WO2018137389A1 - 空调器 - Google Patents

空调器 Download PDF

Info

Publication number
WO2018137389A1
WO2018137389A1 PCT/CN2017/111907 CN2017111907W WO2018137389A1 WO 2018137389 A1 WO2018137389 A1 WO 2018137389A1 CN 2017111907 W CN2017111907 W CN 2017111907W WO 2018137389 A1 WO2018137389 A1 WO 2018137389A1
Authority
WO
WIPO (PCT)
Prior art keywords
receiving structure
water receiving
sliding
water
base
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2017/111907
Other languages
English (en)
French (fr)
Inventor
杨盼
汪春节
胡保国
黄军
郭瑞水
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
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 Gree Electric Appliances Inc of Zhuhai filed Critical Gree Electric Appliances Inc of Zhuhai
Publication of WO2018137389A1 publication Critical patent/WO2018137389A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Images

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
    • 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
    • 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
    • F24F13/20Casings or covers
    • 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
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • F24F2013/227Condensate pipe for drainage of condensate from the evaporator

Definitions

  • the invention relates to the technical field of air conditioners, and in particular to an air conditioner.
  • Air conditioner refers to the equipment that adjusts and controls the temperature, humidity, cleanliness, speed and other parameters of the building or the internal environment air by artificial means. After long-term use, the air conditioner will be covered with dust and moisture in its air duct. The environment is easy to breed a lot of bacteria, posing a great threat to the health of users.
  • air duct systems of air conditioners are often designed in a detachable structure to facilitate cleaning of the air duct.
  • the drain pipe in the air conditioner is connected to the air duct system and the water channel, it is necessary to disassemble the drain pipe while disassembling the air duct system, which not only causes an increase in the amount of disassembly cleaning work, but also when the drain pipe is blocked, Disassembling the drain pipe can cause dirt to scatter, which increases the difficulty of cleaning. For this reason, how to separate the drain pipe from the air duct system so that the air duct system is disassembled without disassembling the drain pipe has become an urgent problem to be solved.
  • the technical problem to be solved by the present invention is to overcome the technical defect that the indoor air conditioner of the prior art is directly connected to the drain pipe by the air duct system, thereby causing the disassembly of the air duct system and the need to disassemble the drain pipe.
  • the present invention provides an air conditioner including a base member and a duct assembly, wherein the base member is provided with a base water receiving structure, and a drain pipe is connected to the base water receiving structure; the air duct assembly is disposed at On the base member, the air duct assembly is provided with a bottom shell water passage, and the bottom shell water passage is for receiving the condensed water generated by the air duct assembly; the bottom shell water passage is connected with the drain pipe through the base water receiving structure; the bottom shell water passage is connected with the base The water structure is detachable.
  • the method further comprises a sliding water connection structure between the bottom shell waterway and the pedestal water receiving structure to connect the bottom shell waterway and the pedestal water receiving structure; the sliding water receiving structure is at least connected to the bottom shell waterway and the pedestal One of the structures is detachably mated.
  • the sliding water connection structure is arranged on the pedestal water receiving structure, and the bottom shell water path When moving in the disassembly direction, the bottom shell water path pushes the sliding water receiving structure to move relative to the base water receiving structure.
  • the pedestal water receiving structure is provided with a first sliding rail
  • the sliding water receiving structure is provided with a first sliding block corresponding to the first sliding rail
  • the first sliding slider is slid in the first sliding rail
  • the bottom of the sliding water receiving structure is provided with a hollow first drainage column, and the first water receiving structure is provided with a first drainage groove, and the sliding water receiving structure and the base water receiving structure pass through the first drainage column and the first row
  • the water tank is in communication; when the first slider slides in the first sliding rail, the first drainage column slides in the first drainage channel.
  • the bottom of the sliding water receiving structure is provided with a hollow second drainage column
  • the base water receiving structure is provided with a second drainage groove
  • the sliding water receiving structure and the base water receiving structure pass through the second drainage column and the second row
  • the water tank is in communication; and when the sliding water receiving structure moves relative to the base water receiving structure, the second drain column is adapted to slide in the second drain groove to restrict relative movement of the sliding water receiving structure and the base water receiving structure.
  • the base member is provided with a second sliding rail
  • the sliding water receiving structure is provided with a second sliding slider corresponding to the second sliding rail, and the second sliding slider is movable in the second sliding rail.
  • a guiding structure is disposed between the sliding water receiving structure and the bottom shell waterway, and the guiding structure converts the force of the bottom shell waterway in the disassembling direction into a sliding force in the sliding direction.
  • the guiding structure comprises a dialing structure fixedly disposed on the water path of the bottom shell and a guiding block fixedly disposed on the sliding water receiving structure, the guiding block has a guiding inclined surface, and when the water of the bottom shell is disassembled, the guiding The structure pushes the guiding slope so that the first slider fixed to the sliding water receiving structure provided with the guiding block slides in the first sliding rail.
  • the bottom shell water path is provided with a hollow third drainage column
  • the sliding water connection structure is provided with a third drainage groove corresponding to the third drainage column, and the bottom shell water path and the sliding water receiving structure pass through the third drainage column and the third The drainage channels are connected.
  • the sliding water receiving structure is provided with a self-locking structure.
  • the sliding water receiving structure is fixed in the base water receiving structure by the self-locking structure, and restricts the bottom shell waterway from moving on the base member. .
  • the left and right sides of the air duct assembly are respectively fixedly provided with a bottom shell water path
  • the left and right sides of the base member are respectively provided with a base water receiving structure and a sliding water receiving structure corresponding to the bottom shell water path corresponding to the bottom shell water path.
  • the air conditioner provided by the present invention, since the base member of the air conditioner is provided with a pedestal water receiving structure, the air duct assembly is provided with a bottom shell water passage, and the pedestal water receiving structure is connected with a drain pipe, when the air duct assembly When installed on the base member, the bottom shell water passage communicates with the base water receiving structure, thereby connecting the air passage assembly and the drain pipe; and at the same time, the base water receiving structure is detachably coupled with the bottom shell water passage.
  • the detachable and fit of the air duct assembly on the base member can be realized by the detachable cooperation of the base water receiving structure and the bottom shell water passage, without disassembling the drain pipe and ensuring that when the drain pipe is blocked Dirty scattered on the pedestal water receiving structure or still blocked in the drain pipe, from It simplifies the workload of the disassembly operation and the difficulty of operation.
  • the air conditioner provided by the present invention further comprises a sliding water receiving structure, and the bottom shell water passage and the base water receiving structure are connected through the sliding water receiving structure, thereby causing the air duct assembly to be disassembled, the bottom shell water passage and The pedestal water receiving structure can maintain a stable communication state by sliding the water receiving structure, thereby ensuring that the dirt does not scatter during the disassembly process.
  • the air conditioner provided by the present invention is arranged on the base water receiving structure by moving the sliding water receiving structure, and then the bottom shell water path pushes the sliding water receiving structure relative to the base when the bottom shell waterway moves in the disassembling direction.
  • the water structure moves, thereby ensuring that the sliding water receiving structure and the pedestal water receiving structure are always in communication state.
  • the air conditioner provided by the present invention is provided with a first sliding rail on the water receiving structure of the base, and the first sliding block is disposed on the sliding water receiving structure corresponding to the first sliding rail, and the first sliding block is movable. Sliding in a sliding rail, thereby achieving relative sliding of the sliding water receiving structure in the base water receiving structure.
  • the air conditioner provided by the present invention is provided with a hollow first drainage column through a bottom of the sliding water receiving structure, a first drainage groove is arranged on the base water receiving structure, and the sliding water receiving structure and the base water receiving structure pass through A drain column is in communication with the first drain groove; when the first slider slides in the first slide rail, the first drain column slides in the first drain groove, thereby ensuring the sliding water receiving structure in the base water receiving structure The stability of the connection between the two during the sliding process.
  • the air conditioner provided by the present invention provides a second drainage groove on the bottom water receiving structure by providing a hollow second drainage column at the bottom of the sliding water receiving structure, and the sliding water receiving structure and the base water receiving structure pass through The second drainage column and the second drainage channel are in communication, thereby achieving communication between the sliding water receiving structure and the pedestal water receiving structure; and at the same time, when the sliding water receiving structure moves relative to the pedestal water receiving structure, the second The drainage column is adapted to slide in the second drainage groove to restrict the relative movement of the sliding water connection structure and the pedestal water receiving structure, thereby further realizing the relative movement between the sliding water receiving structure and the pedestal water receiving structure.
  • the second drainage column and the second drainage groove not only the communication function but also the relative movement of the limit position can be realized, so that the sliding structure and the communication structure are effectively integrated, and the sliding water connection structure and the base are simplified.
  • the seat is connected to the water structure.
  • the air conditioner provided by the present invention by providing a second sliding rail on the base member, the sliding water receiving structure is provided with a second slider corresponding to the second sliding rail, and the second sliding slider is movable in the second sliding
  • the sliding in the rail can also achieve the relative sliding between the sliding water receiving structure and the pedestal water receiving structure, and when the first sliding rail is disposed on the pedestal water receiving structure, the sliding water receiving structure corresponds to the first sliding
  • the rail is provided with the first slider, and the second sliding rail is disposed on the base member, and when the second slider is disposed corresponding to the second sliding rail, the cooperation between the first sliding rail and the first sliding member is The two slide rails cooperate with the second slider to make the relative movement between the sliding water receiving structure and the base water receiving structure more stable.
  • the air conditioner provided by the present invention by providing a guiding structure between the sliding water receiving structure and the bottom shell waterway, the guiding structure transforms the force of the bottom shell waterway in the disassembly direction into a sliding water receiving structure along the sliding direction.
  • the force, and in the process of disassembling the air duct assembly, only one force in one direction can be applied to realize the movement in two directions, thereby making the disassembly operation simpler and more effective.
  • the guiding structure includes a sliding structure fixedly disposed on the water passage of the bottom case and a guiding block fixedly disposed on the sliding water receiving structure
  • the guiding block has a guiding slope when disassembled
  • the toggle structure pushes the guiding slope, so that the force acting on the guiding slope is decomposed into a force in the direction of the sliding rail, so that the first sliding of the sliding water receiving structure provided with the guiding block is fixed
  • the block slides in the first sliding rail, thereby realizing the disassembly of the bottom shell waterway, and ensuring the communication between the sliding water receiving structure and the base water receiving structure.
  • the air conditioner provided by the present invention has a hollow third drainage column disposed on the water passage of the bottom casing, and a third drainage groove corresponding to the third drainage column is disposed on the sliding water receiving structure, and the bottom casing water passage and the sliding water receiving structure pass through The third drainage column and the third drainage channel are in communication, thereby achieving communication between the sliding water receiving structure and the bottom water channel.
  • the air conditioner provided by the present invention is provided with a self-locking structure on the sliding water receiving structure, and when the bottom shell waterway is assembled in position, the sliding water receiving structure is fixed in the base water receiving structure by the self-locking structure, and the bottom is restrained The shell water path moves over the base member, which in turn allows the air duct assembly to be assembled in place by the self-locking structure on the sliding water connection structure without the need for additional locking structures.
  • Figure 1 is a perspective view of an embodiment of an air conditioner of the present invention
  • Figure 2 is a partial enlarged view of the air conditioner shown in Figure 1;
  • Figure 3 is a schematic view of the air duct assembly of the air conditioner of Figure 1 in a locked state
  • FIG. 4 is a schematic view of the air duct assembly of the air conditioner of FIG. 1 in a disassembled state.
  • FIG. 5 is another schematic view of the left sliding water receiving structure unlocked and the right sliding water receiving structure locked after the air duct assembly of the air conditioner shown in FIG. 1 is installed.
  • a specific embodiment of the air conditioner shown in FIGS. 1 and 3 includes a base member 10 and a duct assembly 40, wherein the base member 10 is a support and mounting base of the entire machine, and the base member 10 is provided with a base.
  • the water receiving structure 20 is connected to the base water receiving structure 20 with a drain pipe 30; the air duct assembly 40 is disposed on the base member 10, and the bottom shell of the air duct assembly 40 is provided with a bottom shell water passage 41, and the bottom shell water passage 41
  • the bottom shell water passage 41 For receiving the condensed water generated by the air duct assembly 40; the bottom shell water passage 41 communicates with the drain pipe 30 through the pedestal water receiving structure 20; the bottom shell water passage 41 is detachably engaged with the pedestal water receiving structure 20.
  • the air duct assembly 40 is provided with the sump water passage 41, and the sump water receiving structure 20 is connected with the drain pipe 30 as the air duct.
  • the bottom casing water passage 41 communicates with the base water receiving structure 20, thereby allowing the air passage assembly 40 to communicate with the drain pipe 30; and, at the same time, due to the base water receiving structure 20
  • the detachable fit of the air duct assembly 40 on the base member 10 can be achieved by detachably engaging the sump water passage 41 and detachably engaging the pedestal water receiving structure 20 and the bottom shell water passage 41 when the air duct assembly 40 is detachably assembled.
  • a sliding water receiving structure 50 is disposed between the bottom shell water passage 41 and the base water receiving structure 20 to connect the bottom shell water passage 41 is in communication with the base water receiving structure 20; the sliding water receiving structure 50 is at least detachably engaged with one of the bottom shell water passage 41 and the base water receiving structure 20, thereby allowing the duct assembly 40 to be removed during the disassembly process.
  • the bottom shell water passage 41 and the pedestal water receiving structure 20 can maintain a stable communication state by sliding the water receiving structure 50, thereby ensuring that the dirt does not scatter during the disassembly process. In this regard, as shown in FIG. 2 and FIG.
  • the bottom case water path 41 is fixedly disposed on the left and right sides of the air channel assembly 40, and the left and right sides of the base member 10 are respectively provided with the bottom case water path 41 corresponding to the bottom case water path 41.
  • 41 mating base water receiving structure 20 and sliding water receiving structure 50 in the connection between the sliding water receiving structure 50 and the base water receiving structure 20, the bottom of the sliding water receiving structure 50 is provided with a hollow first drainage column 52,
  • the pedestal water receiving structure 20 is provided with a first drainage groove 22, and the sliding water connection structure 50 and the pedestal water receiving structure 20 are connected through the first drainage column 52 and the first drainage groove 22; in the sliding water connection structure 50 and the bottom
  • a hollow third drain column 412 is disposed on the bottom shell water passage 41
  • a third drain groove 54 is disposed on the sliding water receiving structure 50 corresponding to the third drain column 412, and the bottom shell water passage 41 and the sliding water receiving water are provided.
  • the structure 50 is in communication with the third drain channel 412 and the third drain channel 54.
  • the bottom of the sliding water receiving structure 50 is provided with a hollow second drainage column (not shown), and the base water receiving structure 20 is provided with a second drainage groove (not shown), and the sliding water connection structure 50 and the base water receiving structure 20 communicate with each other through the second drain column and the second drain groove, thereby achieving communication between the sliding water receiving structure 50 and the base water receiving structure 20; meanwhile, when the sliding water receiving structure 50 is opposite When the pedestal water receiving structure 20 moves, the second drainage column is adapted to slide in the second drainage groove to restrict the relative movement of the sliding water receiving structure 50 and the pedestal water receiving structure 20, thereby The relative movement between the sliding water receiving structure 50 and the pedestal water receiving structure 20 is now realized.
  • the sliding water receiving structure 50 is movably disposed on the pedestal water receiving structure 20 when the bottom shell water path 41 is along When the disassembly direction moves, the bottom shell water path 41 pushes the sliding water receiving structure 50 to move relative to the pedestal water receiving structure 20; specifically, the pedestal water receiving structure 20 is provided with a first sliding rail 21, and the sliding water receiving structure 50 corresponds to A first slider 51 is disposed on the first slide rail 21, and the first slider 51 is slidably moved in the first slide rail 21, and when the first slider 51 slides in the first slide rail 21, the first drain column 52 slides in the first drain groove 22, thereby ensuring the stability of the communication
  • the relative sliding between the sliding water receiving structure 50 and the base water receiving structure 20 is also realized by the sliding water receiving structure 50 moving relative to the base member 10, that is, the base member 10 is provided with a second sliding A rail (not shown) is disposed on the sliding water receiving structure 50 corresponding to the second sliding rail (not shown), and the second sliding slider is slid in the second sliding rail.
  • the first slide rail 21 is disposed on the base water receiving structure 20
  • the first slider 51 is disposed on the sliding water receiving structure 50 corresponding to the first slide rail 21, and the second slide rail is disposed on the base member 10
  • the sliding water receiving structure 50 corresponds to the manner in which the second sliding rail is disposed with the second sliding block
  • the second sliding rail cooperates with the second sliding block by the cooperation between the first sliding rail 21 and the first sliding block 51, The relative movement between the sliding water receiving structure 50 and the pedestal water receiving structure 20 is made more stable.
  • the shell water passage is detachably engaged with the base water receiving structure 20.
  • a guiding structure is disposed between the sliding water receiving structure 50 and the bottom shell water path 41, and the guiding structure converts the force of the bottom shell water path 41 in the disassembly direction into the sliding force of the sliding water receiving structure 50, specifically
  • the guiding structure comprises a dialing structure 411 fixedly disposed on the bottom shell water passage 41 and a guiding block 53 fixedly disposed on the sliding water receiving structure 50.
  • the guiding block 53 has a guiding inclined surface when the bottom shell water path is disassembled At 41 o'clock, the dial structure 411 pushes the guiding slope so that the first slider 51 of the sliding water receiving structure 50 fixedly provided with the guiding block 53 slides in the first sliding rail 21, thereby disassembling the air duct assembly 40.
  • the dial structure 411 pushes the guiding ramp such that the force acting on the guiding ramp is decomposed into a force in the direction of the first rail 21 so that the sliding water receiving structure 50 of the guiding block 53 is fixed.
  • the first slider 51 slides in the first slide rail 21, that is, only one direction is applied Biasing force to effect movement in both directions, so that the detaching operation more simple and effective.
  • the sliding water receiving structure 50 is provided with a self-locking structure (not shown).
  • a self-locking structure not shown.
  • the sliding water receiving structure 50 is fixed in the base water receiving structure 20 by a self-locking structure. And restricting the movement of the bottom shell water passage 41 on the base member 10, so that when the air duct assembly 40 is installed in position, it can be assembled into position by the self-locking structure on the sliding water receiving structure 50 without additional Add a lock structure.

Landscapes

  • 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,包括基座部件(10)和风道组件(40),其中,基座部件(10)设置有基座接水结构(20),基座接水结构(20)上连接有排水管(30);风道组件(40)设置在基座部件(10)上,风道组件(40)设置有底壳水路(41),底壳水路(41)用于接收风道组件(40)产生的冷凝水;底壳水路(41)通过基座接水结构(20)与排水管(30)相连通;底壳水路(41)与基座接水结构(20)可拆卸配合。

Description

空调器 技术领域
本发明涉及空调技术领域,尤其涉及一种空调器。
背景技术
空调器是指用人工手段对建筑或者构筑内环境空气的温度、湿度、洁净度、速度等参数进行调节和控制的设备,空调器在长久使用后,会在其风道里布满灰尘,且潮湿环境容易滋生很多细菌,给用户的健康带来很大威胁。
为了改善这一问题,现如今空调器的风道系统往往设计成可拆卸结构,以方便对风道进行清洗。但是,由于空调器中的排水管和风道系统、水道相连接,在拆卸风道系统进行清洗同时还需要将排水管拆卸,这样不仅会造成拆卸清洗工作量的增加,而且当排水管阻塞时,拆卸排水管会使脏污散落,进而增加了清洗的难度。为此,如何将排水管与风道系统独立设置,以使风道系统拆卸时不用拆卸排水管成为了现如今亟待解决的问题。
发明内容
为此,本发明要解决的技术问题在于克服现有技术的室内空调机因风道系统与排水管直接连接,进而造成的拆卸风道系统的同时还需要将排水管拆卸的技术缺陷。
为了实现上述目的,本发明提供一种空调器,包括基座部件和风道组件,其中,基座部件设置有基座接水结构,基座接水结构上连接有排水管;风道组件设置在基座部件上,风道组件设置有底壳水路,底壳水路用于接收风道组件产生的冷凝水;底壳水路通过基座接水结构与排水管相连通;底壳水路与基座接水结构可拆卸配合。
作为优选,还包括滑动接水结构,位于底壳水路和基座接水结构之间以将底壳水路和基座接水结构相连通;滑动接水结构至少与底壳水路及基座接水结构两者中之一可拆卸配合。
作为优选,滑动接水结构活动的设置在基座接水结构上,当底壳水路 沿拆卸方向移动时,底壳水路推动滑动接水结构相对于基座接水结构移动。
作为优选,基座接水结构上设置有第一滑轨,滑动接水结构上对应于第一滑轨设置有第一滑块,第一滑块活动的在第一滑轨中滑动。
作为优选,滑动接水结构的底部设置有中空的第一排水柱,基座接水结构上设置有第一排水槽,滑动接水结构与基座接水结构通过第一排水柱和第一排水槽相连通;当第一滑块在第一滑轨中滑动时,第一排水柱在第一排水槽中滑动。
作为优选,滑动接水结构的底部设置有中空的第二排水柱,基座接水结构上设置有第二排水槽,滑动接水结构与基座接水结构通过第二排水柱和第二排水槽相连通;并且当滑动接水结构相对于基座接水结构移动时,第二排水柱适配的在第二排水槽中滑动,以限制滑动接水结构和基座接水结构相对运动。
作为优选,基座部件上设置有第二滑轨,滑动接水结构上对应于第二滑轨设置有第二滑块,第二滑块活动的在第二滑轨中滑动。
作为优选,滑动接水结构与底壳水路之间设置有导引结构,导引结构将底壳水路沿拆卸方向的作用力转变成滑动接水结构沿滑动方向的作用力。
作为优选,导引结构包括固定设置在底壳水路上的拨动结构和固定设置在滑动接水结构上的导引块,导引块具有一导引斜面,当拆卸底壳水路时,拨动结构推动导引斜面,以使固定设置有导引块的滑动接水结构的第一滑块在第一滑轨中滑动。
作为优选,底壳水路上设置有中空的第三排水柱,滑动接水结构上对应于第三排水柱设置有第三排水槽,底壳水路和滑动接水结构通过第三排水柱和第三排水槽相连通。
作为优选,滑动接水结构上设置有自锁结构,当底壳水路组装到位时,滑动接水结构通过自锁结构固定在基座接水结构中,并限制底壳水路在基座部件上移动。
作为优选,风道组件的左右两侧分别固定设置有底壳水路,基座部件的左右两侧对应于底壳水路分别设置有与底壳水路相配合的基座接水结构和滑动接水结构。
本发明提供的空调器具有如下优点:
1.本发明提供的空调器,由于空调器的基座部件上设置有基座接水结构,风道组件上设置有底壳水路,基座接水结构上连接有排水管,当风道组件安装在基座部件上时,底壳水路与基座接水结构相连通,进而使得风道组件与排水管之间相连通;同时,又由于基座接水结构与底壳水路可拆卸配合进而当风道组件拆装时,通过基座接水结构与底壳水路可拆卸配合即可实现风道组件在基座部件上的拆装,而不用拆卸排水管,并且保证了当排水管阻塞时,脏污散落在基座接水结构或者仍然阻塞在排水管中,从 而简化了拆卸操作工作量和操作难度。
2.本发明提供的空调器,由于还包括滑动接水结构,并且底壳水路和基座接水结构通过滑动接水结构相连通,进而使得风道组件在拆卸的过程中,底壳水路与基座接水结构通过滑动接水结构能够保持稳定的连通状态,从而保证了拆卸过程中脏污不会散落出来。
3.本发明提供的空调器,通过将滑动接水结构活动的设置在基座接水结构上,进而当底壳水路沿拆卸方向移动时,底壳水路推动滑动接水结构相对于基座接水结构移动,从而保证了滑动接水结构与基座接水结构一直处于连通状态。
4.本发明提供的空调器,通过在基座接水结构上设置有第一滑轨,滑动接水结构上对应于第一滑轨设置有第一滑块,第一滑块活动的在第一滑轨中滑动,进而实现了滑动接水结构在基座接水结构的相对滑动。
5.本发明提供的空调器,通过滑动接水结构的底部设置有中空的第一排水柱,基座接水结构上设置有第一排水槽,滑动接水结构与基座接水结构通过第一排水柱和第一排水槽相连通;当第一滑块在第一滑轨中滑动时,第一排水柱在第一排水槽中滑动,进而保证了滑动接水结构在基座接水结构滑动的过程中两者之间连通的稳定性。
6.本发明提供的空调器,通过在滑动接水结构的底部设置有中空的第二排水柱,基座接水结构上设置有第二排水槽,滑动接水结构与基座接水结构通过第二排水柱和第二排水槽相连通,进而实现了滑动接水结构和基座接水结构之间的连通;同时,由于当滑动接水结构相对于基座接水结构移动时,第二排水柱适配的在第二排水槽中滑动,以限制滑动接水结构和基座接水结构相对运动,进而也实现了滑动接水结构和基座接水结构之间的相对移动,综合所述,通过设置第二排水柱和第二排水槽,不仅能够实现连通功能,也能实现限位相对移动的功能,使得滑动结构与连通结构进行了有效的整合,简化了滑动接水结构和基座接水结构。
7.本发明提供的空调器,通过在基座部件上设置有第二滑轨,滑动接水结构上对应于第二滑轨设置有第二滑块,第二滑块活动的在第二滑轨中滑动,同样也能实现滑动接水结构与基座接水结构之间的相对滑动,并且当采用在基座接水结构上设置第一滑轨,滑动接水结构上对应于第一滑轨设置第一滑块,同时基座部件上设置第二滑轨,并且对应于第二滑轨设置第二滑块的方式时,通过第一滑轨与第一滑块之间的配合,第二滑轨与第二滑块配合,使得滑动接水结构与基座接水结构之间的相对移动更为稳定。
8.本发明提供的空调器,通过在滑动接水结构与底壳水路之间设置有导引结构,导引结构将底壳水路沿拆卸方向的作用力转变成滑动接水结构沿滑动方向的作用力,进而在拆卸风道组件的过程中,只需施加一个方向上的作用力即可实现两个方向上的运动,从而使得拆卸操作更加简单、有效。
9.本发明提供的空调器,由于导引结构包括固定设置在底壳水路上的拨动结构和固定设置在滑动接水结构上的导引块,导引块具有一导引斜面,当拆卸底壳水路时,拨动结构推动导引斜面,进而使得作用在导引斜面上的力被分解成沿滑轨方向的力,从而使固定设置有导引块的滑动接水结构的第一滑块在第一滑轨中滑动,进而实现了底壳水路拆卸的同时,保证了滑动接水结构和基座接水结构之间的连通。
10.本发明提供的空调器,由于底壳水路上设置有中空的第三排水柱,滑动接水结构上对应于第三排水柱设置有第三排水槽,底壳水路和滑动接水结构通过第三排水柱和第三排水槽相连通,进而实现了滑动接水结构与底壳水路之间的连通。
11.本发明提供的空调器,通过在滑动接水结构上设置有自锁结构,当底壳水路组装到位时,滑动接水结构通过自锁结构固定在基座接水结构中,并限制底壳水路在基座部件上移动,进而使得风道组件安装到位时,即可通过滑动接水结构上的自锁结构组装到位,而不需要额外再增加锁合结构。
附图说明
为了更清楚地说明本实用新型具体实施方式或现有技术中的技术方案,下面将对具体实施方式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实用新型的一些实施方式,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为本发明空调器一种实施方式的立体图;
图2为图1所示空调器的局部放大图;
图3为图1所示空调器的风道组件锁合状态下的示意图;
图4为图1所示空调器的风道组件拆卸状态下的示意图。
图5为图1所示空调器的风道组件安装到位后左侧滑动接水结构未锁合、右侧滑动接水结构锁合另一示意图。
附图标记说明:
10、基座部件;20、基座接水结构;21、第一滑轨;22、第一排水槽;30、排水管;40、风道组件;41、底壳水路;411、拨动结构;412、第三排水柱;50、滑动接水结构;51、第一滑块;52、第一排水柱;53、导引块;54、第三排水槽。
具体实施方式
下面将结合附图对本实用新型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实用新型一部分实施例,而不是全部的实施例。 基于本实用新型中的实施例,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,都属于本实用新型保护的范围。
如图1和图3所示的空调器的一种具体实施方式,包括基座部件10和风道组件40,其中,基座部件10为整机的支撑和安装基础,基座部件10设置有基座接水结构20,基座接水结构20上连接有排水管30;风道组件40设置在基座部件10上,风道组件40的底壳上设置有底壳水路41,底壳水路41用于接收风道组件40产生的冷凝水;底壳水路41通过基座接水结构20与排水管30相连通;底壳水路41与基座接水结构20可拆卸配合。
上述空调器,由于空调器的基座部件10上设置有基座接水结构20,风道组件40上设置有底壳水路41,基座接水结构20上连接有排水管30,当风道组件40安装在基座部件10上时,底壳水路41与基座接水结构20相连通,进而使得风道组件40与排水管30之间相连通;同时,又由于基座接水结构20与底壳水路41可拆卸配合进而当风道组件40拆装时,通过基座接水结构20与底壳水路41可拆卸配合即可实现风道组件40在基座部件10上的拆装,而不用拆卸排水管30,并且保证了当排水管30阻塞时,脏污散落在基座接水结构20或者仍然阻塞在排水管30中,从而简化了拆卸操作工作量和操作难度。
在实现在底壳水路41通过基座接水结构20与排水管30相连通的方式中,底壳水路41和基座接水结构20之间设置有滑动接水结构50,以将底壳水路41和基座接水结构20相连通;滑动接水结构50至少与底壳水路41及基座接水结构20两者中之一可拆卸配合,进而使得风道组件40在拆卸的过程中,底壳水路41与基座接水结构20通过滑动接水结构50能够保持稳定的连通状态,从而保证了拆卸过程中脏污不会散落出来。对此,如图2和图3所示,风道组件40的左右两侧分别固定设置有底壳水路41,基座部件10的左右两侧对应于底壳水路41分别设置有与底壳水路41相配合的基座接水结构20和滑动接水结构50,在滑动接水结构50与基座接水结构20连通方面,滑动接水结构50的底部设置有中空的第一排水柱52,基座接水结构20上设置有第一排水槽22,滑动接水结构50与基座接水结构20通过第一排水柱52和第一排水槽22相连通;在滑动接水结构50与底壳水路41连通方面,底壳水路41上设置有中空的第三排水柱412,滑动接水结构50上对应于第三排水柱412设置有第三排水槽54,底壳水路41和滑动接水结构50通过第三排水柱412和第三排水槽54相连通。
作为变形的实施方式,滑动接水结构50的底部设置有中空的第二排水柱(图未示),基座接水结构20上设置有第二排水槽(图未示),滑动接水结构50与基座接水结构20通过第二排水柱和第二排水槽相连通,进而实现了滑动接水结构50和基座接水结构20之间的连通;同时,当滑动接水结构50相对于基座接水结构20移动时,第二排水柱适配的在第二排水槽中滑动,以限制滑动接水结构50和基座接水结构20相对运动,进而也实 现了滑动接水结构50和基座接水结构20之间的相对移动,综合所述,通过设置第二排水柱和第二排水槽,不仅能够实现连通功能,也能实现限位相对移动的功能,使得滑动结构与连通结构进行了有效的整合,简化了滑动接水结构50和基座接水结构20。同时,为了保证在拆卸的过程中,滑动接水结构50与基座接水结构20一直处于连通状态,滑动接水结构50活动的设置在基座接水结构20上,当底壳水路41沿拆卸方向移动时,底壳水路41推动滑动接水结构50相对于基座接水结构20移动;具体的,基座接水结构20上设置有第一滑轨21,滑动接水结构50上对应于第一滑轨21设置有第一滑块51,第一滑块51活动的在第一滑轨21中滑动,当第一滑块51在第一滑轨21中滑动时,第一排水柱52在第一排水槽22中滑动,进而保证了滑动接水结构50在基座接水结构20滑动的过程中,两者之间连通的稳定性。
除此之外,滑动接水结构50与基座接水结构20之间的相对滑动也采用滑动接水结构50相对基座部件10移动的方式实现,即基座部件10上设置有第二滑轨(图未示),滑动接水结构50上对应于第二滑轨设置有第二滑块(图未示),第二滑块活动的在第二滑轨中滑动。并且当采用在基座接水结构20上设置第一滑轨21,滑动接水结构50上对应于第一滑轨21设置第一滑块51,同时基座部件10上设置第二滑轨,并且滑动接水结构50上对应于第二滑轨设置第二滑块的方式时,通过第一滑轨21与第一滑块51之间的配合,第二滑轨与第二滑块配合,使得滑动接水结构50与基座接水结构20之间的相对移动更为稳定。
如图3至图5所示,由于风道组件40的拆装方向与第一滑块51在第一滑轨21中的滑动方向不同,进而在壳水路与基座接水结构20拆卸配合的过程中,滑动接水结构50与底壳水路41之间设置有导引结构,导引结构将底壳水路41沿拆卸方向的作用力转变成滑动接水结构50沿滑动方向的作用力,具体的,导引结构包括固定设置在底壳水路41上的拨动结构411和固定设置在滑动接水结构50上的导引块53,导引块53具有一导引斜面,当拆卸底壳水路41时,拨动结构411推动导引斜面,以使固定设置有导引块53的滑动接水结构50的第一滑块51在第一滑轨21中滑动,进而在拆卸风道组件40的过程中,拨动结构411推动导引斜面,使得作用在导引斜面上的力被分解成沿第一滑轨21方向的力,以使固定设置有导引块53的滑动接水结构50的第一滑块51在第一滑轨21中滑动,即只需施加一个方向上的作用力即可实现两个方向上的运动,从而使得拆卸操作更加简单、有效。
除此之外,滑动接水结构50上设置有自锁结构(图未示),当底壳水路41组装到位时,滑动接水结构50通过自锁结构固定在基座接水结构20中,并限制底壳水路41在基座部件10上移动,进而使得风道组件40安装到位时,即可通过滑动接水结构50上的自锁结构组装到位,而不需要额外 再增加锁合结构。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本发明创造的保护范围之中。

Claims (12)

  1. 一种空调器,其特征在于,包括:
    基座部件(10),所述基座部件(10)设置有基座接水结构(20),所述基座接水结构(20)上连接有排水管(30);
    风道组件(40),设置在所述基座部件(10)上,所述风道组件(40)设置有底壳水路(41),所述底壳水路(41)用于接收所述风道组件(40)产生的冷凝水;所述底壳水路(41)通过所述基座接水结构(20)与所述排水管(30)相连通;所述底壳水路(41)与所述基座接水结构(20)可拆卸配合。
  2. 根据权利要求1所述的空调器,其特征在于,还包括滑动接水结构(50),位于所述底壳水路(41)和所述基座接水结构(20)之间以将所述底壳水路(41)和所述基座接水结构(20)相连通;所述滑动接水结构(50)至少与所述底壳水路(41)及所述基座接水结构(20)两者中之一可拆卸配合。
  3. 根据权利要求2所述的空调器,其特征在于,所述滑动接水结构(50)活动的设置在所述基座接水结构(20)上,当所述底壳水路(41)沿拆卸方向移动时,所述底壳水路(41)推动所述滑动接水结构(50)相对于所述基座接水结构(20)移动。
  4. 根据权利要求3所述的空调器,其特征在于,所述基座接水结构(20)上设置有第一滑轨(21),所述滑动接水结构(50)上对应于所述第一滑轨(21)设置有第一滑块(51),所述第一滑块(51)活动的在所述第一滑轨(21)中滑动。
  5. 根据权利要求4所述的空调器,其特征在于,所述滑动接水结构(50)的底部设置有中空的第一排水柱(52),所述基座接水结构(20)上设置有第一排水槽(22),所述滑动接水结构(50)与所述基座接水结构(20)通过所述第一排水柱(52)和所述第一排水槽(22)相连通;当所述第一滑块(51)在所述第一滑轨(21)中滑动时,所述第一排水柱(52)在所述第一排水槽(22)中滑动。
  6. 根据权利要求3所述的空调器,其特征在于,所述滑动接水结构(50)的底部设置有中空的第二排水柱,所述基座接水结构(20)上设置有第二排水槽,所述滑动接水结构(50)与所述基座接水结构(20)通过所述第二排水柱和第二排水槽相连通;并且当所述滑动接水结构(50)相对所述 于所述基座接水结构(20)移动时,所述第二排水柱适配的在所述第二排水槽中滑动,以限制所述滑动接水结构(50)和基座接水结构(20)相对运动。
  7. 根据权利要求3至6中任一项所述的空调器,其特征在于,所述基座部件(10)上设置有第二滑轨,所述滑动接水结构(50)上对应于所述第二滑轨设置有第二滑块,所述第二滑块活动的在所述第二滑轨中滑动。
  8. 根据权利要求3至6中任一项所述的空调器,其特征在于,所述滑动接水结构(50)与所述底壳水路(41)之间设置有导引结构,所述导引结构将所述底壳水路(41)沿拆卸方向的作用力转变成所述滑动接水结构(50)沿滑动方向的作用力。
  9. 根据权利要求8中所述的空调器,其特征在于,所述导引结构包括固定设置在所述底壳水路(41)上的拨动结构(411)和固定设置在所述滑动接水结构(50)上的导引块(53),所述导引块(53)具有一导引斜面,当拆卸所述底壳水路(41)时,所述拨动结构(411)推动所述导引斜面,以使固定设置有所述导引块(53)的滑动接水结构(50)的第一滑块(51)在第一滑轨(21)中滑动。
  10. 根据权利要求2至6中任一项所述的空调器,其特征在于,所述底壳水路(41)上设置有中空的第三排水柱(412),所述滑动接水结构(50)上对应于所述第三排水柱(412)设置有第三排水槽(54),所述底壳水路(41)和所述滑动接水结构(50)通过所述第三排水柱(412)和所述第三排水槽(54)相连通。
  11. 根据权利要求2至6中任一项所述的空调器,其特征在于,所述滑动接水结构(50)上设置有自锁结构,当底壳水路(41)组装到位时,所述滑动接水结构(50)通过所述自锁结构固定在所述基座接水结构(20)中,并限制所述底壳水路(41)在所述基座部件(10)上移动。
  12. 根据权利要求1至6中任一项所述的空调器,其特征在于,所述风道组件(40)的左右两侧分别固定设置有所述底壳水路(41),所述基座部件(10)的左右两侧对应于所述底壳水路(41)分别设置有与所述底壳水路(41)相配合的所述基座接水结构(20)和所述滑动接水结构(50)。
PCT/CN2017/111907 2017-01-25 2017-11-20 空调器 Ceased WO2018137389A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710056374 2017-01-25
CN201710056374.9 2017-01-25

Publications (1)

Publication Number Publication Date
WO2018137389A1 true WO2018137389A1 (zh) 2018-08-02

Family

ID=62978073

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/111907 Ceased WO2018137389A1 (zh) 2017-01-25 2017-11-20 空调器

Country Status (2)

Country Link
CN (1) CN108361823B (zh)
WO (1) WO2018137389A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111692643B (zh) * 2020-06-12 2022-06-17 宁波奥克斯电气股份有限公司 一种空调器底座及空调器

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1507123A2 (de) * 2003-08-14 2005-02-16 BSH Bosch und Siemens Hausgeräte GmbH Klimagerät
CN2804702Y (zh) * 2005-07-18 2006-08-09 珠海格力电器股份有限公司 接水盘及使用该接水盘的空调器
US20070028640A1 (en) * 2005-08-02 2007-02-08 Little Giant Pump Company Condensate removal apparatus and method
CN203349463U (zh) * 2013-06-06 2013-12-18 广东美的集团芜湖制冷设备有限公司 一种除湿机排水系统
CN105003969A (zh) * 2015-07-24 2015-10-28 广东美的暖通设备有限公司 一种排水泵位于中隔板且可拆卸的风管机以及空调

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB513463A (en) * 1939-01-05 1939-10-13 William Charles Cornforth Improvements in water heating arrangements for open fireplaces
FR2951809B1 (fr) * 2009-10-23 2012-05-18 Poujoulat Equipement pour le passage d'un conduit d'evacuation de fumee connecte a une chaudiere, au travers d'une lumiere d'un boisseau de cheminee maconne

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1507123A2 (de) * 2003-08-14 2005-02-16 BSH Bosch und Siemens Hausgeräte GmbH Klimagerät
CN2804702Y (zh) * 2005-07-18 2006-08-09 珠海格力电器股份有限公司 接水盘及使用该接水盘的空调器
US20070028640A1 (en) * 2005-08-02 2007-02-08 Little Giant Pump Company Condensate removal apparatus and method
CN203349463U (zh) * 2013-06-06 2013-12-18 广东美的集团芜湖制冷设备有限公司 一种除湿机排水系统
CN105003969A (zh) * 2015-07-24 2015-10-28 广东美的暖通设备有限公司 一种排水泵位于中隔板且可拆卸的风管机以及空调

Also Published As

Publication number Publication date
CN108361823B (zh) 2019-08-13
CN108361823A (zh) 2018-08-03

Similar Documents

Publication Publication Date Title
KR102233487B1 (ko) 급기구 장착형 필터모듈
CN108344139B (zh) 一种壁挂式空调器的出风口组件及壁挂式空调器
CN205448195U (zh) 承载水槽、加湿装置和空气加湿设备
CN103940172B (zh) 冰箱及其风道组件
WO2018196777A1 (zh) 一种空调器
CN219731874U (zh) 一种水渠挡污隔栏
CN117366733A (zh) 蒸发式加湿器及支撑结构
CN104976650A (zh) 新型侧吸式油烟机滤油集油系统
CN205227751U (zh) 一种烟机空调过滤网安装结构及具有其的制冷油烟机
CN211899186U (zh) 一种便于拆卸的换气集成吊顶
CN211526646U (zh) 建筑房屋用节能通风结构
CN217909521U (zh) 一种用于除湿系统的过滤组件
CN108361823B (zh) 一种空调器
CN210980240U (zh) 一种绿色建筑用通气设备
CN205422481U (zh) 门窗
JP2017122551A (ja) 換気口カバー
CN218353630U (zh) 一种温室大棚换气装置
CN219264486U (zh) 一种暖通排烟导流装置
CN112095883A (zh) 一种多功能顶墙装饰板
CN222298141U (zh) 一种中央空调出风口快速安装装置
CN208742608U (zh) 一种高压冲水实验台装置
CN206504396U (zh) 一种易清洗空调器
CN222047987U (zh) 一种园区楼道新风换气设备
CN210399375U (zh) 一种实验室用恒温恒湿调节系统
CN218972007U (zh) 一种建筑给排水管道固定组件

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17893937

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17893937

Country of ref document: EP

Kind code of ref document: A1