WO2020259043A1 - 滤网、滤网清洗装置及空调器 - Google Patents
滤网、滤网清洗装置及空调器 Download PDFInfo
- Publication number
- WO2020259043A1 WO2020259043A1 PCT/CN2020/086535 CN2020086535W WO2020259043A1 WO 2020259043 A1 WO2020259043 A1 WO 2020259043A1 CN 2020086535 W CN2020086535 W CN 2020086535W WO 2020259043 A1 WO2020259043 A1 WO 2020259043A1
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- WIPO (PCT)
- Prior art keywords
- filter screen
- water
- diversion channel
- diversion
- air conditioner
- Prior art date
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/0007—Indoor units, e.g. fan coil units
- F24F1/0071—Indoor units, e.g. fan coil units with means for purifying supplied air
- F24F1/0073—Indoor units, e.g. fan coil units with means for purifying supplied air characterised by the mounting or arrangement of filters
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/22—Cleaning ducts or apparatus
- F24F2221/225—Cleaning ducts or apparatus using a liquid
Definitions
- the embodiment of the present disclosure relates to a filter, a filter cleaning device and an air conditioner.
- a filter In the vertical air conditioner, in order to filter the dust and impurities in the air, a filter is usually installed at the air inlet of the vertical air conditioner.
- certain dust and impurities tend to accumulate on the filter. If the filter is not cleaned for a long time, it will cause the air inlet to decrease, thereby reducing the performance of the air conditioner, and will also affect the air quality, causing the air conditioner to produce a certain odor. Therefore, the filter screen needs to be removed for cleaning.
- the embodiments of the present disclosure are completed in view of the above-mentioned known technology conditions, and their purpose is to provide an air conditioner filter, which improves the structure of the filter without disassembling the filter.
- an embodiment of the present disclosure provides a filter screen, the filter screen is provided with a diversion channel; the diversion channel is provided with a water outlet, which is in communication with the diversion channel.
- the traditional filter screen can be strengthened.
- the water flows in the diversion channel the water flows out from the water outlet, which can directly form the effect of the filter screen. Cleaning, without disassembling the filter screen, and then cleaning, avoiding unnecessary trouble.
- the filter screen is further provided with a water receiving groove, the water receiving groove is located above the diversion channel, and the water receiving groove is suitable for collecting water.
- the water receiving tank through the arrangement of the water receiving tank, a certain amount of water is collected in the water receiving tank first, and the water receiving tank is connected with the diversion channel, and the water in the water receiving tank flows into the diversion channel, And it is discharged through the water outlet, and the dust and impurities on the filter screen are taken away by the water flow to realize the cleaning of the filter screen.
- the water receiving tank is provided with a water leakage hole, which is provided at the bottom of the water receiving tank and/or the inner side wall of the water receiving tank near the side of the filter screen.
- the water in the water receiving tank can flow out from the water leakage hole and flow down the filter screen, and the dust and impurities on the filter screen are taken away by the water flow, so that the filter screen can be cleaned.
- the diversion channel includes a first diversion channel, the projection of the first diversion channel in the transverse direction of the filter screen matches the transverse cross section of the filter screen, and the water outlet and the second A diversion channel is connected.
- the water in the first diversion channel can flow out from different positions, and multiple positions on the filter screen can be cleaned, and even the washing area of the water flowing out of the water outlet can cover the entire transverse surface of the filter screen.
- first diversion channels there are a plurality of first diversion channels, and the plurality of first diversion channels are arranged along the longitudinal direction of the filter screen.
- the filter screen is divided into several areas in the longitudinal direction, and the adjacent area below it is cleaned through each first diversion channel, which can form a layered cleaning of the filter screen to prevent water from flowing down.
- the cleaning path is too long, resulting in incomplete cleaning, or too much water in the upper layer, causing the water to splash out.
- the diversion channel further includes a second diversion channel, and the second diversion channel communicates the water receiving groove with the first diversion channel.
- the communication between the first diversion channel and the water receiving tank is realized, so that each layer of the first diversion channel can convey a certain amount through the second diversion channel. Water, so that every layer of the filter can be cleaned.
- the embodiment of the present disclosure additionally provides a filter cleaning device, including any one of the air conditioner filters described above, and further including: a water storage device installed on the air conditioner; The water in the water storage device is guided to the diversion channel.
- the water in the water outlet device is guided to the filter through the setting of the guide device.
- the net takes away the dust and impurities on the filter net through the water flow to realize the cleaning of the filter net.
- the diversion device includes a diversion tube, which is connected to the water storage device and is suitable for guiding the water in the water storage device to the diversion channel.
- the water in the water storage device is directly guided to the filter screen through the diversion tube, so as to realize the cleaning of the filter screen.
- the embodiment of the present disclosure also provides an air conditioner, including any one of the above-mentioned filter cleaning devices.
- the beneficial effects of the air conditioner are the same as those of the filter cleaning device, which will not be repeated here.
- the air conditioner includes an upper mounting seat and a lower mounting seat, and the filter is installed at the air inlet of the air conditioner through the upper mounting seat and the lower mounting seat, so that the filter is located Between the device and the housing.
- the installation of the filter screen is realized by the upper mounting seat and the lower mounting seat, so that the filter screen covers the outside of the evaporator.
- a water receiving pan is provided on the lower mounting seat, which is suitable for collecting water flowing down the filter screen, and a drainage port is provided on the water receiving pan.
- Figure 1 is an exploded view of the filter screen installation structure in the embodiment of the disclosure
- FIG. 2 is a schematic diagram of the installation structure of the filter screen in the embodiment of the disclosure.
- Fig. 3 is a schematic structural diagram of a filter cleaning device in an embodiment of the disclosure.
- Figure 4 is a partial enlarged view of I in Figure 2;
- Fig. 5 is a partial enlarged view of position II in Fig. 1;
- Figure 6 is a partial enlarged view at III in Figure 1;
- Fig. 7 is a partial enlarged view at IV in Fig. 1;
- Figure 8 is a partial enlarged view of V in Figure 1;
- FIG. 9 is a schematic diagram of the structure of the upper mounting seat in the embodiment of the disclosure.
- FIG. 10 is a schematic diagram of the structure of the lower mounting seat in the embodiment of the disclosure.
- FIG. 11 is a schematic diagram of the structure of the filter screen in the embodiment of the disclosure.
- FIG. 12 is a schematic cross-sectional view of the filter screen in the embodiment of the disclosure.
- Figure 13 is a partial enlarged view of VI in Figure 12;
- Fig. 14 is a partial enlarged view at VII in Fig. 11.
- 1- water storage device 11- diversion tube, 2- filter screen, 20- second diversion channel, 21- card edge, 22- limit part, 23- boss, 24- waist hole, 25- plug Groove, 26-fifth screw hole, 27-limiting edge, 28-sinking groove, 29-leakage hole, 3-upper mounting seat, 30-second screw hole, 31-drainage tube, 32-clamping structure, 33 -Connector, 34- Fourth screw hole, 35- Limiting boss, 36- Seventh screw hole, 37- Support plate, 4- Lower mounting seat, 41- Limit slot, 42- Clamping part, 43 -Limiting plate, 44- first screw hole, 45- water drain, 46- water tray, 5- evaporator, 51- third screw hole, 61- first diversion channel, 62- water outlet.
- connection should be interpreted broadly. For example, they can be fixed or detachable. Connection, or rotation connection; it can be mechanical connection; it can be directly connected, or indirectly connected through an intermediate medium, it can be the internal communication between two components.
- connection or rotation connection; it can be mechanical connection; it can be directly connected, or indirectly connected through an intermediate medium, it can be the internal communication between two components.
- this embodiment provides a filter screen installation structure, which is suitable for installing the filter screen 2 on the air inlet of an air conditioner, the air conditioner including an upper mounting seat 3 and a lower mounting seat 4.
- the filter screen installation structure includes: a limiting groove 41 which is provided on the upper mounting seat 3 and/or the lower mounting seat 4, and the filter screen is mated with the limiting groove 41.
- the upper mounting seat 3 and the lower mounting seat 4 are usually used to install the cross-flow fan or the evaporator 5, here the filter 2 is installed on the upper mounting seat 3 and/or the On the lower mounting seat 4, here, the filter screen 2 is installed on the upper mounting seat 3 and/or the lower mounting seat 4, so as to ensure that the filter screen 2 covers the surface of the evaporator 5, and Located between the evaporator and the air conditioner casing.
- the limiting groove 41 may be provided on the lower side of the upper mounting seat 3, which is the upper end of the filter screen 2 inserted into the limiting groove 41; the limiting groove 41 may also be provided On the upper side of the lower mounting seat 4, at this time, the lower end of the filter screen 2 is inserted into the limiting groove 41; the limiting groove 41 may also be provided on the upper side of the lower mounting seat 4 and On the lower side of the upper mounting base 3, at this time, the upper mounting base 3 and the lower mounting base 4 have the position of the limiting groove 41 corresponding up and down, so that the upper and lower ends of the filter screen 2 can be At the same time, they are inserted into the limiting grooves 41 on the upper mounting base 3 and the lower mounting base 4 respectively.
- the limiting groove 41 is an arc-shaped groove, so that multiple degrees of freedom of the filter screen 2 can be limited.
- the filter screen 2 when the filter screen 2 is inserted into the limiting groove 41, the position of the filter screen 2 is limited by the limiting slot 41 to avoid shaking of the filter screen 2.
- the filter screen 2 is mounted on the upper mounting base 3 and/or the lower mounting base 4 through the upper and lower ends of the limit, and is fixed by the upper mounting base 3 and/or the lower mounting base 4 The filter screen 2 is fixed. Since the contact between the limiting groove 41 and the filter screen 2 is surface contact, the fixing area of the filter screen 2 is increased.
- the filter screen installation structure further includes: a clamping member 42 and a limiting portion 22, the clamping member 42 and the limiting portion 22 are respectively disposed at the bottom of the limiting groove 41 and the On the strainer 2.
- the limiting portion 22 is a clamping hole, and the clamping member 42 may be arranged at the bottom of the limiting groove 41.
- a clamping edge 21 is provided on the filter screen 2 and the clamping edge 21
- the clamping hole is provided on the clamping member 42 and a limiting protrusion is provided on the clamping member 42.
- the clamping member 42 is inserted into the clamping hole and is clamped with the clamping hole through the limiting protrusion.
- the clamping member 42 can also be arranged on the filter screen 2, and in this case, corresponding clamping holes can be arranged at the bottom of the limiting groove 41 accordingly.
- the clamping member 42 is arranged on the lower mounting seat 4.
- the upper mounting seat 3 is also provided with a clamping structure 32 having the same structure as the clamping member 42, and a clamping structure 32 corresponding to the clamping structure 32 is also provided on the filter screen 2. ⁇ Connecting department.
- the advantage of this arrangement is that by setting the clamping member 42 in the limiting slot 41, the clamping member 42 can be hidden.
- the clip 42 plays a role in positioning the filter screen 2 so as to further limit the position of the filter screen 2.
- the filter screen installation structure further includes: a limit plate 43, which is arranged on the upper mounting seat 3 and/or the lower mounting seat 4, so The inner side of the limiting plate 43 is suitable for limiting the filter screen 2.
- the inner side of the limiting plate 43 refers to the side of the limiting plate 43 close to the inside of the air conditioner.
- the limit plate 43 can be arranged on the lower mounting seat 4. At this time, the lower left corner of the filter screen 2 in FIG. 3 is located inside the limit plate 43; the limit plate 43 can be arranged In the upper mounting seat 3, at this time, the upper left corner of the filter screen 2 in Figure 3 is located inside the limiting plate 43; the limiting plate 43 can also be provided on the upper mounting seat 3 and the On the lower mounting seat 4, at this time, the lower left corner and the upper left corner of the filter screen 2 in FIG. 3 are located inside the lower mounting seat 4 and the limiting plate 43 on the upper mounting seat 3, respectively.
- the limiting plate 43 can also be provided in multiples to limit the corners of the filter screen 2 respectively.
- the filter screen installation structure further includes a boss 23, which is arranged on the filter screen 2, and the boss 23 is in contact with the inner side of the limiting plate 43.
- boss 23 when the limit plate 43 limits the filter screen 2, the limit plate 43 contacts the boss 23, as shown in FIG. 5 As shown, the boss 23 is arranged at the lower left corner of the filter screen 2 and corresponds to the position of the limiting plate 43. Through the arrangement of the boss 23, on the one hand, the contact area between the boss and the limit plate 43 can be reduced, and local non-contact caused by the excessive area can be avoided, resulting in vibration between the limit plate 43 and the filter screen 2. ; On the other hand, the boss itself has a certain thickness, which can fill the gap between the limit plate 43 and the filter screen 2.
- the filter screen installation structure further includes: a first screw hole 44 and a waist-shaped hole 24, which are respectively provided on the limiting plate 43 and the filter screen 2.
- the first screw hole 44 matches the waist-shaped hole 24, and is suitable for fixing the filter screen 2 to the limiting plate 43 by screws.
- the first screw hole 44 can be provided on the limiting plate.
- the waist-shaped hole 24 shown is provided on the filter screen 2; the first screw hole 44 can also be provided on the filter screen 2.
- the waist-shaped hole 24 is set on the limiting plate.
- the filter screen 2 and the limiting plate 43 are fixed by screw fastening, so that the filter screen 2 and the limiting plate 43 form a tight connection; on the other hand, through the The arrangement of the waist-shaped hole 24 provides a certain installation margin for screw fastening, and facilitates the alignment of the first screw hole 44 with the waist-shaped hole.
- the filter screen installation structure further includes: a second screw hole 30 and a third screw hole 51, which are respectively provided on the evaporator 5 and the filter screen 2, the second screw hole 30 and The third screw holes 51 are matched and are suitable for fixing the filter screen 2 to the evaporator 5 by screws.
- a lug is provided on the evaporator 5
- the third screw hole 51 is provided on the lug
- a lug is provided on the filter screen 2
- a second lug is provided on the lug.
- the screw hole 30 passes through the second screw hole 30 and the third screw hole 51 to fix the filter screen 2 on the evaporator 5.
- the filter screen installation structure further includes a slot 25 and a plug 33, which are respectively disposed on the upper mounting seat 3 and the filter screen 2, and the slot 25 and the plug
- the connector 33 is mated and mated.
- the slot 25 may be provided on the upper side of the filter screen 2.
- the plug 33 is provided on the lower side of the upper mounting seat 3.
- the filter screen installation structure further includes a fourth screw hole 34 and a fifth screw hole 26, which are respectively disposed on the plug 33 and the slot 25.
- the fourth screw hole 34 matches the fifth screw hole 26, and is suitable for fixing the filter screen 2 to the upper mounting seat 3 by screws.
- the slot 25 is a structure that is open on both sides. As shown in FIG. 8, the side wall of the slot 25 is provided with the fifth screw hole 26, and the connector 33 is provided with a fourth screw hole. 34. The fourth screw hole 34 and the fifth screw hole 26 are aligned, and the filter screen 2 is fixed to the upper installation by passing a screw through the fourth screw hole 34 and the fifth screw hole 26 Seat 3.
- the advantage of this arrangement is that, on the one hand, the filter screen 2 and the upper mounting seat 3 are fixed, and the collision between the filter screen 2 and the upper mounting seat 3 is avoided.
- the screw is hidden in the slot 25.
- the filter screen installation structure further includes a support plate 37 and a support portion, which are respectively arranged on the upper mounting seat 3 and the filter screen 2.
- the support plate 37 and the support portion match, To limit the vertical direction of the filter screen 2.
- the support plate 37 may be provided on the upper mounting seat 3. At this time, the support portion is provided on the filter screen 2.
- the support portion may be the lower end surface of the water receiving tank 28, and the support plate The upper end surface of 37 is in contact with the lower end surface of the water receiving groove 28.
- the supporting plate 37 may also be arranged on the filter screen 2, at this time, the supporting portion is arranged on the upper mounting seat 3. The advantage of this arrangement is that the filter screen 2 is limited in the up and down direction through the interaction between the support plate and the support part.
- the filter screen 2 is also provided with a limiting edge 27, and the upper mounting seat 3 is provided on a limiting boss 35 corresponding to the limiting edge 27.
- the limiting edge 27 is arranged along the vertical direction, and the limiting edge 27 is in contact with the limiting boss 35.
- a sixth screw hole (not shown in the figure) is provided on the limiting side 27, a seventh screw hole 36 is provided on the limiting boss 35, and the sixth screw hole is connected to the The seventh screw hole 36 is matched, and is suitable for fixing the filter screen 2 and the upper mounting seat 3 by screws.
- This embodiment provides an air conditioner, including any of the above-mentioned filter installation structures.
- the air conditioner and the filter screen installation structure have the same beneficial effects, which will not be repeated here.
- this embodiment provides an air conditioner filter screen.
- the filter screen 2 is provided with a diversion channel; the diversion channel is provided with a water outlet 62 which is connected to the diversion channel.
- the channels are connected.
- the traditional filter structure is usually provided with many ribs, as shown in Figures 11 to 14, the diversion channel is equivalent to replacing the rib structure on the traditional filter 2, and the diversion channel is equivalent to being in the ribs.
- the design of the rib is replaced by the diversion channel, the pipeline is arranged in the filter screen, and the water outlet is opened at the corresponding position of the pipeline 62.
- the water flows out from the water outlet 62 to form the cleaning of the filter screen 2.
- the advantage of this arrangement is that by setting the diversion channel, on the one hand, the traditional filter screen can be strengthened. On the other hand, when water flows in the diversion channel, the water flows out from the water outlet 62, which can be directly formed The filter screen 2 is cleaned without disassembling the filter screen 2 before cleaning, which avoids unnecessary troubles.
- the filter screen 2 is also provided with a water receiving groove 28, the water receiving groove 28 is located above the diversion channel, the water receiving groove 28 is suitable for collecting water, the water receiving groove 28 and the The diversion channel is connected.
- the water receiving tank 28 is provided on the filter screen 2, which can be an integral structure with the filter screen 2, and is manufactured by the filter screen 2 during integral molding.
- the water receiving groove 28 is arranged along the transverse cross-sectional profile of the filter screen 2, where the transverse direction refers to the horizontal direction of the filter screen 2 after installation.
- a water leakage hole 29 is provided on the water receiving tank 28.
- the water leakage hole 29 is provided on the filter screen 2 and communicates with the water receiving groove 28, which is equivalent to the water leakage hole 29 being provided on the inner side wall of the water receiving groove 28 near the side of the filter screen 2.
- the water leakage hole 29 is arranged at the lowest part of the inner side wall of the water receiving groove 28. At this time, the water in the water receiving tank 28 can flow out from the water leakage hole 29 and flow down from the filter screen 2, and the dust and impurities on the filter screen 2 are taken away by the water flow, and the filter screen 2 Perform cleaning.
- the second water leakage hole 29 can be used to clean the side of the filter screen 2 away from the water receiving tank 28.
- the water leakage hole 29 may also be provided at the bottom of the water receiving tank 28, that is, in order to avoid storing too much water in the water receiving tank 28, a water leakage hole 29 is provided at the bottom of the water receiving tank 28, so The water in the water receiving tank 28 flows out from the water leakage hole 29 and flows to the filter screen 2, and the dust and impurities on the filter screen 2 are taken away by the water flow to realize the cleaning of the filter screen 2. Setting the water leakage hole 29 at the bottom can ensure that there is no residual water in the water receiving tank 28, and at the same time, it can also realize the cleaning of the filter screen 2 on the side where the water receiving tank 28 is provided.
- a plurality of the water leakage holes 29 are distributed along the cross-sectional profile of the filter screen 2 on the inner side wall of the water receiving groove 28 close to the filter screen 2 and/or the bottom of the water receiving groove 28. This ensures that along the contour direction of the cross section of the filter screen 2, all water leakage holes 29 have accumulated water leaking out, so that the filter screen 2 can be cleaned more comprehensively along the contour direction of the cross section of the filter screen 2 .
- the diversion channel includes a first diversion channel 61, and the projection of the first diversion channel 61 in the transverse direction of the filter screen 2 matches the transverse cross section of the filter screen 2.
- the water outlet 62 is in communication with the first diversion channel 61.
- the projection of the first diversion channel 61 in the transverse direction of the filter screen 2 matches the transverse section of the filter screen 2, that is to say, the first diversion channel 61 can be along the filter screen 2.
- the first diversion channel 61 can also be arranged obliquely. It is only necessary to ensure that the projection of the first diversion channel 61 in the horizontal direction when the first diversion channel 61 is inclined is the same as the contour when it is arranged horizontally, that is, In other words, when the first diversion channel 61 is arranged obliquely, it can also cover the horizontal profile of the filter screen, which can ensure that the horizontal area of the filter screen 2 is completely cleaned.
- the first diversion channel 61 is a structure with a pipeline or a water tank structure, and a plurality of water outlets 62 are opened on the first diversion channel 61, so that the water in the first diversion channel 61 It flows out from different positions to clean multiple positions on the filter screen 2 so that the cleaning area of the water flowing out of the water outlet 62 covers the entire transverse surface of the filter screen 2.
- first diversion channels 61 there are multiple first diversion channels 61, and multiple first diversion channels 61 are arranged along the longitudinal direction of the filter screen 2.
- the longitudinal direction of the filter screen 2 refers to the vertical direction after the filter screen is installed, that is, a plurality of the first guide channels 61 are arranged in the longitudinal direction, which may be arranged in an array, so as to filter the filter in the longitudinal direction.
- the net is divided into several areas, and the adjacent area below it is cleaned through each first diversion channel 61, which can form a layered cleaning of the filter net 2, avoiding the long cleaning path when water flows down , Resulting in incomplete cleaning, or too much water in the upper layer, causing the water to splash.
- the diversion channel further includes a second diversion channel 20, and the second diversion channel 20 communicates the water receiving groove 28 with the first diversion channel 61.
- the first diversion channel 61 is horizontally arranged, and the second diversion channel 20 is vertically arranged, but the first diversion channel 61 and the second diversion channel 20
- the arrangement is not limited to this, and has been described above.
- the second diversion channel 20 only needs to connect the adjacent first diversion channels 61, or connect the water receiving groove 28 It communicates directly or indirectly with the first diversion channel 61.
- the second diversion channel 20 is only shown as a hole.
- the communication between the first diversion channel 61 and the water receiving tank 28 is realized, so that each layer of the first diversion channel 61 can be transported through the second diversion channel 20 A certain amount of water allows each layer of the filter to be cleaned.
- the second diversion channels 20 there are multiple second diversion channels 20, and multiple second diversion channels 20 communicate with the bottom of the water receiving groove 28, and the second diversion channels 20 can ensure the A certain amount of accumulated water remains in the water receiving groove 28, so as to ensure that along the outline direction of the cross section of the filter screen 2, all the second diversion channels 20 have accumulated water flowing out, so that the outline along the cross section of the filter screen can be realized
- the side of the filter screen 2 close to the water receiving tank 28 is cleaned more comprehensively.
- This embodiment provides a filter cleaning device, which includes any one of the above-mentioned filter 2, and further includes a water storage device 1, which is installed on the air conditioner; a diversion device, the diversion device is suitable for The water in the water storage device 1 is guided to the diversion channel.
- the water storage device 1 may be a water addition device in an air conditioner, or may be a water storage tank installed in the air conditioner.
- the diversion device may include a diversion tube 11 which is in communication with the water storage device 1 and is suitable for guiding the water in the water storage device 1 to the diversion channel.
- the draft tube 11 may be arranged below the water storage device 1, and the water outlet of the draft tube is arranged above the filter screen 2, and the water in the water storage device 1 is The guide tube 11 flows out and flows to the filter screen.
- the diversion device may also be a water extractor, and the water extractor can draw water from the water storage device 1 through a driving device and guide it to the diversion channel.
- the advantage of this arrangement is that through the setting of the water storage device 1, a certain amount of water is stored in the air conditioner.
- the water in the water outlet device is removed by the setting of the guide device. It is guided to the filter screen 2, and the dust and impurities on the filter screen 2 are taken away by the water flow, so that the filter screen 2 can be cleaned.
- This embodiment provides an air conditioner, including any one of the filter cleaning devices described above.
- the beneficial effects of the air conditioner are the same as those of the filter cleaning device described above, and will not be repeated here.
- the upper mounting seat 3 is provided with a drainage tube 31, the drainage tube 31 communicates with the diversion device, and is suitable for guiding the water discharged from the diversion device to the filter network.
- the drainage tube 31 is in communication with the drainage tube 11, and the outlet of the drainage tube 31 may be arranged above the water receiving tank 28, or in other words, the drainage tube 31 is in communication with the water receiving tank 28, So that the water flows to the water receiving tank 28, and then flows to the filter screen 2 through the water receiving tank 28; the water flowing out of the drainage pipe 31 can also directly flow to the filter screen 2, forming an opposite to the filter screen 2. Clean. In this way, it is possible to reduce the amount of water flowing out of the draft tube 11 splashing to areas other than the water receiving tank 28.
- a water receiving pan 46 is provided on the lower mounting base 4, which is suitable for collecting water flowing down the filter screen 2, and a drain port 45 is provided on the water receiving pan 46.
- the lower mounting seat 4 Since the filter screen 2 is installed through the lower mounting seat 4, the lower mounting seat 4 is located below the filter screen 2. Therefore, through the setting of the water receiving tray 46, when water flows from the filter screen 2 When the upper end flows down, it can converge to the water receiving tray 46.
- a drain port 45 is provided at the bottom of the water receiving tray 46, and the sewage flowing down the filter screen 2 is discharged through the setting of the drain port, and the drain port 45 is connected to the drain structure of the air conditioner, The water in the water receiving tray 46 is discharged to the outside through the drainage structure.
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Abstract
一种滤网、滤网清洗装置及空调器,所述滤网(2)上设置导流通道(61,20);所述导流通道(61,20)上设置有出水口(62),其与所述导流通道(61,20)相连通。通过导流通道(61,20)的设置,一方面可以起到传统的滤网加强作用,另一方面,当所述导流通道(61,20)中走水时,水从出水口(62)流出,可直接形成对滤网(2)的清洗,而不用将所述滤网(2)进行拆卸后,再进行清洗,避免了不必要的麻烦。
Description
本申请要求于2019年6月24日提交的中国专利申请第201910550265.1号的优先权,该中国专利申请的全文通过引用的方式结合于此以作为本申请的一部分。
本公开实施例涉及一种滤网、滤网清洗装置及空调器。
立式空调中,为了过滤空气中的灰尘和杂质,通常在立式空调的进风口设置过滤网。但是由于空调的长期运转,过滤网上往往会积聚一定的灰尘和杂质。如果滤网长时间不进行清洗,会导致进风口进风量减小,从而降低空调的性能,也会对空气质量产生影响,使空调出风产生一定的异味。因此,需要将滤网拆卸下来进行清洗。
发明内容
本公开实施例有鉴于上述已知技术的状况而完成,其目的在于提供一种空调器滤网,对滤网结构进行改进,而无需对滤网进行拆卸。
为此,本公开实施例提供了一种滤网,所述滤网上设置有导流通道;所述导流通道上设置有出水口,其与所述导流通道相连通。
由此,通过导流通道的设置,一方面可以起到传统的滤网加强作用,另一方面,当所述导流通道中走水时,水从出水口流出,可直接形成对滤网的清洗,而不用将所述滤网进行拆卸后,再进行清洗,避免了不必要的麻烦。
可选地,所述滤网上还设置有接水槽,所述接水槽位于所述导流通道上方,所述接水槽适于收集水。
由此,通过所述接水槽的设置,先在所述接水槽中汇集一定的水,而所述接水槽与所述导流通道相连通,接水槽中的水流到所述导流通道中,并通过所述出水口排出,通过水流带走滤网上的灰尘和杂质,实现对所述滤网进 行清洗。
可选地,所述接水槽上设置有漏水孔,其设置于所述接水槽的底部和/或所述接水槽上靠近所述滤网一侧的内侧壁。
由此,所述接水槽中的水可以从所述漏水孔流出,并从所述滤网上流下,通过水流带走滤网上的灰尘和杂质,实现对所述滤网进行清洗。
可选地,所述导流通道包括第一导流通道,所述第一导流通道在所述滤网横向的投影与所述滤网的横向截面相匹配,所述出水口与所述第一导流通道相连通。
由此,可以保证对所述滤网横向的区域进行清洗。
可选地,所述出水口有多个。
由此,可以使第一导流通道中的水从不同位置流出,对所述滤网上的多个位置进行清洗,甚至使出水口流出水的清洗面积覆盖整个滤网的横向面。
可选地,所述第一导流通道有多个,多个所述第一导流通道沿所述滤网的纵向设置。
由此,沿纵向将滤网分成若干个区域,通过每个第一导流通道对其相邻的下方的区域进行清洗,这样可以形成对所述滤网的分层清洗,避免水在流下时由于清洗路径过长,导致清洗不彻底,或者上层积水过多,导致积水溅出。
可选地,所述导流通道还包括第二导流通道,所述第二导流通道将所述接水槽与所述第一导流通道连通。
由此,通过所述第二导流通道的设置,实现所述第一导流通道与接水槽的连通,使每一层第一导流通道均可以通过所述第二导流通道输送一定的水,使每一层滤网都可以进行清洗。
本公开实施例另外提供一种滤网清洗装置,包括上述任一所述的空调器滤网,还包括:储水装置,其安装于所述空调器上;导流装置,其适于将所述储水装置中的水导向至导流通道。
由此,通过所述储水装置的设置,在空调中储存一定的水,当滤网需要进行清洗时,通过所述导流装置的设置,将所述出水装置中的水导向至所述滤网,通过水流带走滤网上的灰尘和杂质,实现对所述滤网进行清洗。
可选地,所述导流装置包括导流管,其与所述储水装置相连通,适于将 所述储水装置中的水导向至所述导流通道。
由此,通过导流管直接将储水装置中的水导向至所述滤网,实现对滤网的清洗。
本公开实施例还提供一种空调器,包括上述任一所述的滤网清洗装置。所述空调器所具有的有益效果与滤网清洗装置相同,在此不再赘述。
可选地,所述空调器包括上安装座和下安装座,所述滤网通过所述上安装座和所述下安装座安装于所述空调器的进风口,使所述滤网位于蒸发器和外壳之间。
由此,通过上安装座和下安装座实现所述滤网的安装,使所述滤网覆盖于所述蒸发器外侧。
可选地,所述下安装座上设置有接水盘,其适于收集所述滤网上流下的水,所述接水盘上设置有排水口。
由此,通过所述排水口的设置,将所述滤网上流下的污水排出。
构成本公开的一部分的附图用来提供对本公开的进一步理解,本公开的示意性实施方式及其说明用于解释本公开,并不构成对本公开的不当限定。在附图中:
图1为本公开实施例中滤网安装结构分解图;
图2为本公开实施例中滤网安装结构示意图;
图3为本公开实施例中滤网清洗装置的结构示意图;
图4为图2中I处的局部放大图;
图5为图1中II处的局部放大图;
图6为图1中III处的局部放大图;
图7为图1中IV处的局部放大图;
图8为图1中V处的局部放大图;
图9为本公开实施例中上安装座的结构示意图;
图10为本公开实施例中下安装座的结构示意图;
图11为本公开实施例中滤网的结构示意图;
图12为本公开实施例中滤网的截面示意图;
图13为图12中VI处局部放大图;
图14为图11中的VII处的局部放大图。
附图标记说明:
1-储水装置,11-导流管,2-滤网,20-第二导流通道,21-卡边,22-限位部,23-凸台,24-腰形孔,25-插槽,26-第五螺钉孔,27-限位边,28-接水槽,29-漏水孔,3-上安装座,30-第二螺钉孔,31-引流管,32-卡接结构,33-插接件,34-第四螺钉孔,35-限位凸台,36-第七螺钉孔,37-支撑板,4-下安装座,41-限位槽,42-卡接件,43-限位板,44-第一螺钉孔,45-排水口,46-接水盘,5-蒸发器,51-第三螺钉孔,61-第一导流通道,62-出水口。
需要说明的是,在不冲突的情况下,本公开中的实施方式及实施方式中的特征可以相互组合。
在本公开的描述中,需要理解的是,术语“上”、“下”“竖直”、“底”等指示的方位或位置关系为基于对应附图所示的方位或位置关系,仅是为了便于描述本公开和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本公开的限制。此外,限定有“第一”、“第二”等的特征并不构成对具体数量的限定。在本公开的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本公开的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或转动连接;可以是机械连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本公开中的具体含义。
以下将参考附图并结合实施方式来详细说明本公开。
如图1至图10所示,本实施例提供一种滤网安装结构,其适于将滤网2安装于空调器的进风口,所述空调器包括上安装座3和下安装座4,所述滤网安装结构包括:限位槽41,其设置于所述上安装座3和/或所述下安装座4上,所述滤网与所述限位槽41插接配合。
在立式柜机中,所述上安装座3和所述下安装座4通常用于安装贯流风 叶或者蒸发器5,这里将滤网2安装于所述上安装座3和/或所述下安装座4上,这里,将所述滤网2安装于所上安装座3和/或所述下安装座4上,从而可以保证所述滤网2覆盖于所述蒸发器5表面,并位于所述蒸发器与空调外壳之间。需要说明的是,所述限位槽41可以设置在所述上安装座3的下侧,这是所述滤网2的上端插入所述限位槽41;所述限位槽41也可以设置在所述下安装座4的上侧,这时,所述滤网2的下端插入所述限位槽41;所述限位槽41也可以同时设置在所述下安装座4的上侧和所述上安装座3的下侧,这时,所述上安装座3和所述下安装座4上的所述限位槽41的位置上下对应,使所述滤网2的上下两端可以同时分别插入所述上安装座3和所述下安装座4上的所述限位槽41。通常,所述限位槽41为弧形槽,这样可以对所述滤网2的多个自由度进行限定。
由此,当所述滤网2插入所述限位槽41时,通过限位槽41对所述滤网2的位置进行限定,避免所述滤网2的晃动。通过上下两端的限位,将所述滤网2安装于所述上安装座3和/或所述下安装座4上,通过所述上安装座3和/或所述下安装座4的固定实现所述滤网2的固定。由于所述限位槽41与所述滤网2之间的接触为面接触,增大了对所述滤网2的固定面积。
如图4所示,滤网安装结构还包括:卡接件42和限位部22,所述卡接件42和所述限位部22分别设置于所述限位槽41的底部和所述滤网2上。
这里,所述限位部22为卡孔,所述卡接件42可以设置于所述限位槽41的底部,此时,所述滤网2上设置有卡边21,所述卡边21上设置有所述卡孔,所述卡接件42上设置有限位凸起,所述卡接件42插入所述卡孔,并通过所述限位凸起与所述卡孔卡接。当然,所述卡接件42也可以设置在滤网2上,这时,可以相应在所述限位槽41底部设置相应的卡孔。如图4所示,所述卡接件42设置于所述下安装座4上。如图9所示,所述上安装坐上3也设置有与所述卡接件42结构相同的卡接结构32,所述滤网2上也设置有与所述卡接结构32相应的卡接部。
这样设置的好处在于,通过在限位槽41内设置卡接件42,可以对所述卡接件42进行隐藏。另一方面,卡接件42起到对所述滤网2的定位作用,从而进一步对滤网2的位置进行限定。
如图4、图5和图10所示,滤网安装结构还包括:限位板43,所述限位 板43设置于所述上安装座3和/或所述下安装座4上,所述限位板43的内侧适于对所述滤网2进行限位。
这里,所述限位板43的内侧指的是限位板43靠近所述空调器的内部的一侧。需要说明的是,限位板43可以设置在所述下安装座4上,这时,图3中所述滤网2的左下角位于所述限位板43的内侧;限位板43可以设置在所述上安装座3,这时,图3中所述滤网2的左上角位于所述限位板43的内侧;限位板43也可以同时设置于所述上安装座3和所述下安装座4上,此时,图3中所述滤网2的左下角和左上角分别位于所述下安装座4和所述上安装座3上的所述限位板43的内侧。当然限位板43也可以设置为多个,分别对滤网2的边角进行限位。
在滤网安装时,将所述滤网2插入所述限位槽41,同时,将滤网2的边缘掰至所述限位板43的内侧,对滤网边角的进行限定,防止所述滤网2的边角翘起。
如图4和图5所示,滤网安装结构还包括:凸台23,其设置于所述滤网2上,所述凸台23与所述限位板43的内侧接触。
需要说明的是,所述凸台23有多个,当所述限位板43对所述滤网2进行限位时,所述限位板43与所述凸台23接触,如图5所示,所述凸台23设置于所述滤网2的左下角,并与所述限位板43的位置对应。通过所述凸台23的设置,一方面可以减小凸台与所述限位板43的接触面积,避免面积过大造成局部的不接触,导致限位板43与滤网2之间发生颤动;另一方面凸台本身具备一定的厚度,可以填充限位板43与滤网2之间的间隙。
如图5和图10所示,滤网安装结构还包括:第一螺钉孔44和腰形孔24,分别设置于所述限位板43和所述滤网2上,所述第一螺钉孔44和所述腰形孔24相匹配,适于通过螺钉将所述滤网2固定于所述限位板43上。
需要说明的是,第一螺钉孔44可以设置在限位板上,此时,所示腰形孔24设置在所述滤网2上;第一螺钉孔44也可以设置在滤网2上,此时,所示腰形孔24设置在所述限位板上。一方面,通过螺钉紧固的方式,将所述滤网2与所述限位板43固定,使所述滤网2与所述限位板43之间形成紧密连接;另一方面,通过所述腰形孔24的设置,给螺钉紧固提供一定的安装裕量,便于所述第一螺钉孔44与所述腰形孔的对齐。
如图6和图7所示,滤网安装结构还包括:第二螺钉孔30和第三螺钉孔51,分别设置于蒸发器5和所述滤网2上,所述第二螺钉孔30和所述第三螺钉孔51相匹配,适于通过螺钉将所述滤网2固定于所述蒸发器5上。
这里,在所述蒸发器5上设置有凸耳,所述凸耳上设置有所述第三螺钉孔51,在所述滤网2上设置有凸台,所述凸台上设置有第二螺钉孔30,通过螺钉穿过所述第二螺钉孔30和所述第三螺钉孔51,将所述滤网2固定于所述蒸发器5上。这样设置的好处在于,将所述滤网2与所述蒸发器5进行固定,避免所述蒸发器5与所述滤网2之间碰撞产生异响。
如图8和图9所示,滤网安装结构还包括插槽25和插接件33,分别设置于所述上安装座3和所述滤网2上,所述插槽25和所述插接件33插接配合。
这里,所述插槽25可以设置在所述滤网2的上侧,此时,所述插接件33设置于所述上安装座3的下侧,在进行滤网的安装时,先将所述滤网2插入所述下安装座4中的限位槽,然后将所述上安装座3上的插接件33与所述插槽25对齐,并将所述插接件33推入所述插槽25。这样设置的好处在于,通过插接配合,对所述滤网2进行定位。
如图8和图9所示,滤网安装结构还包括第四螺钉孔34和第五螺钉孔26,分别设置于所述插接件33和所述插槽25上,所述第四螺钉孔34和所述第五螺钉孔26相匹配,适于通过螺钉将所述滤网2固定于所述上安装座3上。
这里,所述插槽25为两面开口的结构,如图8所示,所述插槽25的侧壁设置有所述第五螺钉孔26,所述插接件33上设置有第四螺钉孔34,所述第四螺钉孔34和所述第五螺钉孔26对齐,通过螺钉穿过所述第四螺钉孔34和所述第五螺钉孔26将所述滤网2固定于所述上安装座3上。
这样设置的好处在于,一方面实现所述滤网2与所述上安装座3的固定,避免所述滤网2与所述上安装座3之间发生碰撞产生异响,另一方面,可以将螺钉隐藏于所述插槽25中。
如图8和图9所示,滤网安装结构还包括支撑板37和支撑部,其分别设置于所述上安装座3和所述滤网2上,支撑板37和支撑部相匹配,适于对所述滤网2的上下方向进行限位。
这里,支撑板37可以设置于所述上安装座3上,这时,所述支撑部设置于所述滤网2上,这里所述支撑部可以为接水槽28的下端面,所述支撑板37的上端面与所述接水槽28的下端面接触。此外,支撑板37也可以设置于所述滤网2上,这时,所述支撑部设置于所述上安装座3上。这样设置的好处在于,通过支撑板与支撑部的相互作用,对滤网2上下方向进行限位。
这里,如图8和图9所示,所述滤网2上还设置有限位边27,所述上安装座上3设置于与所述限位边27对应的限位凸台35,所述限位边27沿竖直方向设置,所述限位边27与所述限位凸台35接触。此外,在所述限位边27上设置于第六螺钉孔(图中未示出),在所述限位凸台35上设置有第七螺钉孔36,所述第六螺钉孔与所述第七螺钉孔36相匹配,适于通过螺钉进行所述滤网2与所述上安装座3的固定。
本实施例提供一种空调器,包括上述任一所述的滤网安装结构。所述空调器与所述滤网安装结构所具有的有益效果相同,在此不再赘述。
如图11至图14所示,本实施例提供一种空调器滤网,所述滤网2上设置有导流通道;所述导流通道上设置有出水口62,其与所述导流通道相连通。
传统的滤网结构上通常设置有很多筋条,如图11至图14所示,所述导流通道相当于替换了传统滤网2上的筋条结构,导流通道相当于在筋条内开设有流路,也就是在筋条中布置管路,本实施例通过将所述导流通道替换了筋条的设计,在滤网中布置管路,并在管路相应的位置开设出水口62,当管路中走水时,水从所述出水口62流出,形成对滤网2的清洗。
这样设置的好处在于,通过导流通道的设置,一方面可以起到传统的滤网加强作用,另一方面,当所述导流通道中走水时,水从出水口62流出,可直接形成对滤网2的清洗,而不用将所述滤网2进行拆卸后,再进行清洗,避免了不必要的麻烦。
如图8所示,所述滤网2上还设置有接水槽28,所述接水槽28位于所述导流通道上方,所述接水槽28适于收集水,所述接水槽28与所述导流通道相连通。
需要说明的是,接水槽28设置于所述滤网2上,其可以与所述滤网2为一体结构,通过所述滤网2在一体成型时制造。所述接水槽28沿所述滤网2的横向截面轮廓设置,这里的横向指的是滤网2安装后的水平方向。通过 所述接水槽28的设置,先在所述接水槽28中汇集一定的水,而所述接水槽28与所述导流通道相连通,接水槽28中的水流到所述导流通道中,并通过所述出水口62排出,通过水流带走滤网2上的灰尘和杂质,实现对所述滤网2进行清洗。
如图8所示,这里,所述接水槽28上设置有漏水孔29。所述漏水孔29设置于所述滤网2上并与所述接水槽28相连通,相当于是所述漏水孔29设置于所述接水槽28上靠近所述滤网2一侧的内侧壁,通常所述漏水孔29设置在所述接水槽28的内侧壁的最低处。这时,所述接水槽28中的水可以从所述漏水孔29流出,并从所述滤网2上流下,通过水流带走滤网2上的灰尘和杂质,实现对所述滤网2进行清洗。这时,通过所述第二漏水孔29的设置可以对所述滤网2上背离所述接水槽28一侧进行清洗。当然,所述漏水孔29也可以设置在所述接水槽28的底部,就是说,为了避免所述接水槽28中储存过多的水,在所述接水槽28的底部设置漏水孔29,所述接水槽28中的水从所述漏水孔29流出,并流向至所述滤网2,通过水流带走滤网2上的灰尘和杂质,实现对所述滤网2进行清洗。将漏水孔29设置在底部可以保证所述接水槽28中无残留积水,同时也可以实现对设置有接水槽28一侧滤网2进行清洗。
需要说明的是,所述漏水孔29有多个。多个所述漏水孔29沿所述滤网2横截面的轮廓分布于所述接水槽28上靠近所述滤网2一侧的内侧壁和/或所述接水槽28的底部。从而保证沿所述滤网2横截面的轮廓方向,所有漏水孔29中均有积水漏出,这样可以实现沿所述滤网2横截面的轮廓方向对所述滤网2进行更全面的清洗。
如图11至图14所示,所述导流通道包括第一导流通道61,所述第一导流通道61在所述滤网2横向的投影与所述滤网2的横向截面相匹配,所述出水口62与所述第一导流通道61相连通。
需要说明的是,所述第一导流通道61在所述滤网2横向的投影与所述滤网2的横向截面相匹配,也就是说,所述第一导流通道61可以沿滤网的横向设置,当然,所述第一导流通道61也可以倾斜设置,只需保证所述第一导流通道61倾斜设置时在水平方向的投影与水平设置时的轮廓相同即可,也就是说,所述第一导流通道61倾斜设置时也可以覆盖所述滤网的横向轮廓,这样 可以保证对所述滤网2横向的区域进行全面的清洗。所述第一导流通道61为内设有管路的结构或者水槽结构,在所述第一导流通道61上开设有多个出水口62,这样可以使第一导流通道61中的水从不同位置流出,对所述滤网2上的多个位置进行清洗,甚至使出水口62流出水的清洗面积覆盖整个滤网2的横向面。
此外,如图11至图14所示,所述第一导流通道61有多个,多个所述第一导流通道61沿所述滤网2的纵向设置。
这里,所述滤网2的纵向指的是滤网安装后的竖直方向,也就是说,多个所述第一导流通道61沿纵向设置,其可以为阵列设置,从而沿纵向将滤网分成若干个区域,通过每个第一导流通道61对其相邻的下方的区域进行清洗,这样可以形成对所述滤网2的分层清洗,避免水在流下时由于清洗路径过长,导致清洗不彻底,或者上层积水过多,导致积水溅出。
如图11至图14所示,所述导流通道还包括第二导流通道20,所述第二导流通道20将所述接水槽28与所述第一导流通道61连通。
如图13和图14所示,所述第一导流通道61水平设置,所述第二导流通道20竖直设置,但所述第一导流通道61和所述第二导流通道20的布置方式不局限于此,在前文已经进行说明,这里,所述第二导流通道20只需将相邻的所述第一导流通道61连通即可,或者说将所述接水槽28与所述第一导流通道61直接或者间接连通。图13中,由于是俯视图,因此,所述第二导流通道20只显示为孔状。通过所述第二导流通道20的设置,实现所述第一导流通道61与接水槽28的连通,使每一层第一导流通道61均可以通过所述第二导流通道20输送一定的水,使每一层滤网都可以进行清洗。
需要说明的是,所述第二导流通道20有多个,多个所述第二导流通道20与所述接水槽28的底部相连通,所述第二导流通道20可以保证所述接水槽28中残留一定的积水,从而保证沿所述滤网2横截面的轮廓方向,所有第二导流通道20中均有积水流出,这样可以实现沿所述滤网横截面的轮廓方向对滤网2靠近接水槽28一侧进行更全面的清洗。
本实施例提供一种滤网清洗装置,包括上述任一所述的滤网2,还包括储水装置1,其安装于所述空调器上;导流装置,所述导流装置适于将所述储水装置1中的水导向至所述导流通道。
需要说明的是,所述储水装置1可以为空调器中的加水装置,也可以为安装于所述空调器中的储水槽。所述导流装置可以包括导流管11,其与所述储水装置1相连通,适于将所述储水装置1中的水导向至所述导流通道。这里,所述导流管11可以设置在所述储水装置1的下方,并使所述导流管的出水口设置于所述滤网2上方,所述储水装置1中的水从所述导流管11流出,并流向滤网。由此,通过导流管11直接将储水装置1中的水导向至所述滤网2,实现对滤网2的清洗。此外,导流装置也可以为取水器,所述取水器可以通过驱动装置将所述储水装置1的水抽出并导向至所述导流通道。
这样设置的好处在于,通过所述储水装置1的设置,在空调中储存一定的水,当滤网2需要进行清洗时,通过所述导流装置的设置,将所述出水装置中的水导向至所述滤网2,通过水流带走滤网2上的灰尘和杂质,实现对所述滤网2进行清洗。
本实施例提供一种空调器,包括上述任一所述的滤网清洗装置。所述空调器所具有的有益效果与上述所述的滤网清洗装置相同,在此不再赘述。
如图3和图9所示,所述上安装座3上设置有引流管31,所述引流管31与导流装置相连通,适于将所述导流装置导出的水导向至所述滤网。
这里,所述引流管31与所述导流管11相连通,所述引流管31的出口可以设置于所述接水槽28的上方,或者说所述引流管31与所述接水槽28连通,从而使水流向所述接水槽28,再通过所述接水槽28流至所述滤网2;所述引流管31的流出的水也可以直接流向所述滤网2,形成对滤网2的清洗。这样可以减小从所述导流管11流出的水溅射到接水槽28以外的区域的量。
如图10所示,所述下安装座4上设置有接水盘46,其适于收集所述滤网2上流下的水,所述接水盘46上设置有排水口45。
由于滤网2通过所述下安装座4安装,所述下安装座4位于所述滤网2的下方,由此,通过所述接水盘46的设置,当水从所述滤网2的上端流下时,可以汇聚至所述接水盘46。这里,在所述接水盘46的底部设置有排水口45,通过所述排水口的设置,将所述滤网2上流下的污水排出,所述排水口45与空调器的排水结构连接,通过所述排水结构将所述接水盘46中的水排出室外。
以上所述仅为本公开的可选实施方式而已,并不用以限制本公开,任何 本领域技术人员,凡在本公开的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本公开的保护范围之内。
Claims (13)
- 一种滤网,其中,所述滤网(2)上设置有导流通道;所述导流通道上设置有出水口(62),其与所述导流通道相连通。
- 根据权利要求1所述的滤网,其中,所述滤网(2)上还设置有接水槽(28),所述接水槽(28)位于所述导流通道上方,所述接水槽(28)适于收集水,所述接水槽(28)与所述导流通道相连通。
- 根据权利要求2所述的滤网,其中,所述接水槽(28)上设置有漏水孔(29)。
- 根据权利要求2所述的滤网,其中,所述导流通道包括第一导流通道(61),所述第一导流通道(61)在所述滤网(2)横向的投影与所述滤网(2)的横向截面相匹配,所述出水口(62)与所述第一导流通道(61)相连通。
- 根据权利要求4所述的滤网,其中,所述第一导流通道(61)有多个,多个所述第一导流通道(61)沿所述滤网(2)的纵向设置。
- 根据权利要求4所述的滤网,其中,所述导流通道还包括第二导流通道(20),所述第二导流通道(20)将所述接水槽(28)与所述第一导流通道连通。
- 根据权利要求1所述的滤网,其中,所述出水口(62)有多个。
- 一种滤网清洗装置,包括权利要求1-7任一所述的滤网,还包括:储水装置(1),其安装于空调器上;导流装置,其适于将所述储水装置(1)中的水导向至导流通道。
- 根据权利要求8所述的滤网清洗装置,其中,所述导流装置包括导流管(11),其与所述储水装置(1)相连通,适于将所述储水装置(1)中的水导向至所述导流通道。
- 一种空调器,包括权利要求8-9任一所述的滤网清洗装置。
- 根据权利要求10所述的空调器,其中,所述空调器包括上安装座(3)和下安装座(4),所述滤网(2)通过所述上安装座(3)和所述下安装座(4)安装于所述空调器的进风口,使所述滤网(2)位于蒸发器(5)和外壳之间。
- 根据权利要求11所述的空调器,其中,所述上安装座(3)上设置有引流管(31),所述引流管(31)与所述导流装置相连通,适于将所述导 流装置导出的水导向至所述滤网。
- 根据权利要求11所述的空调器,其中,所述下安装座(4)上设置有接水盘(46),其适于收集所述滤网(2)上流下的水;所述接水盘(46)上设置有排水口(45),适于将所述接水盘(46)的水排出。
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Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2005214600A (ja) * | 2004-02-02 | 2005-08-11 | Kato Denko:Kk | 空気調和機の洗浄装置及び洗浄方法 |
JP2009092272A (ja) * | 2007-10-04 | 2009-04-30 | East Japan Railway Co | 空気調和機の清掃機構 |
CN107642810A (zh) * | 2017-11-08 | 2018-01-30 | 青岛美鼎家居科技有限公司 | 油烟自动清洗装置、油烟装置及智能橱柜 |
CN108302663A (zh) * | 2018-04-13 | 2018-07-20 | 浙江仓森环境科技有限公司 | 除尘装置 |
CN109764412A (zh) * | 2019-03-13 | 2019-05-17 | 奥克斯空调股份有限公司 | 一种空调器 |
CN110131791A (zh) * | 2019-06-24 | 2019-08-16 | 宁波奥克斯电气股份有限公司 | 一种滤网、滤网清洗装置及空调器 |
CN210320338U (zh) * | 2019-06-24 | 2020-04-14 | 宁波奥克斯电气股份有限公司 | 一种滤网、滤网清洗装置及空调器 |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
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JPS63205111A (ja) * | 1987-02-19 | 1988-08-24 | Maruyama Seisakusho:Kk | 防除機の薬剤供給装置 |
US6866777B2 (en) * | 2001-10-19 | 2005-03-15 | Joseph Kuo | Laminated modular water filter |
CN107621024A (zh) * | 2016-07-14 | 2018-01-23 | 青岛海尔智能技术研发有限公司 | 空调器室内机 |
CN207094978U (zh) * | 2017-07-25 | 2018-03-13 | 天津贝罗尼生物科技有限公司 | 一种空气净化器滤网固定装置 |
CN208536221U (zh) * | 2018-06-15 | 2019-02-22 | 广东万家达家用电器有限公司 | 一种易清洁空调扇 |
-
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Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2005214600A (ja) * | 2004-02-02 | 2005-08-11 | Kato Denko:Kk | 空気調和機の洗浄装置及び洗浄方法 |
JP2009092272A (ja) * | 2007-10-04 | 2009-04-30 | East Japan Railway Co | 空気調和機の清掃機構 |
CN107642810A (zh) * | 2017-11-08 | 2018-01-30 | 青岛美鼎家居科技有限公司 | 油烟自动清洗装置、油烟装置及智能橱柜 |
CN108302663A (zh) * | 2018-04-13 | 2018-07-20 | 浙江仓森环境科技有限公司 | 除尘装置 |
CN109764412A (zh) * | 2019-03-13 | 2019-05-17 | 奥克斯空调股份有限公司 | 一种空调器 |
CN110131791A (zh) * | 2019-06-24 | 2019-08-16 | 宁波奥克斯电气股份有限公司 | 一种滤网、滤网清洗装置及空调器 |
CN210320338U (zh) * | 2019-06-24 | 2020-04-14 | 宁波奥克斯电气股份有限公司 | 一种滤网、滤网清洗装置及空调器 |
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