定的换热风出口面积范围内,由于风阻的存在,换热风出口14的大小影响送风量的大小。通过调节导风件2的位置状态调节两个换热风出口14的面积大小,从而调节两个换热风出口14的送风量,实现两个换热风出口14以不同风量模式送风。同时,两个呈角度设置的导风面21能够将风向两侧导流,避免冷风直吹。
本申请提供的空调室内柜机,通过设置导风件2,并使导风件2上两个呈角度设置的导风面21分别与两个第二蜗壳12之间形成两个换热风出口14,两个风道13分别对应设有风轮,使两个换热风出口14能够分别向空间内的两个区域送风,从而实现分区送风、增大风量和避免冷风直吹。在此基础上,可通过调节导风件2的位置改变两个换热风出口14的出风面积,从而可在风轮转速一定的情况下实现对送风量的调节,满足用户的多样化送风需求。同时充分利用导风件2的结构空间设置新风风道22和新风出口23,为空调增加新风功能,避免在密闭空间中长期使用空调导致的憋闷和空气污浊。
进一步地,新风出口23沿换热风出口14的长度方向设置。具体地,第一蜗壳11、第二蜗壳12以及两个导风面21均沿竖直方向延伸,即换热风出口14的长度方向与竖直方向相同。两个换热风出口14分别 位于导风件2的左右两侧,新风出口23沿竖直方向设置且位于两个换热风出口14之间。其中,新风出口23可以为沿竖直方向设置的条形出口,也可以包括沿竖直方向间隔排布的多个出口。
相关技术中带有新风功能的空调室内柜机的换热风出口和新风出口通常呈上下分布。在冬季使用时,由于冷空气下降,热空气上升,容易导致上下空间温度分布不均。本申请提供的空调室内柜机通过在导风件2上设置新风风道22和新风出口23,使新风出口23位于两个换热风出口14之间且沿竖直方向分布,缓解了其在冬季使用时导致上下空间温度分布部均的问题,提升用户体验。
本申请一些实施例中,壳体1内设有安装座,安装座设有第一导向件(图中未示出),导风件2可滑动安装于第一导向件,使导风件2能够沿第一蜗壳11靠近换热风出口14的一端的延伸方向运动。
例如,如图1所示,两个第一蜗壳11靠近风道13出口的一端设有导风部,两个第一蜗壳11相连,且两个第一蜗壳11的导风部平行设置。第一导向件沿第一蜗壳11的导风部的延伸方向延伸,使得导风件2能够相对机壳1前后移动。在两个风道13对称设置的情况下,导风件2沿第一导向件滑动时,两个换热风出口14面积同时增大或减小,两个换热风出口14面积的改变量相同。
本申请另一些实施例中,壳体1设有安装座,安装座上设有第二导向件(图中未示出)。导风件2可滑动安装于第二导向件,使导风件2能够靠近其中一第二蜗壳12且远离另一第二蜗壳12。
例如,如图1所示,两个第一蜗壳11靠近风道13出口的一端设有导风部,两个第一蜗壳11的导风部平行设置。第二导向件沿垂直于第一蜗壳11的导风部的方向延伸,使得导风件2能够左右移动。当导风件2向左移动时,左侧的换热风出口14面积减小,右侧的换热风出口14面积增大;反之,右侧的换热风出口14面积减小,左侧的换热风出口14面积增大。
可选地,第一导向件和第二导向件均可以为设置于安装座上的导轨,导风件2可滑动安装于导轨上。
本申请再一些实施例中,导风件2可转动安装于壳体1,通过转动导 风件2使其中一个导风面21朝向出风口14的一端靠近对应的第二蜗壳12,从而使对应的出风口14面积减小;另一导风面21朝向出风口14的一端远离对应的第二蜗壳,从而使对应的出风口14面积增大。
进一步地,如图2所示,新风风道22沿换热风出口14的长度方向延伸。新风风道22内设有多个导流板25,多个导流板25沿新风风道22的延伸方向间隔排布,用于将新风导流至新风出口23。其中,导风件2的下部设有新风入口,壳体1的底部设有风机5,用于驱动室外新风从新风入口进入新风风道22,并从新风出口23吹出。导流板25为从新风入口向新风出口延伸的弧形板。
本申请一些实施例中,导风件2设有两个新风出口23,两个新风出口23的轴线呈角度设置。即两个新风出口23分别朝向前方两侧斜向吹送新风,促进换热风出口14吹出的换热风与室外新风在柜机前方混合,使空调的实际出风凉而不冷,提升舒适性。
具体地,导风件2包括面板以及呈角度设置的两个导风板,两个导风板与面板之间设有新风风道22,两个导风面21分别设置于两个导风板上。其中,面板可以为弧形板状件,两个新风出口23沿弧形板状件的弧形方向间隔分布。或者,导风件2包括呈角度设置的第一面板241和第二面板242,第一面板241和第二面板242分别与靠近的导风面21对应相连,第一面板241和第二面板242上分别设有新风出口。例如,如图1所示,面板为在水平面上的横截面呈“V”字型的折型板状件。
本申请一些实施例中,壳体1包括前面板,前面板对应于两个第二蜗壳12之间的部位设有通孔。前面板包括两个相邻且呈角度设置的前面板部15,两个第二蜗壳12与两个前面板部15一一对应相连。导风件2可活动穿梭于通孔。
具体地,前面板为在水平面上的横截面形状为“V”字型的折型板状件。两个前面板部15均为沿竖直方向设置的平面板,两个前面板部15相连并向前面板的前方凸出。两个前面板部15在水平面上的夹角为90°~130°。可选地,两个前面板部15的夹角为110°。可选地,两个前面板部15相对于前面板的中垂面对称设置,两个风道13相对前面板的中垂面对称设置。
具体地,两个第二蜗壳12靠近换热风出口14的一端分别连接于两个前面板部15。通孔位于前面板上对应于两个第二蜗壳12靠近换热风出口14的一端之间的部位,即通孔的一部分位于其中一前面板部15,通孔的另一部分位于另一前面板部15。可选地,通孔在竖直方向上的两侧具有相对的第一侧边缘和第二侧边缘,两个第二蜗壳12分别与第一侧边缘和第二侧边缘连接。
其中,导风件2可活动穿梭于通孔,指的是导风件2沿通孔的轴向方向穿梭,或者导风件2沿垂直于通孔的轴线方向穿梭,或者导风件2沿相对通孔轴线倾斜的方向穿梭。导风件2将通孔分隔为两个空气出口,两个风道13内的空气分别从这两个空气出口吹出。
例如,壳体1在水平面上的横截面外形为相对于前面板的中垂面对称的五边形,“V”字型前面板对应于五边形中的与五边形对称中心线相连的两条边。壳体1的后面板包括对应于五边形的另外三条边的三个后面板部。壳体1上开设有分别与两个风道13相连通的进风口,两个进风口一一对应设置于与两个前面板部15相连的后面板部上。
需要说明的是,前面板还可以为平面板状件或弧形板状件,本申请对前面板的形状不做具体限定。相应的,壳体1在水平面上的横截面外形可以为矩形、圆形或椭圆形等其他形状。
进一步地,如图1所示,在导风件2处于第一位置状态的情况下,第一面板241和第二面板242分别与对应的前面板部15平齐。即两个前面板之间的夹角大小与第一面板241和第二面板242之间的夹角大小相同。
具体地,在导风件2滑动安装于第一导向件的实施例中,导风件2具有靠近第一蜗壳11的第一位置状态和远离第一蜗壳11的第二位置状态。如图3所示为本申请提供的空调室内柜机的结构示意图之二,图1中的导风件2位于第一位置状态,图3中的导风件位于第二位置状态。在导风件2滑动安装于第二导向件的实施例中,导风件2具有位于两个第二蜗壳12正中间的第一位置状态以及靠近其中一个第二蜗壳12而远离另一个第二蜗壳12的第二位置状态。
在上述实施例中,在导风件2处于第一位置状态的情况下,第一面 板241的外表面与左侧的前面板部15的外表面齐平,第二面板242的外表面与右侧的前面板部15的外表面齐平。使该空调室内柜机的前部在导风件2处于第一位置状态时具有较好的外观。并且,在导风件2处于第一位置和第二位置之间的任一位置状态时,两个换热风出口14的轴线均呈角度设置,即两个换热风出口14始终分别朝向不同的方向,有利于增大两个换热风出口14向空调室内柜机的前方两侧的送风角度。
可选地,在导风件2处于第一位置状态的情况下,两个换热风出口14轴线的夹角为50°~90°,例如两个换热风出口14的轴线的夹角为70°。在导风件2处于第一位置状态的情况下,两个导风面21分别与两个第一蜗壳11靠近换热风出口14的一端对应相连。
可选地,导风件2在水平面上的横截面外形为菱形,菱形的一条对称中心线位于前面板的中垂面上。即两个导风面21分别对应于菱形靠近壳体1内部的两条边,第一面板241和第二面板242分别对应于菱形靠近壳体1外部的两条边。
本申请一些实施例中,第二蜗壳12包括蜗舌121和导风部122,导风部122的一端连接于蜗舌121,导风部122的另一端朝向远离对应的第一蜗壳11的方向倾斜延伸,每一导风部122与对应的导风面21之间设有导风通道。导风通道16为连接风道13与换热风出口14的导风段。导风通道16能够对换热风出口14的出风起到导向作用,有利于增大送风距离。导风部122另一端朝向远离对应第一蜗壳11的方向倾斜延伸,有利于增大换热风出口14向该空调室内柜机前方两侧送风的角度。其中,两个导风部122远离蜗舌121的一端分别延伸至前面板上通孔的第一侧边缘和第二侧边缘,并与第一侧边缘和第二侧边缘对应相连。
本申请提供的空调室内柜机还包括两个竖摆叶组件4,两个竖摆叶组件4与两个换热风出口14一一对应设置。其中,还包括两个驱动件(图中未示出),两个驱动件与两个竖摆叶组件4一一对应驱动连接。通过调节两个竖摆叶组件4的偏转角度来调节各个换热风出口14的送风方向,实现防直吹模式。通过驱动竖摆叶组件4实现左右摆风模式,增大各个换热风出口14的送风范围。导风件2和竖摆叶组件4配合可灵活实现对送风范围和送风量的综合调节。
在两个换热风出口14的轴线呈角度设置的基础上,可通过调节竖摆叶组件4的偏转角度增大左右两侧送风角度,实现广域送风。本申请实施例以导风件2在第一位置状态时两个换热风出口14的轴线呈70°为具体示例说明。
如图4所示为本申请提供的空调室内柜机的结构示意图之三,导风件2处于第一位置状态,两个竖摆叶组件4的竖摆叶均与对应的换热风出口14的轴线平行,两个换热风出口14的出风角度呈70°。
如图5所示为本申请提供的空调室内柜机的结构示意图之四,导风件2处于第一位置状态,两个竖摆叶组件4的竖摆叶均相对于对应的换热风出口14的轴线向朝向导风件2的方向偏转35°,两个换热风出口14的送风方向相同。
如图6所示为本申请提供的空调室内柜机的结构示意图之五,导风件2处于第一位置状态,左侧竖摆叶组件4的竖摆叶与对应的换热风出口14的轴线平行,右侧竖摆叶组件4的竖摆叶相对于对应的换热风出口14的轴线向远离导风件2的方向偏转35°,两个换热风出口14的送风角度呈105°。若两个竖摆叶组件4的竖摆叶均相对于对应的换热风出口14的轴线向远离导风件2的方向偏转35°,则两个换热风出口14的送风角度呈140°。
在图1所示状态下,可通过驱动导风件2沿第一蜗壳11的延伸方向远离第一蜗壳11以达到如图3所示的状态,以增大换热风出口14的面积,使空气能够从竖摆叶组件4与导风面21之间的空隙吹出,实现小风量防直吹模式。
如图7所示为本申请提供的空调室内柜机的结构示意图之六,在图4所示状态下,可通过驱动导风件2沿第一蜗壳11的延伸方向远离第一蜗壳11以达到如图7所示的状态,以增大换热风出口14的面积,使空气能够从竖摆叶组件4以及竖摆叶组件4与导风面21之间空隙吹出,实现大风量防直吹模式或大风量送风模式,满足强力快速冷热需求。
进一步地,竖摆叶组件4包括多个竖摆叶,在导风件2处于第一位置状态的情况下,每一竖摆叶组件4的多个竖摆叶能够旋转至关闭对应的换热风出口14。即可通过任一驱动件驱动对应的竖摆叶组件4关闭对 应的换热风出口14,以切换不同换热风出口14送风。当任一风道13内的风轮3停止运转或两个风轮3均停止运转时,也可通过驱动对应的竖摆叶组件4关闭对应的换热风出口14以减少内部风道13积尘。
在上述实施例中,可通过驱动竖摆叶组件4的多个竖摆叶偏转至首尾相连以关闭换热风出口14。其中,多个竖摆叶偏转至首尾相连指的是相邻竖摆叶在换热风出口14所在面上首尾相互对接或者存在部分搭接。当然相邻竖摆叶之间也可存在适当缝隙。
本申请还提供一种空调器,该空调器包括室内机和室外机,室内机和室外机通过连接管连接,所述室内机为上述任一实施例所述的空调室内柜机。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (12)

  1. 一种空调室内柜机,包括;
    壳体,所述壳体内具有相背设置的两个第一蜗壳以及与两个所述第一蜗壳一一对应设置的两个第二蜗壳,每一所述第一蜗壳与对应的所述第二蜗壳之间设有风道,每一所述风道的入口均设有风轮;
    导风件,所述导风件具有呈角度设置的两个导风面导风面,两个所述导风面与两个所述第二蜗壳一一对应设置,以形成分别与两个所述风道对应连通的两个换热风出口,所述导风件可活动安装于所述壳体用以改变两个所述换热风出口的面积;所述导风件设有新风风道以及连通所述新风风道的新风出口。
  2. 根据权利要求1所述的空调室内柜机,其中,所述新风出口沿所述换热风出口的长度方向设置。
  3. 根据权利要求2所述的空调室内柜机,其中,所述新风风道沿所述换热风出口的长度方向延伸,所述新风风道内设有多个导流板,多个所述导流板沿所述新风风道的延伸方向间隔排布,用于将新风导流至所述新风出口。
  4. 根据权利要求1所述的空调室内柜机,其中,所述导风件设有两个所述新风出口,两个所述新风出口的轴线呈角度设置。
  5. 根据权利要求1所述的空调室内柜机,其中,所述壳体包括前面板,所述前面板对应于两个所述第二蜗壳之间的部位设有通孔,所述前面板包括两个相邻且呈角度设置的前面板部,两个所述第二蜗壳与两个所述前面板部一一对应相连,所述导风件可活动穿梭于所述通孔。
  6. 根据权利要求5所述的空调室内柜机,其中,所述导风件包括呈角度设置的第一面板和第二面板,所述第一面板和所述第二面板分别与靠近的所述导风面对应相连,所述第一面板和所述第二面板上分别设有所述新风出口。
  7. 根据权利要求6所述的空调室内柜机,其中,在所述导风件处于第一位置状态的情况下,所述第一面板和所述第二面板分别与对应的所述前面板部平齐。
  8. 根据权利要求1所述的空调室内柜机,其中,所述壳体内设有安装座,所述安装座设有第一导向件,所述导风件可滑动安装于所述第一导向件,使所述导风件能够沿所述第一蜗壳靠近所述换热风出口的一端的延伸方向运动。
  9. 根据权利要求1所述的空调室内柜机,其中,所述第二蜗壳包括蜗舌和导风部,所述导风部的一端连接于蜗舌,导风部的另一端朝向远离对应的所述第一蜗壳的方向倾斜延伸,每一所述导风部与对应的所述导风面之间设有导风通道。
  10. 根据权利要求1所述的空调室内柜机,还包括两个竖摆叶组件,两个竖摆叶组件与两个所述换热风出口一一对应设置。
  11. 根据权利要求10所述的空调室内柜机,其中,所述竖摆叶组件包括多个竖摆叶,在所述导风件处于第一位置状态的情况下,每一所述竖摆叶组件的多个所述竖摆叶能够旋转至关闭对应的所述换热风出口。
  12. 一种空调器,包括室内机和室外机,所述室内机和所述室外机通过连接管连接,所述室内机为根据权利要求1-11任一项所述的空调室内柜机。
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