CN211834090U - Washing purifier - Google Patents

Washing purifier Download PDF

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Publication number
CN211834090U
CN211834090U CN201922009164.1U CN201922009164U CN211834090U CN 211834090 U CN211834090 U CN 211834090U CN 201922009164 U CN201922009164 U CN 201922009164U CN 211834090 U CN211834090 U CN 211834090U
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water
generator
purifying tank
electrolysis
washing
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CN201922009164.1U
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Chinese (zh)
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齐斌
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Zhongshan Yahong Electrical Appliance Co ltd
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Zhongshan Yahong Electrical Appliance Co ltd
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Abstract

The utility model provides a washing purifier, which comprises a shell, a purifying tank and an air pump; the purifying tank is arranged in the shell; the bottom of the purifying tank is provided with a plurality of air outlets which are communicated with the air pump through air pipes; the air pump is used for inputting air into the purifying tank. When the fruit and vegetable cleaning device is used, gas is introduced into the cleaning tank and can form bubbles in water, so that the water in the cleaning tank rolls, and the fruits and vegetables are in a dynamic state. Compared with the prior art, the utility model does not need a rotating shaft to drive the washing basket to rotate, thereby driving the fruits and vegetables to move; but utilize the bubble that gaseous formation drive fruit vegetables motion to avoided the pivot probably to have the defect of leakproofness, and this simple structure, easy maintenance and with low costs.

Description

Washing purifier
Technical Field
The utility model relates to a kitchen equipment technical field especially relates to a washing clearing machine.
Background
In order to increase economic benefits, various fruits and vegetables sold in the market at present have potential safety hazards such as pesticide residues and bacterial pollution. Generally, the fruits and vegetables are cleaned by using clear water or adding washing essence, silt and dirt on the surfaces of the fruits and vegetables can only be washed off, pesticide residues and harmful bacteria on the fruits and vegetables are difficult to remove, and people eating the fruits and vegetables with potential safety hazards can have adverse effects on body health.
For example, patent 1 "fruit and vegetable washing machine using electrolytic ionized water" (application No. 200910016160.4) discloses a fruit and vegetable washing machine using electrolytic ionized water, which forms positive ionized water and negative ionized water by electrolysis to disinfect and wash agricultural products; for example, patent 2 "a full-automatic fruit and vegetable cleaning machine" discloses a full-automatic fruit and vegetable cleaning machine, which utilizes an electrolysis device to make a cleaning solution sequentially acidic and alkaline so as to neutralize acidic pesticide and alkaline pesticide in fruits and vegetables and simultaneously kill viruses and bacteria; also, as disclosed in patent 3 "a fruit and vegetable cleaning machine", an ozone generator is provided to generate ozone to clean the fruit and vegetable.
In order to enhance the cleaning effect, the fruits and vegetables need to be moved during the cleaning process, and the fruits and vegetables can be better contacted with ionized water, ozone and the like just like being stirred by hands, so that the washing basket for containing the fruits and vegetables can rotate in the prior art. However, after long-term use, the rotating shaft/transmission shaft driving the washing basket to rotate rusts and ages, so that water seepage is easily caused, and the seeped water flows into a circuit below; secondly, the rusted and aged rotating shaft/transmission shaft has low working efficiency and high maintenance cost.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a: a washing purifier which utilizes gas to make fruits and vegetables in a dynamic state so as to solve the problems in the prior art.
The purpose of the utility model is realized by adopting the following technical scheme:
a water washing purifier comprises a shell, a purifying tank, an air pump and an electrolysis generator; the electrolysis generator is used for electrolyzing the water in the purifying tank to generate electrolytic ionized water; the purifying tank is arranged in the shell; the bottom of the purifying tank is provided with a plurality of air outlets which are communicated with the air pump through air pipes; the air pump is used for inputting air into the purifying tank, so that the water in the purifying tank forms vortex or rolls.
As a further embodiment, the gas outlet is provided on the electrolysis generator and/or in the purification tank proximate to the edge of the electrolysis generator such that the water around the electrolysis generator forms a vortex or tumble. The water around the electrolysis generator rolls or forms vortex flow, so that bubbles attached to the electrodes can fall off, the contact area of the electrodes and the water is further increased, and the electrolysis is accelerated.
As a further embodiment, the bottom of the purification tank is symmetrically provided with a plurality of air outlets along both ends of a diagonal line of the washing tub, and the air outlets are symmetrically provided with a plurality of air outlets along both ends of a transverse axis of the purification tank.
This embodiment sets up respectively in the left and right sides of purge tank bottom, preceding, back and sets up the venthole to ripple, the bubble that make four strands of air currents produce can interact, let the water in the bucket all roll, form stronger impact to the fruit vegetables, and then drive the fruit vegetables motion well.
As a further embodiment, the electrolysis generator comprises a generator upper cover, an anode electrolysis mesh, an insulating spacer, a cathode electrolysis mesh, a generator lower cover; the insulating separator is arranged between the anode electrolytic net and the cathode electrolytic net to prevent the anode electrolytic net and the cathode electrolytic net from directly contacting; the anode electrolytic net, the insulating spacer and the cathode electrolytic net are arranged between the generator upper cover and the generator lower cover, the generator upper cover is fixedly connected with the generator lower cover, and the generator upper cover and the generator lower cover are both provided with hollows; the anode electrolysis net is electrically connected with the positive electrode of the power supply, and the cathode electrolysis net is electrically connected with the negative electrode of the power supply.
The electrolysis generator in this embodiment is an integral module that is easy for a user to install and remove to clean or repair the generator.
As a further embodiment, the device also comprises a washing basket, wherein the washing basket is placed in the purifying tank, the top of the washing basket is provided with an opening, and the bottom and the side wall of the washing basket are provided with a plurality of water permeable holes; the washing basket is used for containing objects to be washed.
In this embodiment, the items to be cleaned are placed in the wash basket, rather than directly in the purge tank. After the washing is finished, a user can directly lift the washing basket, and the washed objects can be fished up conveniently and quickly.
As a further embodiment, the washing basket is provided with a handle portion for facilitating lifting of the washing basket.
As a further embodiment, the water inlet of the purge tank is provided on a side wall of the purge tank near the upper end surface.
In this embodiment, the water inlet is disposed on the side wall of the purifying tank near the upper end surface, and when water is supplied, the water is sprayed from the upper end and sprinkled on the object to be cleaned, and the object to be cleaned is primarily washed by the impact force of the water.
As a further embodiment, the device also comprises a water inlet pipe and a water inlet adapter; the water inlet pipe is arranged between the shell and the purification tank, one end of the water inlet pipe is communicated with the water pump, and the other end of the water inlet pipe is communicated with the water inlet through the water inlet adapter; the water inlet adapter with the second sealing washer between the water inlet to prevent the water in the inlet tube entering the shell with purify between the groove.
In this embodiment, a sealing measure is taken at the water inlet to prevent water from entering between the housing and the purification tank, thereby affecting a control device and the like provided between the housing and the purification tank.
As a further embodiment, the outlet of the outlet hole is provided with a diffusion air disk.
As a further example, the diffusion gas disk is a plate made by sintering powder or particles.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model provides a washing purifier, including shell, purification groove and air pump. When the fruit and vegetable cleaning device is used, gas is introduced into the cleaning tank, bubbles are formed in the gas in the water, and therefore the water in the cleaning tank rolls or forms vortex, and the fruits and vegetables are in a dynamic state. Compared with the prior art, the utility model does not need a rotating shaft to drive the washing basket to rotate, thereby driving the fruits and vegetables to move; but utilize the bubble that gaseous formation drive fruit vegetables motion to avoid the defect that the axis of rotation probably exists, and this simple structure, easy maintenance and with low costs.
Drawings
FIG. 1 is a schematic view of a preferred embodiment of a washing and purifying machine according to the present invention;
FIG. 2 is a schematic cross-sectional view of the water scrubber of FIG. 1;
FIG. 3 is a schematic view of the interior of the water purifier shown in FIG. 1 with the upper cover removed;
FIG. 4 is a schematic internal view of the water purifier shown in FIG. 3 with the wash basket removed;
FIG. 5 is a schematic internal view of the water purifier shown in FIG. 4 with the electrolysis generator removed;
FIG. 6 is a schematic view of the interior of the water scrubber of FIG. 5 with the scrubber tank removed;
FIG. 7 is an exploded schematic view of the electrolytic generator in the water scrubber of FIG. 4;
FIG. 8 is a schematic cross-sectional view of the electrolytic generator in the water scrubber of FIG. 4;
FIG. 9 is an enlarged view of a portion of the electrolytic generator shown in FIG. 8 at A.
In the figure: 1. a housing; 2. an upper cover; 3. a purification tank; 31. a groove; 32. a water inlet; 33. a water outlet; 34. an air outlet; 4. a washing basket; 41. a handle part; 5. an electrolysis generator; 51. an upper cover of the generator; 52. an anodic electrolytic network; 53. an insulating spacer; 54. a cathodic electrolysis grid; 55. a generator lower cover; 56. an anode conductive slot; 57. a cathode conductive slot; 6. a power line; 7. an anode conductive plug; 8. a cathode conductive plug; 9. a first seal ring; 10. a breather pipe; 11. an air pump; 12. a flow divider; 14. a water inlet pipe; 15. a water inlet adapter; 16. a second seal ring; 17. draining pump; 18. a drain pipe; 19. a filter cartridge; 20. a control device; 21. an indicator light; 22. an atmosphere lamp group; 23. a control panel.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
As shown in fig. 1 to 9, a preferred water washing purifier of the present invention comprises a housing 1, an upper cover 2, a purifying tank 3, a washing basket 4, an electrolysis generator 5, a water inlet assembly, a water discharge assembly, an air vent assembly, and a power cord 6. Wherein, the upper cover 2 is arranged on the upper end surface of the shell 1, and one side of the upper cover is pivoted with the shell 1. The purifying tank 3 is fixedly arranged in the shell 1, the bottom of the purifying tank 3 is provided with a groove 31, and the groove 31 is used for placing the electrolysis generator 5; the electrolytic generator 5 is used for electrolytically purifying the water in the tank 3. In addition, the purifying tank 3 is also provided with a water inlet 32, and the water inlet assembly fills water into the purifying tank 3 through the water inlet 32; the purification tank 3 is also provided with a water outlet 33, and the water drainage assembly drains the water in the purification tank 3 through the water outlet 33; the purification tank 3 is also provided with an air outlet hole 34, and the vent assembly exhausts air into the purification tank 3 through the air outlet hole 34. The washing basket 4 is directly placed in the purifying tank 3, the top of the washing basket is provided with an opening, and the bottom and the side wall of the washing basket are provided with a plurality of water permeable holes for accommodating objects to be cleaned.
When in use, the object to be cleaned is put into the washing basket 4, then the washing basket 4 is put into the purifying tank 3, and the upper cover 2 is covered; the power line 6 is conducted with an external power supply, water enters the purifying tank 3 through the water outlet 33, the electrolysis generator 5 ionizes the water, a large number of ultramicro bubbles mainly containing hydrogen are formed in the water in the process, the ultramicro bubbles are broken continuously in the rising process to generate vibration, the adhesion force of residual pesticides and vegetables is greatly reduced, the pesticides are better dissolved in the water and are degraded by oxidation factors in the water, and the hydrogen has extremely strong penetrating power and can deeply reach fiber pores of the vegetables, so that the oxidative degradation reaction is more sufficient and comprehensive; meanwhile, the concentration of hydroxide ions in the electrolyzed water is increased, so that the hydrolysis of the pesticide is enhanced, and the degradation effect of the pesticide is further enhanced. During electrolysis, outside air enters through the air outlet 34, so that bubbles are generated in water, objects to be cleaned are in a dynamic state, dirt such as silt can be better washed away, and meanwhile, the objects can be better contacted with hydrogen and oxidation factors generated by ionization, so that the degradation effect of the pesticide is enhanced. After the cleaning, the water in the cleaning tank 3 is discharged through the water discharge port 33, thereby achieving the object of cleaning.
In this embodiment, the electrolysis generator 5 includes a generator upper cover 51, an anode electrolytic mesh 52, an insulating spacer 53, a cathode electrolytic mesh 54, and a generator lower cover 55. Wherein an insulating spacer 53 is interposed between the anode electrolytic mesh 52 and the cathode electrolytic mesh 54 to prevent the anode electrolytic mesh 52 from directly contacting the cathode electrolytic mesh 54 without any further function of electrolyzing water. An anode electrolytic mesh 52, an insulating spacer 53 and a cathode electrolytic mesh 54 are interposed between the generator upper cover 51 and the generator lower cover 55; the generator upper cover 51 is fixedly connected with the generator lower cover 55. In order to enable water to contact with the electrolytic net and generate electrolytic reaction, the generator upper cover 51 and the generator lower cover 55 are both provided with hollows. The anode electrolytic network 52 is electrically connected to the positive pole of the power supply, and the cathode electrolytic network 54 is electrically connected to the negative pole of the power supply. In this embodiment, the anode electrolytic mesh 52 and the cathode electrolytic mesh 54 are integrated into one body by the generator upper cover 51, the insulating spacer 53 and the generator lower cover 55 to form one module. When the electrolytic generator 5 is installed, the electrolytic generator 5 is directly placed in the groove 31, and the groove 31 plays a limiting role in the electrolytic generator 5. When in use, the generator upper cover 51 and the generator lower cover 55 are both provided with hollows, so that the water in the purifying tank 3 is contacted with the anode electrolytic net 52 and the cathode electrolytic net 54 through the hollows, thereby realizing the purpose of electrolyzing water. When cleaning or maintaining, the user directly disassembles the electrolysis generator 5 for cleaning or maintaining, which is simple and convenient.
Further, the electrolysis generator 5 is provided with an anode conductive slot 56 and a cathode conductive slot 57, wherein the anode conductive slot 56 is welded on the anode electrolytic mesh 52, and the cathode conductive slot 57 is welded on the cathode electrolytic mesh 54. An anode conductive plug 7 and a cathode conductive plug 8 are fixedly arranged on the washing purifier. When the electrolysis generator 5 is installed, the electrolysis generator 5 is placed in the groove 31, so that the conductive plug on the washing purifier is inserted into the conductive slot welded on the electrolysis generator 5; when the electrolysis generator 5 is disassembled, the electrolysis generator 5 is lifted by applying force, so that the conductive slot welded on the electrolysis generator 5 is separated from the conductive plug on the washing purifier. It can be seen that the operation of mounting or dismounting the electrolysis generator 5 is simple, thereby facilitating the user to clean or repair the electrolysis generator 5. Further, in order to prevent water from entering the purge tank 3 and the housing 1 from the fitting gap between the conductive socket and the conductive plug, the fitting gap between the conductive socket and the conductive plug is sealed by the first seal ring 9. The sealing ring is made of a silica gel material. In addition, the part of the conductive plug inserted into the conductive slot has certain elasticity, and when the conductive plug is inserted into the conductive slot, the part can deform elastically, so that after the conductive plug is inserted into the conductive slot, the conductive plug and the conductive slot can not be separated under the condition of no external force action, namely, the electrolysis generator 5 can not be separated out of the groove 31 under the condition of no external force action.
In addition, in order to prevent that cleaning process, electrolysis generator 5 shifts, fix electrolysis generator 5 and the lateral wall of recess 31 through the mode of buckle, under the circumstances of guaranteeing that the user dismantles or simple to operate, further carry on spacingly to electrolysis generator 5. For example, a fastener is disposed on the outer side wall of the generator upper cover 51, and a fastener is disposed on the side wall of the groove 31 to fasten the fastener to the fastener.
In this embodiment, the ventilation assembly is disposed in the space between the purification tank 3 and the housing 1, and includes a ventilation pipe 10 and an air pump 11. The air outlet 34 communicates with the air pump 11 through the air pipe 10, thereby supplying air into the purge tank 3. In this embodiment, during the use, let in gas in purifying tank 3, gas will be well at aquatic formation bubble to make the water in purifying tank 3 roll over, and then make the fruit vegetables be in the developments. Compared with the prior art, the utility model does not need a rotating shaft to drive the washing basket 4 to rotate, thereby driving the fruits and vegetables to move; but utilize the bubble that gaseous formation drive fruit vegetables motion to avoided the pivot probably to have the defect of leakproofness, and this simple structure, easy maintenance and with low costs.
Further, in this embodiment, a plurality of air outlets 34 are disposed at the left, right, front and back 4 positions of the bottom of the purifying tank 3 (specifically, a plurality of air outlets 34 are symmetrically disposed at the two ends of the diagonal line of the purifying tank 3, and a plurality of air outlets 34 are symmetrically disposed at the two ends of the horizontal axis of the purifying tank 3, so that the ripples and bubbles generated by the four air streams can interact with each other, and all the water in the bucket can roll, so as to form stronger impact on fruits and vegetables, thereby well driving the fruits and vegetables to move.
Furthermore, the air outlet 34 may also be provided on the electrolysis generator 5 and/or in the purification tank 3 proximate to the edge of the electrolysis generator 5, so that the water around the electrolysis generator 5 forms a vortex or tumble. The water around the electrolysis generator 5 rolls or forms a vortex flow, so that bubbles attached to the electrodes can fall off, the contact area of the electrodes and the water is further increased, and the electrolysis is accelerated.
Further, a diffusion gas disk may be disposed at the outlet of the outlet hole 34, and the introduced gas is not air, but gas with a purification function, such as active oxygen. The diffusion gas disk is of a microporous structure, in this embodiment, the diffusion gas disk is a plate made by sintering powder or particles, wherein the plate may be made of silicon carbide, stainless steel, titanium, or the like. When the gas enters from the gas outlet 34 and passes through the diffusion gas disk, the gas is changed into small bubbles from large bubbles, and the active oxygen is wrapped in the small bubbles so as to be well dissolved in the water. When the small bubbles are broken when meeting the object to be cleaned, the active oxygen is released to contact the object to be cleaned, and the object to be cleaned is purified.
In the prior art, the water inlet 32 of the purifying tank 3 is generally disposed at the bottom of the purifying tank 3, and when water is supplied, the water surface slowly rises from the bottom of the purifying tank 3 and overflows over the objects to be cleaned. In the embodiment, the water inlet 32 of the purifying tank 3 is arranged on the side wall of the purifying tank 3 close to the upper end surface, when water is supplied, the water is sprayed from the upper end and is poured on the object to be cleaned, and the object to be cleaned is primarily washed by using the impact force of the water, such as washing away the adhered silt and the like; then, the electrolysis generator 5 is combined for electrolysis purification, thereby better ensuring the purification effect.
Specifically, the water inlet assembly in this embodiment is disposed in the space between the purifying tank 3 and the housing 1, and includes a water inlet pipe 14, a water inlet adapter 15, and a second sealing ring 16. Wherein, the water inlet pipe 14 is arranged between the shell 1 and the purifying tank 3, one end is communicated with the water pump, and the other end is communicated with the water inlet 32 through the water inlet adapter 15. The second seal ring 16 is provided between the water inlet joint 15 and the water inlet 32 to prevent the water in the water inlet pipe 14 from entering between the housing 1 and the purification tank 3, thereby affecting the control device 20 and the like provided between the housing 1 and the purification tank 3. The sealing ring is made of a silica gel material.
For the convenience of the user, the washing basket 4 in this embodiment is provided with a handle portion 41, which handle portion 41 is used for the convenience of the user in lifting the washing basket 4.
In this embodiment, the drain assembly is disposed in a space between the purge tank 3 and the housing 1, and includes a drain pump 17, a drain pipe 18, and a filter cassette 19. Wherein the filter cassette 19 is provided at an upper end surface of the drain port 33 for preventing the crushed materials in the tub from entering the drain pipe 18, thereby blocking the drain passage.
Further, in order to allow the water in the tub to be discharged as much as possible, a groove 31 is provided in the middle of the purification tank 3, and a bottom wall around the groove 31 is inclined toward the groove 31; the drain port 33 of the purge tank 3 is provided at the recess 31. During drainage, the bottom wall around the groove 31 is inclined towards the groove 31, and water around the groove flows towards the drainage port 33 along the inclined bottom wall to prevent water accumulation.
In this embodiment, the control device 20 is disposed in the space between the purge tank 3 and the casing 1. In addition, the device also comprises an indicator lamp 21, an atmosphere lamp group 22 and a control panel 23. The indicator light 21 is used for prompting the working stage of the water washing purifier for a user; the atmosphere lamp group 22 is used for lighting atmosphere or for illuminating the purge tank 3; which is installed at the bottom of the purification tank 3; the control panel 23 is used for user operation to control the operation of the purifier, and is disposed at the edge of the upper end surface of the casing 1.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.

Claims (9)

1. The utility model provides a washing clearing machine which characterized in that: comprises a shell, a purifying tank, an air pump and an electrolysis generator; the electrolysis generator is used for electrolyzing the water in the purifying tank to generate electrolytic ionized water; the purifying tank is arranged in the shell; the bottom of the purifying tank is provided with a plurality of air outlets which are communicated with the air pump through air pipes; the air pump is used for inputting air into the purifying tank, so that the water in the purifying tank forms vortex or rolls.
2. The water washing purifier of claim 1, wherein: the air outlet is arranged on the electrolysis generator and/or in the purifying tank close to the edge of the electrolysis generator, so that the water around the electrolysis generator forms vortex or tumbling.
3. The water washing purifier of claim 1, wherein:
the electrolysis generator comprises a generator upper cover, an anode electrolysis net, an insulating spacer, a cathode electrolysis net and a generator lower cover; the insulating separator is arranged between the anode electrolytic net and the cathode electrolytic net to prevent the anode electrolytic net and the cathode electrolytic net from directly contacting; the anode electrolytic net, the insulating spacer and the cathode electrolytic net are arranged between the generator upper cover and the generator lower cover, the generator upper cover is fixedly connected with the generator lower cover, and the generator upper cover and the generator lower cover are both provided with hollows; the anode electrolysis net is electrically connected with the positive electrode of the power supply, and the cathode electrolysis net is electrically connected with the negative electrode of the power supply.
4. The water washing purifier of claim 1, wherein: the washing basket is placed in the purifying tank, an opening is formed in the top of the washing basket, and a plurality of water permeable holes are formed in the bottom and the side wall of the washing basket; the washing basket is used for containing objects to be washed.
5. The water washing purifier of claim 4, wherein: the washing basket is provided with a handle part, and the handle part is used for conveniently lifting the washing basket.
6. The water washing purifier of claim 1, wherein: the water inlet of the purifying tank is arranged on the side wall of the purifying tank close to the upper end face.
7. The water washing purifier of claim 6, wherein: the water inlet pipe and the water inlet adapter are also included; the water inlet pipe is arranged between the shell and the purification tank, one end of the water inlet pipe is communicated with the water pump, and the other end of the water inlet pipe is communicated with the water inlet through the water inlet adapter; the water inlet adapter with be equipped with the second sealing washer between the water inlet, in case the water in the inlet tube gets into the shell with purify between the groove.
8. The water washing purifier of claim 1, wherein: and a diffusion air disc is arranged at the air outlet of the air outlet hole.
9. The water washing purifier of claim 8, wherein: the diffusion gas disk is a plate sintered by powder or particles.
CN201922009164.1U 2019-11-19 2019-11-19 Washing purifier Active CN211834090U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922009164.1U CN211834090U (en) 2019-11-19 2019-11-19 Washing purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922009164.1U CN211834090U (en) 2019-11-19 2019-11-19 Washing purifier

Publications (1)

Publication Number Publication Date
CN211834090U true CN211834090U (en) 2020-11-03

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922009164.1U Active CN211834090U (en) 2019-11-19 2019-11-19 Washing purifier

Country Status (1)

Country Link
CN (1) CN211834090U (en)

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