WO2022121391A1 - 水洗空气装置及空调柜机 - Google Patents

水洗空气装置及空调柜机 Download PDF

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Publication number
WO2022121391A1
WO2022121391A1 PCT/CN2021/116324 CN2021116324W WO2022121391A1 WO 2022121391 A1 WO2022121391 A1 WO 2022121391A1 CN 2021116324 W CN2021116324 W CN 2021116324W WO 2022121391 A1 WO2022121391 A1 WO 2022121391A1
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WO
WIPO (PCT)
Prior art keywords
water
valve
cavity
water tank
floating ball
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Application number
PCT/CN2021/116324
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English (en)
French (fr)
Inventor
袁小辉
汪鹏飞
石衡
矫立涛
郝本华
张德明
Original Assignee
青岛海尔空调器有限总公司
青岛海尔空调电子有限公司
海尔智家股份有限公司
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Application filed by 青岛海尔空调器有限总公司, 青岛海尔空调电子有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2022121391A1 publication Critical patent/WO2022121391A1/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
    • 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
    • F24F1/0043Indoor units, e.g. fan coil units characterised by mounting arrangements
    • F24F1/005Indoor units, e.g. fan coil units characterised by mounting arrangements mounted on the floor; standing on the floor
    • 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
    • F24F1/0071Indoor units, e.g. fan coil units with means for purifying supplied air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

Definitions

  • the present application relates to the technical field of household appliances, in particular to a water washing air device and an air conditioner cabinet.
  • the air is generally treated by a water-washing air device to improve air quality;
  • the water-washing air device includes a casing, a water tank, a fan and a water curtain forming device.
  • the air inlet, the top of the water tank is provided with an air outlet, the fan is connected with the water tank to drive the air into the water tank from the air inlet, and the air in the water tank flows out from the air outlet, the water curtain forming device is arranged in the water tank, and the water curtain forming device can The water in the water tank is absorbed, and the water curtain is released into the water tank to form a water curtain in the water tank.
  • the air enters from the air inlet and flows out from the air outlet. When the air flows in the water tank, it will pass through the water curtain formed by the water curtain forming device, thereby realizing the cleaning of the air and improving the air quality.
  • the water in the water tank will be taken away by the air and gradually decrease, so that the user needs to remove the water tank frequently and manually add water, which affects the user's experience.
  • the present application provides a water-washing air device and an air-conditioning cabinet.
  • the water-washing air device can automatically replenish water into a water tank, so that the user does not need to remove the water tank and manually add water, thereby helping to improve the user experience.
  • the present application provides a water washing air device, which includes a fan casing, a water tank, a floating ball valve and a water supply pipe.
  • the fan casing has a accommodating cavity, the water tank can be taken and placed in the accommodating cavity, and the floating ball valve is arranged in the In the water tank;
  • the floating ball valve includes a valve sleeve, a valve core and a floating ball assembly.
  • the valve sleeve has a valve cavity and a liquid inlet and a liquid outlet communicated with the valve cavity.
  • the valve core is located in the valve cavity, the floating ball assembly is connected with the valve core, and the floating ball assembly can move with the water level in the water tank and drive the valve core to move to make the valve cavity communicate or close.
  • the water washing air device includes a fan casing, a water tank, a floating ball valve and a water supply pipeline.
  • the fan casing has an accommodating cavity, and the water tank can be taken and placed in the accommodating cavity, so as to facilitate disassembly and cleaning of the water tank.
  • the floating ball valve is set in the water tank. By setting the floating ball valve, it includes a valve sleeve, a valve core and a floating ball assembly.
  • the valve sleeve has a valve cavity and a liquid inlet and a liquid outlet that communicate with the valve cavity.
  • the liquid inlet is communicated with the water supply pipeline, and the outlet The liquid port is communicated with the inner cavity of the water tank, so that the water in the water supply pipeline can enter the valve cavity through the liquid inlet port, so as to enter into the inner cavity of the water tank through the liquid outlet port later.
  • the floating ball assembly is connected with the valve core, and the floating ball assembly can move with the water level in the water tank, and drive the valve core to move to connect or close the valve cavity, so that the floating ball valve can be adjusted according to the water tank.
  • the internal water level controls the on-off of the valve cavity, so as to realize the function of automatically replenishing or stopping the replenishment of water in the water tank. That is, when the water level in the water tank drops, the floating ball assembly will move with the water level in the water tank and drive the valve core to move to connect the valve cavity, so that the water entering the valve cavity can enter the water tank through the liquid outlet.
  • the float assembly When the water level in the water tank rises to a preset height, the float assembly will move with the water level in the water tank and drive the valve core to move to seal the valve cavity, thereby preventing water supply
  • the water in the pipe enters into the inner cavity of the water tank through the valve cavity to stop the water supply to the water tank; thus, the user does not need to disassemble the water tank to manually add water, which is conducive to improving the user's experience.
  • the present application provides an air conditioner cabinet, comprising a cabinet and the water-washing air device according to any one of the above, wherein the water-washing air device is arranged on the top, bottom or inside of the cabinet.
  • the present application provides an air conditioner cabinet including a cabinet and a water washing air device, and the water washing air device is arranged on the top, bottom or inside of the cabinet.
  • the water washing air device includes a fan casing, a water tank, a floating ball valve and a water supply pipeline.
  • the fan casing has an accommodating cavity, and the water tank can be taken and placed in the accommodating cavity, so as to facilitate disassembly and cleaning of the water tank.
  • the floating ball valve is set in the water tank. By setting the floating ball valve, it includes a valve sleeve, a valve core and a floating ball assembly.
  • the valve sleeve has a valve cavity and a liquid inlet and a liquid outlet that communicate with the valve cavity.
  • the liquid inlet is communicated with the water supply pipeline, and the outlet
  • the liquid port is communicated with the inner cavity of the water tank, so that the water in the water supply pipeline can enter the valve cavity through the liquid inlet port, so as to enter into the inner cavity of the water tank through the liquid outlet port later.
  • the floating ball assembly is connected with the valve core, and the floating ball assembly can move with the water level in the water tank, and drive the valve core to move to connect or close the valve cavity, so that the floating ball valve can be adjusted according to the water tank.
  • the internal water level controls the on-off of the valve cavity, so as to realize the function of automatically replenishing or stopping the replenishment of water in the water tank. That is, when the water level in the water tank drops, the floating ball assembly will move with the water level in the water tank and drive the valve core to move to connect the valve cavity, so that the water entering the valve cavity can enter the water tank through the liquid outlet.
  • the float assembly When the water level in the water tank rises to a preset height, the float assembly will move with the water level in the water tank and drive the valve core to move to seal the valve cavity, thereby preventing water supply
  • the water in the pipe enters into the inner cavity of the water tank through the valve cavity to stop the water supply to the water tank; thus, the user does not need to disassemble the water tank to manually add water, which is conducive to improving the user's experience.
  • Fig. 1 is the structural representation of the water washing air device of the present application
  • Fig. 2 is the structural representation of the water tank of the water washing air device of the present application
  • Fig. 3 is the position schematic diagram of the water tank in the water washing air device of the present application.
  • Fig. 4 is the partial enlarged schematic diagram of A place in Fig. 3;
  • FIG. 5 is a schematic structural diagram of the water tank inner cavity of the water washing air device of the present application when water replenishment is stopped;
  • FIG. 6 is a schematic structural diagram of the water tank inner cavity of the water washing air device of the present application when water is replenished;
  • FIG. 7 is a schematic structural diagram of the communication between the valve chambers of the floating ball valve of the water washing air device of the present application.
  • FIG. 8 is a schematic structural diagram of the closed valve cavity of the float valve of the water washing air device of the present application.
  • valvesleeve 31: valve sleeve; 310: valve cavity; 3101: first cavity; 3102: second cavity; 311: liquid inlet; 312: liquid outlet; 313: partition plate; 3131: communication port ;3132: annular flange; 314: avoidance opening; 315: connecting lug; 32: valve core; 321: seal; 322: receiving groove; 33: float assembly; 331: float; : the first connecting segment; 3322: the second connecting segment; 3323: the hinge point;
  • Fig. 1 is the structural representation of the water-washing air device of the present application
  • Fig. 2 is the structural representation of the water tank of the water-washing air device of the present application
  • Fig. 3 is the positional schematic diagram of the water tank in the water-washing air device of the present application
  • Fig. 4 is A in Fig. 3
  • Figure 5 is a schematic diagram of the structure when the water tank cavity of the water-washing air device of the present application stops replenishing water
  • Figure 8 is a schematic structural diagram of the closed valve cavity of the float valve of the water washing air device of the present application.
  • the present embodiment provides a water washing air device 100
  • the water washing air device 100 includes a fan casing 10, a water tank 20, a float valve 30 and a water supply pipe
  • the fan casing 10 has a accommodating cavity
  • the water tank 20 is releasably accommodated in the accommodating cavity.
  • the fan casing 10 may include an upper casing 11 and a lower casing 12, an accommodating cavity is formed on the upper part of the lower casing 12, the water tank 20 is detachably installed in the accommodating cavity, and the upper casing 11 is covered with Above the accommodating cavity of the lower casing 12 .
  • the bottom of the lower casing 12 is provided with an air inlet, and the inner side of the air inlet is provided with a fan, and the fan is used to drive the outside air into the lower casing 12 through the air inlet.
  • the water tank 20 has an air inlet window 21 and an air outlet window 22.
  • the air entering the lower case 12 through the air inlet of the lower casing 12 can enter the water tank 20 through the air inlet window 21 of the water tank 20; the water tank 20 can be provided with The water slinger can make the water in the water tank 20 form a cleaning water curtain; the air entering the water tank 20 passes through the cleaning water curtain in the water tank 20 and is discharged from the air outlet 22 of the water tank 20 and enters the upper casing 11 Inside, the upper casing 11 can distribute and guide the cleaned air, so that the cleaned air can be discharged from different outlets of the upper casing 11 to enter into different modules, or directly discharged into the environment from different directions , in order to realize the function of washing the air by the water washing air device.
  • the float valve 30 is arranged in the water tank 20 .
  • the float valve 30 includes a valve sleeve 31 , a valve core 32 and a float ball assembly 33 .
  • the valve sleeve 31 has a valve cavity 310 and a liquid inlet 311 and a liquid outlet communicating with the valve cavity 310 .
  • Port 312 the liquid inlet 311 is communicated with the water supply pipeline, and the liquid outlet 312 is communicated with the inner cavity of the water tank 20 .
  • the valve core 32 is located in the valve cavity 310, the floating ball assembly 33 is connected with the valve core 32, and the floating ball assembly 33 can move with the water level in the water tank 20, and drives the valve core 32 to move to make the valve cavity 310 communicate or close.
  • the fan rotates so that the outside air enters the lower casing 12 through the air inlet, and the air entering the lower casing 12 can enter through the air inlet window 21 of the water tank 20 to the lower casing 12 .
  • the inside of the water tank 20 is cleaned by the cleaning water curtain in the water tank 20.
  • the cleaned air is discharged through the air outlet window 22 of the water tank 20 and enters the upper casing 11, and is discharged after being diverted and distributed by the upper casing 11, so as to realize
  • the water washing air device has the function of purifying and humidifying the air.
  • the float assembly When the water in the water tank 20 is taken away by the air and the water level a in the water tank 20 drops, the float assembly will move with the water level a in the water tank 20 and drive the valve core to move to connect the valve cavity, so that the water in the water supply pipeline is connected. Water can flow into the inner cavity of the water tank 20 through the valve cavity to replenish the water tank 20; when the water level a in the water tank 20 gradually rises to the preset water level, the floating ball assembly 33 will move with the water level in the water tank 20 and drive the The movement of the valve core 32 closes the valve cavity 310 to stop supplying water to the water tank 20 .
  • the water washing air device includes a fan casing 10 , a water tank 20 , a floating ball valve 30 and a water supply pipeline.
  • the fan casing 10 has an accommodating cavity, and the water tank 20 can be received and placed in the accommodating cavity, so as to facilitate the disassembly and cleaning of the water tank 20 .
  • the float valve 30 is arranged in the water tank 20. By setting the float valve 30, it specifically includes a valve sleeve 31, a valve core 32 and a float assembly 33.
  • the valve sleeve 31 has a valve cavity 310 and a liquid inlet 311 and The liquid outlet 312 and the liquid inlet 311 are communicated with the water supply pipe, and the liquid outlet 312 is communicated with the inner cavity of the water tank 20, so that the water in the water supply pipe can enter the valve cavity 310 through the liquid inlet 311, so as to facilitate subsequent passage through the outlet port 310.
  • the liquid port 312 enters into the inner cavity of the water tank 20 .
  • the floating ball assembly 33 By setting the valve core 31 in the valve cavity 310, the floating ball assembly 33 is connected with the valve core 32, and the floating ball assembly 33 can move with the water level in the water tank 20 and drive the valve core 32 to move so that the valve cavity 310 is connected or closed , so that the floating ball valve 30 can control the on-off of the valve cavity 310 according to the water level in the water tank 20 , so as to realize the function of automatically replenishing water into the water tank 20 or stopping the replenishment. That is, when the water level a in the water tank 20 drops, the floating ball assembly 33 will move along with the water level a in the water tank 20 and drive the valve core 32 to move to make the valve cavity 310 communicate, so that the water entering the valve cavity 310 can be connected.
  • the float assembly 33 Enter into the inner cavity of the water tank 20 through the liquid outlet 312 to automatically replenish water into the inner cavity of the water tank 20; when the water level a in the water tank 20 rises to a preset height, the float assembly 33 The water level a moves and drives the valve core 32 to move to close the valve cavity 310, thereby preventing the water in the water supply pipeline from entering the inner cavity of the water tank 20 through the valve cavity 310, so as to stop the water supply to the water tank 20; thus, there is no need for the user to remove the water tank 20. Remove it and add water manually, which is beneficial to improve the user experience.
  • the valve cavity 310 is provided with a partition 313, and the partition 313 divides the valve cavity 310 into a first cavity 3101 and a second cavity 3102.
  • the liquid inlet 311 is connected to the The first cavity 3101 is in communication, and the liquid outlet 312 is in communication with the second cavity 3102;
  • the baffle 313 is provided with a communication port 3131 which communicates the first cavity 3101 and the second cavity 3102, and the valve core 32 is in the second cavity 3102 to open or close the communication port 3131.
  • the circumferential edge of the communication port 3131 is provided with an annular flange 3132 protruding toward the valve core 32, and the valve core 32 can abut or disengage from the annular flange 3132.
  • a sealing member 321 is provided at one end of the valve core 32 facing the communication port 3131 .
  • the floating ball assembly 33 includes a floating ball 331 and a connecting rod 332 , the middle part of the connecting rod 332 is hinged with the valve sleeve 31 , and the first end of the connecting rod 332 is fixed with the floating ball 331 connected, the second end of the connecting rod 332 is in contact with the valve core 32 ; the floating ball 331 can float up and down in the water tank 20 and drive the valve core 32 to move through the connecting rod 332 .
  • the connecting rod 332 includes a first connecting section 3321 and a second connecting section 3322, and the first connecting section 3321 and the second connecting section 3322 are respectively located on both sides of the hinge point 3323; One end of the first connecting segment 3321 away from the hinge point 3323 is fixedly connected to the floating ball 331 , one end of the second connecting segment 3322 away from the hinge point 3323 is in contact with the valve core 32 , and the first connecting segment 3321 and the second connecting segment 3322 There is an angle between them.
  • the valve sleeve 31 has an escape opening 314
  • the valve core 32 is provided with a receiving groove 322 at a position corresponding to the escape opening 314
  • the second connecting section 3322 penetrates through the escape opening 314 and extends into into the accommodating groove 322 so as to abut with the groove bottom of the accommodating groove 322 .
  • the end of the second connecting section 3322 abutting with the groove bottom of the accommodating groove 322 is a spherical surface, and the groove bottom of the accommodating groove 322 matches the spherical surface.
  • a connecting lug 315 is provided on the outer side of the avoidance opening 314 , and the connecting rod 332 is hinged with the connecting lug 315 .
  • the liquid inlet 311 is arranged opposite to the communication port 3131, and the liquid outlet 312 is located on the side of the communication port 3131.
  • the water tank 20 is provided with a water level sensor 40, and the water level sensor 40 issues an alarm when it detects that the water level in the water tank 20 is lower than the preset water level, as shown in FIG. 3 and FIG. 4 shown.
  • This embodiment provides an air conditioner cabinet, including a casing and a water-washing air device, and the water-washing air device can be arranged on the top, bottom or inside of the casing.
  • the air-conditioning cabinet includes a casing and a water-washing air device, and the water-washing air device is disposed on the top, bottom or inside of the casing.
  • the water washing air device includes a fan casing 10, a water tank 20, a floating ball valve 30 and a water supply pipeline.
  • the fan casing 10 has an accommodating cavity, and the water tank 20 can be received and placed in the accommodating cavity, so as to facilitate the disassembly and cleaning of the water tank 20 .
  • the float valve 30 is arranged in the water tank 20 , and the float valve 30 includes a valve sleeve 31 , a valve core 32 and a float assembly 33 .
  • the valve sleeve 31 has a valve cavity 310 and a liquid inlet 311 and a liquid outlet that communicate with the valve cavity 31 312, the liquid inlet 311 is communicated with the water supply pipe, and the liquid outlet 312 is communicated with the inner cavity of the water tank 20, so that the water in the water supply pipe can enter the valve cavity 310 through the liquid inlet 311, so as to facilitate subsequent passage through the liquid outlet 312 into the inner cavity of the water tank 20 .
  • the floating ball assembly By arranging that the valve core 32 is located in the valve cavity 310, the floating ball assembly is connected to the valve core 32, and the floating ball assembly can move with the water level in the water tank 20 and drive the valve core 32 to move to make the valve cavity 310 communicate or close, thereby
  • the floating ball valve 30 can control the opening and closing of the valve cavity 310 according to the water level in the water tank 20, so as to realize the function of automatically replenishing water into the water tank 20 or stopping the replenishment of water. That is, when the water level in the water tank 20 drops, the floating ball assembly 33 will move with the water level in the water tank 20 and drive the valve core 32 to move so as to connect the valve cavity 310, so that the water entering the valve cavity 310 can pass through the outlet.
  • the liquid port 312 enters into the inner cavity of the water tank 20 to automatically replenish water into the inner cavity of the water tank 20; when the water level in the water tank 20 rises to a preset height, the float assembly 33 will move with the water level in the water tank 20 and drive the valve The core 32 moves to close the valve cavity 310, thereby preventing the water in the water supply pipeline from entering the inner cavity of the water tank 20 through the valve cavity 310, so as to stop the water supply to the water tank 20; and there is no need for the user to disassemble the water tank 20 to manually add water. Conducive to improve the user experience.
  • the air-conditioning cabinet provided in this embodiment can use the water-washing air device to clean the indoor air, so that not only the dust, fluff and microorganisms entrained in the air can be removed to purify the air; and It can increase the humidity of the air to solve the problem of indoor air drying, thereby effectively improving the quality of the indoor air and improving the user experience.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Humidification (AREA)
  • Float Valves (AREA)

Abstract

一种水洗空气装置及空调柜机,水洗空气装置包括风机壳(10)、水箱(20)、浮球阀(30)和供水管道,风机壳(10)具有容置腔,水箱(20)可取放的容置于容置腔内,浮球阀(30)设置在水箱(20)内;浮球阀(30)包括阀套(31)、阀芯(32)和浮球组件(33),阀套(31)具有阀腔(310)以及与阀腔(310)连通的进液口(311)和出液口(312),进液口(311)与供水管道连通,出液口(312)与水箱(20)内腔连通;阀芯(32)位于阀腔(310)内,浮球组件(33)与阀芯(32)连接,且浮球组件(33)可随着水箱(20)内的水位移动,并带动阀芯(32)移动以使阀腔(310)连通或者封闭,从而自动向水箱(20)内补水,提升用户的使用体验。

Description

水洗空气装置及空调柜机
本申请要求于2020年12月09日提交中国专利局、申请号为202011433246.X、申请名称为“水洗空气装置及空调柜机”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及家用电器技术领域,具体涉及一种水洗空气装置及空调柜机。
背景技术
随着空气处理设备技术的逐渐发展,对空气进行净化、加湿等处理的设备逐渐应用在空调或者新风机上,以提高用户体验。
相关技术中,一般通过水洗空气装置来对空气进行处理,以提高空气质量;水洗空气装置包括壳体、水箱、风机以及水幕形成装置,水箱设置在壳体上,水箱的侧壁上设置有进风口,水箱的顶端设置有出风口,风机与水箱连接以驱动空气由进风口进入到水箱内,并且水箱内的空气由出风口流出,水幕形成装置设置在水箱内,水幕形成装置可以吸取水箱内的水,并将水幕化后释放在水箱内,以在水箱内形成水幕。在使用的过程中,空气由进风口进入并由出风口流出,空气在水箱内流动的过程中会穿过水幕形成装置形成的水幕,进而实现对空气的清洗,提高空气质量。
上述水洗空气装置在使用的过程中,水箱内的水会被空气带走而逐渐减少,从而导致用户需要经常将水箱拆卸下来手动加水,影响用户的使用体验。
发明内容
本申请提供一种水洗空气装置及空调柜机,该水洗空气装置能够自动向水箱内补水,从而无需用户将水箱拆卸下来手动加水,进而有利于提升用户的使用体验。
第一方面,本申请提供一种水洗空气装置,包括风机壳、水箱、浮球阀和供水管道,风机壳具有容置腔,水箱可取放的容置于容置腔内,浮球阀设 置在水箱内;浮球阀包括阀套、阀芯和浮球组件,阀套具有阀腔以及与阀腔连通的进液口和出液口,进液口与供水管道连通,出液口与水箱内腔连通;阀芯位于阀腔内,浮球组件与阀芯连接,且浮球组件可随着水箱内的水位移动,并带动阀芯移动以使阀腔连通或者封闭。
本领域技术人员能够理解的是,本申请提供的水洗空气装置包括风机壳、水箱、浮球阀和供水管道。风机壳具有容置腔,水箱可取放的容置于容置腔内,以便于对水箱进行拆卸清洗。浮球阀设置在水箱内,通过设置浮球阀包括阀套、阀芯和浮球组件,阀套具有阀腔以及与阀腔连通的进液口和出液口,进液口与供水管道连通,出液口与水箱内腔连通,从而使供水管道内的水能够经由进液口进入至阀腔内,以便于后续经由出液口进入至水箱内腔。
通过设置阀芯位于阀腔内,浮球组件与阀芯连接,且浮球组件可随着水箱内的水位移动,并带动阀芯移动以使阀腔连通或者封闭,从而使浮球阀能够根据水箱内的水位控制阀腔的通断,以实现自动向水箱内补水或者停止补水的功能。即,当水箱内的水位下降时,浮球组件会随着水箱内的水位移动并带动阀芯移动以使阀腔连通,从而能够使进入至阀腔内的水经由出液口进入至水箱内腔中,以向水箱内腔中自动补水;当水箱内的水位上升至预设高度时,浮球组件会随着水箱内的水位移动并带动阀芯移动以使阀腔封闭,从而能够阻止供水管道内的水经由阀腔进入至水箱内腔中,以停止向水箱内供水;进而无需用户将水箱拆卸下来手动加水,有利于提升用户的使用体验。
第二方面,本申请提供一种空调柜机,包括机壳和如上任一项的水洗空气装置,水洗空气装置设置在机壳的顶部、底部或内部。
本领域技术人员能够理解的是,本申请提供空调柜机包括机壳和水洗空气装置,水洗空气装置设置在机壳的顶部、底部或内部。其中,水洗空气装置包括风机壳、水箱、浮球阀和供水管道。风机壳具有容置腔,水箱可取放的容置于容置腔内,以便于对水箱进行拆卸清洗。浮球阀设置在水箱内,通过设置浮球阀包括阀套、阀芯和浮球组件,阀套具有阀腔以及与阀腔连通的进液口和出液口,进液口与供水管道连通,出液口与水箱内腔连通,从而使供水管道内的水能够经由进液口进入至阀腔内,以便于后续经由出液口进入至水箱内腔。
通过设置阀芯位于阀腔内,浮球组件与阀芯连接,且浮球组件可随着水 箱内的水位移动,并带动阀芯移动以使阀腔连通或者封闭,从而使浮球阀能够根据水箱内的水位控制阀腔的通断,以实现自动向水箱内补水或者停止补水的功能。即,当水箱内的水位下降时,浮球组件会随着水箱内的水位移动并带动阀芯移动以使阀腔连通,从而能够使进入至阀腔内的水经由出液口进入至水箱内腔中,以向水箱内腔中自动补水;当水箱内的水位上升至预设高度时,浮球组件会随着水箱内的水位移动并带动阀芯移动以使阀腔封闭,从而能够阻止供水管道内的水经由阀腔进入至水箱内腔中,以停止向水箱内供水;进而无需用户将水箱拆卸下来手动加水,有利于提升用户的使用体验。
附图说明
图1是本申请的水洗空气装置的结构示意图;
图2是本申请的水洗空气装置的水箱的结构示意图;
图3是本申请的水洗空气装置中水箱的位置示意图;
图4是图3中A处的局部放大示意图;
图5是本申请的水洗空气装置的水箱内腔停止补水时的结构示意图;
图6是本申请的水洗空气装置的水箱内腔开始补水时的结构示意图;
图7是本申请的水洗空气装置的浮球阀阀腔连通的结构示意图;
图8是本申请的水洗空气装置的浮球阀阀腔封闭的结构示意图。
附图中:
10:风机壳;11:上壳体;12:下壳体;
20:水箱;21:进风窗;22:出风窗;
30:浮球阀;31:阀套;310:阀腔;3101:第一腔体;3102:第二腔体;311:进液口;312:出液口;313:隔板;3131:连通口;3132:环形凸缘;314:避让开口;315:连接耳片;32:阀芯;321:密封件;322:容纳槽;33:浮球组件;331:浮球;332:连杆;3321:第一连接段;3322:第二连接段;3323:铰接点;
40:水位传感器;
100:水洗空气装置;
a:水位。
具体实施方式
以下结合附图对本申请的具体实施方式进行详细说明,应当理解的是,此处所描述的具体实施方式仅用于说明和解释本申请,本申请不局限于下述的具体实施方式。
实施例一
图1是本申请的水洗空气装置的结构示意图;图2是本申请的水洗空气装置的水箱的结构示意图;图3是本申请的水洗空气装置中水箱的位置示意图;图4是图3中A处的局部放大示意图;图5是本申请的水洗空气装置的水箱内腔停止补水时的结构示意图;图6是本申请的水洗空气装置的水箱内腔开始补水时的结构示意图;图7是本申请的水洗空气装置的浮球阀阀腔连通的结构示意图;图8是本申请的水洗空气装置的浮球阀阀腔封闭的结构示意图。
参照图1至图8所示,本实施例提供一种水洗空气装置100,该水洗空气装置100包括风机壳10、水箱20、浮球阀30和供水管道,风机壳10具有容置腔,水箱20可取放的容置于容置腔内。示例性的,风机壳10可以包括上壳体11和下壳体12,下壳体12的上部形成有容置腔,水箱20可拆卸的安装在容置腔内,上壳体11盖设在下壳体12的容置腔上方。
通常情况下,下壳体12的底部设置有进风口,进风口内侧设置有风机,风机用于驱动外界的空气经由进风口进入至下壳体12内。水箱20具有进风窗21和出风窗22,经由下壳体12的进风口进入至下壳体12内的空气能够通过水箱20的进风窗21进入至水箱20内部;水箱20内部可以设置甩水件,甩水件能够使水箱20内的水形成清洗水幕;进入至水箱20内的空气穿过水箱20内的清洗水幕从水箱20的出风窗22排出并进入至上壳体11内,上壳体11能够对清洗后的空气进行分配导流,使清洗后的空气能够从上壳体11的不同出口排出以便进入至不同的模块中,或者直接从不同的方向排出至环境中,以实现水洗空气装置清洗空气的功能。
浮球阀30设置在水箱20内,具体的,浮球阀30包括阀套31、阀芯32和浮球组件33,阀套31具有阀腔310以及与阀腔310连通的进液口311和出液口312,进液口311与供水管道连通,出液口312与水箱20内腔连通。阀芯32位于阀腔310内,浮球组件33与阀芯32连接,且浮球组件 33可随着水箱20内的水位移动,并带动阀芯32移动以使阀腔310连通或者封闭。
具体实现时,水洗空气装置在工作的过程中,风机转动使外界的空气穿过进风口进入至下壳体12内,进入下壳体12内的空气能够经由水箱20的进风窗21进入至水箱20内并被水箱20内的清洗水幕清洗,清洗后的空气经由水箱20的出风窗22排出并进入至上壳体11内,并被上壳体11导流分配后排出,从而能够实现水洗空气装置净化、加湿空气的功能。当水箱20内的水被空气带走导致水箱20内的水位a下降时,浮球组件会随着水箱20内的水位a移动,并带动阀芯移动使阀腔连通,从而使供水管道内的水能够经由阀腔流入水箱20内腔中,以对水箱20进行补水;当水箱20内的水位a逐渐上升至预设水位时,浮球组件33会随着水箱20内的水位移动,并带动阀芯32移动使阀腔310封闭,以停止向水箱20内补水。
本领域技术人员能够理解的是,本实施例提供的水洗空气装置包括风机壳10、水箱20、浮球阀30和供水管道。风机壳10具有容置腔,水箱20可取放的容置于容置腔内,以便于对水箱20进行拆卸清洗。浮球阀30设置在水箱20内,通过设置浮球阀30,其具体包括阀套31、阀芯32和浮球组件33,阀套31具有阀腔310以及与阀腔310连通的进液口311和出液口312,进液口311与供水管道连通,出液口312与水箱20内腔连通,从而使供水管道内的水能够经由进液口311进入至阀腔310内,以便于后续经由出液口312进入至水箱20的内腔。
通过设置阀芯31位于阀腔310内,浮球组件33与阀芯32连接,且浮球组件33可随着水箱20内的水位移动,并带动阀芯32移动以使阀腔310连通或者封闭,从而使浮球阀30能够根据水箱20内的水位控制阀腔310的通断,以实现自动向水箱20内补水或者停止补水的功能。即,当水箱20内的水位a下降时,浮球组件33会随着水箱20内的水位a移动并带动阀芯32移动以使阀腔310连通,从而能够使进入至阀腔310内的水经由出液口312进入至水箱20的内腔中,以向水箱20的内腔中自动补水;当水箱20内的水位a上升至预设高度时,浮球组件33会随着水箱20内的水位a移动并带动阀芯32移动以使阀腔310封闭,从而能够阻止供水 管道内的水经由阀腔310进入至水箱20内腔中,以停止向水箱20内供水;进而无需用户将水箱20拆卸下来手动加水,有利于提升用户的使用体验。
在上述水洗空气装置的一种可选技术方案中,阀腔310内设置有隔板313,隔板313将阀腔310分隔为第一腔体3101和第二腔体3102,进液口311与第一腔体3101连通,出液口312与第二腔体3102连通;隔板313上设置有连通第一腔体3101和第二腔体3102的连通口3131,阀芯32在第二腔体3102内移动以打开或者封闭连通口3131。
在上述水洗空气装置的一种可选技术方案中,连通口3131的周向边缘设置有凸向阀芯32的环形凸缘3132,阀芯32可与环形凸缘3132抵接或者脱离抵接。
在上述水洗空气装置的一种可选技术方案中,阀芯32朝向连通口3131的一端设置有密封件321。
在上述水洗空气装置的一种可选技术方案中,浮球组件33包括浮球331和连杆332,连杆332的中部与阀套31铰接,连杆332的第一端与浮球331固定连接,连杆332的第二端与阀芯32抵接;浮球331可在水箱20内上下浮动并通过连杆332带动阀芯32移动。
在上述水洗空气装置的一种可选技术方案中,连杆332包括第一连接段3321和第二连接段3322,第一连接段3321和第二连接段3322分别位于铰接点3323的两侧;第一连接段3321的远离铰接点3323的一端与浮球331固定连接,第二连接段3322的远离铰接点3323的一端与阀芯32抵接,且第一连接段3321和第二连接段3322之间具有夹角。
在上述水洗空气装置的一种可选技术方案中,阀套31具有避让开口314,阀芯32对应于避让开口314的位置设置有容纳槽322,第二连接段3322贯穿避让开口314并伸入容纳槽322内,从而与容纳槽322的槽底抵接。
在上述水洗空气装置的一种可选技术方案中,第二连接段3322与容纳槽322的槽底抵接的一端为球面,容纳槽322的槽底与球面匹配。
在上述水洗空气装置的一种可选技术方案中,避让开口314的外侧设置有连接耳片315,连杆332与连接耳片315铰接。
在上述水洗空气装置的一种可选技术方案中,进液口311与连通口 3131相对设置,出液口312位于连通口3131的侧面。
在上述水洗空气装置的一种可选技术方案中,水箱20上设置有水位传感器40,水位传感器40在检测到水箱20内的水位低于预设水位时,发出警报,具体如图3和图4所示。
实施例二
本实施例提供一种空调柜机,包括机壳和水洗空气装置,水洗空气装置可以设置在机壳的顶部、底部或内部。
本领域技术人员能够理解的是,本实施例提供的空调柜机包括机壳和水洗空气装置,水洗空气装置设置在机壳的顶部、底部或内部。其中,水洗空气装置包括风机壳10、水箱20、浮球阀30和供水管道。风机壳10具有容置腔,水箱20可取放的容置于容置腔内,以便于对水箱20进行拆卸清洗。浮球阀30设置在水箱20内,通过设置浮球阀30包括阀套31、阀芯32和浮球组件33,阀套31具有阀腔310以及与阀腔31连通的进液口311和出液口312,进液口311与供水管道连通,出液口312与水箱20内腔连通,从而使供水管道内的水能够经由进液口311进入至阀腔310内,以便于后续经由出液口312进入至水箱20内腔。
通过设置阀芯32位于阀腔310内,浮球组件与阀芯32连接,且浮球组件可随着水箱20内的水位移动,并带动阀芯32移动以使阀腔310连通或者封闭,从而使浮球阀30能够根据水箱20内的水位控制阀腔310的通断,以实现自动向水箱20内补水或者停止补水的功能。即,当水箱20内的水位下降时,浮球组件33会随着水箱20内的水位移动并带动阀芯32移动以使阀腔310连通,从而能够使进入至阀腔310内的水经由出液口312进入至水箱20内腔中,以向水箱20内腔中自动补水;当水箱20内的水位上升至预设高度时,浮球组件33会随着水箱20内的水位移动并带动阀芯32移动以使阀腔310封闭,从而能够阻止供水管道内的水经由阀腔310进入至水箱20内腔中,以停止向水箱20内供水;进而无需用户将水箱20拆卸下来手动加水,有利于提升用户的使用体验。
通过上述描述可知,本实施例提供的空调柜机可以利用水洗空气装置内对室内的空气进行清洗,从而不仅能够将空气中夹带的粉尘、毛絮和微生物等清除,以使空气得到净化;而且能够增加空气的湿度,以解决室内 空气干燥的问题,进而有效的改善了室内空气的质量,提高了用户的使用体验。
至此,已经结合附图所示的优选实施方式描述了本申请的技术方案,但是,本领域技术人员容易理解的是,本申请的保护范围显然不局限于这些具体实施方式。在不偏离本申请的原理的前提下,本领域技术人员可以对相关技术特征作出等同的更改或替换,这些更改或替换之后的技术方案都将落入本申请的保护范围之内。

Claims (10)

  1. 一种水洗空气装置,其特征在于,包括风机壳、水箱、浮球阀和供水管道,所述风机壳具有容置腔,所述水箱可取放的容置于所述容置腔内,所述浮球阀设置在所述水箱内;
    所述浮球阀包括阀套、阀芯和浮球组件,所述阀套具有阀腔以及与所述阀腔连通的进液口和出液口,所述进液口与所述供水管道连通,所述出液口与所述水箱内腔连通;所述阀芯位于所述阀腔内,所述浮球组件与所述阀芯连接,且所述浮球组件可随着所述水箱内的水位移动,并带动所述阀芯移动以使所述阀腔连通或者封闭。
  2. 根据权利要求1所述的水洗空气装置,其特征在于,所述阀腔内设置有隔板,所述隔板将所述阀腔分隔为第一腔体和第二腔体,所述进液口与所述第一腔体连通,所述出液口与所述第二腔体连通;
    所述隔板上设置有连通所述第一腔体和所述第二腔体的连通口,所述阀芯在所述第二腔体内移动以打开或者封闭所述连通口。
  3. 根据权利要求2所述的水洗空气装置,其特征在于,所述连通口的周向边缘设置有凸向所述阀芯的环形凸缘,所述阀芯可与所述环形凸缘抵接或者脱离抵接。
  4. 根据权利要求2所述的水洗空气装置,其特征在于,所述阀芯朝向所述连通口的一端设置有密封件。
  5. 根据权利要求2所述的水洗空气装置,其特征在于,所述浮球组件包括浮球和连杆,所述连杆的中部与所述阀套铰接,所述连杆的第一端与所述浮球固定连接,所述连杆的第二端与所述阀芯抵接;所述浮球可在所述水箱内上下浮动并通过所述连杆带动所述阀芯移动。
  6. 根据权利要求5所述的水洗空气装置,其特征在于,所述连杆包括第一连接段和第二连接段,所述第一连接段和第二连接段分别位于铰接点的两侧;所述第一连接段的远离所述铰接点的一端与所述浮球固定连接,所述第二连接段的远离所述铰接点的一端与所述阀芯抵接,且所述第一连接段和所述第二连接段之间具有夹角。
  7. 根据权利要求6所述的水洗空气装置,其特征在于,所述阀套具有避让开口,所述阀芯对应于所述避让开口的位置设置有容纳槽,所述第二连接段贯穿所述避让开口并伸入所述容纳槽内与所述容纳槽的槽底抵接。
  8. 根据权利要求7所述的水洗空气装置,其特征在于,所述第二连接段与所述容纳槽的槽底抵接的一端为球面,所述容纳槽的槽底与所述球面匹配;和/或,
    所述避让开口的外侧设置有连接耳片,所述连杆与所述连接耳片铰接。
  9. 根据权利要求2-8任一项所述的水洗空气装置,其特征在于,所述进液口与所述连通口相对设置,所述出液口位于所述连通口的侧面;和/或,
    所述水箱上设置有水位传感器,所述水位传感器在检测到所述水箱内的水位低于预设水位时,发出警报。
  10. 一种空调柜机,其特征在于,包括机壳和权利要求1-9任一项所述的水洗空气装置,所述水洗空气装置设置在所述机壳的顶部、底部或内部。
PCT/CN2021/116324 2020-12-09 2021-09-02 水洗空气装置及空调柜机 WO2022121391A1 (zh)

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