CN212593028U - Ozone water beauty instrument - Google Patents

Ozone water beauty instrument Download PDF

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Publication number
CN212593028U
CN212593028U CN202020210791.1U CN202020210791U CN212593028U CN 212593028 U CN212593028 U CN 212593028U CN 202020210791 U CN202020210791 U CN 202020210791U CN 212593028 U CN212593028 U CN 212593028U
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pole piece
water
anode
cathode
ozone water
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颜加兵
沈建晶
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Ningbo Longfeng Electronic Technology Co ltd
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Ningbo Longfeng Electronic Technology Co ltd
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Abstract

The utility model discloses an ozone water beauty instrument, which solves the technical problems that the prior ozone water beauty instrument is inconvenient to carry and inconvenient to use, and adopts the technical proposal that the ozone water beauty instrument comprises a shell, the shell comprises an upper shell and a lower shell, a water containing cavity for containing water is formed in the upper shell, an electrolysis device communicated with the water containing cavity is arranged at the bottom of the water containing cavity, and an electricity storage device is arranged in the lower shell and connected with the electrolysis device for providing electric energy for the work of the electrolysis device; the upper shell also comprises an extracting device used for extracting the contained water to the outside, thereby achieving the ozone water beauty instrument which is convenient to carry and more convenient to use ozone water.

Description

Ozone water beauty instrument
Technical Field
The utility model relates to a skin care field, more specifically say, relate to an ozone water beauty instrument.
Background
Ozone water is ozone water having bactericidal activity obtained by dissolving colorless gas ozone (O3) in nature in water by a special technique. Has no influence on natural environment and high safety to human body, and is a biological activation principle for improving autoimmunity.
The ozone water is widely used in medical institutions due to its strong bactericidal power and high safety, and particularly has a good curative effect on diseases which are difficult to be cured radically, such as infection, skin diseases, immune insufficiency, auxiliary treatment of cancer, atopic dermatitis and the like.
Recent studies have shown that ozone water can affect immune cells, thereby improving the immunity and self-healing capacity of the cells. The problem is that the ozone water used for the skin can stimulate the skin, thereby arousing the immunity of the skin and improving the self-healing ability and the immunity of the skin. In addition, beneficial bacteria and harmful bacteria exist on the surface of human skin, and the weak-acid ozone water can remove the harmful bacteria and provide a good growth environment for the beneficial bacteria. The ozone water can improve the skin environment of the user from inside to outside, enables the skin to be regenerated and arouses the vitality of the skin.
Patent No. CN205730925U discloses an ozone water beauty device, which comprises a power base, a body arranged on the power base, and an upper cover detachably mounted on the upper part of the body, wherein a water tank, a control circuit, a mounting seat, and an electrolytic component fixed at the bottom of the water tank are fixed inside the body, the electrolytic component is electrically connected with the control circuit, and when the body is arranged on the power base, the power base is electrically connected with the control circuit to charge the body. However, the ozone water beauty instrument needs to be charged by connecting the power base with the power source, and the two accessories must be carried when the instrument is carried out.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an ozone water beauty instrument which is convenient to carry and more convenient to use ozone water.
The above technical purpose of the present invention can be achieved by the following technical solutions: an ozone water beauty instrument comprises a shell, wherein the shell comprises an upper shell and a lower shell, a water containing cavity for containing water is formed in the upper shell, an electrolysis device communicated with the water containing cavity is arranged at the bottom of the water containing cavity, and an electricity storage device is arranged in the lower shell and connected with the electrolysis device and used for providing electric energy for the operation of the electrolysis device; the upper case further includes an extracting means for extracting the accommodated water to the outside.
Further, the electricity storage device is a storage battery.
Further, the electricity storage device is a rechargeable lithium battery, and a charging port capable of charging the rechargeable lithium battery is arranged on the shell.
Further, the extraction device comprises a pump head arranged at the upper opening end of the upper shell, and an extraction pipe of the pump head extends into the water containing cavity.
Furthermore, the extraction device comprises a spray head arranged at the opening end of the upper shell, and an extraction pipe of the spray head extends into the water containing cavity.
Furthermore, electrolytic device and the lower open end kneck ultrasonic bonding of last casing are being close to the kneck is provided with seal structure, electrolytic device includes the base, seal structure is for setting up at the outlying seal groove of base to and set up the sealing washer in the seal groove.
Furthermore, the outer edge of the lower opening end of the upper shell is provided with a yielding groove, the upper shell is correspondingly provided with an insertion end which can be inserted into the yielding groove, and the outer surfaces of the upper shell and the lower shell are parallel and level.
Furthermore, one side of the lower shell, which is close to the upper shell, is provided with a fixed end face, and the fixed end face is fixedly connected with a base of the electrolysis device.
Furthermore, an accommodating cavity is formed in the base of the electrolysis device, the accommodating cavity is provided with a cathode pole piece and an anode pole piece, the cathode pole piece and the anode pole piece are both flat-shaped, a proton exchange membrane is arranged between the cathode pole piece and the anode pole piece, the electrolysis device further comprises a cathode conductive needle and an anode conductive needle, one end of the cathode conductive needle is contacted with the cathode pole piece, and one end of the anode conductive needle is contacted with the anode pole piece; the electrolytic device further comprises an upper cover arranged at the opening of the accommodating cavity, the upper cover is provided with a water permeable hole, and a fixing frame used for fixing the cathode pole piece, the proton exchange membrane and the anode pole piece is arranged on the inner side of the upper cover.
Further, negative pole conducting pin and positive pole conducting pin all include conducting pin body and warhead, warhead and conducting pin body elastic connection are with butt in the pole piece, negative pole piece and positive pole piece coincide each other from top to bottom, the negative pole piece is located the below, the positive pole piece is located the top, negative pole piece and proton exchange membrane relevant position have been seted up and have been dodged the hole, positive pole conducting pin passes dodge hole and positive pole piece looks butt.
By adopting the technical scheme, the utility model has the advantages of it is following:
1. the multifunctional ozone generator has the advantages that the multifunctional ozone generator is provided with the power storage device, a charging seat and a power plug are not required to be additionally arranged, the number of accessories is reduced, the multifunctional ozone generator is more portable, the ozone generating effect is good, the face can be beautified and cleaned, and the multifunctional ozone generator can be used at home and is more convenient to use in travel;
2. by configuring the rechargeable lithium battery, the rechargeable lithium battery can be recharged, a new battery can be temporarily replaced, and the electric quantity supply is kept all the time;
3. the ozone water extracting device is provided with an extracting device, such as a spray or a pump head, so that a user can simply press the spray head or the pump head to realize the water outlet of the ozone water without pouring, the operation is simplified, and the extraction of the ozone water is more convenient and faster;
4. the outer surfaces of the upper shell and the lower shell are flush, the appearance is attractive, the integrity is good, and the carrying is more convenient;
5. the electrolysis device and the upper shell are welded by ultrasonic, so that the welding speed is high, the welding strength is high, the sealing performance is good, the traditional welding/bonding process is replaced, and the cost is low; the ozone water has oxidability, so that the ultrasonic welding interface is easy to oxidize and corrode, and a sealing device is further arranged, so that the ozone water can be prevented from oxidizing the ultrasonic welding part;
6. the flat cathode pole piece and the flat anode pole piece are arranged, so that the production is more convenient, the utilization rate of materials is high, and the cost is saved;
7. the bullet head can enable the conductive needle to be always in elastic contact with the pole piece, and the phenomenon that the conductive needle cannot work normally due to poor contact is avoided;
8. the avoiding hole is formed in the cathode pole piece or the anode pole piece, and the conducting needle can conveniently penetrate through the avoiding hole to be contacted, so that the structure is simple, the structure is compact, and the assembly is convenient.
Drawings
FIG. 1 is an overall schematic view of an ozone water beauty treatment apparatus;
FIG. 2 is a sectional view of the ozone water beauty treatment apparatus;
FIG. 3 is an enlarged view of portion A of FIG. 2;
FIG. 4 is a schematic view of the entire electrolyzer;
FIG. 5 is a schematic bottom side view of an electrolyzer;
FIG. 6 is a schematic view of the upper cover cooperating with the pole piece;
FIG. 7 is a schematic diagram of a pole piece of the electrolyzer;
FIG. 8 is a schematic view of the other side of the pole piece of the electrolyzer;
FIG. 9 is an exploded view of the pole piece portion of the electrolyzer;
fig. 10 is an exploded view of a conductive pin.
Reference numerals: 1. a housing; 11. an upper housing; 111. a water containing cavity; 112. a spray head; 113. a yielding groove; 114. an upper opening; 115. a lower opening; 12. a lower housing; 121. an insertion end; 122. a fixed end face; 2. an electrolysis device; 21. a cathode plate; 211. a cathode conductive pin; 22. an anode plate; 221. an anode conductive pin; 23. a proton exchange membrane; 24. a base; 241. a stepped structure; 3. a warhead; 31. a concave cavity; 32. an elastic device; 33. a limiting ring; 4. avoiding holes; 5. an upper cover; 51. water passing holes; 52. a bolt; 53. a fixing frame; 54. a bit block; 6. a limiting card; 61. a through hole; 7. an electricity storage device; 71. a charging port; 8. a sealing structure; 81. a seal ring; 82. sealing the groove.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
An ozone water beauty instrument has a water containing cavity 111 for containing water, after the water is put into the cavity, under the action of an electrolytic device 2 of the ozone water beauty instrument, ozone is generated by water ionization, the ozone is dissolved in the water to become ozone water, the weak acidic ozone water can remove harmful bacteria, provide a good growing environment for beneficial bacteria, thus achieving the effects of nursing and cleaning, and having the beauty effect on the skin.
Referring to fig. 1 and 2, the ozone water beauty treatment apparatus includes a housing 1, the housing 1 includes an upper housing 11 and a lower housing 12 in this embodiment, a water containing chamber 111 is formed in the upper housing 11, which may be in a form that a water tank is additionally provided inside the upper housing 11, and in this embodiment, it is preferable that a space inside the upper housing 11 is directly provided as the water containing chamber 111, that is, a manner that the water tank is not provided. The bottom of the upper shell 11 is provided with an electrolysis device 2, and the electrolysis device 2 is communicated with the water containing cavity 111 to obtain water in the water containing cavity 111, so that the water can be electrolyzed to finally obtain ozone water with certain concentration. And the extraction device is arranged at the opening of the upper shell 11, so that the operation of a user can be facilitated, and the ozone water can be conveniently obtained without pouring. In the lower housing 12, an electrical storage device 7 is provided, the electrical storage device 7 being adapted to be connected to the electrolysis device 2 for providing electrical energy to the operation of the electrolysis device 2.
Specifically, the extracting device may be preferably a pump head or an atomizing head 112, and in the case of the pump head, the extracting tube of the pump head or the atomizing head 112 extends into the water containing chamber 111, and when the user presses the pump head, the ozone water can be extruded from the outlet of the pump head. Similarly, in the case of the spray head 112, after the user presses the spray head 112, the ozone water is sprayed in the form of a spray by the spray head 112, and the principle of the pump head and the spray head 112 will not be described in detail herein. In addition, a dust cover is provided on the outside of the spray head 112, so that dust can be prevented from entering the spray head when the spray head is not used.
The electricity storage device 7 can be a storage battery, or a rechargeable lithium battery, a rechargeable lithium battery is preferred in the middle of the embodiment, a charging port 71 which can be connected for charging the rechargeable lithium battery is arranged on the shell 1, the charging port 71 can be arranged on the lower shell 12 and the upper shell 11, the specific position is not limited, only convenience is provided for charging a user, the rechargeable lithium battery can be repeatedly charged through configuration, a new battery can be temporarily replaced, the electric quantity is constantly supplied, a charging seat and a power plug are not required to be additionally arranged, the number of accessories is reduced, and the portable lithium battery is realized.
Referring to fig. 5 to 7, the electrolysis apparatus 2 includes a base 24, the base 24 is formed with an accommodating cavity, the cathode plate 21 and the anode plate 22 are placed in the accommodating cavity, a proton exchange membrane 23 is further disposed between the cathode plate 21 and the anode plate 22, the cathode plate 21, the anode plate 22 and the proton exchange membrane 23 are three independent pieces and are stacked, wherein the cathode plate 21 and the anode plate 22 are respectively connected to a cathode conductive needle 211 and an anode missile needle, the cathode plate 21 and the proton exchange membrane 23 are all separately disposed, and the cathode plate 21 and the anode plate 22 are both flat, so that the material is saved, the utilization rate is improved, and the assembly is simple. The flat plate shape may be a square, a rectangle, a circle, or the like, and the specific other shapes are not limited in this embodiment, but only in the conventional design of those skilled in the art.
The positive pole conducting needle 221 and the negative pole conducting needle 211 both adopt pin needles, one end of the positive pole conducting needle 221 and one end of the negative pole conducting needle 211 are respectively abutted against the positive pole piece 22 and the negative pole piece 21, wherein the contact mode is selected to be elastic contact in the embodiment, the bullet 3 is arranged on the position where the positive pole conducting needle 221 and the negative pole conducting needle 211 are contacted with the positive pole piece 22 and the negative pole piece 21, the material of the bullet 3 is also pin material, under the action of the bullet 3, the positive pole conducting needle 221 and the negative pole conducting needle 211 can be always contacted with the positive pole piece 22 and the negative pole piece 21, and therefore the abnormal work caused by poor contact is avoided.
Referring to fig. 10, specifically, a cavity 31 is provided at one end of the cathode conductive pin 211 and the anode conductive pin 221, the bullet 3 is disposed in the cavity 31, and an elastic device 32 is provided between the bullet 3 and the bottom wall of the cavity 31, wherein the elastic device 32 may be a spring or an elastic rubber member, and the like, and can give an outward elastic force to the bullet 3. Under the action of the elastic device 32, the warhead 3 can be always abutted against the anode pole piece 22 or the cathode pole piece 21, so that the working stability and the service life of the electrolysis device 2 are maintained.
The part of the bullet 3 extending into the cavity 31 can be provided with a limit ring 33 outwards in the circumferential direction, and the size of the limit ring 33 is larger than the opening size of the cavity 31, so that the bullet 3 can be prevented from falling off accidentally and can be kept in the cavity 31 all the time.
Referring to fig. 9, the cathode plate 21 and the anode plate 22 are connected to the conductive needle in a specific manner, in which the anode plate 22 and the cathode plate 21 are both block-shaped and preferably have the same size and shape, so that they are stacked one on top of the other, and of course, the proton exchange membrane 23 is disposed between the anode plate 22 and the cathode plate 21. When cathode pole piece 21 is located the below, anode pole piece 22 is located the top, and negative pole conducting needle 211 is from the vertical setting in below to the top, has warhead 3's one end and cathode pole piece 21 looks elasticity butt, has still seted up on cathode pole piece 21 and has dodged hole 4, and positive pole conducting needle 221 is from the vertical setting in below to the top, dodges hole 4 and can supply positive pole conducting needle 221 to pass to positive pole conducting needle 221 can with the anode pole piece 22 looks elastic contact who is located the top. It should be noted that, the avoiding hole 4 is also disposed at the corresponding position of the proton exchange membrane 23, and the anode conductive pin 221 can pass through the avoiding hole.
As another embodiment, when the anode plate 22 is located below, the cathode plate 21 is located above, the anode conductive pin is vertically disposed from below to above, one end having the bullet 3 elastically abuts against the cathode plate 21, the cathode plate 21 is further provided with the avoiding hole 4, the cathode conductive pin 211 is vertically disposed from below to above, the avoiding hole 4 can be penetrated by the cathode conductive pin 211, and thus the cathode conductive pin can elastically contact with the cathode plate 21 located above. It should be noted that, the avoiding hole 4 is also disposed at the corresponding position of the proton exchange membrane 23, and the anode conductive pin 221 can pass through the avoiding hole.
The mutual overlapping mode is simple and convenient to assemble, high in material utilization rate and high in production efficiency on the basis that the blocky cathode pole piece 21 and the blocky anode pole piece 22 are convenient to process.
Referring to fig. 2 and 5, the other ends of the anode conductive pin 221 and the cathode conductive pin 211 penetrate to the outside of the base 24 for connecting with a low voltage power supply, so that the low voltage power supply can provide a safe and stable voltage to perform ozone electrolysis. The user uses and does not have high pressure hidden danger, and factor of safety is high.
Electrically conductive needle 221 of positive pole and the electrically conductive needle 211 of negative pole are injection moulding as an organic whole with base 24, and integrative injection moulding just carries out integrative injection moulding when the mould is moulded plastics promptly to avoided the secondary operation in later stage, technology is simpler, and for current fixed mode such as glue of beating, the leakproofness behind the integrative injection moulding is better, and the effectual emergence of avoiding the condition such as leaking can take to experience for more use of consumer and feel.
Referring to fig. 7 to 9, a limiting card 6 for limiting the bullet 3 is further arranged in the electrolytic chamber, two through holes 61 are formed in the limiting card 6, the size of each through hole 61 is slightly larger than the size of the cross section of the bullet 3, the limiting card 6 is fixed in the electrolytic chamber, the limiting card can be fixedly clamped with the inner side of the upper cover 5 above the limiting card in a fixing mode, or can be welded with ultrasonic waves, or can be fixed with a pole piece close to the side above the limiting card, after the limiting card 6 is arranged, the cathode conductive pin 211 and the anode conductive pin 221 can keep more stable positions, and therefore the conductive work is prevented from being influenced by the position deviation.
Referring to fig. 4, an upper cover 5 is further disposed at the opening of the base 24, a plurality of water holes 51 are preferably disposed on the upper cover 5, the water holes 51 are disposed to enable water in the water containing cavity 111 to fully contact with the electrolysis device 2, a plug 52 is disposed at the lower end of the upper cover 5, a socket is disposed on the base 24, and the plug 52 and the socket are mutually matched to realize stable and firm matching and facilitate assembly.
Referring to fig. 6, a fixing frame 53 is provided on one side of the upper cover 5 close to the base 24, the shape of the fixing frame 53 matches the shape of the anode plate 22 and the cathode plate 21, and the retaining blocks 54 are provided at four corners of the fixing frame 53, so that the cathode plate 21, the proton exchange membrane 23 and the anode plate 22 are stacked and then clamped into the fixing frame 53 defined by the retaining blocks 54, thereby achieving stable fixing.
Referring to fig. 2 and 3, the electrolyzer 2 is fixed at the lower opening 115 of the upper housing 11, specifically, a stepped structure 241 is formed at the bottom of the base 24 of the electrolyzer 2, the stepped structure 241 is combined with the end surface of the lower opening 115, and the combined position is fixed by ultrasonic welding, and the ultrasonic welding has the advantages of high welding speed, high welding strength and good sealing performance, replaces the traditional welding/bonding process, and is low in cost.
Furthermore, the ozone water has oxidation property, so that the ultrasonic welding interface is easy to be oxidized and corroded, and once the interface is oxidized and corroded, the water leakage condition is caused, therefore, the sealing structure 8 is further arranged between the base 24 of the electrolysis device 2 and the inner wall of the upper shell 11, the ozone water can be prevented from oxidizing the ultrasonic welding part, and the sealing is firmer.
The seal structure 8 is a seal groove 82 provided on the outer periphery of the base 24 and a seal ring 81 provided in the seal groove 82, and may be a seal ring 81 provided in the seal groove 82 on the inner wall of the upper case 11, and the shapes of the seal ring 81 and the seal groove 82 are based on the overall shape of the base 24, and if the outer shape of the base 24 is cylindrical, the seal ring 81 is annular, the seal groove 82 is annular, and if the outer shape of the base 24 is square-column, the seal ring 81 is square-column.
Referring to fig. 3, the outer edge of the lower opening 115 of the upper housing 11 is provided with a relief groove 113, the lower housing 12 is correspondingly provided with an insertion end 121 capable of being inserted into the relief groove 113, in this embodiment, the relief groove 113 is formed by a lacking edge of the outer edge of the lower opening 115, the insertion end 121 is also formed as an annular protrusion extending from the lower housing 12 to the upper housing 11, of course, other formation modes of the insertion end 121 and the relief groove 113 may also be adopted, no redundant description is given in this embodiment, and by mutual matching of the insertion end 121 and the relief groove 113, simple primary fixing of the upper housing 11 and the lower housing 12 may be achieved.
After the upper housing 11 and the lower housing 12 are initially fixed, the outer surfaces of the upper housing 11 and the lower housing 12 are flush with each other, and the upper housing 11 and the lower housing 12 are preferably in a circle center or a pseudo-circle shape, but may also be in other shapes, and the flush outer surfaces of the upper housing 11 and the lower housing 12 means that the shapes and the sizes of the upper housing 11 and the lower housing 12 are substantially the same, so as to maintain the overall shape to be beautiful and elegant, and be more convenient to carry, and certainly may also be in a shape change that is not changed as much as the overall shape change at some parts of the upper housing 11 and the lower housing 12, such as gradual change or arrangement of a handle.
A fixing end surface 122 is provided in the lower case 12, the fixing end surface 122 is in close contact with the bottom of the base 24 of the electrolysis apparatus 2, and after the upper case 11 and the electrolysis apparatus 2 are fixed by ultrasonic welding, the fixing end surface 122 of the lower case 12 is fixed to the base 24 of the electrolysis apparatus 2, thereby fixing the upper case 11 and the lower case 12, and preferably, the fixing end surface 122 is fixed to the base 24 by a screw.
It should be noted that directional terms, such as "upper", "lower", "front", "rear", "left", "right", and the like, used in the embodiments are only directions referring to the drawings, and are not intended to limit the scope of the present invention. In addition, unless steps are specifically described or must occur in sequence, the order of the steps is not limited to that listed above and may be changed or rearranged as desired by the desired design. The embodiments described above may be mixed and matched with each other or with other embodiments based on design and reliability considerations, i.e., technical features in different embodiments may be freely combined to form further embodiments.
The word "comprising" does not exclude the presence of elements or steps not listed in a claim. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The invention may be implemented by means of hardware comprising several distinct elements, and by means of a suitably programmed computer. In the unit claims enumerating several means, several of these means may be embodied by one and the same item of hardware.
Furthermore, the use of ordinal numbers such as "first," "second," "third," etc., in the specification and claims to modify a corresponding element is not intended to imply any ordinal numbers for the element, nor the order in which an element is sequenced or methods of manufacture, but are used to distinguish one element having a certain name from another element having a same name.
It should be noted that throughout the drawings, like elements are represented by like or similar reference numerals. In the following description, some specific embodiments are for illustrative purposes only and should not be construed as limiting the present invention in any way, but merely as exemplifications of embodiments of the invention. Conventional structures or constructions will be omitted when they may obscure the understanding of the present invention. It should be noted that the shapes and sizes of the respective components in the drawings do not reflect actual sizes and proportions, but merely illustrate the contents of the embodiments of the present invention.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.

Claims (10)

1. An ozone water beauty instrument is characterized by comprising a shell (1), wherein the shell (1) comprises an upper shell (11) and a lower shell (12), a water containing cavity (111) for containing water is formed in the upper shell (11), an electrolysis device (2) communicated with the water containing cavity (111) is arranged at the bottom of the water containing cavity (111), an electric storage device (7) is arranged in the lower shell (12), and the electric storage device (7) is connected with the electrolysis device (2) and is used for providing electric energy for the operation of the electrolysis device (2); the upper casing (11) further comprises extraction means for extracting the contained water to the outside.
2. The ozonated water cosmetic apparatus according to claim 1, wherein the electric storage device (7) is a storage battery.
3. The ozone water beauty treatment apparatus according to claim 1, wherein the electricity storage device (7) is a rechargeable lithium battery, and the housing (1) is provided with a charging port (71) for charging the rechargeable lithium battery.
4. The ozonated water cosmetic apparatus according to claim 1, wherein the extraction device includes a pump head provided at an upper open (114) end of the upper housing (11), an extraction pipe of the pump head extending into the water containing chamber (111).
5. The ozonated water cosmetic apparatus according to claim 1, wherein the extraction device comprises a spray head (112) provided at an open end of the upper housing (11), and an extraction pipe of the spray head (112) extends into the water containing chamber (111).
6. The ozonated water cosmetic instrument of claim 1, wherein the electrolysis device (2) is ultrasonically welded to an interface of the lower opening (115) of the upper housing (11), a sealing structure (8) is disposed near the interface, the electrolysis device (2) comprises a base (24), and the sealing structure (8) is a sealing groove (82) disposed at the periphery of the base (24) and a sealing ring (81) disposed in the sealing groove (82).
7. The ozone water beauty instrument according to claim 6, wherein the outer edge of the lower opening (115) of the upper housing (11) is provided with a relief groove (113), the upper housing (11) is correspondingly provided with an insertion end (121) capable of being inserted into the relief groove (113), and the outer surfaces of the upper housing (11) and the lower housing (12) are flush with each other.
8. The ozonated water cosmetic apparatus according to claim 1, wherein a fixing end surface (122) is provided on a side of the lower case (12) adjacent to the upper case (11), and the fixing end surface (122) is fixedly connected to a base (24) of the electrolysis device (2).
9. The ozone water beauty instrument of claim 7, wherein a containing cavity is formed in the base (24) of the electrolysis device (2), the containing cavity is provided with a cathode pole piece (21) and an anode pole piece (22), the cathode pole piece (21) and the anode pole piece (22) are both in a flat plate shape, a proton exchange membrane (23) is arranged between the cathode pole piece (21) and the anode pole piece (22), the electrolysis device (2) further comprises a cathode conductive needle (211) and an anode conductive needle (221), one end of the cathode conductive needle (211) is in contact with the cathode pole piece (21), and one end of the anode conductive needle (221) is in contact with the anode pole piece (22); the electrolysis device (2) further comprises an upper cover (5) arranged at the opening of the accommodating cavity, the upper cover (5) is provided with a water permeable hole, and a fixing frame (53) used for fixing the cathode pole piece (21), the proton exchange membrane (23) and the anode pole piece (22) is arranged on the inner side of the upper cover (5).
10. The ozone water beauty instrument of claim 9, wherein the cathode conductive needle (211) and the anode conductive needle (221) each comprise a conductive needle body and a bullet (3), the bullet (3) and the conductive needle body are elastically connected to abut against the pole pieces, the cathode pole piece (21) and the anode pole piece (22) are vertically overlapped with each other, the cathode pole piece (21) is located below, the anode pole piece (22) is located above, the corresponding positions of the cathode pole piece (21) and the proton exchange membrane (23) are provided with an avoiding hole (4), and the anode conductive needle (221) penetrates through the avoiding hole (4) to abut against the anode pole piece (22).
CN202020210791.1U 2020-02-25 2020-02-25 Ozone water beauty instrument Active CN212593028U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020210791.1U CN212593028U (en) 2020-02-25 2020-02-25 Ozone water beauty instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020210791.1U CN212593028U (en) 2020-02-25 2020-02-25 Ozone water beauty instrument

Publications (1)

Publication Number Publication Date
CN212593028U true CN212593028U (en) 2021-02-26

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Application Number Title Priority Date Filing Date
CN202020210791.1U Active CN212593028U (en) 2020-02-25 2020-02-25 Ozone water beauty instrument

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Country Link
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