A cleaning device with disinfection function

By designing a combination of water storage structure, discharge electrode and air outlet device in the dishwasher, and using high-frequency alternating voltage to electrolyze air and circulate electrolysis, the problem of low concentration of sterilization components in the disinfection water of existing dishwasher is solved, achieving more efficient disinfection and sterilization effects and odor-free emissions.

CN116019406BActive Publication Date: 2025-08-15GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202211586472.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-08
Publication Date
2025-08-15
Estimated Expiration
2042-12-08

AI Technical Summary

Technical Problem

The concentration of sterilization components in the ozone water generated by the existing dishwasher disinfection water generator is low, and the disinfection and sterilization effect is not good.

Method used

A disinfection water generator is designed, including a water storage structure, a discharge electrode, a ground electrode and an air outlet device. The air discharge device is used to electrolyze the air to generate sterilization components, and the air outlet device is used to pass the undissolved sterilization components into the water storage structure for electrolysis, enhancing the dissolution effect of the sterilization components.

Benefits of technology

The concentration of sterilization ingredients in the disinfection water is increased, the disinfection and sterilization effect is enhanced, and ozone discharges pollute the air or produces odor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a cleaning device with a disinfection function, comprising a disinfectant water generating device and a housing. The disinfectant water generating device comprises a water storage structure, a discharge electrode, a ground electrode and an air outlet. The water storage structure has an air inlet and an exhaust port. The discharge electrode is arranged in the water storage structure and is suitable for being connected to the live wire of the power supply device. The ground electrode is arranged in the water storage structure and is suitable for being connected to the neutral wire of the power supply device. The air outlet of the air outlet device is connected to the air inlet of the water storage structure, and the air inlet of the air outlet device is connected to the exhaust port of the water storage structure. Bactericidal components such as ozone generated by electrolysis can be partially dissolved in water, and the remaining bactericidal components can enter the air outlet device with the air, and then be passed into the water storage structure by the air outlet device. The cleaning device with a disinfection function of the present invention can repeatedly dissolve ozone, prolong the contact time between the bactericidal components and water, and produce a higher ozone concentration in the disinfectant water, and avoid ozone being discharged to pollute the air or produce odor.
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Description

Technical Field

[0001] The present invention relates to the technical field of disinfection and sterilization equipment, and in particular to a cleaning equipment with a disinfection function. Background Art

[0002] With the improvement of living standards, cleaning appliances with disinfection functions, such as dishwashers, have gradually entered ordinary households, freeing up hands and improving the quality of life. Typically, the main core components of existing dishwashers include: the inner tank assembly, the water cup assembly, the spray arm assembly, the filter assembly, the wash pump, the drain pump, and the piping.

[0003] Dishwashers currently on the market typically use electrodes to electrolyze a specific medium to produce ion clusters or ion solutions with disinfecting effects. However, the concentration of bactericidal components such as ion clusters or ion solutions in the ozone water produced by existing disinfectant water generators is low, resulting in poor disinfection and sterilization effects. Summary of the Invention

[0004] Therefore, the technical problem to be solved by the present invention is to overcome the defect of low concentration of bactericidal components such as ion clusters or ion solutions in the ozone water generated by the disinfection water generating device of the cleaning equipment with disinfection function in the prior art, thereby providing a cleaning equipment that can increase the concentration of bactericidal components in the disinfection water, and has better disinfection and sterilization effect.

[0005] In order to solve the above problems, the present invention provides a disinfectant water generating device for cleaning equipment with a disinfection function, including a shell and a disinfectant water generating device, the disinfectant water generating device is arranged in the shell, and the disinfectant water generating device includes: a water storage structure, having an air inlet and an exhaust port; a discharge electrode, which is arranged in the water storage structure and is suitable for being connected to the live wire of the power supply device; a ground electrode, which is arranged in the water storage structure and is suitable for being connected to the neutral wire of the power supply device; an air outlet device, the air outlet of the air outlet device is connected to the air inlet of the water storage structure, and the air inlet of the air outlet device is connected to the exhaust port of the water storage structure.

[0006] Furthermore, the air outlet of the water storage structure is higher than the air inlet of the water storage structure.

[0007] Furthermore, an upwardly protruding heightened structure is formed on the upper wall of the water storage structure, and the exhaust port is arranged on the heightened structure.

[0008] Furthermore, the disinfectant water generating device also includes:

[0009] An air inlet channel is provided on the water storage structure and surrounds the discharge electrode, an air outlet of the air outlet device is connected to an inlet of the air inlet channel, and the air inlet channel passes through the air inlet of the water storage structure;

[0010] The porous structure is arranged in the water storage structure and connected to the air outlet end of the air inlet channel.

[0011] Furthermore, the porous structure is an air stone, and the air outlet end of the air inlet channel is sealedly connected to the air stone.

[0012] Furthermore, the porous structure comprises:

[0013] An air chamber is formed with a first opening and a second opening, and an air outlet end of the air inlet passage is sealedly connected to the first opening of the air chamber;

[0014] The waterproof and breathable membrane blocks the second opening.

[0015] Furthermore, the disinfectant water generating device also includes:

[0016] An electrode fixing frame is provided on the water storage structure, the discharge electrode and the ground electrode are fixedly provided on the electrode fixing frame, and the inlet of the air inlet channel is formed on the electrode fixing frame;

[0017] An insulating tube, the upper end of which passes through the air inlet of the water storage structure and is fixedly connected to the electrode fixing frame. The discharge electrode is located in the insulating tube. The air inlet channel includes a first air guide section and a second air guide section connected to each other. The first air guide section is formed in the electrode fixing frame and is connected to the inlet. The second air guide section is formed in the insulating tube.

[0018] Furthermore, a second fixing hole suitable for fixing the discharge electrode is formed on the electrode fixing frame, and the top ends of the discharge electrode and the ground electrode pass through the electrode fixing frame. The disinfectant water generating device also includes a first fastening nut threadedly connected to the discharge electrode, and / or,

[0019] A fourth fixing hole suitable for fixing the ground electrode is formed on the electrode fixing frame, and the top end of the ground electrode passes through the electrode fixing frame. The disinfectant water generating device also includes a second fastening nut threadedly connected to the discharge electrode.

[0020] Furthermore, a third fixing hole surrounding the second fixing hole is formed on the electrode fixing frame, the air inlet end of the insulating tube is limited to be located in the third fixing hole, and the first air guide section includes a fixing frame air outlet formed in the second fixing hole, and the position of the fixing frame air outlet is higher than the third fixing hole.

[0021] Furthermore, the disinfectant water generating device also includes a second sealing structure arranged between the insulating tube and the electrode fixing frame, and the second sealing structure is suitable for sealing the gap between the insulating tube and the electrode fixing frame.

[0022] Furthermore, the cleaning device with a disinfection function is a dishwasher.

[0023] The present invention has the following advantages:

[0024] 1. It can be seen from the above technical solution that in the cleaning equipment with disinfection function of the present invention, the air outlet device can introduce air into the water storage structure. When disinfectant water needs to be prepared, the power supply device provides a high-frequency alternating voltage of about 10kv-12kv to the disinfectant water generating device, and the discharge electrode of the disinfectant water generating device generates a discharge arc phenomenon, thereby electrolyzing the air in the water storage structure to produce single oxygen atoms, ozone ion groups, hydrogen peroxide ion groups, hydroxyl groups, nitroso groups and other bactericidal components. The bactericidal components produced by electrolysis can be partially dissolved in water, and the remaining ozone and other bactericidal components can enter the air outlet device with the air, and then be introduced into the water storage structure by the air outlet device. The remaining air can be repeatedly electrolyzed by the discharge electrode, and the remaining ozone and other bactericidal components can be dissolved by water again.

[0025] Therefore, the cleaning equipment with disinfection function of the present invention can repeatedly dissolve the bactericidal components such as ozone generated by electrolysis, prolong the contact time between ozone and other bactericidal components and water, and make the bactericidal components such as ozone more fully dissolved. The ozone concentration in the prepared disinfectant water is higher, with better disinfection and sterilization effect, and avoids the emission of ozone to pollute the air or produce odor. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0027] Figure 1 A perspective view of a disinfectant water generating device according to embodiment 1 of the present invention;

[0028] Figure 2 This is a top view of the disinfectant water generating device according to Example 1 of the present invention;

[0029] Figure 3 For the Figure 1 A cross-sectional view of the disinfectant water generating device at line AA;

[0030] Figure 4 For the Figure 1 A cross-sectional view of the disinfectant water generating device at line BB in FIG.

[0031] Figure 5 This is the enlarged view of point A;

[0032] Figure 6 The bubble stone of the disinfectant water generating device of Example 1 of the present invention;

[0033] Figure 7This is a three-dimensional diagram of the disinfectant water generating device of Example 1 of the present invention from another perspective, with its water storage structure partially hidden;

[0034] Figure 8 The electrode fixing frame of the disinfectant water generating device of embodiment 1 of the present invention;

[0035] Figure 9 A cross-sectional view of an electrode fixing frame of a disinfectant water generating device according to embodiment 1 of the present invention;

[0036] Figure 10 for Figure 4 Enlarged view of point B in FIG.

[0037] Figure 11 This is a three-dimensional view of the second sealing structure of the disinfectant water generating device according to Example 1 of the present invention at an angle;

[0038] Figure 12 This is a three-dimensional view of the second sealing structure of the disinfectant water generating device according to Example 1 of the present invention from another angle;

[0039] Figure 13 A top view of a disinfectant water generating device according to embodiment 2 of the present invention;

[0040] Figure 14 For the Figure 13 A cross-sectional view of the disinfectant water generating device at line CC;

[0041] Figure 15 The insulating tube, air chamber and waterproof breathable membrane of the disinfectant water generating device of embodiment 2 of the present invention;

[0042] Figure 16 for Figure 15 A top view of the insulating tube, air chamber and waterproof breathable membrane;

[0043] Figure 17 For the Figure 16 A cross-sectional view of the insulating tube, air chamber and waterproof breathable membrane at DD;

[0044] Figure 18 This is the dishwasher according to embodiment 3 of the present invention.

[0045] Description of reference numerals:

[0046] a. Disinfectant water generating device; a1. Water storage structure; a11. Air inlet; a12. Exhaust port; a13. Heightening structure; a21. Discharge electrode; a22. Ground electrode; a3. Air stone; a31. First fixing hole;

[0047] a42, second sealing structure; a422, second sealing ring;

[0048] a5, electrode fixing frame; a51, first air guide section; a52, fixing frame air outlet; a53, second fixing hole; a54, third fixing hole; a55, inlet; a56, first fastening nut; a57, second fastening nut; a6, insulating tube; a61, second air guide section;

[0049] a81, air chamber; a82, first opening; a83, second opening; a84, waterproof breathable membrane;

[0050] b. Air outlet device; b1. Air inlet; b2. Air outlet. DETAILED DESCRIPTION

[0051] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0052] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0053] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0054] In addition, the technical features involved in different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0055] Example 1

[0056] Figure 1 This is a three-dimensional diagram of the disinfectant water generating device of Example 1 of the present invention. Figure 2 FIG. 1 is a top view of the disinfectant water generating device according to embodiment 1 of the present invention. Figure 1 and Figure 2 As shown, Example 1 relates to a cleaning device with a disinfection function, comprising a disinfectant water generator a and a housing. The disinfectant water generator a is disposed within the housing and includes a water storage structure a1, a discharge electrode a21, a ground electrode a22, and an air outlet b. The water storage structure a1 has an air inlet a11 and an air outlet a12. The discharge electrode a21 is disposed within the water storage structure a1 and is adapted to be connected to the live wire of a power supply. The ground electrode a22 is disposed within the water storage structure a1 and is adapted to be connected to the neutral wire of the power supply.

[0057] The air outlet b2 of the air outlet device b is connected to the air inlet a11 of the water storage structure a1. The air inlet b1 of the air outlet device b is connected to the air outlet a12 of the water storage structure a1. The water storage structure a1 is preferably, but not limited to, a water tank. The air outlet device b can be a fan or an air pump. In this embodiment, the air outlet device b is an air pump, such as Figure 18 As shown, the air outlet b2 of the air pump is connected to the air inlet a11 of the water storage structure a1 through an air outlet pipe. The air inlet b1 of the air pump is connected to the air inlet a11 of the water storage structure a1 through an air inlet pipe. The power supply device can be a high-frequency high-voltage device or other device capable of providing high voltage electricity.

[0058] Applicants have discovered that the low concentration of bactericidal components in disinfectant water produced by prior art cleaning devices with disinfection functions is due to the short contact time between ozone and water. As a result, the electrolytically generated ozone and other bactericidal components often fail to fully dissolve in the water. In the disinfectant water generator a of Example 1, an air outlet device b is capable of introducing air into the water storage structure a1. When disinfectant water is required, a power supply device provides a high-frequency alternating voltage of approximately 10kV-12kV to the disinfectant water generator a. Discharge electrode a21 of the disinfectant water generator a generates an arc, electrolyzing the air within the water storage structure a1 to produce bactericidal components such as single oxygen atoms, ozone ion radicals, hydrogen peroxide ion radicals, hydroxyl groups, and nitroso groups. The electrolytically generated ozone and other bactericidal components partially dissolve in the water, while the remaining components can enter the air outlet device b along with the air, which is then introduced into the water storage structure a1. The remaining air is then electrolyzed again by the discharge electrode a21, allowing the ozone and other bactericidal components to be dissolved again in the water.

[0059] Therefore, the disinfectant water generating device a of Example 1 can repeatedly dissolve the bactericidal components such as ozone generated by electrolysis, extend the contact time between ozone and water, and make the bactericidal components such as ozone more fully dissolved. The concentration of the bactericidal components in the prepared disinfectant water is higher, and it has better disinfection and sterilization effect, and avoids the emission of ozone to pollute the air or produce odor.

[0060] In this embodiment, the exhaust port a12 of the water storage structure a1 is preferably higher than the air inlet a11 of the water storage structure a1, so as to prevent the water in the water storage structure a1 from overflowing the exhaust port a12. Figure 3 As shown, an upwardly protruding raised structure a13 is formed on the upper wall of the water storage structure a1, and the exhaust port a12 is provided on the raised structure a13. The provision of the raised structure a13 ensures that the exhaust port a12 of the water storage structure a1 is higher than the liquid level within the water storage structure a1, greatly reducing the risk of water in the water storage structure a1 overflowing from the exhaust port a12.

[0061] Preferably, in this embodiment, Figure 4 As shown, the disinfectant water generating device a also includes an air inlet channel and a porous structure. The air inlet channel is disposed on the water storage structure a1 and surrounds the discharge electrode a21. The air outlet b2 of the air outlet device b is connected to the inlet a55 of the air inlet channel, which passes through the air inlet a11 of the water storage structure a1. The porous structure is disposed within the water storage structure a1 and connected to the outlet end of the air inlet channel.

[0062] Air enters the water storage structure a1 through the air inlet channel. The discharge electrode a21 of the disinfectant water generating device a generates a discharge arc phenomenon, thereby electrolyzing the air in the air inlet channel to produce single oxygen atoms, ozone ion groups, hydrogen peroxide ion groups, hydroxyl groups, nitroso groups, etc. The bactericidal components such as ozone generated by electrolysis can be discharged into the porous structure through the air outlet end of the air inlet channel. The porous structure can disperse the bactericidal components from the air inlet channel into uniform and fine foam and release them into the water, thereby effectively increasing the contact area between the bactericidal components and water, increasing the solubility of ozone, making the concentration of the bactericidal components in the prepared disinfectant water higher, having a better disinfection and sterilization effect, and reducing the risk of ozone not dissolving in water, resulting in ozone emission and polluting the air or producing odor.

[0063] In this embodiment, if Figure 4 As shown, the porous structure can be air stone a3. The outlet end of the air inlet channel is sealed with the air stone a3. The ozone and other sterilizing ingredients released from the outlet end of the air inlet channel can be dispersedly released into the water by the air stone a3.

[0064] The outlet end of the air inlet channel can be bonded or abutted against the air stone a3, or an abutting convex portion suitable for inserting into the air inlet channel and blocking the air inlet channel is formed on the air stone a3. Figure 5 、 Figure 6 and Figure 7As shown, the air stone a3 is formed with a first fixing hole a31 suitable for securing the air inlet channel. The outlet end of the air inlet channel extends into the first fixing hole a31. The first fixing hole a31 not only limits the outlet end of the air inlet channel, but also increases the contact area between the air inlet channel and the air stone a3, helping to improve the airtightness between the air inlet channel and the air stone a3. Furthermore, compared to contacting the inner wall of the air inlet channel with the air stone a3, when the outer wall of the air inlet channel contacts the air stone a3, the outer wall of the air inlet channel is less likely to be damaged by pressure from the air stone a3.

[0065] In this embodiment, if Figure 8 As shown, the disinfectant water generating device a also includes an electrode fixing frame a5 and an insulating tube a6. Among them, the electrode fixing frame a5 is arranged on the water storage structure a1. The discharge electrode a21 and the ground electrode a22 are fixedly arranged on the electrode fixing frame a5. The inlet a55 of the air inlet channel is formed on the electrode fixing frame a5. The upper end of the insulating tube a6 passes through the air inlet a11 of the water storage structure a1 and is fixedly connected to the electrode fixing frame a5. The discharge electrode a21 is located in the insulating tube a6. The air inlet channel includes a first air guide section a51 and a second air guide section a61 connected to each other. The first air guide section a51 is formed in the electrode fixing frame a5 and is connected to the inlet a55 (see Figure 9 The second air guide section a61 is formed in the insulating tube a6.

[0066] The insulating tube a6 can be a glass or ceramic tube, preferably a transparent glass tube, which facilitates observation of the installation of the discharge electrode a21 and its connection to the electrode holder a5 and the bubble stone a3. The insulating tube a6 acts as a barrier, ensuring a more uniform and stable discharge from the discharge electrode a21 and increasing the initial electron density.

[0067] In this embodiment, air can be sequentially introduced into the air stone a3 through the first air guide segment a51 and the second air guide segment a61. The electrode holder a5 is used to secure both the discharge electrode a21 and the ground electrode a22, and also to secure the insulating tube a6, resulting in a simple and compact structure. Preferably, in alternative embodiments, the electrode holder a5 is used only to secure the discharge electrode a21.

[0068] In this embodiment, if Figure 10As shown, the electrode holder a5 is formed with a second fixing hole a53 suitable for securing the discharge electrode a21. The top ends of the discharge electrode a21 and the ground electrode pass through the electrode holder a5. The disinfectant water generating device a preferably also includes a fastening nut threadedly connected to the discharge electrode a21. A first fastening nut a56 can be threadedly connected to the top end of the discharge electrode a21 to secure the discharge electrode a21 to the electrode holder a5. This has a simple structure, is easy to operate, and prevents the discharge electrode a21 from becoming loose. Furthermore, the first fastening nut a56 can also be used to secure the wire connected to the discharge electrode a21, making the structure of the disinfectant water generating device a more compact.

[0069] The electrode holder a5 is formed with a fourth fixing hole for securing the ground electrode a22. The top end of the ground electrode a22 extends through the holder a5. The disinfectant water generating device a also includes a second fastening nut a57 threadedly connected to the discharge electrode a21. This second fastening nut a57 is threadedly engaged with the top end of the ground electrode a22, securing the ground electrode a22 to the electrode holder a5. This simple structure and convenient operation prevent the ground electrode a22 from becoming loose. Furthermore, the second fastening nut a57 can be used to secure the wire connected to the ground electrode a22, further enhancing the compactness of the disinfectant water generating device a.

[0070] In this embodiment, a third fixing hole a54 surrounding the second fixing hole a53 is formed on the electrode fixing frame a5. The air inlet end of the insulating tube a6 is located within the third fixing hole a54. The first air guide section a51 includes a fixing frame air outlet a52 formed within the second fixing hole a53. The fixing frame air outlet a52 is positioned higher than the third fixing hole a54. This avoids blocking the fixing frame air outlet a52 when the insulating tube a6 is connected to the third fixing hole a54, thereby ensuring smooth air intake in the air inlet channel. Preferably, in this embodiment, a plurality of abutment protrusions are formed on the top wall of the third fixing hole a54. The air inlet end of the insulating tube a6 abuts against the abutment protrusions.

[0071] In this embodiment, if Figure 5 As shown, the disinfectant water generating device a also includes a second sealing structure a42 disposed between the insulating tube a6 and the electrode holder a5. The second sealing structure a42 is adapted to seal the gap between the insulating tube a6 and the electrode holder a5. The second sealing structure a42 prevents air leakage between the air inlet passage and the electrode holder a5. It also provides a flexible contact with the insulating tube a6 in place of the electrode holder a5, thereby reducing the risk of the insulating tube a6 being damaged by the electrode holder a5. The second sealing structure a42 is preferably, but not limited to, made of a flexible material such as rubber or silicone.

[0072] In this embodiment, if Figure 11 and Figure 12As shown, the second sealing structure a42 can be optionally a sealing gasket formed with an avoidance hole. The edge of the avoidance hole extends into the third fixing hole a54 and abuts against the hole wall of the third fixing hole a54 (see Figure 10 ), the air inlet end of the insulating tube a6 abuts against the sealing gasket.

[0073] In such Figure 3 In the embodiment shown, a circumferential flange is formed on the outer surface of the insulating tube a6. The second sealing structure a42 is a second sealing ring a422. The second sealing ring a422 is sleeved outside the air inlet passage and located between the circumferential flange and the electrode fixing frame a5.

[0074] The second sealing ring a422 improves the seal between the air inlet end of the insulating tube a6 and the electrode holder a5, preventing rigid contact between the two ends. Furthermore, because the second sealing ring a422 wraps around the outside of the insulating tube a6 and is farther away from the end of the discharge electrode a21, it increases the creepage distance and prevents discharge from the discharge electrode a21 from piercing the second sealing ring a422.

[0075] Example 2

[0076] Example 2 relates to a cleaning device with a disinfectant water generating function, such as Figure 13 and Figure 14 As shown, the difference between the cleaning device with disinfectant water generating function in Example 1 is that the porous structure includes an air chamber a81 and a waterproof breathable membrane a84. Figure 15 、 16As shown in Figure 17, a first opening a82 and a second opening a83 are formed on the air chamber a81, and the air outlet end of the air inlet channel is sealed and connected to the first opening a82 of the air chamber a81. The waterproof breathable membrane a84 blocks the second opening a83. The ozone and other bactericidal components released from the air outlet end of the air inlet channel can be passed into the air chamber a81. The waterproof breathable membrane a84 can allow the ozone and other bactericidal components to pass through and be dispersedly released into the water, and prevent the water in the water storage structure a1 from entering the air chamber a81. The water-facing surface of the waterproof breathable membrane a84 is PTFE, and micro-sized through holes are formed on the waterproof breathable membrane, with a mesh size of less than 400 and a pore size of less than 2 mm, similar to a mesh. Among them, the back-to-water surface of the waterproof breathable membrane can be a composite of PP (Polypropylene, polypropylene) and PE (polyethylene, polyethylene), or PP and PE materials can be stacked together. The waterproof, breathable membrane A84 reduces the humidity of the gas entering the air inlet passage. During the electrolysis process, gas continuously circulates within the disinfectant water generator A, inevitably carrying moisture with it when it is pumped into the water. This reciprocating cycle can easily cause condensation in the air inlet passage, affecting electrolysis. The waterproof, breathable membrane A84 not only disperses the gas, allowing it to fully contact the water, but also isolates the water from the air inlet passage, preventing moisture from affecting electrolysis.

[0077] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. A cleaning device with a disinfection function, characterized in that: include: case; A disinfectant water generating device is provided in the housing, and the disinfectant water generating device comprises: The water storage structure (a1) has an air inlet (a11) and an air outlet (a12); a discharge electrode (a21), which is arranged in the water storage structure (a1) and is suitable for being connected to a live wire of a power supply device; a ground electrode (a22), which is disposed in the water storage structure (a1) and is suitable for being connected to the neutral line of the power supply device; An air outlet device (b), the air outlet (b2) of the air outlet device (b) is connected to the air inlet (a11) of the water storage structure (a1), and the air inlet (b1) of the air outlet device (b) is connected to the exhaust port (a12) of the water storage structure (a1); an upwardly protruding heightened structure (a13) is formed on the upper wall of the water storage structure (a1), and the exhaust port (a12) is arranged on the heightened structure (a13).

2. The cleaning device with disinfection function according to claim 1, characterized in that: The exhaust port (a12) of the water storage structure (a1) is higher than the air inlet (a11) of the water storage structure (a1).

3. The cleaning device with disinfection function according to claim 1 or 2, characterized in that: The disinfectant water generating device (a) further comprises: an air inlet passage, which is provided on the water storage structure (a1) and is arranged around the discharge electrode (a21), the air outlet (b2) of the air outlet device (b) is connected to the inlet (a55) of the air inlet passage, and the air inlet passage passes through the air inlet (a11) of the water storage structure (a1); A porous structure is arranged in the water storage structure (a1) and connected to the air outlet end of the air inlet channel.

4. The cleaning device with disinfection function according to claim 3, characterized in that: The porous structure is an air bubble stone (a3), and the air outlet end of the air inlet channel is sealedly connected to the air bubble stone (a3).

5. The cleaning device with disinfection function according to claim 4, characterized in that: The porous structure comprises: An air chamber (a81), wherein a first opening (a82) and a second opening (a83) are formed on the air chamber (a81), and an air outlet end of the air inlet channel is sealedly connected to the first opening (a82) of the air chamber (a81); A waterproof and breathable membrane (a84) blocks the second opening (a83).

6. The cleaning device with disinfection function according to claim 3, characterized in that: The disinfectant water generating device (a) further comprises: an electrode fixing frame (a5) disposed on the water storage structure (a1), the discharge electrode (a21) and the ground electrode (a22) being fixedly disposed on the electrode fixing frame (a5), and an inlet (a55) of the air inlet channel being formed on the electrode fixing frame (a5); An insulating tube (a6), the upper end of which passes through the air inlet (a11) of the water storage structure (a1) and is fixedly connected to the electrode fixing frame (a5), the discharge electrode (a21) is located in the insulating tube (a6), and the air inlet channel includes a first air guide section (a51) and a second air guide section (a61) connected to each other, the first air guide section (a51) is formed in the electrode fixing frame (a5) and is connected to the inlet (a55), and the second air guide section (a61) is formed in the insulating tube (a6).

7. The cleaning device with disinfection function according to claim 6, characterized in that: The electrode fixing frame (a5) is formed with a second fixing hole (a53) suitable for fixing the discharge electrode (a21), the top ends of the discharge electrode (a21) and the ground electrode (a22) pass through the electrode fixing frame (a5), and the disinfectant water generating device further includes a first fastening nut (a56) threadedly connected to the discharge electrode (a21), and / or, A fourth fixing hole suitable for fixing the ground electrode (a22) is formed on the electrode fixing frame (a5), and the top end of the ground electrode (a22) passes through the electrode fixing frame (a5). The disinfectant water generating device (a) also includes a second fastening nut (a57) threadedly connected to the discharge electrode (a21).

8. The cleaning device with disinfection function according to claim 7, characterized in that: A third fixing hole (a54) surrounding the second fixing hole (a53) is formed on the electrode fixing frame (a5); the air inlet end of the insulating tube (a6) is located within the third fixing hole (a54); the first air guide section (a51) includes a fixing frame air outlet (a52) formed within the second fixing hole (a53); and the fixing frame air outlet (a52) is located higher than the third fixing hole (a54).

9. The cleaning device with disinfection function according to claim 6, characterized in that: It also includes a second sealing structure (a42) arranged between the insulating tube (a6) and the electrode fixing frame (a5), and the second sealing structure (a42) is suitable for sealing the gap between the insulating tube (a6) and the electrode fixing frame (a5).

10. The cleaning device with disinfection function according to claim 1 or 2, characterized in that: The cleaning device with disinfection function is a dishwasher.

Citation Information

Patent Citations

  • Cleaning equipment with disinfection function

    CN219374552U