WO2020007136A1 - 集尘盒组件、空调室内机及空调器 - Google Patents

集尘盒组件、空调室内机及空调器 Download PDF

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Publication number
WO2020007136A1
WO2020007136A1 PCT/CN2019/088515 CN2019088515W WO2020007136A1 WO 2020007136 A1 WO2020007136 A1 WO 2020007136A1 CN 2019088515 W CN2019088515 W CN 2019088515W WO 2020007136 A1 WO2020007136 A1 WO 2020007136A1
Authority
WO
WIPO (PCT)
Prior art keywords
dust
box assembly
cover
box body
port
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2019/088515
Other languages
English (en)
French (fr)
Inventor
蔡志才
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
Original Assignee
Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Midea Group Co Ltd, GD Midea Air Conditioning Equipment Co Ltd filed Critical Midea Group Co Ltd
Priority to JP2021500080A priority Critical patent/JP7053940B2/ja
Publication of WO2020007136A1 publication Critical patent/WO2020007136A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • 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
    • F24F1/0073Indoor units, e.g. fan coil units with means for purifying supplied air characterised by the mounting or arrangement of filters
    • 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
    • F24F13/28Arrangement or mounting of filters

Definitions

  • the present application relates to the technical field of air conditioners, and in particular, to a dust box assembly, an air conditioner indoor unit, and an air conditioner.
  • Air conditioners With the improvement of people's living standards, air conditioners have become one of the indispensable electrical appliances in people's daily lives.
  • Air conditioners usually include air-conditioning indoor units and air-conditioning outdoor units.
  • air-conditioning indoor units they are usually installed at the air inlet. Filters to filter the air entering the air-conditioning indoor unit. During the long-term operation of the air-conditioning indoor unit, dust will gradually adhere to the filter screen, causing the filter to become dirty and clogged.
  • dust removal mechanism and dust collection box are usually installed at the air inlet. Falling dust.
  • a dust outlet is provided on the dust collection box, and the dust in the dust collection box is sucked away by means of external suction and suction.
  • a dust suction cover is provided at the dust discharge opening on the dust collection box, and the dust discharge opening is opened and closed by rotating the dust suction cover relative to the dust discharge opening.
  • the dust outlet on the dust box is sealed to the dust inlet on the panel. In actual use, the rotation adjustment range of the dust cover is small. In order to ensure the fit of the dust outlet and the dust inlet, the dust outlet The distance to the dust collection cover is also relatively short.
  • the main purpose of this application is to propose a dust box assembly for an indoor unit of an air conditioner, which aims to facilitate the sealing and fitting of the dust outlet and the dust suction port when the distance between the dust suction port and the dust suction cover of the panel is large.
  • the dust collection box assembly proposed in this application includes:
  • a box body provided with a containing cavity therein, the box body having a dust collecting opening and a dust discharging opening communicating with the containing cavity;
  • a dust collecting cover is movably connected with the box body to open and close the dust collecting port;
  • the dust suction cover is rotatably connected to the box body and can rotate relative to the dust outlet;
  • a dust exhaust baffle is located on a side of the dust extraction cover facing the dust outlet, one side of the dust exhaust baffle is used to abut the dust extraction cover, and the other side is used to close and open the dust extraction cover.
  • the dust outlet is located on a side of the dust extraction cover facing the dust outlet, one side of the dust exhaust baffle is used to abut the dust extraction cover, and the other side is used to close and open the dust extraction cover.
  • a mounting plate is provided in the box body, the mounting plate divides the receiving cavity into a mounting cavity and a dust collecting cavity, the dust outlet is provided on a cavity wall of the mounting cavity, and the mounting cavity Communicating with the dust collecting cavity, and the dust collecting port is provided on the cavity wall of the dust collecting cavity;
  • the dust suction cover is pivotally connected to the mounting plate, so that the dust suction cover swings relative to the dust outlet.
  • the dust exhaust baffle is rotatably connected to the cavity wall of the installation cavity, and the extending directions of the rotation axes of the dust exhaust baffle and the dust suction cover are the same.
  • the rotation axis of the dust exhaust baffle is spaced from the rotation axis of the dust suction cover.
  • an abutment protrusion is protruded on a side of the dust suction cover facing the dust exhaust baffle, and the abutment protrusion abuts the dust exhaust baffle.
  • the abutting protrusion is provided with a guide bevel, and the guide bevel slides into abutment with an edge of the dust exhaust baffle side away from its rotation axis.
  • a pivot axis is extended on the dust exhaust baffle plate near one side edge thereof and toward both ends thereof, and a cavity wall of the installation cavity is provided with a shaft hole corresponding to the pivot axis;
  • the dust exhaust baffle is provided with an elastic opening at a position close to a pivot axis thereof.
  • the dust collecting box assembly further includes a torsion spring fixing seat installed on a cavity wall of the installation cavity, and the torsion spring fixing seat is provided with a rotating shaft;
  • the reset member is a torsion spring sleeved on the rotating shaft, one end of the torsion spring is in contact with the cavity wall of the installation cavity, and the other end is in contact with the dust suction cover.
  • a side of the dust exhaust baffle facing away from the dust suction cover is convexly provided with a seal preventing protrusion that abuts a dust suction nozzle of the vacuum cleaner, and the seal preventing protrusion can move through the exhaust Dust.
  • the anti-sealing protrusion is tapered in a protruding direction thereof.
  • the dust collection port and the dust discharge port are arranged along the length of the box body, and the dust collection port and the dust discharge port are respectively located on different sides of the box body.
  • the box body is further provided with a vent, and the vent and the dust collecting port are respectively disposed near two ends of the box.
  • the dust collection cover is integrally provided with the dust collection cover.
  • the present application also proposes an air conditioner indoor unit, which includes a housing, a filter, a dust removal mechanism, and a dust box assembly.
  • the dust box assembly includes a box body, a dust cover, a dust suction cover, a reset member, and a dust exhaust baffle.
  • a container cavity is provided in the box body, and the box body has a dust collection port and a dust discharge port connected to the container cavity; the dust collection cover is movably connected to the box body to open and close the box.
  • the dust collection port; the dust suction cover is rotatably connected to the box body and can be rotated relative to the dust discharge port; the reset member drives the dust suction cap to return to move toward the dust discharge port;
  • the dust exhaust baffle is located on a side of the dust extraction cover facing the dust outlet, one side of the dust exhaust baffle is used to abut the dust extraction cover, and the other side is used to close and open.
  • the dust outlet; the casing is provided with an air inlet, an air outlet, a dust suction opening, and a heat exchange channel connecting the air inlet and the air outlet, and the filter is installed at the air inlet, the The dust removing mechanism is installed on the filter net, the dust collecting box assembly is disposed adjacent to the filtering net, the dust collecting port on the box body of the dust collecting box assembly is disposed facing the filter net, and the drain on the box body The dust port is provided in communication with the dust suction port.
  • the present application also provides an air conditioner, including an air-conditioning outdoor unit and an air-conditioning indoor unit.
  • the air-conditioning indoor unit is in communication with the air-conditioning outdoor unit.
  • the air-conditioning indoor unit includes a casing, a filter, a dust removal mechanism, and dust collection.
  • a box assembly wherein the dust collecting box assembly includes a box body, a dust collecting cover, a dust collecting cover, a reset member, and a dust exhaust baffle.
  • the box body is provided with a receiving cavity, and the box body is in communication with the receiving cavity.
  • the dust collection port and the dust discharge port; the dust collection cover is movably connected with the box body to open and close the dust collection port; the dust suction cover is rotatably connected to the box body, and can relatively discharge dust The mouthpiece rotates; the resetting member drives the dust suction cover to move toward the direction close to the dust outlet;
  • the dust exhaust baffle is located on a side of the dust extraction cover facing the dust outlet, one side of the dust exhaust baffle is used to abut the dust extraction cover, and the other side is used to close and open.
  • the dust outlet; the casing is provided with an air inlet, an air outlet, a dust suction opening, and a heat exchange channel connecting the air inlet and the air outlet, and the filter is installed at the air inlet, the The dust removing mechanism is installed on the filter net, the dust collecting box assembly is disposed adjacent to the filtering net, the dust collecting port on the box body of the dust collecting box assembly is disposed facing the filter net, and the drain on the box body The dust port is provided in communication with the dust suction port.
  • the technical solution of the present application adopts the addition of a dust exhaust baffle.
  • the abutment between the dust extraction cover and the dust exhaust cover can be used to open and close the dust exhaust baffle.
  • it is more conducive to attach the dust extraction port on the panel to the dust exhaust port, thereby ensuring that the dust box assembly
  • vacuuming and cleaning avoid dust from seeping into the air-conditioning indoor unit through the gaps between the dust suction port and the dust outlet, and avoid the risk of causing pollution to the interior of the air-conditioning indoor unit.
  • FIG. 1 is a schematic structural diagram of a part of an embodiment of an air-conditioning indoor unit of the present application
  • FIG. 2 is a schematic diagram of the internal structure when the dust outlet of the air-conditioning indoor unit in FIG. 1 is closed;
  • FIG. 3 is a partially enlarged view at A in FIG. 2; FIG.
  • FIG. 4 is a schematic diagram of the internal structure of the air conditioner indoor unit in FIG. 2 when the dust outlet is opened;
  • FIG. 5 is a schematic structural diagram of a dust box component of the air-conditioning indoor unit in FIG. 2;
  • FIG. 6 is a schematic structural diagram of a dust box component of the air conditioner indoor unit in FIG. 4;
  • FIG. 7 is a partial structural diagram of a box body of the dust box assembly in FIG. 5;
  • FIG. 8 is a schematic structural diagram of a part of a dust collection cover of the dust collection box assembly in FIG. 5;
  • FIG. 9 is a schematic structural view of a perspective of a dust exhaust baffle of the dust box assembly in FIG. 5;
  • FIG. 10 is a schematic structural view of the dust exhaust baffle of the dust box assembly in FIG. 5 from another perspective.
  • the directional indication is only used to explain in a specific posture (as shown in the accompanying drawings) (Shown) the relative positional relationship, movement, etc. of the components below, if the specific posture changes, the directional indicator will change accordingly.
  • the present application proposes a dust box assembly for use in an air-conditioning indoor unit.
  • the air-conditioning indoor unit may be a wall-mounted indoor unit, a ceiling-mounted indoor unit, or a vertical indoor unit. The components are described in detail.
  • a filter screen and a dust removal mechanism are provided at an air inlet thereof, wherein the filter screen is used to filter air entering through the air inlet and perform heat exchange, and the dust removal mechanism is used to brush off dust on the filter screen.
  • the dust removing mechanism includes a rolling brush, which can be driven along the surface of the filter by the driving motor and related driving components, thereby brushing off the dust on the filter;
  • the implementation method is not limited to this, and can also be implemented by other methods, which are not repeated here one by one.
  • the role of the dust box assembly is to collect dust brushed off by the dust removal mechanism. In order to facilitate the cleaning of the dust collected by the dust box assembly, the inside of the dust box assembly can be cleaned by an adsorption device such as a vacuum cleaner.
  • the dust collecting box assembly 30 includes a box body 300, a dust collecting cover 310, a dust collecting cover 320, a reset member 330, and a dust exhaust baffle 350, wherein:
  • the box body 300 is provided with a receiving cavity 303 therein.
  • the box body 300 has a dust collecting port 301 and a dust discharging port 302 which are in communication with the receiving cavity 303.
  • the dust collecting cover 310 is movably connected to the box body 300 to open and close the dust collecting port 301.
  • the dust suction cover 320 is rotatably connected to the box body 300 and can rotate relative to the dust outlet 302; the resetting member 330 drives the dust suction cover 320 to return to the direction close to the dust outlet 302; the dust discharge baffle 350 is located at the dust cover 320 One side facing the dust outlet 302, one side of the dust exhaust baffle 350 is used to abut the dust suction cover 320, and the other side is used to close and open the dust outlet 302.
  • the box 300 is usually installed on the face frame 20 of the wall-mounted indoor unit.
  • the box 300 can be detachably fixed to the face frame 20 by means of screws, buckles or magnetic adsorption, so as to facilitate the installation of the box 300 and the later stage Disassembly and cleaning of the case 300.
  • the dust collecting port 301 on the box body 300 is located below the dust removing mechanism, and its specific position is to ensure that the dust brushed off by the dust removing mechanism falls into the containing cavity 303. By removing the box body 300, the dust collected in the cavity 303 can be cleaned, and the cleaning method is complicated.
  • a dust outlet 302 is provided on the box body 300 to facilitate cleaning of the box 300, that is, to connect the vacuum cleaner with the dust outlet 302 by means of an external vacuum cleaner, so that the dust in the cavity 303 can be easily sucked out.
  • the box 300 of the dust box assembly 30 is generally disposed inside the panel 10, and the panel 10 is provided with an adapter for a vacuum cleaner corresponding to the dust outlet 302 Insert the suction port 100.
  • the dust outlet 302 on the box body 300 is in communication with the dust suction port 100, and the edge of the dust outlet 302 is preferably sealed or abutted against the edge of the dust suction port 100, and then It is ensured that during the vacuuming process of the vacuum cleaner, the dust will not spread from the gap between the dust suction port 100 and the dust discharge port 302 to the interior of the wall-mounted air conditioner, so as to avoid the defect of internal pollution caused by the vacuum suction process.
  • a dust suction cover 320, a dust exhaust baffle 350, and a reset member 330 are provided at the dust outlet 302 of the box 300.
  • the dust cover 320 is rotatably connected to the box 300, and the dust cover 320 can rotate relative to the dust outlet 302.
  • the dust baffle 350 is located on the side of the dust suction cover 320 facing the dust discharge opening 302; the reset member 330 has an elastic reset effect, and can drive the dust suction cover 320 to move toward the dust discharge opening 302 under the action of its own elastic force. Under the action of the reset member 330, the dust suction cover 320 drives the dust discharge baffle 350, so that the dust discharge baffle 350 covers the dust discharge port 302.
  • the dust outlet baffle 350 is added, and the dust outlet baffle 350 is used to cover the dust outlet 302. Further, the installation position of the dust outlet 302 can be expanded, which is also beneficial for correspondingly setting the dust outlet 302 of the box 300 and the dust inlet 100 on the panel 10.
  • the dust suction cover 320 and the dust outlet 302 are far away (because the dust suction opening 100 and the dust outlet 302 are relatively closely positioned, the positions of the dust suction cover 320 and the dust outlet 100 are also relatively relatively Far), through the abutment between the dust suction cover 320 and the dust exhaust baffle 350, the dust exhaust baffle 350 is opened and closed the dust outlet 302; that is, when the dust exhaust baffle 350 is closed and the dust is discharged On the basis of the port 302, the dust suction port 100 and the dust discharge port 302 on the panel 10 can be more closely attached to each other, thereby ensuring that dust is not removed from the dust suction port 100 when the dust box assembly 30 is vacuumed and cleaned.
  • the gap between the air outlet and the dust outlet 302 penetrates into the interior of the wall-mounted indoor unit 1, thereby avoiding the risk of causing pollution to the interior of the wall-mounted indoor unit 1.
  • the dust-removing mechanism of the wall-mounted indoor unit is opened.
  • the dust-collecting cover 310 of the box 300 opens the dust-collecting port 301.
  • the dust is collected in the capacity of the box 300.
  • the dust exhaust baffle 350 closes the dust exhaust port 302 of the box body 300, that is, the dust exhaust port 302 is in a normally closed state.
  • the user inserts the adapter of the vacuum cleaner into the dust inlet 100 of the panel 10.
  • the adapter will lift up the dust exhaust baffle 350 and the dust outlet 302 at this time.
  • the dust collecting cover 310 of the box 300 partially closes or completely closes the dust collecting port 301.
  • the dust in the cavity 303 is sucked out of the box 300 to realize the cleaning of the box 300. .
  • the box body 300 may be provided with a ventilation opening dedicated for ventilation. In this way, when the box body 300 is vacuumed by the vacuum cleaner, the box body 300 is supplemented with air to prevent negative pressure in the box body 300. To facilitate the work of the vacuum cleaner.
  • the box body 300 may not be provided with a vent separately, but the function of the vent may be achieved by partially closing the dust collecting port 301.
  • the box body 300 is preferably provided with a vent, and the vent and the dust collecting port 301 are respectively disposed near two ends of the box 300. In this way, when the inside of the box body 300 is adsorbed by the vacuum cleaner, the airflow of the box body 300 flows from one end of the box body 300 to the other end of the box body 300, so that the dust in the box body 300 can be sucked out.
  • the box body 300 is preferably disposed along the length direction of the filter screen, and the dust collection port 301 is also preferably along the length direction of the filter screen.
  • a mounting plate 307 is provided in the box body 300.
  • the mounting plate 307 divides the receiving cavity 303 into a mounting cavity 305 and a dust collecting cavity 304.
  • the dust cavity 304 and the installation cavity 305 are arranged along the length of the box body 300.
  • the dust outlet 302 is located on the cavity wall of the installation cavity 305
  • the dust collection port 301 is located on the cavity wall of the dust collection cavity 304
  • the dust suction cover 320 and the mounting plate 307 are pivotally connected to each other, so that the dust suction cover 320 swings relative to the dust outlet 302.
  • the dust discharge baffle 350 closes the dust discharge opening 302 under the drive of the dust suction cover 320; At the time of the baffle 350, at this time, the dust suction cover 320 is lifted up together with the dust discharge baffle 350, and the reset member 330 is compressed. At this time, the cleaner is in communication with the interior of the installation cavity 305.
  • the dust exhaust baffle 350 may be fixed on the side of the dust suction cover 320 facing the dust outlet 302, or the dust exhaust baffle 350 is rotatably connected to the cavity wall of the installation cavity 305.
  • the dust exhaust baffle 350 is preferably rotatably connected to the cavity wall of the mounting cavity 305, and the extending directions of the rotation axes of the dust exhaust baffle 350 and the dust suction cover 320 are the same. In this way, the dust exhaust baffle 350 itself can be rotated, and then when the adapter of the vacuum cleaner abuts against the dust exhaust baffle 350, the dust exhaust baffle 350 itself can rotate relative to the dust exhaust port 302, thereby further turning the dust exhaust port 302 opens.
  • the rotation axis of the dust exhaust baffle 350 and the rotation axis of the dust suction cover 320 are arranged at intervals. At this time, the rotation centers of the dust exhaust baffle 350 and the dust suction cover 320 have a certain interval.
  • the position area where the dust outlet 302 can be set is larger, which is beneficial to the edge of the dust outlet 302 and the edge of the dust suction 100.
  • the side of the dust suction cover 320 facing the dust exhaust baffle 350 is provided with an abutment protrusion 321, The abutting protrusion 321 abuts on the dust exhaust baffle 350. In this way, the thickness of the dust suction cover 320 and / or the dust exhaust baffle 350 can be reduced, and the reliable contact between the two can be ensured.
  • the abutment protrusion 321 is provided with a guide inclined surface 322, The side edge away from its axis of rotation slides into contact. It can be understood that, because both the dust suction cover 320 and the dust discharge baffle 350 rotate at the same time, and their rotation axes are different, and then the abutment position of the dust suction cover 320 and the dust discharge baffle 350 will occur during the rotation process. Therefore, by providing the guide inclined surface 322, the rotation of the dust suction cover 320 and the dust exhaust baffle 350 can be facilitated.
  • the dust exhaust baffle 350 is provided with a pivot shaft 351, and the cavity wall of the installation cavity 305 is provided with a shaft hole 306.
  • the structure of the dust exhaust baffle 350 is correspondingly improved.
  • the specific structure of the dust exhaust baffle 350 is as follows:
  • a pivot shaft 351 is extended near the edge of one side of the dust exhaust baffle 350 toward the two ends thereof.
  • the cavity wall of the mounting cavity 305 is provided with a shaft hole 306 corresponding to the pivot 351;
  • An elastic opening 352 is defined at a position of the pivot shaft 351.
  • the pivot 351 on the side near the elastic opening 352 can have a certain elasticity, and can be contracted in the direction of the other pivot 351, thereby facilitating the installation of the pivot 351 into the shaft hole.
  • easy installation of the dust exhaust baffle 350 is achieved.
  • the dust box assembly 30 further includes a torsion spring fixing base 340 mounted on the cavity wall of the mounting cavity 305.
  • the torsion spring fixing base 340 is provided with a rotating shaft 341; the reset member 330 is sleeved on the rotating shaft 341.
  • One end of the torsion spring is in contact with the cavity wall of the mounting cavity 305, and the other end is in contact with the dust suction cover 320.
  • the rotating shaft 341 may be directly disposed on the cavity wall of the installation cavity 305, or the resetting member 330 may be other elastic members such as elastic pieces, tension springs, and the like.
  • the side of the dust exhaust baffle 350 facing away from the dust collection cover 320 is convexly provided with The anti-sealing protrusion 353 abuts the dust suction pipe mouth of the vacuum cleaner, and the anti-sealing protrusion 353 can move through the dust discharge port 302 movably.
  • the adapter of the vacuum cleaner is inserted into the dust suction port 100 of the panel 10, the adapter extends from the dust suction port 100 into the dust discharge port 302, and the edge of the suction pipe mouth of the adapter contacts the anti-seal protrusion 353
  • the contact area between the dust suction nozzle and the dust exhaust baffle 350 is reduced, so that the plate surface of the dust exhaust baffle 350 will not cover or block the dust suction duct.
  • the above-mentioned anti-sealing protrusion 353 is gradually tapered in the protruding direction thereof. In this way, the contact area between the sealing protrusion 353 and the suction nozzle is more Small, thereby ensuring effective communication between the vacuum cleaner and the dust outlet 302.
  • the dust collection port 301 and the dust discharge port 302 are arranged along the length of the box body 300, and the dust collection port 301 and the dust discharge port 302 are respectively located on different sides of the box body 300.
  • the position of the dust collection port 301 is set toward the filter, and the position of the dust discharge port 302 is set toward the panel 10, so that the dust suction port 100 of the panel 10 is more easily aligned with the dust discharge port 302, which reduces the design difficulty.
  • the dust collection cover 310 and the dust collection cover 320 can be separately provided, that is, the dust collection cover 310 opens and closes the dust collection port 301 separately, and the dust collection cover 320 also rotates separately to drive the dust discharge baffle 350 to close the dust collection port 302; the dust collection cover 310 can also be integrated with the dust collection cover 320, and when the dust collection cover 310 opens the dust collection port 301, the dust collection cover 320 abuts the dust discharge baffle 350 to close the dust discharge port 302; the dust discharge baffle 350 will suck When the dust cover 320 is pushed up, the dust outlet 302 is in an open state, and the dust collection cover 310 closes the dust collection port 301 at this time.
  • the dust collection cover 310 is preferably provided integrally with the dust collection cover 320, and the compactness of the structure of the dust collection box assembly 30 can be improved at this time.
  • the present application also proposes an air-conditioning indoor unit 1 including a housing, a filter, a dust removal mechanism, and a dust box assembly 30.
  • an air-conditioning indoor unit 1 including a housing, a filter, a dust removal mechanism, and a dust box assembly 30.
  • the casing is provided with an air inlet, an air outlet, a dust suction port 100, and a heat exchange channel connecting the air inlet and the air outlet.
  • the filter is installed at the air inlet and the dust removal mechanism is installed.
  • the dust collecting box assembly 30 On the filter net, the dust collecting box assembly 30 is disposed adjacent to the filtering net, and the dust collecting port 301 on the box body 300 of the dust collecting box assembly 30 is disposed facing the filter net.
  • the dust exhaust port 302 is disposed in communication with the dust suction port 100.
  • the air-conditioning indoor unit 1 may be a wall-mounted indoor unit, a ceiling-mounted indoor unit, or a vertical indoor unit.
  • This application also proposes an air conditioner, which includes an air-conditioning outdoor unit and an air-conditioning indoor unit.
  • the air-conditioning indoor unit is in communication with the air-conditioning outdoor unit.
  • the specific structure of the air-conditioning indoor unit refers to the foregoing embodiment.
  • the air conditioner adopts all the technical solutions of all the above embodiments, and therefore has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated one by one here.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Filtering Of Dispersed Particles In Gases (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

一种集尘盒组件(30),包括盒体(300)、集尘盖(310)、吸尘盖(320)、复位件(330)以及排尘挡板(350),盒体(300)内设有容腔(303),盒体(300)具有与容腔(303)相连通的集尘口(301)和排尘口(302);集尘盖(310)与盒体(300)活动连接,以打开和关闭集尘口(301);吸尘盖(320)与盒体(300)转动连接,且可相对排尘口(302)转动;复位件(330)驱动吸尘盖(320)朝靠近排尘口(302)的方向复位运动;排尘挡板(350)位于吸尘盖(320)面向排尘口(302)的一侧,排尘挡板(350)的一侧用于与吸尘盖(320)抵接,另一侧用于关闭和打开排尘口(302)。另外还公开了一种具有该集尘盒组件(30)的空调室内机(1)及空调器。

Description

集尘盒组件、空调室内机及空调器
本申请以2018年7月2日申请的,申请名称为“集尘盒组件、空调室内机及空调器”,申请号为“201821038691.4”的中国申请为优先权。
技术领域
本申请涉及空调器技术领域,特别涉及一种集尘盒组件、空调室内机及空调器。
背景技术
随着人们生活水平的提高,空调器已经成为人们日常生活中不可缺少的电器之一,空调器通常包括空调室内机和空调室外机,对空调室内机而言,通常会在其进风口处设置过滤网,以对进入空调室内机内部的空气进行过滤。在空调室内机的长期运行过程中,灰尘会逐渐附着在过滤网上,使得过滤网产生脏堵问题。为了防止过滤网沾满灰尘,避免过滤网的脏堵缺陷,通常会在进风口处安装除尘机构和集尘盒,除尘机构用于刷落过滤网上的灰尘,集尘盒用于承接除尘机构刷落的灰尘。
为了便于对集尘盒内收集的灰尘进行清理,集尘盒上开设有排尘口,进而通过外接吸尘吸的方式,将集尘盒内的灰尘吸附带走。集尘盒上的排尘口处设置有吸尘盖,通过吸尘盖相对排尘口的转动,以打开和关闭排尘口。集尘盒上的排尘口与面板上的吸尘口密封贴合,在实际使用中,吸尘盖的转动调整范围较小,为了保证排尘口与吸尘口的贴合,吸尘口与吸尘盖的距离也较近,而当将集尘盒应用于其他空调机型时,存在面板的吸尘口与吸尘盖之间的距离较远的情形,如此一来,在保证吸尘盖关闭排尘口时,很难做到排尘口与吸尘口之间的贴合,进而导致集尘盒内的灰尘从集尘盒与吸尘口的缝隙渗入空调内部,对空调内部造成污染。
申请内容
本申请的主要目的是提出一种集尘盒组件,用于空调室内机,旨在当面板的吸尘口与吸尘盖间距较大时,方便排尘口与吸尘口密封贴合。
为实现上述目的,本申请提出集尘盒组件包括:
盒体,内设有容腔,所述盒体具有与所述容腔相连通的集尘口和排尘口;
集尘盖,与所述盒体活动连接,以打开和关闭所述集尘口;
吸尘盖,与所述盒体转动连接,且可相对排尘口转动;
复位件,驱动所述吸尘盖朝靠近所述排尘口的方向复位运动;以及
排尘挡板,位于所述吸尘盖面向所述排尘口的一侧,所述排尘挡板的一侧用于与所述吸尘盖抵接,另一侧用于关闭和打开所述排尘口。
可选地,所述盒体内设有安装板,所述安装板将所述容腔分隔为安装腔和集尘腔,所述排尘口设于所述安装腔的腔壁,所述安装腔和所述集尘腔连通,所述集尘口设于所述集尘腔的腔壁;
所述吸尘盖与安装板枢接,以使所述吸尘盖相对所述排尘口摆动。
可选地,所述排尘挡板与所述安装腔的腔壁转动连接,所述排尘挡板与所述吸尘盖两者的转动轴线的延伸方向一致。
可选地,所述排尘挡板的转动轴线与所述吸尘盖的转动轴线呈间隔设置。
可选地,所述吸尘盖面向所述排尘挡板的一侧凸设有抵接凸起,所述抵接凸起与所述排尘挡板抵接。
可选地,所述抵接凸起设有导向斜面,所述导向斜面与所述排尘挡板的远离其转动轴线的一侧边缘滑动抵接。
可选地,所述排尘挡板上靠近其一侧边缘、且朝其两端方向分别延伸有枢轴,所述安装腔的腔壁对应所述枢轴设有轴孔;
所述排尘挡板上靠近其一枢轴的位置处开设有弹性开口。
可选地,所述集尘盒组件还包括安装于所述安装腔的腔壁上的扭簧固定座,所述扭簧固定座上设置有转轴;
所述复位件为套设于所述转轴上的扭簧,所述扭簧的一端与所述安装腔的腔壁抵接,另一端与所述吸尘盖抵接。
可选地,所述排尘挡板背对所述吸尘盖的一侧凸设有与吸尘器的吸尘管口相抵接的防密封凸起,所述防密封凸起可活动贯穿所述排尘口。
可选地,所述防密封凸起在其凸出方向上呈渐缩设置。
可选地,所述集尘口和所述排尘口沿所述盒体的长度排布,且所述集尘口和所述排尘口分别位于所述盒体的不同侧。
可选地,所述盒体上还设置有通风口,所述通风口和所述集尘口分别靠近所述盒体的两端处设置。
可选地,所述集尘盖与所述吸尘盖呈一体设置。
本申请还提出一种空调室内机,包括壳体、过滤网、除尘机构以及集尘盒组件,其中,集尘盒组件包括盒体、集尘盖、吸尘盖、复位件以及排尘挡板,所述盒体内设有容腔,所述盒体具有与所述容腔相连通的集尘口和排尘口;所述集尘盖与所述盒体活动连接,以打开和关闭所述集尘口;所述吸尘盖与所述盒体转动连接,且可相对排尘口转动;所述复位件驱动所述吸尘盖朝靠近所述排尘口的方向复位运动; 所述排尘挡板位于所述吸尘盖面向所述排尘口的一侧,所述排尘挡板的一侧用于与所述吸尘盖抵接,另一侧用于关闭和打开所述排尘口;所述壳体设置有进风口、出风口、吸尘口以及将所述进风口和出风口连通的换热通道,所述过滤网安装于所述进风口处,所述除尘机构安装于所述过滤网上,所述集尘盒组件邻近所述过滤网设置,所述集尘盒组件的盒体上的集尘口朝向所述过滤网设置,所述盒体上的排尘口与所述吸尘口连通设置。
本申请还提出一种空调器,包括空调室外机和空调室内机,所述空调室内机与所述空调室外机管路连通,所述空调室内机包括壳体、过滤网、除尘机构以及集尘盒组件,其中,集尘盒组件包括盒体、集尘盖、吸尘盖、复位件以及排尘挡板,所述盒体内设有容腔,所述盒体具有与所述容腔相连通的集尘口和排尘口;所述集尘盖与所述盒体活动连接,以打开和关闭所述集尘口;所述吸尘盖与所述盒体转动连接,且可相对排尘口转动;所述复位件驱动所述吸尘盖朝靠近所述排尘口的方向复位运动; 所述排尘挡板位于所述吸尘盖面向所述排尘口的一侧,所述排尘挡板的一侧用于与所述吸尘盖抵接,另一侧用于关闭和打开所述排尘口;所述壳体设置有进风口、出风口、吸尘口以及将所述进风口和出风口连通的换热通道,所述过滤网安装于所述进风口处,所述除尘机构安装于所述过滤网上,所述集尘盒组件邻近所述过滤网设置,所述集尘盒组件的盒体上的集尘口朝向所述过滤网设置,所述盒体上的排尘口与所述吸尘口连通设置。
本申请技术方案通过采用通过增设排尘挡板,当吸尘盖与排尘口的位置较远时,通过吸尘盖与排尘挡板之间的抵接,实现排尘挡板打开和关闭排尘口,此时,在实现排尘挡板关闭和打开排尘口的基础上,可更利于将面板上的吸尘口与排尘口进行贴合设置,进而保证在对集尘盒组件进行吸尘清理时,避免灰尘从吸尘口和排尘口的缝隙渗入到空调室内机的内部,避免了对空调室内机内部造成污染的风险。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请空调室内机一实施例的部分结构示意图;
图2为图1中空调室内机的排尘口处于关闭状态时的内部结构示意图;
图3为图2中A处的局部放大图;
图4为图2中空调室内机的排尘口处打开状态时的内部结构示意图;
图5为图2中空调室内机的集尘盒组件的结构示意图;
图6为图4中空调室内机的集尘盒组件的结构示意图;
图7为图5中集尘盒组件的盒体的部分结构示意图;
图8为图5中集尘盒组件的吸尘盖的部分结构示意图;
图9为图5中集尘盒组件的排尘挡板的一视角的结构示意图;
图10为图5中集尘盒组件的排尘挡板的另一视角的结构示意图。
附图标号说明:
标号 名称 标号 名称
1 空调室内机 307 安装板
10 面板 310 集尘盖
20 面框 320 吸尘盖
30 集尘盒组件 321 抵接凸起
100 吸尘口 322 导向斜面
300 盒体 330 复位件
301 集尘口 340 扭簧固定座
302 排尘口 341 转轴
303 容腔 350 排尘挡板
304 集尘腔 351 枢轴
305 安装腔 352 弹性开口
306 轴孔 353 防密封凸起
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其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至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种集尘盒组件,用于空调室内机其中,空调室内机可以为壁挂式室内机、吊顶式室内机或立式室内机等,下面以壁挂式室内机微粒,对集尘盒组件作以具体说明。
对于壁挂式室内机而言,在其进风口设置有过滤网和除尘机构,其中,过滤网用于过滤经过进风口进入、并进行换热的空气,除尘机构用于刷落过滤网上的灰尘。在一些实施例中,该除尘机构包括滚动毛刷,该滚动毛刷可在驱动电机以及相关驱动组件的带动下,沿着过滤网表面滚动,进而将过滤网上的灰尘刷落;然除尘机构的实现方式不尽于此,还可通过其它方式来实现,此处不再一一赘述。集尘盒组件的作用是收集除尘机构刷落的灰尘。为了便于对集尘盒组件收集的灰尘进行清理,可通过如吸尘器等一类的吸附装置,对集尘盒组件内部进行吸尘清理。
在本申请一实施例中,如图1至图6所示,该集尘盒组件30包括盒体300、集尘盖310、吸尘盖320、复位件330以及排尘挡板350,其中:盒体300内设有容腔303,盒体300具有与容腔303相连通的集尘口301和排尘口302;集尘盖310与盒体300活动连接,以打开和关闭集尘口301;吸尘盖320与盒体300转动连接,且可相对排尘口302转动;复位件330驱动吸尘盖320朝靠近排尘口302的方向复位运动;排尘挡板350位于吸尘盖320面向排尘口302的一侧,排尘挡板350的一侧用于与吸尘盖320抵接,另一侧用于关闭和打开排尘口302。
盒体300通常安装在壁挂式室内机的面框20上,盒体300可采用螺钉、卡扣或磁性吸附等方式可拆卸的固定在面框20上,以便于盒体300的安装以及后期对盒体300的拆卸清洁。盒体300上的集尘口301位于除尘机构的下方,其具体位置以保证除尘机构刷落的灰尘落入容腔303内为准。通过拆卸盒体300,可以对对收集在容腔303内的灰尘进行清理,该清理方式较为繁琐。而盒体300上开设排尘口302,可方便对盒体300的清理,即通过外接吸尘器的方式,将吸尘器与排尘口302相连通,如此可轻易地将容腔303内的灰尘吸出。
值得说明的是,为了保证壁挂式室内机的外观美化度,集尘盒组件30的盒体300一般设置在面板10的内侧,而面板10上则对应排尘口302开设有供吸尘器的转接头插入的吸尘口100。可以理解的是,盒体300上的排尘口302与吸尘口100是连通的,且排尘口302的边缘最好是与吸尘口100的边缘密封贴合或者密封抵接,进而以保证在吸尘器吸尘过程中,灰尘不会从吸尘口100与排尘口302的缝隙扩散到壁挂式空调器的内部,避免吸尘过程造成内部污染的缺陷。
盒体300的排尘口302处设置有吸尘盖320、排尘挡板350和复位件330,吸尘盖320与盒体300转动连接,吸尘盖320可相对排尘口302转动,排尘挡板350位于吸尘盖320面向排尘口302的一侧;复位件330具有弹性复位效果,可在自身弹力作用下,驱动吸尘盖320朝靠近排尘口302的方向复位运动。在复位件330的作用下,吸尘盖320带动排尘挡板350,使得排尘挡板350盖合排尘口302。
与现有技术中吸尘盖320直接盖合排尘口302的方案相比,本实施例中,通过增设排尘挡板350,并通过排尘挡板350实现对排尘口302的盖合,进而可扩展排尘口302的设置位置,也利于将盒体300的排尘口302与面板10上的吸尘口100对应设置。可以理解的是,当吸尘盖320与排尘口302的位置较远时(由于吸尘口100与排尘口302相对贴合设置,吸尘盖320与吸尘口100的位置也相对较远),通过吸尘盖320与排尘挡板350之间的抵接,实现排尘挡板350打开和关闭排尘口302;也就是说,在实现排尘挡板350关闭和打开排尘口302的基础上,可更利于将面板10上的吸尘口100与排尘口302进行贴合设置,进而保证在对集尘盒组件30进行吸尘清理时,避免灰尘从吸尘口100和排尘口302的缝隙渗入到壁挂式室内机1的内部,避免了对壁挂式室内机1内部造成污染的风险。
下面对本集尘盒组件30的工作原理作以简要说明:
在除尘状态下,参照图3,并结合图5,壁挂式室内机的除尘机构开设动作,盒体300的集尘盖310将集尘口301打开,此时灰尘被收集在盒体300的容腔303内。其中,在复位件330的作用下,排尘挡板350将盒体300的排尘口302关闭,即排尘口302是处于常闭状态的。
在吸尘状态下,参照图4,并结合图6,用户将吸尘器的转接头插入面板10的吸尘口100,此时转接头会将排尘挡板350顶起,此时排尘口302被打开,盒体300的集尘盖310将集尘口301部分关闭或者完全关闭,在吸尘器的吸附作用下,容腔303内的灰尘被吸出盒体300,实现对盒体300的吸尘清洁。
其中,盒体300上可设置有专门用于通气的通风口,如此一来,可在吸尘器对盒体300进行吸尘时,对盒体300进行空气补充,防止盒体300内产生负压,以利于吸尘器的工作。当然,在一些变形实施例中,上述盒体300也可不单独设置通风口,而是通过将集尘口301部分关闭的方式来实现通风口的功能。
本实施例中,盒体300上优选设置有通风口,通风口和集尘口301分别靠近盒体300的两端处设置。如此一来,在吸尘器对盒体300内进行吸附时,盒体300的气流从盒体300的一端流向盒体300的另一端,进而导致盒体300内的灰尘都能被吸出。
进一步地,为了较好地对除尘机构刷落的灰尘进行收集,该盒体300优选沿过滤网的长度方向设置,集尘口301也优选沿过滤网的长度方向。
参照图5至图8,为了便于安装吸尘盖320,本实施例中,盒体300内设置有安装板307,安装板307将容腔303分隔为安装腔305和集尘腔304,其中集尘腔304和安装腔305沿盒体300的长度方向排布,排尘口302位于安装腔305的腔壁,集尘口301位于集尘腔304的腔壁,安装腔305和集尘腔304相互连通,吸尘盖320与安装板307枢接,使得吸尘盖320相对排尘口302摆动。其中,在复位件330的作用下,吸尘盖320靠近排尘口302时,在吸尘盖320的带动下,排尘挡板350关闭排尘口302;在吸尘器的转接头顶起排尘挡板350时,此时吸尘盖320随着排尘挡板350一同被顶起,复位件330被压缩,此时吸尘器与安装腔305的内部连通。
排尘挡板350的安装方式有多种,例如排尘挡板350可固定在吸尘盖320面向排尘口302的一侧,或者排尘挡板350与安装腔305的腔壁转动连接。在本实施例中,排尘挡板350优选与安装腔305的腔壁转动连接,排尘挡板350与吸尘盖320两者的转动轴线的延伸方向一致。如此一来,排尘挡板350自身是可以转动的,进而当吸尘器的转接头抵接到排尘挡板350时,排尘挡板350自身可相对排尘口302转动,进而将排尘口302打开。
进一步地,排尘挡板350的转动轴线与吸尘盖320的转动轴线呈间隔设置,此时排尘挡板350和吸尘盖320两者的转动中心具有一定的间隔,当排尘挡板350与吸尘盖320抵接时,排尘口302的可设置位置的位置区域更大,进而利于将排尘口302的边缘与吸尘口100的边缘贴合。
在上述实施例中,为了更好地实现,吸尘盖320与排尘挡板350之间的抵接,吸尘盖320面向排尘挡板350的一侧凸设有抵接凸起321,抵接凸起321与排尘挡板350抵接。如此一来,可降低吸尘盖320和/或排尘挡板350的自身厚度,进而可保证两者的可靠抵接。
为了便于在吸尘盖320与排尘挡板350在转动过程中,均可实现较好的抵接效果,上述抵接凸起321设有导向斜面322,导向斜面322与排尘挡板350的远离其转动轴线的一侧边缘滑动抵接。可以理解的是,由于吸尘盖320和排尘挡板350两者同时转动,且其转动轴线不同,进而在吸尘盖320与排尘挡板350的抵接位置在转动过程中,会发生移动,因此,通过设置导向斜面322,可利于吸尘盖320和排尘挡板350的转动。
在本实施例中,参照图6和图7,并结合图9和图10,排尘挡板350上设置有枢轴351,安装腔305的腔壁上设置有轴孔306,为了便于排尘挡板350的安装,本实施例中,对排尘挡板350的结构进行了相应的改进,该排尘挡板350的具体结构如下:
排尘挡板350上靠近其一侧边缘、且朝其两端方向分别延伸有枢轴351,安装腔305的腔壁对应枢轴351设有轴孔306;排尘挡板350上靠近其一枢轴351的位置处开设有弹性开口352。
可以理解的是,通过设置弹性开口352,可使得靠近弹性开口352一侧枢轴351具有一定的弹性,即可朝向另一枢轴351的方向进行收缩,进而便于将枢轴351装入轴孔306内,实现排尘挡板350的轻易安装。
在本实施例中,集尘盒组件30还包括安装于安装腔305的腔壁上的扭簧固定座340,扭簧固定座340上设置有转轴341;复位件330为套设于转轴341上的扭簧,扭簧的一端与安装腔305的腔壁抵接,另一端与吸尘盖320抵接。当然,与其他实施中,转轴341可直接设置在安装腔305的腔壁上,或者复位件330可以为其他弹片、拉簧等弹性件。
进一步地,为了避免在吸尘器进行吸尘时,排尘挡板350将吸尘器的吸尘管口堵塞,在本实施例中,排尘挡板350背对吸尘盖320的一侧凸设有与吸尘器的吸尘管口相抵接的防密封凸起353,防密封凸起353可活动贯穿排尘口302。如此一来,吸尘器的转接头插入面板10的吸尘口100,转接头自吸尘口100伸入至排尘口302内,转接头的吸尘管口的边缘与防密封凸起353抵接,降低了吸尘管口与排尘挡板350的抵接面积,进而使得排尘挡板350的板面不会将吸尘管口遮盖、堵塞。
为了更好地防止吸尘管口被遮盖、堵塞,上述防密封凸起353在其凸出方向上呈渐缩设置,如此一来,防密封凸起353与吸尘管口的抵接面积更小,进而保证吸尘器与排尘口302的有效连通。
在本实施例中,集尘口301和排尘口302沿盒体300的长度排布,且集尘口301和排尘口302分别位于盒体300的不同侧。此时,集尘口301的位置朝向过滤网设置,排尘口302的位置朝向面板10设置,进而使得面板10的吸尘口100更容易与排尘口302对齐,降低设计难度。
集尘盖310和吸尘盖320可单独设置,即集尘盖310单独打开和关闭集尘口301,吸尘盖320也单独转动以带动排尘挡板350关闭排尘口302;集尘盖310也可与吸尘盖320呈一体设置,并且集尘盖310打开集尘口301时,吸尘盖320抵接排尘挡板350使其关闭排尘口302;排尘挡板350将吸尘盖320顶起时,排尘口302处于打开状态,而此时集尘盖310则将集尘口301关闭。其中,本实施例中,集尘盖310优选与吸尘盖320呈一体设置,此时可提高集尘盒组件30的结构紧凑性。
参照图1和图2,本申请还提出一种空调室内机1,该空调室内机1包括壳体、过滤网、除尘机构以及集尘盒组件30,该集尘盒组件30的具体结构参照上述实施例,由于本空调室内机1采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。其中,所述壳体设置有进风口、出风口、吸尘口100以及将所述进风口和出风口连通的换热通道,所述过滤网安装于所述进风口处,所述除尘机构安装于所述过滤网上,所述集尘盒组件30邻近所述过滤网设置,所述集尘盒组件30的盒体300上的集尘口301朝向所述过滤网设置,所述盒体300上的排尘口302与所述吸尘口100连通设置。
可以理解的是,除尘机构用于刷落过滤网上的灰尘,集尘盒用于承接除尘机构刷落的灰尘;集尘盒的内收集的灰尘可以通过外接吸尘器的方式被吸附清理。该空调室内机1可以为壁挂式室内机、吊顶式室内机或立式室内机等。
本申请还提出一种空调器,该空调器包括空调室外机和空调室内机,所述空调室内机与所述空调室外机管路连通,该空调室内机的具体结构参照上述实施例,由于本空调器采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的发明构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (15)

  1. 一种集尘盒组件,被配置为用于空调室内机,其特征在于,所述集尘盒组件包括:
    盒体,内设有容腔,所述盒体具有与所述容腔相连通的集尘口和排尘口;
    集尘盖,与所述盒体活动连接,被配置为打开和关闭所述集尘口;
    吸尘盖,与所述盒体转动连接,且可相对排尘口转动;
    复位件,驱动所述吸尘盖朝靠近所述排尘口的方向复位运动;以及
    排尘挡板,位于所述吸尘盖面向所述排尘口的一侧,所述排尘挡板的一侧被配置为与所述吸尘盖抵接,另一侧被配置为关闭和打开所述排尘口。
  2. 如权利要求1所述的集尘盒组件,其特征在于,所述盒体内设有安装板,所述安装板将所述容腔分隔为安装腔和集尘腔,所述排尘口设于所述安装腔的腔壁,所述安装腔和所述集尘腔连通,所述集尘口设于所述集尘腔的腔壁;
    所述吸尘盖与安装板枢接,以使所述吸尘盖相对所述排尘口摆动。
  3. 如权利要求2所述的集尘盒组件,其特征在于,所述排尘挡板与所述安装腔的腔壁转动连接,所述排尘挡板与所述吸尘盖两者的转动轴线的延伸方向一致。
  4. 如权利要求3所述的集尘盒组件,其特征在于,所述排尘挡板的转动轴线与所述吸尘盖的转动轴线呈间隔设置。
  5. 如权利要求3所述的集尘盒组件,其特征在于,所述吸尘盖面向所述排尘挡板的一侧凸设有抵接凸起,所述抵接凸起与所述排尘挡板抵接。
  6. 如权利要求5所述的集尘盒组件,其特征在于,所述抵接凸起设有导向斜面,所述导向斜面与所述排尘挡板的远离其转动轴线的一侧边缘滑动抵接。
  7. 如权利要求3所述的集尘盒组件,其特征在于,所述排尘挡板上靠近其一侧边缘、且朝其两端方向分别延伸有枢轴,所述安装腔的腔壁对应所述枢轴设有轴孔;
    所述排尘挡板上靠近其一枢轴的位置处开设有弹性开口。
  8. 如权利要求2所述的集尘盒组件,其特征在于,所述集尘盒组件还包括安装于所述安装腔的腔壁上的扭簧固定座,所述扭簧固定座上设置有转轴;
    所述复位件为套设于所述转轴上的扭簧,所述扭簧的一端与所述安装腔的腔壁抵接,另一端与所述吸尘盖抵接。
  9. 如权利要求1所述的集尘盒组件,其特征在于,所述排尘挡板背对所述吸尘盖的一侧凸设有与吸尘器的吸尘管口相抵接的防密封凸起,所述防密封凸起可活动贯穿所述排尘口。
  10. 如权利要求9所述的集尘盒组件,其特征在于,所述防密封凸起在其凸出方向上呈渐缩设置。
  11. 如权利要求1所述的集尘盒组件,其特征在于,所述集尘口和所述排尘口沿所述盒体的长度排布,且所述集尘口和所述排尘口分别位于所述盒体的不同侧。
  12. 如权利要求1所述的集尘盒组件,其特征在于,所述盒体上还设置有通风口,所述通风口和所述集尘口分别靠近所述盒体的两端处设置。
  13. 如权利要求1至12中任意一项所述的集尘盒组件,其特征在于,所述集尘盖与所述吸尘盖呈一体设置。
  14. 一种空调室内机,其特征在于,包括壳体、过滤网、除尘机构以及如权利要求1至13中任意一项所述的集尘盒组件,所述壳体设置有进风口、出风口、吸尘口以及将所述进风口和出风口连通的换热通道,所述过滤网安装于所述进风口处,所述除尘机构安装于所述过滤网上,所述集尘盒组件邻近所述过滤网设置,所述集尘盒组件的盒体上的集尘口朝向所述过滤网设置,所述盒体上的排尘口与所述吸尘口连通设置。
  15. 一种空调器,其特征在于,包括空调室外机和如权利要求14所述的空调室内机,所述空调室内机与所述空调室外机管路连通。
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