WO2020215924A1 - 空调导水结构及空调器 - Google Patents

空调导水结构及空调器 Download PDF

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Publication number
WO2020215924A1
WO2020215924A1 PCT/CN2020/079171 CN2020079171W WO2020215924A1 WO 2020215924 A1 WO2020215924 A1 WO 2020215924A1 CN 2020079171 W CN2020079171 W CN 2020079171W WO 2020215924 A1 WO2020215924 A1 WO 2020215924A1
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WO
WIPO (PCT)
Prior art keywords
side plate
base side
water
upper base
water guiding
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Application number
PCT/CN2020/079171
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English (en)
French (fr)
Inventor
黄家柏
尚彬
张坤鹏
霍彪
徐海涛
王千广
王杰杰
贺佳伟
许超魁
曾友坚
罗安发
Original Assignee
宁波奥克斯电气股份有限公司
奥克斯空调股份有限公司
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Application filed by 宁波奥克斯电气股份有限公司, 奥克斯空调股份有限公司 filed Critical 宁波奥克斯电气股份有限公司
Publication of WO2020215924A1 publication Critical patent/WO2020215924A1/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 embodiment of the present disclosure relates to an air conditioner water guiding structure and an air conditioner.
  • the embodiments of the present disclosure aim to provide a water guiding structure of an air conditioner to solve the problem of water leakage between the upper base side plate and the lower base side plate in the prior art.
  • a water guiding structure of an air conditioner includes an upper base side plate and a lower base side plate.
  • the upper base side plate and the lower base side plate are connected A gap
  • the bottom side of the upper base side panel is located on the side of the top side of the lower base side panel close to the inside of the air conditioner, and the level of the bottom side is not lower than the level of the gap.
  • the water guiding structure includes a water blocking portion provided on a side plate of the upper base, and the water blocking portion is located on a side of the gap close to the inner side of the air conditioner.
  • water blocking portion is fixedly connected to the side plate of the upper base or integrally formed.
  • the water blocking part is a long plate type, and the water blocking part is arranged obliquely.
  • water blocking portion is distributed along the gap.
  • the water guiding structure further includes a flow channel provided on the evaporator branch plate, the flow channel is located on the side of the evaporator branch plate close to the upper base side plate, and the flow channel The channel is suitable for collecting the condensed water and diverting it into the water guiding tank.
  • one end of the flow channel close to the water guiding groove is provided with a water outlet, and the water in the flow channel is suitable for flowing into the water guiding groove from the water outlet.
  • the water outlet includes a first opening, and the first opening faces the side plate of the upper base;
  • the water outlet includes a second opening, and the second opening faces the water guide groove.
  • the water guiding structure further includes a water guiding part arranged on the flow channel, and the water guiding part is suitable for guiding the condensed water in the flow channel to the water outlet.
  • the flow channel further includes a protrusion formed by the flow channel extending toward a side of the upper base side plate.
  • the protruding portion is arranged obliquely upward along the direction of the flow channel toward the side plate of the upper base.
  • the protrusion is suitable for abutting against the upper base side plate.
  • the upper base side plate is provided with a protruding part, and the protruding part is formed by a protrusion of the upper base side plate facing the inside of the air conditioner.
  • the protrusion is located above the protrusion.
  • the protrusion is a protrusion, and the top surface of the protrusion is arranged obliquely downward along the direction of the upper base side plate toward the evaporator support plate;
  • the convex portion is a convex plate, and the convex plate is arranged obliquely downward along the direction of the upper base side plate toward the evaporator support plate.
  • protruding portion and the water blocking portion are connected as an integral structure.
  • the upper base side panel is provided with insert strips
  • the lower base side panel is provided with slots, and when the upper base side panel is assembled with the lower base side panel, the insert strips are inserted into the In the slot.
  • a perforation is provided between the bottom of the slot and the outer surface and/or inner surface of the side plate of the lower base.
  • the flow channel includes an arc-shaped surface and a flat surface, and the height of the flow channel gradually increases from one end close to the water guide groove to the other end far away from the water guide groove.
  • the air-conditioning water guiding structure described in the embodiments of the present disclosure has the following advantages:
  • the water guiding structure of the air conditioner can better guide the water in the flow channel and prevent the water in the flow channel from splashing on the upper base side plate and the lower base side plate;
  • a water-retaining part is set in the gap of the side plate of the base to prevent effectively blocking the water splashing into the gap, and further prevent the condensed water from leaking from the gap and causing the air conditioner to leak.
  • the water-conducting structure is simple, the design is more reasonable, and the appearance is higher.
  • Another objective of the embodiments of the present disclosure is to provide an air conditioner, including any one of the air-conditioning water guiding structures described above.
  • the air conditioner has the same advantages as the aforementioned air-conditioning water guiding structure over the known technology, and will not be repeated here.
  • Fig. 1 is a schematic diagram 1 of a water guiding structure according to an embodiment of the present invention.
  • Figure 2 is a schematic diagram of the second water guiding structure according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of the flow channel structure according to an embodiment of the present invention.
  • Figure 4 is a third schematic diagram of a water guiding structure according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of assembling the upper base side plate and the lower base side plate according to the embodiment of the present invention.
  • Figure 6 is an enlarged view of A in Figure 3;
  • FIG. 7 is an exploded schematic diagram of the side plate of the upper base and the side plate of the lower base according to an embodiment of the present invention.
  • Fig. 8 is a schematic diagram of a baffle according to an embodiment of the present invention.
  • FIG. 9 is a schematic diagram of a convex strip and a slot according to an embodiment of the present invention.
  • Fig. 10 is a schematic diagram of perforation according to an embodiment of the present invention.
  • first and second mentioned in the embodiments of the present invention are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. .
  • the features defined with “first” and “second” may explicitly or implicitly include one or more of these features.
  • This embodiment provides a water guiding structure of an air conditioner, as shown in FIG. 1 and FIG. 2, comprising an upper base side plate 5 and a lower base side plate 4, the upper base side plate 5 and the lower base side plate 4
  • a gap 7 where the upper base side plate 5 and the lower base side plate 4 are connected.
  • the bottom side 51 is located on the side of the top side 41 of the lower base side panel 4 close to the inside of the air conditioner, and the level of the bottom side 51 is not lower than the level of the gap 7.
  • Figures 1 and 2 show two implementations.
  • the upper base side plate 5 and the lower base side plate 4 are staggered, and the upper base side plate 5 is located close to the lower base side plate 4 The inner side of the air conditioner, so that the condensate splashed from the inside of the air conditioner will not leak from the gap 7 to the outside of the air conditioner.
  • the lower end of the upper base side plate 5 in Figure 2 is bent, or it can be bent. The bent part is located near the gap 7 The inner side of the air conditioner, and the level of the bottom side 51 is lower than the level of the gap 7.
  • the level of the gap 7 refers to the level of the lowest end of the gap 7, ensuring the upper base side
  • the inwardly extending part of the plate 5 can block the condensed water splashing inside the air conditioner, and prevent the condensed water from leaking from the gap 7 to the outside of the air conditioner.
  • This embodiment provides a specific water guiding structure on the basis of the first embodiment. As shown in FIG. 3 and FIG. 4, it includes a flow channel 1 and a water guiding portion 11 provided on the side of the flow channel 1.
  • the flow channel 1 is arranged on the evaporator support plate 3;
  • the water guiding structure further includes a water blocking portion 2 provided on the upper base side plate 5, and the water blocking portion 2 is located on the side of the gap 7 close to the evaporator.
  • the water guide 11 is added on the side of the flow channel 1, which can better guide the water in the flow channel 1 and prevent the water in the flow channel 1 from splashing on the upper base side plate 5 and the lower base side plate 4, and set a water blocking part 2 at the gap 7 between the upper base side plate 5 and the lower base side plate 4 to effectively block the condensate splashing to the gap 7 and further prevent the condensate water from flowing from the upper base side plate 5 to the lower Leakage from the gap 7 of the side plate 4 of the base causes the air conditioner to leak water.
  • the water blocking part 2 is fixedly connected with the upper base side plate 5 or integrally formed.
  • the water-retaining portion 2 is in the shape of a long plate, and the water-retaining portion 2 is distributed along the gap 7, so that the water-retaining portion 2 can cover all positions of the gap 7, and preferably, the water-retaining portion 2 is inclined and arranged along the
  • the side plate 5 of the upper base is arranged obliquely downward toward the inner side of the air conditioner, so that the condensed water dripping on the water blocking part 2 can slide down into the drain groove or the drain port in the lower part.
  • this embodiment provides a specific structure of the water guiding structure of an air conditioner. As shown in FIGS. 3-7, it includes a flow channel 1 and a water guiding structure arranged on the side of the flow channel 1.
  • Section 11 the flow channel 1 is set on the evaporator support plate 3
  • the flow channel 1 is set on the evaporator support plate 3 near the upper base side plate 5 and the lower base side plate 4 side, preferably, the flow path 1 is along the evaporator
  • the bottom edge of the support plate 3 extends.
  • the flow channel 1 is close to the side of the lower base side plate 4 and the upper base side plate 5.
  • the shape of the flow channel 1 matches the shape of the bottom of the evaporator support plate 3.
  • the flow channel 1 also includes the first The plane 13, the arc surface 14 and the second plane 15, the arc surface 14 is arranged between the first plane 13 and the second plane 15, the arc surface 14 is adapted to match the motor shaft of the air conditioner, the height of the flow channel 1 It gradually becomes lower from one end far away from the water guide groove 6 to the other end, so that the condensed water flows to the side of the water outlet 16 by itself, and prevents the condensate water from being retained in the flow channel 1 and causing dirty blocking.
  • the water guide part 11 is the rib on the side of the runner 1 close to the side plate 4 of the lower base. The rib is solid and arranged on the side of the runner 1 like a railing.
  • the rib is arranged on the curved surface 14 and the second plane 15.
  • the connection point extends to one end of the water outlet 16, the side of the rib close to the evaporator is a smooth surface to prevent the condensate from being retained in the blocking part.
  • the top edge of the rib is higher than the bottom surface of the flow channel 1, preferably, The top edge of the rib abuts against the components above the rib, so that the flow channel 1 forms a trough structure to facilitate the diversion of the condensate; the shape of the water guiding portion 11 is the same as the shape of the left edge of the first plane 13.
  • the water guiding part 11 is S-shaped, the front end of the flow channel 1 is provided with a water outlet 16 which is arranged at the upper end of the water guiding trough 6, so as to facilitate diversion of the condensed water collected in the flow channel 1 to the water guiding groove 6
  • the water outlet 16 includes a first opening 161 and/or a second opening 162, the first opening 161 is set toward the upper base side plate 5, the second opening 162 is set toward the water channel 6, and the first opening 161 and the second opening The two openings 162 are both located above the water guide groove 6 to facilitate the diversion of the condensed water in the flow channel 1 to the water guide groove 6.
  • the water guiding structure of the air conditioner also includes a water blocking part 2.
  • the upper base side plate 5 and the lower base side plate 4 have a gap 7 when the assembly is completed, and the water blocking part 2 is arranged above the gap 7, specifically, as shown in FIG.
  • the water retaining portion 2 includes an extension 21, which is a section of the upper base side plate 5 that extends to the side of the evaporator support plate 3.
  • the extension 21 is a horizontal section, and the extension 21 is connected to the lower base side.
  • the plate 4 is vertical, and the extension 21 protrudes inward and is located above the gap 7, which can effectively prevent the condensate flowing downward from the upper base side plate 5 from entering the gap 7.
  • the condensate collects on the upper base side plate, it will It splashes down, but because of the presence of the water blocking part 2, the splashed water will not fall into the gap 7 between the upper base side plate 5 and the lower base side plate 4 to avoid water leakage; in this embodiment, it is set in the gap
  • the 7 baffles are within the protection scope of the present disclosure.
  • This embodiment is arc-shaped, and the upper base There is a circular groove between the side plate 5 and the side plate 4 of the lower base, which is suitable for clamping the fan bearing seat of the air conditioner.
  • the water retaining portion 2 is designed in a matching arc shape .
  • the inner side of the upper base side plate 5 is provided with a convex portion 53, which is convex from the upper base side plate 5 toward the inside of the air conditioner.
  • the protrusion 53 has a plate-like structure
  • the inner side of the upper base side plate 5 is the side near the side of the evaporator support plate 3
  • the protrusion 53 is gradually inclined downward from back to front.
  • Inclined surface, the side of the flow channel 1 close to the upper base side plate 5 is provided with a protrusion 12, which is formed by extending the flow channel 1 toward the side of the upper base side plate 5.
  • the protrusion 12 is Inclined long plate, and the protrusion 12 is arranged obliquely upward along the evaporator support plate 3 toward the upper base side plate 5, so that the condensed water on the protrusion 12 can flow into the flow channel 1 under the action of gravity.
  • the end of the protrusion 12 close to the upper base side plate 5 abuts the upper base side plate 5 to increase the range of the protrusion 12 to receive condensed water. Play the role of supporting the side plate 5 of the upper base.
  • the protruding portion 12 is arranged above the protruding portion 53, and the protruding portion 12 can better catch the condensed water dripping from above and divert the condensed water to the inner channel of the flow channel 1. , It has a better insulation effect on the condensed water and prevents the condensed water from dripping directly into the lower base; the protrusion 53 can also better guide the condensed water and prevent the condensed water from running along the side of the side plate 5 of the upper base It flows downward and passes through the gap 7 to prevent the condensed water from infiltrating into the gap 7.
  • the convex portion 53 is a convex plate, and the convex plate is arranged obliquely downward along the upper base side plate 5 toward the evaporator support plate 3, or the convex portion 53 is a convex block, and the top surface of the convex block It is arranged obliquely downward along the direction of the upper base side plate 5 toward the evaporator support plate 3.
  • the raised portion 53 and the water blocking portion 2 are connected as an integral structure, which simplifies the manufacturing process, improves the strength of the upper base side plate 5, and the structural design is more reasonable and beautiful.
  • the extension 21 further includes a baffle 22, which is a section of the extension 21 that continues to extend to the side of the evaporator support plate 3.
  • the baffle 22 is inclined obliquely downward.
  • the baffle 22 can be in the shape of a flat plate or an arc shape protruding upward.
  • the baffle 22 can effectively cover the gap 7 and has a better water-retaining effect on the gap 7 and makes dripping.
  • the condensed water on the water blocking portion 2 can flow down more smoothly and flow into the water guiding groove 6 to prevent the condensed water on the extension portion 21 from gradually infiltrating into the gap 7 due to surface tension.
  • the upper base side plate 5 is provided with protruding bars 52
  • the lower base side plate 4 is provided with slots 42
  • the protruding bars 52 are provided on the upper base side plate. 5
  • the protruding strip 52 extends along the connection between the lower part of the upper base side plate 5 and the lower base side plate 4, and the slot 42 is provided on the lower base side plate 4 and the upper base side plate 5.
  • the protruding strip 52 matches the slot 42, and the protruding strip 52 can be inserted into the slot 42.
  • the protruding strip 52 is integrally formed with the upper base side plate 5, and the left and right widths of the protruding strip 52 are slightly Greater than the left and right width of the slot 42, the protruding strip 52 can be inserted into the slot 42 to fit tightly. There is no gap between the protruding strip 52 and the slot 42, which can further prevent the inner side of the upper base side plate 5 (right side in the figure) The condensed water flows into the gap 7, causing the air conditioner to leak.
  • the positions of the protruding strip 52 and the slot 42 are interchangeable, the protruding strip 52 is provided on the side plate 4 of the lower base, and the slot 42 is provided on the side plate 5 of the upper base.
  • the shape of the protruding strip 52 can have various forms, such as its cross-section is square, trapezoidal, hemispherical and triangular, etc.
  • the shape of the slot 42 is the same as that of the protruding strip 52, and the protruding strip 52 can be inserted into the slot 42 smoothly. In this way, the condensed water is prevented from penetrating the gap between the upper base side plate 5 and the lower base side plate 4.
  • This embodiment also provides a technical solution.
  • the protruding strip 52 is provided on the upper base side plate 5 and the slot 42 is provided on the lower base side plate 4, the bottom of the slot 42 faces the lower base side.
  • the inner side of the plate 4 is provided with perforations 421.
  • the slot 42 gradually moves from the left side to the right side of the lower base side plate 4.
  • the slot 42 gradually slopes downward from the rear side to the front side of the lower base side plate 4, so that the condensed water entering the slot 42 can also flow out of the slot 42 through the perforation 421 again, further preventing the already entering The condensed water in the slot 42 flows out, preventing water leakage between the upper base side plate 5 and the lower base side plate 4.
  • This embodiment provides an air conditioner on the basis of the above embodiments, and the air conditioner includes the air conditioner water guiding structure described in any of the above embodiments.

Abstract

一种空调导水结构及空调器,该空调导水结构包括上底座侧板(5)与下底座侧板(4),上底座侧板(5)与下底座侧板(4)装配时,上底座侧板(5)与下底座侧板(4)连接处有缝隙(7),上底座侧板(5)的底边(51)位于下底座侧板(4)的顶边(41)靠近空调内侧的一侧,底边(51)所处的水平高度不低于缝隙(7)所处的水平高度。该空调导水结构能够较好的将流道(1)内的水进行导向,防止流道(1)内的水溅落到上底座侧板(5)与下底座侧板(4)上;并在上底座侧板(5)与下底座侧板(4)的缝隙(7)处设置挡水部(2),有效阻挡溅落到缝隙(7)处的水,进一步防止冷凝水从缝隙(7)处漏出而导致空调器漏水。

Description

空调导水结构及空调器
本申请要求于2019年4月22日提交的中国专利申请第201910321934.8的优先权,该中国专利申请的全文通过引用的方式结合于此以作为本申请的一部分。
技术领域
本公开实施例涉及一种空调导水结构及空调器。
背景技术
已知技术中,壁挂机多有上底座与下底座式结构,上底座和下底座的侧板配合处有缝隙,在空调器工作过程中,上底座侧板、下底座侧板和蒸发器支板之间会产生冷凝水,上底座上的冷凝水会在沿着侧板流下过程中,通过上底座与下底座的缝隙溅到下底座外部,造成漏水,特别是对于小体积壁挂机来说,因为要将整机做的较小,那么就会将上底座、下底座和蒸发器支板靠的非常近,这种情况下,冷凝水更容易溅入下底座的侧板外部。
发明内容
有鉴于此,本公开实施例旨在提出一种空调导水结构,以解决已知技术中,上底座侧板与下底座侧板之间易进水,而导致空调器漏水的问题。
为达到上述目的,本公开的技术方案是这样实现的:
一种空调导水结构,包括上底座侧板与下底座侧板,所述上底座侧板与所述下底座侧板装配时,所述上底座侧板与所述下底座侧板连接处有缝隙,所述上底座侧板的底边位于所述下底座侧板的顶边靠近空调内侧的一侧,所述底边所处的水平高度不低于所述缝隙所处的水平高度。
进一步地,所述导水结构包括挡水部,所述挡水部设置在所述上底座侧板上,所述挡水部位于所述缝隙靠近空调内侧的一侧。
进一步地,所述挡水部与所述上底座侧板固定连接或一体成型。
进一步地,所述挡水部为长板型,所述挡水部倾斜设置。
进一步地,所述挡水部沿着所述缝隙分布。
进一步地,所述导水结构还包括流道,所述流道设置在蒸发器支板上,所述流道位于所述蒸发器支板靠近所述上底座侧板的一侧,所述流道适于收集冷凝水并导流至导水槽内。
进一步地,所述流道靠近所述导水槽一端设有出水口,所述流道内的水适于从所述出水口流入所述导水槽。
进一步地,所述出水口包括第一开口,所述第一开口朝向所述上底座侧板;
和/或,所述出水口包括第二开口,所述第二开口朝向所述导水槽。
进一步地,所述导水结构还包括设置在所述流道上的导水部,所述导水部适于将所述流道内的冷凝水导向至所述出水口处。
进一步地,所述流道还包括突出部,所述突出部由所述流道朝所述上底座侧板一侧延伸形成。
进一步地,所述突出部沿所述流道朝向所述上底座侧板的方向倾斜向上设置。
进一步地,所述上底座侧板与所述蒸发器支板装配时,所述突出部适于与所述上底座侧板抵接。
进一步地,所述上底座侧板设有凸起部,所述凸起部由所述上底座侧板朝向空调内侧的凸起形成。
进一步地,所述蒸发器支板与所述上底座侧板装配时,所述突出部位于所述凸起部的上方。
进一步地,所述凸起部为凸块,所述凸块的顶面沿所述上底座侧板朝向所述蒸发器支板的方向倾斜向下设置;
或,所述凸起部为凸板,所述凸板沿所述上底座侧板朝向所述蒸发器支板的方向倾斜向下设置。
进一步地,所述凸起部与所述挡水部连接为一体结构。
进一步地,所述上底座侧板上设有插条,所述下底座侧板上设有插槽,所述上底座侧板与所述下底座侧板装配时,所述插条插入到所述插槽内。
进一步地,所述插槽的底部与所述下底座侧板外侧面和/或内侧面之间设有穿孔。
进一步地,所述流道包括弧形面与平面,所述流道的高度从靠近所述导水槽的一端至远离所述导水槽的另一端逐渐升高。
相对于已知技术,本公开实施例所述的空调导水结构具有以下优势:
本公开实施例所述的空调导水结构,能够较好的将流道内的水进行导向,防止流道内的水溅落到上底座侧板与下底座侧板上;并在上底座侧板与下底座侧板的缝隙处设置挡水部,防止有效阻挡溅落到缝隙处的水,进一步防止冷凝水从缝隙处漏出而导致空调器漏水,导水结构简单,设计更加合理,美观性更高。
本公开实施例的另一目的在于提出一种空调器,包括上述任一所述的空调导水结构。
所述空调器与上述空调导水结构相对于已知技术所具有的优势相同,在此不再赘述。
附图说明
构成本公开的一部分的附图用来提供对本公开的进一步理解,本公开的示意性实施例及其说明用于解释本公开,并不构成对本公开的不当限定。在附图中:
图1为本发明实施例所述的导水结构示意图一;
图2为本发明实施例所述的导水结构示意图二;
图3为本发明实施例所述的流道结构示意图;
图4为本发明实施例所述的导水结构示意图三;
图5为本发明实施例所述的上底座侧板与下底座侧板装配示意图;
图6为图3中A处放大图;
图7为本发明实施例所述的上底座侧板与下底座侧板爆炸示意图;
图8为本发明实施例所述的挡片示意图;
图9为本发明实施例凸条与插槽示意图;
图10为本发明实施例穿孔示意图。
附图标记说明:
1-流道,11-导水部,12-突出部,13-第一平面,14-弧形面,15-第二平面,16-出水口,2-挡水部,21-延伸部,22-挡边,3-蒸发器支板,4-下底座侧板, 41-顶边,42-插槽,421-穿孔,5-上底座侧板,51-底边,52-凸条,53-凸起部,6-导水槽,7-缝隙,8-蒸发器。
具体实施方式
需要说明的是,在不冲突的情况下,本发明中的实施例及实施例中的特征可以相互组合。
下面将参考附图并结合实施例来详细说明本公开。
在本公开的描述中,应当说明的是,各实施例中的术语名词例如“上”、“下”、“前”、“后”等指示方位的词语,只是为了简化描述基于说明书附图的位置关系,并不代表所指的元件和装置等必须按照说明书中特定的方位和限定的操作及方法、构造进行操作,该类方位名词不构成对本公开的限制。
另外,在本发明的实施例中所提到的术语“第一”、“第二”仅用于描述目的,并不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。
实施例一
本实施例提供了一种空调器导水结构,结合图1与图2所示,包括上底座侧板5与下底座侧板4,所述上底座侧板5与所述下底座侧板4装配时,所述上底座侧板5与所述下底座侧板4连接处有缝隙7,一般的,两个侧板是紧密贴合的,但是仍然存在缝隙,所述上底座侧板5的底边51位于所述下底座侧板4的顶边41靠近空调器内侧的一侧,所述底边51所处的水平高度不低于所述缝隙7所处的水平高度。
本实施例中,图1与图2所示的为两种实施方式,图1中的上底座侧板5与下底座侧板4交错设置,且上底座侧板5位于下底座侧板4靠近空调内侧的一方,使得空调内部溅落的冷凝水不会从缝隙7处渗漏到空调外侧,图2中的上底座侧板5下端弯折设置,也可以弯曲设置,弯折部分位于缝隙7靠近空调内侧一方,并且底边51所处的水平高度低于缝隙7所处的水平高度,由于缝隙7具有一定宽度,缝隙7的水平高度指的是缝隙7最下端的水平高度,确保上底座侧板5向内侧延伸出的部分能够阻挡空调器内部溅落的冷凝 水,防止冷凝水从缝隙7处渗漏到空调器外部。
本实施例仅以两种例子进行说明,能够防止冷凝水从缝隙7处渗漏到空调外侧的结构,均落入到本公开的保护范围内。
实施例二
本实施例在实施例一的基础上,提供一种具体的导水结构,结合图3与图4所示,包括流道1以及设置在所述流道1侧边上的导水部11,所述流道1设置在蒸发器支板3上;
所述导水结构还包括挡水部2,所述挡水部2设置在所述上底座侧板5上,所述挡水部2位于所述缝隙7靠近所述蒸发器的一侧,本实施例通过在流道1的侧边上添加导水部11,能够较好的将流道1内的水进行导向,防止流道1内的水溅落到上底座侧板5与下底座侧板4上,并在上底座侧板5与下底座侧板4的缝隙7处设置挡水部2,有效的阻挡溅落到缝隙7处的冷凝水,进一步防止冷凝水从上底座侧板5与下底座侧板4的缝隙7处漏出而导致空调器漏水。
挡水部2与上底座侧板5固定连接或一体成型。
挡水部2为长板形状,且挡水部2沿着缝隙7分布,使得挡水部2能够覆盖缝隙7的所有位置,较好地,且挡水部2倾斜设置,挡水部2沿着上底座侧板5朝向空调内侧的方向倾斜向下设置,使得滴落在挡水部2上的冷凝水能够滑落到下部的排水槽或排水口中。
实施例三
本实施例在上述实施例的基础上,提供了一种空调器导水结构的具体结构,结合图3-图7所示,包括流道1,以及设置在流道1侧边上的导水部11,流道1设置在蒸发器支板3上,流道1设置在蒸发器支板3靠近上底座侧板5与下底座侧板4一侧,较好的,流道1沿蒸发器支板3的底边延伸,流道1靠近下底座侧板4与上底座侧板5一侧,流道1的形状与蒸发器支板3底部的形状相匹配,流道1还包括第一平面13、弧形面14与第二平面15,弧形面14设置在第一平面13与第二平面15之间,弧形面14适于与空调的电机转轴相匹配,流道1的高度从远离导水槽6的一端至另一端逐渐变低,便于冷凝水自行向出水口16一侧流动,防止冷凝水在流道1内有留存而造成脏堵现象,本实施例中,导水部11为流道1靠近下底座侧板4一侧的挡边,挡边 为实体的类似于栏杆状设置在流道1的侧边上,挡边设置在弧形面14与第二平面15的连接处并向出水口16一端延伸,挡边靠近蒸发器的一侧为光滑面,防止有阻挡部位而留存冷凝水中的赃物,挡边的顶边高于流道1的底面,较好的,挡边的顶边与挡边上方的部件相抵接,使得流道1形成一槽型结构,便于对冷凝水进行导流;导水部11的形状与第一平面13左侧边沿的形状相同,本实施例中,导水部11为S型,流道1的前端设有出水口16,出水口16设置在导水槽6的上端,便于将流道1收集的冷凝水导流至导水槽6中,具体的,出水口16包括第一开口161和/或第二开口162,第一开口161朝向上底座侧板5设置,第二开口162朝向导水槽6设置,并且第一开口161与第二开口162均位于导水槽6的上方,便于流道1内的冷凝水导流至导水槽6中。
空调器导水结构还包括挡水部2,上底座侧板5与下底座侧板4在装配完成时存在有缝隙7,挡水部2设置在缝隙7上方,具体的,结合图6所示,挡水部2包括延伸部21,延伸部21为上底座侧板5向蒸发器支板3一侧延伸的一段,本实施例中,延伸部21为水平段,延伸部21与下底座侧板4相垂直,延伸部21向内突出并位于缝隙7的上方,能够有效的防止上底座侧板5向下流向的冷凝水进入到缝隙7中,冷凝水汇聚在上底座侧板时,会溅落下来,但是因为有挡水部2的存在,使得溅落的水不会落入上底座侧板5和下底座侧板4之间的缝隙7中,避免漏水;本实施例中,设置在缝隙7处的挡片均属于本公开保护的范围,挡水部2的形状有多种,较好的,挡水部2的形状与缝隙7的形状相匹配,本实施例为弧形,上底座侧板5与下底座侧板4之间设有圆形凹槽,适于卡接空调的风叶轴承座,为了达到结构上的整洁与牢固性,挡水部2设计成相匹配的弧形。
实施例四
本实施例在上述实施例的基础上,结合图5-图7所示,上底座侧板5的内侧面设有凸起部53,凸起部53由上底座侧板5朝向空调内侧的凸起形成,较好地,凸起部53为板状结构,上底座侧板5的内侧面为靠近蒸发器支板3一侧的侧面,凸起部53为从后至前逐渐向下倾斜的斜面,流道1靠近上底座侧板5的一侧设有突出部12,突出部12由所述流道1朝所述上底座侧板5一侧延伸形成,可选的,突出部12为倾斜的长条板,且突出部12沿这蒸发 器支板3朝向上底座侧板5的方向倾斜向上设置,使得突出部12上的冷凝水能够在重力作用下流入到流道1内,可选地,上底座侧板5与蒸发器支板3装配时,突出部12靠近上底座侧板5的一端与上底座侧板5抵接,增大突出部12接收冷凝水的范围,同样也起到支撑上底座侧板5的作用。
可选地,突出部12设置在所述凸起部53的上方,突出部12能够较好的接住上方滴落的冷凝水,并将滴落的冷凝水导流至流道1的内侧道,对冷凝水起到较好的隔绝作用,防止冷凝水直接滴落到下底座中;凸起部53也能较好的对冷凝水起导向作用,防止冷凝水沿上底座侧板5的侧面向下流动而经过缝隙7,防止冷凝水渗入到缝隙7中。
本实施例中,凸起部53为凸板,并且凸板沿上底座侧板5朝向蒸发器支板3的方向倾斜向下设置,或者凸起部53为凸块状,凸块的顶面沿上底座侧板5朝向蒸发器支板3的方向倾斜向下设置。
本实施例中,凸起部53与挡水部2连接为一体结构,简化制作工艺,提高上底座侧板5的强度,结构设计更加合理与美观。
实施例五
本实施例在上述实施例的基础上,结合图8所示,延伸部21还包括挡片22,挡片22为延伸部21继续向蒸发器支板3一侧延伸的一段,可选的,挡片22斜向下倾斜,挡片22可以为平板状,也可为向上方突起的弧形状,挡片22能够有效的覆盖缝隙7,对缝隙7的挡水效果更好,并使得滴落在挡水部2上的冷凝水能够更顺利的向下流动并流入导水槽6中,防止延伸部21上的冷凝水因表面张力的作用下逐渐渗入到缝隙7中。
实施例六
本实施例在上述实施例的基础上,结合图9所示,上底座侧板5上设有凸条52,下底座侧板4上设有插槽42,凸条52设置在上底座侧板5上与下底座侧板4匹配连接的位置处,凸条52沿上底座侧板5下部与下底座侧板4连接处延伸,插槽42设置在下底座侧板4上与上底座侧板5匹配连接的位置处,凸条52与插槽42相匹配,凸条52可插入到插槽42中,可选的,凸条52与上底座侧板5一体成型,凸条52的左右宽度略大于插槽42的左右宽度,凸条52插入到插槽42中能够紧密配合,凸条52与插槽42之间没有缝隙,可以进一步防止上底座侧板5内侧(图示中的右侧)的冷凝水流入到缝隙7 中而导致空调器漏水。
本实施例中,凸条52与插槽42的位置可互换,凸条52设置在下底座侧板4上,插槽42设置在上底座侧板5上。
凸条52的形状可以有多种形式,如其截面为四方形、梯形、半球型与三角形等,插槽42的形状与凸条52的形状相同,能够顺利的将凸条52插入到插槽42中,防止冷凝水透过上底座侧板5与下底座侧板4之间的缝隙。
本实施例还提供一种技术方案,结合图10所示,当凸条52设置在上底座侧板5上,插槽42设置在下底座侧板4上时,插槽42的底部朝向下底座侧板4的内侧设有穿孔421,穿孔421可以有多个,并设置在下底座侧板4靠近导水槽6的一段,可选的,插槽42从下底座侧板4的左侧至右侧逐渐向下倾斜,插槽42从下底座侧板4的后侧至前侧逐渐向下倾斜,使得进入到插槽42中的冷凝水也可再次通过穿孔421流出插槽42,进一步防止已经进入到插槽42内的冷凝水流出,杜绝上底座侧板5与下底座侧板4之间漏水。
实施例七
本实施例在上述实施例的基础上,提供一种空调器,所述空调器包括上述任一实施例所述的空调导水结构。
以上所述仅为本公开的可选实施例而已,并不用以限制本公开,凡在本公开的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本公开的保护范围之内。

Claims (20)

  1. 一种空调导水结构,其中,包括上底座侧板(5)与下底座侧板(4),所述上底座侧板(5)与所述下底座侧板(4)装配时,所述上底座侧板(5)与所述下底座侧板(4)连接处有缝隙(7),所述上底座侧板(5)的底边(51)位于所述下底座侧板(4)的顶边(41)靠近空调内侧的一侧,所述底边(51)所处的水平高度不低于所述缝隙(7)所处的水平高度。
  2. 根据权利要求1所述的空调导水结构,其中,所述导水结构包括挡水部(2),所述挡水部(2)设置在所述上底座侧板(5)上,所述挡水部(2)位于所述缝隙(7)靠近空调内侧的一侧。
  3. 根据权利要求2所述的空调导水结构,其中,所述挡水部(2)与所述上底座侧板(5)固定连接或一体成型。
  4. 根据权利要求3所述的空调导水结构,其中,所述挡水部(2)为长板型,所述挡水部(2)倾斜设置。
  5. 根据权利要求2所述的空调导水结构,其中,所述挡水部(2)沿着所述缝隙(7)分布。
  6. 根据权利要求2-5任一所述的空调导水结构,其中,所述导水结构还包括流道(1),所述流道(1)设置在蒸发器支板(3)上,所述流道(1)位于所述蒸发器支板(3)靠近所述上底座侧板(5)的一侧,所述流道(1)适于收集冷凝水并导流至导水槽(6)内。
  7. 根据权利要求6所述的空调导水结构,其中,所述流道(1)靠近所述导水槽(6)一端设有出水口(16),所述流道(1)内的水适于从所述出水口(16)流入所述导水槽(6)。
  8. 根据权利要求7所述的空调导水结构,其中,所述出水口(16)包括第一开口(161),所述第一开口(161)朝向所述上底座侧板(5);
    和/或,所述出水口(16)包括第二开口(162),所述第二开口(162)朝向所述导水槽(6)。
  9. 根据权利要求7所述的空调导水结构,其中,所述导水结构还包括设置在所述流道(1)上的导水部(11),所述导水部(11)适于将所述流道(1)内的冷凝水导向至所述出水口(16)处。
  10. 根据权利要求7所述的空调导水结构,其中,所述流道(1)还包括突出部(12),所述突出部(12)由所述流道(1)朝所述上底座侧板(5)一侧延伸形成。
  11. 根据权利要求10所述的空调导水结构,其中,所述突出部(12)沿所述流道(1)朝向所述上底座侧板(5)的方向倾斜向上设置。
  12. 根据权利要求11所述的空调导水结构,其中,所述上底座侧板(5)与所述蒸发器支板(3)装配时,所述突出部(12)适于与所述上底座侧板(5)抵接。
  13. 根据权利要求10-12任一所述的空调导水结构,其中,所述上底座侧板(5)设有凸起部(53),所述凸起部(53)由所述上底座侧板(5)朝向空调内侧的凸起形成。
  14. 根据权利要求13所述的空调导水结构,其中,所述蒸发器支板(3)与所述上底座侧板(5)装配时,所述突出部(12)位于所述凸起部(53)的上方。
  15. 根据权利要求13所述的空调导水结构,其中,所述凸起部(53)为凸块,所述凸块的顶面沿所述上底座侧板(5)朝向所述蒸发器支板(3)的方向倾斜向下设置;
    或,所述凸起部(53)为凸板,所述凸板沿所述上底座侧板(5)朝向所述蒸发器支板(3)的方向倾斜向下设置。
  16. 根据权利要求13所述的空调导水结构,其中,所述凸起部(53)与所述挡水部(2)连接为一体结构。
  17. 根据权利要求1所述的空调导水结构,其中,所述上底座侧板(5)上设有插条(52),所述下底座侧板(4)上设有插槽(42),所述上底座侧板(5)与所述下底座侧板(4)装配时,所述插条(52)插入到所述插槽(42)内。
  18. 根据权利要求17所述的空调导水结构,其中,所述插槽(42)的底部与所述下底座侧板(4)外侧面和/或内侧面之间设有穿孔(421)。
  19. 根据权利要求6所述的空调导水结构,其中,所述流道(1)包括弧形面与平面,所述流道(1)的高度从靠近所述导水槽(6)的一端至远离所述导水槽(6)的另一端逐渐升高。
  20. 一种空调器,其中,包括上述权利要求1-19任一所述的空调导水结构。
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