WO2023284281A1 - 挂式空调室内机及具有其的空调 - Google Patents

挂式空调室内机及具有其的空调 Download PDF

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Publication number
WO2023284281A1
WO2023284281A1 PCT/CN2022/073497 CN2022073497W WO2023284281A1 WO 2023284281 A1 WO2023284281 A1 WO 2023284281A1 CN 2022073497 W CN2022073497 W CN 2022073497W WO 2023284281 A1 WO2023284281 A1 WO 2023284281A1
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WIPO (PCT)
Prior art keywords
plate body
air
air conditioner
indoor unit
main
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PCT/CN2022/073497
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English (en)
French (fr)
Inventor
刘丙磊
李涛
孙川川
韩涛
Original Assignee
重庆海尔空调器有限公司
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 重庆海尔空调器有限公司, 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 重庆海尔空调器有限公司
Publication of WO2023284281A1 publication Critical patent/WO2023284281A1/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
    • F24F1/0043Indoor units, e.g. fan coil units characterised by mounting arrangements
    • F24F1/0057Indoor units, e.g. fan coil units characterised by mounting arrangements mounted in or on a wall
    • 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
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/65Electronic processing for selecting an operating mode
    • F24F11/67Switching between heating and cooling modes
    • 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

Definitions

  • the invention relates to the field of air purification, in particular to a hanging air conditioner indoor unit and an air conditioner with the same.
  • the wall-mounted air conditioner includes a cooling mode and a heating mode.
  • the heating mode hot air is blown out of the air outlet. Since the hot air is not easy to sink, it is hoped that the hot air will be blown downward to achieve carpet-like air supply. The temperature of the entire room will rise evenly and the heating effect will be improved. better.
  • the cooling mode the air outlet blows cold air. Since the cold air is easy to sink, it is hoped that the cold air will be blown upwards to achieve shower-style air supply. The temperature of the entire room will be evenly lowered, and the cooling effect will be better. Therefore, in the heating mode, the air supply direction is downward; in the cooling mode, the air supply direction is upward.
  • the air outlet of the air conditioner is at the front and bottom of the shell.
  • the hot air needs to be blown diagonally downward, and in the cooling mode, the cold air needs to be blown diagonally upward.
  • the air guide range of this method is limited, and it is impossible to realize real hot air blowing down and cold air blowing up.
  • An object of the present invention is to provide a hanging air conditioner indoor unit to solve the technical problem of blowing hot air downwards and blowing cold air upwards.
  • the present invention provides a hanging air conditioner, which includes:
  • the casing, the bottom of the casing is provided with an air outlet with the opening facing downward;
  • Dominant wind panels which include:
  • the plate body, the first side of the plate body is pivotally arranged at the bottom of the housing, so that the plate body can rotate between the first position and the second position; wherein, the position where the plate body closes the air outlet is the first position, and the plate body The position facing downwards in the extension direction is the second position;
  • the auxiliary wind deflector is pivotally arranged on the second side of the plate body, wherein the second side of the plate body is opposite to the first side of the plate body;
  • the drive assembly is used to drive the main wind deflector and the secondary wind deflector to rotate.
  • the drive components include:
  • At least one main motor is arranged on the casing, and the rotating shaft of the main motor is connected to one of the two opposite ends of the first side of the plate body to drive the main wind plate to rotate.
  • the main wind panel also includes:
  • Two mounting plates are respectively arranged at both ends of the first side of the plate body
  • the two main rotating shafts are respectively installed on the two mounting plates;
  • Two shaft sleeves are respectively installed on the casing, and one end of each shaft sleeve is respectively sleeved on the main rotating shaft so that the plate body is erected on the casing, and the other end of at least one shaft sleeve is sleeved on the main motor on the reel.
  • the drive component also includes:
  • At least one auxiliary motor is arranged on the second side of the plate body to drive the auxiliary wind deflector to rotate.
  • the main wind panel also includes:
  • Two mounting seats are respectively arranged at opposite ends of the second side of the plate body, and an auxiliary motor is arranged in each mounting seat, and the rotating shaft of each auxiliary motor protrudes from the mounting seat;
  • Shaft holes are formed at both ends of the secondary air deflector near the second side of the main air deflector, and the protruding parts of the rotating shafts of the two auxiliary motors are accommodated in the shaft holes formed at both ends of the second side of the main air deflector.
  • the secondary wind deflector rotates between the third position and the fourth position; when the secondary wind deflector is attached to the side of the plate body facing the air outlet, it is in the third position, and the secondary wind deflector rotates from the third position to When it is consistent with the extending direction of the plate body, it is the fourth position.
  • the shape and size of the auxiliary wind deflector are substantially the same as the shape and size of the air outlet.
  • the interior of the housing defines an air duct with a downward air supply direction, and the air duct forms an air outlet at the bottom of the housing.
  • one side of the housing is a supporting surface
  • the board is pivotally arranged on a side of the air outlet close to the supporting surface
  • the present invention also provides an air conditioner, including an outdoor unit and the indoor unit of the hanging air conditioner in any one of the above embodiments.
  • the hanging type air conditioner indoor unit of the present invention comprises a casing, a main wind deflector, a secondary wind deflector and a driving assembly.
  • the bottom of the housing is provided with an air outlet opening downward.
  • the main wind plate includes a plate body, and the first side of the plate body is pivotally disposed on the bottom of the casing, so that the plate body can rotate between a first position and a second position. Wherein, the position where the plate body closes the air outlet is the first position, and the position where the plate body extends downward is the second position.
  • the secondary wind deflector is pivotally arranged on the second side of the plate body, wherein the second side of the plate body is opposite to the first side of the plate body; the driving assembly is used to drive the main wind deflector and the secondary wind deflector to rotate.
  • the bottom of the shell is provided with an air outlet with the opening facing downward.
  • the air outlet can send hot air vertically downward to realize real hot air. blow.
  • the plate body guides downward the vertically downward hot air blown out from the air outlet, further realizing downward blowing of the hot air.
  • the wind can be guided downward to the room; when the angle between the auxiliary air guide plate and the panel body is 90°, the wind direction can be guided horizontally to the room; the auxiliary air guide plate and the panel body When the included angle is less than 90°, the wind direction can be guided to the room in an oblique and upward direction, with a wide range of wind guidance, and real cold wind can be blown upwards.
  • Fig. 1 is a schematic diagram of a hanging air conditioner indoor unit according to an embodiment of the present invention
  • Fig. 2 is a schematic diagram of another viewing angle of the hanging air conditioner indoor unit according to an embodiment of the present invention.
  • Fig. 3 is a schematic diagram of a hanging air conditioner indoor unit in a mode according to an embodiment of the present invention
  • Fig. 4 is a schematic diagram of a mode of a wall-mounted air conditioner indoor unit according to an embodiment of the present invention.
  • Fig. 5 is a schematic cross-sectional view of a hanging air conditioner indoor unit according to an embodiment of the present invention.
  • Fig. 6 is a schematic diagram of an explosion in a wall-mounted air conditioner indoor unit according to an embodiment of the present invention.
  • Fig. 7 is an enlarged schematic diagram of place A in Fig. 6;
  • Fig. 8 is a schematic diagram of a secondary wind deflector in the indoor unit of the hanging air conditioner according to an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a hanging air conditioner indoor unit according to an embodiment of the present invention
  • Fig. 2 is a schematic diagram of another perspective of the hanging type air conditioner indoor unit according to an embodiment of the present invention
  • Fig. 3 is a hanging type air conditioner according to an embodiment of the present invention
  • FIG. 4 is a schematic diagram of the indoor unit of the hanging air conditioner in one embodiment of the present invention
  • FIG. 5 is a schematic cross-sectional view of the indoor unit of the hanging air conditioner in one embodiment of the present invention.
  • the hanging air conditioner indoor unit includes a housing 100, the top of the housing 100 (that is, the upper part of the housing 100) is provided with an air inlet 130, and the rear side of the housing 100 is a supporting surface. 140 , an air outlet 110 is opened at the bottom of the housing 100 (ie, the lower part of the housing 100 ).
  • An evaporator 500 , a fan 600 and an air duct 120 are sequentially arranged in the casing 100 from top to bottom.
  • the hanging air conditioner indoor unit can be hung on the wall through the support surface 140 , that is, it can be hung on the wall through the housing 100 at the rear side.
  • the hanging air conditioner indoor unit includes a casing 100 , a main wind deflector 200 , a secondary wind deflector 300 and a driving assembly.
  • the bottom of the casing 100 is provided with an air outlet 110 opening downward.
  • the main wind plate 200 includes a plate body 210, and a first side of the plate body 210 is pivotally disposed on the bottom of the casing 100, so that the plate body 210 can rotate between a first position and a second position. Wherein, the position where the plate body 210 closes the air outlet 110 is the first position, and the position where the plate body 210 extends downward is the second position.
  • the plate body 210 can rotate from the position covering the air outlet 110 to the position where the air outlet direction is downward, or it can be understood that the plate body 210 rotates 90° from the horizontal position (first position) to the vertical position (second position) .
  • first position the air outlet 110 is closed due to the cover of the plate body 210 , and this position of the plate body 210 is called the first position.
  • FIG. 3 when the plate body 210 is in the second position, the plate body 210 does not block the air outlet 110 , and the air outlet 110 provided at the bottom of the housing 100 with its opening facing downward can transport the wind vertically downward.
  • the bottom of the housing 100 is provided with an air outlet 110 with the opening facing downward.
  • the plate body 210 In the heating mode, when the plate body 210 is rotated to the second position, the plate body 210 does not block the air outlet 110 in any way, and the air outlet 110 can direct the hot air vertically. Send it down for real hot air blowing down.
  • the plate body 210 when the plate body 210 is located at the second position, the plate body 210 guides downward the vertically downward hot air blown out from the air outlet 110 , further realizing downward blowing of the hot air.
  • the auxiliary wind deflector 300 is pivotally disposed on the second side of the board body 210 , wherein the second side of the board body 210 is disposed opposite to the first side of the board body 210 .
  • the first side of the plate body 210 is rotatably connected with the casing 100 and is located on one side of the air outlet 110 , and the second side of the plate body 210 is opposite to the first side.
  • the plate 210 rotates to the second position, the plate 210 does not block the air outlet 110 , and the air outlet 110 and the housing 100 do not have any structural interference with the second side of the plate 210 .
  • the auxiliary wind deflector 300 is pivoted on the second side of the board body 210 and can rotate at any angle.
  • the secondary air deflector 300 can be attached to the plate body 210, and the angle between the secondary air deflector 300 and the plate body 210 is 0°; The included angle between the air plate 300 and the plate body 210 is 180°.
  • the secondary air deflector 300 is attached to the plate body 210, and the secondary air deflector 300 is not deployed relative to the plate body 210.
  • the included angle between the secondary air deflector 300 and the plate body 210 is 0°; As shown in Figure 3, at this time, the secondary air deflector 300 is fully expanded relative to the plate body 210, and the angle between the secondary air deflector 300 and the plate body 210 is 180° at this time; The angle can be arbitrarily selected from 0° to 180°.
  • the wind can be guided downward to the room; ;
  • the angle between the auxiliary air deflector 300 and the plate body 210 is less than 90°, the wind direction can be guided to the room in an oblique upward and upward direction, the air guide range is wide, and the real cold wind can be blown upward.
  • the auxiliary wind deflector 300 rotates between the third position and the fourth position; When it is in the third position, the auxiliary wind deflector 300 is in the fourth position when it is rotated from the third position to the direction in which the plate body 210 extends.
  • the secondary air deflector 300 is in the third position, that is, the secondary air deflector 300 can be attached to the plate body 210.
  • the angle between the secondary air deflector 300 and the plate body 210 is 0°, and the secondary air deflector 300 is in the fourth position. That is, the auxiliary air deflector 300 is fully unfolded relative to the board body 210 , and the included angle between the auxiliary air deflector 300 and the board body 210 is 180°.
  • the wind can be guided downward to the room; ;
  • the angle between the auxiliary air deflector 300 and the plate body 210 is less than 90°, the wind direction can be guided to the room in an oblique upward and upward direction, the air guide range is wide, and the real cold wind can be blown upward.
  • the shape and size of the auxiliary wind deflector 300 are substantially the same as the shape and size of the air outlet 110 . If the secondary air deflector 300 is smaller than the air outlet 110, it cannot guide all the wind delivered by the air outlet 110, and part of the air will be missed. Therefore, the shape and size of the secondary wind deflector 300 are approximately the same as those of the air outlet 110 so that the secondary wind deflector 300 can fully guide the wind blown out of the air outlet 110 to avoid omission.
  • the housing 100 defines an air duct 120 with a downward air supply direction inside the housing 100 , and the air duct 120 forms an air outlet 110 at the bottom of the housing 100 .
  • one side of the casing 100 is the support surface 140
  • the board 210 is pivotally disposed on a side of the air outlet 110 close to the support surface 140 .
  • Fig. 6 is an exploded schematic view of the indoor unit of the hanging air conditioner according to one embodiment of the present invention
  • Fig. 7 is an enlarged schematic view of point A in Fig. 6
  • Fig. 8 is an auxiliary wind deflector of the indoor unit of the hanging type air conditioner according to one embodiment of the present invention 300 schematic.
  • the driving assembly includes: at least one main motor 410 disposed on the housing 100 , the rotating shaft of the main motor 410 is at one of the two ends opposite to the first side of the board 210 One end is connected to drive the main wind plate 200 to rotate.
  • the driving assembly further includes: at least one auxiliary motor 420 disposed on the second side of the plate body 210 to drive the auxiliary wind deflector 300 to rotate.
  • the main motor 410 drives the main air deflector 200 to rotate
  • the auxiliary motor 420 drives the auxiliary air deflector 300 to rotate, which facilitates real-time control of the rotation of the main air deflector 200 and the auxiliary air deflector 300 . Further, it is convenient to realize the independent control of the active wind plate and the auxiliary wind deflector 300, and realize the air supply in different modes and directions.
  • the main motor 410 can be selected to drive the main air deflector 200 to rotate; in the cooling mode, the rotation of the main air deflector 200 and the secondary air deflector 300 can be respectively controlled to realize air supply in different directions, so that the air supply direction
  • the adjustable range is wide.
  • the main wind plate 200 further includes two mounting plates 220 , two main rotating shafts 230 and two shaft sleeves 240 .
  • the two mounting plates 220 are respectively disposed on two ends of the first side of the plate body 210 ; the two main rotating shafts 230 are respectively mounted on the two mounting plates 220 .
  • Two shaft sleeves 240 are respectively installed on the casing 100 , and one end of each shaft sleeve 240 is respectively sleeved on the main shaft 230 so that the plate body 210 is erected on the casing 100 , and the other end of at least one shaft sleeve 240 It is sleeved on the rotating shaft of the main motor 410 .
  • the main motor 410 drives the shaft sleeve 240 to rotate, the shaft sleeve 240 drives the main rotating shaft 230 to rotate, and the main rotating shaft 230 drives the plate body 210 to rotate.
  • the above manner is only exemplary, not the only manner.
  • the wind deflector further includes two installation seats 250, and the two installation seats 250 are respectively arranged at opposite ends of the second side of the plate body 210, and each installation seat 250 is provided with an auxiliary motor 420, each A rotating shaft 421 of an auxiliary motor protrudes from the mounting base 250 .
  • the secondary air deflector 300 forms shaft holes 310 near the two ends of the second side of the main air deflector 200 , and the protruding parts of the rotating shafts 421 of the two auxiliary motors are accommodated in the forming shafts at the two ends of the second side of the main air deflector 200 respectively. Inside the hole 310.
  • the present invention also provides an air conditioner, which includes an outdoor unit and the indoor unit of the wall-mounted air conditioner in any one of the above embodiments. Since the air conditioner includes the indoor unit of the hanging air conditioner in any of the above embodiments, the air conditioner has the technical effect of any of the above embodiments.

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

一种挂式空调室内机及具有其的空调,其中挂式空调室内机包括壳体、主导风板、副导风板和驱动组件。壳体底部设置开口朝下的出风口。主导风板包括板体,板体的第一侧枢转地设置于壳体底部,以使板体在第一位置和第二位置之间转动。其中,板体关闭出风口的位置为第一位置,板体延伸方向朝下的位置为第二位置。副导风板枢转地设置于板体的第二侧,其中板体的第二侧与板体的第一侧相对设置;驱动组件用于驱动主导风板和副导风板转动。壳体底部设置开口朝下的出风口,板体对出风口没有任何遮挡,出风口能将热风垂直向下送出,实现真正的热风下吹。副导风板与板体夹角小于90°时,可将风向斜向上以及向上的方向引导至室内,实现冷风上吹。

Description

挂式空调室内机及具有其的空调 技术领域
本发明涉及空气净化领域,特别是涉及一种挂式空调室内机及具有其的空调。
背景技术
目前挂式空调包括制冷模式和制热模式,制热模式下出风口吹出热风,由于热风不易下沉,因此希望将热风向下吹,实现地毯式送风,整个房间温度均匀升高,取暖效果更好。制冷模式下出风口吹出冷风,由于冷风容易下沉,因此,希望将冷风向上吹,实现沐浴式送风,整个房间温度均匀降低,制冷效果更好。由此,制热模式下,送风方向是向下的;制冷模式下,送风方向是向上的。目前空调的出风口在壳体的前下方,为满足不同模式下的送风方向,制热时,需让热风斜向下吹,制冷模式下,需让冷风斜向上吹。然而这种方式的导风范围受限,也没法实现真正的热风下吹和冷风上吹。
发明内容
本发明的一个目的是要提供一种挂式空调室内机,以解决热风向下吹、冷风向上吹的技术问题。
特别地,本发明提供一种挂式空调机,其包括:
壳体,壳体底部设置开口朝下的出风口;
主导风板,其包括:
板体,板体的第一侧枢转地设置于壳体底部,以使板体在第一位置和第二位置之间转动;其中,板体关闭出风口的位置为第一位置,板体延伸方向朝下的位置为第二位置;
副导风板,枢转地设置于板体的第二侧,其中板体的第二侧与板体的第一侧相对设置;
驱动组件,用于驱动主导风板和副导风板转动。
可选地,驱动组件包括:
至少一个主电机,设置于壳体上,主电机的转轴与板体的第一侧相对的两端的其中一端连接以带动主导风板转动。
可选地,主导风板还包括:
两个安装板,分别设置于板体的第一侧的两端;
两个主转轴,分别穿设于两个安装板上;
两个轴套,分别穿设于壳体上,每个轴套的一端分别套设在主转轴上以使板体架设于壳体上,且至少一个轴套的另一端套设在主电机的转轴上。
可选地,驱动组件还包括:
至少一个副电机,设置于板体的第二侧,带动副导风板转动。
可选地,主导风板还包括:
两个安装座,分别设置于板体的第二侧相对的两端,每个安装座内设置一个副电机,每个副电机的转轴从安装座内伸出;
副导风板靠近主导风板的第二侧的两端的形成轴孔,两个副电机的转轴伸出的部分分别容置于主导风板的第二侧的两端的形成轴孔内。
可选地,副导风板在第三位置和第四位置间转动;副导风板与板体朝向出风口的一侧贴合时为第三位置,副导风板从第三位置转至与板体延伸方向一致时为第四位置。
可选地,副导风板的形状和大小与出风口的形状和大小大致相同。
可选地,壳体内部限定出送风方向向下的风道,风道在壳体底部形成出风口。
可选地,壳体其中一个侧面为支撑面,板体枢转地设置于出风口靠近支撑面的一侧。
根据本发明的第二个方面,本发明还提供一种种空调,包括室外机和如上任一实施例的挂式空调室内机。
本发明的挂式空调室内机,其包括壳体、主导风板、副导风板和驱动组件。壳体底部设置开口朝下的出风口。主导风板包括板体,板体的第一侧枢转地设置于壳体底部,以使板体在第一位置和第二位置之间转动。其中,板体关闭出风口的位置为第一位置,板体延伸方向朝下的位置为第二位置。副导风板枢转地设置于板体的第二侧,其中板体的第二侧与板体的第一侧相对设置;驱动组件用于驱动主导风板和副导风板转动。壳体底部设置开口朝下的出风口,制热模式时,将当板体转动至第二位置,板体对出风口没有任何遮挡,出风口能将热风垂直向下送出,实现真正的热风下吹。而且,当板***于第二位置时,板体将出风口吹出的垂直向下的热风向下引导,进一步实现热风下吹。副导风板与板体夹角180°时,可将风向下引导至室内;副导 风板与板体夹角90°时,可将风向水平方向引导至室内;副导风板与板体夹角小于90°时,可将风向斜向上以及向上的方向引导至室内,导风范围较广,且能实现真正意义的冷风上吹。
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是本发明一个实施例的挂式空调室内机的示意图;
图2是本发明一个实施例的挂式空调室内机的另一个视角的示意图;
图3是本发明一个实施例的挂式空调室内机的一个模式下的示意图;
图4是本发明一个实施例的挂式空调室内机的一个模式下的示意图;
图5是本发明一个实施例的挂式空调室内机的剖面示意图;
图6是本发明一个实施例的挂式空调室内机中的***示意图;
图7是图6中A处放大示意图;
图8是本发明一个实施例的挂式空调室内机中的副导风板的示意图。
具体实施方式
图1是本发明一个实施例的挂式空调室内机的示意图;图2是本发明一个实施例的挂式空调室内机的另一个视角的示意图;图3是本发明一个实施例的挂式空调室内机的一个模式下的示意图;图4是本发明一个实施例的挂式空调室内机的一个模式下的示意图;图5是本发明一个实施例的挂式空调室内机的剖面示意图。如图1至图5所示,在本实施例中,挂式空调室内机包括壳体100,壳体100顶部(即壳体100的上部)开设进风口130,壳体100后侧为支撑面140,壳体100底部(即壳体100的下部)开设出风口110。壳体100内从上至下依次设置有蒸发器500、风扇600和风道120。挂式空调室内机可以通过支撑面140悬挂于墙壁上,也即通过位于后侧的壳体100悬挂于墙壁上。
如图1至图5所示,挂式空调室内机包括壳体100、主导风板200、副导风板300和驱动组件。壳体100底部设置开口朝下的出风口110。主导风 板200包括板体210,板体210的第一侧枢转地设置于壳体100底部,以使板体210在第一位置和第二位置之间转动。其中,板体210关闭出风口110的位置为第一位置,板体210延伸方向朝下的位置为第二位置。也即,板体210可从覆盖出风口110的位置旋转至出风方向向下的位置,或者可以理解为板体210从水平位置(第一位置)旋转90°至垂直位置(第二位置)。如图1至图2所示,当板体210位于第一位置时,由于板体210的遮挡,出风口110处于关闭的装置,板体210的这个位置称为第一位置。如图3所示,当板体210位于第二位置时,板体210对出风口110没有任何遮挡,壳体100底部设置的开口朝下的出风口110可将风垂直向下输送。
由此可见,壳体100底部设置开口朝下的出风口110,制热模式时,当板体210转动至第二位置,板体210对出风口110没有任何遮挡,出风口110能将热风垂直向下送出,实现真正的热风下吹。而且,当板体210位于第二位置时,板体210将出风口110吹出的垂直向下的热风向下引导,进一步实现热风下吹。
如图2-4所示,副导风板300枢转地设置于板体210的第二侧,其中板体210的第二侧与板体210的第一侧相对设置。板体210的第一侧与壳体100转动连接,并位于出风口110的一侧,板体210的第二侧与第一侧相对。
制冷模式时,板体210转动至第二位置,板体210对出风口110没有任何遮挡,出风口110以及壳体100对板体210的第二侧也不存在任何结构干涉。副导风板300枢转于板体210的第二侧,可在任意角度旋转。例如,副导风板300可与板体210贴合,此时副导风板300与板体210的夹角为0°;副导风板300也可转动至垂直位置,此时,副导风板300与板体210的夹角为180°。如图2所示,此时副导风板300与板体210贴合,副导风板300未相对板体210展开,此时副导风板300与板体210的夹角为0°;如图3所示,此时,副导风板300相对板体210完全展开,此时副导风板300与板体210的夹角为180°;副导风板300与板体210的夹角可在0°至180°内任意选择。
由此可见,副导风板300与板体210夹角180°时,可将风向下引导至室内;副导风板300与板体210夹角90°时,可将风向水平方向引导至室内;副导风板300与板体210夹角小于90°时,可将风向斜向上以及向上的方向引导至室内,导风范围较广,且能实现真正意义的冷风上吹。
在一些实施例中,如图3所示至图4所示,副导风板300在第三位置和第四位置间转动;副导风板300与板体210朝向出风口110的一侧贴合时为第三位置,副导风板300从第三位置转至与板体210延伸方向一致时为第四位置。副导风板300在第三位置即副导风板300可与板体210贴合,此时副导风板300与板体210的夹角为0°,副导风板300在第四位置即副导风板300相对板体210完全展开,此时副导风板300与板体210的夹角为180°。
由此可见,副导风板300与板体210夹角180°时,可将风向下引导至室内;副导风板300与板体210夹角90°时,可将风向水平方向引导至室内;副导风板300与板体210夹角小于90°时,可将风向斜向上以及向上的方向引导至室内,导风范围较广,且能实现真正意义的冷风上吹。
在一些实施例中,副导风板300的形状和大小与出风口110的形状和大小大致相同。若副导风板300小于出风口110,则无法对出风口110输送的全部的风进行引导,部分风会被遗漏。因此,副导风板300的形状和大小与出风口110的形状和大小大致相同以便副导风板300对出风口110吹出的风进行充分的引导,避免存在遗漏的情况。
在一些实施例中,如图5所示,壳体100内部限定出送风方向向下的风道120,风道120在壳体100底部形成出风口110。
在一些实施例中,壳体100其中一个侧面为支撑面140,板体210枢转地设置于出风口110靠近支撑面140的一侧。
图6是本发明一个实施例的挂式空调室内机中的***示意图;图7是图6中A处放大示意图;图8是本发明一个实施例的挂式空调室内机中的副导风板300的示意图。在一些实施方式中,如图6和图7所示,驱动组件包括:至少一个主电机410,设置于壳体100上,主电机410的转轴与板体210的第一侧相对的两端的其中一端连接以带动主导风板200转动。驱动组件还包括:至少一个副电机420,设置于板体210的第二侧,带动副导风板300转动。在该实施例中,主电机410驱动主导风板200转动,副电机420驱动副导风板300转动,方便实时控制主导风板200和副导风板300的转动。进一步地,方便实现主动风板与副导风板300的独立控制,实现不同模式和不同方向的送风。例如在制热模式下,可以选用主电机410驱动主导风板200转动;在制冷模式下,分别控制主导风板200和副导风板300转动,可实现不同方向的送风,使送风方向的可调范围较宽。
在一些实施例中,主导风板200还包括两个安装板220、两个主转轴230和两个轴套240。两个安装板220分别设置于板体210第一侧的两端;两个主转轴230分别穿设于两个安装板220上。两个轴套240分别穿设于壳体100上,每个轴套240的一端分别套设在主转轴230上以使板体210架设于壳体100上,且至少一个轴套240的另一端套设在主电机410的转轴上。主电机410驱动轴套240转动,轴套240带动主转轴230转动,主转轴230带动板体210转动。很显然,上述方式仅为示例性的,并不是唯一的方式。
在一些实施例中,导风板还包括两个安装座250,两个安装座250分别设置于板体210的第二侧相对的两端,每个安装座250内设置一个副电机420,每个副电机的转轴421从安装座250内伸出。副导风板300靠近主导风板200的第二侧的两端的形成轴孔310,两个副电机的转轴421伸出的部分分别容置于主导风板200的第二侧的两端的形成轴孔310内。
根据本发明的第二个方面,本发明还提供一种空调,该空调包括室外机和如上任一实施例的挂式空调室内机。由于该空调包括上述任一实施例的挂式空调室内机,因此,该空调具备上述任一实施例的技术效果。
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. 一种挂式空调室内机,包括:
    壳体,所述壳体底部设置开口朝下的出风口;
    主导风板,其包括:
    板体,所述板体的第一侧枢转地设置于所述壳体底部,以使所述板体在第一位置和第二位置之间转动;其中,所述板体关闭所述出风口的位置为第一位置,所述板体延伸方向朝下的位置为第二位置;
    副导风板,枢转地设置于所述板体的第二侧,其中所述板体的第二侧与所述板体的第一侧相对设置;
    驱动组件,用于驱动所述主导风板和所述副导风板转动。
  2. 根据权利要求1所述的挂式空调室内机,其中
    所述驱动组件包括:
    至少一个主电机,设置于所述壳体上,所述主电机的转轴与所述板体的第一侧相对的两端的其中一端连接以带动所述主导风板转动。
  3. 根据权利要求2所述的挂式空调室内机,其中
    所述主导风板还包括:
    两个安装板,分别设置于所述板体的第一侧的两端;
    两个主转轴,分别穿设于所述两个安装板上;
    两个轴套,分别穿设于所述壳体上,每个所述轴套的一端分别套设在所述主转轴上以使所述板体架设于所述壳体上,且至少一个所述轴套的另一端套设在所述主电机的转轴上。
  4. 根据权利要求1所述的挂式空调室内机,其中
    所述驱动组件还包括:
    至少一个副电机,设置于所述板体的第二侧,带动所述副导风板转动。
  5. 根据权利要求4所述的挂式空调室内机,其中
    所述主导风板还包括:
    两个安装座,分别设置于所述板体的第二侧相对的两端,每个所述安装 座内设置一个副电机,每个所述副电机的转轴从所述安装座内伸出;
    所述副导风板靠近所述主导风板的第二侧的两端的形成轴孔,两个所述副电机的转轴伸出的部分分别容置于所述主导风板的第二侧的两端的所述形成轴孔内。
  6. 根据权利要求1所述的挂式空调室内机,其中
    所述副导风板在第三位置和第四位置间转动;所述副导风板与所述板体朝向所述出风口的一侧贴合时为所述第三位置,所述副导风板从所述第三位置转至与所述板体延伸方向一致时为第四位置。
  7. 根据权利要求1所述的挂式空调室内机,其中
    所述副导风板的形状和大小与所述出风口的形状和大小大致相同。
  8. 根据权利要求1所述的挂式空调室内机,其中
    所述壳体内部限定出送风方向向下的风道,所述风道在所述壳体底部形成所述出风口。
  9. 根据权利要求1所述的挂式空调室内机,其中
    所述壳体其中一个侧面为支撑面,所述板体枢转地设置于所述出风口靠近所述支撑面的一侧。
  10. 一种空调,包括室外机和如权利要求1-9任意一项所述的挂式空调室内机。
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