WO2020010716A1 - 接水装置及座吊式空调 - Google Patents

接水装置及座吊式空调 Download PDF

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Publication number
WO2020010716A1
WO2020010716A1 PCT/CN2018/107915 CN2018107915W WO2020010716A1 WO 2020010716 A1 WO2020010716 A1 WO 2020010716A1 CN 2018107915 W CN2018107915 W CN 2018107915W WO 2020010716 A1 WO2020010716 A1 WO 2020010716A1
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Prior art keywords
water receiving
water
receiving portion
pipe
receiving device
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PCT/CN2018/107915
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English (en)
French (fr)
Inventor
任善军
远义忠
魏长见
杨志伟
何建奇
毛守博
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青岛海尔空调电子有限公司
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Publication of WO2020010716A1 publication Critical patent/WO2020010716A1/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
    • 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
    • F24F13/22Means 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
    • F24F13/24Means for preventing or suppressing noise

Definitions

  • the present invention relates to the technical field of air conditioners, and in particular, to a water receiving device and a ceiling-mounted air conditioner.
  • Air conditioners are becoming more and more popular, with a wide variety of types and increasing technological levels, and the installation process is becoming more complex and difficult to maintain, as is the case with cranes.
  • the water receiving tray disclosed in the prior art has a wider first water receiving surface 11 and a narrower second water receiving surface 12.
  • This design can better meet the requirements of a seat crane when it is used as a crane. Drainage is required, but when the crane is used as a crane, the condensed water will easily drip into the crane.
  • the air conditioner is running, the condensed water formed at the U-shaped tube end of the indoor heat exchanger and the condensed water formed on the outer wall of the refrigerant input pipe and the output pipe of the indoor heat exchanger will drip down.
  • the condensate formed from the U-shaped pipe end and the condensate dripping from the outer wall of the refrigerant input pipe and the output pipe of the indoor heat exchanger will be received by the first water receiving surface 11 of the water pan.
  • the machine is used as a base unit.
  • the second water receiving surface 12 is narrow, the condensate dripping from the U-shaped pipe end and the outer wall of the refrigerant input pipe and the output pipe of the indoor heat exchanger cannot be completely received by the first stage of the water receiving pan. If the second water receiving surface 12 receives the condensed water and cannot be received by the water receiving tray, it will drip onto the internal parts of the crane (especially electrical parts), causing damage to the internal parts of the crane.
  • Embodiments of the present invention provide a water receiving device and a seat-type air conditioner to solve the problem of condensation water droplets falling on the internal parts of the seat-type crane when the seat-type crane is used as a seat type in the prior art.
  • a brief summary is given below. This summary is not a general overview, nor is it intended to identify key / important constituent elements or to describe the scope of protection of these embodiments. Its sole purpose is to present some concepts in a simplified form as a prelude to the more detailed description that is presented later.
  • a water receiving device which is disposed in a ceiling-mounted air conditioner, and the ceiling-mounted air conditioner includes a water receiving tray disposed below an indoor heat exchanger:
  • the water receiving device includes: a first water receiving unit and a second water receiving unit; the first water receiving unit is sleeved on the outer wall of the indoor heat exchanger refrigerant input pipe and / or the refrigerant output pipe, and collects the refrigerant input pipe, And / or condensed water on the outer wall of the refrigerant output pipe, and drained into the second water receiving part; the second water receiving part is arranged below the U-shaped tube of the indoor heat exchanger, and condenses the collected U-shaped tube
  • the water, the refrigerant input pipe, and / or the condensate water on the outer wall of the refrigerant output pipe is discharged into the water receiving pan.
  • the first water receiving portion includes: a pipe hole and a drainage hole; the first water receiving portion is sleeved on the refrigerant input pipe and / or an outer wall of the refrigerant output pipe through the pipe hole; The drain hole is used for draining the condensed water collected by the first water receiving part into the second water receiving part.
  • the material of the first water receiving portion is rubber.
  • the first water receiving portion is made by injection molding.
  • the via hole is a circular rubber body.
  • the via hole forms an integrated structure with the first water receiving portion by means of injection molding.
  • the second water receiving portion includes a fixing portion; the second water receiving portion defines a position of the second water receiving portion through a fastener and the fixing portion.
  • the second water receiving part includes a drainage port for discharging condensed water into the water receiving tray.
  • the second water receiving portion includes a diversion groove, and the diversion groove is disposed in a direction of water accumulation and diversion toward the drainage outlet.
  • the second water receiving portion includes a supporting portion; the supporting portion is disposed below the second water receiving portion and is in contact with other components of the ceiling-mounted air conditioner.
  • the edge of the first water receiving portion is provided with a flange that is folded toward the indoor heat exchanger.
  • the edge of the second water receiving part is provided with a flange that is folded toward the indoor heat exchanger.
  • a ceiling-mounted air conditioner comprising: a water receiving tray disposed under an indoor heat exchanger and any of the foregoing water receiving devices.
  • the water receiving device is composed of a first water receiving portion and a second water receiving portion.
  • the first water receiving portion and the second water receiving portion cooperate to collect the condensed water generated by the U-shaped pipe and the refrigerant in the indoor heat exchanger.
  • the condensate generated by the input pipe and / or the refrigerant output pipe is drained side by side to the water-supply tray of the ceiling-mounted air conditioner. It is used together with the second water receiving part, which is convenient for disassembly and maintenance.
  • FIG. 1 is a schematic structural diagram of a seated air conditioner disclosed in the prior art
  • Fig. 2 is a schematic structural diagram of a first water receiving part according to an exemplary embodiment
  • Fig. 3 is a schematic structural diagram of a second water receiving part according to an exemplary embodiment
  • Fig. 4 is a schematic structural diagram of a water receiving device according to an exemplary embodiment
  • Fig. 5 is a schematic structural diagram of a second water receiving unit according to an exemplary embodiment.
  • FIG. 4 is a schematic structural diagram of a water receiving device and an air conditioning water receiving pan according to an embodiment of the present invention.
  • the water receiving device includes a first water receiving unit 200 and a second water receiving unit 300.
  • the ceiling-mounted air conditioner is used as a base unit, and it can be seen that the second water receiving surface 12 with a narrow water receiving pan of the air conditioner cannot all receive the condensate dripping from the U-shaped tube 13 of the indoor heat exchanger.
  • the second water receiving part 300 is disposed below the U-shaped pipe 13 and can receive the condensed water dripped from the U-shaped pipe 13 to prevent the condensed water dripped from the U-shaped pipe 13 from falling on the internal parts of the crane.
  • Both ends of the indoor heat exchanger are U-shaped tubes 13, so in order to effectively prevent the condensed water dripping from the U-shaped tube 13 from falling on the internal parts of the crane, the water receiving device includes two second water receiving sections 300, respectively It is installed at both ends of the indoor heat exchanger.
  • the first water receiving portion 200 is disposed above the second water receiving portion 300.
  • the refrigerant input pipe and the refrigerant output pipe are disposed on different sides of the indoor heat exchanger, and the distance is relatively long.
  • the air conditioner includes two first A water receiving part 200 and a second water receiving part 300 are respectively sleeved on the refrigerant input pipe and the refrigerant output pipe.
  • the refrigerant input pipe and the refrigerant output pipe are arranged on the same side of the indoor heat exchanger, and the distance is relatively short.
  • the air conditioner includes a second connection The water part 300 and the second water receiving part 300 are sleeved on the refrigerant input pipe and the refrigerant output pipe.
  • the water receiving device is composed of a first water receiving portion and a second water receiving portion.
  • the first water receiving portion and the second water receiving portion cooperate to collect the condensed water generated by the U-shaped pipe and the refrigerant in the indoor heat exchanger.
  • the condensate generated by the input pipe and / or the refrigerant output pipe is drained side by side to the water-supply tray of the ceiling-mounted air conditioner. It is used together with the second water receiving part, which is convenient for disassembly and maintenance.
  • the first water receiving part 200 includes: a pipe hole 21 and a drainage hole 22.
  • the first water receiving part 200 is sleeved on the outer wall of the refrigerant input pipe, the outer wall of the refrigerant output pipe, the outer wall of the refrigerant input pipe, and the outer wall of the refrigerant output pipe through the pipe hole 21.
  • FIG. 2 is an exemplary embodiment.
  • the refrigerant input pipe and the refrigerant output pipe are disposed on the same side of the indoor heat exchanger.
  • the first water receiving unit 200 includes two through-holes 21. .
  • the diameter of the through-hole 21 is determined by the outer diameters of the refrigerant input pipe and the refrigerant output pipe.
  • the diameter of the via hole 21 is equal to the outer diameter of the refrigerant input pipe.
  • the diameter of the via hole 21 is equal to the refrigerant output. The outer diameter of the tube.
  • the drain hole 22 discharges the condensed water collected by the first water receiving part 200 into the second water receiving part 300, and the second water receiving part 300 is discharged into the water receiving tray of the air conditioner. Drain water outdoors.
  • the material of the first water receiving part 200 is rubber. It is ensured that the first water receiving portion 200 is easily deformed.
  • the maximum deformation of the first water receiving portion 200 is 2 mm to 5 mm. Therefore, the first water receiving part 200 can be sleeved on the refrigerant input pipe and the refrigerant output pipe with an outer diameter ranging from 4 mm to 10 mm. Specifically, the diameter of the through-hole 21 of the first water receiving part 200 is 20 mm, and the maximum deformation is 3 mm.
  • the first water receiving part 200 can be sleeved on the refrigerant input pipe or the refrigerant output pipe with an outer diameter of 20 mm.
  • the outer diameter of the refrigerant input pipe or the refrigerant output pipe is greater than 20mm, the first water receiving unit 200 is squeezed, and the first water receiving unit 200 is deformed.
  • the outer diameter of the refrigerant input pipe or the refrigerant output pipe is equal to 26mm, the first connection The deformation amount of the water part 200 reaches the upper limit.
  • the first water receiving portion 200 is made by injection molding.
  • the first water receiving part 200 it is convenient for the first water receiving part 200 to be set on the refrigerant input pipe and the refrigerant output pipe.
  • An opening is provided on one side of the first water receiving part 200. Based on the material of the first water receiving part 200 being rubber, It is easy to deform.
  • the first water receiving part 200 can be sleeved on the refrigerant input pipe and the refrigerant output pipe through the opening.
  • the via hole 21 is a circular rubber body, which ensures that the via hole 21 is easily deformed, and can be set on refrigerant input pipes with different outer diameters. Or on the refrigerant output pipe.
  • the through-hole 21 is formed into an integrated structure with the first water receiving part 200 by injection molding.
  • the second water receiving part 300 in order to avoid condensation water droplets falling on the internal parts of the crane when the position of the second water receiving part 300 is changed during the operation or transportation of the air conditioner, the second water receiving part 300 Including the fixed portion 31.
  • the second water receiving portion 300 is connected to other parts of the air conditioner or the heat exchanger through the fasteners and the fixing portion 31 to define the position of the second water receiving portion 300.
  • the fixing portion 31 is a screw hole.
  • the second water receiving part 300 is fixed in the air conditioner through a screw through a screw hole.
  • the condensed water is discharged into the water receiving pan.
  • the second water receiving portion 300 includes a drain port 32.
  • the second water receiving part 300 includes a guide groove 34.
  • the diversion groove 34 is provided in the direction of the accumulated water diversion toward the drain.
  • the direction of the accumulated water diversion is the direction in which the drainage port 32 faces the water receiving tray.
  • the second water receiving portion 300 in order to further improve the stability of the second water receiving portion 300, includes a support portion 33.
  • the support portion 33 is disposed at a middle position below the second water receiving portion 300.
  • the support part 33 is in contact with other parts of the air conditioner, and supports the second water receiving part 300 in a stable position.
  • the condensed water can be effectively discharged into the water receiving tray and discharged to the outside through the drain pipe.
  • the water drips onto the internal parts of the crane.
  • the edge of the first water receiving part 200 is provided with a flange that is folded toward the indoor heat exchanger.
  • the edge of the second water receiving part 300 is provided with a fold to the indoor heat exchanger. Flanging.
  • the edges of the first water receiving unit 200 and the second water receiving unit 300 are provided with indoor heat exchangers. Folded flanging.
  • the invention further proposes a seated air conditioner.
  • the ceiling-mounted air conditioner includes a water receiving tray and a water receiving device arranged below the indoor heat exchanger.
  • a specific structure of the water receiving device refer to the foregoing embodiment, and details are not described herein again. Since the ceiling air conditioner adopts the technical solution of the water receiving device, all beneficial effects brought by the technical solution of the water receiving device should be provided, and will not be described again here.

Abstract

一种接水装置,设置于座吊式空调内,座吊式空调包括设置于室内换热器下方的接水盘;接水装置包括:第一接水部(200)和第二接水部(300);第一接水部(200)套设在室内换热器冷媒输入管,和/或冷媒输出管的外壁,收集冷媒输入管,和/或冷媒输出管外壁的冷凝水,并排入所述第二接水部(300);第二接水部(300)设置在室内换热器U型管(13)的下方,将收集到的U型管(13)的冷凝水,冷媒输入管,和/或冷媒输出管外壁的冷凝水排入接水盘。

Description

接水装置及座吊式空调
本申请基于申请号为201810751714.4、申请日为2018年7月10日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本发明涉及空调技术领域,特别涉及一种接水装置及座吊式空调。
背景技术
空调日益普及,其种类繁多,技术程度不断提高,而且安装过程逐渐复杂,维护不易,座吊机即是如此。如图1所示,现有技术中公开的接水盘具有较宽的第一接水面11及较窄的第二接水面12,该设计能够较好的满足座吊机作为吊机使用时的排水需求,但是当座吊机作为座机使用时,冷凝水易滴落到座吊机内部。当空调机运行时,室内换热器U型管端处形成的冷凝水以及室内换热器的冷媒输入管和输出管的外壁形成的冷凝水会向下滴落,如果座吊机作为吊机使用,此时,从U型管端处形成的冷凝水以及室内换热器的冷媒输入管和输出管的外壁滴落的冷凝水会被接水盘的第一接水面11接收,如果座吊机作为座机使用,此时,由于第二接水面12较窄,从U型管端处以及室内换热器的冷媒输入管和输出管的外壁滴落的冷凝水无法全部被接水盘的第二接水面12接收,冷凝水无法被接水盘接收,则会滴落到座吊机内部零件(尤其是电器部件)上,对座吊机的内部零部件造成损坏。
针对接水盘具有较窄的第二接水面12,在座吊机作为座机使用时存在冷凝水滴落到座吊机内部零件上,对座吊机的内部零部件造成损坏的安全隐患的情况,现有技术提出了一些接水装置以解决该问题,但是现有技术公开的接水装置均存在接水装置体积大,拆卸不方便的问题。
发明内容
本发明实施例提供了一种接水装置及座吊式空调,以解决现有技术中座吊机作为座机使用时冷凝水滴落到座吊机内部零件上的问题。为了对披露的实施例的一些方面有一个基本的理解,下面给出了简单的概括。该概括部分不是泛泛评述,也不是要确定关键/重要组成元素或描绘这些实施例的保护范围。其唯一目的是用简单的形式呈现一些概念,以此作为后面的详细说明的序言。
根据本发明实施例的第一方面,提供了一种接水装置,设置于座吊式空调内,所述座 吊式空调包括设置于室内换热器下方的接水盘:其特征在于,所述接水装置包括:第一接水部和第二接水部;所述第一接水部套设在室内换热器冷媒输入管,和/或冷媒输出管的外壁,收集冷媒输入管,和/或冷媒输出管外壁的冷凝水,并排入所述第二接水部;所述第二接水部设置在室内换热器U型管的下方,将收集到的U型管的冷凝水,冷媒输入管,和/或冷媒输出管外壁的冷凝水排入所述接水盘。
可选的,所述第一接水部包括:过管孔和排水孔;所述第一接水部通过所述过管孔套设在所述冷媒输入管,和/或冷媒输出管外壁;所述排水孔用于将所述第一接水部收集的冷凝水排入所述第二接水部。
可选的,所述第一接水部的材质为橡胶。
可选的,所述第一接水部通过注塑成型的方式制成。
可选的,所述过管孔为圆环形的橡胶体。
可选的,所述过管孔通过注射成型的方式与所述第一接水部形成一体式结构。
可选的,所述第二接水部包括固定部;所述第二接水部通过紧固件与所述固定部限定所述第二接水部的位置。
可选的,所述第二接水部包括将冷凝水排入所述接水盘的排水口。
可选的,所述第二接水部包括导流槽;所述导流槽设置在朝向所述排水口的积水导流方向。
可选的,所述第二接水部包括支撑部;所述支撑部设置于所述第二接水部下方与座吊式空调其他部件接触。
可选的,所述第一接水部边缘设有向室内换热器翻折的翻边。
可选的,所述第二接水部边缘设有向室内换热器翻折的翻边。
根据本发明实施例的第二方面,提供了一种座吊式空调,包括:设置于室内换热器下方的接水盘和任一前述的接水装置。
本发明实施例提供的技术方案可以包括以下有益效果:
在本发明实施例中,接水装置由第一接水部和第二接水部组成,第一接水部和第二接水部配合收集U型管产生的冷凝水、室内换热器冷媒输入管,和/或冷媒输出管产生的冷凝水,并排至座吊式空调接水盘,可以有效避免座吊机作为座机使用时冷凝水滴落到座吊机内部零件上,且第一接水部和第二接水部配合使用,拆卸方便,便于维修。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本发明。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本发明的实施例,并与说明书一起用于解释本发明的原理。
图1是现有技术公开的座吊式空调的结构示意图;
图2是根据一示例性实施例示出的一种第一接水部的结构示意图;
图3是根据一示例性实施例示出的一种第二接水部的结构示意图;
图4是根据一示例性实施例示出的一种接水装置的结构示意图;
图5是根据一示例性实施例示出的一种第二接水部的结构示意图。
具体实施方式
以下描述和附图充分地示出本发明的具体实施方案,以使本领域的技术人员能够实践它们。一些实施方案的部分和特征可以被包括在或替换其他实施方案的部分和特征。本发明的实施方案的范围包括权利要求书的整个范围,以及权利要求书的所有可获得的等同物。本文中,诸如第一和第二等之类的关系术语仅仅用于将一个实体或者结构与另一个实体或结构区分开来,而不要求或者暗示这些实体或结构之间存在任何实际的关系或者顺序。本文中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。
在本发明的描述中,需要理解的是,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。在本发明的描述中,除非另有规定和限定,需要说明的是,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是机械连接或电连接,也可以是两个元件内部的连通,可以是直接相连,也可以通过中间媒介间接相连,对于本领域的普通技术人员而言,可以根据具体情况理解上述术语的具体含义。
如图4所示是根据一发明实施例示出的接水装置与空调接水盘的结构示意图。接水装置包括:第一接水部200和第二接水部300。其中,座吊式空调作为座机使用,可以看出空调接水盘较窄的第二接水面12无法全部承接室内换热器的U型管13滴落的冷凝水。
第二接水部300设置于U型管13的下方,可以承接U型管13滴落的冷凝水,避免U型管13滴落的冷凝水滴落到座吊机内部零件上。室内换热机的两端均为U型管13,因此为有效避免U型管13滴落的冷凝水滴落到座吊机内部零件上,接水装置包括两个第二接水部300,分别设置于室内换热机的两端。
第一接水部200设置在第二接水部300的上方。在一些可选实施例中,冷媒输入管和冷媒输出管设置于室内换热机不同侧,距离较远,为节省成本,便于第二接水部300的安 装和拆卸,空调器包括两个第一接水部200,第二接水部300分别套设在冷媒输入管和冷媒输出管上。在一些可选实施例中,冷媒输入管和冷媒输出管设置于室内换热机同侧,距离较近,为简化第一接水部200的结构,加快装配速率,空调器包括一个第二接水部300,第二接水部300套设在冷媒输入管和冷媒输出管上。
在本发明实施例中,接水装置由第一接水部和第二接水部组成,第一接水部和第二接水部配合收集U型管产生的冷凝水、室内换热器冷媒输入管,和/或冷媒输出管产生的冷凝水,并排至座吊式空调接水盘,可以有效避免座吊机作为座机使用时冷凝水滴落到座吊机内部零件上,且第一接水部和第二接水部配合使用,拆卸方便,便于维修。
如图2所示,第一接水部200包括:过管孔21和排水孔22。第一接水部200通过过管孔21套设在冷媒输入管外壁、冷媒输出管外壁或冷媒输入管外壁和冷媒输出管外壁。图2为示例性实施例,在一些可选实施例中,冷媒输入管和冷媒输出管设置于室内换热机同侧,距离较近时,第一接水部200包括两个过管孔21。其中,为保证第一接水部200有效接收冷媒输入管或冷媒输出管滴落的冷凝水,过管孔21的直径由冷媒输入管和冷媒输出管的外径确定。过管孔21用于与冷媒输入管配合时,过管孔21的直径等于冷媒输入管的外径,当过管孔21用于与冷媒输出管配合时,过管孔21的直径等于冷媒输出管的外径。
排水孔22将第一接水部200收集的冷凝水排入第二接水部300,由第二接水部300排入空调器的接水盘,空调器的接水盘连接排水管将冷凝水排至室外。
其中,为提高第一接水部200的适用性,存在多种不同形式。
在一些可选实施例中,为提高第一接水部200的适用性,第一接水部200的材质为橡胶。保证第一接水部200易于变形,可选地,第一接水部200的最大形变量为2mm~5mm。因此,第一接水部200可以套设在冷媒输入管和冷媒输出管外径变化范围在4mm~10mm内。具体的,第一接水部200的过管孔21的直径为20mm,最大形变量为3mm,因此,第一接水部200可以套设在外径为20mm的冷媒输入管或冷媒输出管上。当冷媒输入管或冷媒输出管外径大于20mm时,与第一接水部200产生挤压,第一接水部200变形,当冷媒输入管或冷媒输出管外径等于26mm时,第一接水部200形变量达到上限。
在前述实施例中,为简化第一接水部200加工过程,加快生产效率,第一接水部200通过注塑成型的方式制成。
在一些可选实施例中,便于第一接水部200套设在冷媒输入管和冷媒输出管上,第一接水部200一侧设置有开口,基于第一接水部200材质为橡胶,易于变形的特点,第一接 水部200可通过开口套设在冷媒输入管和冷媒输出管上。
在一些可选实施例中,为提高第一接水部200的适用性,过管孔21为圆环形的橡胶体,保证过管孔21易于变形,可以套设在外径不同的冷媒输入管或冷媒输出管上。
在前述实施例中,为简化第一接水部200加工过程,加快生产效率,过管孔21通过注射成型的方式与第一接水部200形成一体式结构。
在一些可选实施例中,如图3所示,为避免在空调运行或运输过程中,第二接水部300位置改变造成冷凝水滴落到座吊机内部零件上,第二接水部300包括固定部31。第二接水部300通过紧固件与固定部31与空调器其他部件或换热器连接,限定第二接水部300的位置。可选的,固定部31为螺钉孔。通过螺钉穿过螺钉孔将第二接水部300固定在空调器内。
在一些可选实施例中,如图3所示,为实现第二接水部300将冷凝水排入接水盘。第二接水部300包括排水口32。
第二接水部300表面不平整,冷凝水囤积在第二接水部300内,长时间后,囤积的冷凝水会产生微生物,影响人体健康。为避免冷凝水囤积在第二接水部300内,在一些可选实施例中,如图5所示,第二接水部300包括导流槽34。导流槽34设置在朝向排水口的积水导流方向。积水导流方向为排水口32朝向接水盘的方向。
在一些可选实施例中,为进一步提高第二接水部300的稳定性,第二接水部300包括支撑部33。可选地,支撑部33设置于第二接水部300下方中部位置。支撑部33与空调器的其他部件相抵,支撑第二接水部300处于平稳的位置,冷凝水可有效排入接水盘,并由排水管排至室外。
在一些可选实施例中,为避免第一接水部200收集到的冷凝水溢出第一接水部200,滴落到座吊机内部零件上。第一接水部200边缘设有向室内换热器翻折的翻边。
在一些可选实施例中,因第二接水部300设置于第一接水部200下方,为节约制作成本,加快加工进度,第二接水部300边缘设有向室内换热器翻折的翻边。
在一些可选实施例中,为有效避免冷凝水滴落到座吊机内部零件上,提高空调的安全性,第一接水部200和第二接水部300边缘均设有向室内换热器翻折的翻边。
本发明进一步还提出一种座吊式空调。该座吊式空调包括设置于室内换热器下方的接水盘及接水装置。该接水装置的具体结构参照上述实施例,在此不再赘述。由于该座吊式空调采用了上述接水装置的技术方案,因此上述接水装置的技术方案所带来的所有有益效果该座吊式空调都应具备,在此也不再赘述。
本发明并不局限于上面已经描述并在附图中示出的结构,并且可以在不脱离其范围进行各种修改和改变。本发明的范围仅由所附的权利要求来限制。

Claims (10)

  1. 一种接水装置,设置于座吊式空调内,所述座吊式空调包括设置于室内换热器下方的接水盘;其特征在于,所述接水装置包括:第一接水部和第二接水部;所述第一接水部套设在室内换热器冷媒输入管,和/或冷媒输出管的外壁,收集冷媒输入管,和/或冷媒输出管外壁的冷凝水,并排入所述第二接水部;所述第二接水部设置在室内换热器U型管的下方,将收集到的U型管的冷凝水,冷媒输入管,和/或冷媒输出管外壁的冷凝水排入所述接水盘。
  2. 如权利要求1所述的接水装置,其特征在于,所述第一接水部包括:过管孔和排水孔;所述第一接水部通过所述过管孔套设在所述冷媒输入管,和/或冷媒输出管外壁;所述排水孔用于将所述第一接水部收集的冷凝水排入所述第二接水部。
  3. 如权利要求1所述的接水装置,其特征在于,所述第一接水部的材质为橡胶。
  4. 如权利要求1所述的接水装置,其特征在于,所述第一接水部通过注塑成型的方式制成。
  5. 如权利要求2所述的接水装置,其特征在于,所述过管孔为圆环形的橡胶体。
  6. 如权利要求5所述的接水装置,其特征在于,所述过管孔通过注射成型的方式与所述第一接水部形成一体式结构。
  7. 如权利要求1所述的接水装置,其特征在于,所述第二接水部包括固定部;所述第二接水部通过紧固件与所述固定部限定所述第二接水部的位置。
  8. 如权利要求1所述的接水装置,其特征在于,所述第二接水部包括将冷凝水排入所述接水盘的排水口。
  9. 如权利要求8所述的接水装置,其特征在于,所述第二接水部包括导流槽;所述导流槽设置在朝向所述排水口的积水导流方向。
  10. 一种座吊式空调,所述座吊式空调包括设置于室内换热器下方的接水盘;其特征在于,还包括如权利要求1至9任意一项所述的接水装置。
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