Salting device, degerming and atomizing device and split pedestal pan

By designing a salt-adding device including a salt-adding tank and a salt-adding tank, the problems of low electrolytic water concentration and unstable solid salt storage in the prior art are solved, and the stable controllable salt quantity and the improvement of sterilization effect are achieved, and the user experience is improved.

CN222862443UActive Publication Date: 2025-05-13FOSHAN GAOMING ANHUA CERAMIC SANITARY WARE +1
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Patent Information

Application Number
CN202421646252.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-13
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

In the prior art, overcurrent electrolytic toilets have low residual chlorine content in tap water and short interaction time between the electrolytic module and water, resulting in low electrolytic water concentration and poor sterilization effect. At the same time, solid salt storage has the problem of moisture and lumps. The cost of liquid salt is high, and users need to manually distribute salt water to reduce product experience.

Method used

A salt-adding device is designed, including a salt-adding box and a salt-water tank. It is connected to a fixedly installed salt-adding box through a detachable salt-adding box. It uses a boss and an opening and closure to achieve automatic addition and storage of salt, avoiding moisture from solid salt, and electrolysis is performed by automatically pumping the salt water to reduce user operations.

Benefits of technology

The salt quantity is stable and controllable, the electrolytic concentration is stable, the sterilization effect is improved, the user operation is reduced, the product experience is improved, and the risk of solid salt storage is reduced.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222862443U_ABST
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Abstract

The utility model discloses a salt adding device, degerming atomization device and split toilet, salt adding device includes salt adding box and brine tank, salt adding box is detachably installed above brine tank, the salt adding box is provided with salt adding mouth, the bottom of salt adding box is provided with salt falling mouth, the salt falling mouth is provided with movable open-close plug, the open-close plug is provided with the salt adding mouth, the salt adding mouth is provided with the salt adding mouth, and the salt adding mouth is provided with the degerming atomization device. A boss is arranged in the saline water tank and located below the opening and closing plug, when the salt adding tank is assembled on the saline water tank, the opening and closing plug can be jacked up by the boss to open the salt falling opening, when the salt adding tank is separated from the saline water tank, the opening and closing plug can freely fall to block the salt falling opening, and a liquid outlet is formed in the saline water tank. The salt adding box is designed to be capable of being drawn and taken out, so that a user can add salt conveniently, store salt in a liquid form and prevent solid salt from being affected with damp, the salt adding amount is stable and controllable during electrolysis each time, the user can add the salt into a product in the form of solid salt, dissolution and storage are automatically carried out in the product, and salt water can be automatically extracted when disinfectant is prepared through electrolysis; the user operation is reduced, and the user experience is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of toilets, in particular to a salt adding device, a sterilization atomizing device and a split toilet. Background Art

[0002] There are toilets on the market that use electrolyzed water for sterilization. One of the sterilization methods is over-flow electrolysis, which uses a built-in electrolysis module. The toilet water is passed into the electrolysis module for electrolysis, and then the electrolyzed water is sprayed onto the inner wall of the toilet through a spray device. However, due to the low residual chlorine content of tap water and the short interaction time between tap water and the electrolysis module, the over-flow electrolysis method produces low concentration of electrolyzed water and poor sterilization effect. Therefore, the existing technology increases the chlorine content of electrolyzed water by adding salt, thereby increasing the concentration of electrolyzed water. However, the salt addition scheme has the following problems: (1) If the salt is stored in the toilet in solid form and automatically added to prepare electrolyzed water when needed, the solid salt may become damp and clump, affecting the control of the amount of salt added to the electrolysis device, thereby affecting the stability of the electrolysis concentration; (2) Salt is a raw material for electrolysis and a consumable material for the product. If it is provided to users in the form of liquid brine, the cost of packaging and transportation of brine will be higher than that of solid salt; (3) If solid salt is provided to users and users are required to manually prepare the brine, the user's product experience will be reduced. Utility Model Content

[0003] The utility model aims to solve one of the above-mentioned technical problems in the related art at least to a certain extent. To this end, the utility model proposes a salt adding device.

[0004] To achieve the above purpose, the technical solution of the utility model is as follows:

[0005] The utility model also provides a sterilization atomization device with the above-mentioned salt adding device.

[0006] The utility model also provides a split toilet with the above-mentioned salt adding device or sterilizing atomizing device.

[0007] According to the first aspect of the present invention, the salt-adding device comprises a salt-adding box and a brine tank, wherein the salt-adding box is detachably mounted above the brine tank, a salt-adding port is formed on the salt-adding box, a salt-dropping port is formed on the bottom of the salt-adding box, a movable opening and closing plug is provided on the salt-dropping port, a boss is provided in the brine tank and the boss is located below the opening and closing plug, when the salt-adding box is assembled on the brine tank, the opening and closing plug can be lifted up by the boss to open the salt-dropping port, and when the salt-adding box is separated from the brine tank, the opening and closing plug can fall freely to block the salt-dropping port, and a liquid outlet is formed on the brine tank.

[0008] The salt adding device according to the embodiment of the utility model has at least the following beneficial effects:

[0009] 1. The salt adding box of the utility model is designed to be pullable and taken out to facilitate the user to add salt. The brine tank is used to hold solid salt or liquid brine from the salt adding box. The brine tank serves as a container for dissolving salt and storing brine, and also as a base of the salt adding box. The brine tank is fixedly arranged, and the liquid outlet pipe is connected to the brine tank, so that the salt adding box can be taken out conveniently without being affected by the pipe.

[0010] 2. When the salt adding box is taken out, the opening and closing plug will block the salt drop port under the action of gravity, so that the salt can be temporarily contained in the salt adding box. When the salt adding box is installed on the brine tank, the boss in the brine tank pushes the opening and closing plug to move upward, so that the salt drop port is opened, and the salt (or brine) in the salt adding box can fall into the brine tank for storage. The user can add solid salt or liquid brine to the salt adding box at one time for the product to run for a period of time, and store it in the brine tank in liquid form to prevent the solid salt from getting damp and agglomerating, which affects the control of the amount of salt added to the electrolytic atomization device. When the product needs to be sterilized, pump a certain amount of brine from the brine tank to the electrolysis device for direct electrolysis, or dilute it with water in the electrolysis device for electrolysis, so as to obtain disinfectant water for sterilization.

[0011] 3. When the product needs to be electrolyzed to prepare disinfectant, the utility model automatically pumps a fixed amount of brine from the brine tank, and the user does not need to add salt every time electrolysis is performed. Compared with ordinary solid salt storage solutions, the purpose of the utility model is to store salt in liquid form to prevent the solid salt from getting damp, thereby achieving a stable and controllable amount of salt added during each electrolysis, ensuring a stable electrolysis concentration. It also allows users to add solid salt to the product, which will automatically dissolve and store it inside the product. When electrolysis is used to prepare disinfectant, brine can be automatically extracted, which can reduce user operations and improve user experience.

[0012] According to some embodiments of the utility model, the salt adding box is provided with a protruding positioning plate, and the brine tank is provided with a guide groove that can cooperate with the positioning plate, or the brine tank is provided with a protruding positioning plate, and the salt adding box is provided with a guide groove that can cooperate with the positioning plate.

[0013] According to some embodiments of the present invention, the positioning plate and the guide groove are both arranged horizontally, and the positioning plate can be horizontally inserted into the guide groove from the side of the guide groove.

[0014] According to some embodiments of the utility model, the top of the boss has an outwardly convex arc surface, the lower end of the open and close plug exceeds the bottom surface of the salt adding box, and when the positioning plate is horizontally inserted from the side of the guide groove, the lower end of the open and close plug can contact the arc surface and climb along the arc surface.

[0015] According to some embodiments of the utility model, the opening and closing plug includes a movable rod and a sealing gasket, the movable rod is inserted into the sealing gasket, and the upper end of the movable rod is in a cone shape that is wider at the bottom and narrower at the top.

[0016] According to some embodiments of the present invention, the lower end of the movable rod is spherical, arc-shaped or inclined.

[0017] According to some embodiments of the present invention, a water inlet pipe is further included, and a water outlet of the water inlet pipe is located above the salt adding port.

[0018] According to some embodiments of the utility model, a plurality of vertically arranged guide ribs are provided at the bottom of the salt adding box, and the guide ribs are distributed at intervals along the edge of the salt adding port.

[0019] According to some embodiments of the present invention, the bottom of the salt adding box is funnel-shaped.

[0020] According to some embodiments of the present utility model, the salt adding port is funnel-shaped.

[0021] The sterilization atomization device according to the second aspect of the embodiment of the utility model includes the salt adding device, an atomizing water tank, an atomizer and an electrolysis module, the atomizer and the electrolysis module are arranged in the atomizing water tank, a salt water inlet is opened on the atomizing water tank, the salt water inlet is connected with the liquid outlet through a pipeline, a mist outlet is opened on the top wall of the atomizing water tank, an annular wall surface is fixedly provided in the atomizing water tank, the annular wall surface is wound to form an atomizing area, the atomizer is located in the atomizing area or below the atomizing area, the mist outlet is located above the atomizing area, the area in the atomizing water tank and outside the atomizing area is a water storage area, and the atomizing area is connected with the water storage area.

[0022] The sterilization atomization device according to the embodiment of the utility model has at least the following beneficial effects:

[0023] 1. The sterilization atomization device of the utility model integrates the functions of atomization and electrolysis. The salt water is electrolyzed into a disinfectant and then atomized into a water mist with a sterilization effect through an atomizer. The water mist diffusely fills the toilet bowl, and a disinfectant water film is formed on the inner wall of the toilet bowl without dead corners. The disinfectant adheres to the inner wall of the toilet bowl, and the sterilization effect on the inner wall of the toilet bowl is obvious.

[0024] 2. The atomizing area is formed by the annular wall in the atomizing water tank. The annular wall prevents the water mist from escaping everywhere in the atomizing water tank, making the formed mist more concentrated and the atomizing amount larger. The atomizing area is connected with the water storage area to ensure that the water level in the atomizing area can be replenished.

[0025] According to some embodiments of the utility model, a water pump is provided on the pipeline connecting the salt water inlet and the liquid outlet.

[0026] According to some embodiments of the utility model, the annular wall is vertically arranged, and the annular wall extends downward from the top wall of the atomizing water tank to the bottom of the atomizing water tank, the atomizer is located in the atomizing area, and an elongated through groove for connecting the atomizing area and the water storage area is opened on the annular wall, and the elongated through groove is vertically arranged.

[0027] According to some embodiments of the utility model, the atomization device includes a fan, which is installed outside the atomization water tank. An air inlet is opened on the side wall or the top wall of the atomization water tank, and the air outlet of the fan is connected to the water storage area through the air inlet.

[0028] According to some embodiments of the utility model, the air inlet is located at the upper end of the side wall of the atomizing water tank, and an air guide baffle is fixedly provided in the water storage area, and the air guide baffle extends downward from the top wall of the atomizing water tank. The air guide baffle is located near the air inlet and forms an air flow channel with the side wall of the atomizing water tank opening downward, and the air flow channel is connected to the air outlet of the fan through the air inlet.

[0029] According to some embodiments of the present invention, the mist outlet is configured as a stepped hole or a tapered hole that is wider at the bottom and narrower at the top.

[0030] According to some embodiments of the present invention, the atomizer is an ultrasonic atomizer or a microporous atomizer.

[0031] According to some embodiments of the utility model, an atomization channel is included, and the atomization channel is arranged outside the atomization water tank. One end of the atomization channel is connected to the toilet bowl of the toilet, and the other end is connected to the mist outlet.

[0032] According to some embodiments of the utility model, a telescopic mechanism is included, the atomization channel is a hose, one end of the hose is connected to the telescopic mechanism, and the telescopic mechanism is used to drive the hose to move closer to or away from the toilet bowl.

[0033] The split toilet according to the third aspect of the present utility model includes the salt adding device or the sterilization atomization device.

[0034] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0036] Figure 1This is the overall structural diagram of the sterilization atomization device of the utility model;

[0037] Figure 2 This is a diagram of the removal state of the salt adding box of the utility model (opening and closing the plug to block the salt drop outlet);

[0038] Figure 3 This is a diagram of the installation state of the salt adding box of the utility model (the opening and closing plug is lifted up by the boss to open the salt dropping port);

[0039] Figure 4 It is a side sectional view of the salt adding device of the utility model;

[0040] Figure 5 It is the internal structure diagram of the salt adding box of the utility model;

[0041] Figure 6 This is a schematic diagram of the installation of the sterilization atomization device of the utility model in a toilet;

[0042] Figure 7 This is the overall structural diagram of the atomizing device of the utility model;

[0043] Figure 8 It is an exploded view of the atomizing device of the utility model;

[0044] Fig. 9 It is a cross-sectional view of the atomizing device of the utility model;

[0045] Fig.10 It is a structural schematic diagram of the annular wall surface of the utility model;

[0046] Fig.11 This is a schematic diagram of the first installation of the atomization channel of the utility model in a toilet;

[0047] Fig.12 This is a second installation diagram of the atomization channel of the utility model in a toilet.

[0048] : Illustration symbols: atomizing water tank 100, mist outlet 110, air inlet 120, atomizer 200, annular wall 300, atomizing area 310, water storage area 320, elongated through groove 330, fan 400, air guide baffle 500, air flow channel 510, electrolysis module 600, atomizing channel 700, toilet bowl 800, telescopic mechanism 900, second water inlet valve 1000, salt adding box 1100, salt adding port 1110, salt drop port 1120, opening and closing plug 1130, movable rod 1131, sealing gasket 1132, positioning plate 1140, guide rib 1150, brine tank 1200, boss 1210, liquid outlet 1220, guide groove 1230, water inlet pipe 1300, first water inlet valve 1310, water pump 1400. DETAILED DESCRIPTION

[0049] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention.

[0050] Reference Figure 1-6 A salt adding device comprises a salt adding box 1100 and a brine tank 1200, wherein the salt adding box 1100 is detachably mounted above the brine tank 1200, a salt adding port 1110 is formed on the salt adding box 1100, a salt dropping port 1120 is formed at the bottom of the salt adding box 1100, the salt dropping port 1120 is communicated with the brine tank 1200, a movable opening and closing plug 1130 is formed on the salt dropping port 1120, a boss 1210 is formed in the brine tank 1200 and the boss 1210 is located below the opening and closing plug 1130, when the salt adding box 1100 is assembled on the brine tank 1200, the opening and closing plug 1130 can be lifted up by the boss 1210 to open the salt dropping port 1120, when the salt adding box 1100 is separated from the brine tank 1200, the opening and closing plug 1130 can fall freely to block the salt dropping port 1120, and a liquid outlet 1220 is formed on the brine tank 1200.

[0051] Working principle: During the salt adding process, the user can manually draw out the salt adding box 1100, pour in solid salt or salt water, and then push the salt adding box 1100 back into the installation position at the bottom of the toilet ceramic body. Specifically, when the salt adding box 1100 is taken out, the opening and closing plug 1130 will block the salt drop opening 1120 under the action of gravity, so that the salt can be temporarily contained in the salt adding box 1100 (such as Figure 2 When the salt adding box 1100 is installed on the salt water box 1200, the boss 1210 in the salt water box 1200 pushes the opening and closing plug 1130 to move upward, so that the salt dropping port 1120 is opened (as shown in FIG. Figure 3 As shown in FIG. 1 ), the salt (or brine) in the salt adding tank 1100 can be dropped into the brine tank 1200 for storage. The user can add solid salt or liquid brine to the salt adding tank 1100 for the product to run for a period of time at one time, and store it in the brine tank 1200 in liquid form to prevent the solid salt from getting damp and agglomerating, thereby affecting the control of the amount of salt added to the electrolytic atomization device.

[0052] In some embodiments of the present invention, referring to Figure 4The salt adding box 1100 is provided with a protruding positioning plate 1140, and the salt water tank 1200 is provided with a guide groove 1230 that can cooperate with the positioning plate 1140, or the salt water tank 1200 is provided with a protruding positioning plate 1140, and the salt adding box 1100 is provided with a guide groove 1230 that can cooperate with the positioning plate 1140. The positioning plate 1140 and the guide groove 1230 serve as a guide structure for the salt adding box 1100 to be assembled on the salt water tank 1200, which facilitates the extraction and installation of the salt adding box 1100.

[0053] In some embodiments of the present invention, the positioning plate 1140 and the guide groove 1230 are both arranged horizontally, and the positioning plate 1140 can be horizontally inserted into the guide groove 1230 from the side of the guide groove 1230. The horizontal guide structure guides the salt adding box 1100 to be taken out along the side direction of the toilet.

[0054] In some embodiments of the utility model, the top of the boss 1210 has an outwardly convex arc surface, the lower end of the open and close plug 1130 exceeds the bottom surface of the salt adding box 1100, and when the positioning plate 1140 is horizontally inserted from the side of the guide groove 1230, the lower end of the open and close plug 1130 can contact the arc surface and climb along the arc surface.

[0055] In some embodiments of the utility model, the opening and closing plug 1130 includes a movable rod 1131 and a sealing gasket 1132. The movable rod 1131 is inserted into the sealing gasket 1132, and the upper end of the movable rod 1131 is tapered, which is wide at the bottom and narrow at the top. The movable rod 1131 is provided with an upper and lower clamping position, which is used to clamp the sealing gasket 1132 in the middle, ensuring that the movable rod 1131 can synchronously drive the sealing gasket 1132 to move when it moves up and down. When adding salt to the salt adding box 1100, the gravity of the salt can further compress the sealing gasket 1132, so that the salt can be stored in the salt box. The upper end of the movable rod 1131 is designed to be tapered to reduce the resistance of the movable rod 1131 to push the salt pile and move upward.

[0056] In some embodiments of the present invention, the lower end of the movable rod 1131 is spherical, arc-shaped or inclined. The lower end of the movable rod 1131 is in point contact or line contact with the boss 1210, in order to reduce the sense of jamming when the salt adding box 1100 pushes the salt water box 1200.

[0057] In some embodiments of the utility model, a water inlet pipe 1300 is further included, and a water outlet of the water inlet pipe 1300 is located above the salt adding port 1110. Furthermore, a first water inlet valve 1310 is provided on the water inlet pipe 1300. After the salt adding tank 1100 is assembled on the salt water tank 1200, the water outlet of the water inlet pipe 1300 is aligned with the salt adding port 1110, and water is added into the salt adding tank 1100 through the salt adding port 1110 to dissolve the solid salt into liquid salt water, and then enter the salt water tank 1200 through the salt drop port 1120.

[0058] In some embodiments of the present invention, referring to Figure 5 A plurality of vertical guide ribs 1150 are provided at the bottom of the salt adding box 1100, and the guide ribs 1150 are distributed along the edge of the salt adding port 1110. The guide ribs 1150 prevent the sealing gasket 1132 from deviating in the horizontal direction and affecting the sealing effect.

[0059] In some embodiments of the present invention, the bottom of the salt adding box 1100 is funnel-shaped. The bottom of the salt adding box 1100 is designed to be funnel-shaped to facilitate the salt or brine to fall into the brine tank 1200.

[0060] In some embodiments of the present invention, the salt adding port 1110 is funnel-shaped, with a wide opening at the top and a narrow opening at the bottom, so as to facilitate pouring in solid salt or liquid.

[0061] Reference Figure 7-10 A sterilization atomization device includes a salt adding device, an atomizing water tank 100, an atomizer 200 and an electrolysis module 600. The atomizer 200 and the electrolysis module 600 are arranged in the atomizing water tank 100. A salt water inlet is opened on the atomizing water tank 100, and the salt water inlet is connected to a liquid outlet 1220 through a pipeline. A mist outlet 110 is opened on the top wall of the atomizing water tank 100. An annular wall surface 300 is fixedly provided in the atomizing water tank 100, and the annular wall surface 300 is wound to form an atomizing area 310. The atomizer 200 is located in the atomizing area 310 or below the atomizing area 310, so that the water mist generated by the atomizer 200 is mainly gathered in the atomizing area 310. The mist outlet 110 is located above the atomizing area 310. The area in the atomizing water tank 100 and outside the atomizing area 310 is a water storage area 320, and the atomizing area 310 is connected to the water storage area 320.

[0062] Working principle: When sterilization is required, the brine in the brine tank 1200 is pumped into the atomizing water tank 100, and the electrolysis module 600 is started. The electrolysis module 600 includes at least two electrode sheets. When the electrode sheets are energized, they can electrolyze the chloride ions in the water into oxidizing hypochlorite ions, thereby electrolyzing the brine in the atomizing water tank 100 into a disinfectant with a sterilizing effect; the atomizer 200 is in direct or indirect contact with the disinfectant in the atomizing water tank 100, and the atomizer 200 can throw the disinfectant in the atomizing water tank 100 into the air to form water mist, which floats in the air. The water mist will only flow upward under the obstruction of the annular wall 300 and will not diffuse to other places in the atomizing water tank 100. The water mist flows upward and escapes from the mist outlet 110, and then reaches the toilet bowl 800 of the toilet for sterilization.

[0063] In some embodiments of the present invention, a water pump 1400 is provided on the pipe connecting the salt water inlet and the liquid outlet 1220. One end of the water pump 1400 is connected to the salt water tank 1200, and the other end is connected to the atomizing water tank 100. The water pump 1400 is used to quantitatively transport the salt water in the salt water tank 1200 to the atomizing water tank 100.

[0064] In some embodiments of the utility model, the annular wall 300 is vertically arranged, and the annular wall 300 extends downward from the top wall of the atomizing water tank 100 to the bottom of the atomizing water tank 100, and the atomizer 200 is located in the atomizing area 310. The annular wall 300 is provided with an elongated through groove 330 for connecting the atomizing area 310 and the water storage area 320, and the elongated through groove 330 is vertically arranged. The annular wall 300 can be a separate part, or it can be integrally formed with the atomizing water tank 100. The elongated through groove 330 ensures that the water in the water storage area 320 is replenished in the atomizing area 310 in time.

[0065] In some embodiments of the present invention, the atomizing device includes a fan 400, which is installed outside the atomizing water tank 100. The side wall or top wall of the atomizing water tank 100 is provided with an air inlet 120, and the air outlet of the fan 400 is connected to the water storage area 320 through the air inlet 120. The fan 400 transports the air outside the atomizing water tank 100 to the inside of the atomizing water tank 100, increases the air pressure in the atomizing water tank 100, and promotes the discharge of water mist and transports it to the toilet bowl 800 of the toilet.

[0066] In some embodiments of the utility model, the air inlet 120 is located at the upper end of the side wall of the atomizing water tank 100, and an air guide baffle 500 is fixed in the water storage area 320. The air guide baffle 500 extends downward from the top wall of the atomizing water tank 100. The air guide baffle 500 is located near the air inlet 120 and forms an air flow channel 510 with the side wall of the atomizing water tank 100, and the air flow channel 510 is connected to the air outlet of the fan 400 through the air inlet 120. The lower opening of the air flow channel 510 is connected to the water storage area 320, and the air flow channel 510 can guide the air flow to move from top to bottom after entering the atomizing water tank 100, so as to prevent the air flow from directly dispersing the mist.

[0067] In some embodiments of the utility model, the mist outlet 110 is set as a stepped hole or a tapered hole that is wider at the bottom and narrower at the top. During the atomization process, water is thrown into the air to form water mist. At this time, water droplets may splash and condense at the mist outlet 110 to form a water film (the water film will not break due to the tension of the water), resulting in the water mist being unable to be discharged from the mist outlet 110, affecting the mist outlet efficiency. Therefore, the mist outlet 110 can be set to a stepped hole structure, or a tapered hole structure, to reduce the risk of water film formation. In some embodiments, a filter can also be set at the mist outlet 110 or in the atomization area 310 to intercept water droplets (water mist can pass through).

[0068] In some embodiments of the present invention, the atomizer 200 is an ultrasonic atomizer sheet or a microporous atomizer sheet. The ultrasonic atomizer sheet is a ceramic atomizer sheet, which uses electronic high-frequency oscillation to generate water mist. Its characteristics are that it needs to be placed in water for use and can form water mist on the water surface. Therefore, when the atomizer 200 is an ultrasonic atomizer sheet, the atomizer 200 is set at the bottom of the atomizing water tank 100. The ultrasonic atomizer sheet has a large atomization volume, and the density of the formed water mist is greater than the density of air, which can settle inside the toilet 800 and exist in a diffuse state. The microporous atomizer is a low-frequency atomizer, usually made of stainless steel (with micropores punched in the middle). Its characteristic is that it is placed on the water surface for use, and water mist is formed above the atomizer. Therefore, when the atomizer 200 is a microporous atomizer, it can be installed in the following ways: (1) Place the microporous atomizer on a float and move it up and down with the water surface; (2) Use cotton cores, sponges, capillaries and other water-absorbing objects to connect the microporous atomizer and the water surface; (3) The atomizer water tank 100 is set with a constant water level structure, and the microporous atomizer is fixedly installed at the water surface.

[0069] In some embodiments of the present invention, referring to Fig.11 , including an atomizing channel 700, which is arranged outside the atomizing water tank 100, one end of the atomizing channel 700 is connected to the toilet bowl 800 of the toilet, and the other end is connected to the mist outlet 110. The water in the atomizing water tank 100 is formed into mist-like small water droplets floating in the air through the atomizer 200, and diffused into the toilet bowl 800 through the atomizing channel 700, so that the internal space of the toilet bowl 800 is filled with water mist, and the water mist can condense into a water film after contacting the inner wall of the toilet bowl 800. The outlet at the other end of the atomizing channel 700 can be set on one side of the toilet bowl 800. It is easy to think that the outlet of the atomizing channel 700 can be one or more, and can be at any position on the upper part of the toilet bowl 800. For example, the atomizing channel 700 is designed as a ring channel around the upper part of the toilet bowl 800, and multiple through holes are opened to achieve a uniform mist output effect. In some embodiments, the atomization channel 700 can be connected to the flushing pipe through a three-way structure, so that the outlet of the atomization channel 700 and the flushing port are the same.

[0070] In some embodiments of the present invention, referring to Fig.12, including a telescopic mechanism 900, the atomizing channel 700 is a hose, one end of the hose is connected to the telescopic mechanism 900, and the telescopic mechanism 900 is used to drive the hose close to or away from the toilet 800. Since dirt may adhere to the outer wall or outlet of the atomizing channel 700 when using the toilet, causing blockage, the telescopic mechanism 900 is designed to realize the telescopic function of the atomizing outlet and prevent dirt from adhering to the atomizing channel 700. The telescopic mechanism 900 can perform reciprocating telescopic movements under the drive of the driving mechanism. In some embodiments, the driving mechanism can be a motor, and under the joint action of the gear rack, the telescopic mechanism 900 is driven to perform reciprocating linear or curved motion. The atomizing channel 700 can be fixed with the telescopic mechanism 900, and under the action of the driving mechanism, the atomizing channel 700 can perform reciprocating linear or curved motion with the telescopic mechanism 900. The telescopic mechanism 900 and the driving mechanism are similar to the spray gun structure of the smart toilet, so they are not repeated. In some embodiments, the telescopic mechanism 900 is provided with a convex structure to achieve fixed assembly with the atomizing channel 700. It should be noted that the telescopic mechanism 900 and the driving mechanism here can be integrated with the spray gun structure of the smart toilet, that is, a channel for water mist to pass through is added inside the spray gun, or they can be separated from the spray gun structure of the smart toilet, that is, different telescopic mechanisms 900 or driving mechanisms.

[0071] In some embodiments of the present invention, the atomizing device further comprises a second water inlet valve 1000. The second water inlet valve 1000 is used to add water to the atomizing water tank 100 to dilute the salt water.

[0072] A split toilet comprises the above-mentioned salt adding device or the above-mentioned sterilization atomization device.

[0073] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A salt adding device, characterized in that: The invention comprises a salt adding box (1100) and a salt water box (1200), wherein the salt adding box (1100) is detachably mounted above the salt water box (1200), the salt adding box (1100) is provided with a salt adding port (1110), the bottom of the salt adding box (1100) is provided with a salt dropping port (1120), the salt dropping port (1120) is provided with a movable opening and closing plug (1130), the salt water box (1200) is provided with a boss (1210) and the boss (1210) is provided with a movable opening and closing plug (1130). ) is located below the opening and closing plug (1130). When the salt adding box (1100) is assembled on the brine tank (1200), the opening and closing plug (1130) can be lifted up by the boss (1210) to open the salt outlet (1120). When the salt adding box (1100) is separated from the brine tank (1200), the opening and closing plug (1130) can fall freely to block the salt outlet (1120). The brine tank (1200) is provided with a liquid outlet (1220).

2. The salt adding device according to claim 1, characterized in that: The salt adding box (1100) is provided with a protruding positioning plate (1140), and the brine box (1200) is provided with a guide groove (1230) that can cooperate with the positioning plate (1140), or the brine box (1200) is provided with a protruding positioning plate (1140), and the salt adding box (1100) is provided with a guide groove (1230) that can cooperate with the positioning plate (1140).

3. The salt adding device according to claim 2, characterized in that: The positioning plate (1140) and the guide groove (1230) are both arranged horizontally, and the positioning plate (1140) can be horizontally inserted into the guide groove (1230) from the side of the guide groove (1230).

4. The salt adding device according to claim 3, characterized in that: The top of the boss (1210) has an outwardly convex curved surface, and the lower end of the opening and closing plug (1130) extends beyond the bottom surface of the salt adding box (1100). When the positioning plate (1140) is horizontally inserted from the side of the guide groove (1230), the lower end of the opening and closing plug (1130) can contact the curved surface and climb along the curved surface.

5. The salt adding device according to claim 1, characterized in that: The opening and closing plug (1130) comprises a movable rod (1131) and a sealing gasket (1132), wherein the movable rod (1131) is inserted into the sealing gasket (1132), and the upper end of the movable rod (1131) is in a conical shape that is wider at the bottom and narrower at the top.

6. The salt adding device according to claim 1, characterized in that: It also includes a water inlet pipe (1300), wherein the water outlet of the water inlet pipe (1300) is located above the salt adding port (1110).

7. The salt adding device according to claim 1, characterized in that: A plurality of vertically arranged guide ribs (1150) are provided at the bottom of the salt adding box (1100), and the guide ribs (1150) are distributed at intervals along the edge of the salt adding port (1110).

8. A sterilization atomization device, characterized in that: The invention comprises a salt adding device as claimed in any one of claims 1 to 7, an atomizing water tank (100), an atomizer (200) and an electrolysis module (600), wherein the atomizer (200) and the electrolysis module (600) are arranged in the atomizing water tank (100), a salt water inlet is provided on the atomizing water tank (100), the salt water inlet is connected to the liquid outlet (1220) through a pipeline, a mist outlet (110) is provided on the top wall of the atomizing water tank (100), and an annular The annular wall surface (300) is wound to form an atomization area (310), the atomizer (200) is located in the atomization area (310) or below the atomization area (310), the mist outlet (110) is located above the atomization area (310), and the area inside the atomization water tank (100) and outside the atomization area (310) is a water storage area (320), and the atomization area (310) is connected to the water storage area (320).

9. The sterilizing atomization device according to claim 8, characterized in that: A water pump (1400) is provided on the pipeline connecting the salt water inlet and the liquid outlet (1220).

10. A two-piece toilet, characterized in that: It comprises the salt adding device described in any one of claims 1 to 7 or the sterilization atomization device described in any one of claims 8 to 9.