WO2018137391A1 - 一种导流碗、具有其的换热器及空调室内机 - Google Patents
一种导流碗、具有其的换热器及空调室内机 Download PDFInfo
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- WO2018137391A1 WO2018137391A1 PCT/CN2017/111922 CN2017111922W WO2018137391A1 WO 2018137391 A1 WO2018137391 A1 WO 2018137391A1 CN 2017111922 W CN2017111922 W CN 2017111922W WO 2018137391 A1 WO2018137391 A1 WO 2018137391A1
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- pipe
- bowl
- guiding
- flow guiding
- water
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/22—Means for preventing condensation or evacuating condensate
Definitions
- the invention relates to the technical field of waterproof structures for air conditioner indoor units, in particular to a diversion bowl, a heat exchanger having the same and an air conditioner indoor unit.
- the air conditioner indoor unit includes a heat exchanger, and the angle frame is disposed on the heat exchanger for supporting and fixing the heat exchanger, and the fins of the adjacent two heat exchangers are always maintained at a specific angle, and the air conditioner indoor unit further includes a connection. Tube for connecting the heat exchanger to the outdoor unit.
- the connecting pipes usually have only one pair (ie, one inlet pipe for inputting refrigerant to the heat exchanger, and one gas collecting pipe for outputting refrigerant to the outdoor unit), and The tube is discharged from one side of the indoor unit.
- the technical problem to be solved by the present invention is to overcome the waterproof problem of the connecting pipe for connecting the inside and outside of the air conditioner in the prior art, thereby providing a new diversion bowl.
- the present invention also provides a heat exchanger having the above-described flow guiding bowl.
- the present invention also provides an air conditioning indoor unit having the above heat exchanger.
- the present invention provides a diversion bowl comprising:
- the main body of the diversion bowl is adapted to be sleeved on the liquid inlet pipe and/or the gas collecting pipe which is discharged from the evaporator side, and is in contact with the outer wall of the liquid inlet pipe and/or the gas collecting pipe for receiving from the inlet Condensed water that slides off the outer wall of the liquid pipe and/or the collecting pipe;
- the flow guiding structure is disposed on the main body of the diversion bowl for guiding the condensed water received by the main body of the diversion bowl to a set position.
- the main body of the diversion bowl is provided with at least one waterproof connection hole for being sleeved on the outside of the inlet pipe and/or the gas collection pipe, and the waterproof connection hole has a certain axial length.
- the main body of the diversion bowl is connected to the inlet pipe and/or the gas collecting pipe by an interference fit through the waterproof connecting hole.
- the flow guiding structure includes a drainage hole formed in the main body of the diversion bowl.
- the flow guiding structure further includes a guide tube connected to the outer side of the drain hole to guide the water discharged from the drain hole to the set position.
- the water guiding bowl body portion is formed with a water receiving chamber, and the water receiving chamber communicates with the guiding structure to discharge the received condensed water to the outside through the guiding structure.
- a flange structure is formed on the main body of the diversion bowl, and the flange structure is enclosed to form a water receiving chamber.
- the flange structure is further provided with a slit for avoiding interference with the heat pipe or the elbow.
- the diversion bowl is a rubber piece.
- the invention also provides a flow guiding assembly comprising a water guiding structure adapted to be mounted on one side of the heat exchanger, comprising a protective tube sheet, an inner side plate, and a bottom plate connecting the protective tube plate and the inner side plate to form a water guiding space;
- the water guiding space is for receiving and guiding the condensed water formed by the pipeline in the upper space thereof;
- the aforementioned diversion bowl which is disposed on the inlet pipe and/or the gas collection pipe located at the upper portion of the water guiding space, collects the condensed water, and is diverted to the inside of the water guiding space through the diversion structure.
- the present invention also provides a heat exchanger comprising a heat exchanger body and a side plate mounted on one side of the heat exchanger body, the side plate is for supporting the heat pipe; the liquid inlet pipe and the gas collecting pipe are respectively connected with the heat pipe, and The three-way structure and the connecting pipe are connected to the liquid inlet branch pipe and the gas collecting branch pipe located on the other side of the heat exchanger main body;
- a flow guiding assembly for receiving and diverting condensed water on at least one of a heat pipe, a connecting pipe, an inlet pipe, a gas collecting pipe, and a three-way structure at an upper portion thereof.
- the invention also provides an air conditioning indoor unit comprising the aforementioned heat exchanger.
- the diversion bowl provided by the invention, the heat exchanger having the same and the air conditioner indoor unit have the following advantages:
- the diversion bowl of the present invention comprises a main body of a diversion bowl and a flow guiding structure, and the main body of the diversion bowl is adapted to be sleeved on the liquid pipe and/or the gas collecting pipe, and is connected with the liquid pipe and/or the gas collecting pipe
- the outer wall is in contact contact for receiving condensed water that slides off the outer wall of the liquid pipe and/or the gas collecting pipe
- the flow guiding structure is used for guiding the condensed water received by the main body of the flow guiding bowl to the set position, the present invention
- the diversion bowl can solve the condensation water problem in the special position of the liquid pipe and/or the gas collecting pipe, thereby significantly improving the user experience.
- the diversion bowl of the present invention is provided with at least one waterproof connection hole for being sleeved on the outside of the liquid pipe and/or the gas collection pipe, and the waterproof connection hole has a certain axial length,
- the waterproof connecting hole with a certain axial length has a large contact area between the inner wall and the outer wall of the connecting pipe, and can effectively prevent the condensed water from leaking from the position where the liquid collecting pipe and/or the collecting pipe are in contact with the waterproof connecting hole, thereby improving the waterproof effect. .
- the diversion bowl of the present invention is connected to the liquid pipe and/or the gas collecting pipe by an interference fit through the waterproof connecting hole, and the waterproof connecting hole and the liquid pipe and/or the liquid pipe can be further enhanced.
- the degree of fit of the collector pipe contact position improves the waterproof effect.
- the diversion bowl of the present invention comprising a drainage hole provided in the main body portion of the diversion bowl for discharging water received by the main body of the diversion bowl; further comprising a guiding tube capable of guiding the diversion bowl The water received by the main body is guided to a set position, thereby facilitating control of the flow of the condensed water.
- the diversion bowl of the present invention is provided with a ring structure to form a water receiving chamber, and the flange structure is further provided with a slit for avoiding interference with the heat pipe or the elbow, thereby
- the inventive diversion bowl is better adapted to the heat exchanger structure.
- the present invention also provides a heat exchanger having the above-described diversion bowl which, due to the above-described diversion bowl, naturally has all the advantages brought about by having a diversion bowl.
- the present invention also provides an air conditioner indoor unit comprising the heat exchanger as described above, which naturally has all the advantages brought about by including the heat exchanger described above, since the heat exchanger described above is included.
- FIG. 1 is a schematic view showing the overall structure of a flow guiding bowl in Embodiment 1.
- Fig. 2 is another perspective structural view of Fig. 1.
- FIG. 3 is a schematic structural view of the guide bowl of FIG. 1 and the connecting pipe.
- Figure 4 is an enlarged schematic view showing the structure of a portion A in Figure 3.
- Fig. 5 is a perspective view of a water guiding structure.
- Figure 6 is a schematic view showing the structure of the water guiding structure of Figure 5 mounted on a heat exchanger.
- Fig. 7 is another perspective view of Fig. 5.
- connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
- Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
- the specific meaning of the above terms in the present invention can be understood in a specific case by those skilled in the art.
- the present embodiment provides a flow guiding bowl, as shown in FIGS. 1 to 4, comprising: a guiding bowl main body portion k401, which is adapted to be sleeved on the inlet pipe a2231 and/or the gas collecting pipe a2232, and the inlet pipe a2231 And/or the outer wall of the gas collecting pipe a2232 is in contact with each other for receiving the condensed water that slides off the outer wall of the inlet pipe a2231 and/or the gas collecting pipe a2232; the flow guiding structure is disposed on the main body k401 of the guiding bowl for The condensed water received by the deflector bowl main body k401 is diverted to the set position.
- the flow guiding bowl of the embodiment comprises a guiding bowl main body portion k401 and a flow guiding structure, and the guiding bowl main body portion k401 is adapted to be sleeved on the liquid inlet tube a2231 and/or the gas collecting tube a2232, and is connected with the inlet tube a2231 and / or the outer wall of the collecting pipe a2232 is in contact contact for receiving the condensed water that slides off the outer wall of the inlet pipe a2231 and/or the collecting pipe a2232, and the guiding structure is used to receive the condensed water guide of the guiding bowl main body k401 Flowing to the set position, the diversion bowl of the present embodiment can solve the condensation water problem at the special position of the inlet pipe a2231 and/or the header pipe a2232, thereby significantly improving the user experience.
- the guiding bowl main body portion k401 is provided on the inlet pipe a2231 and/or the collecting pipe a2232.
- the outer waterproof connection hole k4011, and the waterproof connection hole k4011 has a certain axial length.
- the waterproof connecting hole k4011 having a certain axial length has a larger inner wall contacting the outer wall of the inlet pipe a2231 and/or the collecting pipe a2232, and can effectively prevent the condensed water from being infiltrated from the inlet pipe a2231 and/or the gas collecting pipe a2232. The position where the connection hole k4011 contacts is leaked, thereby improving the waterproof effect.
- the guide bowl main body portion k401 is sleeve-connected to the inlet pipe a2231 and/or the gas collecting pipe a2232 by an interference fit k4011.
- the connection mode of the interference fit can further enhance the fitting degree of the contact position of the waterproof connection hole k4011 with the inlet pipe a2231 and/or the gas collection pipe a2232, thereby improving the waterproof effect.
- the flow guiding structure includes a drainage hole k4012 opened on the main body portion k401 of the diversion bowl for discharging water received by the main body k401 of the diversion bowl; further, a guide tube k4013 is provided, which can receive the main body k401 of the diversion bowl The incoming water is directed to a set position to facilitate control of the flow of condensate.
- the water guiding bowl main body portion k401 is formed with a water receiving chamber k4010, and the water receiving chamber k4010 communicates with the guiding structure to discharge the received condensed water to the outside through the guiding structure.
- a flange structure k4014 is formed on the main body k401 of the guide bowl, and the flange structure k4014 is enclosed to form a water receiving chamber k4010.
- the flange structure k4014 is also provided with a slit k4015 for avoiding interference with the heat pipe or the elbow.
- the diversion bowl is a rubber member, and those skilled in the art can also manufacture other materials according to actual needs.
- the embodiment further provides a flow guiding assembly comprising a water guiding structure adapted to be mounted on one side of the heat exchanger k104, including a protective tube plate k302, an inner side plate k303, and a connecting protective tube plate k302 and an inner side plate k303 to form
- the water guiding space k3010 is for receiving and guiding the condensed water formed by the pipeline in the upper space thereof; and further comprises the guiding bowl as above, the guiding bowl is sleeved in the upper part of the water guiding space k3010
- the inlet pipe a2231 and/or the header pipe a2232 collect condensed water and conduct it through the flow guiding structure to the inside of the water guiding space k3010.
- the embodiment provides a heat exchanger, comprising a heat exchanger body, and a side plate k105 mounted on one side of the heat exchanger body, the side plate k105 is used for supporting the heat pipe k108; the inlet pipe a2231 and the gas gathering
- the tube a2232 is respectively connected to the heat dissipation pipe k108, and communicates with the liquid inlet branch pipe k102 and the gas collection branch pipe k103 located on the other side of the heat exchanger body through a three-way structure and a connecting pipe; and includes the flow guiding as described in Embodiment 1.
- the assembly, the water guiding structure is configured to receive and guide the condensed water on at least one of the heat pipe k108, the connecting pipe, the inlet pipe a 2321, the gas collecting pipe a2232, and the tee structure at an upper portion thereof.
- the heat exchanger of this embodiment has the above-described flow guiding bowl, it naturally has all the advantages brought about by having the flow guiding bowl.
- the embodiment provides an air conditioner indoor unit, which comprises the heat exchanger described in Embodiment 2.
- the air conditioner indoor unit of the present embodiment includes the above-described heat exchanger, it naturally has all the advantages brought about by including the above-described heat exchanger.
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- Chemical & Material Sciences (AREA)
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- General Engineering & Computer Science (AREA)
- Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)
Abstract
一种导流碗、具有其的换热器及空调室内机。其中导流碗包括:导流碗主体部(k401),适于套设在进液管(a2231)和/或集气管(a2232)上,并与进液管(a2231)和/或集气管(a2232)的外壁贴合接触,用于接收从进液管(a2231)和/或集气管(a2232)外壁上滑落的冷凝水;导流结构,用于将导流碗主体部(k401)接收到的冷凝水导流至设定位置。该导流碗能够解决进液管(a2231)和/或集气管(a2232)这一特殊位置的冷凝水滴水问题,从而能够明显改善用户体验。
Description
本发明涉及空调室内机用防水结构技术领域,具体涉及一种导流碗、具有其的换热器及空调室内机。
空调室内机包括换热器,角形架设置在换热器上,用于支撑固定换热器,并使相邻两个换热器的翅片之间始终保持特定角度,空调室内机还包括连接管,用于连接换热器和室外机。然而,现有技术中的空调室内机,连接管通常都只有一对(即:一个用于向换热器输入冷媒的进液管,和一个用于向室外机输出冷媒的集气管),并从室内机的一侧出管。并且,现有蒸发器部件连接管的走管方式无法实现蒸发器的单独拆卸,必须和整机一起拆卸。然而,无论连接管从室内机的任何一侧出管,其都存在防水问题,即空调室内机在工作时,连接管外壁上会产生冷凝水,这些冷凝水累积到一定程度后会滴落,导致用户体验差,因此需要针对连接管设计防水设计。
发明内容
因此,本发明要解决的技术问题在于克服现有技术中的用于连接空调内外机的连接管的防水问题,从而提供一种新的导流碗。
本发明还提供一种具有上述导流碗的换热器。
本发明还提供一种具有上述换热器的空调室内机。
为此,本发明提供一种导流碗,包括:
导流碗主体部,适于套设在从蒸发器一侧出管的进液管和/或集气管上,并与进液管和/或集气管的外壁贴合接触,用于接收从进液管和/或集气管外壁上滑落的冷凝水;
导流结构,设置在导流碗主体部上,用于将导流碗主体部接收到的冷凝水导流至设定位置。
作为一种优选方案,导流碗主体部上设有至少一个用于套设在进液管和/或集气管外部的防水连接孔,且防水连接孔具有一定的轴向长度。
作为一种优选方案,导流碗主体部通过防水连接孔以过盈配合的方式与进液管和/或集气管套设连接。
作为一种优选方案,导流结构包括开设在导流碗主体部上的排水孔。
作为一种优选方案,导流结构还包括与排水孔的外侧连接,从而将从排水孔排出的水导向设定位置的导向管。
作为一种优选方案,导流碗主体部上形成有接水腔,接水腔与导流结构连通,从而将接收到的冷凝水通过导流结构向外排出。
作为一种优选方案,导流碗主体部上成型有一圈凸缘结构,凸缘结构围合形成接水腔。
作为一种优选方案,凸缘结构上还设有避免与散热管或弯头互相干涉的豁口。
作为一种优选方案,导流碗为橡胶件。
本发明还提供一种导流组件,包括导水结构,适于安装在换热器的一侧,包括护管板,内侧板,以及连接护管板和内侧板从而形成导水空间的底板;导水空间用于接收并导流其上部空间内的管路形成的冷凝水;
还包括前述的导流碗,导流碗套设在位于导水空间上部的进液管和/或集气管上,收集冷凝水,并通过导流结构导流至导水空间内部。
本发明还提供一种换热器,包括换热器主体,以及安装在换热器主体一侧的边板,边板用于支撑散热管;进液管和集气管分别与散热管连通,并通过三通结构、连接管与位于换热器主体另一侧的进液支管、集气支管连通;
还包括有如上的导流组件,导水结构用于接收并导流位于其上部的散热管、连接管、进液管、集气管以及三通结构中的至少一个上的冷凝水。
本发明还提供一种空调室内机,包括有前述的换热器。
本发明提供的导流碗、具有其的换热器及空调室内机,具有以下优点:
1.本发明的导流碗,包括导流碗主体部和导流结构,导流碗主体部适于套设在接液管和/或集气管上,并与接液管和/或集气管的外壁贴合接触,用于接收从接液管和/或集气管外壁上滑落的冷凝水,导流结构用于将导流碗主体部接收到的冷凝水导流至设定位置,本发明的导流碗,能够解决接液管和/或集气管这一特殊位置的冷凝水滴水问题,从而能够明显改善用户体验。
2.本发明的导流碗,导流碗主体部上设有至少一个用于套设在接液管和/或集气管外部的防水连接孔,且防水连接孔具有一定的轴向长度,具有一定轴向长度的防水连接孔,其内壁与连接管外壁接触的面积也较大,能够有效避免冷凝水从接液管和/或集气管与防水连接孔接触的位置外漏,从而提高防水效果。
3.本发明的导流碗,导流碗主体部通过防水连接孔以过盈配合的方式与接液管和/或集气管套设连接,能够进一步增强防水连接孔与接液管和/或集气管接触位置的贴合程度,从而提高防水效果。
4.本发明的导流碗,导流结构包括设在导流碗主体部的排水孔,用于将导流碗主体部接收到的水排出;进一步的设有导向管,能够将导流碗主体部接收到的水导流至设定的位置,从而便于控制冷凝水的流向。
5.本发明的导流碗,导流碗主体部上设有一圈凸缘结构,形成接水腔,并且凸缘结构上还设有避免与散热管或弯头互相干涉的豁口,从而使得本发明的导流碗能够更好地适应换热器结构。
6.本发明还提供一种换热器,其具有上述的导流碗,由于具有上述的导流碗,因而自然具有因具有导流碗所带来的一切优点。
7.本发明还提供一种空调室内机,其包括有如上前述所述的换热器,由于包括有上述的换热器,因而自然具有因包括上述的换热器所带来的一切优点。
为了更清楚地说明现有技术或本发明具体实施方式中的技术方案,下面对现有技术或具体实施方式描述中所使用的附图作简单介绍,显而易见地,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是实施例1中导流碗的整体结构示意图。
图2是图1的另一立体结构图。
图3是图1中的导流碗与连接管配合安装后的结构示意图。
图4是图3中A部分的结构放大示意图。
图5是导水结构的立体图。
图6是图5中的导水结构安装到换热器上的结构示意图。
图7是图5的另一立体图。
附图标记说明:a2231、进液管;a2232、集气管;k102、进液支管;k103、集气支管;k104、换热器;k105、边板;k108、散热管;k302、护管板;k303、内侧板;k304、底板;k3010、导水空间;k401、导流碗主体部;k4010、接水腔;k4011、防水连接孔;k4012、排水孔;k4013、导向管;k4014、凸缘结构;k4015、豁口。
下面将结合附图对本发明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发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明保护的范围。
在本发明的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或
位置关系为基于附图4-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。此外,术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
此外,下面所描述的本发明不同实施方式中所涉及的技术特征只要彼此之间未构成冲突就可以相互结合。
实施例1
本实施例提供一种导流碗,如图1至4所示,包括:导流碗主体部k401,适于套设在进液管a2231和/或集气管a2232上,并与进液管a2231和/或集气管a2232的外壁贴合接触,用于接收从进液管a2231和/或集气管a2232外壁上滑落的冷凝水;导流结构,设置在导流碗主体部k401上,用于将导流碗主体部k401接收到的冷凝水导流至设定位置。
本实施例的导流碗,包括导流碗主体部k401和导流结构,导流碗主体部k401适于套设在进液管a2231和/或集气管a2232上,并与进液管a2231和/或集气管a2232的外壁贴合接触,用于接收从进液管a2231和/或集气管a2232外壁上滑落的冷凝水,导流结构用于将导流碗主体部k401接收到的冷凝水导流至设定位置,本实施例的导流碗,能够解决进液管a2231和/或集气管a2232这一特殊位置的冷凝水滴水问题,从而能够明显改善用户体验。
导流碗主体部k401上设有用于套设在进液管a2231和/或集气管a2232
外部的防水连接孔k4011,且防水连接孔k4011具有一定的轴向长度。具有一定轴向长度的防水连接孔k4011,其内壁与进液管a2231和/或集气管a2232外壁接触的面积也较大,能够有效避免冷凝水从进液管a2231和/或集气管a2232与防水连接孔k4011接触的位置外漏,从而提高防水效果。
导流碗主体部k401通过防水连接孔k4011以过盈配合的方式与进液管a2231和/或集气管a2232套设连接。过盈配合的连接方式,能够进一步增强防水连接孔k4011与进液管a2231和/或集气管a2232接触位置的贴合程度,从而提高防水效果。
导流结构包括开设在导流碗主体部k401上的排水孔k4012,用于将导流碗主体部k401接收到的水排出;进一步的设有导向管k4013,能够将导流碗主体部k401接收到的水导流至设定的位置,从而便于控制冷凝水的流向。
导流碗主体部k401上形成有接水腔k4010,接水腔k4010与导流结构连通,从而将接收到的冷凝水通过导流结构向外排出。导流碗主体部k401上成型有一圈凸缘结构k4014,凸缘结构k4014围合形成接水腔k4010。凸缘结构k4014上还设有避免与散热管或弯头互相干涉的豁口k4015。
本实施例中,导流碗为橡胶件,本领域的技术人员根据实际需要,也可以采用其他材质生产制造。
本实施例还提供一种导流组件,包括导水结构,适于安装在换热器k104的一侧,包括护管板k302,内侧板k303,以及连接护管板k302和内侧板k303从而形成导水空间k3010的底板k304;导水空间k3010用于接收并导流其上部空间内的管路形成的冷凝水;还包括如上的导流碗,导流碗套设在位于导水空间k3010上部的进液管a2231和/或集气管a2232上,收集冷凝水,并通过导流结构导流至导水空间k3010内部。
实施例2
本实施例提供一种换热器,包括换热器主体,以及安装在换热器主体一侧的边板k105,边板k105用于支撑散热管k108;进液管a2231和集气
管a2232分别与散热管k108连通,并通过三通结构、连接管与位于换热器主体另一侧的进液支管k102、集气支管k103连通;还包括有如实施例1中所述的导流组件,导水结构用于接收并导流位于其上部的散热管k108、连接管、进液管a2231、集气管a2232以及三通结构中的至少一个上的冷凝水。
本实施例的换热器,由于具有上述的导流碗,因而自然具有因具有导流碗所带来的一切优点。
实施例3
本实施例提供一种空调室内机,包括实施例2所述的换热器。
本实施例的空调室内机,由于包括有上述的换热器,因而自然具有因包括上述的换热器所带来的一切优点。
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)
- 一种导流碗,其特征在于,包括:导流碗主体部(k401),适于套设在从蒸发器一侧出管的进液管(a2231)和/或集气管(a2232)上,并与所述进液管(a2231)和/或集气管(a2232)的外壁贴合接触,用于接收从所述进液管(a2231)和/或集气管(a2232)外壁上滑落的冷凝水;导流结构,设置在所述导流碗主体部(k401)上,用于将所述导流碗主体部(k401)接收到的所述冷凝水导流至设定位置。
- 根据权利要求1所述的导流碗,其特征在于,所述导流碗主体部(k401)上设有至少一个用于套设在所述进液管(a2231)和/或集气管(a2232)外部的防水连接孔(k4011),且所述防水连接孔(k4011)具有一定的轴向长度。
- 根据权利要求2所述的导流碗,其特征在于,所述导流碗主体部(k401)通过所述防水连接孔(k4011)以过盈配合的方式与所述进液管(a2231)和/或集气管(a2232)套设连接。
- 根据权利要求1所述的导流碗,其特征在于,所述导流结构包括开设在所述导流碗主体部(k401)上的排水孔(k4012)。
- 根据权利要求4所述的导流碗,其特征在于,所述导流结构还包括与所述排水孔(k4012)的外侧连接,从而将从所述排水孔(k4012)排出的水导向设定位置的导向管(k4013)。
- 根据权利要求1所述的导流碗,其特征在于,所述导流碗主体部(k401)上形成有接水腔(k4010),所述接水腔(k4010)与所述导流结构连通,从而将接收到的所述冷凝水通过所述导流结构向外排出。
- 根据权利要求6所述的导流碗,其特征在于,所述导流碗主体部(k401)上成型有一圈凸缘结构(k4014),所述凸缘结构(k4014)围合形成所述接水腔(k4010)。
- 根据权利要求7所述的导流碗,其特征在于,所述凸缘结构(k4014)上还设有避免与散热管或弯头互相干涉的豁口(k4015)。
- 根据权利要求1所述的导流碗,其特征在于,所述导流碗为橡胶件。
- 一种导流组件,包括导水结构,适于安装在换热器(k104)的一侧,包括护管板(k302),内侧板(k303),以及连接所述护管板(k302)和所述内侧板(k303)从而形成导水空间(k3010)的底板(k304);所述导水空间(k3010)用于接收并导流其上部空间内的管路形成的冷凝水;其特征在于,还包括如权利要求1-9中任一项所述的导流碗,所述导流碗套设在位于所述导水空间(k3010)上部的进液管(a2231)和/或集气管(a2232)上,收集冷凝水,并通过导流结构导流至所述导水空间(k3010)内部。
- 一种换热器,包括换热器主体,以及安装在所述换热器主体一侧的边板(k105),所述边板(k105)用于支撑散热管(k108);进液管(a2231)和集气管(a2232)分别与所述散热管(k108)连通,并通过三通结构、连接管与位于所述换热器主体另一侧的进液支管(k102)、集气支管(k103)连通;其特征在于,还包括有如权利要求10所述的导流组件,所述导水结构用于接收并导流位于其上部的散热管(k102)、连接管、进液管(a2231)、集气管(a2232)以及三通结构中的至少一个上的冷凝水。
- 一种空调室内机,其特征在于,包括有如权利要求11所述的换热器。
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