WO2022033605A1 - 采用水对空气进行处理的装置及空调内机 - Google Patents

采用水对空气进行处理的装置及空调内机 Download PDF

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Publication number
WO2022033605A1
WO2022033605A1 PCT/CN2021/121459 CN2021121459W WO2022033605A1 WO 2022033605 A1 WO2022033605 A1 WO 2022033605A1 CN 2021121459 W CN2021121459 W CN 2021121459W WO 2022033605 A1 WO2022033605 A1 WO 2022033605A1
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WIPO (PCT)
Prior art keywords
water
air
container
tank
filling
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PCT/CN2021/121459
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English (en)
French (fr)
Inventor
刘祥宇
国德防
吴洪金
王宁
矫立涛
张展
袁小辉
石衡
Original Assignee
青岛海尔空调器有限总公司
海尔智家股份有限公司
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Publication of WO2022033605A1 publication Critical patent/WO2022033605A1/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
    • F24F1/0071Indoor 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
    • 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
    • F24F1/0087Indoor units, e.g. fan coil units with humidification means

Definitions

  • the embodiments of the present application relate to the technical field of air conditioners, and in particular, to a device for treating air by using water and an air conditioner internal unit.
  • the existing device for treating air by water mainly consists of a water container containing water, a water treatment member arranged in the water container to lift or atomize the water, an air duct housing communicating with the water container, and It consists of a fan that draws air into the air duct housing.
  • the air is sent into the water container, and then the water after being lifted by the water treatment member or atomized is humidified, purified and/or cooled, and finally blown out from the air outlet of the air duct housing through the downstream section of the air duct housing, thereby Ensure that the indoor air reaches the desired humidity and temperature.
  • the embodiments of the present application provide a device for treating air by using water and an air conditioner internal unit, which solve the problems in the prior art that the water container is disassembled to add water, the disassembly process is cumbersome, and the water adding operation is inconvenient.
  • a first aspect of the embodiments of the present application provides a device for treating air by using water, including a water container, a water treatment part and a water adding device, the water container is used to hold water, and the water treatment part is rotatably arranged on the water container inside the water container, which is used to suck the water in the water container into the water treatment member and generate a water curtain inclined to the axis of the water container;
  • the water filling device includes a water filling groove and a water guiding groove, and the water filling groove is used to inject water into the water container. , one end of the water guiding groove is communicated with the water outlet of the water adding groove, and the other end of the water guiding groove extends into the water container.
  • the device for treating air with water has a water container and a water adding device
  • the water adding device includes a water adding tank and a water guiding tank
  • the water adding tank can It is used to inject water into the water container.
  • One end of the water guide groove is connected to the water outlet of the water filling groove, and the other end of the water guide groove extends into the water container.
  • the staff directly opens the water filling tank to add water to the water filling tank, and the water flows into the water container along the water filling tank and the water guide groove in turn, so as to realize the addition of water. Therefore, there is no need to disassemble the water container to add water, the process of disassembling the water container is omitted, and the operation of adding water is convenient.
  • it also includes a water tank base, the water tank base is used to carry the water container, and an air inlet air duct is formed in the water tank base; The installation port of the water guide groove is inserted into the water container through the installation port.
  • the water tank base includes an outer casing and an inner casing, the outer casing and the inner casing enclose the air inlet duct, and a side wall of the outer casing is provided with the The installation port of the water guide groove; the side wall of the water container is provided with an air inlet corresponding to the installation port, and the water guide groove extends through the installation port of the water guide groove and the air inlet of the water container in sequence. into the water container.
  • the length of the water guide groove extending into the water container is not greater than 4 mm.
  • the water guide trough includes a front water baffle, a water guide bottom plate, and two water guide side plates connected to the water guide bottom plate and arranged opposite to each other.
  • the water board and the two water guide side boards form the water guide groove with a water outlet at the rear end.
  • the water guiding bottom plate of the water guiding tank is provided with a downwardly extending installation portion, and the installation portion is screwed or fixed with the side wall of the water tank base.
  • a second aspect of the embodiments of the present application provides an indoor unit of an air conditioner, comprising: a casing and the device for treating air by using water as described in any of the above embodiments; the device is arranged in a cavity of the casing, so The casing is provided with a water filling port, and the water filling groove of the device is installed at the water filling port and is rotatably connected with the casing; the water filling groove can be rotated relative to the casing to a first position to open the water filling port ; The water filling tank can also be rotated relative to the housing to a second position to close the water filling port.
  • the technical effect of the air conditioner indoor unit provided by the second aspect of the embodiment of the present application is that it is not necessary to disassemble the water container of the device that uses water to treat air from the air conditioner, and the water filling port can be opened to add water to the water filling tank, and then realize the The water container is filled with water, and the operation of adding water is convenient.
  • the water adding tank includes a front panel, two water adding side plates connected to the front panel and arranged opposite to each other, and a water adding bottom plate inclined upward, the front panel, the water adding bottom plate and the two water adding
  • the side plate surrounds a water filling groove for water filling, and the water filling bottom plate is provided with a circular nozzle that can be inserted into the water guiding groove.
  • the water adding bottom plate of the water adding tank is rotatably connected to the housing through a pin shaft.
  • a limit block is provided on the water adding tank, a limit matching portion is provided on the casing, and the limit block cooperates with the limit matching portion to limit the water adding tank The angle of rotation relative to the housing.
  • FIG. 1 is a schematic structural diagram of a device for treating air with water according to an embodiment of the present application
  • FIG. 2 is a device for treating air with water according to an embodiment of the present application
  • FIG. 3 is a schematic structural diagram of a device for treating air using water according to an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of a water adding device in a device for treating air with water according to an embodiment of the present application
  • FIG. 5 is a schematic diagram of the connection between a water tank base and a fan casing in a process of using water to treat air according to an embodiment of the present application;
  • FIG. 6 is a schematic structural diagram of another apparatus for treating air with water according to an embodiment of the present application.
  • 9 water adding device; 91: water adding tank; 911: circular nozzle; 912: limit block; 913: front panel; 914: water adding side plate; 915: water adding bottom plate; 92: water guiding groove; 921: water guiding plate; 922: front water baffle; 923: water guide bottom plate; 924: water guide side plate; 925: installation part.
  • connection and “connected” should be understood in a broad sense, for example, it may be a fixed connection or a detachable connection , or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal connection of two components.
  • connection should be understood in a broad sense, for example, it may be a fixed connection or a detachable connection , or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal connection of two components.
  • the specific meanings of the above terms in this application can be understood according to specific situations.
  • the existing device for treating air by water mainly consists of a water container containing water, a water treatment member arranged in the water container to lift or atomize the water, an air duct housing communicating with the water container, and It consists of a fan that draws air into the air duct housing.
  • the air is sent into the water container, and then the water after being lifted by the water treatment member or atomized is humidified, purified and/or cooled, and finally blown out from the air outlet of the air duct housing through the downstream section of the air duct housing, thereby Improves indoor air quality.
  • the water in the water container will gradually decrease after a period of operation of this device for treating air with water, and water supply is required.
  • water supply There are generally two ways of water supply.
  • the present application is equipped with a separate water adding device, which can replenish water for the water container without disassembling the water container.
  • the water adding device includes a water guide groove with one end extending into the water container, and a water adding groove for providing water for the water guide groove.
  • the water adding groove can fill water from the outside of the air handling device, and then pass the water guiding function of the water guide groove. The water is introduced into the water container to achieve the purpose of filling the water container with water.
  • FIG. 1 is a schematic structural diagram of a device for treating air using water according to an embodiment of the present application
  • FIG. 2 is a decomposition of a device for treating air using water according to an embodiment of the present application. Schematic.
  • the present embodiment provides a device 100 for treating air with water, including a water container 1, a water treatment member 6 rotatably disposed in the water container 1 to form a water curtain, and A water filling device 9 for filling the water container 1 with water.
  • the water container 1 has a substantially hexahedral structure, and its cross section is substantially rectangular. Of course, in other examples, its cross section can also be circular, elliptical or other suitable shapes.
  • the water container 1 can be made of plastic through an injection molding process, or can also be made of metal through a casting process. In order to observe the height of the water in the water container 1 or to observe the formation of the water curtain, the water container 1 can be made of transparent plastic, and the water container 1 is optionally provided with a scale line for marking the water level.
  • the side wall of the water container 1 is provided with an air inlet 11 for the air to be cleaned to enter the water container 1, and the top of the water container 1 or the side wall near the top is provided with an air outlet, so that the air inlet 11 and the outlet of the water container 1 are provided with an air outlet 11.
  • An air purification air duct is formed between the tuyere.
  • the water curtain formed by the water treatment member 6 is inclined to the central axis of the water container 1 and is located in the air purification air duct, that is, the air flowing from the air inlet 11 of the water container 1 to the air outlet thereof will pass through the water treatment member 6
  • the formed water curtain, dust, bacteria and other pollutants in the air will be intercepted by the water mist in the water curtain, so as to realize the purification of the air.
  • the sponge net 7 is installed in the air outlet of the water container 1 so as to separate the water molecules carried in the purified air and avoid the excessive humidity of the purified air discharged from the device 100 .
  • the sponge net 7 can be, for example, a metal mesh structure, and the edge of the sponge net 7 can be covered with a frame to facilitate its installation at the air outlet of the water container 1 .
  • the water treatment member 6 may be a centrifugal water throwing member, the top of the centrifugal water throwing member is provided with a water spray hole, and the bottom end of the centrifugal water throwing member is connected to the water container 1 There is a gap at the bottom of the centrifugal water throwing member; the centrifugal water throwing member can be rotated to lift the water in the water container 1 from the above-mentioned gap, and sprayed from the water spray hole at the top of the centrifugal water throwing member to form a form for purifying the air entering the water container 1 water curtain.
  • the centrifugal water throwing member rotates 360 degrees in the water container 1, so that the water in the water container 1 is separated from the bottom end of the centrifugal water throwing member and the bottom of the water container 1.
  • the gap between them is sucked into the centrifugal water throwing member, and sprayed from the water spray hole at the top of the centrifugal water throwing member, and the sprayed water forms a flat water curtain in the water container 1 .
  • the air passes through the water curtain, it fuses with the water molecules in the water curtain, so that the humidity of the air increases and the temperature decreases.
  • the centrifugal water throwing element can form a plane water curtain in the water container 1, the air entering into the water container 1 from the air inlet 11 on the side wall of the water container 1 must pass through the water curtain to flow into the air outlet duct 31, which increases the difference between the water container 1 and the air outlet.
  • the amount of air in which water molecules are dissolved improves the humidification, purification and cooling effects.
  • the device 100 for treating air with water further includes a water adding device 9
  • the water adding device 9 includes a water adding tank 91 and a water guiding tank 92 .
  • FIG. 2 shows that the right end of the water guiding groove 92 communicates with the bottom end of the water filling groove 91, and the left end of the water guiding groove 92 extends into the water container 1 for adding water to the water container 1; the water feeding groove 91 is used for guiding The water tank 92 is filled with water.
  • the water supply tank 91 , the water guide tank 92 , and the inner space of the water container 1 constitute a water flow path for adding water into the water container 1 .
  • the staff can directly open the water filling tank 91, and fill the water filling tank 91 with water, and the water flows from the water filling tank 91 into the water guiding tank 92. , and then flows to the water container 1 through the water guiding groove 92 and falls into the interior of the water container 1 , thereby realizing water addition. Therefore, there is no need to disassemble the water container 1 from the device 100 to add water, and the process of disassembling the water container 1 is omitted, and the water adding operation is convenient and simple, especially when the device 100 is used as a large-scale air treatment equipment (such as an air conditioner or a fresh air treatment system). When one module is used, a lot of disassembly work is saved, the water adding operation is convenient, and the water adding efficiency is high.
  • a large-scale air treatment equipment such as an air conditioner or a fresh air treatment system
  • the device 100 in this embodiment can add water to the water container 1 without removing the water container 1 from the device 100 by providing the water container 1 , the water treatment member 6 and the water adding device 9 .
  • the process of disassembling the water container 1 is eliminated, and the operation of adding water is convenient.
  • FIG. 3 is a schematic view of the structure of FIG. 1 after removing the air outlet casing 3 (which will be described in detail below).
  • the water adding tank 91 is inserted into the water guiding tank 92 through the circular nozzle 911 , and the injected water is introduced into the water guiding tank 92 .
  • the device 100 further includes a water tank base 2 , which is used to carry the water container 1 , an air inlet duct is formed in the water tank base 2 , and a side wall of the water tank base 2 is provided with a mounting for installing the water guide 92 port 211, the water guide groove 92 extends into the water container 1 through the installation port 211.
  • the water tank base 2 includes an outer casing 21 and an inner casing 22, and the outer casing 21 and the inner casing 22 enclose an air intake duct.
  • the wall is provided with an air inlet 11 corresponding to the installation opening 211 of the water guide groove 92 .
  • the water guiding groove 92 protrudes into the water container 1, and its inner end (ie, the end close to the central axis of the water container 1) exceeds the edge of the water container 1 by a distance of no more than 4 mm. In this way, it can not only ensure that the water is completely added into the water container 1, and avoid the water flowing into the water tank base 2, resulting in waste of adding water, but also will not affect the timely flow of the air treated by the water curtain to the air outlet of the water container 1, and at the same time, it is also beneficial to Extraction, maintenance and replacement of water container 1.
  • FIG. 4 is a schematic structural diagram of a water adding device.
  • the water guiding trough 92 includes a front water blocking plate 922 , a water guiding bottom plate 923 , and two water guiding side plates 924 connected to the water guiding bottom plate 923 and arranged opposite to each other.
  • the plate 924 and the front water blocking plate 922 are enclosed to form a water guiding groove 92 with a water outlet at the rear end, and the front water blocking plate 922 connected to the water filling groove 91 is inclined and arranged to facilitate water guiding and drainage.
  • the top edge of the water guide side plate 924 can be a straight line or a folded line.
  • the top edge of the water guide side plate 924 can be designed in the form of low front and middle height; Alternatively, it may be disposed obliquely to the water guiding bottom plate 923, for example, the front water blocking plate 922 is designed to be inclined from the bottom and the rear to the front and the top.
  • the water guiding bottom plate 923 of the water guiding groove 92 is provided with a downwardly extending mounting portion 925 , and the mounting portion 925 is screwed or fixed with the side wall of the water tank base 2 .
  • the specific structures of the screw connection and the snap connection may adopt the structure forms commonly used by those skilled in the art, which will not be described in detail here.
  • the water adding tank 91 includes a front panel 913, two water adding side plates 914 connected to the front panel 913 and arranged opposite to each other, and a water adding bottom plate 915 inclined upward, the front panel 913, the water adding side plates 914 and the watering floor 915 define a watering slot for watering.
  • the water adding bottom plate 915 is provided with a circular nozzle 911 which can be inserted into the water guiding groove 92 .
  • the water-filling tank 91 is approximately in the shape of a funnel, which can accommodate a certain amount of water, so that the water-filling tank 91 can play a buffering role when adding water, and the water-filling bottom plate 915 is inclined upward to facilitate the introduction of the water in the water-filling tank 91 into the circular nozzle 911, and since the circular nozzle 911 is inserted into the water guide groove 92, it can further ensure that the water discharged from the water filling groove 91 can be discharged into the water guide groove 92, so as to avoid adding water to the water groove. 91 is lost in the process of flowing to the guide trough 92.
  • the water adding tank 91 can be integrally formed by casting or injection molding, which is convenient for processing.
  • water can be injected into the water guiding tank 92 through the water filling tank 91 .
  • the water filling port of the water tank 91 extends downward obliquely to the water outlet of the water guiding tank 92, and the water is easily introduced into the water guiding tank 92 from the water filling tank 91 under the action of gravity. overflow phenomenon.
  • the water guiding groove 92 can be arranged in a horizontal direction, that is, the water guiding groove 2 is placed perpendicular to the side wall of the water tank base 2 , of course, in some other examples, the water guiding groove 2 can also be inclined to the side wall of the water tank base 2 .
  • the side walls are placed so as to facilitate the inflow of water from the inclined gutter 92 into the interior of the water container 1 .
  • the two water adding side plates 914 of the water adding tank 91 are respectively provided with limit blocks 912 at positions close to the top, and the two limit blocks 912 can be cast or injection molded with the water adding tank 91 .
  • the two limit blocks 912 can be cast or injection molded with the water adding tank 91 .
  • the water filling tank 91 is in a closed state to prevent impurities in the environment from entering the water container 1 through the water filling port of the water filling tank 91, causing the water in the water container 1 to become dirty. Affects the effect of air cleaning.
  • the water adding tank 91 is pulled open by hand, and the water adding tank 91 is limited to the open position by the limit block 912 on the upper part of the water adding side plate 914, and no manual operation is required to limit the water adding tank 91 to its open position, which is convenient Do watering.
  • a water guide plate 921 is provided in the water guide groove 92 , for example, the water guide plate 921 is disposed at the position of the installation port 911 for installing the water guide groove 92 on the water tank base 2 .
  • the water guide plate 921 and the two water guide side plates 924 are hinged together by pins.
  • the water guide plate 921 passes through the water guide plate 921. It can play the role of drainage, so that the water flows into the water container 1 smoothly.
  • the air outlet housing 3 covers the air outlet of the water container 1 and communicates with the air outlet of the water container 1.
  • the air outlet housing 3 may be formed with a plurality of air outlet air ducts 31.
  • the air outlet air ducts 31 can be evenly distributed in different directions, thus, the air outlet volume of the treated air of the device 100 can be increased, thereby improving the efficiency of improving the air quality, and the treated air can be discharged from various directions. Blow into the environment in an upward direction, avoiding that only local air in the environment is improved.
  • a fan 5 may be built in the air outlet housing 3 , and the fan 5 is used to send the air in the environment into the water container 1 for treatment, and send the water treated air out of the air outlet duct 31 .
  • the water tank base 2 and the fan casing 4 are disposed at the lower end of the water container 1 , and the fan casing 4 and the water tank base 2 are generally stacked together in the direction from bottom to top.
  • FIG. 5 is a schematic diagram of the connection between the water tank base 2 and the fan housing 4 in a device 100 for treating air with water according to an embodiment of the present application.
  • the water tank base 2 may include an outer casing 21 and an inner casing 22 , the interior of the outer casing 21 is hollow, the inner casing 22 is arranged inside the outer casing 21 , and the inner casing 22 is One end is connected to the side wall of the outer casing 21 , and the side wall of the outer casing 21 is provided with an installation opening 211 , so that the water container 1 is installed on the outer casing 21 through the installation opening 211 .
  • the side wall of the water container 1 is installed to the outer casing through the installation opening 211 21 , referring to FIG. 1 , the side wall of the water container 1 is provided with an air inlet 11 corresponding to the installation opening 211 .
  • the fan 5 drives the air in the external environment to be drawn into the fan casing 4 , then enters the gap between the inner casing 22 and the outer casing 21 , and then enters the water through the air inlet 11 of the water container 1 . in container 1.
  • the side wall of the outer casing 21 , the inner casing 22 and the outer wall of the water container 1 together form an air intake duct.
  • the side wall of the outer casing 21 is provided with an installation port 211 of the water guide groove 92 , and the water guide groove 92 extends into the water container 1 through the installation port 211 of the outer casing 2 and the air inlet 11 of the water container 1 in sequence.
  • the water tank base 2 may have a regular shape such as a box body or a cylinder body, and its cross section is roughly rectangular. Of course, in other examples, its cross section may also be a circle, an ellipse, or other suitable shapes.
  • the water tank base 2 can be made of plastic through an injection molding process, or can also be made of metal through a casting process.
  • a plurality of support frames 23 are spaced in the gap between the side wall of the inner casing 22 and the side wall of the outer casing 21 , and the support frames 23 support the inner casing 22 to avoid deformation of the water tank base 2 . , and can also enable the inner shell 22 to stably carry the weight of the water container 1 .
  • the fan housing 4 can be a box structure or a cylindrical structure.
  • the bottom and the top of the fan housing 4 are provided with openings, and the interior of the fan housing 4 has a cavity for accommodating the fan 5 .
  • the opening at the bottom of the fan housing 4, the cavity and the opening at the top are connected to form a flow channel for supplying air to the water tank base 2, and the flow channel is communicated with the external environment or the air channel in the large air treatment equipment, so that the fan 5 When starting, the air in the external environment or the air in the air duct in the large air treatment equipment is sent into the air inlet air duct of the water tank base 2 .
  • the air duct connected to the fan housing 4 on the air conditioner is isolated from the heat exchange air duct on the air conditioner to prevent the air treated by the heat exchange air duct from flowing into the air duct. shell, resulting in cooling by water treatment.
  • the fan casing 4 and the water tank base 2 can be connected by welding, screw connection, or integrally formed by casting, whereby the fan casing 4 and the water tank base 2 are integrated.
  • the stability of the device 100 is improved, and the process of assembling the fan casing 4 and the water tank base 2 is omitted.
  • the fan 5 includes a motor 51 and a fan blade 52.
  • the motor shaft of the motor 51 is drivingly connected to the fan blade 52, and the motor shaft drives the fan blade 52 to rotate so that the air in the environment flows from the opening at the bottom of the fan casing 4 to the fan casing 4. internal flow.
  • the motor 51 can be connected to the side wall of the fan housing 4, or a mesh support frame is provided inside the fan housing 4, the mesh support frame is formed with mesh holes, and the motor 51 is installed on the mesh support frame , the motor shaft of the motor 51 protrudes from the mesh hole of the mesh support frame and is connected to the fan blade 52 for transmission.
  • the motor 51 is selected as a biaxial motor, the first motor shaft of the biaxial motor is connected to the fan blade 52 in a driving manner, and the second motor shaft of the biaxial motor penetrates into the water container 1 .
  • the bottom is connected with the centrifugal water throwing piece for transmission. Therefore, the motor 51 can drive the fan blade 52 and the centrifugal water throwing member to rotate at the same time, which has a simple structure and saves electric energy compared with two single-axis motors to be driven separately.
  • the side wall of the fan housing 4 is also provided with an insertion port.
  • the device 100 further includes a fan grille 41 .
  • the fan grille 41 is movably inserted into the insertion port. Therefore, the fan grille 41 plays a protective role for the fan 5, and prevents the fan 5 from malfunctioning due to misoperation of the fan 5 by other structures. At the same time, when taking the device, the fan grille 41 can prevent the staff from being scratched by the fan blades 52 of the fan 5 due to direct contact with their hands.
  • the embodiment of the present application also provides an air conditioner, especially a cabinet-type air conditioner, which includes a casing and a device 100 for processing air by using water, and a heat exchange device isolated from the device 100 is further arranged in the casing. air duct.
  • the heat exchange air channel is independent of the flow channel on the device 100 for purifying, humidifying or cooling the air, which can avoid affecting the heat exchange function of the air conditioner.
  • FIG. 6 is a schematic diagram of a partial structure of an air conditioner internal unit.
  • the housing may include a bracket 8, and the bracket 8 may be provided with a water injection port 81 and an air supply port 82, and the outlet of the air outlet duct 31 of the device 100 may be connected with the air supply port of the housing.
  • the tuyere 82 is connected, and the water adding tank 91 is rotatably installed in the water filling port 81 of the housing.
  • the user can directly add water to the water filling tank 91 through the water filling port 81 on the bracket 8, and the water flows directly into the water container through the water filling tank 91 and the water guide groove 92 in turn. 1 inside, thus realizing adding water. Therefore, not only does it not need to disassemble the water container 1, but also the device 100 does not need to be disassembled from the air conditioner, the water can be added to the water container 1, and the process of disassembling the water container 1 and the device 100 is omitted. high.
  • the water adding tank 91 may be disposed on the bracket 8 , and the water adding tank 91 is rotatably connected to the bracket 8 .
  • the water container 1 When the water container 1 needs to be filled with water, open and turn the water filling tank 91 to the first position, for example, turn the front panel 913 of the water filling tank 91 to a position that forms an angle of 45 degrees with the bracket 8; then, pour water into the water filling tank 91, Complete the water addition process.
  • the water adding tank 91 When the water adding tank 91 is in operation or does not need to add water to the device 100, rotate the water adding tank 91 to the second position, for example, turn the water adding tank 91 to the front panel 913 to a position coplanar with the bracket 8, at this time, the front panel 913 is clamped with the bracket 8 or connected together by other structures, and the water filling port of the water filling tank 91 is closed.
  • the water filling port 81 on the bracket 8 is smaller than the front panel 913 of the water filling tank 91 so as to limit the water filling tank 91 to the second position, thereby closing the water filling tank 91 .
  • the water filling tank 91 can be flexibly opened and closed through the rotating operation, so that the water filling port 81 on the bracket 8 can be opened conveniently when adding water, and the water filling port 81 can be closed after the water filling is completed.
  • a notch is provided on the bracket 8 at the position corresponding to the water filling port 81, and the user can insert his finger into the notch and exert a force on the front panel 913 of the water filling tank 91, so that the water filling groove 91 is rotated and the water filling port 81 is opened, It is convenient for the user to open the water adding tank 91 .
  • the inner wall of the bracket 8 is provided with two connecting plates, the water adding groove 91 is located between the two connecting plates, and the two connecting plates extend downward to form cantilevers, each cantilever passes through a nearby water adding side plate 914
  • the pin shaft is hinged, so that the water adding tank 91 rotates around the pin shaft.
  • the rotation range of the water filling tank 91 is between the first position and the second position, and the rotation direction is shown by the arrow in FIG.
  • the water adding tank 91 are integrally formed by casting or injection molding, which is convenient for processing.
  • the limit block 912 of the water adding tank 91 cooperates with the limit matching part of the bracket 8 to limit the water adding tank 91 to the first position, and there is no need to manually interfere with the position of the water adding tank 91. Easy to add water.
  • the water filling tank 91 is rotated to the second position, the water filling port 81 is closed.
  • the water adding process of the device 100 for air treatment using water is as follows: when adding water, open the front panel 913 of the water adding tank 91, the top of the front panel 913 on the water adding tank 91 is separated from the bracket 8, and the front panel 913 is pulled to carry out Rotate so that the water filling tank 91 is turned outward to the first position, and the open position of the water filling tank 91 is limited by the limit block 912, and then water is poured into the water filling tank 91, and the water is injected into the water guide tank through the circular nozzle 911 of the water filling tank 91. 92 , the water guide 92 directly injects water into the water container 1 . After adding water, close the water adding tank 91 and rotate the front panel 913 to the second position.
  • the embodiments of the present application provide a device 100 for treating air by using water and an air conditioner having the same.
  • the device 100 for treating air by using water includes a water container 1 , a water treatment member 6 and a water adding device 100 .
  • the above-mentioned water container 1 is used to hold water;
  • the above-mentioned water treatment member 6 is rotatably arranged in the water container 1, and is used to suck the water in the above-mentioned water container 1 into the water treatment member 6 and generate water inclined to the axis of the water container 1.
  • the above-mentioned water adding device 9 includes a water adding groove 91 and a water guiding groove 92, and the water adding groove 91 is used to inject water into the water container 1, one end of the water guiding groove 92 is communicated with the water outlet of the water adding groove 91, and one end extends into the above-mentioned water container 1, It is used to introduce the water in the water adding tank 91 into the water container 1 .
  • the above-mentioned device 100 for treating air with water may further include a fan casing 4, a water tank base 2, and an air outlet casing 3. The fan casing 4 is communicated with the water tank base 2, and a fan 5 is installed in the fan casing 4.
  • the water tank base 2 is used to carry the water container 1, and an air inlet air duct is formed in the water tank base 2, and the air inlet air duct is communicated with the water container 1, and the above-mentioned fan 5 is used to send the air in the environment into the water through the air inlet air duct Treatment is carried out in the container 1 , and the air after water treatment is sent out from the air outlet casing 3 .
  • the staff directly opens the water filling tank 91 to add water to the water filling tank 91 , and the water flows into the water guiding tank 92 through the water filling tank 91 .

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Abstract

一种采用水对空气进行处理的装置及空调内机,属于空调技术领域,包括水容器(1)、水处理件(6)、加水装置(9),其中,水容器(1)用于盛装水,水处理件(6)用于对水容器(1)内的空气进行处理,加水装置(9)包括加水槽(91)和导水槽(92),加水槽(91)用于向水容器中注水,导水槽(92)的一端与加水槽(91)的出水口连通,导水槽(92)的另一端伸入到水容器(1)内,将水导入水容器(1)中。通过上述设置,当装置已工作一段时间,需要为水容器(1)补水时,直接打开加水槽(91)向加水槽(91)内加水,水依次沿加水槽(91)、导水槽(92)流入到水容器(1)内,无需拆卸水容器(1),省去了拆卸工序,加水操作方便。

Description

采用水对空气进行处理的装置及空调内机
本申请要求于2020年08月11日提交中国专利局、申请号为202021655278.X、申请名称为“采用水对空气进行处理的装置及空调内机”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
本申请实施例涉及空调技术领域,具体涉及一种采用水对空气进行处理的装置及空调内机。
背景技术
随着经济和科技的发展,消费者对空气环境质量的要求变得越来越高,空气加湿装置、空气净化装置、空气制冷和/或制热装置等空气处理装置的使用也变得越来越广泛。
相关技术中,经常会采用水对空气进行处理,以便调整空气的湿度、净化度以及温度等。现有的通过水对空气进行处理的装置主要由盛有水的水容器,设置在水容器内以将水扬起或者雾化的水处理件,与水容器连通的风道壳体,以及将空气抽入风道壳体内的风机组成。该空气处理装置在工作时,先往水容器内加入水,然后启动风机和水处理件,风机将室内空气从风道壳体的进风口吸入风道壳体内,然后经过风道壳体的上游段送入水容器内,接着被水处理件扬起或者雾化后的水加湿、净化和/或降温后,最后经过风道壳体的下游段从该风道壳体的出风口吹出,从而保证室内空气达到所需的湿度和温度。
然而,这种采用水对空气进行处理的装置在工作一段时间后,水容器内的水会逐渐减少,需要进行供水。供水方式一般有两种,一种采用外接水源,加水方便,但需改造水路,施工复杂且成本较高;一种是水容器储水,结构简单且方便维护,但拆卸水容器进行加水的操作比较繁琐,尤其是将这种装置作为大型空气处理设备(例如空调或者新风处理系统)的一个模块时,其加水操作会更加的不方便。
发明内容
本申请实施例提供一种采用水对空气进行处理的装置及空调内机,解决了现有技术中将水容器拆卸下来加水,拆卸过程繁琐,加水操作不方便的问题。
本申请实施例的第一方面提供一种采用水对空气进行处理的装置,包括水容器、水处理件和加水装置,水容器用于盛装水,水处理件可转动地设置在所述水容器内,用于将所述水容器内的水吸入所述水处理件内并产生倾斜于所述水容器轴线的水幕;加水装置包括加水槽和导水槽,加水槽用于向水容器中注水,导水槽的一端与加水槽的出水口连通,所述导水槽的另一端伸入所述水容器内。
本申请实施例的第一方面提供的采用水对空气进行处理的装置的技术效果在于:采用水对空气进行处理的装置具有水容器和加水装置,加水装置包括加水槽和导水槽,加水槽能够用于向水容器中注水,导水槽的一端与加水槽的出水口连通,导水槽的另 一端伸入到水容器内,当采用水对空气进行处理的装置在工作一段时间,需要为水容器补水时,工作人员直接打开加水槽向加水槽加水,水依次沿加水槽、导水槽流入到水容器内,从而实现加水。因此,无需将水容器拆卸下来进行加水,省去了拆卸水容器的工序,加水操作方便。
在一种可能的实现方式中,还包括水箱底座,所述水箱底座用于承载所述水容器,所述水箱底座内形成有进风风道;所述水箱底座的侧壁设有用于安装所述导水槽的安装口,所述导水槽穿过所述安装口伸入到所述水容器内。
在一种可能的实现方式中,所述水箱底座包括外壳体和内壳体,所述外壳体和内壳体围成所述进风风道,所述外壳体的侧壁设置有安装所述导水槽的安装口;所述水容器的侧壁设置有与所述安装口相对应的进风口,所述导水槽依次穿过所述导水槽的安装口和所述水容器的进风口伸入到所述水容器内。
在一种可能的实现方式中,所述导水槽伸入到所述水容器内的长度不大于4mm。
在一种可能的实现方式中,所述导水槽包括前挡水板、导水底板、以及与所述导水底板连接且相对设置的两个导水侧板,所述导水底板、前挡水板和两个所述导水侧板围合成后端具有出水口的所述导水槽。
在一种可能的实现方式中,所述导水槽的导水底板设置有往下延伸的安装部,所述安装部与所述水箱底座的侧壁螺接固定或者卡接固定。
本申请实施例的第二方面提供一种空调内机,包括:外壳以及如上任一实施例所述的采用水对空气进行处理的装置;所述装置设于所述外壳的空腔内,所述外壳设有注水口,所述装置的加水槽安装在所述注水口处并与所述外壳可转动连接;所述加水槽能够相对于所述外壳转动到第一位置以打开所述注水口;所述加水槽还能够相对于所述外壳转动到第二位置以封闭所述注水口。
本申请实施例的第二方面提供的空调内机的技术效果在于:无需将采用水对空气进行处理的装置的水容器从空调上拆卸下来,便可打开注水口以为加水槽加水,继而实现为水容器加水,加水操作方便。
在一种可能的实现方式中,所述加水槽包括前面板、与前面板连接且相对设置的两个加水侧板、以及往上倾斜的加水底板,所述前面板、加水底板以及两个加水侧板围成用于注水的注水槽,所述加水底板设置有能够插入导水槽的圆形管口。
在一种可能的实现方式中,所述加水槽的加水底板通过销轴与所述外壳转动连接。
在一种可能的实现方式中,所述加水槽上设有限位块,所述外壳上设有限位配合部,所述限位块与所述限位配合部相配合,以限制所述加水槽相对于所述外壳的转动角度。
附图说明
图1是本申请实施例的一种采用水对空气进行处理的装置的结构示意图;
图2是本申请实施例的一种采用水对空气进行处理的装置
图3是本申请实施例的一种采用水对空气进行处理的装置图1去除出风壳体后的结构示意图;
图4是本申请实施例的一种采用水对空气进行处理的装置中加水装置的结构示意图;
图5是本申请实施例的一种采用水对空气进行处理中水箱底座与风机壳体的连接示意图;
图6是本申请实施例的另一种采用水对空气进行处理的装置的结构示意图。
附图标记说明:
100:采用水对空气进行处理的装置;
1:水容器;11:进风口;
2:水箱底座;21:外壳体;211:安装口;22:内壳体;23:支撑架;
3:出风壳体;31:出风风道;
4:风机壳体;41:风扇格栅;
5:风机;51:电机;52:扇叶;
6:水处理件;
7:海绵网;
8:支架;81:注水口;82:送风口;
9:加水装置;91:加水槽;911:圆形管口;912:限位块;913:前面板;914:加水侧板;915:加水底板;92:导水槽;921:导水板;922:前挡水板;923:导水底板;924:导水侧板;925:安装部。
具体实施方式
首先,本领域技术人员应当理解的是,这些实施方式仅仅用于解释本申请的技术原理,并非旨在限制本申请的保护范围。本领域技术人员可以根据需要对其作出调整,以便适应具体的应用场合。
其次,需要说明的是,在本申请的描述中,术语“内”、“外”等指示的方向或位置关系的术语是基于附图所示的方向或位置关系,这仅仅是为了便于描述,而不是指示或暗示所述装置或构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申请的限制。
此外,还需要说明的是,在本申请的描述中,除非另有明确的规定和限定,术语“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;可以是直接相连,也可以通过中间媒介间接相连,可以是两个构件内部的连通。对于本领域技术人员而言,可根据具体情况理解上述术语在本申请中的具体含义。
随着经济和科技的发展,消费者对空气环境质量的要求变得越来越高,空气加湿装置、空气净化装置、空气制冷和/或制热装置等空气处理装置的使用也变得越来越广泛。
相关技术中,经常会采用水对空气进行处理,以便调整空气的湿度、净化度以及温度等。现有的通过水对空气进行处理的装置主要由盛有水的水容器,设置在水容器内以将水扬起或者雾化的水处理件,与水容器连通的风道壳体,以及将空气抽入风道壳体内的风机组成。该空气处理装置在工作时,先往水容器内加入水,然后启动风机和水处理件,风机将室内空气从风道壳体的进风口吸入风道壳体内,然后经过风道壳体的上游段送入水容器内,接着被水处理件扬起或者雾化后的水加湿、净化和/或降温后,最后经过风道壳体的下游段从该风道壳体的出风口吹出,从而使得室内空气的质量得到改善。
然而,这种采用水对空气进行处理的装置在工作一段时间后,水容器内的水会逐渐减 少,需要进行供水。供水方式一般有两种,一种采用外接水源,加水方便,但需改造水路,施工复杂且成本较高;一种是水容器储水,结构简单且维护方便,但拆卸水容器进行加水的操作比较繁琐,尤其是将这种装置作为大型空气处理设备(例如空调或者新风处理系统)的一个模块时,其加水操作会更加的不方便。
有鉴于此,本申请配置了单独的加水装置,可以在不拆卸水容器的情况下为水容器进行补水。具体而言,该加水装置包括一端伸入水容器内的导水槽,以及为导水槽提供水的加水槽,该加水槽可以从空气处理装置的外部往里注水,然后通过导水槽的导水作用将水导入水容器内,从而实现为水容器注水的目的。
下面阐述本申请实施例的采用水对空气进行处理的装置及具有其的空调内机的优选技术方案。
首先参照图1和图2,图1是本申请实施例的一种采用水对空气进行处理的装置的结构示意图;图2是本申请实施例的一种采用水对空气进行处理的装置的分解示意图。
如图1和图2所示,本实施例提供了一种采用水对空气进行处理的装置100,包括水容器1,可转动设置在水容器1内以形成水幕的水处理件6,以及用于往水容器1注水的加水装置9。
如图2所示,水容器1大致为六面体结构,其横截面大致为长方形,当然,在其他示例中其横截面也可以是圆形、椭圆形或者其他合适的形状。水容器1可以采用塑料通过注塑工艺制造而成,或者,也可以采用金属通过铸造工艺制造而成。为了观察水容器1内的水的高度或者为了观察水幕的形成情况,可以使用透明塑料制作水容器1,在水容器1上还可选地设置有用于标示水位的刻度线。
在水容器1的侧壁设置有供待清洗的空气进入水容器1的进风口11,水容器1的顶部或者靠近顶部的侧壁设置有出风口,从而在水容器1的进风口11和出风口之间形成有空气净化风道。水处理件6形成的水幕倾斜于水容器1的中轴线并位于该空气净化风道内,也即是,从水容器1的进风口11流到其出风口的空气会穿过水处理件6形成的水幕,空气内的尘埃、细菌等污染物会被水幕中的水雾截留,从而实现对空气的净化。
海绵网7安装在水容器1的出风口内,以便分离净化后空气中携带的水分子,避免从装置100中排出的净化空气的湿度过大。海绵网7例如可以是金属网状结构,其边缘可以包覆有框架,以利于其安装到水容器1的出风口处。
参照图1和图2,在本申请的一些实施例中,水处理件6可以为离心甩水件,离心甩水件的顶端设置有喷水孔,离心甩水件的底端与水容器1的底部具有间隙;离心甩水件能够旋转以将水容器1中的水从上述间隙处扬起,并从离心甩水件顶端的喷水孔喷出以形成用于净化进入水容器1内空气的水幕。
通过将水处理件6设为离心甩水件,使用时,离心甩水件在水容器1内360度旋转,使得水容器1内的水由离心甩水件的底端与水容器1的底部之间的间隙吸入至离心甩水件内,并从离心甩水件顶端的喷水孔喷出,喷出的水在水容器1内形成平面状的水幕。空气穿过水幕时与水幕中的水分子溶合,使得空气的湿度增加、温度降低,同时空气中的灰尘、毛发或者绒絮等杂质与水幕中的水溶合形成水滴,空气穿过海绵网7时,部分水滴被海绵网7阻拦无法通过海绵网7,进而使得杂质被滤除,过滤后的空气从出风口流出,从而实现了对空气的加湿、净化及降温功能。
由于离心甩水件可使水容器1内形成平面状的水幕,从水容器1侧壁的进风口11进入其内部的空气必须穿过水幕才能流入出风风道31,增大了与水分子溶合的空气量,提高了加湿、净化及降温效果。
继续参照图1和图2,采用水对空气进行处理的装置100还包括加水装置9,加水装置9包括加水槽91和导水槽92。图2中示出了导水槽92的右端与加水槽91的底端连通,该导水槽92的左端则伸入水容器1中,用于向水容器1内加水;加水槽91,用于向导水槽92内注水。由此,加水槽91、导水槽92以及水容器1的内部空间构成了用于向水容器1内加水的水流道。
使用时,当采用水对空气进行处理的装置100在工作一段时间,需要为水容器1补水时,工作人员可以直接打开加水槽91,向加水槽91注水,水从加水槽91流入导水槽92,然后经由导水槽92流至水容器1,落入水容器1的内部,从而实现加水。因此,无需将水容器1从装置100拆卸下来进行加水,省去了拆卸水容器1的工序,加水操作方便简单,尤其是将该装置100作为大型空气处理设备(例如空调或者新风处理系统)的一个模块时,省去了大量的拆卸工作,加水操作方便,加水效率高。
综上所述,本实施例中的装置100通过设置水容器1、水处理件6以及加水装置9,可以实现无需将水容器1从装置100拆卸下来,便可以向水容器1中加水,省去了拆卸水容器1的工序,加水操作方便。
图3是图1去除出风壳体3(下文将会详述)后的结构示意图。可选地,如图3所示,加水槽91的通过圆形管口911插入到导水槽92中,将注入的水导入导水槽92。如图2所示,装置100还包括水箱底座2,水箱底座2用于承载水容器1,水箱底座2内形成有进风风道,水箱底座2的侧壁设有用于安装导水槽92的安装口211,导水槽92穿过安装口211伸入到水容器内1。水箱底座2包括外壳体21和内壳体22,外壳体21和内壳体22围成进风风道,外壳体21的侧壁设置有安装导水槽92的安装口211,水容器1的侧壁设置有与导水槽92的安装口211相对应的进风口11,导水槽92依次穿过外壳体21的安装口211和水容器1的进风口11伸入到水容器1内。
可选地,导水槽92伸入到水容器1中,其内端(也即靠近水容器1中轴线的一端)超过水容器1边缘的距离不超过4mm。如此,既能保证水完全加入水容器1内部,避免水流到水箱底座2内,导致加水浪费,又不会影响经过水幕处理的空气及时往水容器1的出风口流动,同时还能有利于水容器1的抽拿与维修更换。
图4为一种加水装置的结构示意图。如图4所示,导水槽92包括前挡水板922、导水底板923、以及与导水底板923连接且相对设置的两个导水侧板924,导水底板923、两个导水侧板924和前挡水板922围合成后端具有出水口的导水槽92,且连通加水槽91的前挡水板922呈倾斜设置方便导水引流。其中,导水侧板924的顶边可以是直线或者是折线,例如,导水侧板924的顶边可以设计成前后低中间高的形式;前挡水板922可以垂直于导水底板923设置或者倾斜于导水底板923设置,例如,前挡水板922设计成从下后方往前上方倾斜。
可选地,如图3和图4所示,导水槽92的导水底板923设置有往下延伸的安装部925,安装部925与水箱底座2的侧壁螺接固定或者卡接固定。其中,螺钉连接和卡扣连接的具体结构可以采用本领域技术人员常用的结构形式,这里不再详述。
可选地,如图4所示,加水槽91包括前面板913、与前面板913连接且相对设置的两个加水侧板914、以及往上倾斜的加水底板915,前面板913、加水侧板914以及加水底板915限定出用于注水的注水槽。其中,加水底板915设置有能够插入导水槽92的圆形管口911。如此设置,加水槽91近似为漏斗的形状,其能够容纳一定的水量,从而在加水时该加水槽91可以起到缓冲作用,往上倾斜设置的加水底板915便于将加水槽91内的水导入到圆形管口911内,而且由于圆形管口911是插入到导水槽92内的,其可以进一步确保从加水槽91内排出的水均能够排入到导水槽92内,避免在加水槽91流向导水槽92的过程中损失。
需要指出的是,加水槽91可以通过铸造或注塑的方式一体成型,加工方便。
可选地,如图1所示,加水槽91转动至如图1所示位置时,便可通过加水槽91向导水槽92中注水,此时,加水槽91整体倾斜设置,由此,由加水槽91的加水口向导水槽92的出水口是倾斜向下延伸的,水在其重力作用下容易由加水槽91导入至导水槽92内部,流动速度快,且可以避免水沿水平方向流动带来的溢出现象。
可选地,导水槽92可以沿水平方向布置,也即,该导水槽2垂直于水箱底座2的侧壁放置,当然,在其他一些示例中,该导水槽2也可以倾斜于水箱底座2的侧壁放置,以便利于水从倾斜的导水槽92流入到水容器1内部。
可选地,如图4所示,加水槽91的两个加水侧板914在靠近顶端的位置分别设置有限位块912,这两个限位块912可以与加水槽91通过铸造或注塑的方式一体成型。
应当理解,该装置100在工作期间或其他无需进行加水时,加水槽91处于闭合状态,避免环境中的杂质通过加水槽91的加水口进入水容器1内,导致水容器1的水变脏,影响空气清洗的效果。当需要加水时,用手拉开加水槽91,通过加水侧板914上部的限位块912,将加水槽91限定在打开位置,不需要手动操作来将加水槽91限制在其打开位置,方便进行加水操作。
可选地,如图3和图4所示,导水槽92内设置有导水板921,例如,该导水板921设置在在水箱底座2用于安装导水槽92的安装口911的位置。导水板921与两个导水侧板924采用销轴铰接在一起,当从加水槽91的圆形管口911流入至导水槽92的水流量和流速较大时,通过导水板921,可以起到引流作用,使水流平缓的流入到水容器1中。
参照图1和图2,出风壳体3覆盖在水容器1的出风口处并与水容器1的出风口连通,出风壳体3上可以形成有多个出风风道31,多个出风风道31可以均匀地分布在不同的方向上,由此,可以增大装置100的已处理空气的出风量,从而提高了对空气质量进行改善的效率,并且已处理的空气可以从各个方向上吹入环境中,避免环境中只有局部空气得到改善。
可选地,出风壳体3中可以内置风机5,风机5用于将环境中的空气送入水容器1内进行处理,并将经过水处理后的空气从出风风道31送出。
参照图2,水箱底座2和风机壳体4设置在水容器1的下端,风机壳体4和水箱底座2大体上按照从下往上的方向叠置在一起。
参照图5,图5是本申请实施例的一种采用水对空气进行处理的装置100中水箱底座2与风机壳体4的连接示意图。如图5所示,在上述实施例中,水箱底座2可以包括外壳体21和内壳体22,外壳体21的内部为中空,内壳体22设置在外壳体21内部,内壳体 22的一端与外壳体21的侧壁连接,且外壳体21的侧壁上设有安装口211,以使水容器1通过安装口211安装到外壳体21上。
参照图5,内壳体22的侧壁与外壳体21的侧壁之间具有间隙,内壳体22与外壳体21共同限定出进风风道,水容器1通过安装口211安装到外壳体21上,参照图1,水容器1的侧壁设置有与安装口211相对应的进风口11。当装置100工作时,风机5驱动外界环境中的空气抽入到风机壳体4内,然后进入到内壳体22和外壳体21的间隙中,再通过水容器1的进风口11进入水容器1中。外壳体21的侧壁、内壳体22以及水容器1的外壁共同围成了进风风道。
参照图5,外壳体21的侧壁设置有导水槽92的安装口211,导水槽92依次穿过外壳体2的安装口211和水容器1的进风口11伸入到水容器1内。
水箱底座2可以呈箱体或者筒体等规则形状,其横截面大致为长方形,当然,在其他示例中其横截面也可以是圆形、椭圆形或者其他合适的形状。水箱底座2可以采用塑料通过注塑工艺制造而成,或者,也可以采用金属通过铸造工艺制造而成。
进一步地,内壳体22的侧壁与外壳体21的侧壁之间的间隙内间隔的设有多个支撑架23,支撑架23对内壳体22起到支撑作用,避免水箱底座2变形,而且也可以使得内壳体22能够稳定的承载水容器1的重量。
风机壳体4可以呈箱体结构,也可以呈筒体结构,风机壳体4的底部和顶部均设有开口,风机壳体4的内部具有用于容置风机5的空腔,风机壳体4底部的开口、空腔以及顶部的开口连通形成向水箱底座2送风的流道,且该流道与外界环境或大型空气处理设备中的风道相连通,以在风机5启动时,将外界环境中的空气或者大型空气处理设备中风道的空气送入水箱底座2的进风风道内。值得说明的是,当大型空气处理设备为空调时,空调上与风机壳体4连通的风道和空调上的换热风道相隔离,避免经换热风道处理后的空气流入风道壳体,导致被水处理进行降温。
风机壳体4与水箱底座2可以通过焊接的方式进行连接,也可以通过螺接的方式进行连接,或者通过铸造的方式一体成型,由此,风机壳体4与水箱底座2成为整体,提高了装置100的稳定性,省去了装配风机壳体4与水箱底座2的工序。
风机5包括电机51和扇叶52,电机51的电机轴与扇叶52传动连接,电机轴驱动扇叶52旋转以使得环境中的空气由风机壳体4底部的开口向风机壳体4的内部流动。其中,电机51可以与风机壳体4的侧壁连接,或者在风机壳体4内部设有网状支承架,网状支承架上形成有网孔,电机51安装在网状支承架上,电机51的电机轴从网状支承架的网孔伸出与扇叶52传动连接。
如图2所示,本申请优选的实施例中,电机51选为双轴电机,双轴电机的第一电机轴与扇叶52传动连接,双轴电机的第二电机轴穿入水容器1的底部与离心甩水件传动连接。由此,电机51可以同时驱动扇叶52和离心甩水件进行转动,与设置两个单轴电机分别驱动相比,结构简单,节省电能。
此外,风机壳体4的侧壁上还设有插接口,装置100还包括风扇格栅41,风扇格栅41可移动的插设在插接口内,风扇格栅41位于风机5下方。由此,风扇格栅41对风机5起保护作用,避免其他的结构对风机5误操作导致风机5无法正常工作。同时,在拿取该装置时,风扇格栅41可以防止工作人员手部直接接触而被风机5的扇叶52划伤。
本申请实施例还提供了一种空调内机,尤其是一种柜式空调内机,其包括外壳以及采用水对空气进行处理的装置100,外壳内还设置有与装置100相隔离的换热风道。其中,换热风道与该装置100上用于对空气进行净化、加湿或降温的流道相独立,可以避免影响空调内机的换热功能。
在一种可实现的方式中,采用水对空气进行处理的装置100可以安装在外壳内,并与外壳可拆卸的相连,装置100的出风风道31的出口与外界环境相连通。参照图6,图6是一种空调内机部分结构的示意图。如图6所示,在一种可实现的方式中,外壳可以包括支架8,支架8上可以设有注水口81和送风口82,装置100的出风风道31的出口可以与外壳的送风口82连接,加水槽91可转动地安装在外壳的注水口81内。
当空调内机在工作一段时间,水容器1的水耗尽时,用户可以直接通过支架8上的注水口81向加水槽91加水,水依次经加水槽91和导水槽92后直接流入水容器1内部,从而实现加水。由此,不仅无需拆卸水容器1,还无需将装置100从空调内机上拆卸下来,便可对水容器1进行加水,省去了拆卸水容器1和装置100的工序,加水操作方便,加水效率高。
示例性地,加水槽91可以设置在支架8上,加水槽91可转动的与支架8连接。当水容器1需要加水时,打开并转动加水槽91至第一位置,例如,将加水槽91的前面板913转动到与支架8成45度角的位置;然后,向加水槽91内注水,完成加水过程。当加水槽91在该装置100正在工作或者不需要加水时,旋转加水槽91至第二位置,例如,将加水槽91转动到前面板913至与支架8共面的位置,此时,前面板913与支架8卡接或者通过其他结构连接在一起,加水槽91的加水口关闭。
可选地,支架8上的注水口81小于加水槽91的前面板913,以便将加水槽91限定在第二位置,从而关闭加水槽91。
由此,通过转动操作即可使得加水槽91可以灵活的打开和关闭,从而便于在加水时打开支架8上的注水口81,在加水完毕后关闭注水口81。同时,支架8上与注水口81对应的位置设置有槽口,用户可以将手指伸入槽口并对加水槽91的前面板913施加作用力,以使得加水槽91转动并打开注水口81,方便用户打开加水槽91。
具体的,支架8的内壁上设有两个连接板,加水槽91位于两个连接板之间,两个连接板向下延伸均形成有悬臂,每一悬臂与相近的一个加水侧板914通过销轴铰接,进而使得加水槽91绕销轴转动。这里,值得说明的是,加水槽91的转动范围位于第一位置和第二位置之间,转动方向如图6箭头所示,加水槽91的两个加水侧板914上端分别设置有限位块912,与加水槽91通过铸造或注塑的方式一体成型,方便加工。当加水槽91转动至第一位置时,加水槽91的限位块912与支架8的限位配合部相互配合,将加水槽91限定在第一位置,不需要人为干涉加水槽91的位置,方便进行加水操作。当加水槽91转动至第二位置时,关闭注水口81。
本实施例提供的采用水对空气进行处理的装置100的加水过程为:加水时,打开加水槽91的前面板913,加水槽91上前面板913的顶端与支架8分离,拉动前面板913进行转动,使得加水槽91向外翻转至第一位置,并且通过限位块912限定加水槽91的打开位置,然后向加水槽91内注水,水经由加水槽91的圆形管口911注入导水槽92内,导水槽92直接将水注入水容器1内部。加水完毕后,关闭加水槽91,将前面板913旋转至第 二位置。
综上所述,本申请实施例提供了一种采用水对空气进行处理的装置100和具有其的空调内机,采用水对空气进行处理的装置100包括水容器1、水处理件6以及加水装置9。上述水容器1用于盛装水;上述水处理件6可转动地设置在水容器1内,用于将上述水容器1内的水吸入水处理件6内并产生倾斜于水容器1轴线的水幕;上述加水装置9包括加水槽91和导水槽92,加水槽91用于向水容器1中注水,导水槽92的一端与加水槽91的出水口连通,一端伸入上述水容器1中,用于将加水槽91中的水导入到水容器1中。上述采用水对空气进行处理的装置100还可以包括风机壳体4、水箱底座2、出风壳体3,风机壳体4与水箱底座2连通,风机壳体4内安装有风机5,水箱底座2用于承载水容器1,水箱底座2内形成有进风风道,进风风道与水容器1连通,上述风机5用于将环境中的空气经进风风道送入水容器1内进行处理,并将经过水处理后的空气从出风壳体3送出。通过上述设置,当采用水对空气进行处理的装置100在工作一段时间,需要为水容器1补水时,工作人员直接打开加水槽91向加水槽91加水,水经由加水槽91流入导水槽92内,再沿导水槽92流入水容器1内部,从而实现加水。因此,无需将水容器1拆卸下来进行加水,省去了拆卸水容器1的工序,加水操作方便。
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. 一种采用水对空气进行处理的装置,其特征在于,包括:
    水容器,用于盛装水;
    水处理件,可转动地设置在所述水容器内,用于将所述水容器内的水吸入所述水处理件内并产生倾斜于所述水容器轴线的水幕;
    加水装置,包括加水槽和导水槽,所述加水槽用于向所述水容器中注水,所述导水槽的一端与加水槽的出水口连通,所述导水槽的另一端伸入所述水容器内。
  2. 根据权利要求1所述的装置,其特征在于,还包括水箱底座,所述水箱底座用于承载所述水容器,所述水箱底座内形成有进风风道;
    所述水箱底座的侧壁设有用于安装所述导水槽的安装口,所述导水槽穿过所述安装口伸入到所述水容器内。
  3. 根据权利要求2所述的装置,其特征在于,所述水箱底座包括外壳体和内壳体,所述外壳体和内壳体围成所述进风风道,所述外壳体的侧壁设置有安装所述导水槽的安装口;
    所述水容器的侧壁设置有与所述安装口相对应的进风口,所述导水槽依次穿过所述导水槽的安装口和所述水容器的进风口伸入到所述水容器内。
  4. 根据权利要求1至3任一项所述的装置,其特征在于,所述导水槽伸入到所述水容器内的长度不大于4mm。
  5. 根据权利要求1至4任一项所述的装置,其特征在于,所述导水槽包括前挡水板、导水底板、以及与所述导水底板连接且相对设置的两个导水侧板,所述导水底板、前挡水板和两个所述导水侧板围合成后端具有出水口的所述导水槽。
  6. 根据权利要求5所述的装置,其特征在于,所述导水槽的导水底板设置有往下延伸的安装部,所述安装部与所述水箱底座的侧壁螺接固定或者卡接固定。
  7. 一种空调内机,其特征在于,包括:外壳以及权利要求1至6任一项所述的采用水对空气进行处理的装置;
    所述装置设于所述外壳的空腔内,所述外壳设有注水口,所述装置的加水槽安装在所述注水口处并与所述外壳可转动连接;
    所述加水槽能够相对于所述外壳转动到第一位置以打开所述注水口;
    所述加水槽还能够相对于所述外壳转动到第二位置以封闭所述注水口。
  8. 根据权利要求7所述的空调内机,其特征在于,所述加水槽包括前面板、与前面板连接且相对设置的两个加水侧板、以及往上倾斜的加水底板,所述前面板、加水底板以及两个加水侧板围成用于注水的注水槽,所述加水底板设置有能够插入导水槽的圆形管口。
  9. 根据权利要求8所述的空调内机,其特征在于,所述加水槽的加水底板通过销轴与所述外壳转动连接。
  10. 根据权利要求8或9所述的空调内机,其特征在于,所述加水槽上设有限位块,所述外壳上设有限位配合部,所述限位块与所述限位配合部相配合,以限制所述加水槽相对于所述外壳的转动角度。
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