The present disclosure relates to the field of dishwasher technology, and in particular, to a dishwasher filter device based on micro-nano aeration.
At present, home dishwashers generally use water spray for cleaning. However, this type of dishwashers, on one hand, is difficult to clean ordinary Chinese tableware due to the problem of water spray angle, and on the other hand, has a poor cleaning effect since the cleaning liquid is in contact with tableware for a short time after being sprayed. In addition, dishwashing powder specially used in the dishwashers is very expensive, resulting in a relatively high cost to use. In view of this, the water-spray dishwashers have not been popularized in Chinese families.
Immersion-type dishwashers have not been used in families for various reasons either. One reason is that when the dishwasher uses water for immersed tableware cleaning, since a large amount of food residues are attached to the surface of tableware, the food residues may enter and float on the cleaning water. Thus, current filter devices cannot satisfy the requirements for cleaning. Another reason is that, such ultrasound-based dishwashers have noise problems, generate ultrasound that is potentially hazardous to human health, and are not inadequate in cleaning effect, therefore they are not widely applied in Chinese families.
An objective of the present disclosure is to provide a dishwasher filter device based on micro-nano aeration which can avoid secondary pollution of tableware by food residues and floating oil on the tableware during a cleaning process, and at the same time, can also help improve the tableware cleaning effect of the dishwasher and reduce the use of chemical detergents.
The technical solutions adopted for solving the above technical problems are described as follows.
There is provided a dishwasher filter device based on micro-nano aeration including a cylinder for accommodating washing liquid, and a filter unit, wherein the filter unit is in communication with an inner cavity of the cylinder by a water inlet pipe and is connected to a micro-nano bubble generator by a third pipe, the micro-nano bubble generator is connected to a water outlet unit which includes a fourth pipe connected to the micro-nano bubble generator and a dissolved air release assembly connected to the other end of the fourth pipe, and the dissolved air release assembly is disposed at a bottom of the cylinder.
As a further improvement to the foregoing technical solution, the filter unit includes a water inlet cavity and a water outlet cavity that are in communication with each other, and the water inlet cavity is provided with a filter material.
As a further improvement to the foregoing technical solution, the filter unit further includes a filter tank with an open upper end, the water inlet cavity and the water outlet cavity are disposed in the filter tank, and the filter material includes a coarse filter screen and a fine filter screen located below the coarse filter screen.
As a further improvement to the foregoing technical solution, an oil-water separation tank is provided between the water inlet cavity and the water outlet cavity, an oil storage box is disposed in the oil-water separation tank, and an oil discharge valve is connected to the oil storage box.
As a further improvement to the foregoing technical solution, the filter unit further includes a sealed container, the water inlet cavity is disposed at an upper portion of the sealed container, the water outlet cavity is disposed at a lower portion of the sealed container, and the water inlet cavity includes a water storage chamber in communication with the water inlet pipe and a filter material chamber in communication with the water storage chamber.
As a further improvement to the foregoing technical solution, the micro-nano bubble generator includes an air buffer tank, an air-liquid mixing pump connected to the water inlet pipe, and a jet device connected to a water outlet of the air-liquid mixing pump, the air buffer tank is respectively connected to an air inlet of the air-liquid mixing pump and an air inlet of the jet device, and a water outlet of the jet device is connected to the water outlet unit.
As a further improvement to the foregoing technical solution, the dissolved air release assembly includes an intercommunication pipe in mutual communication and a dissolved air releaser connected to the intercommunication pipe, the dissolved air releaser includes an inlet pipe and an outlet pipe connected to the inlet pipe, a conical entrance cavity is formed inside the inlet pipe, an exit cavity in communication with the entrance cavity is formed inside the outlet pipe, and a conical lug is provided on an inner wall of the outlet pipe at a position facing the entrance cavity.
As a further improvement to the foregoing technical solution, the dishwasher filter device further includes a rotation driving device for driving washing liquid to flow, wherein the rotation driving device includes a first motor disposed below the cylinder, a reducer connected to the first motor by a transmission mechanism, and an impeller connected to an output end of the reducer, and the impeller is disposed between a bottom wall of the cylinder and the dissolved air release assembly.
As a further improvement to the foregoing technical solution, the impeller includes a first disk and a plurality of ribs disposed on the first disk, each rib is in a ridge form or a propeller vane form and a C shape or an S shape in a radial direction of the first disk, and the plurality of the ribs are uniformly distributed in a circumferential direction of the first disk.
As a further improvement to the foregoing technical solution, the dishwasher filter device further includes a dish rack immersed in washing liquid and a vibration drive device for driving the dish rack to reciprocate linearly, where the vibration drive device includes a second motor and a sine mechanism that are mounted outside a side wall of the cylinder, the sine mechanism includes a second disk mounted on an output shaft of the second motor, a lug disposed at an edge of the second disk, a shift fork with an opening groove sheathed on the lug, and a horizontal transmission rod vertically connected to the shift fork, and the horizontal transmission rod is connected to the dish rack by a plurality of vertical rods.
The present disclosure has the following beneficial effects. In the present disclosure, the filter unit filters washing liquid in the cylinder. The micro-nano bubble generator introduces micro-nano bubbles into the filtered washing liquid. The washing liquid that contains the micro-nano bubbles passes through the dissolved air release assembly to release a large number of micro-nano bubbles. The micro-nano bubbles then rise slowly and reach the surface of tableware. The tableware is cleaned by the shock waves generated as some micro-nano bubbles burst on the surface of the tableware. Some micro-nano bubbles can adsorb grease and carry the grease to rise to the surface of the washing liquid to turn the grease into floating oil. The washing liquid that contains residues and floating oil passes through the water inlet pipe and is introduced into the filter unit again for filtration. According to the present disclosure, the filtration of washing liquid that contains residues and floating oil is realized, and the amount of detergent used is reduced. Moreover, the micro-nano bubble generator is used to aerate the filtered washing liquid, and the tableware can be cleaned by the aerated washing liquid. In the present disclosure, a cyclic process of washing the tableware and filtering washing liquid is completed, and the washing liquid can be effectively filtered to remove residues and floating oil and the tableware can be cleaned.
In order to illustrate the technical solution in the embodiments of the present disclosure more clearly, brief description will be made below to the drawings required in the embodiments, and apparently, the drawings described below are some embodiments of the present disclosure only, and other drawings could be obtained based on these drawings by those of ordinary skill in the art without creative efforts.
The concept, specific structures, and produced technical effects of the present disclosure are clearly and thoroughly described below with reference to the embodiments and the accompanying drawings for thorough understanding of the objectives, features, and effects of the present disclosure. Apparently, the described embodiments are merely some rather than all of the embodiments of the present disclosure. Other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall fall within the protection scope of the present disclosure. In addition, all coupling/connection relationships mentioned herein are not necessarily direct connection between members. Instead, coupling auxiliaries may be added or reduced according to specific implementations to form better coupling structures.
The micro-nano bubble generator 7 includes an air buffer tank 72, an air-liquid mixing pump 71 connected to the third pipe 83, and a jet device 73 connected to a water outlet of the air-liquid mixing pump 71. The air buffer tank 72 is respectively connected to an air inlet of the air-liquid mixing pump 71 and an air inlet of the jet device 73. A water outlet of the jet device 73 is connected to the water outlet unit. The air-liquid mixing pump 71 is further connected to a fifth pipe 85. The fifth pipe 85 may introduce tap water. The fifth pipe 85 is provided with a second control valve 87. The third pipe 83 is provided with a first control valve 86.
In the present disclosure, the filter unit 2 filters washing liquid in the cylinder 12. The micro-nano bubble generator 7 introduces micro-nano bubbles into the filtered washing liquid. The washing liquid that contains the micro-nano bubbles passes through the dissolved air release assembly 3 to release a large number of micro-nano bubbles. The micro-nano bubbles then rise slowly and reach the surface of tableware. The tableware is cleaned by the shock waves generated as some micro-nano bubbles burst on the surface of the tableware. Some micro-nano bubbles can adsorb grease and carry the grease to rise to the surface of the washing liquid to turn the grease into floating oil. The washing liquid that contains residues and floating oil passes through the water inlet pipe and is introduced into the filter unit 2 again for filtration. In this way, a cyclic process of washing the tableware and filtering the washing liquid is completed, and washing liquid can be effectively filtered to remove residues and floating oil and the tableware can be cleaned.
Further, the dissolved air release assembly 3 includes an intercommunication pipe 32 in mutual communication and a dissolved air releaser 31 connected to the intercommunication pipe 32, so that the bottom wall of the inner cavity of the cylinder 12 may be preferably provided with a groove matching the dissolved air release assembly 3, so that the inner cavity of the cylinder 12 is flatter and neater. Referring to
In the first embodiment of the present disclosure, the dishwasher filter device further includes a rotation driving device for driving washing liquid to flow. The rotation driving device includes a first motor 51 disposed below the cylinder 12, a reducer 52 connected to the first motor 51 by a transmission mechanism, and an impeller 53 connected to an output end of the reducer 52. The impeller 53 is disposed between a bottom wall of the cylinder 12 and the dissolved air release assembly 3. The impeller 53 includes a first disk and a plurality of ribs disposed on the first disk. Each of the ribs has a ridge form or a propeller vane form and has a C shape or an S shape in a radial direction of the first disk. The plurality of the ribs are uniformly distributed in a circumferential direction of the first disk. The impeller 53 drives washing liquid to flow, so that more micro-nano bubbles can hit the tableware, thereby greatly improving the cleaning effect.
The implementations of the present disclosure are described above in detail with reference to the accompanying drawings. However, the present disclosure is not limited to the foregoing implementations. Within the knowledge of an ordinary skilled in the art, various modifications may further be made without departing from the concept of the present disclosure.
Number | Date | Country | Kind |
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201810355376.2 | Apr 2018 | CN | national |
This application is a national stage filing under 35 U.S.C. § 371 of international application number PCT/CN2018/099800, filed Aug. 10, 2018, which claims priority to Chinese patent application No. 201810355376.2 filed Apr. 19, 2018. The contents of these applications are incorporated herein by reference in their entirety.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/099800 | 8/10/2018 | WO | 00 |