CN216535201U - Wireless steam mop - Google Patents

Wireless steam mop Download PDF

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Publication number
CN216535201U
CN216535201U CN202122977683.4U CN202122977683U CN216535201U CN 216535201 U CN216535201 U CN 216535201U CN 202122977683 U CN202122977683 U CN 202122977683U CN 216535201 U CN216535201 U CN 216535201U
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Prior art keywords
water
steam
gasification
chamber
mop
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CN202122977683.4U
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Chinese (zh)
Inventor
周义允
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Xiamen Leshi Jiwu Intelligent Technology Co ltd
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Xiamen Yixing Intelligent Technology Co ltd
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  • Cleaning By Liquid Or Steam (AREA)
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Abstract

The utility model discloses a wireless steam mop, which comprises a handle, a host and a mop head; the inside steam generator that is equipped with of host computer, this steam generator include water tank set spare, water gasification pot and be used for carrying out the heating element that heats to water gasification pot. The water gasification pot is provided with a first gasification chamber and a second gasification chamber which are communicated with each other, the water outlet of the water tank component is communicated with the first gasification chamber, and the bottom of the main machine is provided with a plurality of steam outlets communicated with the second gasification chamber. According to the utility model, the water gasification pot is provided with two gasification chambers according to the physical change process of water, so that the heating area of water is increased, the water is ensured to be completely vaporized into high-temperature steam, and the high-temperature steam is uniformly and rapidly sprayed onto the mop head, thereby overcoming the defects of the prior art and effectively improving the cleaning effect of the wireless steam mop.

Description

Wireless steam mop
Technical Field
The utility model relates to the field of household appliances, in particular to a wireless steam mop.
Background
Along with the improvement of the quality of life of people, higher requirements are also put forward on the cleaning efficiency of the intelligent cleaning electric appliance. The working principle of the steam mop is that dirt oil stain particles are dissolved by steam at high temperature and high pressure and are vaporized and evaporated. When the steam mop is used for mopping in a steam environment, various bacteria, mites, microorganisms and pathogens attached to an object can be completely eliminated.
At present, the vaporization effect of a water gasification pot of most steam mops is poor, the temperature of steam sprayed from a steam outlet is reduced quickly, condensed water is easily formed, and the cleaning effect of the steam mop is seriously influenced. Moreover, the existing steam mop can be normally used only under the condition of connecting a power line, steam spraying is maintained, once the power line is pulled out, steam cannot be generated, and user experience is further reduced.
Disclosure of Invention
The utility model provides a wireless steam mop, and mainly aims to solve the problems in the prior art.
The utility model adopts the following technical scheme:
a wireless steam mop comprises a handle, a main machine and a mop head. The inside steam generator that is equipped with of above-mentioned host computer. The steam generator comprises a water tank assembly, a heating assembly and a water gasification pot. The heating assembly is used for heating the water gasification pot; the water gasification pot is provided with a first gasification chamber and a second gasification chamber which are communicated with each other; the water outlet of the water tank component is communicated with the first gasification chamber, and the bottom of the main machine is provided with a plurality of steam outlets communicated with the second gasification chamber.
Furthermore, the water gasification pot is also provided with a steam chamber communicated with the second gasification chamber, and the steam chamber is provided with a plurality of air outlets at the corresponding positions of the steam outlets.
Furthermore, a plurality of baffles which are arranged in a staggered mode are arranged in the first gasification chamber, so that the first gasification chamber forms a zigzag water vapor channel.
Furthermore, two side walls of the steam chamber are provided with gaps; and a flow distribution plate is arranged in the second gasification chamber, so that water vapor is distributed and then enters the steam chamber from the two notches.
Further, the water tank assembly comprises a water tank, a water outlet box, a water inlet switch and a water stop valve; the water outlet box is arranged at the bottom of the water tank and is provided with a water inlet communicated with the water tank and a water outlet; the water inlet switch is arranged at the water inlet, and the water stop valve is arranged at the water outlet.
Furthermore, one end of the handle is provided with a holding part, and the other end of the handle is hinged to the main machine and is linked with the water stop valve.
Further, the heating assembly comprises a heating pipe arranged above the water gasification pot; the main machine is provided with a power supply input port connected with the heating pipe and is detachably provided with a power supply wire used for connecting an external power supply.
Further, the main machine also comprises a shell arranged outside the steam generator; the shell comprises a shell and a bottom plate which are connected with each other, the bottom plate is provided with a plurality of steam outlets, and the bottom plate is connected with the mop head.
Further, the heat insulation fiber heat insulation structure further comprises an inner shell arranged inside the outer shell, and heat insulation fibers are arranged between the outer shell and the inner shell.
From the above description of the structure of the present invention, it can be seen that the present invention has the following advantages:
in one aspect, the present invention optimizes the structure of a steam generator including a water tank assembly, a water gasification boiler, and a heating assembly for heating the water gasification boiler. The water gasification pot is provided with a first gasification chamber and a second gasification chamber which are communicated with each other, the water outlet of the water tank component is communicated with the first gasification chamber, and the bottom of the main machine is provided with a plurality of steam outlets communicated with the second gasification chamber. During the use, the rivers in the water tank subassembly flow into first vaporizer and carry out preliminary vaporization and form water vapor mixture, flow into in the second vaporizer and be totally vaporized into high temperature steam after that to spout to mop overhead from the steam outlet. According to the utility model, the water gasification pot is provided with two gasification chambers according to the physical change process of water, so that the heating area of water is increased, the water is ensured to be completely vaporized into high-temperature steam, and the high-temperature steam is uniformly and rapidly sprayed onto the mop head, thereby overcoming the defects of the prior art and effectively improving the cleaning effect of the wireless steam mop.
Secondly, the main machine of the utility model is provided with a power supply input port connected with the heating pipe and is detachably provided with a power supply wire used for connecting an external power supply. Before the use equipment, heat through connecting the power cord, wait that aqueous gasification pot heats and pull out the power cord after the appointed temperature, carry out work through the waste heat of aqueous gasification pot, realize wireless operation, improved the flexibility and the clean efficiency of wireless steam mop.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an exploded view of the present invention.
Fig. 3 is a schematic diagram of the inner cavity structure of the water gasification boiler of the utility model.
FIG. 4 is a schematic cross-sectional view of a water tank assembly according to the present invention.
FIG. 5 is a schematic cross-sectional view of the present invention at rest.
Fig. 6 is a schematic cross-sectional view of the present invention in operation.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1 to 4, the wireless steam mop comprises a handle 1, a main machine 2 and a mop head 3, wherein a steam generator is arranged inside the main machine 2. The steam generator comprises a water tank assembly, a heating assembly and a water gasification pot 21, wherein the heating assembly is used for heating the water gasification pot 21. The water gasification pot 21 has a first gasification chamber 211 and a second gasification chamber 212 which are communicated with each other, a water outlet 51 of the water tank assembly is communicated with the first gasification chamber 211, and a plurality of steam outlets communicated with the second gasification chamber 212 are arranged at the bottom of the main machine 2. When the mop is used, water in the water tank assembly flows into the first gasification chamber 211 to be primarily vaporized to form a water-vapor mixture, then flows into the second gasification chamber 212 to be completely vaporized into high-temperature steam, and is sprayed out of the steam outlet onto the mop head 3. According to the utility model, the water gasification pot 21 is provided with two gasification chambers according to the physical change process of water, so that the heating area of water is increased, the water is ensured to be completely vaporized into high-temperature steam, and the high-temperature steam is uniformly and rapidly sprayed onto the mop head, thereby overcoming the defects of the prior art and effectively improving the cleaning effect of the wireless steam mop.
As shown in fig. 3, a plurality of baffles are disposed in the first vaporization chamber 211 and are offset from each other, so that the first vaporization chamber 211 forms a tortuous moisture passage 214. Water dripping from the tank assembly flows along the tortuous moisture path 214 and absorbs sufficient heat to form a partially vaporized moisture mixture. Therefore, the design in the first gasification chamber 211 helps to slow down the water flow rate, thereby prolonging the heating time thereof and laying the foundation for the complete vaporization of the water in the second gasification chamber 212.
As shown in fig. 2 and 3, the water gasification pot 21 further includes a steam chamber 213 connected to the second gasification chamber 212, and the steam chamber 213 includes a plurality of air outlets 215 at positions corresponding to the steam outlets. Specifically, both side walls of the steam chamber 213 are provided with notches; a diversion plate is arranged in the second gasification chamber 212, so that the water vapor enters the steam chamber 213 from the two notches after being diverted. The water vapor mixture initially formed in the first vaporizing chamber 211 enters the second vaporizing chamber 212 to continuously absorb heat, and superheated steam is formed, and under the action of the flow dividing plate, the superheated steam enters the steam chamber 213 in two layers along the gap, and is uniformly and rapidly discharged to the mop head 3. Therefore, the design of the second vaporizing chamber 212 can ensure that the water-vapor mixture is completely vaporized, and the design of the steam chamber 213 can achieve the objectives of collecting steam and intensively and rapidly discharging the steam, so as to avoid the problem of formation of condensed water due to the temperature drop of the steam, and overcome the defects of the prior art.
As shown in fig. 4, the water tank assembly includes a water tank 4 and a water outlet box 5 disposed at the bottom of the water tank 4, wherein the water outlet box 5 is provided with a water inlet 41 communicated with the water tank 4 and is provided with the water outlet 51. The water tank assembly further comprises a water inlet switch 42 and a water stop valve 52, wherein the water inlet switch 42 is arranged at the water inlet 41, and the water stop valve 52 is arranged at the water outlet 51. The water inlet 41 is closed by the water inlet switch 42. In order to improve the intelligent level of the wireless steam mop, a temperature sensing metal sheet 43 is further arranged at the bottom of the water tank. When the water gasification pot 21 is heated, heat is transferred to the temperature sensing metal sheet 43, so that the temperature sensing metal sheet 43 is deformed to open the water inlet switch 42, and water in the water tank 4 automatically flows into the water outlet box 5.
As shown in fig. 3 to 6, one end of the handle 1 is provided with a grip portion 11, and the grip portion 11 is provided with a control button; the other end of the handle 1 is hinged to the main machine 2 and is linked with the water stop valve 52. In operation, after the control button is pressed to heat the device, the handle 1 is tilted backwards by holding the grip portion 11, and the water stop valve 52 is moved upwards by the handle 1. When the handle 1 is tilted backwards to a designated position, the water in the water outlet box 5 automatically flows into the first vaporizing chamber 211 along the water outlet. When the handle 1 is in an upright standing state, the equipment stops working, and after the water stop valve 52 moves downwards to a specified position under the action of the handle 1, the water stop valve 52 and the water outlet 51 are in a closed state.
As shown in fig. 1 to 2, the heating assembly includes a heating pipe 61 disposed above the water vaporization pot; the main body 2 is provided with a power input port connected to the heating pipe 61 and is detachably provided with a power cord 62 for connecting an external power source. Before the device is used, the power line 62 is inserted into the power input port to heat the device, when the water gasification pot 21 is heated to a specified temperature, the power line 62 is pulled out, and the device works through the waste heat of the water gasification pot 21, so that the device is not limited by the length of the power line 62, wireless operation is realized, and the flexibility and the cleaning efficiency of the wireless steam mop are improved.
As shown in fig. 1 to 2, the main unit 2 further includes a housing provided outside the steam generator, which includes a case 22 and a bottom plate 23 connected to each other. The bottom plate 23 is provided with a plurality of steam outlets, and the bottom plate 23 is connected with the mop head 3, so that high-temperature steam can be uniformly transmitted to all parts of the mop head 3 through the steam outlets, and the cleaning effect of the wireless steam mop is further improved.
As shown in fig. 1 to 2, in order to ensure that the water gasification pot 21 can maintain a certain temperature and work by waste heat after the power cord 62 is pulled out, the housing further includes an inner shell 24 covering the water gasification pot 21, the inner shell 24 is disposed inside the outer shell 22, and the heat insulation fiber 25 is disposed between the outer shell 22 and the inner shell 24. The setting of casing can make water gasification pot 21 keep certain temperature, can also avoid the user to be scalded because the mistake touches water gasification pot 21, can avoid again that the dust filth gets into equipment jam and pollutes the steam structure, has satisfied the life demand of people pluralism.
The above description is only an embodiment of the present invention, but the design concept of the present invention is not limited thereto, and any insubstantial modifications made by using the design concept should fall within the scope of infringing the present invention.

Claims (9)

1. The utility model provides a wireless steam mop, includes handle, host computer and mop head, the inside steam generator that is equipped with of host computer, its characterized in that: the steam generator comprises a water tank assembly, a heating assembly and a water gasification pot; the heating assembly is used for heating the water gasification pot; the water gasification pot is provided with a first gasification chamber and a second gasification chamber which are communicated with each other; the water outlet of the water tank assembly is communicated with the first gasification chamber, and a plurality of steam outlets communicated with the second gasification chamber are formed in the bottom of the main machine.
2. The cordless steam mop of claim 1, wherein: the water gasification pot is also provided with a steam chamber communicated with the second gasification chamber, and the steam chamber is provided with a plurality of air outlets at the corresponding positions of the steam outlets.
3. The cordless steam mop of claim 1, wherein: the first gasification chamber is internally provided with a plurality of baffles which are arranged in a staggered manner, so that the first gasification chamber forms a tortuous water vapor channel.
4. The cordless steam mop of claim 2, wherein: notches are formed in the two side walls of the steam chamber; and a flow distribution plate is arranged in the second gasification chamber, so that water vapor is distributed and then enters the steam chamber from the two gaps.
5. The cordless steam mop of claim 1, wherein: the water tank component comprises a water tank, a water outlet box, a water inlet switch and a water stop valve; the water outlet box is arranged at the bottom of the water tank, is provided with a water inlet communicated with the water tank and is provided with the water outlet; the water inlet switch is arranged at the water inlet, and the water stop valve is arranged at the water outlet.
6. The cordless steam mop of claim 5, wherein: one end of the handle is provided with a holding part, and the other end of the handle is hinged to the main machine and is linked with the water stop valve.
7. The cordless steam mop of claim 1, wherein: the heating assembly comprises a heating pipe arranged above the water gasification pot; the host is provided with a power supply input port connected with the heating pipe, and is detachably provided with a power supply wire used for connecting an external power supply.
8. The cordless steam mop of claim 1, wherein: the main machine also comprises a shell arranged outside the steam generator; the shell comprises a shell and a bottom plate which are connected with each other, the bottom plate is provided with a plurality of steam outlets, and the bottom plate is connected with the mop head.
9. The cordless steam mop of claim 8, wherein: the heat insulation fiber thermal insulation structure is characterized by further comprising an inner shell arranged inside the outer shell, and heat insulation fibers are arranged between the outer shell and the inner shell.
CN202122977683.4U 2021-12-01 2021-12-01 Wireless steam mop Active CN216535201U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122977683.4U CN216535201U (en) 2021-12-01 2021-12-01 Wireless steam mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122977683.4U CN216535201U (en) 2021-12-01 2021-12-01 Wireless steam mop

Publications (1)

Publication Number Publication Date
CN216535201U true CN216535201U (en) 2022-05-17

Family

ID=81578186

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122977683.4U Active CN216535201U (en) 2021-12-01 2021-12-01 Wireless steam mop

Country Status (1)

Country Link
CN (1) CN216535201U (en)

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Address after: Area A, No. 99, Zhensan Road, Sikou, Tong'an District, Xiamen City, Fujian Province 361100

Patentee after: Xiamen Leshi Jiwu Intelligent Technology Co.,Ltd.

Address before: 361100 one of the 4th floor, No. 293, Tong'an Park, Tong'an industrial concentration zone, Xiamen, Fujian

Patentee before: Xiamen Yixing Intelligent Technology Co.,Ltd.