Clothes iron

By switching between the oxide group water mist module and the steam water mist module in the garment iron, the problem of damage to special materials caused by traditional steam irons is solved, achieving the effects of sterilization and deodorization at non-high temperatures and ironing smoothness at high temperatures.

CN224578513UActive Publication Date: 2026-07-31GUANGZHOU DEPOSON ELECTRIC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU DEPOSON ELECTRIC TECH
Filing Date
2025-06-20
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

When using traditional steam irons to iron garments made of special materials such as silk and wool, the high temperature can easily damage the fiber structure, resulting in problems such as deformation, shrinkage, and fading.

Method used

Design a garment ironing machine that includes an oxide group water mist module and a steam water mist module. By switching between different modules, the garments can be treated. The oxide group water mist module sprays water mist rich in oxide groups for sterilization and deodorization, while the steam water mist module sprays steam water mist for ironing and smoothing.

Benefits of technology

It achieves effective care for clothing of different materials. The oxide group water mist module sterilizes and removes odors at non-high temperatures, while the steam water mist module irons the clothes at high temperatures, avoiding damage and improving the quality and appearance of the clothes.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a clothing ironing machine, including a main body shell, an oxide group water mist module, and a steam water mist module. An ironing soleplate is mounted on the main body shell, and the ironing soleplate has a water mist outlet. A water tank is formed within the main body shell, and the main body shell has a water inlet connected to the water tank, through which water is injected into the water tank.
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Description

Technical Field

[0001] This utility model relates to the field of household appliance technology, and in particular to a clothes ironing machine. Background Technology

[0002] With economic development and improved living standards, people's demands for quality of life have become increasingly diverse. Steam irons, as a commonly used garment ironing tool, are widely used in homes and related commercial sectors. The traditional working principle of a steam iron involves heating water inside the iron, causing it to vaporize into high-temperature steam. The heat and humidity of the steam soften the fabric fibers, and the pressure and temperature of the iron's soleplate smooth out wrinkles, achieving a smooth finish. However, for some special fabrics, such as silk, wool, and cashmere, which are sensitive to temperature, using a high-temperature steam iron can easily cause irreversible damage to the fiber structure, leading to serious problems such as deformation, shrinkage, and fading, significantly impairing the quality and appearance of the garment. Utility Model Content

[0003] Based on the problems mentioned above, it is necessary to provide a garment ironing machine.

[0004] The garment iron includes a main body shell, an oxide group water mist module, and a steam water mist module;

[0005] An ironing plate is installed on the main body shell, and the ironing plate has a water mist outlet;

[0006] The main body shell is formed with a water tank, and the main body shell has a water inlet, which is connected to the water tank.

[0007] The oxide group water mist module is used to convert the water in the water tank into oxide group water mist, and the oxide group water mist module is connected to the water mist outlet;

[0008] The steam mist module is used to heat the water in the water tank into water mist steam, and the steam mist module is connected to the water mist outlet.

[0009] In one embodiment, a one-way conveyor is also included, through which water in the water tank is supplied to the oxide group water mist module or the steam water mist module.

[0010] In one embodiment, the unidirectional conveyor is an electromagnetic pump or a unidirectional immersion body.

[0011] In one embodiment, a heat insulation plate is provided between the oxide group water mist module and the steam water mist module.

[0012] In one embodiment, the system further includes an air supply module for supplying air to the oxide group water mist module.

[0013] In one embodiment, the oxidized group water mist module includes an oxidized group water module and an atomizer, wherein the oxidized group water module is used to generate oxidized group water, and the atomizer is used to atomize the oxidized group water.

[0014] In one embodiment, the oxidized water module includes at least one of an ozone generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidized water generator, and an acidic water generator.

[0015] In one embodiment, the oxidized water module includes an electrolyzer, which includes several electrolysis units. Each electrolysis unit includes a first electrode, an electrolyte membrane, and a second electrode stacked sequentially. The electrolyzer converts water into oxidized water through low-pressure electrolysis.

[0016] In one embodiment, the electrode material of the first electrode and / or the second electrode is one of conductive silicon, conductive diamond, or elemental titanium, platinum, lead, tantalum, iridium, palladium, antimony, or their oxides.

[0017] In one embodiment, the steam mist module includes a steam generating chamber and a heating element disposed in the steam generating chamber, the water tank is connected to the steam generating chamber through the one-way conveyor, and the steam generating chamber is connected to the mist outlet.

[0018] In one embodiment, the steam mist module includes a steam generating chamber disposed on top of the ironing soleplate, and the sidewall material of the steam generating chamber is metal.

[0019] The beneficial effects of this utility model are:

[0020] The garment can be treated differently by switching between the oxidizing group water mist module and the steam water mist module. When high-temperature ironing is required, the steam water mist module is activated to spray steam water mist from the ironing plate, which then irons the garment smooth. For garments that cannot be treated at high temperatures, the oxidizing group water mist module is activated to spray oxidizing group water mist from the ironing plate, working in conjunction with the ironing plate to treat the garment. The oxidizing group water mist is rich in oxidizing groups, which can sterilize and deodorize the garment, providing good care for it at non-high temperatures. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of the structure of a garment ironing machine according to an embodiment of this application.

[0023] Figure 2 This is a schematic diagram of the structure of an oxide group water module according to an embodiment of this application. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0025] like Figure 1 As shown, this is a preferred embodiment of the clothing ironing machine of the present invention, specifically including a main body shell 1, an oxide group water mist module 2, and a steam water mist module 5.

[0026] An ironing base plate 13 is installed on the main body shell 1, and the ironing base plate 13 has a water mist outlet 14.

[0027] The main body shell 1 forms a water tank 11, and the main body shell 1 has a water inlet 12. The water inlet 12 is connected to the water tank 11, and water is injected into the water tank 11 through the water inlet 12.

[0028] The oxide group water mist module 2 is used to convert the water in the water tank 11 into oxide group water mist. The oxide group water mist module 2 is connected to the water mist outlet 14. The water in the water tank 11 is converted into oxide group water mist through the oxide group water mist module 2 and sprayed out from the ironing plate 13, and together with the ironing plate 13, it treats the clothes.

[0029] The steam mist module 5 is used to heat the water in the water tank 11 into water mist steam. The steam mist module 5 is connected to the water mist outlet 14. The water in the water tank 11 is converted into steam mist by the steam mist module 5 and sprayed out from the ironing plate 13, and together with the ironing plate 13, it treats the clothes.

[0030] The beneficial effects of this application are as follows:

[0031] The garments can be treated differently by switching between the oxidizing group water mist module 2 and the steam water mist module 5. When high-temperature ironing is required, the steam water mist module 5 is activated to spray steam water mist from the ironing plate 13, which then irons the garments flat. For garments that cannot be treated at high temperatures, the oxidizing group water mist module 2 is activated to spray oxidizing group water mist from the ironing plate 13, which works in conjunction with the ironing plate 13 to treat the garments. The oxidizing group water mist is rich in oxidizing groups, which can sterilize and deodorize the garments, providing good care for them at non-high temperatures.

[0032] It should be understood that the ironing soleplate 13 is made of metal, and is equipped with a heating element (not shown) to heat it. For example, when the steam / mist module 5 is activated, the heating element activates and transfers heat to the ironing soleplate 13, heating it to the set temperature. Furthermore, the garment iron also includes a thermostat (not shown) that senses the temperature of the ironing soleplate 13. When the temperature of the ironing soleplate 13 is lower than the set temperature, the heating element activates; when the temperature of the ironing soleplate 13 reaches the set temperature, the heating element deactivates, thereby maintaining the temperature of the ironing soleplate 13 at the set temperature.

[0033] When the user turns on the oxide group water mist module 2, the heating element can be adjusted as needed. For example, the oxide group water mist module 2 can be turned on and the heating function can be turned off, i.e., the heating element is disconnected. Or, the oxide group water mist module 2 can be turned on and the heating function can be turned on. The heating element heats the ironing plate 13 to the set temperature. For clothes that cannot be treated at high temperatures, the heating temperature of the heating element can be adjusted to heat the ironing plate 13 at a low temperature (such as 35-45℃). The oxide group water mist and the low-temperature heated ironing plate 13 work together to treat the clothes, resulting in a better treatment effect.

[0034] To facilitate the flow of water from water tank 11 to the oxide group water mist module 2 or the steam water mist module 5, in one embodiment, a one-way conveyor 16 is also included. Water from water tank 11 is supplied to the oxide group water mist module 2 or the steam water mist module 5 via the one-way conveyor 16. The one-way conveyor 16 prevents water or water mist from the oxide group water mist module 2 and the steam water mist module 5 from flowing back into water tank 11.

[0035] Furthermore, in one embodiment, the unidirectional conveyor 16 is an electromagnetic pump or a unidirectional immersion body. For example, water in the water tank 11 is conveyed to the oxide group water mist module 2 or the steam water mist module 5 via the electromagnetic pump. Alternatively, water in the water tank 11 is conveyed to the oxide group water mist module 2 or the steam water mist module 5 via the unidirectional immersion body.

[0036] The unidirectional wetting body can draw water from one side and transfer it to the other, thus achieving unidirectional water transfer. Specifically, for example, one side of the unidirectional wetting body is located in the water tank 11, and the other side is located in the oxide group water mist module 2 or the steam water mist module 5. The water tank 11 and the oxide group water mist module 2 are connected by the unidirectional wetting body, and the water tank 11 and the steam water mist module 5 are also connected by the unidirectional wetting body. Another example is that the main body shell 1 forms a working cavity, and the unidirectional wetting body is located in the working cavity, separating a first cavity and a second cavity on both sides of the unidirectional wetting body. Figure 1 As shown, the first chamber is a water tank 11, and the second chamber is divided into working chambers for an oxide group water mist module 2 and a steam water mist module 5. Further details are omitted in this embodiment.

[0037] In one embodiment, a heat insulation plate 15 is provided between the oxide group water mist module 2 and the steam water mist module 5. This prevents the temperature of the steam water mist module 5 from being transferred to the oxide group water mist module 2 and affecting the temperature of the oxide group water mist.

[0038] In one embodiment, the garment ironing machine further includes an air supply module 6, which supplies air to the oxide group water mist module 2. This allows the produced oxide group water mist to be quickly delivered to the ironing soleplate 13 via the air outlet of the oxide group water mist module 2.

[0039] In order to generate oxidized water mist, in one embodiment, the oxidized water mist module 2 includes an oxidized water module 21 and an atomizer 4. The oxidized water module 21 is used to generate oxidized water, and the atomizer 4 is used to atomize the oxidized water.

[0040] Regarding the oxidation group generating structure, in one embodiment, the oxidation group module 21 includes at least one of an ozone water generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidation group generator, and an acidic water generator. The aforementioned oxidation group generating module can produce oxidation groups such as ozone, hypochlorous acid, and hydrogen peroxide, effectively killing bacteria, viruses, and other microorganisms, thus achieving sterilization and deodorization treatment of clothing.

[0041] Regarding the structure of the oxide group generation, for example, the oxide group module 21 includes an ozone water generator. Ozone has oxidizing and bactericidal properties, which can effectively kill bacteria, viruses, and other microorganisms. Furthermore, the ozone water is converted into ordinary water after sterilization and disinfection, making it non-toxic and safer, and more environmentally friendly. The ozone generator can be a high-voltage ionization ozone generator, an electrolytic ozone generator, or other ozone generators.

[0042] Regarding the oxidation group generation structure, in one embodiment, the oxidation group water module 21 includes an electrolytic cell, which includes several electrolytic units 3. Each electrolytic unit 3 includes a first electrode 31, an electrolyte membrane 32, and a second electrode 33 stacked sequentially. The electrolytic cell converts water into oxidation group-containing water through low-pressure electrolysis. The oxidation group-containing water generated by the electrolytic units through low-pressure electrolysis is rich in oxidation groups, such as ozone, oxygen atoms, and hydroxyl radicals, effectively killing bacteria, viruses, and other microorganisms, thus achieving sterilization and deodorization treatment of clothing.

[0043] Regarding the electrolysis unit, in one embodiment, the electrode material of the first electrode 31 and / or the second electrode 33 is one of conductive silicon, conductive diamond, or elemental titanium, platinum, lead, tantalum, iridium, palladium, antimony, or their oxides. For example, the electrode material of the first electrode 31 and / or the second electrode 33 is conductive silicon or conductive diamond; or, alternatively, the electrode material of the first electrode 31 and / or the second electrode 33 is one of elemental titanium, platinum, lead, tantalum, iridium, palladium, antimony, or their oxides.

[0044] It should be understood that the orientation of the electrolysis unit is not limited in the embodiments of this application. For example, the electrolysis unit may be arranged vertically or horizontally.

[0045] For example, the electrolyte membrane 32 is a proton exchange membrane (PEM), which serves to provide hydrogen ion channels, i.e., the H generated by the first electrode 31. + The protons migrate through the proton exchange membrane to the second electrode 33, thereby increasing the reaction rate and the product formation rate.

[0046] To generate steam mist, in one embodiment, the steam mist module 5 includes a steam generating chamber 51 and a heating element 52 disposed in the steam generating chamber 51. The water tank 11 is connected to the steam generating chamber 51 via the one-way conveyor 16, and the steam generating chamber 51 is connected to the mist outlet 14. The heating element 52 heats and evaporates the water in the steam generating chamber 51 to generate mist, which is then conveyed to the ironing soleplate 13.

[0047] In order to generate steam mist, in one embodiment, the steam mist module 5 includes a steam generating chamber 51, which is disposed on the top of the ironing sole plate 13, and the side wall material of the steam generating chamber 51 is metal. That is, the steam generating chamber 51 is a metal chamber. The ironing sole plate 13 is heated by the heating element, and the heat is transferred to the steam generating chamber 51 that is close to it. When water enters the steam generating chamber 51, it is evaporated by the high temperature of the metal chamber to form steam mist, which is then transported to the ironing sole plate 13.

[0048] In one embodiment, the garment ironing machine further includes a circuit board 7, which is disposed inside the main body housing 1, and the oxide group water module 2121 is electrically connected to the circuit board 7.

[0049] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0050] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A garment steamer, characterized in that, Includes the main shell, the oxide group water mist module, and the steam water mist module; An ironing plate is installed on the main body shell, and the ironing plate has a water mist outlet; The main body shell is formed with a water tank, and the main body shell has a water inlet, which is connected to the water tank. The oxide group water mist module is used to convert the water in the water tank into oxide group water mist, and the oxide group water mist module is connected to the water mist outlet; The steam mist module is used to heat the water in the water tank into water mist steam, and the steam mist module is connected to the water mist outlet.

2. The garment steamer according to claim 1, characterized in that It also includes a one-way conveyor, through which water in the water tank is supplied to the oxide group water mist module or the steam water mist module.

3. The garment steamer according to claim 2, characterized in that The unidirectional conveyor is an electromagnetic pump or a unidirectional immersion body.

4. The garment steamer according to claim 1, characterized in that, A heat insulation plate is provided between the oxide group water mist module and the steam water mist module.

5. The garment steamer according to claim 1, characterized in that, It also includes an air supply module, which is used to supply air to the oxide group water mist module.

6. The garment steamer according to claim 1, characterized in that, The oxidized group water mist module includes an oxidized group water module and an atomizer. The oxidized group water module is used to generate oxidized group water, and the atomizer is used to atomize the oxidized group water.

7. The garment steamer according to claim 6, characterized in that The oxidized water module includes at least one of the following: an ozone water generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidized group generator, and an acidic water generator.

8. The garment steamer according to claim 6, characterized in that The oxidized water module includes an electrolytic cell, which includes several electrolytic units. Each electrolytic unit includes a first electrode, an electrolyte membrane, and a second electrode stacked in sequence. The electrolytic cell converts water into oxidized water through low-pressure electrolysis.

9. The garment steamer according to claim 8, characterized in that The electrode material of the first electrode and / or the second electrode is one of conductive silicon, conductive diamond, or elemental titanium, platinum, lead, tantalum, iridium, palladium, antimony, or their oxides.

10. The garment steamer according to claim 2, characterized in that, The steam mist module includes a steam generating chamber and a heating element disposed in the steam generating chamber. The water tank is connected to the steam generating chamber through the one-way conveyor, and the steam generating chamber is connected to the mist outlet.

11. The garment steamer according to claim 1, characterized in that, The steam mist module includes a steam generating chamber, which is located on top of the ironing soleplate, and the sidewall material of the steam generating chamber is metal.