WO2022012090A1 - 机身和除湿机 - Google Patents
机身和除湿机 Download PDFInfo
- Publication number
- WO2022012090A1 WO2022012090A1 PCT/CN2021/084133 CN2021084133W WO2022012090A1 WO 2022012090 A1 WO2022012090 A1 WO 2022012090A1 CN 2021084133 W CN2021084133 W CN 2021084133W WO 2022012090 A1 WO2022012090 A1 WO 2022012090A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- side wall
- guide groove
- filter
- filter screen
- fuselage
- Prior art date
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 71
- 238000003780 insertion Methods 0.000 claims abstract description 51
- 230000037431 insertion Effects 0.000 claims abstract description 51
- 238000009434 installation Methods 0.000 claims description 17
- 230000002265 prevention Effects 0.000 claims description 4
- 230000000903 blocking effect Effects 0.000 description 10
- 238000007791 dehumidification Methods 0.000 description 9
- 238000000034 method Methods 0.000 description 8
- 230000009286 beneficial effect Effects 0.000 description 5
- 238000004140 cleaning Methods 0.000 description 5
- 238000001704 evaporation Methods 0.000 description 5
- 230000008020 evaporation Effects 0.000 description 5
- 230000001681 protective effect Effects 0.000 description 3
- 238000010586 diagram Methods 0.000 description 2
- 238000001914 filtration Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000002360 preparation method Methods 0.000 description 2
- 230000008094 contradictory effect Effects 0.000 description 1
- 238000009826 distribution Methods 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 238000001179 sorption measurement Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
- 238000000844 transformation Methods 0.000 description 1
Classifications
-
- 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
- F24F13/20—Casings or covers
-
- 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
- F24F13/22—Means for preventing condensation or evacuating condensate
-
- 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
- F24F13/28—Arrangement or mounting of filters
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F3/00—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
- F24F3/12—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
- F24F3/14—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
Definitions
- the present application relates to the technical field of dehumidification equipment, in particular to a fuselage and a dehumidifier.
- a filter is usually provided at the air inlet to filter the air entering the dehumidifier.
- the filter is usually set inside the fuselage.
- the filter When cleaning or replacing the filter, it is usually necessary to disassemble the fuselage shell before the filter can be disassembled, causing the filter to be removed.
- the disassembly and assembly process for cleaning or replacement is complicated and affects the user experience.
- the main purpose of this application is to propose a fuselage, which aims to improve the ease of disassembly and assembly of its filter screen replacement.
- the dehumidifier proposed by this application includes:
- the side wall of the shell is provided with an air inlet and a filter screen insertion port;
- a water-receiving tray which is arranged in the inner cavity of the casing, and the water-receiving tray is provided with a first guide groove that opens upward;
- the motor bracket is arranged in the inner cavity of the casing and is located above the water receiving tray, the motor bracket is provided with a second guide groove that opens downward, and the notch of the second guide groove The notches of the guide grooves are disposed oppositely; and,
- the filter screen is inserted into the first guide groove and the second guide groove from the filter screen insertion port in a drawable manner, and covers the air inlet.
- the water receiving tray is protruded with two first guide rails arranged in parallel and spaced apart, so as to form the first guide groove between the two first guide rails; and/or,
- the motor bracket is protruded with two parallel and spaced second guide rails, so as to form the second guide groove between the two second guide rails.
- the groove side wall on the outer side of the first guide groove includes a first main body section and a first guide section, the first guide section is disposed adjacent to the filter screen insertion port and extends outwardly obliquely; and/or,
- the groove side wall on the outer side of the second guide groove includes a second main body section and a second guide section, and the second guide section is disposed adjacent to the filter screen insertion port and extends outwardly obliquely.
- the side wall of the housing includes a first side wall, a second side wall and a third side wall connected in sequence, the first side wall is opposite to the third side wall, the first side wall The side wall, the second side wall and the third side wall are all provided with the air inlet.
- the filter screen includes two filter sub-nets spliced together in the circumferential direction of the fuselage, wherein one of the filter sub-nets covers the air inlet on the first side wall and all the filter sub-nets. Part of the air inlet on the second side wall, another part of the filter mesh covers the other part of the air inlet on the second side wall and the air inlet on the third side wall;
- Each of the first side wall and the third side wall is provided with a filter mesh insertion port for inserting the two filter sub-nets respectively.
- the first guide groove has two first arc-shaped segments, wherein one of the first arc-shaped segments is disposed corresponding to the connection between the first side wall and the second side wall , and the other first arc segment is arranged corresponding to the junction between the second side wall and the third side wall;
- the second guide groove has two second arc segments, and the two second arc segments are in one-to-one correspondence with the two first arc segments.
- the arc radius of the first arc segment is not less than 30mm.
- a detachment prevention structure is provided between the filter screen and the housing.
- the anti-falling structure includes a first buckle position provided on the filter net, and a second buckle position set on the inner side of the filter screen insertion opening, the first buckle position and the first buckle position The two buckle positions are locked together to restrict the filter screen from coming out of the filter screen insertion port.
- the present application also proposes a dehumidifier, which includes a water tank and the above-mentioned body, and the body is connected to the water tank.
- the water tank has an upwardly facing installation opening
- the body has an idle state that is at least partially accommodated in the water tank through the installation opening, and a work that protrudes relative to the water tank through the installation opening state.
- the side wall of the casing is provided with an air inlet and a filter screen insertion port
- the water receiving tray is provided with a first guide groove that opens upward
- the motor bracket is provided with a second guide groove that opens downward, so that the second guide groove is open.
- the notch of the guide groove is arranged opposite to the notch of the first guide groove, so that the filter screen can be inserted into the first guide groove and the second guide groove from the filter screen insertion port so as to cover the air inlet.
- the dehumidifier When assembling the fuselage, the dehumidifier, the motor bracket and the water receiving tray are assembled first, and then the outer casing is assembled last.
- the accurate alignment between the first guide groove and the second guide groove can be ensured during the assembly process. Ensure the alignment reliability of the first guide groove and the second guide groove, so as to ensure that the filter can be pulled in the first guide groove and the second guide groove relatively smoothly, reducing the unsmooth pulling of the filter, and improving The convenience of disassembly and assembly for filter replacement is improved.
- FIG. 1 is a schematic structural diagram of an embodiment of the fuselage of the application
- FIG. 2 is a schematic diagram of the internal structure of the fuselage in FIG. 1 after the casing is removed;
- Fig. 3 is the structural representation of the water receiving tray in Fig. 2;
- Fig. 4 is the structural representation of the motor support in Fig. 2;
- Fig. 5 is the structural representation of the filter screen and the water receiving tray in Fig. 2;
- Fig. 6 is the enlarged view of A place in Fig. 1;
- FIG. 7 is an enlarged view of B in FIG. 1 .
- label name label name 10 shell 321 second body paragraph 11
- Filter 13 first side wall 41
- fourth side wall 411 plug 15 air outlet 412 buckle hand 20 water tray 42
- first deduction twenty one first guide groove 421 connecting arm 211
- first link 423 shrink groove twenty two first rail 424 first side 221 first body paragraph 425 second side 222 first guide section 50 compressor 30
- Motor bracket 60 wind blade 31 second guide groove 70 second deduction 311 second arc segment 71 upside down 312 second link 711 elastic arm 32 second rail 712 bulge
- the present application proposes a body for a dehumidifier.
- the fuselage includes a casing 10 and a water receiving tray 20 .
- the motor bracket 30 and the filter screen 40, the side wall of the casing 10 is provided with an air inlet 11 and a filter screen insertion port 12, the water receiving tray 20 is arranged in the inner cavity of the casing 10, and the water receiving tray 20 is provided with a first guide opening upward Slot 21.
- the motor bracket 30 is arranged in the inner cavity of the casing 10 and is located above the water receiving tray 20.
- the motor bracket 30 is provided with a second guide groove 31 that opens downward.
- the notch of the second guide groove 31 and the groove of the first guide groove 21 are provided relative settings.
- the filter mesh 40 is inserted into the first guide groove 21 and the second guide groove 31 from the filter mesh insertion port 12 in a drawable manner, and covers the air inlet 11 .
- both the first guide groove 21 and the second guide groove 31 extend to the filter screen insertion port 12.
- the filter screen 40 is inserted into the inner cavity of the housing 10 from the filter screen insertion port 12, the lower side of the filter screen 40 The edge is inserted into the first guide groove 21 , and the upper edge of the filter screen 40 is inserted into the second guide groove 31 , that is, the filter screen 40 is installed between the first guide groove 21 and the second guide groove 31 .
- the dehumidification device of the fuselage includes a compressor 50, an evaporator and a condenser. First, the water vapor in the air is condensed into water droplets through the evaporator, and the water vapor in the air is removed, and then the air after the removal of the water vapor is heated by the condenser. Dry so that the blown air returns to normal temperature.
- the evaporator and the condenser are arranged on the water receiving tray 20 to collect the water droplets generated by the evaporator.
- the motor support 30 is arranged above the evaporator and the condenser.
- the body also includes a motor and a fan blade 60 arranged on the motor.
- the motor is mounted on the motor support 30 , and the top of the casing 10 is provided with an air outlet 17 corresponding to the fan.
- the air outlet 17 can also be provided on the upper end of the side wall of the housing 10 .
- the filter screen 40 is located between the dehumidification device and the air inlet 11 , so that after the air enters from the air inlet 11 , it flows through the filter screen 40 to the dehumidification device for dehumidification.
- the shape of the housing 10 may be various, for example, the housing 10 may be in the shape of a polygonal prism such as a cylinder, a square, a pentagonal prism or a hexagonal prism.
- the dehumidification device may also adopt a dehumidification method such as an adsorption type.
- the side wall of the housing 10 is provided with an air inlet 11 and a filter screen insertion port 12
- the water receiving tray 20 is provided with a first guide groove 21 that opens upward
- the motor bracket 30 is provided with a second opening that opens downward.
- the guide groove 31 is arranged so that the notch of the second guide groove 31 is opposite to the notch of the first guide groove 21, so that the filter screen 40 can be pulled from the filter screen insertion port 12 and inserted into the first guide groove 21 and the first guide groove 21.
- the second guide groove 31 covers the air inlet 11 .
- the filter screen 40 when the filter screen 40 needs to be cleaned or replaced, it is not necessary to disassemble the casing 10 of the machine body, and the filter screen 40 only needs to be pulled out from the first guide groove 21 and the second guide groove 31.
- the filter screen 40 By disassembling the filter screen 40, the convenience of disassembly and assembly for cleaning or replacement of the filter screen 40 of the dehumidifier can be improved.
- the first guide groove 21 and the second guide groove 31 are respectively arranged in When the water receiving tray 20 and the motor bracket 30 are assembled, the accurate alignment between the first guide groove 21 and the second guiding groove 31 can be ensured during the assembly process, and in the whole machine, the motor bracket 30 and the water receiving tray 20 The relative position between them is relatively fixed, which can ensure the alignment reliability of the first guide groove 21 and the second guide groove 31, so as to ensure that the filter screen 40 can be drawn in the first guide groove 21 and the second guide groove 31 relatively smoothly.
- the situation of unsmooth pulling and pulling of the filter screen 40 is reduced, and the convenience of disassembly and assembly of the replacement of the filter screen 40 is improved.
- the water receiving tray 20 is protruded with two first guide rails 22 arranged in parallel and spaced apart to form a first guide groove 21 between the two first guide rails 22 .
- the height of the first guide rail 22 can be conveniently set to meet the depth requirement of the first guide groove 21.
- the required thickness of the water receiving tray 20 is smaller, which is beneficial to improve the structural compactness of the body, and can also save the materials required for the water receiving tray 20 and reduce the cost of the product.
- the motor bracket 30 is protruded with two second guide rails 32 arranged in parallel and spaced apart, so as to form a second guide groove 31 between the two second guide rails 32 .
- the height of the second guide rail 32 can be conveniently set to meet the depth requirement of the second guide groove 31.
- the motor The required thickness of the bracket 30 is smaller, which is conducive to improving the compactness of the structure of the body, and can also save the material required for the motor bracket 30 and reduce the cost of the product.
- the first guide groove 21 can also be concavely formed on the water receiving tray 20
- the second guide groove 31 can be formed concavely on the motor bracket 30 .
- the groove sidewall on the outer side of the first guide groove 21 includes a first main body section 221 and a first guide section 222, and the first guide section 222 is connected to the first guide section 222.
- the main body section 221 is close to one end of the filter screen insertion port 12 and extends obliquely outward.
- the groove side wall on the outer side has a first main body section 221 and a first guide section 222 , and the first guide section 222 is at a distance away from the first main body section 221 .
- the outer first guide rail 22 has the first main body section 221 and the first guide section 222 .
- the first guide segment 222 may not be provided.
- the groove side wall on the outer side of the second guide groove 31 includes a second main body section 321 and a second guide section 322.
- the second guide section 322 is connected to an end of the second main body section 321 close to the filter screen insertion port 12 and faces toward the filter screen insertion port 12. Outward sloping extension.
- the groove side wall on the outer side has a second main body section 321 and a second guide section 322 , and the second guide section 322 is located at a distance away from the second main body section 321 .
- the outer second guide rail 32 has the second main body section 321 and the second guide section 322 .
- the second guide segment 322 may not be provided.
- the side wall of the housing 10 includes a first side wall 13 , a second side wall (not shown in the figure) and a third side wall (not shown in the figure) connected in sequence, and the first side wall 13 and the third side wall 13 are connected in sequence.
- the side walls are opposite to each other, and the first side wall 13 , the second side wall and the third side wall are all provided with air inlets 11 .
- a "three-sided air intake" channel can be formed on the fuselage. Compared with the "single-sided air intake” channel, the air treatment area can be increased, thereby improving the air treatment efficiency; in addition, the "three-sided air intake” method is adopted.
- the air inlet 11 includes a plurality of air inlet holes arranged in an array; however, the design is not limited to this, and in other embodiments, the air inlet 11 can also be arranged in a grid grid.
- the evaporator is provided with a first evaporation section, a second evaporation section and a third evaporation section corresponding to the air inlets 11 on the first side wall 13, the second side wall and the third side wall, respectively.
- the evaporation section is opposite to the third evaporation section, that is, the evaporator is substantially "U" shaped.
- the first guide groove 21 has two first arc segments 211 , one of the first arc segments 211 is disposed corresponding to the connection between the first side wall 13 and the second side wall, and the other The arc-shaped segment 211 is provided corresponding to the connection between the second side wall and the third side wall; the second guide groove 31 has two second arc-shaped segments 311, two second arc-shaped segments 311 and two first arc-shaped segments 311 The shape segments 211 are in one-to-one correspondence.
- the first guide groove 21 extends along the circumferential direction of the water receiving tray 20 , and the first guide groove 21 includes three first connecting sections 212 and two first arc sections 211 that are alternately connected in sequence along its length direction. That is, any one of the first arc segments 211 is connected between the two first connection segments 212 .
- the first connecting segment 212 between the two first arc segments 211 is arranged corresponding to the second side wall, and the other two first connecting segments 212 are arranged corresponding to the first side wall 13 and the third side wall respectively, that is, the first The guide groove 21 has a substantially "U" shape.
- the second guide groove 31 extends along the circumferential direction of the motor bracket 30 , and the second guide groove 31 includes three second connection segments 312 and two second arc segments 311 which are alternately connected in sequence along its length direction, that is, any Each of the second arc segments 311 is connected between the two second connection segments 312 .
- the second connecting section 312 between the two second arc sections 311 is disposed corresponding to the second side wall, and the other two second connecting sections 312 are disposed corresponding to the first side wall 13 and the third side wall respectively, that is, the second The guide groove 31 has a substantially "U" shape.
- the three second connecting sections 312 are arranged in a one-to-one correspondence with the three first connecting sections 212
- the two second arc sections 311 are arranged in a one-to-one correspondence with the two first arc sections 211 , that is, the second arc sections 311
- the radius and length of the first arc segment 211 are substantially the same.
- the filter mesh 40 When the filter mesh insertion port 12 is arranged on the first side wall 13, the filter mesh 40 can be inserted into the inner side of the second side wall through the first arc section 211 to cover the air inlet 11 of the second side wall, and even the The filter screen 40 is inserted into the inner side of the third side wall to cover the air inlet 11 of the third side wall. Similarly, when the filter mesh insertion port 12 is provided on the third side wall, the filter mesh 40 can also be inserted into the inner side of the second side wall through the first arc section 211 to cover the air inlet 11 of the second side wall.
- first guide groove 21 and the second guide groove 31 may also be arranged in a semicircle.
- first guide groove 21 includes two first connecting segments 212 and two first arc segments 211, the two first arc segments 211 are connected to each other, for example, the two first arc segments 211 are connected to each other in a semicircular shape Or show inferior arc structure.
- first side wall 13 , the second side wall and the third side wall are all provided with filter mesh insertion openings 12 , each filter mesh insertion opening 12 correspondingly inserts a filter mesh 40 .
- the radius of the first arc section 211 is not less than 30 mm, that is, the radius of the first arc section 211 is greater than or equal to 30 mm, and the second arc The radius of the shaped segment 311 is also not less than 30mm. In this way, when the filter screen 40 passes through the first arc section 211 , the deformation of the filter screen 40 is small, which is beneficial to reduce the insertion resistance of the filter screen 40 and facilitate the user to disassemble and assemble the filter screen 40 .
- the filter screen 40 includes two filter sub-nets 41 spliced together in the circumferential direction of the fuselage, wherein one filter sub-net 41 covers the first side wall The air inlet 11 on the 13 and part of the air inlet 11 on the second side wall, another filter sub-net 41 covers another part of the air inlet 11 on the second side wall and the air inlet 11 on the third side wall; the first side The wall 13 and the third side wall are respectively provided with a filter mesh insertion opening 12 for inserting the two filter sub-nets 41 respectively.
- the two filter sub-nets 41 have their own filter mesh insertion openings 12, and a single filter sub-net 41 only needs to pass through one corner during the loading process, that is, it only needs to be bent once.
- the installation of the filter sub-net 41 is more convenient.
- the filter sub-net 41 needs to have a certain flexibility, so as to be able to bend and fit in the process of sliding and inserting along the first guide groove 21 (refer to FIG. 3 ) and the second guide groove 31 (refer to FIG. 4 ).
- the filter sub-net 41 also needs to have a certain rigidity so that it can be pushed into the first guide groove 21 and the second guide groove 31 as a whole.
- the filter sub-net 41 can be configured as a plastic filter screen; of course, it can also include a plastic frame and a flexible filter screen provided on the plastic frame.
- the plastic frame and the flexible screen can be integrally injection-molded.
- the two filter sub-nets 41 are spliced together at the middle position of the second side wall, that is, the two filter sub-nets 41 are of equal length. In this way, the two filter sub-nets 41 can have the same specifications, which is convenient for preparation.
- the side wall of the housing 10 further includes a fourth side wall 14 opposite to the second side wall, and the fourth side wall 14 is usually disposed against the wall.
- the two filter mesh insertion ports 12 are respectively opened on the first side wall 13 and the third side wall, so that the filter sub-net 41 can be assembled and disassembled without moving the dehumidifier, which is more convenient for users to use .
- the present design is not limited to this.
- two filter mesh insertion openings 12 can also be opened on the fourth side wall 14 to hide the filter mesh insertion openings 12 in a position that the user cannot see.
- one end of the filter sub-net 41 is provided with a blocking member 411, and the other end of the filtering sub-net 41 is inserted into the first guide groove 21 and the second guide groove 31 from the filter screen insertion port 12 until the blocking member 411 blocks the filter. Net insertion port 12. It can be understood that by blocking the filter insertion port 12 by the blocking member 411 , particles such as dust can be prevented from entering the interior of the dehumidifier through the filter insertion port 12 .
- the blocking member 411 and the filter sub-net 41 are integrally injection-molded. Of course, in other embodiments, the blocking member 411 and the filtering sub-net 41 can also be bonded.
- the blocking member 411 is provided with a recessed handle 412; in this way, it is convenient to pull out the filter sub-net 41, and at the same time, the handle 412 is recessed, and then the body When entering the water tank of the dehumidifier, it can be avoided that the handle 412 restricts the fuselage to enter the water tank.
- a raised handle may also be provided on the blocking member 411. In this case, an avoidance gap needs to be provided on the installation opening of the water tank, or the position of the handle needs to be set at an upper position, and the When the dehumidifier is idle, the handle is exposed outside the tank.
- the body is provided with a protective baffle that is spaced apart from and opposite to the filter mesh insertion port 12; in this way, after the filter mesh 40 is pulled out, the user can be restricted from extending his hands or other objects into the body through the protective baffle. , and touch the electronic control wiring and evaporator pipeline in the fuselage.
- a disengagement prevention structure is provided between the filter screen 40 and the fuselage, so that after the filter screen 40 is installed in the first guide groove 21 and the second guide groove 31, it can be positioned in the fuselage, thereby The filter screen 40 is prevented from coming out of itself, thereby improving its assembly reliability.
- a detachment prevention structure is provided between the filter sub-net 41 and the fuselage.
- the specific structure of the anti-dropping structure can be various.
- the second buckle position 70 on the inner side of the mesh insertion port 12 is engaged with the first buckle position 42 and the second buckle position 70 to restrict the filter screen 40 from coming out of the filter screen insertion port 12 .
- the first buckle position 42 includes a connecting arm 421 and a snap-on protrusion 422 connected to the connecting arm 421 .
- the connecting arm 421 is connected to the filter sub-net 41 .
- the connecting arm 421 is connected to the blocking member 411 .
- the snap-on protrusions 422 are protruded toward two opposite sides of the connecting arm 421 and are spaced from the blocking member 411 .
- the second buckle 70 includes two inverted buckles 71 arranged at intervals.
- the inverted buckle 71 includes an elastic arm 711 and a protrusion 712 at one end of the elastic arm 711 .
- the other end of the elastic arm 711 is connected to the housing 10 or the protective baffle.
- the protrusions 712 are provided on the side of the elastic arm 711 facing the other undercut 71 , that is, the two protrusions 712 are protruded toward each other, so that the gap between the two protrusions 712 is smaller than the gap between the two elastic arms 711 , and the width of the latching protrusions 422 along the distribution direction of the two opposite sides of the connecting arm 421 is larger than the gap between the two protrusions 712 and smaller than the gap between the two elastic arms 711 .
- the latching protrusion 422 can be clamped between the two elastic arms 711 through the two protrusions 712, so that the connecting arm 421 is located between the two protrusions 712, and the two protrusions 712 can abut
- the snap-on protrusion 422 can be restricted from coming out of the second buckle position 70 , that is, the filter screen 40 / the filter sub-net 41 can be restricted from coming out of the filter screen insertion port 12 .
- the two undercuts 71 can be elastically deformed, which reduces the need for snapping the snap-on protrusion 422 into the second snap.
- the resistance of the position 70 can facilitate the installation of the filter screen 40 .
- the first buckle 42 may also include two inverted buckles 71 arranged at intervals, and the second buckle 70 may include a connecting arm 421 and a snap-on protrusion 422 connected to the connecting arm 421 .
- the second buckle position 70 may also have a groove structure or a card hole structure.
- a plurality of first buckles 42 are arranged on the filter subnet 41, and a plurality of second buckles 70 are correspondingly provided, so that each of the first buckles 42 can be connected with a
- the second buckle position 70 is buckled.
- the filter sub-net 41 is provided with two first buckles 42, the two first buckles 42 are respectively arranged on two opposite sides of the buckles 412, and the number of the second buckles 70 is also two,
- the two first buckle positions 42 are in one-to-one correspondence with the two second buckle positions 70 .
- the second buckle position 70 can also be set on the filter sub-net 41
- the first buckle position 42 can be set on the inner side of the filter mesh insertion port 12 .
- the connecting arm 421 has two oppositely arranged first side surfaces 424 and two oppositely arranged second side surfaces 425 .
- Two protruding first side surfaces 424 are provided, and one of the second side surfaces 425 is provided with a constriction groove 423 , and the constriction groove 423 also penetrates the end surface of the latching convex portion 422 facing away from the connecting arm 421 .
- the snap-fit protrusion 422 when the snap-fit protrusion 422 is inserted into the second buckle position 70 , the snap-fit protrusion 422 can be elastically deformed toward the shrinking groove 423 , thereby reducing the resistance when the snap-fit protrusion 422 is snapped into the second buckle position 70 . , which can facilitate the snap-on convex portion 422 to be snapped into the second snap position 70 .
- the application also proposes a dehumidifier, which includes a water tank (not shown in the figure) and a body.
- the specific structure of the body refers to the above-mentioned embodiments. Since the dehumidifier adopts all the technical solutions of all the above-mentioned embodiments, Therefore, there are at least all the beneficial effects brought about by the technical solutions of the above embodiments, which are not repeated here.
- the fuselage is connected with the water tank, and the water tank is used to collect the dehumidification water generated when the fuselage works.
- the water tank has an installation opening facing upward
- the fuselage has an idle state that is at least partially accommodated in the water tank through the installation opening, and protrudes from the water tank through the installation opening. working status.
- the volume of the water tank is larger, the water storage capacity of the water tank is increased, the number of times the user pours water is reduced, and the weight of the fuselage is also reduced, which can facilitate the The user carries the fuselage.
- the fuselage protrudes relative to the water tank, which can make the air outlet 17 on the fuselage have a higher position, so that the dehumidified air can be discharged to a higher position, thereby making the dehumidified air more efficient. It quickly spreads to the entire indoor space; and in the idle state, the body can be accommodated in the water tank as much as possible, which can make the overall center of gravity of the dehumidifier lower, so that the placement of the dehumidifier is more stable, thereby reducing the probability of the dehumidifier tipping , and can also reduce the overall occupied space of the dehumidifier placed in an idle state, which can facilitate the user to place the dehumidifier.
- the water tank may also be arranged inside the fuselage.
- a support convex portion can be provided on the inner wall of the water tank, and an avoidance groove corresponding to the support convex portion can be provided on the body, so that when the fuselage is idle, the body can be placed in the water tank at a position corresponding to the support convex portion by the avoidance groove .
- the fuselage is rotated to keep the avoidance groove away from the support protrusion, so that when the fuselage is placed on the water tank, the support protrusion can support the bottom of the fuselage.
- a support member that can move in and out of the installation opening can also be provided on the water tank, so that in the working state, the support member extends into the installation opening and supports the bottom of the fuselage. While in the idle state, the support is withdrawn from the installation opening, so that the body can be put into the water tank.
- the installation opening is set as an opening, so that the side wall of the water tank can provide a downward guide for the receiving and inserting of the body, and the opening can facilitate receiving the water droplets formed by dehumidification .
- the present design is not limited thereto, and in other embodiments, the installation opening may not be provided as an open opening.
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Abstract
一种机身,用于除湿机;机身包括外壳(10)、接水盘(20)、电机支架(30)和过滤网(40),外壳(10)的侧壁设有进风口(11)和滤网插入口(12),接水盘(20)设于外壳(10)的内腔,接水盘(20)设有朝上开口的第一导向槽(21);电机支架(30)设于外壳(10)的内腔,并位于接水盘(20)上方,电机支架(30)设有朝下开口的第二导向槽(31),第二导向槽(31)的槽口与第一导向槽(21)的槽口相对设置;过滤网(40)可抽拉地自滤网插入口(12)插设于第一导向槽(21)和第二导向槽(31),并覆盖进风口(11)。还提供了一种该机身的除湿机。该除湿机及其机身降低了过滤网抽拉不顺畅的情况,提高了过滤网更换的拆装方便性。
Description
本申请要求于2020年7月17日申请的、申请号为202021426056.0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。
本申请涉及除湿设备技术领域,特别涉及一种机身和除湿机。
对于除湿机,其进风口处通常设置有过滤网,以对进入除湿机内部的空气进行过滤。目前,在常见的除湿机中,其过滤网通常设置在机身内部,要对过滤网进行清洗或者更换时,通常需要将机身外壳做拆件处理,才能将过滤网拆出来,导致过滤网清洗或更换的拆装过程繁杂,影响用户体验。
本申请的主要目的是提出一种机身,旨在提高其过滤网更换的拆装方便性。
为实现上述目的,本申请提出的除湿机包括:
外壳,所述外壳的侧壁设有进风口和滤网插入口;
接水盘,设于所述外壳的内腔,所述接水盘设有朝上开口的第一导向槽;
电机支架,设于所述外壳的内腔,并位于所述接水盘上方,所述电机支架设有朝下开口的第二导向槽,所述第二导向槽的槽口与所述第一导向槽的槽口相对设置;以及,
过滤网,可抽拉地自所述滤网插入口插设于所述第一导向槽和所述第二导向槽,并覆盖所述进风口。
在一实施例中,所述接水盘凸设有相并行且间隔设置的两条第一导轨,以在两所述第一导轨之间形成所述第一导向槽;及/或,
所述电机支架凸设有相并行且间隔设置的两条第二导轨,以在两所述第二导轨之间形成所述第二导向槽。
在一实施例中,所述第一导向槽靠外侧的槽侧壁包括第一主体段和第一导向段,所述第一导向段邻近所述滤网插入口设置,并朝外倾斜延伸;及/或,
所述第二导向槽靠外侧的槽侧壁包括第二主体段和第二导向段,所述第二导向段邻近所述滤网插入口设置,并朝外倾斜延伸。
在一实施例中,所述外壳的侧壁包括依次连接的第一侧壁、第二侧壁和第三侧壁,所述第一侧壁与所述第三侧壁相对,所述第一侧壁、所述第二侧壁和所述第三侧壁均设有所述进风口。
在一实施例中,所述过滤网包括在所述机身的周向方向上相拼接的两个过滤子网,其中一所述过滤子网覆盖所述第一侧壁上的进风口和所述第二侧壁上的部分进风口,另一所述过滤子网覆盖所述第二侧壁上的另一部分进风口和所述第三侧壁上的进风口;
所述第一侧壁和所述第三侧壁上各设有一所述滤网插入口,以分别供两所述过滤子网装入。
在一实施例中,所述第一导向槽具有两个第一弧形段,其中一个所述第一弧形段对应所述第一侧壁和所述第二侧壁之间的连接处设置,另一个所述第一弧形段对应所述第二侧壁和所述第三侧壁之间的连接处设置;
所述第二导向槽具有两个第二弧形段,两个所述第二弧形段与两个所述第一弧形段一一对应。
在一实施例中,所述第一弧形段的弧形半径不小于30mm。
在一实施例中,所述过滤网与所述外壳之间设有防脱结构。
在一实施例中,所述防脱结构包括设于所述过滤网上的第一扣位、及设于所述滤网插入口内侧的第二扣位,所述第一扣位与所述第二扣位相扣合,以限制所述过滤网自所述滤网插入口脱出。
本申请还提出一种除湿机,该除湿机包括水箱和上述的机身,所述机身与所述水箱连接。
在一实施例中,所述水箱具有朝上的安装开口,机身具有通过所述安装开口至少部分收容于所述水箱内的闲置状态、及通过所述安装开口相对所述水箱伸出的工作状态。
本申请的技术方案通过在外壳的侧壁设有进风口和滤网插入口,接水盘设有朝上开口第一导向槽,电机支架设有朝下开口的第二导向槽,使第二导向槽的槽口与第一导向槽的槽口相对设置,如此可以将过滤网可抽拉地从滤网插入口插设于第一导向槽和第二导向槽,并覆盖进风口。如此,当要对过滤网进行清洗或者更换时,无需将机身的外壳做拆件处理,只需要将过滤网从第一导向槽和第二导向槽抽拉出来,即可将过滤网拆出来,从而能提高除湿机的过滤网清洗或更换的拆装方便性。由于在在组装机身时,是先将除湿装置、电机支架和接水盘等进行组装,最后才将外壳进行组装的,故而通过将第一导向槽和第二导向槽分别设置在接水盘和电机支架时,能够在组装的过程中确保第一导向槽和第二导向槽之间准确对位,而且在机身整机中,电机支架和接水盘之间的相对位置较为固定,能够保证第一导向槽和第二导向槽对位可靠性,从而保证过滤网能够较为平稳地在第一导向槽和第二导向槽中进行抽拉,降低了过滤网抽拉不顺畅的情况,提高了过滤网更换的拆装方便性。
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为本申请机身一实施例的结构示意图;
图2为图1中机身拆下外壳后的内部结构示意图;
图3为图2中接水盘的结构示意图;
图4为图2中电机支架的结构示意图;
图5为图2中过滤网和接水盘的结构示意图;
图6为图1中A处的放大图;
图7为图1中B处的放大图。
附图标号说明:
标号 | 名称 | 标号 | 名称 |
10 | 外壳 | 321 | 第二主体段 |
11 | 进风口 | 322 | 第二导向段 |
12 | 滤网插入口 | 40 | 过滤网 |
13 | 第一侧壁 | 41 | 过滤子网 |
14 | 第四侧壁 | 411 | 封堵件 |
15 | 出风口 | 412 | 扣手 |
20 | 接水盘 | 42 | 第一扣位 |
21 | 第一导向槽 | 421 | 连接臂 |
211 | 第一弧形段 | 422 | 卡接凸部 |
212 | 第一连接段 | 423 | 收缩槽 |
22 | 第一导轨 | 424 | 第一侧面 |
221 | 第一主体段 | 425 | 第二侧面 |
222 | 第一导向段 | 50 | 压缩机 |
30 | 电机支架 | 60 | 风叶 |
31 | 第二导向槽 | 70 | 第二扣位 |
311 | 第二弧形段 | 71 | 倒扣 |
312 | 第二连接段 | 711 | 弹性臂 |
32 | 第二导轨 | 712 | 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。
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。
本申请提出一种机身,用于除湿机。
在本申请实施例中,如图1至图4所示,该机身包括外壳10、接水盘20。电机支架30和过滤网40,外壳10的侧壁设有进风口11和滤网插入口12,接水盘20设于外壳10的内腔,接水盘20设有朝上开口的第一导向槽21。电机支架30设于外壳10的内腔,并位于接水盘20上方,电机支架30设有朝下开口的第二导向槽31,第二导向槽31的槽口与第一导向槽21的槽口相对设置。过滤网40可抽拉地自滤网插入口12插设于第一导向槽21和第二导向槽31,并覆盖进风口11。
本实施例中,第一导向槽21和第二导向槽31均延伸至滤网插入口12处,当将过滤网40从滤网插入口12插入外壳10内腔时,过滤网40的下侧缘插设于第一导向槽21内,过滤网40的上侧缘插设于第二导向槽31内,即过滤网40安装在第一导向槽21和第二导向槽31之间。
机身的除湿装置包括压缩机50、蒸发器和冷凝器,先通过蒸发器将空气中的水蒸气冷凝呈水滴,除去空气中的水蒸气,再通过冷凝器对除去水蒸气后的空气进行加热干燥,以使吹出的风回复常温。蒸发器和冷凝器设于接水盘20上,以能够集中收集蒸发器产生的水滴,电机支架30设于蒸发器和冷凝器的上方,机身还包括电机和设于电机的风叶60,电机安装于电机支架30,外壳10的顶部对应风机设有出风口17。当然,出风口17也可以设于外壳10的侧壁上端。过滤网40位于除湿装置和进风口11之间,以使空气从进风口11进入后,经过过滤网40才流向除湿装置进行除湿。其中,外壳10的形状可以为多种,例如外壳10可以呈圆柱形、方形、五棱柱或六棱柱等等多边棱柱形。另外,在其它实施例中,除湿装置还可采用吸附式等除湿方式。
本申请的技术方案通过在外壳10的侧壁设有进风口11和滤网插入口12,接水盘20设有朝上开口第一导向槽21,电机支架30设有朝下开口的第二导向槽31,使第二导向槽31的槽口与第一导向槽21的槽口相对设置,如此可以将过滤网40可抽拉地从滤网插入口12插设于第一导向槽21和第二导向槽31,并覆盖进风口11。如此,当要对过滤网40进行清洗或者更换时,无需将机身的外壳10做拆件处理,只需要将过滤网40从第一导向槽21和第二导向槽31抽拉出来,即可将过滤网40拆出来,从而能提高除湿机的过滤网40清洗或更换的拆装方便性。由于在组装机身时,先将除湿装置、电机支架30和接水盘20等进行组装,最后才将外壳10进行组装的,故而通过将第一导向槽21和第二导向槽31分别设置在接水盘20和电机支架30时,能够在组装的过程中确保第一导向槽21和第二导向槽31之间准确对位,而且在机身整机中,电机支架30和接水盘20之间的相对位置较为固定,能够保证第一导向槽21和第二导向槽31对位可靠性,从而保证过滤网40能够较为平稳地在第一导向槽21和第二导向槽31中进行抽拉,降低了过滤网40抽拉不顺畅的情况,提高了过滤网40更换的拆装方便性。
进一步地,一实施例中,接水盘20凸设有相并行且间隔设置的两条第一导轨22,以在两第一导轨22之间形成第一导向槽21。如此,可方便地通过设置第一导轨22的高度,来满足第一导向槽21的深度需求,另外,相较于在接水盘20上凹设成型所述第一导向槽21的技术方案,接水盘20所需的厚度更小,有利于提升机身的结构紧凑性,还能节省接水盘20所需的材料,降低产品的成本。
类似地,电机支架30凸设有相并行且间隔设置的两条第二导轨32,以在两第二导轨32之间形成第二导向槽31。如此,可方便地通过设置第二导轨32的高度,来满足第二导向槽31的深度需求,另外,相较于在电机支架30上凹设成型所述第二导向槽31的技术方案,电机支架30所需的厚度更小,有利于提升机身的结构紧凑性,还能节省电机支架30所需的材料,降低产品的成本。当然,在其它实施例中,也可以在接水盘20上凹设成型所述第一导向槽21,在电机支架30上凹设成型所述第二导向槽31。
为便于过滤网40插入第一导向槽21,一实施例中,第一导向槽21靠外侧的槽侧壁包括第一主体段221和第一导向段222,第一导向段222连接于第一主体段221靠近滤网插入口12的一端,并朝外倾斜延伸。具体而言,第一导向槽21相对的两个槽侧壁中,靠外侧的槽侧壁具有第一主体段221和第一导向段222,第一导向段222在远离第一主体段221的方向上逐渐朝外倾斜延伸,以使得第一导向槽21朝向滤网插入口12的端部呈扩口设置,能够便于用户将过滤网40插入第一导向槽21。一实施例中,靠外侧第一导轨22具有该第一主体段221和第一导向段222。当然,在其它实施例中,也可以不设置第一导向段222。
类似地,第二导向槽31靠外侧的槽侧壁包括第二主体段321和第二导向段322,第二导向段322连接于第二主体段321靠近滤网插入口12的一端,并朝外倾斜延伸。具体而言,第二导向槽31相对的两个槽侧壁中,靠外侧的槽侧壁具有第二主体段321和第二导向段322,第二导向段322在远离第二主体段321的方向上逐渐朝外倾斜延伸,以使得第二导向槽31朝向滤网插入口12的端部呈扩口设置,能够便于用户将过滤网40插入第二导向槽31。一实施例中,靠外侧第二导轨32具有该第二主体段321和第二导向段322。当然,在其它实施例中,也可以不设置第二导向段322。
一实施例中,外壳10的侧壁包括依次连接的第一侧壁13、第二侧壁(图未示出)和第三侧壁(图未示出),第一侧壁13与第三侧壁相对,第一侧壁13、第二侧壁和第三侧壁均设有进风口11。如此,能在机身上形成“三面进风”的通道,相比“单面进风”的通道,能够增大空气处理面积,从而提高空气处理效率;另外,采用“三面进风”的方式,在同风量下能够减小进风速度,从而减小静压损耗,能够使机身内的风机高效运行。本实施例中,在一实施例中,所述进风口11包括呈阵列设置的多个进风孔;然本设计不限于此,于其他实施例中,所述进风口11也可设置呈格栅状。
本实施例中,蒸发器分别对应第一侧壁13、第二侧壁和第三侧壁上的进风口11设有第一蒸发段、第二蒸发段和第三蒸发段,其中,第一蒸发段与第三蒸发段相对,也即,蒸发器大致呈“U”形。
一实施例中,第一导向槽21具有两个第一弧形段211,其中一个第一弧形段211对应第一侧壁13和第二侧壁之间的连接处设置,另一个第一弧形段211对应第二侧壁和第三侧壁之间的连接处设置;第二导向槽31具有两个第二弧形段311,两个第二弧形段311与两个第一弧形段211一一对应。
具体而言,第一导向槽21沿接水盘20的周向延伸,第一导向槽21包括沿其长度方向依次交替连接的三个第一连接段212和两个第一弧形段211,即任意一个第一弧形段211均连接在两个第一连接段212之间。两个第一弧形段211之间的第一连接段212对应第二侧壁设置,另外两个第一连接段212分别对应第一侧壁13与第三侧壁设置,也即,第一导向槽21大致呈“U”形。
类似地,第二导向槽31沿电机支架30的周向延伸,第二导向槽31包括沿其长度方向依次交替连接的三个第二连接段312和两个第二弧形段311,即任意一个第二弧形段311均连接在两个第二连接段312之间。两个第二弧形段311之间的第二连接段312对应第二侧壁设置,另外两个第二连接段312分别对应第一侧壁13与第三侧壁设置,也即,第二导向槽31大致呈“U”形。且三个第二连接段312与三个第一连接段212一一对应设置,两个第二弧形段311与两个第一弧形段211一一对应设置,即第二弧形段311与第一弧形段211的半径及长度大致相同。
在将滤网插入口12设置在第一侧壁13时,能够将过滤网40经过第一弧形段211插入至第二侧壁内侧,以覆盖第二侧壁的进风口11,甚至可以将过滤网40插入至第三侧壁的内侧,以覆盖第三侧壁的进风口11。类似地,在将滤网插入口12设置在第三侧壁时,也能够将过滤网40经过第一弧形段211插入至第二侧壁内侧,以覆盖第二侧壁的进风口11。如此不需要在第一侧壁13、第二侧壁和第三侧壁上均设有滤网插入口12,有利于减少滤网插入口12的数量,即有利于减少过滤网40的数量。
另外,在其它实施例中,第一导向槽21和第二导向槽31也可以呈半圆形设置。或者第一导向槽21包括两个第一连接段212和两个第一弧形段211,两个第一弧形段211相互连接,例如两个第一弧形段211相互连接呈半圆形或呈劣弧结构。当然,在其它实施例中,也可以在第一侧壁13、第二侧壁和第三侧壁上均设有滤网插入口12,每一滤网插入口12对应插入一过滤网40。
为便于过滤网40顺畅地从第一弧形段211经过,一实施例中,第一弧形段211的半径不小于30mm,即第一弧形段211的半径大于或等于30mm,第二弧形段311的半径也不小于30mm。如此使得过滤网40从第一弧形段211经过时,过滤网40的变形较小,有利于减小过滤网40的插入阻力,便于用户拆装过滤网40。
进一步地,如图1和图5所示,一实施例中,过滤网40包括在机身的周向方向上相拼接的两个过滤子网41,其中一过滤子网41覆盖第一侧壁13上的进风口11和第二侧壁上的部分进风口11,另一过滤子网41覆盖第二侧壁上的另一部分进风口11和第三侧壁上的进风口11;第一侧壁13和第三侧壁上各设有一滤网插入口12,以分别供两过滤子网41装入。
显然,本实施例中,两过滤子网41有各自的滤网插入口12,单一过滤子网41在装入的过程中只需要经过一个角落,也即只需要经过一次折弯,相较于只设置一个一体的过滤网40的技术方案,过滤子网41的装入更为方便。本实施例中,过滤子网41需要具备一定柔性,以在沿第一导向槽21(参考图3)和第二导向槽31(参考图4)滑动插入的过程中,能自折弯而适于装入;当然,过滤子网41也需要具备一定的刚性,以能被整体推入第一导向槽21和第二导向槽31中。通常地,过滤子网41可以设置为塑料滤网;当然,其也可以包括塑料框架、及设在塑料框架上的柔性滤网。为便于制备,塑料框架和柔性滤网可以为一体注塑成型。在一实施例中,两过滤子网41在第二侧壁的中间位置相拼接,也即两过滤子网41等长,如此,两过滤子网41可以有一致的规格,便于制备。
通常地,外壳10的侧壁还包括与第二侧壁相对的第四侧壁14,第四侧壁14通常靠墙设置。本实施例中,将两滤网插入口12分别开设在第一侧壁13和第三侧壁,可在不移动除湿机的情况下,实现过滤子网41的装拆,用户使用更为方便。然本设计不限于此,于其他实施例,两滤网插入口12还可开设在所述第四侧壁14上,以将滤网插入口12隐藏在用户看不见的位置。
进一步地,过滤子网41的一端设有封堵件411,过滤子网41的另一端自滤网插入口12插入第一导向槽21和第二导向槽31,至封堵件411封堵滤网插入口12。可以理解,通过封堵件411对滤网插入口12进行封堵,能避免灰尘等颗粒物经滤网插入口12进入除湿机内部。为便于制备,封堵件411和过滤子网41为一体注塑成型。当然,在其它实施例中,封堵件411和过滤子网41也可以粘接。
进一步地,一实施例中,封堵件411上设有呈凹陷设置的扣手412;如此,可便于过滤子网41的拉出,同时,扣手412是凹陷型的,再将机身放入除湿机的水箱时,可避免扣手412限制机身收容进入水箱。当然,在其它实施例中,封堵件411上也可以设置凸设的把手,如此,还需要在水箱的安装开口上设置避让缺口,或者,把手的位置需要设置在靠上的位置,且在除湿机处于闲置状态下,把手显露在水箱外。
进一步地,机身内设有与滤网插入口12间隔且相对的防护挡板;如此,可在抽拉出过滤网40后,通过防护挡板限制用户将手或其他物体伸入机身内,而触碰到机身内的电控布线和蒸发器管路等。
进一步地,一实施例中,过滤网40与机身之间设有防脱结构,以在过滤网40装入第一导向槽21和第二导向槽31之后,能定位在机身内,从而避免过滤网40自脱出,进而提高其装配可靠性。本实施例中,过滤子网41与机身之间设有防脱结构。
防脱结构的具体结构可以为多种,例如一实施例中,如图1、图6和图7所示,防脱结构包括设于过滤网40上的第一扣位42、及设于滤网插入口12内侧的第二扣位70,第一扣位42与第二扣位70相扣合,以限制过滤网40自滤网插入口12脱出。
具体而言,第一扣位42包括连接臂421和连接于连接臂421的卡接凸部422,连接臂421与过滤子网41连接,在一实施例中,连接臂421与封堵件411连接,卡接凸部422朝连接臂421的两相对侧凸出设置,并与封堵件411间隔。
第二扣位70包括间隔设置的两个倒扣71,倒扣71包括弹性臂711和设于弹性臂711一端的凸起712,弹性臂711的另一端连接外壳10或防护挡板。凸起712设于弹性臂711朝向另一倒扣71的一侧,即两个凸起712相向凸出设置,以使两个凸起712之间的间隙小于两个弹性臂711之间的间隙,且卡接凸部422沿连接臂421两相对侧分布方向的宽度大于两个凸起712之间的间隙,并小于两个弹性臂711之间的间隙。
如此可将卡接凸部422经两个凸起712之间卡入两个弹性臂711之间,而使得连接臂421位于两个凸起712之间,此时两个凸起712能够抵接于卡接凸部422朝向过滤子网41的侧面,从而可以限制卡接凸部422从第二扣位70脱出,即限制过滤网40/过滤子网41自滤网插入口12脱出。而且如此设置两个倒扣71的形式,在将卡接凸部422插入第二扣位70时,两个倒扣71能够发生弹性变形,减小了将卡接凸部422卡入第二扣位70的阻力,能够便于过滤网40的安装。当然,在其它实施例中,也可以是第一扣位42包括间隔设置的两个倒扣71,第二扣位70包括连接臂421和连接于连接臂421的卡接凸部422。另外,第二扣位70也可以呈凹槽结构或者卡孔结构。
为提高过滤子网41的可靠性,在过滤子网41上设置多个第一扣位42,第二扣位70也对应设有多个,以使每一个第一扣位42都能与一个第二扣位70扣合。例如,一实施例中,过滤子网41上设置两个第一扣位42,两个第一扣位42分设于扣手412的两相对侧,第二扣位70的数量也为两个,两个第一扣位42与两个第二扣位70一一对应。当然,在其它实施例中,也可以将第二扣位70设于过滤子网41,第一扣位42设于滤网插入口12内侧。
为便于第一扣位42与第二扣位70插接,一实施例中,连接臂421具有相对设置的两个第一侧面424和相对设置的两个第二侧面425,卡接凸部422凸出两个第一侧面424设置,其中一个第二侧面425设有收缩槽423,收缩槽423还贯穿卡接凸部422背向连接臂421的端面。如此将卡接凸部422插入第二扣位70时,使得卡接凸部422能够朝收缩槽423内发生弹性变形,减小了将卡接凸部422卡入第二扣位70时的阻力,能够便于卡接凸部422卡入第二扣位70。
本申请还提出一种除湿机,该除湿机包括水箱(图未示出)和机身,该机身的具体结构参照上述实施例,由于本除湿机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,机身与水箱连接,水箱用于收集机身工作时产生的除湿水。
机身与水箱的结构具有多种,例如,一实施例中,水箱具有朝上的安装开口,机身具有通过安装开口至少部分收容于水箱内的闲置状态、及通过安装开口相对水箱伸出的工作状态。如此,相较于将水箱设置在机身内的除湿机,如此使得水箱的容积更大,增大了水箱的储水量,减少用户倒水次数,还减小了机身的重量,从而能够便于用户搬运机身。而且于工作状态下,机身相对水箱伸出,可使得机身上的出风口17具有更高的位置,从而可将除湿后的空气排出到更高的位置,进而使得除湿后的空气能更快地扩散到整个室内空间;而于闲置状态下,能将机身尽量收容在水箱内,可使得除湿机的整体重心更低,从而使得除湿机的放置更稳定,进而降低除湿机倾倒的概率,并且还能减小除湿机于闲置状态进行放置的整体占用空间,能够方便用户放置除湿机。当然,在其它实施例中,水箱也可以设置在机身内部。
其中,可以在水箱的内壁设置支撑凸部,并在机身设有与支撑凸部对应的避让凹槽,以在闲置状态时,使机身以避让凹槽对应支撑凸部的位置收入水箱内。而在工作状态时,机身自水箱内取出后,转动机身,使避让凹槽远离支撑凸部,以在将机身放至水箱上时,支撑凸部能够支撑机身的底部。或者也可以在水箱上设置可活动进出安装开口的支撑件,以在工作状态时,支撑件伸入安装开口内,并支撑机身的底部。而在闲置状态时,支撑件退出安装开口,以使机身能够放入水箱内。
本实施例中,在一实施例中,所述安装开口设置为敞口,如此,水箱的侧壁可为机身的收容插入提供向下的导向,并且敞口可便于承接除湿所形成的水滴。然本设计不限于此,在其它实施例中,所述安装开口也可不设置为敞口。
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 (11)
- 一种机身,用于除湿机,其中,所述机身包括:外壳,所述外壳的侧壁设有进风口和滤网插入口;接水盘,设于所述外壳的内腔,所述接水盘设有朝上开口的第一导向槽;电机支架,设于所述外壳的内腔,并位于所述接水盘上方,所述电机支架设有朝下开口的第二导向槽,所述第二导向槽的槽口与所述第一导向槽的槽口相对设置;以及,过滤网,可抽拉地自所述滤网插入口插设于所述第一导向槽和所述第二导向槽,并覆盖所述进风口。
- 如权利要求1所述的机身,其中,所述接水盘凸设有相并行且间隔设置的两条第一导轨,以在两所述第一导轨之间形成所述第一导向槽;及/或,所述电机支架凸设有相并行且间隔设置的两条第二导轨,以在两所述第二导轨之间形成所述第二导向槽。
- 如权利要求1所述的机身,其中,所述第一导向槽靠外侧的槽侧壁包括第一主体段(221)和第一导向段,所述第一导向段邻近所述滤网插入口设置,并朝外倾斜延伸;及/或,所述第二导向槽靠外侧的槽侧壁包括第二主体段和第二导向段,所述第二导向段邻近所述滤网插入口设置,并朝外倾斜延伸。
- 如权利要求1所述的机身,其中,所述外壳的侧壁包括依次连接的第一侧壁、第二侧壁和第三侧壁,所述第一侧壁与所述第三侧壁相对,所述第一侧壁、所述第二侧壁和所述第三侧壁均设有所述进风口。
- 如权利要求4所述的机身,其中,所述过滤网包括在所述机身的周向方向上相拼接的两个过滤子网,其中一所述过滤子网覆盖所述第一侧壁上的进风口和所述第二侧壁上的部分进风口,另一所述过滤子网覆盖所述第二侧壁上的另一部分进风口和所述第三侧壁上的进风口;所述第一侧壁和所述第三侧壁上各设有一所述滤网插入口,以分别供两所述过滤子网装入。
- 如权利要求4所述的机身,其中,所述第一导向槽具有两个第一弧形段,其中一个所述第一弧形段对应所述第一侧壁和所述第二侧壁之间的连接处设置,另一个所述第一弧形段对应所述第二侧壁和所述第三侧壁之间的连接处设置;所述第二导向槽具有两个第二弧形段,两个所述第二弧形段与两个所述第一弧形段一一对应。
- 如权利要求6所述的机身,其中,所述第一弧形段的半径不小于30mm。
- 如权利要求1至7任意一项所述的机身,其中,所述过滤网与所述外壳之间设有防脱结构。
- 如权利要求8所述的机身,其中,所述防脱结构包括设于所述过滤网上的第一扣位、及设于所述滤网插入口内侧的第二扣位,所述第一扣位与所述第二扣位相扣合,以限制所述过滤网自所述滤网插入口脱出。
- 一种除湿机,其中,包括水箱和如权利要求1至9任一项所述的机身,所述机身与所述水箱连接。
- 如权利要求10所述的除湿机,其中,所述水箱具有朝上的安装开口,机身具有通过所述安装开口至少部分收容于所述水箱内的闲置状态、及通过所述安装开口相对所述水箱伸出的工作状态。
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