CN104911881B - A kind of air setting structure - Google Patents
A kind of air setting structure Download PDFInfo
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- CN104911881B CN104911881B CN201410095513.5A CN201410095513A CN104911881B CN 104911881 B CN104911881 B CN 104911881B CN 201410095513 A CN201410095513 A CN 201410095513A CN 104911881 B CN104911881 B CN 104911881B
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- air
- heat exchanger
- setting structure
- inlet
- wind
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28D—HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
- F28D9/00—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
- F28D9/0062—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits for one heat-exchange medium being formed by spaced plates with inserted elements
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28D—HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
- F28D9/00—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
- F28D9/0031—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits for one heat-exchange medium being formed by paired plates touching each other
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28F—DETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
- F28F2275/00—Fastening; Joining
- F28F2275/14—Fastening; Joining by using form fitting connection, e.g. with tongue and groove
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)
- Detail Structures Of Washing Machines And Dryers (AREA)
Abstract
The present invention discloses a kind of air setting structure, the air setting structure is a shell, air inlet and air outlet including hot wind, it further include the air inlet and air outlet of cold wind, superposing type heat exchanger is arranged in air setting inside configuration, the superposing type heat exchanger is to take the plastics fin put in a crisscross manner, the frame of setting inclosure structure outside superposing type heat exchanger.Air setting structure heat exchange efficiency of the present invention is high, is additionally provided with filter structure, flushing mechanism, and even wind structure can avoid line bits blocking wind path, and airflow smooth is uniform, and structure is simple.
Description
Technical field
The present invention relates to drying field, especially a kind of air setting structure.
Background technique
Constantly upgrade optimization with Energy Efficiency Standard in white goods industry, more and more users begin to focus on the energy of product
Parameter is imitated, energy conservation and environmental protection has become industry development direction.
Therefore the drying capacity that there is elution to dry three-in-one clothes washer-dryer equally upgrades with the upgrading of industry.Rolling
Cartridge type clothes washer-dryer, during the drying process, energy should make the water evaporation of clothing become steam, the steaming being also evaporated
Vapour continues condensation and becomes water vapour.
Triformed condensing mode in industry at present, one, using the cold water of tap water, steam is condensed, advantage: system
Make it is at low cost, using simple.Disadvantage: needing constantly to intake in machine operation, and cooling, water consume is big.Two, use compressor, application
Compressor principle is condensed steam using refrigerant, advantage: efficiency is low, water consumption little power consumption.Disadvantage: it is at high cost, it is expensive, no
Conducive to popularization.Three, air heat exchanger is condensed steam using outside air, though it is high not as good as the condensation efficiency of compressor,
It is to save water, save electricity, and equipment cost is low.
For prior art using aluminum alloy materials as heat exchanger, it is all the way aluminium horizontal that exchanger, which is divided into two-way production,
Plate design, facilitates steam to pass through.Another way is the design of meander configuration aluminium sheet, facilitates heat dissipation.It is generally limited by machine volume, at most
Two sets heat dissipation paths, aluminum alloy materials costs of manufacture height are made, heat dissipation effect is limited by aluminum alloy sheet manufacture craft, steam and cold
Condenser contact area is small, is unfavorable for steam condensation.
To increase heat dissipation area, plastic tab formula heat exchanger stacks overlap joint by the multiple fins being arranged alternately in length and breadth, adopts
With plastic material, molding is simple, and thickness is controllable, and can be made thin, can increase the quantity of fin in effective space,
Heat dissipation area can be increased, improve heat exchanger effectiveness, directly alternately place superposition in length and breadth, be not necessarily to other connecting components, and
Positioning is simple, accurate, but relatively thin thin slice can bring intensity to be lower, and reliability reduces, and deformation can be generated after long-time use,
Properties of product are influenced, add frame in the outside of heat exchanger, while plastic tab formula heat exchanger requires production thickness small, number
Amount is more, mutually assembles between frame, and a lot of lines bits can be generated in clothes drying process, if not allowing easy to clean by line bits blocking, does
Clothing machine duct cross-section area is different from the air inlet sectional area of aerial condenser heat exchange structure, be easy to cause air setting structure
Air inlet is uneven, if the air inlet of air setting structure is uneven, it is undesirable to will lead to condensation effect.
Given this present invention is proposed.
Summary of the invention
It is an object of the present invention to overcome the deficiencies of the prior art and provide a kind of air setting knot with high heat exchange efficiency
Structure.
In order to realize the purpose, the present invention adopts the following technical scheme: a kind of air setting structure, the air setting knot
Structure is a shell, and air inlet and air outlet including hot wind further include the air inlet and air outlet of cold wind, in air setting structure
Superposing type heat exchanger is arranged in portion, and the superposing type heat exchanger takes the plastics fin put, superposing type heat to be multiple in a crisscross manner
The frame of setting inclosure structure outside exchanger.
The heat exchanger includes that the fin put is taken in multiple superpositions, and the opposite two sides of each fin are folded upward at, with
The fin of upper part matches the wind path to form ventilation, and adjacent fin is arranged alternately in length and breadth, constitute mutually independent beam wind road and
Range wind road, range wind road are vertically arranged, corresponding with air inlet and air outlet, and beam wind road is horizontally disposed, with air inlet and air outlet pair
It answers, the lower surface for the two sides that the preferably described fin is folded upward at is equipped with downwardly convex pin, and in addition two sides upper surface is set
There is slot recessed down, the slot that the pin of the fin is inserted under portion's fin connects two neighbouring fins.
The wind path direction that the fin is formed perpendicular to the fin and upper part fin is arranged in parallel with a plurality of downward pressure
The wind path formed with its underpart fin is divided into multiple parallel wind paths by type groove, the die mould slot, the preferably described fin with its
The front and back for the wind path that top fin is formed into and out of downward die mould slot is provided at air port, which constitutes the slot,
The die mould depth that the die mould depth at the both ends of the further preferably described die mould slot is greater than in the middle part of it, which is formed, downward convexes to form described insert
Foot.
Four side outward bendings of the fin are at flange, and the flange of neighbouring fin overlaps, at the slot
Flange be overlapped on its underpart fin and be folded upward on the flange of rear outward bending, and fit closely.
Deckle board is set on six sides of up, down, left, right, before and after of the heat exchanger, and the frame is heat exchanger
The inclosure structure that the deckle board being arranged on side connects and composes, wherein being provided on two groups of deckle boards opposite with beam wind road, range wind road
The through-hole matched with internal exchanger wind path, the opposite deckle board of another set are plate, and the preferably described through-hole is horizontal, vertical arrangement
The rectangular through-hole of setting.
The each deckle board junction of frame is provided with interconnecting piece, and adjacent deckle board is connected by interconnecting piece, the preferably described company
Socket part is buckle structure, and two with the through-hole group deckle board inner surface is provided with multiple parallel grooves, and groove is close with this
The flange of fitting is corresponding, and the flange fitted closely is plugged in the groove of corresponding deckle board inner surface, described to have through-hole
Two groups of deckle boards adjacent each edge on be provided with multiple sheets protrusions perpendicular to deckle board, the shape of the sheet protrusion and
The spatial form that base pin place corresponds between adjacent flange is identical, and the sheet protrusion is plugged on base pin place respectively and corresponds to adjacent flange
Between space in.
One upper cover plate is set at the heat exchanger hot wind inlet, which has a sloped top face, the upper cover plate
A chamber is formed with heat exchanger, it is air setting structure which, which tilts higher one end far from heat exchanger in upper cover plate,
Air inlet, a lower cover plate is set at the heat exchanger hot-blast outlet, and the side of the lower cover plate is going out for air setting structure
Air port, upper and lower lids are connected with tabular deckle board respectively.
Filter device, filtering dress are set between the air inlet of the air setting structure and the heat exchanger hot wind inlet
It sets between the air inlet that air setting structure is set that can be pushed and pulled and the hot wind inlet of heat exchanger, preferably filter device is arranged
In chamber, the filter device is slidably connected with chamber sidewall, and the chamber, filtering dress are stretched out in one end of the filter device
When the one end set is located at chamber penetralia, the other end of filter device is located at the outside of chamber, and passes through the chamber with filter device
The opening of room is tightly connected, and the two sides of the further preferably described filter device are provided with sliding slot/sliding block, corresponding chamber sidewall
On be provided with sliding block/sliding slot, sliding slot/sliding block and sliding block/sliding slot cooperate, and formation is slidably connected.
Flushing mechanism is set between the air inlet of the air setting structure and the heat exchanger hot wind inlet, preferably institute
Stating flushing mechanism includes spraying layer and sealing cover, and spraying layer and sealing cover constitute a cavity, multiple spray apertures are arranged on spraying layer,
Water inlet is set on sealing cover, and the spraying layer is the upper cover plate being arranged at heat exchanger hot wind inlet, and the sealing cover is set
It sets and is tightly connected on upper cover plate top and upper cover plate, multiple spray apertures are set on the upper cover plate.
Even wind structure is entered the wind in setting between the air inlet of the air setting structure and the heat exchanger hot wind inlet, excellent
It selects air inlet and upper cover plate top inner surface to be provided with multiple vertical gussets, air inlet is separated into multiple uniform wind paths, shape
At the even wind structure of air inlet;Outlet air even wind is set between the air outlet of the air setting structure and the heat exchanger hot-blast outlet
Structure, is arranged a lower cover plate at the hot-blast outlet that the preferably described heat exchanger is condensed, the side setting of the lower cover plate it is multiple go out
Air port, multiple air outlets are connected to a total air outlet in " crowd " shape, form the even wind structure of outlet air.
After technical solutions according to the invention, bring it is following the utility model has the advantages that
1, present heat exchanger uses plastics fin, and molding is simple, and thickness is controllable, and can be made thin, can be
The quantity that fin can be increased in effective space, can increase heat dissipation area, improve heat exchanger effectiveness;Die mould slot can both play
The effect of positioning, and wind path can be formed, air-flow is guided, while increasing the intensity of fin, prevent from deforming, moreover it is possible to increased contact and dissipate
Heat area increases the efficiency of heat exchange.
2, frame is set outside heat exchanger in the present invention, stationary heat exchangers and the strong of heat exchanger can be enhanced
Degree, improves the operational reliability of heat exchanger, prolongs the service life, and reduces the breakdown maintenance rate of machine, reduce machine maintenance at
This;Frame and each fin are located by connecting, and mutually assemble, and mutually support, are connected firmly, and structure is simple, easy for installation.
3, filter structure is set in the present invention, filters the line bits generated in clothes drying process, avoids blocking heat-exchanger wind path,
And filter structure is slidably connected to be pullable, can pull out filter structure, be cleared up, it is easy to operate.
4, flushing mechanism is set in the present invention, can line bits in auto-flushing filter structure or heat exchanger wind path, keep away
The air resistance coefficient for exempting from system caused by line bits improves, and extends the service life of heat exchanger;It is rinsed using water flow manually unclear
Reason, improves the automatization level of machine.
5, even wind structure is set in the present invention, air-flow even transition at air inlet and air outlet is evenly distributed to heat exchange
It is condensed in all wind paths of device, on the one hand avoids the uneven of hot wind, improved the efficiency of heat exchange, on the other hand avoid air-flow
It is uneven caused by pressure it is uneven, system is had an impact.
A specific embodiment of the invention is described in further detail with reference to the accompanying drawing.
Detailed description of the invention
Fig. 1: the external structure of dryer or washing-drying integral machine of the present invention
Fig. 2: the internal structure chart of dryer or washing-drying integral machine of the present invention
Fig. 3: the structure chart of air setting structure of the present invention
Fig. 4: the explosive view of air setting structure of the present invention
Fig. 5: present heat exchanger wind path schematic diagram
Fig. 6: the present invention has the heat converter structure figure of frame
Enlarged drawing at Fig. 7: Fig. 6 A
Enlarged drawing at Fig. 8: Fig. 6 B
Fig. 9: the explosive view of present heat exchanger
Figure 10: superposing type heat converter structure figure of the present invention
Figure 11: superposing type heat exchanger explosive view of the present invention
Figure 12: the wind path schematic diagram of superposing type heat exchanger of the present invention
Figure 13: the structure chart of flushing mechanism of the present invention
Figure 14: the structure chart of the even wind structure of the present invention
Figure 15: the structure chart of upper cover plate of the present invention
Wherein: 1, fin, the 11, first fin, the 12, second fin, 4, pin, 5, slot, 6, die mould slot, 7, flange, 8,
Deckle board, 9, through-hole, 13, recess, 14, card column, 15, card convex, 16, hole, 17, block tongue, 18, bayonet, 19, buckle, 20, card slot, 21,
Groove, 22, sheet protrusion, 23, sealing baffle, 24, hot wind inlet, 25, upper cover plate, 26, filter structure, 27, air duct, 28, chamber
Room, 29, front panel, 30, roller, 31, hot wind wind path, 32, cold wind wind path, 33, air inlet, 34, blower, 35, heat exchanger,
36, air inlet, 37, air outlet, 38, gusset, 39, lower cover plate, 40, spraying layer, 41, sealing cover, 42, spray apertures, 43, water inlet
Mouthful, 44, water pump, 45, air inlet, 46, side plate.
Specific embodiment
As shown in figure 3, a kind of air setting structure of the present invention, the air setting structure is a shell, including heat
The air inlet 36 and air outlet 37 of wind further include air inlet 33 and the gas outlet of cold wind, the setting superposition of air setting inside configuration
Formula heat exchanger, the heat exchanger are to take the plastics fin put in a crisscross manner, the frame of setting inclosure structure outside heat exchanger
Frame.
As shown in figs. 10,11 and 12, superposing type heat exchanger takes the fin 1 put, each fin 1 including multiple superpositions
Opposite two sides be folded upward at, the wind path to form ventilation is matched with the fin 1 of upper part, adjacent fin 1 replaces in length and breadth
Setting, constitute it is mutually indepedent between the upper and lower every beam wind road and range wind road.High temperature gas flow can wherein be led in beam wind road, in range wind road
Can lead in low-temperature airflow or beam wind road can lead to low-temperature airflow, and high temperature gas flow, the gas of different temperatures can be led in range wind road
Stream is in internal indirect contact heat exchanger.Fin 1 uses plastic material, and molding is simple, and thickness is controllable, and can be made thin,
The quantity that fin can be increased in effective space, can increase heat dissipation area, improve heat exchanger effectiveness.
Wherein range wind road is vertically arranged, corresponding with the air inlet 36 of air setting structure and air outlet 37, with hot wind wind path
31 connections, beam wind road is horizontally disposed, corresponding with the air inlet 33 of air setting structure and gas outlet 45, connects with cold wind wind path 32
It connects.
The lower surface for the two sides that fin 1 is folded upward at is equipped with downwardly convex pin 4, before and after 1 wind path of fin
It is equipped at inlet and outlet and is arranged alternately in length and breadth with the matched slot 5 of pin 4, fin 1, the corresponding lower layer of the pin 4 of upper layer fin sticks up
The position of the slot 5 of piece, the slot 5 that the pin 4 of upper layer fin is inserted under layer fin connect two neighbouring fins.
The wind path direction that fin 1 is formed perpendicular to the fin and upper part fin is arranged in parallel with a plurality of downward die mould slot
6, the wind path formed with its underpart fin is divided into multiple parallel wind paths by the die mould slot 6.The die mould slot 6 can both be formed
Wind path guides air-flow, while increasing the intensity of fin, prevents from deforming, plays the role of reinforcing rib, while increasing a plurality of die mould
Slot is equivalent in identical projected area and increases contact heat dissipation area, to increase the efficiency of heat exchange.
Fin 1 before and after the wind path formed with upper part fin into and out of being provided with downward die mould slot 6 at air port,
The die mould slot 6 constitutes the slot 5, i.e. fin 1 is the slot 5 in the die mould slot 6 of air inlet;The die mould slot 6
The die mould depth that the die mould depth at both ends is greater than in the middle part of it formed it is downward convex to form the pin 4, only change one in this way
The depth of down-pressing type can form the pin 4, without carrying out individual die mould to pin 4, simplify molding technique, this
The position of sample pin 4 and the position of die mould slot 6 correspond, but the position of pin 4 is not limited to the only position with die mould slot 6
Correspondence is set, pin 4 can be distributed in any position of the lower surface for the two sides being folded upward at, and preferably guarantee both ends respectively have one
Pin, centre redistribute at least one.
The four side outward bending of fin 1 is at flange 7, and the flange 7 of neighbouring fin overlaps, at the slot 5
Flange 7 is overlapped on its underpart fin and is folded upward on the flange 7 of rear outward bending, and fits closely the wind path to form sealing.Its
In there is the flange of the two sides of upward bending to be higher than fin, the flange of the two sides equipped with slot is lower than fin, upper layer fin
Lower flange at slot rides over lower layer's fin and is folded upward on the higher flange at place, fits closely the wind to form sealing
Road, while playing the role of limit.It is located by connecting using pin 4, slot 5 and bending flange 7, directly alternately places superposition in length and breadth
, other connecting components are not necessarily to, and position simple, accurate.
Fin 1 with a thickness of 0.2-0.5mm, the heat exchanger relative to aluminium alloy greatly reduces the thickness of sheet body, limited
Space in more heat exchange fins can be set, the area of heat exchange is increased, to improve heat exchange efficiency.
Heat exchanger 35 is formed by the mode that multiple groups fin stacks, including the first fin 11 and the second fin 12, and first sticks up
Two long sides of piece 11 are folded upward at the wind path for matching with the fin of upper part and forming ventilation, two short sides of the second fin 12
It is folded upward at the wind path for matching with the fin of upper part and forming ventilation, if the first fin 11 and the second fin 12 are square
When, the structure of the two is identical, and the first fin 11 and the second fin 12 are alternately placed, constitute it is mutually indepedent between the upper and lower every beam wind road
With range wind road.Fin all around has outwardly extending flange, wherein there is the flange of the two sides of upward bending to be higher than fin, if
There is the flange of the two sides of slot to be lower than fin, the lower flange at the slot of upper layer fin rides over lower layer's fin and is folded upward at
On the higher flange at place, the wind path to form sealing is fitted closely.
In use, in horizontal direction, wind path is passed through temperature in the wind path of horizontal direction at vertical direction to wind path all the way all the way
Lower air-flow is passed through the higher air-flow of temperature in the wind path of vertical direction, heat exchange occurs when air-flow passes through, wherein vertical side
To wind path in aqueous vapor in the higher air-flow of temperature condense to the cold, condensed water flows downward out heat exchanger along the side wall of wind path,
It applies in dryer or washing-drying integral machine, the hot wind wind path 31 is the circulating air duct of dryer or washing-drying integral machine, described
Cold wind wind path 32 is air wind path.The hot and humid air outlet of the circulating air duct of range wind road and dryer or washing-drying integral machine passes through wind
Machine connection, beam wind road are connected to by blower with outside air, and outside air is pumped into the wind path of horizontal direction, while wind by blower
Damp-heat air inside dryer is pumped into the wind path of vertical direction by machine, the water by the heat loss through conduction of fin, in damp-heat air
Steam is condensed into condensed water, and the side wall along wind path flows downward out heat exchanger, until the collecting box of dryer or washing-drying integral machine.
For the intensity for enhancing heat exchanger, the operational reliability of heat exchanger is improved, is prolonged the service life, machine is reduced
Breakdown maintenance rate reduces machine maintenance cost, and frame is arranged in the external of heat exchanger of the present invention, the heat exchanger
Deckle board 8 is set on six sides of up, down, left, right, before and after, and the frame is that the deckle board 8 being arranged on heat exchanger side connects
The inclosure structure of composition forms the heat exchanger with frame.
It is wherein provided on two groups of opposite deckle boards 8 as shown in Fig. 5, Fig. 6, Fig. 7, Fig. 8, Fig. 9, on frame and internal heat
The through-hole 9 that device wind path matches, the opposite deckle board 8 of another set are plate, on the one hand the plate makes frame form a sealing
Cavity, on the other hand opposite with other two groups deckle board connection, further reinforces connection effect, avoid described two groups it is opposite
Deckle board deformation.
The each deckle board junction of frame is provided with interconnecting piece, and adjacent deckle board is connected by interconnecting piece, the preferably described interconnecting piece
For buckle structure, structure is simple, easy for installation.
Buckle structure described further is that one of 8 edge of deckle board is provided with recess 13, is provided with cylinder in recess 13
The card column 14 of shape, the edge of deckle board 8 connected to it are provided with card convex 15, and hole 16,15 grafting of card convex are provided in card convex 15
In recess 13, two deckle boards 8 realize positioning, and the card column 14 in recess 13 is plugged in the hole 16 in card convex 15, realize connection;
Or the buckle structure is that one of 8 edge of deckle board is provided with "T"-shaped block tongue 17, deckle board connected to it
Edge is provided with " eight " shape bayonet 18, and "T"-shaped block tongue 17 is plugged in " eight " shape bayonet 18, and "T"-shaped block tongue 17 is by " eight " shape card
Mouthfuls 18 wider one end insertions, bayonet 18 have certain deformation quantity, and block tongue 17 is exerted oneself one end that " eight " shape bayonet 18 is relatively narrow
Top width, after the wider head of block tongue 17 is injected in 18 mouthfuls of card, bayonet 18 restores to the original state, and block tongue 17 cannot reversely be extracted out, realizes solid
Fixed connection;
Again or the buckle structure is that the side at one of 8 edge of deckle board is provided with the buckle 19 of protrusion, is connected with it
The edge of the deckle board 8 connect have one perpendicular to deckle board flanging, the side of flanging corresponds to snapped on position and is provided with recessed card slot
20, buckle is clamped with card slot;
Above-mentioned several buckle structures can be used alone, and can also be applied in combination for any two or three on same frame.
Two groups of 8 inner surfaces of deckle board with through-hole 9 are provided with multiple parallel grooves 21, the groove 21 and heat exchanger four
The flange 7 fitted closely on week is corresponding, and the flange 7 fitted closely is plugged in the groove 21 of corresponding deckle board inner surface,
The flange of flange and upper part or lower part fin per a piece of fin 1 is inserted into the groove 21 of lower portion after combining closely, both
It is capable of fixing fin, moreover it is possible to play the role of increasing fin intensity, improve functional reliability.
Specifically: heat exchanger includes that the fin 1 put is taken in multiple superpositions, and the opposite two sides of each fin are bent up
Folding, the wind path to form ventilation is matched with the fin of upper part, and adjacent fin is arranged alternately in length and breadth, is constituted independently of each other between the upper and lower
Every beam wind road and range wind road, the through-hole being arranged on two groups of opposite deckle boards respectively with beam wind road, range wind road import and
Outlet corresponds to.Four side outward bendings of fin are at flange 7, and the flange of neighbouring fin 1 overlaps, at the slot
Flange is overlapped on its underpart fin and is folded upward on the flange 7 of rear outward bending, and fits closely, the ditch of the deckle board inner surface
Slot 21 is corresponding with the flange fitted closely 7, and the flange 7 fitted closely is plugged on the groove of corresponding 8 inner surface of deckle board
In 21.
Multiple sheet protrusions 22 perpendicular to deckle board 8 are provided on adjacent each edge of two groups of deckle boards with through-hole 9,
Spatial form between the shape of the sheet protrusion 22 and the corresponding adjacent flange of base pin place is identical, and the sheet protrusion 22 is distinguished
It is plugged in the space that base pin place corresponds between adjacent flange.
Specifically: the lower surface for the two sides that fin 1 is folded upward at is equipped with downwardly convex pin 4, in addition on two sides
Surface is equipped with slot 5 recessed down, and the slot 5 that the pin 4 of the fin 1 is inserted under portion's fin connects neighbouring two
Fin, the preferably described fin four corners are at least respectively arranged with a pin 4, and pin side is to bend downward rear outward bending
Flange 7, the other side are the flange 7 for being folded upward at rear outward bending, are seamlessly transitted at pin 4, the shape of the sheet protrusion 22
Spatial form between shape and the corresponding adjacent flange of base pin place is identical, and the sheet protrusion 22 is plugged on base pin place respectively and corresponds to phase
In space between adjacent flange.
In heat exchanger of the present invention with frame, connected between heat exchanger by pin 4, slot 5, and every phase
The flange 7 of adjacent two fins fitting is inserted into the groove 21 of deckle board, stationary heat exchangers, while improving intensity, and there are also deckle boards
On sheet protrusion be inserted into the space between base pin place transition flange, further fix, between each structure mutually limit,
It is mutually located, mutually assembly, mutually support.
Sealing baffle 23 is provided with outside frame, it is preferably described to be provided with the through-hole matched with internal exchanger wind path
The edge of deckle board 8 is provided with sealing baffle 23, enhances the leakproofness of frame, keeps entire heat exchanger appearance globality strong.
Multiple heat exchangers 35 can be connected into use in another embodiment in the present invention, improve hot and cold air
Contact area and time improve heat exchange efficiency.
The frame i.e. effect of being located by connecting in the present invention has booster action again, increases the reliability operation of component, simultaneously
Can be with the fin of stationary heat exchangers, while can also mutually assemble, it is mutually located, structure is simple, easy for installation.
As shown in Figure 1, Figure 2, Figure 3, Figure 4, air setting structure of the present invention is applied in dryer or washing-drying integral machine,
It includes drying system that dryer, which includes at least, and the drying system includes heating structure and air setting structure, and the air is cold
Concretio is arranged in 30 lower part of dryer or washing-drying integral machine roller, and the air setting structure includes 36 He of air inlet of hot wind
Air outlet 37, further includes air inlet 33 and the gas outlet 45 of cold wind, and heat exchanger 35, the heat is arranged in air setting inside configuration
Exchanger 35 is to take the fin put in a crisscross manner, and heat exchanger 35 includes two groups of cross one another wind paths, one group of wind path and hot wind
Wind path 31 connects, and another group of wind path is connect with cold wind wind path 32, and the frame of inclosure structure is arranged outside heat exchanger 35.
The front panel 29 of the length direction of air setting structure and dryer or washing-drying integral machine or side plate 46 is vertical sets
It sets, the preferably length direction with dryer of air setting structure or the front panel 29 of washing-drying integral machine is vertically arranged.
The air setting structure is air setting structure, and air inlet 36 is on top, and air outlet 37 is in lower part, such hot wind
During by air setting structure, the vapor in hot wind condenses into condensed water to the cold, can be along air setting structure
Inner wall flow downward to condensed water collecting device under gravity, air inlet 36, air outlet 37 pass through dryer respectively
Air duct 27 is connected to roller 30, and blower is arranged in one of mouth in air inlet 33 and gas outlet 45, another mouth is communicated with atmosphere.
The front of washing-drying integral machine is arranged in the air inlet 33, and the rear portion of washing-drying integral machine is arranged in gas outlet 45, and
Blower 34 is set at gas outlet 45, and blower 34 may also be arranged at air inlet 33, suck sky by front under the action of blower 34
It is discharged after hot air heat exchange inside gas, with heat exchanger 35 by rear portion, the front of dryer or washing-drying integral machine, which needs to open the door, to be taken
Put clothing, do not have obstacle generally, the front of dryer or washing-drying integral machine is arranged in air inlet 33, it is ensured that air inlet it is smooth
Logical, the rear portion of dryer or washing-drying integral machine is arranged in gas outlet 45, and air is discharged by rear portion, will not cause to the user of front
Interference.
For the heat exchanger effectiveness for improving air setting structure, the present invention uses Superimposed heat exchanger, using plastic material,
Molding is simple, and thickness is controllable, and can be made thin, can increase the quantity of fin in effective space, can increase scattered
Heat area improves heat exchanger effectiveness, and positions simple, accurate.
Circulation of the air setting structure in dryer or washing-drying integral machine in dryer perhaps washing-drying integral machine
The condensation of damp-heat air is used on wind path, operation can to generate line bits when drying, since the fin number of plies is more in heat exchanger 35, when long
Between operation line consider accumulation easy to form to be worth doing, for the line bits blocking for preventing hot wind wind path 31 from taking out of out of dryer or washing-drying integral machine
The wind path of heat exchanger 35, is arranged filter structure 26 at the hot wind inlet 24 of heat exchanger 35, effectively filters the impurity such as line bits,
It avoids it from entering internal heat exchanger, it is logical to cause wind path unsmooth flowing, or result in blockage to wind path.The heat exchanger 35
24 setting filter structure at hot wind inlet, the air inlet 36 that air setting structure is set that the filter structure 26 can push and pull with
Between the hot wind inlet 24 of heat exchanger.
As shown in Figure 3, Figure 4, a upper cover plate 25 is set at the hot wind inlet 24 of heat exchanger 35, which has one
Sloped top face, the upper cover plate 25 form a chamber 28 with heat exchanger, which tilts higher, separate heat in upper cover plate and hand over
One end of parallel operation is air inlet 36, and upper cover plate inclination is higher, one end far from heat exchanger is folded upward at, and opposite another
One side constitutes the air inlet 36 of air setting structure, and the filter structure is arranged in the chamber 28, the air inlet 36
In the side of filter structure, heat exchanger hot wind inlet 24 is located at the other side of filter structure.In this way, entering air inlet in hot wind
After 36, into before hot wind inlet 24, the line bits in hot wind are stopped by filter structure, and line bits is avoided to enter the interior of heat exchanger
Filter structure periodically cleans in portion.
Filter structure 26 is connect with 28 side walls of chamber, and the chamber 28, filtering are stretched out in one end of the filter structure
Structure 26 is greater than length of the heat exchanger 35 on filter structure push-and-pull direction, filter structure in the length on push-and-pull direction
When 26 one end is located at 28 penetralia of chamber, the other end of filter structure is located at the outside of chamber.Filter structure 26 can be pulled outwardly
It is cleared up out, when one end of the filter structure 26 is located at 28 penetralia of chamber, filter structure 26 is located at outside chamber 28
The opening that one end and filter structure pass through the chamber 28 is tightly connected, and is guaranteed in normal use, internal hot wind will not leak.
The two sides of filter structure 26 are provided with sliding slot/sliding block, and sliding block/cunning is provided in corresponding chamber sidewall
Slot, sliding slot/sliding block and sliding block/sliding slot cooperate, and formation is slidably connected, and facilitate the push-and-pull of filter structure.
The bottom of dryer or washing-drying integral machine is arranged in filter structure 26 and heat exchanger 35, and dryer or washes dry one
The front panel 29 of body machine is vertically arranged, and the filter structure 26 can be along the front panel 29 perpendicular to dryer or washing-drying integral machine
Direction push-and-pull.One end of filter structure 26 is located at 28 penetralia of chamber when normal condensation, and the other end of filter structure 26 is located at chamber
The outside of room 28 opens pavcilion plate when cleaning and pulls out filter structure and can clear up filter structure.
Filter structure is filter screen, and the area of air inlet of area and heat exchanger of the filter screen is corresponding, described
Framework is set around filter screen, and the upper cover plate inner sidewall is provided with slot, and the framework is plugged on upper cover plate inner sidewall
In slot, it is slidably connected.
Due to that can generate line bits when drying, the fin number of plies of heat exchanger 35 is more, and the gap between adjacent layer is smaller, long
Time runs line and considers accumulation easy to form to be worth doing, and long-play line bits are easy to form heap at filter structure after filter structure is arranged
Product clears up for convenience of the line bits to internal heat exchanger, flushing mechanism is arranged at the hot wind inlet of heat exchange 35, or
For convenience of cleaning filter structure filtering line bits, air setting structure air inlet 36 and heat exchanger hot wind inlet 24 it
Between flushing mechanism is set, flushing mechanism is located at the top of filter structure.
As shown in figure 13, flushing mechanism includes spraying layer 40 and sealing cover 41, and spraying layer 40 and sealing cover 41 are constituted
Multiple spray apertures 42 are arranged on spraying layer 40 for chamber, and water inlet 43, the connection of water inlet 43 one of sealing cover 41 are arranged on sealing cover 41
Water pump 44 is connected to by the water pump 44 with tap water or other water sources.Drying end of run perhaps in operational process or
Periodically heat exchanger is rinsed, gap is small between spraying layer 40 and sealing cover 41, can form certain hydraulic pressure, and hydraulic pressure can be with
So that each spray apertures is sprayed water column, rinses each wind path of heat exchanger.
At the hot wind inlet 24 of heat exchanger be arranged a upper cover plate 25, the upper cover plate 25 have a sloped top face, it is described on
Cover board 25 and heat exchanger form a chamber 28, the chamber 28 upper cover plate tilt higher one end far from heat exchanger be into
Air port, the upper cover plate inclination is higher, one end far from heat exchanger is folded upward at, and it is cold to constitute air with opposite another side
The air inlet 36 of concretio, the spraying layer 40 are the sloped top face of upper cover plate 25, and multiple sprays are arranged in the sloped top face
Hole 42, multiple spray apertures 42 are uniformly arranged on upper cover plate 25.
The pore diameter range of spray apertures 42 is 2-6mm, spacing 5-10mm, is rushed convenient for all wind paths to heat exchanger
It washes.
The setting of sealing cover 41 is tightly connected on 25 top of upper cover plate and upper cover plate 25, and one is equipped between spraying layer and sealing cover
Small gap.The gap is 4-8mm.The gap can guarantee that the water entered can form certain hydraulic pressure in inside, and hydraulic pressure can be with
So that each spray apertures is sprayed water column, wind path is rinsed.
Flushing mechanism is located at 26 top of filter structure, can be rinsed to filter structure, does not just have to every time by pavcilion
Plate is opened, and extraction filter structure 26 is cleaned up.
The air inlet 36 of air setting structure is the air port of an entirety, and the hot wind inlet 24 of heat exchanger is multiple wind
Mouthful, and the area of section of the air inlet of air setting structure is less than the area of section of the hot wind inlet of heat exchanger, air setting
The air outlet 37 of structure is the air port of an entirety, and the hot-blast outlet of heat exchanger is multiple air ports, and air setting structure
The area of section of air outlet 37 is less than the area of section of the hot-blast outlet of heat exchanger, to realize by hot wind air setting structure
The even transition of the hot wind inlet 24 of 36 heat exchanger of air inlet, air inlet 36 and the heat exchange in air setting structure
Even wind structure is entered the wind in setting between the hot wind inlet 24 of device, to realize hot wind by heat exchanger hot-blast outlet to air setting structure
Air outlet even transition, between the air outlet and the heat exchanger hot-blast outlet of air setting structure be arranged outlet air it is even
Wind structure.
As shown in Figure 14, Figure 15, enter the wind even wind structure are as follows: a upper cover plate 25, upper cover are set at exchanger hot wind inlet 24
Plate 25 has a sloped top face, and the upper cover plate 25 and heat exchanger form a chamber 28, the chamber upper cover plate tilt it is higher,
One end far from heat exchanger is air inlet, and air inlet inner surface is provided with multiple gussets disposed in parallel 38, and gusset 38 will be into
Air port 36 is separated into multiple wind paths.In this way under the guidance for the wind path that gusset 38 is constituted, hot wind can uniformly enter heat exchange
Each hot wind inlet 24 of device.
The gusset 38 is arranged along the hot wind inlet 24 of heat exchanger, the clearance space and heat exchanger of adjacent two gusset 38
35 hot wind inlet 24 is corresponding.The inclination of upper cover plate 25 is higher, is folded upward at far from one end of heat exchanger, and opposite another
Side constitutes air inlet, and two opposite inner surfaces of air inlet are evenly arranged with multiple parallel gussets perpendicular to the inner surface
38, the gusset 38 is vertically arranged.
Multiple parallel gussets 38, the top of the gusset 38 and sloped top face is arranged in 25 sloped top face inner surface of upper cover plate
Connection, lower part is hanging, and the height change of the gusset 38 is corresponding with the tilt angle of sloped top face, the height of gusset 38 from into
Air port internally gradually decreases, and the plane that 38 lower part of gusset is constituted is parallel with heat exchanger upper surface.
The upper cover plate 25 and the gusset 38 are wholely set, preferably integrated injection molding.
As shown in figure 4, the even wind structure of outlet air are as follows: a lower cover plate is arranged at the hot-blast outlet that the heat exchanger is condensed
39, multiple air outlets are arranged in the side of the lower cover plate 39, and multiple air outlets are connected to a total air outlet in " crowd " shape, are connected to
The air duct 27 of dryer or washing-drying integral machine, have in this way heat exchanger come out be condensed after hot wind first pass through multiple outlet air
Mouthful, it reassociates to together, until the air duct of dryer or washing-drying integral machine.Upper cover plate 25, lower cover plate 39 and heat exchanger clamping connect
It connects, is preferably connect with two flat deckle boards, and to be tightly connected.
The foregoing is merely the preferred embodiment of the present invention, it is noted that for those of ordinary skill in the art and
Speech, without departing from the principles of the present invention, can also make various deformation and improvement, this also should be considered as protection of the invention
Range.
Claims (50)
1. a kind of air setting structure, the air setting structure is a shell, and air inlet and air outlet including hot wind also wrap
Include the air inlet and air outlet of cold wind, it is characterised in that: superposing type heat exchanger, the superposition is arranged in air setting inside configuration
Formula heat exchanger is to take the plastics fin put in a crisscross manner, the frame of setting inclosure structure outside superposing type heat exchanger;It is described
Heat exchanger includes that the fin put is taken in multiple superpositions, and adjacent fin is arranged alternately in length and breadth, is constituted mutually independent beam wind road and is indulged
Wind path, range wind road are vertically arranged, corresponding with air inlet and air outlet, and beam wind road is horizontally disposed, corresponding with air inlet and air outlet,
The opposite two sides of each fin are folded upward at, and match the wind path to form ventilation with the fin of upper part, the fin to
The lower surface of the two sides of upper bending is equipped with downwardly convex pin, and in addition two sides upper surface is equipped with slot recessed down,
The slot that the pin of the fin is inserted under portion's fin connects two neighbouring fins.
2. a kind of air setting structure according to claim 1, it is characterised in that: the fin is perpendicular to the fin and its
The wind path direction that top fin is formed is arranged in parallel with a plurality of downward die mould slot, and the die mould slot will be formed with its underpart fin
Wind path be divided into multiple parallel wind paths.
3. a kind of air setting structure according to claim 2, it is characterised in that: the fin with upper part fin shape
At wind path front and back into and out of downward die mould slot is provided at air port, which constitutes the slot.
4. a kind of air setting structure according to claim 2, it is characterised in that: the die mould at the both ends of the die mould slot is deep
The die mould depth that degree is greater than in the middle part of it, which is formed, downward convexes to form the pin.
5. according to a kind of any air setting structure of claim 2-4, it is characterised in that: four sides of the fin
Outward bending is overlapped at flange, the flange of neighbouring fin, and it is upward that the flange at the slot is overlapped on its underpart fin
After bending on the flange of outward bending, and fit closely.
6. a kind of air setting structure according to claim 1 to 4, it is characterised in that: the heat exchanger it is upper,
Under, deckle board is set on the side of left, right, front and rear six, the frame is what the deckle board being arranged on heat exchanger side connected and composed
Inclosure structure, wherein be provided on two groups of deckle boards opposite with beam wind road, range wind road matched with internal exchanger wind path it is logical
Hole, the opposite deckle board of another set are plate.
7. a kind of air setting structure according to claim 6, it is characterised in that: the through-hole is horizontal, vertical is arranged
Rectangular through-hole.
8. a kind of air setting structure according to claim 5, it is characterised in that: the heat exchanger it is upper and lower, left,
Deckle board is set on right, forward and backward six sides, and the frame is the inclosure knot that the deckle board being arranged on heat exchanger side connects and composes
Structure, wherein being provided with the through-hole matched with internal exchanger wind path on two groups of deckle boards opposite with beam wind road, range wind road, in addition
One group of opposite deckle board is plate.
9. a kind of air setting structure according to claim 8, it is characterised in that: the through-hole is horizontal, vertical is arranged
Rectangular through-hole.
10. according to a kind of any air setting structure of claim 6-9, it is characterised in that: each deckle board of frame
Junction is provided with interconnecting piece, and adjacent deckle board is connected by interconnecting piece.
11. according to a kind of any air setting structure of claim 8-9, it is characterised in that: each deckle board of frame
Junction is provided with interconnecting piece, and adjacent deckle board is connected by interconnecting piece, the interconnecting piece is buckle structure, described with through-hole
Two groups of deckle board inner surfaces are provided with multiple parallel grooves, and groove is corresponding with the flange that this is fitted closely, described to fit closely
Flange be plugged in the groove of corresponding deckle board inner surface, be arranged on adjacent each edge of two with the through-hole group deckle board
There are multiple sheet protrusions perpendicular to deckle board, the space shape between the shape adjacent flange corresponding with base pin place of the sheet protrusion
Shape is identical, and the sheet protrusion is plugged on respectively in the space that base pin place corresponds between adjacent flange.
12. -4, a kind of any air setting structure of 7-9 according to claim 1, it is characterised in that: the heat exchanger
One upper cover plate is set at hot wind inlet, which has a sloped top face, and the upper cover plate and heat exchanger form a chamber,
The chamber tilts the air inlet that higher one end far from heat exchanger is air setting structure, the heat exchanger in upper cover plate
One lower cover plate is set at hot-blast outlet, and the side of the lower cover plate is the air outlet of air setting structure, and upper and lower lids are peaceful respectively
The connection of plate deckle board.
13. a kind of air setting structure according to claim 5, it is characterised in that: at the heat exchanger hot wind inlet
One upper cover plate is set, which has a sloped top face, and the upper cover plate and heat exchanger form a chamber, and the chamber is upper
Cover board tilts one end higher, far from heat exchanger for the air inlet of air setting structure, at the heat exchanger hot-blast outlet
One lower cover plate is set, and the side of the lower cover plate is the air outlet of air setting structure, and upper and lower lids connect with tabular deckle board respectively
It connects.
14. a kind of air setting structure according to claim 6, it is characterised in that: at the heat exchanger hot wind inlet
One upper cover plate is set, which has a sloped top face, and the upper cover plate and heat exchanger form a chamber, and the chamber is upper
Cover board tilts one end higher, far from heat exchanger for the air inlet of air setting structure, at the heat exchanger hot-blast outlet
One lower cover plate is set, and the side of the lower cover plate is the air outlet of air setting structure, and upper and lower lids connect with tabular deckle board respectively
It connects.
15. a kind of air setting structure according to claim 10, it is characterised in that: at the heat exchanger hot wind inlet
One upper cover plate is set, which has a sloped top face, and the upper cover plate and heat exchanger form a chamber, and the chamber is upper
Cover board tilts one end higher, far from heat exchanger for the air inlet of air setting structure, at the heat exchanger hot-blast outlet
One lower cover plate is set, and the side of the lower cover plate is the air outlet of air setting structure, and upper and lower lids connect with tabular deckle board respectively
It connects.
16. a kind of air setting structure according to claim 11, it is characterised in that: at the heat exchanger hot wind inlet
One upper cover plate is set, which has a sloped top face, and the upper cover plate and heat exchanger form a chamber, and the chamber is upper
Cover board tilts one end higher, far from heat exchanger for the air inlet of air setting structure, at the heat exchanger hot-blast outlet
One lower cover plate is set, and the side of the lower cover plate is the air outlet of air setting structure, and upper and lower lids connect with tabular deckle board respectively
It connects.
17. -4, any a kind of air setting structure of 7-9,13-16 according to claim 1, it is characterised in that: the sky
It is gas-cooled between the air inlet and the heat exchanger hot wind inlet of concretio and filter device, the setting that filter device can push and pull is set
Between the air inlet of air setting structure and the hot wind inlet of heat exchanger.
18. a kind of air setting structure according to claim 5, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger.
19. a kind of air setting structure according to claim 6, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger.
20. a kind of air setting structure according to claim 10, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger.
21. a kind of air setting structure according to claim 11, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger.
22. a kind of air setting structure according to claim 12, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger.
23. any a kind of air setting structure of 3-16 according to claim 1, it is characterised in that: the air setting knot
Filter device is set between the air inlet of structure and the heat exchanger hot wind inlet, and the setting that filter device can push and pull is cold in air
Between the air inlet of concretio and the hot wind inlet of heat exchanger, filter device is arranged in chamber, the filter device and chamber
The chamber is stretched out in one end of the connection of room side walls, the filter device, when one end of filter device is located at chamber penetralia,
The other end of filter device is located at the outside of chamber, and the opening for passing through the chamber with filter device is tightly connected.
24. a kind of air setting structure according to claim 12, it is characterised in that: the air inlet of the air setting structure
Filter device is set between mouth and the heat exchanger hot wind inlet, what filter device can push and pull is arranged in air setting structure
Between air inlet and the hot wind inlet of heat exchanger, filter device is arranged in chamber, and the filter device and chamber sidewall are sliding
The chamber, when one end of filter device is located at chamber penetralia, filter device are stretched out in one end of dynamic connection, the filter device
The other end be located at the outside of chamber, and the opening for passing through the chamber with filter device is tightly connected.
25. a kind of air setting structure according to claim 23, it is characterised in that: the two sides of the filter device are set
It is equipped with sliding slot/sliding block, sliding block/sliding slot is provided in corresponding chamber sidewall, sliding slot/sliding block and sliding block/sliding slot cooperate, shape
At being slidably connected.
26. a kind of air setting structure according to claim 24, it is characterised in that: the two sides of the filter device are set
It is equipped with sliding slot/sliding block, sliding block/sliding slot is provided in corresponding chamber sidewall, sliding slot/sliding block and sliding block/sliding slot cooperate, shape
At being slidably connected.
27. -4, any a kind of air setting structure of 7-9,13-16,18-22,24-26 according to claim 1, feature
It is: flushing mechanism is set between the air inlet of the air setting structure and the heat exchanger hot wind inlet.
28. a kind of air setting structure according to claim 5, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
29. a kind of air setting structure according to claim 6, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
30. a kind of air setting structure according to claim 10, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
31. a kind of air setting structure according to claim 11, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
32. a kind of air setting structure according to claim 12, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
33. a kind of air setting structure according to claim 17, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
34. a kind of air setting structure according to claim 23, it is characterised in that: the air inlet of the air setting structure
Flushing mechanism is set between mouth and the heat exchanger hot wind inlet.
35. a kind of air setting structure according to claim 27, it is characterised in that: the flushing mechanism includes spraying layer
And sealing cover, spraying layer and sealing cover constitute a cavity, multiple spray apertures are arranged on spraying layer, water inlet is arranged on sealing cover,
The spraying layer is the upper cover plate being arranged at heat exchanger hot wind inlet, and the sealing cover is arranged in upper cover plate top and upper cover
Plate is tightly connected, and multiple spray apertures are arranged on the upper cover plate.
36. according to a kind of any air setting structure of claim 28-34, it is characterised in that: the flushing mechanism packet
Spraying layer and sealing cover are included, spraying layer and sealing cover constitute a cavity, multiple spray apertures are arranged on spraying layer, are arranged on sealing cover
Water inlet, the spraying layer are the upper cover plate being arranged at heat exchanger hot wind inlet, and the sealing cover is arranged on upper cover plate
Portion and upper cover plate are tightly connected, and multiple spray apertures are arranged on the upper cover plate.
37. -4, any a kind of air setting structure of 7-9,13-16,18-22,24-26,28-35 according to claim 1,
It is characterized by: even wind knot is entered the wind in setting between the air inlet of the air setting structure and the heat exchanger hot wind inlet
Structure.
38. a kind of air setting structure according to claim 5, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
39. a kind of air setting structure according to claim 6, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
40. a kind of air setting structure according to claim 10, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
41. a kind of air setting structure according to claim 11, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
42. a kind of air setting structure according to claim 12, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
43. a kind of air setting structure according to claim 17, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
44. a kind of air setting structure according to claim 23, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
45. a kind of air setting structure according to claim 27, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
46. a kind of air setting structure according to claim 36, it is characterised in that: the air inlet of the air setting structure
Even wind structure is entered the wind in setting between mouth and the heat exchanger hot wind inlet.
47. a kind of air setting structure according to claim 37, it is characterised in that: table at the top of air inlet and upper cover plate
Face is provided with multiple vertical gussets, and air inlet is separated into multiple uniform wind paths, is formed and enters the wind even wind structure;The air is cold
Outlet air even wind structure is set between the air outlet of concretio and the heat exchanger hot-blast outlet.
48. according to a kind of any air setting structure of claim 38-46, it is characterised in that: air inlet and upper cover plate
Top inner surface is provided with multiple vertical gussets, and air inlet is separated into multiple uniform wind paths, is formed and enters the wind even wind structure;Institute
State the setting even wind structure of outlet air between the air outlet of air setting structure and the heat exchanger hot-blast outlet.
49. a kind of air setting structure according to claim 37, it is characterised in that: the heat that the heat exchanger is condensed
A lower cover plate is arranged in wind exit, and multiple air outlets are arranged in the side of the lower cover plate, and multiple air outlets are connected to one in " crowd " shape
A total air outlet forms the even wind structure of outlet air.
50. according to a kind of any air setting structure of claim 38-46, it is characterised in that: the heat exchanger quilt
One lower cover plate is set at the hot-blast outlet of condensation, and multiple air outlets are arranged in the side of the lower cover plate, and multiple air outlets are in " crowd " shape
It is connected to a total air outlet, forms the even wind structure of outlet air.
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CN109518407A (en) * | 2017-09-18 | 2019-03-26 | 青岛海尔滚筒洗衣机有限公司 | A kind of clothing washing-drying integral machine and its control method |
CN109750471B (en) * | 2017-11-03 | 2021-04-06 | 青岛海尔洗涤电器有限公司 | Automatic abluent filter equipment and clothing treatment facility |
CN110820280A (en) * | 2018-08-09 | 2020-02-21 | 无锡小天鹅电器有限公司 | Clothes treating device |
CN111254673B (en) * | 2018-11-30 | 2022-09-09 | 青岛海尔洗衣机有限公司 | Steam injection mechanism for clothes care equipment |
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