WO2020156244A1 - 柜式空调室内机 - Google Patents

柜式空调室内机 Download PDF

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Publication number
WO2020156244A1
WO2020156244A1 PCT/CN2020/072780 CN2020072780W WO2020156244A1 WO 2020156244 A1 WO2020156244 A1 WO 2020156244A1 CN 2020072780 W CN2020072780 W CN 2020072780W WO 2020156244 A1 WO2020156244 A1 WO 2020156244A1
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WO
WIPO (PCT)
Prior art keywords
air
air outlet
outlet frame
opening
indoor unit
Prior art date
Application number
PCT/CN2020/072780
Other languages
English (en)
French (fr)
Inventor
孙婷
成汝振
张德明
王佳林
郝本华
王珂
Original Assignee
青岛海尔空调器有限总公司
海尔智家股份有限公司
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 青岛海尔空调器有限总公司, 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 WO2020156244A1 publication Critical patent/WO2020156244A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • F24F1/0022Centrifugal or radial 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
    • 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
    • F24F1/0043Indoor units, e.g. fan coil units characterised by mounting arrangements
    • F24F1/005Indoor units, e.g. fan coil units characterised by mounting arrangements mounted on the floor; standing on the floor
    • 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
    • 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
    • F24F13/1426Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means
    • 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
    • F24F13/22Means for preventing condensation or evacuating condensate
    • 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
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • 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
    • F24F13/24Means for preventing or suppressing noise
    • 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
    • F24F13/1426Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means
    • F24F2013/1446Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre characterised by actuating means with gearings

Definitions

  • the invention relates to the field of air treatment, in particular to a cabinet type air conditioner indoor unit.
  • the cabinet-type air conditioner indoor unit with an air outlet on the top has a high center of gravity and poor stability of the whole machine.
  • dust can easily enter the inside of the air outlet through the air outlet, which not only affects human health but also reduces air conditioning performance.
  • an air outlet frame that can receive the air flow blown from the fan and guide the air flow to the indoor environment or close the air outlet is provided in the casing.
  • An object of the present invention is to provide a cabinet-type air conditioner indoor unit, which can prevent the condensation in the housing from dripping onto the electrical components below the air guide member.
  • a further object of the present invention is to increase the gas flow rate.
  • Another further object of the present invention is to improve the stability of the movement of the air outlet frame.
  • the present invention provides a cabinet type air conditioner indoor unit, including:
  • the casing the peripheral wall of which forms an organic casing air inlet, and the top of which is formed with a top opening;
  • An air supply assembly configured to suck in ambient air from the surrounding environment of the air inlet of the casing and promote the air to flow to the top opening;
  • the air guide member is arranged above the air supply assembly and is configured to receive the air flow blown from the air supply assembly and guide the air flow to the indoor environment through the top opening; characterized in that, the air guide member include:
  • the casing is fixed on the top of the casing, and its bottom wall and top wall are respectively formed with an air inlet opening and an air outlet opening;
  • the air outlet frame member includes an air outlet frame formed with an air duct, and the air outlet frame member is configured to be exposed at the air outlet of the air outlet frame at an open position and air outlet above the air outlet opening and the top opening The frame moves between the closed positions in the housing completely;
  • the bottom wall of the casing is formed with an upwardly opening diversion groove for receiving the condensed water flowing down from the air outlet frame and guiding the condensed water.
  • the wind guide member further includes:
  • the air inlet is set to be butted with the air inlet opening
  • the air outlet is set to be covered in the air duct of the air outlet frame
  • the air inlet opening is set to communicate with the air flow of the air supply assembly Export docking.
  • the diversion groove is formed at the periphery of the air inlet opening.
  • the peripheral edge of the air inlet of the communicating air duct is set on the top end of the inner peripheral wall of the diversion groove.
  • a downwardly extending skirt is formed at the periphery of the air inlet of the communicating air duct, and the skirt is arranged to cooperate with the peripheral wall of the air inlet opening to limit the communicating air in a horizontal direction. Road displacement.
  • a plurality of downwardly extending barbs are formed at the bottom of the communicating air duct, a plurality of bayonet openings are correspondingly opened on the bottom wall of the diversion groove, and the plurality of barbs are arranged to respectively pass through The plurality of bayonet openings are clamped with the bottom wall of the diversion groove.
  • each of the undercuts is configured to be clamped with a part of the bottom wall of the diversion groove located outside the bayonet.
  • the air outlet frame component further includes:
  • the elastic sealing ring is arranged at the air inlet of the air outlet frame and is configured to seal the gap between the air outlet frame and the communicating air duct when the air outlet frame component is in the open position.
  • the air outlet frame component further includes:
  • the mounting piece includes a ring-shaped mounting part fixedly connected to the air outlet frame, and the elastic sealing ring is sandwiched between the mounting part and the air outlet frame.
  • the cabinet-type air conditioner indoor unit further includes:
  • At least one driving device is configured to drive the air outlet frame to rotate around a fixed axis fixed to the rear of the casing.
  • Each of the driving devices includes a gear, a motor drivingly connected with the gear, and The base of the motor; and
  • the air outlet frame component further includes at least one limiting member, and each of the limiting members is formed with an arc-shaped rack for meshing with the gear to limit the movement path of the air outlet frame.
  • the driving device is arranged below the air outlet frame, and the projection of the air outlet frame on the horizontal surface covers the motor; and the mounting member further includes:
  • At least one diversion rib is arranged to extend downward from the bottom of the mounting part, and the at least one diversion rib is configured to divert the condensed water above the motor to outside the projection of the motor on the horizontal plane Any position.
  • the cabinet-type air conditioner indoor unit of the present invention is provided with a diversion groove on the bottom wall of the casing, which can collect the condensed water from the outer wall of the air duct components such as the air outlet frame in the casing and divert the condensed water to a specific position to avoid condensation water droplets Falling on the electrical device under the wind guide member avoids safety hazards and reduces the failure rate of the electrical device.
  • the inventor of the present application creatively designed the air outlet frame so that it always shoots the air outlet mask connected to the air duct into the air duct during the movement between the open position and the closed position, so that the airflow flows continuously.
  • the air supply duct and the air outlet frame it solves the technical problems of the low gas flow rate of the cabinet air conditioner indoor unit with the movable air outlet frame in the prior art, the overall structure is not compact, and the noise is large, and the air conditioner is improved. Wind effect and user experience.
  • the limiting member formed with the arc-shaped rack is fixed to the air outlet frame and the motor is fixed to the casing. Compared with fixing the arc-shaped rack to the casing and the motor to the air outlet frame, it avoids The superposition of the vibration of the motor itself and the movement of the air outlet frame increases the gear vibration, thereby improving the stability of the air outlet frame movement and prolonging the service life of the gear and the curved rack.
  • Fig. 1 is a schematic cross-sectional view of a cabinet-type air conditioner indoor unit according to an embodiment of the present invention
  • Fig. 2 is a schematic cross-sectional view of the air guide member in Fig. 1, wherein the air outlet frame part is in an open position;
  • Fig. 3 is a schematic enlarged view of area A in Fig. 2;
  • FIG. 4 is a schematic cross-sectional view of the air guide member in FIG. 1, wherein the air outlet frame part is in a closed position;
  • Fig. 5 is a schematic side view of the air outlet frame component in Fig. 2;
  • Fig. 6 is a schematic exploded view of the air outlet frame component shown in Fig. 5;
  • Fig. 7 is a schematic side view of the air guide in Fig. 6 viewed from rear and lower forwards;
  • FIG. 8 is a schematic enlarged view of area B in FIG. 7;
  • Figure 9 is a schematic side view of the limiting member in Figure 6;
  • Fig. 10 is a schematic exploded view of the driving device in Fig. 2.
  • Fig. 1 is a schematic cross-sectional view of a cabinet-type air conditioner indoor unit 100 according to an embodiment of the present invention.
  • the cabinet-type air conditioner indoor unit 100 may include a casing 110 with an air inlet of the casing and an air outlet of the casing, an air supply assembly arranged in the casing 110, and an air inlet flow path of the air supply assembly. Heat exchange components.
  • the casing 110 may be surrounded by a base and a body arranged on the base, and the body may include a front panel, a flow guide extension plate 115, two lateral side panels, and a back panel.
  • the air inlet of the casing can be formed on the back panel.
  • the guide extension plate 115 may be disposed under the front panel, and the air outlet of the casing may include a lower air outlet 116 surrounded by the top end of the guide extension plate 115 and the bottom end of the front panel.
  • the air supply component may be configured to suck in ambient air from the surrounding environment of the air inlet of the cabinet and promote the air to flow to the air outlet of the cabinet.
  • the air supply assembly may include a centrifugal fan 121 and a centrifugal fan 122, an air duct main body 123 for accommodating and supporting the centrifugal fan 121 and the centrifugal fan 122, two air duct guard plates and an air outlet frame 130.
  • the centrifugal fan 121 and the centrifugal fan 122 may both be horizontal double-suction centrifugal fans.
  • the centrifugal fan 121 may be configured to supply air upward.
  • the centrifugal fan 122 may be disposed under the centrifugal fan 121 and configured to blow air downward.
  • the air duct main body 123 may be formed with two air duct parts isolated from each other and extending in opposite directions.
  • Each air duct part includes an accommodating section shaped to match the outer wall of a volute of a centrifugal fan and a diversion section for leading out the airflow blown by the centrifugal fan.
  • two lateral side walls of each air duct portion respectively form an air inlet at the position corresponding to the air inlet of the fan.
  • the top end of the upper air duct part and the bottom end of the lower air duct part are each formed with an airflow outlet.
  • the air outlet frame 130 may be disposed under the air duct main body 123 and communicate with the lower air duct part to guide the air flow blown by the centrifugal fan 122 to the lower air outlet 116.
  • an annular diversion groove 212 may be formed at the top periphery of the air outlet frame 130 for collecting the condensed water flowing down from the air duct main body 123.
  • Two air duct guard plates may be arranged on the lateral sides of the air duct main body 123, and together with the air duct main body 123, form the return air passage of the centrifugal fan 121 and the centrifugal fan 122.
  • the indoor heat exchanger 140 may be arranged in the return air passage.
  • the air conditioner indoor unit 100 may further include a wind guide member 200 for receiving the air flow blown from the upper air duct portion of the air duct main body 123 and passing the air flow through the front panel, the two lateral side panels and The top opening enclosed by the back panel leads to the indoor environment.
  • the air guiding member 200 may include a housing 210 with an air inlet opening 2111 and an air outlet opening 2112 on the bottom wall and the top wall, respectively, a communicating air duct 230 fixed in the housing 210 and the air inlet and the air inlet opening 2111 butting, and The wind frame member 220 and a driving device for driving the air outlet frame member 220 to rotate between the open position and the closed position.
  • the air inlet opening 2111 of the housing 210 may be arranged to be connected to the air outlet of the upper air duct.
  • FIG. 5 is a schematic side view of the air outlet frame component 220 in FIG. 2;
  • FIG. 6 is a schematic exploded view of the air outlet frame component 220 shown in FIG. 5.
  • the air outlet frame member 220 may include an air outlet frame 221 formed with an air duct for receiving the air flow blown from the communicating air duct 230.
  • the air outlet frame 221 can be configured to install the air outlet mask connected to the air duct 230 in the air duct.
  • the air outlet of the air outlet frame 221 passes through the air outlet opening 2112 of the housing 210 and The top opening of the casing 110 is exposed above the casing 110 and forms a continuous air guide channel together with the upper side air duct and the communicating air duct 230 to lead the air flow forward; when the air outlet frame 221 moves to the closed position, The air outlet frame 221 is completely inside the casing 210 to lower the center of gravity of the whole machine when the air conditioner is not working.
  • the air outlet frame component 220 may further include an elastic sealing ring 228 fixed at the air inlet of the air outlet frame 221 to seal the air outlet frame 221 and the communicating air duct 230 when the air outlet frame 221 is in the open position. The gap between.
  • the air outlet frame member 220 can be configured to rotate around a fixed axis fixed to the rear of the housing 210.
  • the fixed axis can be located on the back side of the air duct of the air outlet frame 221 to increase the radius of rotation of the air duct of the air outlet frame 221 around the fixed axis, thereby reducing the distance between the air outlet frame 221 and the communicating air duct 230 when the air outlet frame 221 is in the open position , Thereby reducing the overall size of the wind guide member 200.
  • the communicating air duct 230 may be arranged to extend upward and forward to further reduce the gap between the air outlet frame 221 and the communicating air duct 230 when the air outlet frame 221 is in the open position.
  • Fig. 3 is a schematic enlarged view of area A in Fig. 2.
  • the bottom wall of the housing 210 may be formed with an upwardly opening diversion groove 212 for receiving the condensed water flowing down from the air outlet frame 221 and the communicating air duct 230 and draining the condensed water.
  • the diversion groove 212 may be formed at the periphery of the air inlet opening 2111.
  • the outer side wall of the diversion groove 212 may be arranged to extend from top to bottom to facilitate the inflow of condensed water.
  • a skirt 232 extending downward may be formed at the periphery of the air inlet of the communicating air duct 230, and the skirt 232 may be sleeved on the top end of the upper air duct to receive the air flow blown from the centrifugal fan 121.
  • the skirt 232 may be configured to cooperate with the peripheral wall of the air inlet opening 2111 to limit the displacement of the communicating air duct 230 in the horizontal direction.
  • the peripheral edge of the air inlet of the communicating air duct 230 may be set on the top of the inner side wall of the diversion groove 212 so that the condensed water on the outer wall of the communicating duct 230 can flow into the diversion groove 212.
  • a plurality of downwardly extending hooks 231 may also be formed at the periphery of the air inlet of the communicating air duct 230.
  • the bottom wall of the diversion groove 212 can be provided with a plurality of bayonet openings 213 correspondingly, and the plurality of undercuts 231 can be arranged to pass through the plurality of bayonet openings 213 to be clamped with the bottom wall of the diversion groove 212 to be in a vertical direction.
  • the displacement of the connecting air duct 230 is limited, and the stability of the connecting air duct 230 is further improved.
  • a plurality of barbs 231 are all arranged on the outside of the skirt 232.
  • Each undercut 231 can be configured to be clamped with a part of the bottom wall of the diversion groove 212 outside the bayonet 213 to prevent the condensed water from flowing out of the bayonet 213.
  • Fig. 10 is a schematic exploded view of the driving device in Fig. 2.
  • the driving device may include a gear 241, a motor 242 drivingly connected to the gear 241, and a mounting box 243 for fixing the motor 242.
  • the air outlet frame component 220 may further include a limiting member 222 fixedly connected to the air outlet frame 221.
  • the limiting member 222 is formed with an arc-shaped rack 2222 for meshing with the gear 241 to define the movement path of the wind frame 221.
  • the limiting member 222 formed with the arc-shaped rack 2222 is fixed to the air outlet frame 221, and the motor 242 is fixed to the housing 210, compared to fixing the arc-shaped rack 2222 to the housing
  • the body 210 and the motor 242 are fixed to the air outlet frame 221, which avoids the superimposition of the vibration of the motor 242 and the movement of the air outlet frame 221 which aggravate the vibration of the gear 241, thereby improving the stability of the movement of the air outlet frame 221 and extending the gear
  • the service life of 241 and curved rack 2222 is provided in the cabinet-type air conditioner indoor unit 100 of the present invention.
  • the limiting member 222 can be fixed to the front of the air outlet frame to increase the distance between the meshing point of the arc-shaped rack 2222 and the gear 241 from the fixed axis, thereby reducing the driving force required to drive the air outlet frame 221 to move, and reducing gears
  • the reaction force received by the 241 and the arc-shaped rack 2222 prolongs the service life of the gear 241 and the arc-shaped rack 2222.
  • the pivot hole of the air outlet frame 221 and the fixed shaft can be arranged to be opposite to each other.
  • the fixed shaft moves in the radial direction of the fixed shaft to realize automatic adjustment of the position of the arc-shaped rack 2222.
  • FIG. 9 is a schematic side view of the limiting member 222 in FIG. 6.
  • the limiting member 222 may include a mounting plate 2221 and an arc-shaped rack 2222 for fixed connection with the air outlet frame 221.
  • the arc-shaped rack 2222 can be arranged to extend from the mounting plate 2221 to the direction of the gear 241, and the surface of the mounting plate 2221 is perpendicular to the surface of the mounting plate 2221 with teeth formed thereon.
  • the limiting member 222 may further include a rib 2223.
  • the rib 2223 can be arranged opposite to the arc-shaped rack 2222 and sandwich the gear 241 between it and the arc-shaped rack 2222.
  • the base may be formed with an anti-dropping stop and an anti-seizing stop extending toward the limiting member 222.
  • the curved rack 2222 and the rib 2223 can be arranged between the anti-dropping stop and the anti-seizing stop to prevent the gear 241 from disengaging from the curved rack 2222 or the gear 241 and the curved rack 2222 engage too much.
  • the curved rack 2222 may be arranged on the front side of the rib 2223.
  • At least one roller 2432 may be provided for the anti-falling stopper and the anti-seizing stopper respectively.
  • the rotation axis of each roller 2432 can be parallel to the rotation axis of the gear 241, and is rotatably connected with a corresponding stop, so as to reduce the movement resistance of the air outlet frame 221.
  • the limiting member 222 may further include an upper limiting plate 2224 connecting the arc-shaped rack 2222 and the top end of the rib 2223 and a lower limiting plate 2225 connecting the arc-shaped rack 2222 and the bottom end of the rib 2223.
  • the base may also be formed with a baffle plate 2431 that is arched from the top peripheral edge and the bottom peripheral edge of the mounting hole of the mounting gear 241 toward the stopper 222.
  • the upper limit plate 2224 may be configured to contact and cooperate with the baffle 2431 when the air outlet frame 221 moves to the closed position, so as to prevent the air outlet frame 221 from rotating down and out of position.
  • the lower limit plate 2225 may be configured to contact and cooperate with the baffle 2431 when the air outlet frame 221 moves to the open position, so as to prevent the air outlet frame 221 from rotating upwardly and excessively.
  • the number of the limiting member 222 and the driving device is preferably two, so as to further improve the stability of the movement of the air outlet frame 221.
  • the two limiting members 222 are respectively fixedly connected to the two lateral side plates of the air outlet frame 221.
  • the gear 241 of each driving device is configured to mesh with an arc-shaped rack 2222 of a limiting member 222.
  • the gears 241 of the two driving devices can both be arranged between the two limiting members 222, that is, the arc-shaped rack 2222 of each limiting member 222 extends in a direction close to the other limiting member 222 to avoid dust falling Increase movement resistance between the teeth.
  • the air outlet frame component 220 may further include two transverse decorative panels 223.
  • Each lateral decorative plate 223 can be fixedly connected to a lateral side plate of the air outlet frame 221 and cover a part of the limiting member 222 to further prevent dust from falling between the teeth and increasing movement resistance.
  • the air outlet frame component 220 may further include a top cover 224.
  • the top cover 224 may be fixedly connected to the air outlet frame 221 and close the top opening of the casing 110 when the air outlet frame 221 is in the closed position to prevent dust from falling into the casing 110.
  • Each lateral side panel may include a trim main body 2231 and a flange 2232.
  • the trim main body 2231 can be set to be fixedly connected to a lateral side plate of the air outlet frame 221 and cover a part of the limiting member 222.
  • the flange 2232 may be arranged to extend from the top of the trim main body 2231 in a direction away from the air outlet frame 221 and be fastened to the air outlet frame 221.
  • the top cover 224 can be set to be fastened to the flange 2232 to improve the stability of the top cover 224 and prevent the top cover 224 from bulging.
  • the top cover 224 and the two horizontal decorative plates 223 can be separated from the air outlet frame 221 to form a cavity temperature insulation zone between the air outlet frame 221 and the top cover 224 and the horizontal decorative plates 223 to prevent the ambient air from directly contacting the air outlet
  • the frame 221 generates condensed water on the outer surface of the air outlet frame 221.
  • a heat insulation pad can also be arranged in the cavity to further avoid condensation water on the outer surface of the air outlet frame 221.
  • the air outlet frame member 220 may further include a deflector 225 arranged at the bottom of the air outlet frame 221 to remove The condensed water on the outer wall of the wind frame 221 is guided to a specific location.
  • the specific position may be any position other than the projection of the motor 242 on the horizontal plane.
  • FIG. 7 is a schematic side view of the air guide 225 in FIG. 6 viewed from the rear bottom and front top;
  • FIG. 8 is a schematic enlarged view of the area B in FIG. 7. 7 and 8, specifically, the air guide 225 may include at least one air guide rib 2251 extending downward from the front peripheral edge of the air inlet of the air outlet frame 221, for guiding the condensed water above the motor 242 Flow to the aforementioned specific location.
  • at least one is one, two or more than two.
  • Each diversion rib 2251 can be arranged to extend in the transverse direction, and it extends in the vertical direction from its transverse ends to the middle, so as to condense the condensed water on the diversion rib 2251 on the diversion rib 2251 The lowest point (the bottom end of the middle), drips from the lowest point to a specific location.
  • the number of guide ribs 2251 may be multiple, and each motor 242 is provided with a plurality of guide ribs 2251 distributed in the front-to-rear direction to further improve the safety of the cabinet.
  • the air guide 225 may further include a mounting portion 2252 in a ring shape and fixedly connected to the air outlet frame 221, and the air guide ribs 2251 may be arranged to extend downward from the bottom of the mounting portion 2252.
  • the elastic sealing ring 228 can be sandwiched between the mounting portion 2252 and the air outlet frame 221, that is, the elastic sealing ring 228 is fixed on the air outlet frame 221 through the air guide 225.
  • the air outlet frame 221 and the air guide 225 can be integrally formed.
  • the air outlet frame component 220 may further include a horizontal swing blade group 226 and a vertical swing blade group 227 arranged at the air outlet of the air outlet frame 221 for adjusting in the vertical direction and the horizontal direction, respectively.
  • the direction of air flow can be arranged on the front side of the vertical swing leaf group 227.
  • the cabinet type air conditioner indoor unit 100 may further include four uprights respectively arranged on both lateral sides of the air blowing assembly.
  • the bottom of the column can be set to be fixedly connected to the base, and the front panel, two lateral side panels and the back panel can be enclosed in the four columns.
  • the two air duct guard plate air outlet frames 130 can be arranged to be firmly connected to the air duct main body 123.
  • the air duct main body 123 may be arranged to pass through two air duct guard plates and be fastened to the four uprights, so that the air supply assembly is stably and reliably fixed in the casing 110.
  • the housing 210 may be configured to be firmly connected to the four uprights.
  • the air-conditioning indoor unit 100 may further include a fresh air device 170 and a main control board disposed under the air supply assembly.
  • the fresh air device 170 can introduce outdoor air into the return air passage, and then blow it to the indoor environment through a centrifugal fan, so as to improve the indoor air quality.
  • the present invention also includes another embodiment.
  • the difference between this embodiment and the previous embodiment is that the wind guide member 200 does not include the housing 210, the fixed shaft and the driving device can be directly fixed to the casing 110, and the communicating air duct 230 can be connected to the air duct.
  • the main body 123 is made in one piece.

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Abstract

一种柜式空调室内机(100)。该柜式空调室内机(100)包括机壳(110)、送风组件和导风构件(200)。机壳(110)的周壁形成有机壳进风口且其顶部形成有顶部开口。送风组件配置为从机壳进风口的周围环境吸入环境空气并促使空气向顶部开口流动。导风构件(200)设置于送风组件的上方,配置为接收自送风组件吹出的气流并将该气流经顶部开口导流至室内环境。导风构件(200)包括出风框部件(220)以及底壁和顶壁分别形成有进风开口(2111)和出风开口(2112)的壳体。出风框部件(220)包括形成有风道的出风框(221),且出风框部件(220)配置为可在出风框(221)的出风口被显露于出风开口上方的打开位置和出风框完全处于壳体内的闭合位置之间运动。壳体的底壁形成有向上开口的导流槽(212),用于接收自出风框流下的冷凝水并将冷凝水导出。

Description

柜式空调室内机 技术领域
本发明涉及空气处理领域,特别是涉及一种柜式空调室内机。
背景技术
顶部开设有出风口的柜式空调室内机存在重心高、整机稳定性差,风机不工作时灰尘易通过出风口进入空调内部,不仅影响人体健康还会降低空调性能。现有技术中为克服上述问题存在在机壳内设置可接收从风机吹出的气流并将气流向室内环境导出或关闭出风口的出风框的技术方案。
发明内容
本发明的一个目的是要提供一种柜式空调室内机,其可避免壳体内的冷凝水滴落至导风构件下方的电器件上。
本发明一个进一步的目的是要提高气体的流动速率。
本发明另一个进一步的目的是要提高出风框运动的稳定性。
特别地,本发明提供了一种柜式空调室内机,包括:
机壳,其周壁形成有机壳进风口,且其顶部形成有顶部开口;
送风组件,配置为从所述机壳进风口的周围环境吸入环境空气并促使空气向所述顶部开口流动;以及
导风构件,设置于所述送风组件的上方,配置为接收自所述送风组件吹出的气流并将该气流经所述顶部开口导流至室内环境;其特征在于,所述导风构件包括:
壳体,固定于所述机壳的顶部,且其底壁和顶壁分别形成有进风开口和出风开口;和
出风框部件,包括形成有风道的出风框,且所述出风框部件配置为可在出风框的出风口被显露于所述出风开口及顶部开口上方的打开位置和出风框完全处于所述壳体内的闭合位置之间运动;且
所述壳体的底壁形成有向上开口的导流槽,用于接收自所述出风框流下的冷凝水并将冷凝水导出。
可选地,所述导风构件还包括:
连通风道,其进风口设置为与所述进风开口对接,其出风口设置为被罩 设在所述出风框的风道内,且所述进风开口设置为与所述送风组件的气流出口对接。
可选地,所述导流槽形成于所述进风开口的周缘处;且
所述连通风道的进风口的周缘处搭设在所述导流槽的内周壁的顶端。
可选地,所述连通风道的进风口的周缘处形成有向下延伸的裙部,所述裙部设置为与所述进风开口的周壁配合,以在水平方向上限定所述连通风道的位移。
可选地,所述连通风道的底部形成有多个向下延伸的倒勾,所述导流槽的底壁对应地开设有多个卡口,多个所述倒勾设置为分别穿过所述多个卡口与所述导流槽的底壁卡接。
可选地,每个所述倒勾设置为与所述导流槽的底壁的位于所述卡口外侧的部分卡接。
可选地,所述出风框部件还包括:
弹性密封圈,设置于所述出风框的进风口处,配置为当所述出风框部件处于所述打开位置时密封所述出风框与所述连通风道之间的间隙。
可选地,所述出风框部件还包括:
安装件,其包括呈环状并与所述出风框固定连接的安装部,所述弹性密封圈被夹置在所述安装部与所述出风框之间。
可选地,所述柜式空调室内机还包括:
至少一个驱动装置,配置为驱动所述出风框绕一固定于所述机壳后部的定轴转动,每个所述驱动装置包括齿轮、与所述齿轮驱动连接的电机以及用于安装所述电机的基座;且
所述出风框部件还包括至少一个限位件,每个所述限位件形成有用于与所述齿轮啮合的弧形齿条,以限定所述出风框的运动路径。
可选地,所述驱动装置设置于所述出风框的下方,且所述出风框在水平面上的投影覆盖所述电机;且所述安装件还包括:
至少一个导流筋,设置为自所述安装部的底部向下延伸,且所述至少一个导流筋配置为将所述电机上方的冷凝水导流至所述电机在水平面上的投影之外的任一位置。
本发明的柜式空调室内机在壳体的底壁设置导流槽,可收集自壳体内如出风框等风道构件的外壁的冷凝水并将冷凝水导流至特定位置,避免冷凝水 滴落至导风构件下方的电器件上,避免了安全隐患,降低了电器件的故障率。
进一步地,本申请的发明人创造性地将出风框设计成其在打开位置和闭合位置之间运动的过程中始终将连通风道的出风口罩射在其风道内,使气流不间断地流过送风风道和出风框,解决了现有技术中具有可动出风框的柜式空调室内机气体流动速率较低、整机结构不紧凑、噪音较大的技术难题,提高了空调出风效果和用户体验。
进一步地,本发明将形成有弧形齿条的限位件固定于出风框、将电机固定于机壳,相比于将弧形齿条固定于机壳、电机固定于出风框,避免了因电机本身的振动与出风框的窜动叠加而加剧齿轮振动,进而提高了出风框运动的稳定性,延长了齿轮和弧形齿条的使用寿命。
根据下文结合附图对本发明具体实施例的详细描述,本领域技术人员将会更加明了本发明的上述以及其他目的、优点和特征。
附图说明
后文将参照附图以示例性而非限制性的方式详细描述本发明的一些具体实施例。附图中相同的附图标记标示了相同或类似的部件或部分。本领域技术人员应该理解,这些附图未必是按比例绘制的。附图中:
图1是根据本发明一个实施例的柜式空调室内机的示意性剖视图;
图2是图1中导风构件的示意性剖视图,其中出风框部件处于打开位置;
图3是图2中区域A的示意性放大图;
图4是图1中导风构件的示意性剖视图,其中出风框部件处于闭合位置;
图5是图2中出风框部件的示意性侧视图;
图6是图5所示的出风框部件的示意性爆炸视图;
图7是从后下方向前上方观察图6中导流件的示意性侧视图;
图8是图7中区域B的示意性放大图;
图9是图6中限位件的示意性侧视图;
图10是图2中驱动装置的示意性爆炸视图。
具体实施方式
图1是根据本发明一个实施例的柜式空调室内机100的示意性剖视图。参见图1,柜式空调室内机100可包括开设有机壳进风口和机壳出风口的机壳110、设置于机壳110内的送风组件、以及设置于送风组件的进风流路上 的换热组件。
机壳110可由底座和设置于底座上的机身围成,机身可包括前面板、导流延伸板115、两个横向侧板以及后背板。其中机壳进风口可形成于后背板。导流延伸板115可设置于前面板的下方,机壳出风口可包括由导流延伸板115的顶端与前面板的底端围成的下部出风口116。
送风组件可配置为从机壳进风口的周围环境吸入环境空气并促使空气向机壳出风口流动。
在一些实施例中,送风组件可包括离心风机121和离心风机122、用于容纳并支撑离心风机121和离心风机122的风道主体123、两个风道护板和出风框130。
离心风机121和离心风机122可均为横置的双吸式离心风机。离心风机121可配置为向上送风。离心风机122可设置于离心风机121的下方且配置为向下送风。
风道主体123可形成有两个互相隔离且反向延伸的风道部。每个风道部均包括与一个离心风机的蜗壳外壁形配的容置段和将该离心风机吹出的气流导出的导流段。其中每个风道部的两个横向侧壁对应风机进风口的位置处分别形成有一个气流入口。上侧风道部的顶端和下侧风道部的底端各形成有一个气流出口。
出风框130可设置于风道主体123的下方,并与下侧风道部连通,以将离心风机122吹出的气流导向下部出风口116。在一些实施例中,出风框130的顶部周缘处可形成有环状导流槽212,用于收集自风道主体123流下的冷凝水。
两个风道护板可设置于风道主体123的横向两侧,并与风道主体123共同围成离心风机121和离心风机122的回风通道。室内换热器140可设置于回风通道内。
图2是图1中导风构件的示意性剖视图,其中出风框部件220处于打开位置;图4是图1中导风构件的示意性剖视图,其中出风框部件220处于闭合位置。参见图2和图4,空调室内机100还可包括导风构件200,用于接收由风道主体123的上侧风道部吹出的气流并将该气流经由前面板、两个横向侧板及后背板围成的顶部开口导向室内环境。
导风构件200可包括底壁和顶壁分别开设有进风开口2111和出风开口 2112的壳体210、固定于壳体210内且进风口与进风开口2111对接的连通风道230、出风框部件220、以及用于驱动出风框部件220在打开位置和闭合位置之间转动的驱动装置。其中壳体210的进风开口2111可设置为与上侧风道部的气流出口对接。
图5是图2中出风框部件220的示意性侧视图;图6是图5所示的出风框部件220的示意性爆炸视图。参见图5和图6,出风框部件220可包括形成有风道的出风框221,用于接收自连通风道230吹出的气流。出风框221可设置为将连通风道230的出风口罩设在其风道内,当出风框221运动至打开位置时,出风框221的出风口经由壳体210的出风开口2112及机壳110的顶部开口显露于机壳110的上方,与上侧风道部、连通风道230共同形成连续的导风通道,将气流向前导出;当出风框221运动至闭合位置时,出风框221完全处于壳体210内,以在空调不工作时降低整机重心。
在一些实施例中,出风框部件220还可包括固定于出风框221的进风口处的弹性密封圈228,以在出风框221处于打开位置时密封出风框221与连通风道230之间的间隙。
出风框部件220可设置为绕一固定于壳体210后部的定轴转动。定轴可位于出风框221的风道后侧,以增大出风框221的风道绕定轴旋转的转动半径,进而减小出风框221处于打开位置时与连通风道230之间的间隙,进而减小导风构件200的整体尺寸。
连通风道230可设置为自下向上并向前延伸,以进一步减小出风框221处于打开位置时与连通风道230之间的间隙。
图3是图2中区域A的示意性放大图。参见图3,壳体210的底壁可形成有向上开口的导流槽212,用于接收自出风框221及连通风道230流下的冷凝水并将冷凝水导出。其中,导流槽212可形成于进风开口2111的周缘处。导流槽212的外侧壁可设置为自上至下向内延伸,以便于冷凝水的流入。
连通风道230的进风口的周缘处可形成有向下延伸的裙部232,裙部232可套设在上侧风道部的顶端,以接收自离心风机121吹出的气流。
裙部232可设置为与进风开口2111的周壁配合,以在水平方向上限定连通风道230的位移。连通风道230的进风口的周缘处可搭设在导流槽212的内侧壁的顶端,以使连通风道230外壁的冷凝水流入导流槽212内。
连通风道230的进风口的周缘处还可形成有多个向下延伸的倒勾231。 导流槽212的底壁可对应地开设有多个卡口213,多个倒勾231可设置为分别穿过多个卡口213与导流槽212的底壁卡接,以在竖直方向限定连通风道230的位移,进一步提高连通风道230的稳定性。其中,多个倒勾231均设置于裙部232的外侧。每个倒勾231可设置为与导流槽212的底壁的位于卡口213外侧的部分卡接,以避免冷凝水从卡口213流出。
图10是图2中驱动装置的示意性爆炸视图。参见图10,驱动装置可包括齿轮241、与齿轮241驱动连接的电机242、固定电机242的安装盒243。出风框部件220还可包括与出风框221固定连接的限位件222。限位件222形成有用于与齿轮241啮合的弧形齿条2222,以限定出风框221的运动路径。
本发明的柜式空调室内机100将形成有弧形齿条2222的限位件222固定于出风框221、将电机242固定于壳体210,相比于将弧形齿条2222固定于壳体210、电机242固定于出风框221,避免了因电机242本身的振动与出风框221的窜动叠加而加剧齿轮241振动,进而提高了出风框221运动的稳定性,延长了齿轮241和弧形齿条2222的使用寿命。
限位件222可固定于出风框的前部,以增大弧形齿条2222与齿轮241的啮合点距定轴的距离,进而降低驱动出风框221运动所需要的驱动力,减少齿轮241和弧形齿条2222受到的反作用力,延长齿轮241和弧形齿条2222的使用寿命。
在一些实施例中,为避免因出风框221受热膨胀使齿轮241与弧形齿条2222咬合过量甚至卡死现象的发生,出风框221与定轴配合的枢转孔可设置为可相对于定轴在定轴的径向方向上窜动,以实现弧形齿条2222位置的自动调节。
图9是图6中限位件222的示意性侧视图。参见图9,限位件222可包括用于与出风框221固定连接的安装板2221和弧形齿条2222。弧形齿条2222可设置为自安装板2221向靠经齿轮241的方向延伸,且其垂直于安装板2221的表面形成有齿。
在一些实施例中,限位件222还可包括肋板2223。肋板2223可与弧形齿条2222相对设置,并将齿轮241夹置在其与弧形齿条2222之间。基座可形成有向限位件222延伸的防脱止挡和防卡止挡。弧形齿条2222和肋板2223可设置于防脱止挡和防卡止挡之间,以防止齿轮241与弧形齿条2222脱离啮合关系或齿轮241与弧形齿条2222咬合过量。弧形齿条2222可设置于肋 板2223的前侧。
防脱止挡和防卡止挡可分别设置有至少一个滚轮2432。每个滚轮2432的转动轴线可与齿轮241的转动轴线平行,并与对应的止挡转动连接,以减小出风框221的运动阻力。
限位件222还可包括连接弧形齿条2222和肋板2223的顶端的上侧限位板2224以及连接弧形齿条2222和肋板2223的底端的下侧限位板2225。基座还可形成有自安装齿轮241的安装孔的顶部周缘处和底部周缘处向靠近限位件222的方向拱起的挡板2431。上侧限位板2224可配置为在出风框221运动至闭合位置时与挡板2431接触配合,以避免出风框221向下转动过位。下侧限位板2225可配置为在出风框221运动至打开位置时与挡板2431接触配合,以避免出风框221向上转动过位。
在本发明中,限位件222和驱动装置的数量优选为两个,以进一步提高出风框221运动的稳定性。两个限位件222分别与出风框221的两个横向侧板固定连接。每个驱动装置的齿轮241设置为与一个限位件222的弧形齿条2222啮合。
两个驱动装置的齿轮241可均设置于两个限位件222之间,即每个限位件222的弧形齿条2222均向靠近另一限位件222的方向延伸,以避免灰尘落入齿间增加运动阻力。
在一些实施例中,出风框部件220还可包括两个横向饰板223。每个横向饰板223可与出风框221的一个横向侧板固定连接,并覆盖部分限位件222,以进一步避免灰尘落入齿间增加运动阻力。
在一些实施例中,出风框部件220还可包括顶盖224。顶盖224可设置为与出风框221固定连接,并在出风框221处于闭合位置时关闭机壳110的顶部开口,防止灰尘落入机壳110内。
每个横向侧板可包括饰板主体2231和翻边2232。其中饰板主体2231可设置为与出风框221的一个横向侧板固定连接并覆盖部分限位件222。翻边2232可设置为自饰板主体2231的顶部向远离出风框221的方向延伸,并与出风框221卡固。顶盖224可设置为与翻边2232卡固,以提高顶盖224的稳定性并避免顶盖224鼓凸。
顶盖224和两个横向饰板223可与出风框221留有间隔,以在出风框221与顶盖224、横向饰板223之间形成空腔隔温带,避免环境空气直接接触出 风框221而在出风框221的外表面产生冷凝水。空腔内还可设置隔热垫,以进一步避免出风框221的外表面产生冷凝水。
在一些实施例中,为避免出风框221外壁的冷凝水滴落在其投影覆盖的电机242上,出风框部件220还可包括设置于出风框221底部的导流件225,以将出风框221外壁的冷凝水导流至特定位置。特定位置可为电机242在水平面上的投影之外的任一位置。
图7是从后下方向前上方观察图6中导流件225的示意性侧视图;图8是图7中区域B的示意性放大图。参见图7和图8,具体地,导流件225可包括自出风框221的进风口的前侧周缘处向下延伸的至少一个导流筋2251,用于将电机242上方的冷凝水导流至前述特定位置。在本发明中,至少一个为一个、两个或两个以上的更多个。
每个导流筋2251可设置为沿横向方向延伸,且其在竖向方向上自其横向两端向其中部渐扩延伸,以将导流筋2251上的冷凝水汇聚于导流筋2251的最低点(中部底端),自最低点滴落至特定位置。
在一些实施例中,导流筋2251的数量可为多个,且每一电机242的上方均设置有沿前后方向分布的多个导流筋2251,以进一步提高柜机的安全性。
在一些实施例中,导流件225还可包括呈环状并与出风框221固定连接的安装部2252,导流筋2251可设置为自安装部2252的底部向下延伸。弹性密封圈228可被夹置在安装部2252和出风框221之间,即弹性密封圈228通过导流件225固定在出风框221上。在另一些实施例中,出风框221可与导流件225一体成型。
在一些实施例中,出风框部件220还可包括设置于出风框221的出风口处的横摆叶组226和竖摆叶组227,用于分别在竖直方向上和横向方向上调节气流的流动方向。其中,横摆叶组226可设置于竖摆叶组227的前侧。
柜式空调室内机100还可包括分别设置于送风组件的横向两侧的四根立柱。立柱的底部可设置为与底座固定连接,前面板、两个横向侧板和后背板可合围于四根立柱。
两个风道护板出风框130可设置为与风道主体123紧固连接。风道主体123可设置为穿过两个风道护板与四根立柱紧固连接,以使送风组件稳定可靠地固定在机壳110内。壳体210可设置为与四根立柱紧固连接。
空调室内机100还可包括设置于送风组件下方的新风装置170和主控板。新风装置170可将室外空气引入回风通道内,再通过离心风机吹送至室内环境,以提高室内的空气质量。
本发明还包括另一实施例,该实施例与前述实施例的区别在于导风构件200不包括壳体210,定轴、驱动装置可直接固定于机壳110,连通风道230可与风道主体123制成一体件。
至此,本领域技术人员应认识到,虽然本文已详尽示出和描述了本发明的多个示例性实施例,但是,在不脱离本发明精神和范围的情况下,仍可根据本发明公开的内容直接确定或推导出符合本发明原理的许多其他变型或修改。因此,本发明的范围应被理解和认定为覆盖了所有这些其他变型或修改。

Claims (10)

  1. 一种柜式空调室内机,包括:
    机壳,其周壁形成有机壳进风口,且其顶部形成有顶部开口;
    送风组件,配置为从所述机壳进风口的周围环境吸入环境空气并促使空气向所述顶部开口流动;以及
    导风构件,设置于所述送风组件的上方,配置为接收自所述送风组件吹出的气流并将该气流经所述顶部开口导流至室内环境;其中,所述导风构件包括:
    壳体,固定于所述机壳的顶部,且其底壁和顶壁分别形成有进风开口和出风开口;和
    出风框部件,包括形成有风道的出风框,且所述出风框部件配置为可在出风框的出风口被显露于所述出风开口及顶部开口上方的打开位置和出风框完全处于所述壳体内的闭合位置之间运动;且
    所述壳体的底壁形成有向上开口的导流槽,用于接收自所述出风框流下的冷凝水并将冷凝水导出。
  2. 根据权利要求1所述的柜式空调室内机,其中,所述导风构件还包括:
    连通风道,其进风口设置为与所述进风开口对接,其出风口设置为被罩设在所述出风框的风道内,且所述进风开口设置为与所述送风组件的气流出口对接。
  3. 根据权利要求2所述的柜式空调室内机,其中,
    所述导流槽形成于所述进风开口的周缘处;且
    所述连通风道的进风口的周缘处搭设在所述导流槽的内周壁的顶端。
  4. 根据权利要求3所述的柜式空调室内机,其中,
    所述连通风道的进风口的周缘处形成有向下延伸的裙部,所述裙部设置为与所述进风开口的周壁配合,以在水平方向上限定所述连通风道的位移。
  5. 根据权利要求3所述的柜式空调室内机,其中,
    所述连通风道的底部形成有多个向下延伸的倒勾,所述导流槽的底壁对应地开设有多个卡口,多个所述倒勾设置为分别穿过所述多个卡口与所述导流槽的底壁卡接。
  6. 根据权利要求5所述的柜式空调室内机,其中,
    每个所述倒勾设置为与所述导流槽的底壁的位于所述卡口外侧的部分 卡接。
  7. 根据权利要求2所述的柜式空调室内机,其中,所述出风框部件还包括:
    弹性密封圈,设置于所述出风框的进风口处,配置为当所述出风框部件处于所述打开位置时密封所述出风框与所述连通风道之间的间隙。
  8. 根据权利要求7所述的柜式空调室内机,其中,所述出风框部件还包括:
    安装件,其包括呈环状并与所述出风框固定连接的安装部,所述弹性密封圈被夹置在所述安装部与所述出风框之间。
  9. 根据权利要求8所述的柜式空调室内机,其中,还包括:
    至少一个驱动装置,配置为驱动所述出风框绕一固定于所述机壳后部的定轴转动,每个所述驱动装置包括齿轮、与所述齿轮驱动连接的电机以及用于安装所述电机的基座;且
    所述出风框部件还包括至少一个限位件,每个所述限位件形成有用于与所述齿轮啮合的弧形齿条,以限定所述出风框的运动路径。
  10. 根据权利要求9所述的柜式空调室内机,其中,
    所述驱动装置设置于所述出风框的下方,且所述出风框在水平面上的投影覆盖所述电机;且所述安装件还包括:
    至少一个导流筋,设置为自所述安装部的底部向下延伸,且所述至少一个导流筋配置为将所述电机上方的冷凝水导流至所述电机在水平面上的投影之外的任一位置。
PCT/CN2020/072780 2019-01-31 2020-01-17 柜式空调室内机 WO2020156244A1 (zh)

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