WO2020083006A1 - 空调器 - Google Patents

空调器 Download PDF

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Publication number
WO2020083006A1
WO2020083006A1 PCT/CN2019/109188 CN2019109188W WO2020083006A1 WO 2020083006 A1 WO2020083006 A1 WO 2020083006A1 CN 2019109188 W CN2019109188 W CN 2019109188W WO 2020083006 A1 WO2020083006 A1 WO 2020083006A1
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WO
WIPO (PCT)
Prior art keywords
transmission member
water receiving
receiving tray
air conditioner
conditioner according
Prior art date
Application number
PCT/CN2019/109188
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English (en)
French (fr)
Inventor
白景辉
吴肖斌
曾文轩
刘秋华
冯杰
薛琴
黄中强
黄树经
Original Assignee
珠海格力电器股份有限公司
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Application filed by 珠海格力电器股份有限公司 filed Critical 珠海格力电器股份有限公司
Publication of WO2020083006A1 publication Critical patent/WO2020083006A1/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
    • 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

Definitions

  • the present application relates to the technical field of air conditioners, in particular, to an air conditioner.
  • a water receiving tray is provided in the air conditioner.
  • the water receiving tray is used to receive condensed water generated by the heat exchanger.
  • the air conditioner does not produce condensate when heating, no need to use the water receiving tray.
  • the existing water receiving trays are all fixedly installed on the air inlet channel of the air conditioner, which affects the air inlet area, hinders the air inlet, and reduces the heat exchange efficiency.
  • the present application provides an air conditioner to solve the problem that the water receiving tray in the prior art affects air intake.
  • an air conditioner including: a housing, the housing has a containing cavity and an air inlet and an air outlet communicating with the containing cavity; a heat exchanger, provided in the containing cavity; a water receiving tray, movable The water receiving tray has a water receiving position located below the heat exchanger to receive the condensed water, and a avoidance position to avoid the air inlet.
  • the air conditioner further includes: a driving device, which is drivingly connected to the water receiving tray to drive the water receiving tray to move.
  • the driving device includes: a first transmission member connected to the water receiving tray, the first transmission member is used to drive the water receiving tray to move; a second transmission member is rotatably provided, and the second transmission member cooperates with the first transmission member To drive the first transmission member to move.
  • first transmission member is an arc-shaped rack
  • second transmission member is a gear
  • the driving device further includes: a guide member, which is used to guide and limit the first transmission member.
  • the guide member and the second transmission member are spaced apart, one side of the first transmission member cooperates with the second transmission member, and the other side of the first transmission member cooperates with the guide member.
  • the driving device further includes: a first driving part disposed on the first transmission member, and the first driving part is drivingly connected to the water receiving tray to drive the water receiving tray to rotate.
  • the driving device further includes: a second driving part that is drivingly connected to the second transmission member to drive the second transmission member to rotate.
  • the driving device further includes a shield, which is disposed on the inner wall of the housing, and both the first transmission member and the second transmission member are disposed on the shield.
  • the two driving devices are respectively drivingly connected to both ends of the water receiving tray.
  • the air inlet is located below the heat exchanger
  • the water receiving position is located on the path from the air inlet to the heat exchanger
  • the avoidance position is between the side wall of the housing and the heat exchanger.
  • the water receiving tray is movably arranged in the accommodating cavity of the housing, so that when the water receiving tray is needed, the water receiving tray can be moved below the heat exchanger to receive the condensed water.
  • FIG. 1 shows a schematic structural diagram of an air conditioner provided by an embodiment of the present application
  • FIG. 2 shows a side view of the water receiving tray in FIG. 1 in the avoidance position
  • FIG. 3 shows a side view of the water receiving tray in FIG. 1 in the water receiving position
  • FIG. 4 shows a schematic diagram of cooperation with the driving device when the water receiving tray in FIG. 1 is in the avoidance position
  • FIG. 5 shows a schematic diagram of cooperation with the driving device when the water receiving tray in FIG. 1 is in the water receiving position.
  • an embodiment of the present application provides an air conditioner, including: a housing 10 having an accommodating cavity and an air inlet 11 and an air outlet communicating with the accommodating cavity; a heat exchanger 20, provided In the accommodating chamber; the water receiving tray 30 is movably disposed in the accommodating chamber, and the water receiving tray 30 has a water receiving position located below the heat exchanger 20 to receive condensed water and an escape position for avoiding the air inlet 11.
  • the water receiving tray 30 is movably disposed in the accommodating cavity of the housing 10, so that when the water receiving tray 30 is needed, the water receiving tray 30 can be moved below the heat exchanger 20 to When the condensed water is received, the water receiving tray 30 can be moved to a position to avoid the air inlet 11 when the water receiving tray 30 is not needed. Therefore, when it is not necessary to use the water receiving tray 30, the water receiving tray 30 can be prevented from blocking the air inlet 11, so that the air intake amount and heat exchange efficiency of the air conditioner can be improved. Moreover, when the water receiving tray 30 moves to the avoidance position, the flow of gas is smoother, and the noise of the air conditioner can be reduced.
  • the water receiving tray 30 can be switched manually or automatically.
  • the air conditioner further includes a driving device 40 that is drivingly connected to the water receiving tray 30 to drive the water receiving tray 30 to move.
  • the driving device 40 By setting the driving device 40, the position of the water receiving tray 30 can be automatically moved, which is convenient for the user to operate and accurately control the position of the water receiving tray 30.
  • the driving device 40 includes: a first transmission member 41 connected to the water receiving tray 30.
  • the first transmission member 41 is used to drive the water receiving tray 30 to move;
  • the second transmission member 42 is rotatably provided.
  • the second transmission member 42 cooperates with the first transmission member 41 to drive the first transmission member 41 to move.
  • the water receiving tray 30 can be driven to move by the cooperation of the first transmission member 41 and the second transmission member 42.
  • the first transmission member 41 and the second transmission member 42 may adopt a tooth structure, a screw structure or other types of transmission structures.
  • the first transmission member 41 has an arc-shaped rack structure
  • the second transmission member 42 has a gear structure.
  • the rotation of the gear can drive the arc-shaped rack to move, so as to drive the water receiving tray 30 to the water receiving position or the avoidance position.
  • the specific extended shape of the arc-shaped rack can be set according to the internal space of the accommodating cavity and the arrangement of each component.
  • the driving device 40 further includes: a guide member 43 for guiding and limiting the first transmission member 41.
  • a guide member 43 for guiding and limiting the first transmission member 41.
  • the guide member 43 and the second transmission member 42 are spaced apart, one side of the first transmission member 41 cooperates with the second transmission member 42, and the other side of the first transmission member 41 cooperates with the guide member 43.
  • the first transmission member 41 can be interposed between the second transmission member 42 and the guide member 43 to guide and limit the first transmission member 41.
  • the guide 43 has a columnar structure. In order to improve the stability of the first transmission member 41 during movement, a plurality of guide members 43 may be provided.
  • the driving device 40 further includes a first driving part 44 disposed on the first transmission member 41.
  • the first driving part 44 is drivingly connected to the water receiving tray 30 to drive the water receiving tray 30 to rotate.
  • the angle of the water receiving tray 30 in the housing 10 can be changed by the first driving part 44, so that the water receiving tray 30 can be moved to a position where water can be easily received or a position where the air inlet 11 can be easily avoided.
  • the first driving part 44 may be provided as a motor, and the motor shaft of the motor is connected to the water receiving tray 30.
  • the driving device 40 further includes a second driving part 45 that is drivingly connected to the second transmission member 42 to drive the second transmission member 42 to rotate.
  • the second driving part 45 may be configured as a motor, and the second transmission member 42 is driven to rotate by the motor.
  • the driving device 40 further includes a shield 46 provided on the inner wall of the housing 10, and both the first transmission member 41 and the second transmission member 42 are provided on the shield 46.
  • the shield 46 By providing the shield 46, the assembly of the first transmission member 41 and the second transmission member 42 and the protection of the first transmission member 41 and the second transmission member 42 can be facilitated.
  • the housing 10 includes a bottom case and a panel body, and the shield 46 may be provided on the bottom case or on the panel body.
  • the shroud 46 has an escape groove.
  • the escape groove facilitates the connection between the water receiving tray 30 and the first transmission member 41 and facilitates the movement of the water receiving tray 30.
  • the two driving devices 40 there are two driving devices 40, and the two driving devices 40 are respectively drivingly connected to both ends of the water receiving tray 30. In this way, the water receiving tray 30 can be driven to move by the two driving devices 40 together to improve the stability of the water receiving tray 30 when moving.
  • the air inlet 11 is located below the heat exchanger 20, the water receiving position is located on the path from the air inlet 11 to the heat exchanger 20, and the avoidance position is between the side wall of the housing 10 and the heat exchanger 20.
  • the air conditioner in this embodiment can be used as an air conditioner mainly used for heating, for example, a wall-mounted or floor-mounted heater.
  • the controller in the electrical box of the air conditioner sends out a signal
  • the second drive unit drives the gear crankshaft (first transmission member) to extend
  • the first drive unit drives the water receiving tray to rotate to the bottom The location of the inner wall of the shell.
  • the air deflector of the air outlet is opened, and the motor drives the cross-flow fan blades to rotate. Air is blown in from below and directly passes through the evaporator (heat exchanger). After heat exchange by the evaporator, gas is blown out through the air outlet through the cross-flow blades.
  • the water receiving tray When the water receiving tray does not realize rotation hiding, the water receiving tray is directly in the middle of the air inlet channel, occupying the air inlet area of the air conditioner, and directly affecting the performance of the air conditioner. Also because of the shunting of air through the water receiving tray, the noise also increases, and at the same time, the heat exchange effect of the evaporator is not fully used, resulting in waste, slower heat exchange speed, and longer heat exchange time. After the water receiving tray is rotated and hidden, the water receiving tray is closely attached to the inner wall of the bottom shell, which increases the air intake area of the air conditioner and exerts the heat exchange effect of the evaporator, achieving faster heat exchange speed, shorter heat exchange time, and energy efficiency Increased effect. At the same time, because there is no obstruction of the water tray, the noise quality of the air conditioner will be improved, and the comfort of the air conditioner will be greatly improved.
  • the controller in the electrical box sends a signal
  • the second driving part drives the gear crankshaft to retract
  • the first driving part drives the water receiving tray to rotate to a position below the evaporator.
  • the air is blown in from the bottom and passes through the divergence of the water receiving tray.
  • the air passes through the evaporator to exchange heat and becomes cold air, and then reaches the air outlet through the cross-flow fan blades and blows out from the air outlet.
  • the water receiving tray plays the role of water receiving and water guiding at the water receiving position during cooling; the water receiving tray rotates and retracts during heating, and is placed under the inner wall of the bottom shell to increase the air inlet area, which can smoothly enter the air and improve the heat exchange efficiency , While achieving energy-saving effects.
  • the water receiving tray 30 can be used for water receiving and water guiding at the original position during cooling; the water receiving tray 30 rotates and retracts during heating, and is placed under the inner wall of the housing 10 to increase the air intake area , Smooth air intake, improve heat exchange efficiency, and at the same time achieve energy-saving effects, so that users can save electricity, achieve temperature effects faster, and also reduce noise.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

一种空调器,包括:外壳(10),外壳(10)具有容纳腔和与容纳腔连通的进风口(11)和出风口;换热器(20),设置在容纳腔内;接水盘(30),可移动地设置在容纳腔内,接水盘(30)具有位于换热器(20)下方以接收冷凝水的接水位置以及避让进风口(11)的避让位置。该技术方案能够解决现有技术中的接水盘影响进风的问题。

Description

空调器
本申请要求于2018年10月24日提交至中国国家知识产权局、申请号为201811243254.0、发明名称为“空调器”的专利申请的优先权。
技术领域
本申请涉及空调器技术领域,具体而言,涉及一种空调器。
背景技术
在空调器中设置有接水盘,空调器在制冷时,接水盘用于接收换热器产生的冷凝水。而空调器在制热时不会产生冷凝水,不需要使用接水盘。然而,现有的接水盘都是固定设置在空调器的进风通道上,影响进风面积,阻碍进风,降低换热效率。
发明内容
本申请提供了一种空调器,以解决现有技术中的接水盘影响进风的问题。
为了解决上述问题,本申请提供了一种空调器,包括:外壳,外壳具有容纳腔和与容纳腔连通的进风口和出风口;换热器,设置在容纳腔内;接水盘,可移动地设置在容纳腔内,接水盘具有位于换热器下方以接收冷凝水的接水位置以及避让进风口的避让位置。
进一步地,空调器还包括:驱动装置,驱动装置与接水盘驱动连接,以驱动接水盘移动。
进一步地,驱动装置包括:第一传动件,与接水盘连接,第一传动件用于带动接水盘移动;第二传动件,可转动地设置,第二传动件与第一传动件配合以驱动第一传动件移动。
进一步地,第一传动件为弧形齿条,第二传动件为齿轮。
进一步地,驱动装置还包括:导向件,导向件用于对第一传动件进行导向和限位。
进一步地,导向件与第二传动件间隔设置,第一传动件的一侧与第二传动件配合,第一传动件的另一侧与导向件配合。
进一步地,驱动装置还包括:第一驱动部,设置在第一传动件上,第一驱动部与接水盘驱动连接,以驱动接水盘转动。
进一步地,驱动装置还包括:第二驱动部,第二驱动部与第二传动件驱动连接,以驱动第二传动件转动。
进一步地,驱动装置还包括:护罩,设置在外壳的内壁上,第一传动件和第二传动件均设置在护罩上。
进一步地,护罩与外壳之间具有安装腔,第一传动件和第二传动件均位于安装腔中。
进一步地,驱动装置为两个,两个驱动装置分别与接水盘的两端驱动连接。
进一步地,进风口位于换热器的下方,接水位置位于进风口至换热器的路径上,避让位置位于外壳的侧壁与换热器之间。
应用本申请的技术方案,将接水盘可移动地设置在外壳的容纳腔内,这样在需要使用接水盘时,可以将接水盘移动到换热器的下方以接收冷凝水,在不需要使用接水盘时可以将接水盘移动到避让进风口的位置。因此,在不需要使用接水盘时可以避免接水盘阻挡进风口,从而能够提高进风量以及换热效率。
附图说明
构成本申请的一部分的说明书附图用来提供对本申请的进一步理解,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1示出了本申请的实施例提供的空调器的结构示意图;
图2示出了图1中的接水盘处于避让位置时的侧视图;
图3示出了图1中的接水盘处于接水位置时的侧视图;
图4示出了图1中的接水盘处于避让位置时与驱动装置的配合示意图;
图5示出了图1中的接水盘处于接水位置时与驱动装置的配合示意图。
其中,上述附图包括以下附图标记:
10、外壳;11、进风口;20、换热器;30、接水盘;40、驱动装置;41、第一传动件;42、第二传动件;43、导向件;44、第一驱动部;45、第二驱动部;46、护罩。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述。显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。以下对至少一个示例性实施例的描述实际上仅仅是说明性的,决不作为对本申请及其应用或使用的任何限制。基于本申请中的实施例,本领域普通技术人员在没有作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。
如图1至图5所示,本申请的实施例提供了一种空调器,包括:外壳10,外壳10具有容纳腔和与容纳腔连通的进风口11和出风口;换热器20,设置在容纳腔内;接水盘30,可移动地设置在容纳腔内,接水盘30具有位于换热器20下方以接收冷凝水的接水位置以及避让进风口11的避让位置。
应用本实施例的技术方案,将接水盘30可移动地设置在外壳10的容纳腔内,这样在需要使用接水盘30时,可以将接水盘30移动到换热器20的下方以接收冷凝水,在不需要使用接水盘30时可以将接水盘30移动到避让进风口11的位置。因此,在不需要使用接水盘30时可以避免接水盘30阻挡进风口11,从而能够提高空调器的进风量以及换热效率。而且,当接水盘30移动到避让位置后,气体的流动更加顺畅,可以降低空调器的噪音。
接水盘30可以采用手动操作或自动操作的方式实现位置切换。在本实施例中,空调器还包括驱动装置40,驱动装置40与接水盘30驱动连接,以驱动接水盘30移动。通过设置驱动装置40可以自动移动接水盘30的位置,便于用户操作和精确控制接水盘30的位置。
在本实施例中,驱动装置40包括:第一传动件41,与接水盘30连接,第一传动件41用于带动接水盘30移动;第二传动件42,可转动地设置,第二传动件42与第一传动件41配合以驱动第一传动件41移动。这样可通过第一传动件41与第二传动件42的配合带动接水盘30移动。第一传动件41与第二传动件42可以采用齿形结构、丝杠结构或其他类型的传动结构。
具体地,在本实施例中,第一传动件41为弧形齿条结构,第二传动件42为齿轮结构。这样可通过齿轮的转动带动弧形齿条移动,从而带动接水盘30移动到接水位置或避让位置。弧形齿条的具体延伸形状可根据容纳腔的内部空间以及各部件的布置情况进行设置。
在本实施例中,驱动装置40还包括:导向件43,导向件43用于对第一传动件41进行导向和限位。通过设置导向件43可使得第一传动件41按照预定轨迹移动,从而使接水盘30移动到需要的位置。
在本实施例中,导向件43与第二传动件42间隔设置,第一传动件41的一侧与第二传动件42配合,第一传动件41的另一侧与导向件43配合。这样可将第一传动件41夹设在第二传动件42与导向件43之间,以对第一传动件41进行导向和限位。具体地,导向件43为柱状结构。为了提高第一传动件41在运动时的稳定性,可以将导向件43设置为多个。
在本实施例中,驱动装置40还包括:第一驱动部44,设置在第一传动件41上,第一驱动部44与接水盘30驱动连接,以驱动接水盘30转动。通过第一驱动部44可以改变接水盘30在外壳10中的角度,从而使接水盘30移动到便于接水的位置或者便于避让进风口11的位置。第一驱动部44可以设置为电机,电机的电机轴与接水盘30连接。
在本实施例中,驱动装置40还包括:第二驱动部45,第二驱动部45与第二传动件42驱动连接,以驱动第二传动件42转动。第二驱动部45可以设置为电机,通过电机带动第二传动件42转动。
如图1所示,驱动装置40还包括:护罩46,设置在外壳10的内壁上,第一传动件41和第二传动件42均设置在护罩46上。通过设置护罩46可便于第一传动件41和第二传动件42的装配以及对第一传动件41和第二传动件42进行防护。在本实施例中,外壳10包括底壳和面板体,护罩46可以设置在底壳上,也可以设置在面板体上。
在本实施例中,护罩46与外壳10之间具有安装腔,第一传动件41和第二传动件42均位于安装腔中。护罩46上具有避让槽,通过避让槽便于接水盘30与第一传动件41连接,并且便于接水盘30移动。
如图4和图5所示,驱动装置40为两个,两个驱动装置40分别与接水盘30的两端驱动连接。这样可通过两个驱动装置40共同驱动接水盘30移动,以提高接水盘30在移动时的稳定性。
在本实施例中,进风口11位于换热器20的下方,接水位置位于进风口11至换热器20的路径上,避让位置位于外壳10的侧壁与换热器20之间。本实施例中的空调器可以作为主要用于采暖的空调器,例如,挂壁式或落地式采暖器。
为了便于理解本方案,下面对空调器的操作过程进行示例说明。在空调器开启制热模式时,空调器的电器盒中的控制器发出信号,第二驱动部驱动齿轮曲轴(第一传动件)伸出、第一驱动部驱动接水盘旋转到达紧贴底壳内壁的位置。同时出风口的导风板打开,电机带动贯流风叶转动,空气从下方吹入,直接通过蒸发器(换热器),经过蒸发器的换热之后,气体通过贯流风叶经过出风口吹出。由于在接水盘没有实现旋转隐藏时,接水盘直接在进风通道的中间,占用了空调进风面积,直接影响了空调的性能。还因为空气经过接水盘的分流,噪音也随之增大,同时导致了蒸发器的换热效果没有被彻底的运用,造成浪费、换热速度变慢、换热时间变长。在接水盘实现旋转隐藏后,接水盘紧贴底壳内壁,增大了空调进风面积,发挥出了蒸发器的换热效果,达到换热速度变快、换热时间变短、能效增加的效果。同时,因为没有接水盘的阻碍,空调器噪音质量也会改善,空调器的舒适性也会较大的改善。
当空调器开启制冷模式时,电器盒中的控制器发出信号,第二驱动部驱动齿轮曲轴收回,第一驱动部驱动接水盘旋转到达蒸发器下方的位置。空气从下方吹入,经过接水盘的分流,空气经过蒸发器换热变成冷空气、然后通过贯流风叶到达出风口,从出风口吹出。
在本方案中,接水盘有两个位置可满足制冷制热不同需求。在制冷时接水盘在接水位置起接水作用、导水作用;制热时接水盘旋转收回,放置于底壳内壁下方,增加进风面积,这样可以顺畅进风,提高换热效率,同时实现节能效果。
通过本实施例的技术方案,可实现在制冷时接水盘30在原始位置起接水作用、导水作用;制热时接水盘30旋转收回,放置于外壳10内壁下方,增加进风面积,顺畅进风,提高换热效率,同时实现节能效果,从而让用户可以更省电,更快速的达到温度效果,并且还能够降低噪音。

Claims (12)

  1. 一种空调器,其特征在于,包括:
    外壳(10),所述外壳(10)具有容纳腔和与所述容纳腔连通的进风口(11)和出风口;
    换热器(20),设置在所述容纳腔内;
    接水盘(30),可移动地设置在所述容纳腔内,所述接水盘(30)具有位于所述换热器(20)下方以接收冷凝水的接水位置以及避让所述进风口(11)的避让位置。
  2. 根据权利要求1所述的空调器,其特征在于,所述空调器还包括:
    驱动装置(40),所述驱动装置(40)与所述接水盘(30)驱动连接,以驱动所述接水盘(30)移动。
  3. 根据权利要求2所述的空调器,其特征在于,所述驱动装置(40)包括:
    第一传动件(41),与所述接水盘(30)连接,所述第一传动件(41)用于带动所述接水盘(30)移动;
    第二传动件(42),可转动地设置,所述第二传动件(42)与所述第一传动件(41)配合以驱动所述第一传动件(41)移动。
  4. 根据权利要求3所述的空调器,其特征在于,所述第一传动件(41)为弧形齿条,所述第二传动件(42)为齿轮。
  5. 根据权利要求3所述的空调器,其特征在于,所述驱动装置(40)还包括:
    导向件(43),所述导向件(43)用于对所述第一传动件(41)进行导向和限位。
  6. 根据权利要求5所述的空调器,其特征在于,所述导向件(43)与所述第二传动件(42)间隔设置,所述第一传动件(41)的一侧与所述第二传动件(42)配合,所述第一传动件(41)的另一侧与所述导向件(43)配合。
  7. 根据权利要求3所述的空调器,其特征在于,所述驱动装置(40)还包括:
    第一驱动部(44),设置在所述第一传动件(41)上,所述第一驱动部(44)与所述接水盘(30)驱动连接,以驱动所述接水盘(30)转动。
  8. 根据权利要求3所述的空调器,其特征在于,所述驱动装置(40)还包括:
    第二驱动部(45),所述第二驱动部(45)与所述第二传动件(42)驱动连接,以驱动所述第二传动件(42)转动。
  9. 根据权利要求3所述的空调器,其特征在于,所述驱动装置(40)还包括:
    护罩(46),设置在所述外壳(10)的内壁上,所述第一传动件(41)和所述第二传 动件(42)均设置在所述护罩(46)上。
  10. 根据权利要求9所述的空调器,其特征在于,所述护罩(46)与所述外壳(10)之间具有安装腔,所述第一传动件(41)和所述第二传动件(42)均位于所述安装腔中。
  11. 根据权利要求2所述的空调器,其特征在于,所述驱动装置(40)为两个,两个所述驱动装置(40)分别与所述接水盘(30)的两端驱动连接。
  12. 根据权利要求1所述的空调器,其特征在于,所述进风口(11)位于所述换热器(20)的下方,所述接水位置位于所述进风口(11)至所述换热器(20)的路径上,所述避让位置位于所述外壳(10)的侧壁与所述换热器(20)之间。
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