CN209032187U - Heated-air drying component and cleaning device - Google Patents

Heated-air drying component and cleaning device Download PDF

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Publication number
CN209032187U
CN209032187U CN201821102635.2U CN201821102635U CN209032187U CN 209032187 U CN209032187 U CN 209032187U CN 201821102635 U CN201821102635 U CN 201821102635U CN 209032187 U CN209032187 U CN 209032187U
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China
Prior art keywords
air
heated
main part
drying component
air drying
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CN201821102635.2U
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Chinese (zh)
Inventor
汪佳丽
蔡思琦
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Wuhu Midea Smart Kitchen Appliance Manufacturing Co Ltd
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Midea Group Co Ltd
Foshan Shunde Midea Washing Appliances Manufacturing Co Ltd
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Priority to CN201821102635.2U priority Critical patent/CN209032187U/en
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Abstract

The utility model discloses a kind of heated-air drying component and cleaning device, wherein, heated-air drying component includes: shell, and shell offers air inlet and air outlet, and it is formed with the air duct for being connected to the air inlet and air outlet, the shell is also provided with rinse bath overflow port between air inlet and air outlet;Heating element, the heating element are set in the air duct, and between the rinse bath overflow port and the air inlet;Flow structure, the flow structure are connected to the shell, and offer the water outlet for being connected to the rinse bath overflow port, and the flow structure increases under the active force of water flow in water outlet aperture.Even if the heated-air drying component liquid of technical solutions of the utility model is entered in air duct by air outlet, internal heating element will not be damaged.

Description

Heated-air drying component and cleaning device
Technical field
The utility model relates to kitchen appliance technical field, in particular to a kind of heated-air drying component and apply the hot wind The cleaning device of dry component.
Background technique
Water tank type dish-washing machine combines common sink and dish-washing machine, can not only be convenient to use sink and dish-washing machine Fruits and vegetables or tableware etc. are cleaned, and makes sink and washes the dishes machine integrated, improves the utilization efficiency in kitchen, but water tank type is washed The case where bowl machine is different from table dish-washer and free-standing dish-washing machine, it there may be high water level, such as sewer block up When plug, artificially continues in the rinse bath of dish-washing machine plus water, excessively high water level may cause water flow going out by heated-air drying component Air port enters in air duct, to damage internal heating element.
Utility model content
The main purpose of the utility model is to provide a kind of heated-air drying component, it is intended to even if so that the heated-air drying component Liquid is entered in air duct by air outlet, will not be damaged to internal heating element.
To achieve the above object, the utility model proposes heated-air drying component, the heated-air drying component be applied to cleaning Device, the heated-air drying component include:
Shell, the shell offer air inlet and air outlet, and are formed with the wind for being connected to the air inlet and air outlet Road, cleaning groove body of the air outlet to be connected to the cleaning device, the shell are gone back between air inlet and air outlet Offer rinse bath overflow port;
Heating element, the heating element are set in the air duct, and are located at the rinse bath overflow port and the air inlet Between mouthful;And
Flow structure, the flow structure are connected to the shell, and offer going out for the connection rinse bath overflow port The mouth of a river, the flow structure increase under the active force of liquid in water outlet aperture.
Optionally, the flow structure includes main part and the elastic joint part for being connected to the main part, the main body Portion is connected to the shell, and the water outlet is opened in the elastic joint part;
Under the active force of liquid, water outlet aperture increases the elastic joint part.
Optionally, the water outlet is cross-shaped structure.
Optionally, the width of the water outlet is d, 0mm < d≤2mm.
Optionally, the downward projection of the shell forms connector, and the rinse bath overflow port is formed in the connector;
The main part is tubular structure, and the elastic joint part is the bottom wall for being connected to the main part one end, the master Body portion is connected to the connector.
Optionally, the main part is sheathed on the outside of the connector.
Optionally, the flow structure is rubber material, and is interference fit with the connector.
Optionally, the flow structure includes main part and the non-return piece for being connected to the main part, and the main part connects It is connected to the shell, the non-return piece opposite main part under liquid force moves, to increase the aperture of the water outlet.
Optionally, the non-return piece is rotationally connected with the main part, and the non-return piece is relatively main under liquid force Body portion rotation, to increase the aperture of the water outlet.
Optionally, the downward projection of the shell forms connector, and the rinse bath overflow port is formed in the connector;
The main part is tubular structure, and the non-return piece is connected to one end of the main part, and the main part is connected to The connector.
Optionally, the main part is plugged in the inside of the connector.
Optionally, the inner sidewall alternative one of the lateral wall of the main part and the connector has limiting slot, the two It is another there is retention bead, the retention bead is plugged in the limiting slot.
The utility model also proposes that a kind of cleaning device, the cleaning device include cleaning groove body and heated-air drying group Part, the side wall of the cleaning groove body offer the first opening and the second opening, the air outlet connection of the heated-air drying component First opening;The heated-air drying component includes:
Shell, the shell offer air inlet and air outlet, and are formed with the wind for being connected to the air inlet and air outlet Road, the shell are also provided with rinse bath overflow port between air inlet and air outlet;
Heating element, the heating element are set in the air duct, and are located at the rinse bath overflow port and the air inlet Between mouthful;
Flow structure, the flow structure are connected to the shell, and offer going out for the connection rinse bath overflow port The mouth of a river, the flow structure increase under the active force of liquid in water outlet aperture.
Optionally, the cleaning device includes cabinet body and sink main body, and the sink main body is embedded at the cabinet body, and with The cleaning groove body is arranged side by side, and the sink main body offers sink rinse bath overflow port, the sink rinse bath overflow Mouth is connected with overflow pipe, overflow pipe described in second open communication.
When the heated-air drying component of technical solutions of the utility model is applied to cleaning device in, liquid may be by outlet air Mouth flows into air duct.The liquid entered in air duct in order to prevent, which flows to heating element, to damage heating element, in shell Rinse bath overflow port is opened up on body, heating element is between rinse bath overflow port and air inlet, once the liquid in rinse bath Entered in air duct by air outlet, before reaching heating element can cleaned slot overflow port be expelled to the heated-air drying component it Outside, to will not impact to the heating element in air duct, guarantee that heating component can operate normally.
Further, during the heated-air drying component operation, outside air by heated-air drying component air inlet into In air inlet duct, the hot-air with dry sterilization and disinfection is formed after heated element heating, the hot-air is by heating Part may be revealed by rinse bath overflow port during element is flowed to direction of air outlet, to can reduce hot at air outlet The discharge rate of air.In order to avoid the generation of above situation, the heated-air drying component of technical solutions of the utility model is additionally arranged excessive Flow structure, the flow structure have connection rinse bath overflow port water outlet, the flow structure can to rinse bath overflow port into The certain blocking of row, so that the amount of leakage of hot-air at rinse bath overflow port is reduced, moreover, when being entered in air duct by air outlet Liquid it is more when, in liquid effects in the water outlet of flow structure, so that the aperture of water outlet increases, so as to better Play the role of draining.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor Under, the structure that can also be shown according to these attached drawings obtains other attached drawings.
Fig. 1 is the partial structure diagram of one embodiment of the utility model cleaning device;
Fig. 2 is the structural schematic diagram at another visual angle of cleaning device in Fig. 1;
Fig. 3 is the structural schematic diagram of heated-air drying component in Fig. 1;
Fig. 4 is the enlarged diagram in Fig. 3 at A;
Fig. 5 is the schematic diagram that flow structure splits mouth along symmetrical centre in Fig. 2;
Fig. 6 is the enlarged diagram in Fig. 5 at B;
Fig. 7 is the structural schematic diagram of flow structure in Fig. 3;
Fig. 8 is the structural schematic diagram of another embodiment of heated-air drying component in Fig. 1;
Fig. 9 is the enlarged diagram in Fig. 8 at C;
Figure 10 is the schematic diagram that flow structure splits mouth along symmetrical centre in Fig. 8;
Figure 11 is the enlarged diagram in Figure 10 at D;
Figure 12 is the structural schematic diagram of flow structure in Fig. 8;
Figure 13 is that the structural schematic diagram of water outlet is opened in the non-return piece rotation of flow structure in Figure 12;
Figure 14 is the partial structure diagram in Fig. 2 inside heated-air drying assembly housing.
Drawing reference numeral explanation:
The embodiments will be further described with reference to the accompanying drawings for the realization, functional characteristics and advantage of the utility model aim.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describing, it is clear that described embodiment is only a part of the embodiment of the utility model, rather than all Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are not making creative work premise Under every other embodiment obtained, fall within the protection scope of the utility model.
It is to be appreciated that the directional instruction (such as up, down, left, right, before and after ...) of institute in the utility model embodiment It is only used for explaining in relative positional relationship, the motion conditions etc. under a certain particular pose (as shown in the picture) between each component, such as When the fruit particular pose changes, then directionality instruction also correspondingly changes correspondingly.
In addition, the description for being related to " first ", " second " etc. in the present invention is used for description purposes only, and cannot understand For its relative importance of indication or suggestion or implicitly indicate the quantity of indicated technical characteristic.Define as a result, " first ", The feature of " second " can explicitly or implicitly include at least one of the features.In addition, the technical side between each embodiment Case can be combined with each other, but must be based on can be realized by those of ordinary skill in the art, when the combination of technical solution Conflicting or cannot achieve when occur will be understood that the combination of this technical solution is not present, also not in the requires of the utility model Protection scope within.
In conjunction with Fig. 1 to Figure 14, the utility model proposes a kind of heated-air drying component 30, which is applied to Cleaning device 100, which is mainly existing water tank type dish-washing machine, in the cleaning groove body to dish-washing machine It is passed through dry hot wind, the tableware after cleaning to be further dried, plays the role of sterilization, disinfection.
The hot wind component includes:
Shell 32, shell 32 offer air inlet 3211 and air outlet 3221, and are formed with connection air inlet 3211 and go out The air duct in air port 3221, cleaning groove body 10 of the air outlet 3221 to be connected to cleaning device 100, shell 32 is in air inlet 3211 Rinse bath overflow port 323 is also provided between air outlet 3221;
Heating element 34, heating element 34 are set in air duct, and be located at rinse bath overflow port 323 and air inlet 3211 it Between;And
Flow structure 38,38`, flow structure 38,38` are connected to shell 32, and offer connection rinse bath overflow port 323 Water outlet 3811,3811`, the flow structure 38, the 38` aperture at water outlet 3811,3811` under the active force of liquid Increase.
Heating element 34 is specially PTC (Positive Temperature Coefficient, thermistor) heating sheet
After the water tank type dish-washing machine has run cleaning procedure, the heated-air drying component 30 is controlled through air outlet 3221 to sink It is passed through hot wind in the rinse bath of formula dish-washing machine, to carry out drying and processing to the object in rinse bath.It is run in water tank type dish-washing machine In the process, if something unexpected happened, the liquid in rinse bath is entered in air duct by the air outlet 3221 of heated-air drying component 30, position It is forceful electric power in the heating element 34 in air duct, the liquid in air duct flows to the meeting of heating element 34 to heating element 34 in order to prevent It damages, opens up rinse bath overflow port 323 in shell 32 in technical solutions of the utility model, heating element 34 is located at rinse bath Between overflow port 323 and air inlet 3211, once the liquid in rinse bath is entered in air duct by air outlet 3221, add reaching The cleaned slot overflow port 323 of meeting is expelled to except the heated-air drying component 30 before thermal element 34, thus will not be in air duct Heating element 34 impacts, and guarantees that heating component can operate normally.
Further, outside air is entered in air duct by the air inlet 3211 of heated-air drying component 30, heated element The hot-air with dry sterilization and disinfection is formed after 34 heating, the hot-air is by heating element 34 to air outlet Part may be revealed by rinse bath overflow port 323 during 3221 directions are flowed, to can reduce hot at air outlet 3221 The discharge rate of air.In order to avoid the generation of above situation, the heated-air drying component 30 of technical solutions of the utility model is additionally arranged Flow structure 38,38`, the flow structure 38,38` have water outlet 3811, the 3811` of connection rinse bath overflow port 323, this overflows Flow structure 38,38` can carry out certain blocking to rinse bath overflow port 323, so that it is empty to reduce heat at rinse bath overflow port 323 The amount of leakage of gas, moreover, when by air outlet 3221 enter the liquid in air duct it is more when, in liquid effects in flow structure 38, the water outlet 3811 of 38`, at 3811` so that the aperture of water outlet 3811,3811` increase, so as to the preferably row of playing The effect of water.
The extreme lower position of the rinse bath overflow port 323 between air outlet 3221 and heating element 34, and be present in out Liquid between air port 3221 and heating element 34 can flow downward to rinse bath overflow port 323 in leading for the inner wall of shell 32 Place, and flow structure 38,38` are expelled to by rinse bath overflow port 323, and further by the water outlet on flow structure 38,38` 3811,3811` is discharged.
In the utility model embodiment, which is obliquely installed on cleaning groove body 10, specially 323 position of rinse bath overflow port is further tilted down compared with 34 position of heating element, to accelerate the liquid in air duct The cleaned slot overflow port 323 of body flows out.
In conjunction with Fig. 3 to Fig. 7, in the utility model embodiment, flow structure 38 includes main part 382 and is connected to main part 382 elastic joint part 381, main part 382 are connected to shell 32, and water outlet 3811 is opened in the elastic joint part 381;
Elastic joint part 381 is under the active force of liquid, and aperture increases at water outlet 3811.
The cleaned slot overflow port 323 of liquid entered in air duct by air outlet 3221 flows into flow structure 38, elastic connection Under the active force of liquid elastic deformation occurs for portion 381, it is possible to understand that ground, elastic joint part 381 is adjacent to 3811 position of water outlet It is maximum compared to the deformation quantity of other positions, so that the aperture of water outlet 3811 be made to increase, be conducive to the discharge of water flow.
The water outlet 3811 being arranged on the elastic joint part 381 can have any shape, but its width dimensions needs to the greatest extent may be used Can be small, to reach the effect that can drain and prevent hot-air from revealing, specifically, water outlet 3811 can be cross knot Structure, linear type structure are circular pore structure, certainly can also be other shapes.In one embodiment, the water outlet 3811 is excellent It is selected as cross-shaped structure, under the active force of liquid, the water outlet 3811 of the cross-shaped structure is going out for two linear type structures The mouth of a river 3811 is staggered so that at water outlet 3811 by hydraulic shock when, aperture is easier to increase, it is easier to arrange liquid Out.
Further, the width of water outlet 3811 is d, 0mm < d≤2mm, it is preferable that 0mm < d≤1.5mm, further Preferably 0.5mm≤d≤1.5mm.
It is to be appreciated that in a more extreme embodiment, the water outlet 3811 that is arranged on the elastic joint part 381 Width can be 0, that is, when not having liquid effects, the two sidewalls that water outlet 3811 is oppositely arranged are connected to each other, at this point, heat is empty Gas will not be revealed by this;But it can make the two sidewalls of water outlet 3811 that flexible deformation occur, under the active force of liquid to open Water outlet 3811 is opened, liquid is smoothly flowed out.Even if being not enough to open water outlet 3811 amount of liquid is few, active force is smaller In the case of, liquid can be stored in the flow structure 38, since amount of liquid is few, will not be flowed at heating element 34, no Heating element 34 can be damaged, and heated-air drying component 30 is once run, the hot-air of generation then can be by flow structure 38 The liquid of place's storage is evaporated, to prevent liquid from gathering excessively.Above embodiments are also within the protection scope of the present utility model.
It is possible to further by the setting of the size of water outlet 3811 it is sufficiently narrow in the case where, by the elastic joint part 381 thickness at water outlet 3811 reduce, so that also can will be near water outlet 3811 in the lesser situation of water impact Elastic joint part 381 deformed, to increase the size of water outlet 3811, elastic joint part 381 can be faced to Ji water outlet Thickness at mouthfuls 3811 is defined as h, 0mm < h≤2mm, it is preferable that 0mm < h≤1.5mm, further preferably 0mm < h≤ 1mm。
Referring to Fig. 5, Fig. 6 and Fig. 7, the downward projection of shell 32 forms connector 324, and rinse bath overflow port 323 is formed in this Connector 324;
Main part 382 is tubular structure, and elastic joint part 381 is the bottom wall for being connected to 382 one end of main part, main part 382 are connected to connector 324.
The connector 324 protrudes from shell 32, and convenient for being attached with flow structure 38, which can be with grafting In 324 inside of connector, it can also be socketed on 324 outside of connector, to realize the connection with rinse bath overflow port 323.The bottom Wall is connected to one end of main part 382, and the end is closed, and is only connected to inside and outside bottom wall by water outlet 3811, main Body portion 382 is openning shape away from one end of bottom wall, and main part 382 is sheathed on connector to close to bottom wall direction along far from bottom wall 324, to complete the installation to the flow structure 38.
In one embodiment, flow structure 38 is rubber material, and the flow structure 38 of the rubber material is arranged in main part 382 In the outside of connector 324.It is to be appreciated that the bottom wall of flow structure 38 only can be used rubber in the utility model embodiment Glue material matter is made, and the main part 382 of flow structure 38 is any other material, and bottom wall is in water outlet under the impact force of liquid It can produce elastic deformation at 3811, to increase the aperture of water outlet 3811.And by 38 whole utilization rubber material system of flow structure At the installation that can be convenient for flow structure 38, directly main part 382 is sheathed on using the ability of rubber material elastically deformable It at connector 324, and can be interference fitted with connector 324, the flow structure 38 is whole to be made of rubber material, easy to produce to add Work saves production cost.
Further, the end abutment of connector 324 is in the inner wall of bottom wall, so that cleaned slot overflow port 323 flows out Liquid can directly act on the bottom wall of flow structure 38, be easier to increase the aperture of water outlet 3811 under hydraulic shock power, To keep the drainage effect of the flow structure 38 more preferable.
Shell 32 is additionally provided with stage portion 325 in the root of connector 324, after flow structure 38 is sheathed on connector 324, The main part 382 can fit in the end face of stage portion 325 away from the end of bottom wall, can also be connected to the end of stage portion 325 Face, so that flow structure 38 and the connection effect of connector 324 are more preferable.
Referring to Fig. 8 to Figure 13, in the embodiment, flow structure 38` includes main part 382` and is connected to main part 382` Non-return piece 381`, main part 382` is connected to shell 32, and non-return piece 381` opposite main part 382` under liquid force is transported It is dynamic, to increase the aperture of water outlet 3811`.
Specifically.Non-return piece 381` can be rotationally connected with main part 382`, non-return piece 381` phase under liquid force Main part 382` is rotated, to increase the aperture of water outlet 3811`.The rotation connection of the non-return piece 381` and main part 382` can Think the arbitrary structures that can realize rotation connection in the prior art, is specifically as follows and is pivotally connected or hinged.
It is to be appreciated that non-return piece 381` can also be connected to main part 382` by elastic component in an embodiment, Flexible deformation occurs for the active force lower elastic member of liquid, so that the spacing between non-return piece 381` and main part 382` increases, thus The aperture for increasing water outlet 3811`, after external force fails, elastic component rebound, so that non-return piece 381` fits in main part 382`, so that water outlet 3811` be blocked.In the embodiment, it can rotate for non-return piece 381` relative to main part 382` with bullet Property open or close water outlet 3811`, or non-return piece 381` is opened or closed with elasticity relative to main part 382` is mobile Water outlet 3811`.
In above-described embodiment, the downward projection of shell 32 forms connector 324, and rinse bath overflow port 323 is formed in connector 324;
Main part 382` is tubular structure, and non-return piece 381` is connected to one end of main part 382`, and main part 382` connects It is connected to connector 324.
In the embodiment, main part 382` has opening away from one end of non-return piece 381`, and is arranged by the opening In 324 outside of connector or it is plugged in 324 inside of connector, to realize the conducting with rinse bath overflow port 323.
In one embodiment, the side of non-return piece 381` has opposite two shafts, and main part 382` is in the inner sidewall of its end With corresponding two axis hole, a shaft is plugged in an axis hole.
Further, when main part 382` is plugged in the inner sidewall of connector 324, the inside of connector 324 and the master The also settable location structure in the outside of body portion 382`, to guarantee that the two aligns accurately during grafting.Specifically, main part The lateral wall of 382` and the inner sidewall alternative one of connector 324 have limiting slot 3821`, and the another of the two has limit convex It rises, retention bead is plugged in limiting slot 3821`.During main part 382` is plugged in connector 324,3821` pairs of limiting slot Quasi- retention bead, so as to cannot relatively rotate after the two connection, contraposition is accurate.
Referring to Figure 14, shell 32 is in being equipped with wind screen rib 35 in air duct, wind screen rib 35 is along heating element 34 to air outlet 3221 Direction extends, and is located at the top of rinse bath overflow port 323.
The hot-air that heated-air drying component 30 generates is flowed by heating element 34 to 3221 direction of air outlet, in wind screen rib 35 Under the action of, play the role of guiding to the flowing of hot-air, wind screen rib 35 is set close to rinse bath overflow port 323 in the embodiment It sets, to be blocked to rinse bath overflow port 323, to reduce amount of leakage of the hot-air at rinse bath overflow port 323.
Further, wind screen rib 35 is bent close to one end of heating element 34 towards 323 side of rinse bath overflow port.
During the hot-air that heated element 34 is thermally formed is moved towards 3221 direction of air outlet, encounters this and keep out the wind The bending of 35 end of muscle, the upper flow led downward along wind screen rib 35 in the bending part, only seldom a part heat are empty Gas can cross the bending part, and along the lower flow of wind screen rib 35, the small part meeting in the hot-air of 35 lower part of wind screen rib It is revealed by rinse bath overflow port 323, therefore, which greatly reduces the number of dropouts of hot-air, improve hot air drying The drying efficiency of dry component 30.
Further, the end of the wind screen rib 35 is bent towards 323 direction of rinse bath overflow port, so that by air inlet 3211 Into air duct liquid flow to the wind screen rib 35 along the inner sidewall of shell 32 after, can directly be flowed under the guiding of the bending part It is discharged to rinse bath overflow port 323.
Further, shell 32 has a water blocking heavy platform 36, water blocking heavy platform 36 by air outlet 3221 towards air duct internal stretch, And it is gradually risen by direction height in air outlet 3221 to air duct.
Rinse bath can reversely be flow back under the guiding of the water blocking heavy platform 36 by the liquid that air outlet 3221 enters in air duct It is interior.
With continued reference to Figure 14, shell 32 is in being equipped with water retaining ribs 37 in air duct, the connection shell 32 of water retaining ribs 37 is in air outlet 3221 edge.The water retaining ribs 37 can stop the liquid entered in air duct by air outlet 3221.The water retaining ribs 37 are along shell The extending direction of body 32 extends, so as to play the role of water conservancy diversion to the hot-air in air duct.
Shell 32 includes inlet section 321 and outlet section 322, and one end of inlet section 321 offers air inlet 3211, the other end Outlet section 322 is connected, outlet section 322 offers air outlet 3221, blower 33 and heating element 34 away from the end of inlet section 321 In the inlet section 321 being respectively positioned on, rinse bath overflow port 323 is opened in outlet section 322, and is located at outlet section 322 and closes on inlet section 321 downside.
Outlet section 322 have the first linkage section 3222 and the second linkage section 3223,3222 one end of the first linkage section connect into Wind portion 321, the other end extends upward, and 3223 one end of the second linkage section connects the upper end of the first linkage section 3222, other end direction First linkage section 3222 extends laterally, and offers air outlet 3221, first linkage section 3222 and the second linkage section 3223 Between for arc transition connect.Second linkage section 3223 and inlet section 321 are located at the same side of the first linkage section 3222.
Outside air is entered in air duct by air inlet 3211, and flows to heating element 34, heated member along inlet section 321 Part 34 is thermally formed the higher and dry hot-air of temperature and is flowing over since hot-air density is lower in order to reduce hot-air The loss of energy in journey upwardly extends the first linkage section 3222, and hot-air is under the guiding of the first linkage section 3222 to upstream Dynamic, since the installation space on cleaning groove body 10 is limited, and the first opening 111 is located at the middle position in front side wall transverse direction, Second linkage section 3223 is extended laterally towards the first linkage section 3222, so that first opening 111 of the connection of air outlet 3221.
Further, the second linkage section 3223 by the end of the first linkage section 3222 to 3221 direction position of air outlet gradually It reduces, will reversely be imported in rinse bath by the liquid that air outlet 3221 enters in air duct, and prevent liquid from further flowing to the One linkage section 3222, and further flow to heating element 34 and damage heating element 34.
The utility model also proposes a kind of cleaning device 100, which includes cleaning groove body 10 and hot air drying Dry component 30, the specific structure of the heated-air drying component 30 is referring to above-described embodiment, since this cleaning device 100 is using above-mentioned Whole technical solutions of all embodiments, thus it is at least all beneficial to effect brought by the technical solution with above-described embodiment Fruit, this is no longer going to repeat them.Wherein, the side wall for cleaning groove body 10 offers the first opening 111 and the second opening 131, heat First opening 111 of the connection of air outlet 3221 of wind dry component 30.
The cleaning device 100 is mainly water tank type dish-washing machine, which combines sink and dish-washing machine, no It is only capable of improving the utilization rate in kitchen, and fruits and vegetables or tableware etc. can easily be cleaned.Appearance is formed in cleaning groove body 10 Chamber is received, for accommodating article to be cleaned, such as tableware.
After the cleaning procedure of cleaning device 100, heated-air drying component 30 is by the hot-air of generation by the first opening 111 It is sent into accommodating chamber, hot-air, which enters in accommodating chamber, the article after the cleaning in accommodating chamber is dried, and then should Part hot-air is expelled to the outside of cleaning groove body 10 by the second opening 131.
Cleaning device 100 includes the lid for being covered on cleaning groove body 10, which closes the opening or closure of accommodating chamber The opening of accommodating chamber, to prevent in the work of cleaning device 100, the liquid in accommodating chamber is splashed out.
Further, cleaning device 100 includes cabinet body (not shown) and sink main body 20, and the sink main body 20 is embedded at The cabinet body, and be arranged side by side with the cleaning groove body 10, the sink main body 20 offers sink overflow port 21, the water Slot overflow port 21 is connected with overflow pipe, the 131 connection overflow pipe of the second opening.
The sink main body 20 is common sink structure, can be used to clean the article of any desired cleaning, cabinet body is in water The edge of groove body 20 is provided with tap, the opening of the water outlet face sink main body 20 of tap, which may include Running water tap and purified water faucet.
Further, the cleaning groove body 10 and sink main body 20 can be structure as a whole, and be produced with simplification and processed Journey, and cleaning groove body 10 can be simplified and sink main body 20 is installed on the process of cabinet body.
The cover board of cleaning device 100 is connected to cleaning groove body 10 or is connected to cabinet body, which includes rotation connection Pedestal and lid, pedestal are connected to cleaning groove body 10, and lid is covered in cleaning groove body 10 in the opening or phase of accommodating chamber Pedestal is rotated to open the opening of accommodating chamber.Pedestal is specially to be removably connected to cleaning groove body 10, preferably magnetic to inhale Invest cleaning groove body 10.
Referring to fig. 2, other objects are impacted by the air of 131 discharge of the second opening in order to prevent, by the second opening 131 are connected to drainpipe 40, can make to be discharged by the hot-air of 131 discharge of the second opening by sink overflow port 21 or drainpipe 40 To the external world, and the lower air of ambient temperature is encountered via the hot-air of 131 discharge of the second opening can generate condensed water, by second Opening 131, which is connected to drainpipe 40, can prevent the cleaning device 100 from the case where leak occur.Specifically, sink overflow port 21 Place is provided with connector 22, and drainpipe 40 is connected to sink overflow port 21, the second opening of a connecting tube 60 connection by connector 22 131 and connector 22, so that the hot-air of 131 discharge of the second opening is connected to connector 22 through connecting tube 60, and overflow by sink Head piece 21 or drainpipe 40 are discharged.
The above is only the preferred embodiment of the present invention, and therefore it does not limit the scope of the patent of the utility model, It is all under the inventive concept of the utility model, equivalent structure made based on the specification and figures of the utility model becomes It changes, or directly/be used in other related technical areas indirectly and be included in the scope of patent protection of the utility model.

Claims (14)

1. a kind of heated-air drying component, it is applied to cleaning device, which is characterized in that the heated-air drying component includes:
Shell, the shell offer air inlet and air outlet, and are formed with the air duct for being connected to the air inlet and air outlet, institute Cleaning groove body of the air outlet to be connected to the cleaning device is stated, the shell is also provided between air inlet and air outlet Rinse bath overflow port;
Heating element, the heating element are set in the air duct, and be located at the rinse bath overflow port and the air inlet it Between;And
Flow structure, the flow structure are connected to the shell, and offer the water outlet for being connected to the rinse bath overflow port, The flow structure increases under the active force of liquid in water outlet aperture.
2. heated-air drying component as described in claim 1, which is characterized in that the flow structure includes main part and is connected to The elastic joint part of the main part, the main part are connected to the shell, and the water outlet is opened in the elastic connection Portion;
Under the active force of liquid, the water outlet aperture increases the elastic joint part.
3. heated-air drying component as claimed in claim 2, which is characterized in that the water outlet is cross-shaped structure.
4. heated-air drying component as claimed in claim 2, which is characterized in that the width of the water outlet be d, 0mm < d≤ 2mm。
5. the heated-air drying component as described in any one of claim 2 to 4, which is characterized in that the downward projection of shell Connector is formed, the rinse bath overflow port is formed in the connector;
The main part is tubular structure, and the elastic joint part is the bottom wall for being connected to the main part one end, the main part It is connected to the connector.
6. heated-air drying component as claimed in claim 5, which is characterized in that the main part is sheathed on the outer of the connector Side.
7. heated-air drying component as claimed in claim 6, which is characterized in that the flow structure be rubber material, and with institute Connector is stated as interference fit.
8. heated-air drying component as described in claim 1, which is characterized in that the flow structure includes main part and is connected to The non-return piece of the main part, the main part are connected to the shell, the non-return piece opposite main body under liquid force Portion's movement, to increase the aperture of the water outlet `.
9. heated-air drying component as claimed in claim 8, which is characterized in that the non-return piece is rotationally connected with the main body Portion, the non-return piece rotates under liquid force relative to main part, to increase the aperture of the water outlet `.
10. heated-air drying component as claimed in claim 8 or 9, which is characterized in that the downward projection of shell forms connection Head, the rinse bath overflow port are formed in the connector;
The main part is tubular structure, and the non-return piece is connected to one end of the main part, and the main part is connected to described Connector.
11. heated-air drying component as claimed in claim 10, which is characterized in that the main part is plugged in the connector Inside.
12. heated-air drying component as claimed in claim 11, which is characterized in that the lateral wall of the main part and the connection The inner sidewall alternative one of head has limiting slot, and the another of the two has retention bead, and the retention bead is plugged in the limit Position slot.
13. a kind of cleaning device, which is characterized in that the cleaning device includes cleaning groove body and such as claim 1 to 12 times The side wall of heated-air drying component described in meaning one, the cleaning groove body offers the first opening and the second opening, the heat The air outlet connection of wind dry component first opening.
14. cleaning device as claimed in claim 13, which is characterized in that the cleaning device includes cabinet body and sink main body, The sink main body is embedded at the cabinet body, and is arranged side by side with the cleaning groove body, and the sink main body offers sink Rinse bath overflow port, the sink rinse bath overflow port are connected with overflow pipe, overflow pipe described in second open communication.
CN201821102635.2U 2018-07-11 2018-07-11 Heated-air drying component and cleaning device Active CN209032187U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821102635.2U CN209032187U (en) 2018-07-11 2018-07-11 Heated-air drying component and cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821102635.2U CN209032187U (en) 2018-07-11 2018-07-11 Heated-air drying component and cleaning device

Publications (1)

Publication Number Publication Date
CN209032187U true CN209032187U (en) 2019-06-28

Family

ID=67029466

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821102635.2U Active CN209032187U (en) 2018-07-11 2018-07-11 Heated-air drying component and cleaning device

Country Status (1)

Country Link
CN (1) CN209032187U (en)

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Address after: 241000 west side of 3 / F, No.5 office building, new energy and new materials gathering area, Fuzhou Road, Jiangbei District, Wuhu City, Anhui Province

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Patentee before: FOSHAN SHUNDE MIDEA WASHING APPLIANCES MANUFACTURING Co.,Ltd.

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