CN210873145U - Foldable electrolytic disinfection device - Google Patents

Foldable electrolytic disinfection device Download PDF

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Publication number
CN210873145U
CN210873145U CN201920991784.7U CN201920991784U CN210873145U CN 210873145 U CN210873145 U CN 210873145U CN 201920991784 U CN201920991784 U CN 201920991784U CN 210873145 U CN210873145 U CN 210873145U
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shell
electrolysis module
electrolysis
face
cover
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CN201920991784.7U
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台明栋
刘振东
黄攀
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Foshan Healthcarer Technology Co ltd
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Foshan Healthcarer Technology Co ltd
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Abstract

The utility model discloses a collapsible electrolysis degassing unit, including the drain pan and with the drain pan rotates the cap of connecting, be provided with first electrolysis module on the drain pan, be provided with second electrolysis module on the cap, the cap be suitable for around casing and drain pan junction swing to with the drain pan laminating is used for holding in order to form first accommodation space of first electrolysis module and second electrolysis module, first electrolysis module and second electrolysis module is suitable for the electrolysis to hold the water in the container in order to treat disinfection article in placing the container and disinfect, and this collapsible electrolysis degassing unit area occupation is little, and can disinfect to a plurality of article, and disinfection efficiency is high.

Description

Foldable electrolytic disinfection device
Technical Field
The utility model relates to a disinfection cleaner technical field especially relates to a collapsible electrolysis degassing unit.
Background
There are many types of machines available in the market today for disinfection, including ultraviolet disinfection, ozone disinfection, ultrasonic disinfection, electrolytic disinfection, and the like.
The electrolytic disinfection generally needs to put the electrolytic module and the object to be disinfected into water at the same time, so as to disinfect the object by using the electrolyzed water generated after the electrolysis of the electrolytic module; however, the existing electrolytic disinfection equipment has large volume, occupies space and is inconvenient to carry in order to improve the electrolytic efficiency; some small-sized products are relatively convenient to carry, but the generated electrolytic disinfection capacity is limited, and the disinfection requirements of more articles cannot be met.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a foldable electrolytic disinfection device, which occupies a small area, can disinfect a plurality of articles and has high disinfection efficiency.
The purpose of the utility model is realized by adopting the following technical scheme:
the utility model provides a collapsible electrolysis degassing unit, including the drain pan and with the drain pan rotates the cap of being connected, be provided with first electrolysis module on the drain pan, be provided with second electrolysis module on the cap, the cap be suitable for around casing and drain pan junction swing to with the drain pan laminating to form and be used for holding first electrolysis module and second electrolysis module's first accommodation space, first electrolysis module and second electrolysis module are suitable for the electrolysis to hold the water in the container in order to disinfect to placing the article of waiting to disinfect in the container.
Further, the shell cover includes mesochite and first face-piece, one side of mesochite with the drain pan is rotated and is connected, the opposite side with first face-piece rotates and is connected in order to form similar screen structure, first face-piece is provided with second electrolysis module, be provided with the third electricity in the mesochite and deblock, the mesochite is suitable for around the mesochite rotates with the drain pan junction to with the drain pan laminating to form the second accommodation space that is used for holding first electrolysis module, first face-piece be suitable for around first face and mesochite junction rotate to with the mesochite laminating to form the third accommodation space that is used for second electrolysis module and third electrolysis module.
Further, the shell cover includes second face shell and third face shell, the drain pan both sides respectively with second face shell and third face shell rotate to be connected, the second face shell with third face shell width equals, just the width of second face shell is half the drain pan width, install in the second face shell and the third face shell second electrolysis module, the second face shell, the third face shell be suitable for rotate to with the drain pan cooperation to form and be used for holding first electrolysis module with the first accommodation space of second electrolysis module.
Further, the shell cover surface is provided with the dwang, the bottom shell surface be formed with the rotation cover of dwang adaptation, the rotatable setting of dwang is in rotate the cover.
Further, the shell cover side is provided with the hinge, the shell cover pass through the hinge with the drain pan rotates to be connected.
Further, the first electrolysis module and the second electrolysis module comprise a first lead, a second lead and a plurality of titanium pole plates with positive electrodes and negative electrodes, the first lead is suitable for communicating the positive electrodes of the plurality of titanium pole plates, and the second lead is suitable for communicating the negative electrodes of the plurality of titanium pole plates.
Further, titanium screws are arranged on the positive electrode and the negative electrode of the titanium polar plate, the first lead is connected with the positive electrode of the titanium polar plate through the titanium screws, and the second lead is connected with the negative electrode of the titanium polar plate through the titanium screws.
Further, a ruthenium-iridium coating, an iridium-tantalum coating or a platinum coating is arranged on the surface of the titanium polar plate.
Furthermore, the bottom shell and the shell cover are provided with baffles, the baffles are suitable for separating the first electrolysis module and the second electrolysis module from the outside, and the baffles are provided with a plurality of through holes.
Furthermore, the back of the shell cover is provided with a storage battery which is electrically connected with the first electrolysis module and the second electrolysis module.
Compared with the prior art, the beneficial effects of the utility model reside in that:
through set up first electrolysis module on the drain pan and set up second electrolysis module on the cap, with the area of contact who increases degassing unit and external world, thereby increase the electrolysis area, in order to disinfect to a plurality of article, improve electrolytic capacity simultaneously, and the drain pan rotates with the cap to be connected and can cooperate and form first accommodation space, can accomplish the back in the use, through the mode that rotates the cap, accomodate first electrolysis module and second electrolysis module and put first accommodation space, reduce its area occupied, be convenient for deposit.
Drawings
FIG. 1 is a schematic structural view of a foldable electrolytic disinfection apparatus according to a first embodiment of the present invention;
FIG. 2 is a schematic view of the foldable electrolytic disinfection device according to another embodiment of the present invention
FIG. 3 is a schematic view of a baffle-removing structure of an embodiment of the foldable electrolytic sterilizing device of the present invention;
FIG. 4 is a schematic view of a bottom case of an embodiment of the foldable electrolytic sterilizing device of the present invention;
FIG. 5 is a schematic view of a housing cover according to an embodiment of the foldable electrolytic sterilizing device of the present invention;
FIG. 6 is a schematic structural view of a second embodiment of a foldable electrolytic disinfection apparatus according to the present invention;
FIG. 7 is a schematic view of a foldable electrolytic disinfection apparatus according to the present invention, showing a structure of a baffle plate
FIG. 8 is a schematic structural view of a third embodiment of a foldable electrolytic disinfection apparatus according to the present invention;
FIG. 9 is a schematic view of a third embodiment of a foldable electrolytic disinfection apparatus of the present invention with baffles removed;
FIG. 10 is a schematic structural view of a fourth embodiment of a foldable electrolytic disinfection apparatus according to the present invention;
FIG. 11 is a schematic view of a fourth embodiment of the foldable electrolytic sterilizing device of the present invention with baffles removed;
FIG. 12 is a schematic view of the foldable electrolytic disinfection apparatus according to the present invention.
In the figure: 10. a bottom case; 11. rotating the sleeve; 20. a shell cover; 21. a middle shell; 22. a first face shell; 23. a second face shell; 24. a third face shell; 25. rotating the rod; 30. a first electrolysis module; 31. a titanium polar plate; 32. a titanium screw; 33. an adapter; 40. a second electrolysis module; 50. a third electrolysis module; 60. a baffle plate; 70. and (4) a storage battery.
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, in the following description, various embodiments or technical features may be arbitrarily combined to form a new embodiment without conflict.
As shown in fig. 1 to 12, a foldable electrolytic disinfection apparatus includes a bottom case 10 and a case cover 20 rotatably connected to the bottom case 10, a first electrolysis module 30 is disposed on the bottom case 10, a second electrolysis module 40 is disposed on the case cover 20, the case cover 20 is adapted to swing around a connection between the case and the bottom case 10 to be attached to the bottom case 10, so as to form a first receiving space for receiving the first electrolysis module 30 and the second electrolysis module 40, and the first electrolysis module 30 and the second electrolysis module 40 are adapted to electrolyze water to disinfect disinfectant. Specifically, the connection of the case cover 20 and the bottom case 10 is provided with a guide for connecting the first electrolysis module 30 and the second electrolysis module 40, so as to facilitate electrical communication between the first electrolysis module 30 and the second electrolysis module 40.
During the use, the casing rotates, in order to expose the second electrolysis module 40 of installing in the first electrolysis module 30 of drain pan 10 and installing on cap 20, in order to increase degassing unit and external area of contact, in order to increase the electrolysis area, in order to disinfect to a plurality of article, improve electrolysis capacity simultaneously, after the electrolysis is accomplished, can rotate cap 20 around its and drain pan 10 junction, until laminating with drain pan 10, in order to form the first accommodation space that is used for holding first electrolysis module 30 and second electrolysis module 40, it is convenient for accomodate to reduce the space that degassing unit occupied.
Be provided with baffle 60 on drain pan and the cap, baffle 60 is suitable for and separates first electrolysis module and second electrolysis module with the external world to avoid first electrolysis module and second electrolysis module and treat the contact of disinfection article in the working process, lead to the article damage, in addition, seted up a plurality of through-holes on the baffle 60, make things convenient for water and first electrolysis module and second electrolysis module contact, the electrolysis module carries out the electrolysis to water, the electrolysis water of production disinfects article.
The back of the shell cover is provided with a storage battery 70 which is electrically connected with the first electrolysis module and the second electrolysis module through the storage battery 70, so that the first electrolysis module and the second electrolysis module can be conveniently used for electrolysis disinfection at any time. In addition, the upper end of the shell cover is provided with an adapter which can be used for being connected with an external power supply, the back of the shell cover is also provided with a circuit board which is used for being connected with the storage battery 70, the circuit board is matched with the adapter, and when the adapter is inserted, the adapter is directly used for supplying power for electrolysis to the electrolysis module; when the adapter is not inserted, the battery supplies power to the electrolysis module for electrolysis; when the battery power is not enough, the adapter can be used for charging, and the wireless charging base can also be used for wireless charging.
Example one
Specifically, as shown in fig. 1 to 5, a rotating rod 25 is disposed on a surface of the housing cover 20, a rotating sleeve 11 adapted to the rotating rod 25 is formed on a surface of the housing cover 10, and the rotating rod 25 is rotatably disposed in the rotating sleeve 11, so that the housing cover 20 rotates around the rotating rod 25. Specifically, the turning rod 25 is hollow to facilitate the embedding of the wire.
Example two
Specifically, as shown in fig. 6 to 7, the housing cover 20 includes a middle shell 21 and a first face shell 22, one side of the middle shell 21 is rotatably connected with the bottom shell 10, the other side of the middle shell is rotatably connected with the first face shell 22 to form a screen-like structure, the first face shell 22 is provided with a second electrolysis module 40, a third electrolysis block is arranged in the middle shell 21, the middle shell 21 is adapted to rotate around the joint of the middle shell 21 and the bottom shell 10 to be attached to the bottom shell 10 to form a second accommodating space for accommodating the first electrolysis module 30, and the first face shell 22 is adapted to rotate around the joint of the first face and the middle shell 21 to be attached to the middle shell 21 to form a third accommodating space for the second electrolysis module 40 and the third electrolysis module 50. In addition, a lead wire connecting the second electrolysis module 40 and the third electrolysis module 50 is provided at the junction of the first panel case 22 and the middle case 21 so that the second electrolysis module 40 is electrically connected with the third electrolysis module 50.
During the use, rotate mesochite 21 around its and drain pan 10 junction to expose and be in second electrolytic module 40 in the second accommodation space, rotate first panel shell 22 around its and mesochite 21 junction simultaneously, with the third electrolytic module 50 that is in the third accommodation space of exposure, then place electrolytic device in aquatic, place the article that need disinfect such as fruit vegetables, clothes, kitchen utensils and appliances in the electrolytic device top, first electrolytic module 30, second electrolytic module 40 and third electrolytic module 50 begin to work and electrolyze water, disinfect to produce the aquatic article, the concrete principle is as follows: the tap water mainly contains water molecules and other ions, such as Na +, Ca2+, Mg2+, H + as cation, OH-, Cl-, SO 42-as anion, and the like.
When the electrolysis is carried out by electrifying, under the action of an electric field, the negatively charged OH-, Cl-and SO 42-move to the anode, and the positively charged Na +, Ca2+, Mg2+ and H + move to the cathode.
At the anode, Cl-is easier to lose electrons than OH-, SO 42-and is oxidized into chlorine atoms, and the chlorine atoms are combined into chlorine molecules in pairs to release chlorine. Namely:
2Cl- -2e ═ Cl2 ═ ≠ (oxidation reaction)
At the cathode, H + is easier to obtain electrons than Na +, Ca2+, Mg2+ and the like, so that H + continuously obtains electrons from the cathode and is reduced into hydrogen atoms, and the hydrogen atoms are combined into hydrogen molecules in pairs to release hydrogen from the cathode. Namely:
2H + +2e ═ H2 ≠ @ (reduction reaction)
H + continuously obtains electrons on the cathode to generate hydrogen to be discharged, and the ionization balance of nearby water is destroyed, so that a large amount of water molecules are ionized into H + and OH-, and the speed of generating OH is much higher than the speed of generating OH to the anode in a directional mode. Therefore, OH near the cathode is greatly increased, OH-hydroxyl can be combined with oil stain components, the emulsifying function is realized, stains can be separated easily, and pesticide residues on fruits and vegetables can be removed effectively.
In the continuous electrolysis process, chlorine Cl2 and water generate hypochlorous acid which is dissolved in the water to form H + and hypochlorite ClO-, and the hypochlorite has strong oxidability;
during the continuous electrolysis, higher oxidation state chlorine with the valence of 0, +1, +3, +4, +5, +7 is generated, and the oxidation state chlorine can be released in the redox reaction and reduced to the reduction state chlorine with the valence of-1 (natural stable state), so that the oxidation state chlorine is chlorine capable of playing the role of disinfection and is called effective chlorine. The disinfection and sterilization of electrolytic water mainly utilizes the strong oxidizing property of available chlorine formed from components of ClO-hypochlorite, etc. to partially denature protein of thallus virus so as to kill germs.
EXAMPLE III
Specifically, as shown in fig. 8 to 9, the case cover 20 includes a second face shell 23 and a third face shell 24, two sides of the bottom case 10 are respectively rotatably connected to the second face shell 23 and the third face shell 24, the second face shell 23 and the third face shell 24 have the same width, the width of the second face shell 23 is half of the width of the bottom case 10, a second electrolysis module 40 is installed in the second face shell 23 and the third face shell 24, and the second face shell 23 and the third face shell 24 are adapted to rotate to cooperate with the bottom case 10 to form a first accommodating space for accommodating the first electrolysis module 30 and the second electrolysis module 40. Specifically, the joints of the second and third front shells 23 and 24 and the bottom shell 10 are provided with wires to connect the first and second electrolysis modules 30 and 40, so as to realize the electrical conduction between the first and second electrolysis modules 30 and 40.
During the use, rotate second panel shell 23 around its and drain pan 10 junction towards keeping away from drain pan 10 direction, rotate third panel shell 24 around its and drain pan 10 junction towards keeping away from drain pan 10 direction to make first electrolysis module 30 and second electrolysis module 40 in the first accommodation space expose, carry out the electrolysis disinfection, after using, rotate second panel shell 23 and third panel shell 24 to laminating with drain pan 10 in order to form first accommodation space, be used for accomodating first electrolysis module 30 and second electrolysis module 40.
Example four
Specifically, as shown in fig. 10 to 12, hinges are provided at the sides of the cover 20, and the cover 20 is rotatably connected to the base 10 by the hinges.
The first electrolysis module 30, the second electrolysis module 40 and the third electrolysis module 50 comprise a first lead, a second lead and a plurality of titanium pole plates 31 with positive poles and negative poles, the first lead is suitable for communicating the positive poles of the plurality of titanium pole plates 31, the second lead is suitable for communicating the negative poles of the plurality of titanium pole plates 31, and the first guide and the second guide can adopt leads with good winding resistance and corrosion resistance, such as silicon rubber leads, and have long service life. The plurality of titanium pole plates 31 may be arranged at equal intervals or at unequal intervals. In addition, the cathodes and the anodes of the adjacent titanium pole plates are arranged in a bending opposite mode, and the cathodes and the anodes of the adjacent titanium pole plates can be arranged in a net shape in an opposite mode.
The titanium screws 32 are arranged on the positive electrode and the negative electrode of the titanium polar plate 31, the first lead is connected with the positive electrode of the titanium polar plate 31 through the titanium screws 32, the second lead is connected with the negative electrode of the titanium polar plate 31 through the titanium screws 32, the titanium screws 32 are arranged, the corrosion resistance is good, and the corrosion fracture of the connection parts of the first lead and the second lead and the titanium polar plate 31 in the working process can be avoided.
The surface of the titanium polar plate 31 is provided with a ruthenium iridium coating, an iridium tantalum coating or a platinum coating, so that the electrolysis effect is good.
The case cover 20 is provided with an adapter 33 electrically connected to the first electrolysis module 30 so that the first electrolysis module 30 and the second electrolysis module 40 are connected to a power source, and furthermore, adapters electrically connected to the titanium plate 31 mounted thereon are mounted on the first case 22, the second case 23, the third case 24 and the middle case 21 so as to be electrically conducted.
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 (10)

1. A foldable electrolytic disinfection apparatus, characterized in that: the disinfection device comprises a bottom shell and a shell cover rotationally connected with the bottom shell, wherein a first electrolysis module is arranged on the bottom shell, a second electrolysis module is arranged on the shell cover, the shell cover is suitable for swinging to be attached to the bottom shell around the joint of the shell and the bottom shell to form a first containing space for containing the first electrolysis module and the second electrolysis module, and the first electrolysis module and the second electrolysis module are suitable for electrolyzing water contained in a container so as to disinfect an object to be disinfected placed in the container.
2. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the shell cover comprises a middle shell and a first face shell, one side of the middle shell is rotatably connected with the bottom shell, the other side of the middle shell is rotatably connected with the first face shell to form a similar screen structure, the first face shell is provided with the second electrolysis module, a third electrolysis block is arranged in the middle shell, the middle shell is suitable for rotating around the joint of the middle shell and the bottom shell to be attached to the bottom shell so as to form a second accommodating space for accommodating the first electrolysis module, and the first face shell is suitable for rotating around the joint of the first face shell and the middle shell to be attached to the middle shell so as to form a third accommodating space for the second electrolysis module and the third electrolysis module.
3. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the shell cover comprises a second face shell and a third face shell, two sides of the bottom shell are respectively connected with the second face shell and the third face shell in a rotating mode, the width of the second face shell is equal to that of the third face shell, the width of the second face shell is half of that of the bottom shell, the second face shell and the third face shell are internally provided with a second electrolysis module, and the second face shell and the third face shell are suitable for rotating to be matched with the bottom shell to form a first containing space for containing the first electrolysis module and the second electrolysis module.
4. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the shell cover surface is provided with the dwang, the drain pan surface be formed with the rotation cover of dwang adaptation, the rotatable setting of dwang is in rotate the cover.
5. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the shell cover is characterized in that hinges are arranged on the side faces of the shell cover, and the shell cover is rotatably connected with the bottom shell through the hinges.
6. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the first electrolysis module and the second electrolysis module comprise a first lead, a second lead and a plurality of titanium polar plates with positive electrodes and negative electrodes, the first lead is suitable for communicating the positive electrodes of the plurality of titanium polar plates, and the second lead is suitable for communicating the negative electrodes of the plurality of titanium polar plates.
7. A collapsible electrolytic disinfection apparatus as claimed in claim 6, wherein: the titanium polar plate comprises a titanium polar plate and is characterized in that titanium screws are arranged on the positive electrode and the negative electrode of the titanium polar plate, the first lead is connected with the positive electrode of the titanium polar plate through the titanium screws, and the second lead is connected with the negative electrode of the titanium polar plate through the titanium screws.
8. A collapsible electrolytic disinfection apparatus as claimed in claim 6, wherein: and a ruthenium iridium coating, an iridium tantalum coating or a platinum coating is arranged on the surface of the titanium polar plate.
9. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: the bottom shell and the shell cover are provided with baffles, the baffles are suitable for separating the first electrolysis module and the second electrolysis module from the outside, and the baffles are provided with a plurality of through holes.
10. A collapsible electrolytic disinfection apparatus as claimed in claim 1, wherein: and the back of the shell cover is provided with a storage battery which is electrically connected with the first electrolysis module and the second electrolysis module.
CN201920991784.7U 2019-06-27 2019-06-27 Foldable electrolytic disinfection device Active CN210873145U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920991784.7U CN210873145U (en) 2019-06-27 2019-06-27 Foldable electrolytic disinfection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920991784.7U CN210873145U (en) 2019-06-27 2019-06-27 Foldable electrolytic disinfection device

Publications (1)

Publication Number Publication Date
CN210873145U true CN210873145U (en) 2020-06-30

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Application Number Title Priority Date Filing Date
CN201920991784.7U Active CN210873145U (en) 2019-06-27 2019-06-27 Foldable electrolytic disinfection device

Country Status (1)

Country Link
CN (1) CN210873145U (en)

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