CN105816136A - Dish-washing machine and air inlet device thereof - Google Patents
Dish-washing machine and air inlet device thereof Download PDFInfo
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- CN105816136A CN105816136A CN201610308167.3A CN201610308167A CN105816136A CN 105816136 A CN105816136 A CN 105816136A CN 201610308167 A CN201610308167 A CN 201610308167A CN 105816136 A CN105816136 A CN 105816136A
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- China
- Prior art keywords
- air
- dish
- washing machine
- outlet
- channel
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
- A47L15/4246—Details of the tub
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
- A47L15/48—Drying arrangements
- A47L15/488—Connections of the tub with the ambient air, e.g. air intake or venting arrangements
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- Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)
Abstract
The invention discloses an air inlet device of a dish-washing machine. The air inlet device comprises a shell body and a driving mechanism, wherein the shell body is mounted on a liner of the dish-washing machine and is provided with an air inlet, an air outlet and an air channel; the air channel is communicated with the air inlet and the air outlet; the driving mechanism is mounted on the shell body, comprises an air conveying part located in the shell body and is used for driving the air conveying part to rotate so as to make air flow go into the air channel from the air inlet and go out from the air outlet into the liner of the dish-washing machine. According to the air inlet device of the dish-washing machine, disclosed by the invention, external air can be guided into the shell body through the air conveying part and guided out from the air outlet into the liner of the dish-washing machine by virtue of the driving mechanism, and then the flowing of air flow in the liner of the dish-washing machine is accelerated, so that the drying speed and the drying performance of the dish-washing machine can be improved and energy sources can be saved. The invention further discloses the dish-washing machine comprising the air inlet device.
Description
Technical field
The present invention relates to living electric apparatus field, especially relate to air intake installation and the dish-washing machine of a kind of dish-washing machine.
Background technology
In the related, the inner bag of dish-washing machine in working order under be in closed state all the time, the steam in inner bag is difficult to flow, and causes the rate of drying of dish-washing machine relatively slow, and detersive efficiency is the highest, and causes energy waste.
Summary of the invention
It is contemplated that at least solve one of technical problem present in prior art.To this end, the present invention needs to provide air intake installation and the dish-washing machine of a kind of dish-washing machine.
The air intake installation of the dish-washing machine of embodiment of the present invention includes housing and drive mechanism, described housing is arranged on internal cavity of bowl washer, described housing offers air inlet, air outlet and air channel, described air channel connects described air inlet and described air outlet, described drive mechanism is installed on described housing, described drive mechanism includes the air-supply part being positioned at described housing, and described drive mechanism is used for driving described air-supply part to be rotated such that, and air-flow is imported described air channel by described air inlet and exports to described internal cavity of bowl washer from described air outlet.
In the air intake installation of the dish-washing machine of the present invention, outside air can import in housing by air-supply part by drive mechanism, derive to internal cavity of bowl washer via air outlet again, the air-flow that so can make internal cavity of bowl washer accelerates flowing, thus the rate of drying of dish-washing machine can be promoted, and then promote the drying property of dish-washing machine and the energy can be saved.
In one embodiment, described housing includes the first cover plate and the second cover plate, described first cover plate and described second cover plate are oppositely arranged, and described first cover plate and described second cover plate connect and formed described air channel, described air inlet and described air outlet and be opened on described second cover plate.
In one embodiment, described drive mechanism includes body and the output shaft being rotationally connected with described body, described first cover plate offers accepting groove and axis hole, and described body is housed in described accepting groove, and described output shaft wears described axis hole and is connected with described air-supply part.
In one embodiment, described output shaft and described air-supply part interference fit.
In one embodiment, described drive mechanism includes that fixed part, described body are installed on described fixed part, and described fixed part is fixing with described first cover plate to be connected.
In one embodiment, described first cover plate is formed with the fixing end of convex, and described air-supply part covers on the fixing end of described convex.
In one embodiment, described housing offers wind inlet channel, and described wind inlet channel connects described air inlet and described air channel, and described wind inlet channel is tangent with described air channel.
The dish-washing machine of embodiment of the present invention includes the air intake installation of the dish-washing machine described in inner bag and above-mentioned any one, described inner bag offers inner bag air inlet, the air intake installation of described dish-washing machine is installed on the outer surface of described inner bag, and described air outlet connects described inner bag air inlet.
In the dish-washing machine of the present invention, outside air can import in housing by air-supply part by drive mechanism, derive to inner bag via air outlet again, the air-flow in inner bag so can be made to accelerate flowing, thus the rate of drying of dish-washing machine can be promoted, and then promote the drying property of dish-washing machine and the energy can be saved.
In one embodiment, described housing includes air intake and outlet air end, described air intake offers described air inlet, described outlet air end offers described air outlet, described air intake is formed with the first keeper, described outlet air end is formed with counterpart, described inner bag includes sidewall, described inner bag air inlet is opened on described sidewall, described sidewall is formed with the second keeper, described first keeper coordinates with described second keeper and is positioned on described sidewall by described air intake, described outlet air end is contained in described inner bag air inlet, described outlet air end is connected with described counterpart by securing member and is fixed on described sidewall.
In one embodiment, described dish-washing machine includes sealing ring, and described sealing ring seals the junction of described counterpart and described securing member.
The additional aspect of the present invention and advantage will part be given in the following description, and part will become apparent from the description below, or is recognized by the practice of the present invention.
Accompanying drawing explanation
Above-mentioned and/or the additional aspect of the present invention and advantage will be apparent from easy to understand, wherein from combining the accompanying drawings below description to embodiment:
Fig. 1 is the schematic perspective view of the dish-washing machine according to embodiment of the present invention.
Fig. 2 is another schematic perspective view of the dish-washing machine according to embodiment of the present invention.
Fig. 3 is the exploded isometric schematic diagram of the dish-washing machine according to embodiment of the present invention.
Fig. 4 is the enlarged diagram of the I part of the dish-washing machine of Fig. 3.
Fig. 5 is the generalized section of the dish-washing machine according to embodiment of the present invention.
Fig. 6 is the enlarged diagram of dish-washing machine II part of Fig. 5.
Fig. 7 is the schematic perspective view of the air intake installation of the dish-washing machine according to embodiment of the present invention.
Fig. 8 is another schematic perspective view of the air intake installation of the dish-washing machine according to embodiment of the present invention.
Fig. 9 is the floor map of the air intake installation of the dish-washing machine according to embodiment of the present invention.
Figure 10 is the air intake installation generalized section along line A-A of the dish-washing machine of Fig. 9.
Figure 11 is the exploded perspective view of the air intake installation of the dish-washing machine according to embodiment of the present invention.
Figure 12 is the floor map that the air intake installation of the dish-washing machine according to embodiment of the present invention removes the second cover plate.
Figure 13 is the enlarged diagram of III part of the air intake installation of the dish-washing machine of Figure 12.
Figure 14 is the floor map of the second cover plate of the air intake installation of the dish-washing machine according to embodiment of the present invention.
Detailed description of the invention
Embodiments of the present invention are described below in detail, and the example of described embodiment is shown in the drawings, and the most same or similar label represents same or similar element or has the element of same or like function.The embodiment described below with reference to accompanying drawing is exemplary, is only used for explaining the present invention, and is not considered as limiting the invention.
In describing the invention, it will be appreciated that, term " " center ", " longitudinally ", " laterally ", " length ", " width ", " thickness ", on " ", D score, " front ", " afterwards ", " left ", " right ", " vertically ", " level ", " push up ", " end ", " interior ", " outward ", " clockwise ", orientation or the position relationship of the instruction such as " counterclockwise " are based on orientation shown in the drawings or position relationship, it is for only for ease of the description present invention and simplifies description, rather than indicate or imply that the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore it is not considered as limiting the invention.Additionally, term " first ", " second " are only used for describing purpose, and it is not intended that instruction or hint relative importance or the implicit quantity indicating indicated technical characteristic.Thus, define " first ", the feature of " second " can express or implicitly include one or more described features.In describing the invention, " multiple " are meant that two or more, unless otherwise expressly limited specifically.
In describing the invention, it should be noted that unless otherwise clearly defined and limited, term " is installed ", " being connected ", " connection " should be interpreted broadly, and connects for example, it may be fixing, it is also possible to be to removably connect, or be integrally connected.Can be to be mechanically connected, it is also possible to be electrical connection.Can be to be joined directly together, it is also possible to be indirectly connected to by intermediary, can be connection or the interaction relationship of two elements of two element internals.For the ordinary skill in the art, above-mentioned term concrete meaning in the present invention can be understood as the case may be.
In the present invention, unless otherwise clearly defined and limited, fisrt feature second feature it " on " or D score can include that the first and second features directly contact, it is also possible to include that the first and second features are not directly contact but by the other characterisation contact between them.And, fisrt feature second feature " on ", " top " and " above " include that fisrt feature directly over second feature and oblique upper, or is merely representative of fisrt feature level height higher than second feature.Fisrt feature second feature " under ", " lower section " and " below " include that fisrt feature directly over second feature and oblique upper, or is merely representative of fisrt feature level height less than second feature.
Following disclosure provides many different embodiments or example for realizing the different structure of the present invention.In order to simplify disclosure of the invention, hereinafter parts and setting to specific examples are described.Certainly, they are the most merely illustrative, and are not intended to limit the present invention.Additionally, the present invention can in different examples repeat reference numerals and/or reference letter, this repetition is for purposes of simplicity and clarity, itself does not indicate the relation between discussed various embodiment and/or setting.Additionally, the various specific technique that the invention provides and the example of material, but those of ordinary skill in the art are it can be appreciated that the application of other techniques and/or the use of other materials.
Seeing also Fig. 1~Figure 14, the air intake installation 100 of the dish-washing machine of embodiment of the present invention includes housing 10 and drive mechanism 20.
Housing 10 is used for being arranged on internal cavity of bowl washer 400.Drive mechanism 20 is installed on housing 10.Housing 10 offers air inlet 11, air outlet 12 and air channel 13.Air channel 13 connects air inlet 11 and air outlet 12.
Drive mechanism 20 includes the air-supply part 21 being positioned at housing 10.Drive mechanism 20 is used for driving air-supply part 21 to be rotated such that air-flow m is imported air channel 13 by air inlet 11 and exports to internal cavity of bowl washer 400 from air outlet 12.
In the air intake installation 100 of the dish-washing machine of the present invention, outside air can import in housing 10 by air-supply part 21 by drive mechanism 20, derive to internal cavity of bowl washer 400 via air outlet 12 again, the air-flow that so can make internal cavity of bowl washer 400 accelerates flowing, thus the rate of drying of dish-washing machine can be promoted, and then promote the drying property of dish-washing machine and the energy can be saved.
In one embodiment, housing 10 is provided with the air inlet mechanism 111 being positioned on air inlet 11.Air inlet mechanism 111 includes spaced multiple wind guide strip 112.Multiple wind guide strips 112 are distributed in Scroll-tupe.
So, when drive mechanism 20 drives air-supply part 21 to rotate, multiple wind guide strips 112 of Scroll-tupe distribution can make air-flow m be rapidly introduced in housing 10 by air inlet 11 with whirlpool form, make the intake loss reduction of the air intake installation 100 of dish-washing machine, and then improve the intake of the air intake installation 100 of dish-washing machine.
It is pointed out that to make wind guide strip 112 play maximum effect, the direction when direction that wind guide strip 112 is distributed in Scroll-tupe drives air-supply part 21 to rotate with drive mechanism 20 is consistent.
In one embodiment, air inlet mechanism 111 includes retainer ring 113.Multiple wind guide strips 112 are in Scroll-tupe on the radial edge being connected to retainer ring 113.
So, multiple wind guide strips 112 form the radial network structure of Scroll-tupe so that air inlet mechanism 111 is had bigger gap and entered in housing 10 by air inlet mechanism 111 with the air-flow m that can allow for abundance, thus ensure that the intake of the air intake installation 100 of dish-washing machine.
In one embodiment, housing 10 offers wind inlet channel 14.Wind inlet channel 14 connects air inlet 11 and air channel 13.Wind inlet channel 14 is tangent with air channel 13.
Therefore, when drive mechanism 20 drives air-supply part 21 to rotate, after air-flow can be entered housing 10 by air-supply part 21 vertical direction, can enter in air channel 13 along the tangential direction of wind inlet channel 14, so, enter the gas-flow resistance in air channel 13 less, decrease the loss of air quantity.
In one embodiment, housing 10 includes air intake 15 and outlet air end 16.Air inlet 11 is opened on air intake 15.Air outlet 12 is opened on outlet air end 16.Air-supply part 21 is positioned at air intake 15.Air intake 15 offers wind inlet channel 14.Wind inlet channel 14 connects with air channel 13.Wind inlet channel 14 becomes larger along rotation direction X (see Figure 12) of air-supply part 21.So, wind inlet channel 14 can form centrifugal wind inlet channel, outside air-flow can be by drive mechanism 20 by blowing part 21 in air inlet 11 imports housing 10, and air-flow is after the wind inlet channel less by resistance, can travel further into more swimmingly in housing 10, thus the noise when air intake installation 100 effectively reducing dish-washing machine works.
In one embodiment, air intake 15 offers the chamber resettling 151 being positioned in wind inlet channel 14.Air-supply part 21 is arranged in chamber resettling 151.Chamber resettling 151 connects wind inlet channel 14 and air inlet 11.Air-supply part 21 enters wind inlet channel 14 for driving air-flow along the tangential direction of air-supply part 21.
Specifically, when drive mechanism 20 drives air-supply part 21 to rotate, outer gas stream enters via air inlet 11, and then the tangential direction along air-supply part 21 enters wind inlet channel 14, then enters in air channel 13 along wind inlet channel 14.
So, air-flow enters in wind inlet channel 14 along the tangential direction of air-supply part 21, thus effectively prevent the collision of air-flow and air-supply part 21, reduces the loss amount of air-flow, it is ensured that the intake of the air intake installation 100 of dish-washing machine.
In one embodiment, air-supply part 21 includes locating dowel 211.Locating dowel 211 is positioned in retainer ring 113.
So, locating dowel 211 coordinates with retainer ring 113, air-supply part 21 can be prevented effectively from rotate because of discontinuity when rotating unsceptered and occur that air-supply part 21 collides the fortuitous event of housing 10, thus ensure that the air intake installation 100 of dish-washing machine operationally can stable operation.
In one embodiment, air channel 13 includes entrance air channel 131 and outlet section air channel 132.Entrance air channel 131 connects wind inlet channel 14 and outlet section air channel 132, and outlet section air channel 132 connects air outlet 12 and entrance air channel 131.The cross-sectional area in entrance air channel 131 increases along entrance air channel 131 to direction, outlet section air channel 132.
So, when air-flow is entered entrance air channel 131 with bigger flowing velocity by wind inlet channel 14, and when flowing to outlet section air channel 132, increase due to the cross-sectional area in entrance air channel 131, the flowing velocity making air-flow is effectively reduced, thus the frictional resistance between the inwall in air-flow and entrance air channel 131 can be reduced, reduce the noise of air current flow.
In one embodiment, be provided with in air channel 13 for by air-flow dispersion and correcting to the air dam 133 of air outlet 12.Drive mechanism 20 is used for driving air-supply part 21 to be rotated such that, and air-flow is imported air channel 13 by air inlet 11 and shunts via air dam 133 and correcting exports to internal cavity of bowl washer 400 from air outlet 12.
So, the air dam 133 being arranged in air channel 13 can be by air-flow dispersion and correcting, thus the air-flow in entry deterrence air channel 13 can form whirlpool wind and chaotic wind, it reduce the noise when air intake installation 100 of dish-washing machine works, and then improve the Consumer's Experience of the dish-washing machine being provided with air intake installation 100.
In one embodiment, air dam 133 includes spaced multiple arc air guide member 133a.Multiple arc air guide member 133a are arranged near air outlet 12.
So, multiple arc air guide member 133a are arranged at interval, air channel 13, and form multiple air channels groove 134, after air-flow enters air channel 13, multiply air-flow m1 can be dispersed into by air channel groove 134, then guide air outlet 12 along air channel groove 134, effectively prevent the most further and enter the air-flow formation whirlpool wind in air channel 13 and chaotic wind.
Specifically, in embodiments of the present invention, in air dam 133 is arranged at outlet section air channel 132.In an example of the present invention, the quantity of arc air guide member 133a is three.3 arc air guide member 133a are spaced setting in outlet section air channel 132, and form 3 air channel grooves 134.After air-flow m enters air channel 13,3 gangs of air-flow m1 can be become by 3 air channel groove 134 physical separation, be individually directed air outlet 12 the most again.
In one embodiment, air outlet 12 is provided with the wind guiding mechanism 121 of the bottom for air-flow in air channel 13 guides internal cavity of bowl washer 400.Drive mechanism 20 is used for driving air-supply part 21 to be rotated such that air-flow m is imported air channel 13 by air inlet 11 and exports in internal cavity of bowl washer 400 through air outlet 12 and wind guiding mechanism 121.
So, air-flow can be guided the bottom of internal cavity of bowl washer 400 by wind guiding mechanism 121, and internal cavity of bowl washer 400 can be made fully to be dried.
In one embodiment, during wind guiding mechanism 121 is contained in air outlet 12.
So, when the air intake installation 100 of dish-washing machine is in running order, the wind guiding mechanism 121 being contained in air outlet 12 enables to air-flow and is directed to the bottom of internal cavity of bowl washer 400 fully, makes the bottom of the internal cavity of bowl washer 400 that residual water concentrates fully be dried.
In one embodiment, guiding mechanism 121 is louver body, and it includes being spaced downwards the multiple wind-guiding plates 122 being obliquely installed at an angle.
So, multiple wind-guiding plates 122 interval is arranged, ensure that air-flow m can guide in internal cavity of bowl washer 400 via the clearance space of wind guiding mechanism 121, the most downward-sloping setting of wind-guiding plate 122 simultaneously, can make the air-flow m via wind guiding mechanism 121 directly be guided the bottom of internal cavity of bowl washer 400 fully.
In one embodiment, the air intake installation 100 of dish-washing machine includes the plectrum device 30 being rotatably arranged in air channel 13.Plectrum device 30 is used for making entrance air channel 131 and outlet section air channel 132 turn on, and makes entrance air channel 131 and outlet section air channel 132 block.
Specifically, when drive mechanism 20 works, plectrum device 30 is opened air channel 13 and entrance air channel 131 and outlet section air channel 132 is turned on, so that the wind of air-supply part 21 blowout enters and can be derived by air outlet 12.When drive mechanism 20 quits work, plectrum device 30 closes air channel 13 makes entrance air channel 131 and outlet section air channel 132 block, this can prevent the water vapour of the internal cavity of bowl washer 400 connected with air intake installation 100 from entering in air intake installation 100, and then ensure that the service life of electricity piece in air intake installation 100.
In one embodiment, plectrum device 30 includes fixed installation portion 31 and removable cover portion 32.Removable cover portion 32 is rotationally connected with fixed installation portion 31.Fixed installation portion 31 is fixedly arranged on the inwall in air channel 13, and when drive mechanism 20 stops driving air-supply part 21 to rotate, removable cover portion 32 relies on self gravitation to close air channel 13.
Therefore, when drive mechanism 20 works, the air-flow that air-supply part 21 produces can blow removable cover portion 32 and be rotated such that entrance air channel 131 and outlet section air channel 132 turn on around fixed installation portion 31, when drive mechanism 20 quits work, removable cover portion 32 relies on self gravitation to close air channel 13 so that entrance air channel 131 and outlet section air channel 132 block, so, the plectrum device 30 opening and closing to air channel 13 are achieved by simple set-up mode.
In one embodiment, fixed installation portion 31 offers rotation card and sets groove 311.Removable cover portion 32 includes that rotating card sets axle 321 and set, with rotating card, the plectrum cover plate 322 that axle 321 is connected.Rotate card set axle 321 rotationally be arranged in rotation card set in groove 311.
So, rotate card to set axle 321 and set groove 311 coordinate with rotating card, it is ensured that the effectiveness being rotationally connected, and, attachment structure is simple and stably.
In one embodiment, plectrum cover plate 322 is obliquely installed at an angle relative to air channel 13.
So, after so making air-flow enter air channel 13, it is possible to relatively easily blow plectrum cover plate 322 open so that air channel 13 turns on.
In one embodiment, being provided with carriage 135 in air channel 13, carriage 135 offers the frame mouth 135a in connection air channel 13, and when drive mechanism 20 stops driving air-supply part 21 to rotate, plectrum cover plate 322 is supported on carriage 135 and covers and sets frame mouth 135a.
So, when plectrum cover plate 322 lid is located on frame mouth 135a, carriage 135 can improve air-tightness when air channel 13 is closed.
In one embodiment, housing 10 includes that the first cover plate 17 and the second cover plate 18, the first cover plate 17 and the second cover plate 18 are oppositely arranged, and the first cover plate 17 and the second cover plate 18 connect and formed air channel 13, air inlet 11 and air outlet 12 and be opened on the second cover plate 18.
So, the first cover plate 17 and the second cover plate 18 connection formation housing 10 are easy to assembling and the dismounting of the air intake installation 100 of dish-washing machine, and the air intake installation 100 for dish-washing machine carries out routine cleaning and providing convenience property of maintenance.
In the example of the present invention, carriage 135 and fixed installation portion 31 are arranged on the inner surface of the first cover plate 17.Air dam 133 is arranged on the inner surface of the second cover plate 18 (see Figure 14).
In embodiments of the present invention, wind inlet channel 14 is connected by the first cover plate 17 and the second cover plate 18 and is formed.
In one embodiment, drive mechanism 20 includes body 22 and the output shaft 23 being rotationally connected with body 22.First cover plate 17 offers accepting groove 171 (see Fig. 8) and axis hole 172.Body 22 is housed in accepting groove 171.Output shaft 23 wears axis hole 172 and is connected with air-supply part 21.
So, drive mechanism 20 can rotate to drive air-supply part 21 to rotate by driving output shaft 23, and type of drive is simple and reliable, and, body 22 is housed in accepting groove 171, takes full advantage of the installation space of the first cover plate 17, it is simple to the miniaturization of the air intake installation 100 of dish-washing machine.
In one embodiment, output shaft 23 and air-supply part 21 interference fit.
So, interference fit ensure that the reliability being connected between output shaft 23 with air-supply part 21, and makes output shaft 23 higher with the junction bearing capacity of air-supply part 21, thus ensure that the stability of air intake installation 100 work of dish-washing machine.
In one embodiment, drive mechanism 20 includes fixed part 24.Body 22 is installed on fixed part 24.Fixed part 24 is fixing with the first cover plate 17 to be connected.
So, drive mechanism 20 was fixedly provided on housing 10 by fixed part 24 and the first cover plate 17 fixing connection, thus ensure that the position of drive mechanism 20 is the most stable, and then the connection coordination misalignment causing output shaft 23 because the position of drive mechanism 20 loosens with air-supply part 21 can be avoided, further, such fixed form simple in construction and being easily achieved.
Specifically, in embodiments of the present invention, body 22 is motor body, fixed part 24 offers the first screwed hole 241, first cover plate 17 offers the second screwed hole 173, and screw 242 (see Figure 11) wears the first screwed hole 241 and the second screwed hole 173 and is fixed on the first cover plate 17 by fixed part 24.
In one embodiment, the first cover plate 17 is formed with convex and fixes end 174.Air-supply part 21 covers on the fixing end 174 of convex.
So, when driving structure 20 to work, part 21 of blowing can fix end 174 rotation relative to convex, and part 21 cover of blowing sets to fix with convex and holds 174 to coordinate the depth of parallelism and the stability that can ensure that air-supply part 21 rotates.
Specifically, in embodiments of the present invention, air-supply part 21 is impeller inducer, and impeller inducer covers on the fixing end 174 of convex, and axis hole 172 is opened on the fixing end 174 of convex, and output shaft 23 wears axis hole 172 and is connected with impeller inducer.
In embodiment of the present invention, air intake installation 100 substantially l-shaped of dish-washing machine.Being appreciated that in other embodiments, the air intake installation 100 of dish-washing machine can be other suitable shape, accordingly, it would be desirable to explanation, the L-shaped being not restricted in present embodiment.
The dish-washing machine 1000 of embodiment of the present invention includes the air intake installation 100 of the dish-washing machine of inner bag 400 and any of the above-described embodiment.Inner bag 400 offers inner bag air inlet 410.The air intake installation 100 of dish-washing machine is installed on the outer surface 301 of inner bag 400.Air outlet 12 connects inner bag air inlet 410.
In the dish-washing machine 1000 of the present invention, outside air can import in housing 10 by air-supply part 21 by drive mechanism 20, derive to inner bag 400 via air outlet 12 again, the air-flow in inner bag 400 so can be made to accelerate flowing, thus the rate of drying of dish-washing machine 1000 can be promoted, and then promote the drying property of dish-washing machine 1000 and the energy can be saved.
In one embodiment, the position of the air inlet 11 of the air intake installation 100 of dish-washing machine is higher than the position of air outlet 12.
So, the water entering air intake installation 100 in dish-washing machine 1000 washing process so can be made can to flow back in inner bag 400 along air outlet 12, thus in water can be avoided to enter air intake installation 100, air intake installation 100 be adversely affected.
In one embodiment, be provided with in air channel 13 for by the water in air channel 13 back to the return-flow structure 123 of inner bag 400.
So, return-flow structure 123 produces hydrops in can effectively preventing air channel 13, thus the smoothness of air current flow in air channel 13 can be ensured, and the steam in inner bag 400 can be avoided to be run off by air channel 13.
Specifically, return-flow structure 123 is the position of close air outlet 11 in being arranged on air channel 13, and in the example of the present invention, return-flow structure 123 is formed on the inner surface of the first cover plate 17.Return-flow structure 123 is formed with inclined-plane, and the slope on inclined-plane is towards air outlet 11 so that the water on inclined-plane can be back to inner bag 400 through air outlet.
In one embodiment, housing 10 includes air intake 15 and outlet air end 16, and air intake 15 offers air inlet 11, and outlet air end 16 offers air outlet 12.Air intake 15 is formed with the first keeper 152.Outlet air end 16 is formed with counterpart 161.
Inner bag 400 includes sidewall 420.Inner bag air inlet 410 is opened on sidewall 420.Sidewall 420 is formed with the second keeper 421.First keeper 152 and the second keeper 421 are connected and are positioned on sidewall 420 by air intake 15.
Outlet air end 16 is contained in inner bag air inlet 410.Outlet air end 16 is connected with counterpart 161 by securing member 162 and is fixed on sidewall 420.
So, on the one hand, air intake 15 can be positioned on inner bag 400, it is simple to the installation of the air intake installation 100 of dish-washing machine, on the other hand, outlet air end 16 can be fixed on inner bag 400, it is simple to fixing of the air intake installation 100 of dish-washing machine.
In one embodiment, dish-washing machine 1000 includes sealing ring 163.Sealing ring 163 seals the junction of counterpart 161 and securing member 162.
In embodiment of the present invention, during the air intake installation 100 of dish-washing machine is installed on dish-washing machine 1000, first sealing ring 163 can be sheathed on counterpart 161, outlet air end 16 is made to be located in inner bag air inlet 410 afterwards, it is connected with counterpart 161 by securing member 162 again and outlet air end 16 is fixed on sidewall 420, meanwhile, sealing ring 163 is pressed on the junction of counterpart 161 and securing member 162 by securing member 162.
So, by arranging sealing ring 163 between securing member 162 and counterpart 161, so that the junction of securing member 162 and counterpart 161 has preferable sealing effectiveness, thus can prevent the steam in inner bag 400 from being leaked outside by the junction of securing member 162 with counterpart 161.
In the example of the present invention, counterpart 161 offers air outlet 11.
In one embodiment, counterpart 161 and securing member 162 threaded engagement.
So, threaded simple and reliable and easy to use, versatility is good, reusable.
In one embodiment, the first keeper 152 is arranged on air inlet 11.
So, when air intake 15 is positioned on inner bag 400 by the first keeper 152, air inlet 11 is arranged towards sidewall 420, can prevent dust from falling in air inlet 11.
In one embodiment, the first keeper 152 is arranged on air inlet mechanism 111.Air inlet mechanism 111 includes spaced multiple wind guide strip 112.Multiple wind guide strips 112 are distributed in Scroll-tupe.Multiple wind guide strips 112 are radially connected to the first keeper 152 around.
Specifically, in the example of the present invention, the first keeper 152 is the male member that retainer ring 113 is formed.Second keeper 421 is the groove that sidewall 420 is offered.
So, on the one hand, male member and groove fit, it is ensured that air-flow can enter the air intake space of air inlet 11 swimmingly, on the other hand, improve at air inlet 11 can installation space.
In one embodiment, dish-washing machine 1000 includes shell 500.It is provided with damping noise-reducing part 510 on the inner surface 501 of shell 500.Damping noise-reducing part 510 is between the air intake installation 100 and the inner surface 501 of shell 500 of dish-washing machine.
So, damping noise-reducing part 510, between the air intake installation 100 and the inner surface 501 of shell 500 of dish-washing machine, which decreases the noise when air intake installation 100 of dish-washing machine works, and then improves the Consumer's Experience of dish-washing machine 1000.
In one embodiment, damping noise-reducing part 510 in the frontal projected area of the inner surface 501 of shell 500 more than the air intake installation 100 of dish-washing machine in the frontal projected area of the inner surface 501 of shell 500.
Being arranged such, damping noise-reducing part 510 is completely covered the air intake installation 100 of dish-washing machine so that noise reduction is preferable.Damping noise-reducing part 510 e.g. sponge, and can be fixed on the inner surface 501 of shell 500 by double faced adhesive tape.
In the description of this specification, the description of reference term " embodiment ", " some embodiments ", " exemplary embodiment ", " example ", " concrete example " or " some examples " etc. means that the specific features, structure, material or the feature that combine embodiment or example description are contained at least one embodiment or the example of the present invention.In this manual, the schematic representation to above-mentioned term is not necessarily referring to identical embodiment or example.And, the specific features of description, structure, material or feature can combine in any one or more embodiments or example in an appropriate manner.
While embodiments of the present invention have been illustrated and described, it will be understood by those skilled in the art that: these embodiments can carry out in the case of without departing from the principle of the present invention and objective multiple change, revise, replace and modification, the scope of the present invention is limited by claim and equivalent thereof.
Claims (10)
1. the air intake installation of a dish-washing machine, it is characterised in that including:
For the housing being arranged on internal cavity of bowl washer, described housing offers air inlet, air outlet and air channel, and described air channel connects described air inlet and described air outlet;
It is installed on the drive mechanism on described housing, described drive mechanism includes the air-supply part being positioned at described housing, and described drive mechanism is used for driving described air-supply part to be rotated such that, and air-flow is imported described air channel by described air inlet and exports to described internal cavity of bowl washer from described air outlet.
The air intake installation of dish-washing machine the most according to claim 1, it is characterized in that, described housing includes the first cover plate and the second cover plate, described first cover plate and described second cover plate are oppositely arranged, described first cover plate and described second cover plate connect and are formed described air channel, described air inlet and described air outlet and be opened on described second cover plate.
The air intake installation of dish-washing machine the most according to claim 2, it is characterized in that, described drive mechanism includes body and the output shaft being rotationally connected with described body, described first cover plate offers accepting groove and axis hole, described body is housed in described accepting groove, and described output shaft wears described axis hole and is connected with described air-supply part.
The air intake installation of dish-washing machine the most according to claim 3, it is characterised in that described output shaft and described air-supply part interference fit.
The air intake installation of dish-washing machine the most according to claim 3, it is characterised in that described drive mechanism includes that fixed part, described body are installed on described fixed part, described fixed part is fixing with described first cover plate to be connected.
The air intake installation of dish-washing machine the most according to claim 2, it is characterised in that described first cover plate is formed with the fixing end of convex, described air-supply part covers on the fixing end of described convex.
The air intake installation of dish-washing machine the most according to claim 1, it is characterised in that described housing offers wind inlet channel, described wind inlet channel connects described air inlet and described air channel, and described wind inlet channel is tangent with described air channel.
8. a dish-washing machine, it is characterised in that include inner bag and the air intake installation according to the dish-washing machine described in claim 1-7 any one;
Described inner bag offers inner bag air inlet;
The air intake installation of described dish-washing machine is installed on the outer surface of described inner bag, and described air outlet connects described inner bag air inlet.
Dish-washing machine the most according to claim 8, it is characterised in that described housing includes that air intake and outlet air end, described air intake offer described air inlet, and described outlet air end offers described air outlet;
Described air intake is formed with the first keeper, and described outlet air end is formed with counterpart;
Described inner bag includes that sidewall, described inner bag air inlet are opened on described sidewall, and described sidewall is formed with the second keeper, and described first keeper coordinates with described second keeper and is positioned on described sidewall by described air intake;
Described outlet air end is contained in described inner bag air inlet, and described outlet air end is connected with described counterpart by securing member and is fixed on described sidewall.
Dish-washing machine the most according to claim 9, it is characterised in that described dish-washing machine includes sealing ring, described sealing ring seals the junction of described counterpart and described securing member.
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CN201610308167.3A CN105816136A (en) | 2016-05-09 | 2016-05-09 | Dish-washing machine and air inlet device thereof |
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CN201610308167.3A CN105816136A (en) | 2016-05-09 | 2016-05-09 | Dish-washing machine and air inlet device thereof |
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CN107970018A (en) * | 2017-12-29 | 2018-05-01 | 珠海格力电器股份有限公司 | Air duct structure and dish washing machine with same |
CN108814515A (en) * | 2018-06-21 | 2018-11-16 | 佛山市顺德区美的洗涤电器制造有限公司 | Drying device for dish-washing machine and the dish-washing machine with it |
CN109171593A (en) * | 2018-08-30 | 2019-01-11 | 中山市浩乐电器制造有限公司 | hot air drying system |
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WO2024124819A1 (en) * | 2022-12-12 | 2024-06-20 | 芜湖美的智能厨电制造有限公司 | Air exhaust device, and dish washing machine |
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Application publication date: 20160803 |