Atomization mop

By incorporating a two-stage stepped hole and a double-sealed atomizing device on the side wall of the mop board, the problems of uneven spraying and loose atomizing discs in atomized mops are solved, achieving uniform wetting and sealing effects, and improving cleaning efficiency and safety.

CN224220090UActive Publication Date: 2026-05-12BAZHOU LIANGJIE HOUSEHOLD GOODS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BAZHOU LIANGJIE HOUSEHOLD GOODS CO LTD
Filing Date
2025-05-12
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The existing atomizing device of the atomizing mop is located under the mop plate. The spray pattern is uneven, resulting in uneven wetting of the wiping object and the floor, which affects the cleaning effect. In addition, the atomizing plate is prone to loosening or displacement, which can lead to liquid leakage.

Method used

The atomizing device is installed on the side wall of the mop board, using a two-stage stepped hole and a double sealing structure. The atomizing component is tightly embedded in the opening through an interference fit, and the sealing and opening form a double seal to prevent loosening and leakage. The clamping frame design uses a sloping protrusion and a limiting groove to eliminate the need for manual installation of wiping materials.

Benefits of technology

It achieves uniform spray coverage, avoids uneven wetting and liquid leakage, improves cleaning efficiency, is especially suitable for humidity-sensitive floor materials, and simplifies the installation process of the wiping material.

✦ Generated by Eureka AI based on patent content.

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Abstract

The atomization mop comprises a mop plate, a mop rod is connected to the back side of the mop plate, an atomization device and a containing cavity used for containing liquid are arranged on the mop plate, the atomization device comprises an atomization piece, an open hole is formed in the side wall of the containing cavity, and the atomization piece is arranged in the open hole. The atomizing part is located in the open hole and enables liquid in the containing cavity to be atomized by the atomizing part and discharged when the liquid passes through the open hole. Due to the arrangement mode of the atomizing device and the containing cavity of the atomizing mop, water mist sprayed out by the atomizing part is not affected by movement of the mop, meanwhile, the sealing performance of the containing cavity is high, the fixing effect of the atomizing part is good, and looseness cannot be generated.
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Description

Technical Field

[0001] This utility model relates to the field of daily necessities technology, specifically to a misting mop. Background Technology

[0002] Atomizing mops are tools for cleaning floors. Through a built-in atomizing device, they atomize water or cleaning solution into tiny water mist particles, which are then sprayed directly onto the floor, reducing the need for frequent wetting of cleaning materials and improving cleaning efficiency. Currently, the atomizing device in most atomizing mops is located under the mop handle, using a vertical downward spray method. This spraying method has some shortcomings in practical use.

[0003] First, the spray is immediately covered by the wiping material upon being sprayed, preventing dust, stains, and other dirt from being mixed with the spray and resulting in poor cleaning. Second, the bottom spray is blocked by moving wiping materials during use, leading to uneven moisture distribution. The wiping material and floor near the spray are directly impacted by the spray and become more wet, while the wiping material and floor further away from the spray remain relatively dry. Uneven wetting of the wiping material and floor affects the mopping effect; the wetter areas leave water stains and make the floor slippery, while the drier areas cannot effectively absorb and remove dirt, resulting in incomplete cleaning. Furthermore, existing atomizing mops atomize the liquid in the mop's container (the chamber for holding water or cleaning solution) by connecting an atomizing plate to a tube extending from the mop's container. The atomizing plate is simply snapped into the tube during installation, lacking an effective fixing and sealing structure. This makes the atomizing plate prone to loosening or displacement during use, leading to leakage of the liquid in the container. Utility Model Content

[0004] The purpose of this utility model is to provide a misting mop. The way the misting device and the receiving cavity of the misting mop are set up makes the water mist sprayed by the misting component unaffected by the movement of the mop. At the same time, the receiving cavity has strong sealing performance and the misting component has a good retention effect, so it will not loosen.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A misting mop includes a mop board, a mop handle connected to the back side of the mop board, an atomizing device and a receiving cavity for containing liquid on the mop board, the atomizing device including an atomizing element, an opening on the front side wall of the receiving cavity, the atomizing element being located in the opening and causing the liquid in the receiving cavity to be atomized and discharged by the atomizing element when passing through the opening.

[0007] Preferably, the atomizing element includes an atomizing plate and a soft rubber ring disposed circumferentially along the edge of the atomizing plate, the soft rubber ring being interference-fitted with the inner wall of the opening.

[0008] Preferably, a plug is also provided in the opening, the plug is interference-fitted with the opening, and a through hole is provided in the middle of the plug, so that the liquid in the receiving cavity is atomized by the atomizing element and discharged through the through hole.

[0009] Preferably, the opening is a two-stage stepped opening with two different diameter segments. The diameter of the larger end segment of the opening is larger than that of the smaller end segment, forming a stepped transition. The smaller end segment of the opening is connected to the receiving cavity, and the atomizing element and the plug are both inserted into the larger end segment of the opening.

[0010] Preferably, a limiting groove is provided on the side wall of the larger end section of the opening, and two limiting grooves are provided and arranged opposite to each other. A limiting part is correspondingly provided on the plug, and the limiting part is inserted into the limiting groove.

[0011] Preferably, a strip-shaped protrusion is provided on the side wall of the large end section of the opening along the length direction of the opening, and a corresponding slide is provided on the plug, wherein the strip-shaped protrusion is inserted in the slide and the slide slides along the strip-shaped protrusion.

[0012] Preferably, there are two openings, two atomizing elements, and two sealing elements. The openings are symmetrically arranged in front of the mop plate. A notch is provided inside the opening. The notch is located below the atomizing element and is used for the atomizing element's insertion port to pass through and connect to the power supply. A liquid filling part is provided at the top of the receiving cavity.

[0013] Preferably, it also includes a top cover and a U-shaped component, the receiving cavity is disposed on the U-shaped component, a closing part is provided on the U-shaped component, a first top cover mounting groove is provided on the top cover, the U-shaped component cooperates with the first top cover mounting groove and is inserted into the first top cover mounting groove; the atomizing device is disposed between the top cover and the closing part.

[0014] Preferably, the atomizing device further includes a circuit board, a battery, and an atomizing switch. The battery is electrically connected to the circuit board, and the circuit board is electrically connected to the atomizing switch and the atomizing element. The atomizing switch is located on the mop head, and the atomizing function of the atomizing device is turned on or off by pressing the atomizing switch.

[0015] Preferably, the atomizing device further includes a circuit board, a battery, and an atomizing switch. The battery is electrically connected to the circuit board, and the circuit board is electrically connected to the atomizing switch and the atomizing element. The atomizing switch is located on the mop handle and can be a power button or a sensor screen. The atomizing function of the atomizing device can be turned on or off by operating the power button or the sensor screen.

[0016] Preferably, the mop board includes a top cover, and the mop board and the mop handle are connected by a connecting assembly. The connecting assembly includes a first connector, a steering block, and a second connector. A first through hole is provided in the middle of the top cover. The first connector includes a base and a mounting post connected to the middle of the base. After the mounting post passes through the first through hole from below the top cover, the base is engaged with the bottom of the top cover to achieve the connection between the first connector and the top cover.

[0017] Preferably, a first auricle seat is provided at the top of the mounting post, and two first auricle seats are provided, with the two first auricle seats arranged along the length direction of the mop board; a first protrusion is provided on the side of the steering block, and the first protrusion is inserted into the first auricle seat and can rotate in the first auricle seat; a second through hole is provided at the center of the steering block, and the second through hole is perpendicular to the first protrusion; a second auricle seat is provided at one end of the second connector, and two second auricle seats are provided, with the second through hole sandwiched between the two second auricle seats and connected by a rotating shaft.

[0018] Preferably, the cross-section of the steering block is circular, and arc-shaped grooves are provided circumferentially on both the front and rear sides of the steering block. The circular surface formed by the arc-shaped grooves is concentrically arranged with the second through hole. A protrusion corresponding to the arc-shaped groove is provided on the inner wall of the second auricle seat. The protrusion is engaged in the arc-shaped groove to realize the left and right steering fixation of the second connector.

[0019] Preferably, the mop board includes a top cover and a bottom cover, with clamping frames movably connected between the two sides of the top and bottom covers. A second top cover mounting groove is provided below the top cover, and a first connector is inserted into the second top cover mounting groove. A limiting plate is provided between the two clamping frames, and a limiting plate slide is provided on the limiting plate. A convex shaft is correspondingly provided on the two clamping frames. The convex shaft is inserted into the limiting plate slide and slides to achieve the following: when the clamping part moves closer to the center of the bottom cover, it clamps the wiping object; when the clamping part moves away from the center of the bottom cover, it releases the wiping object.

[0020] Preferably, the limiting plate has a sloping protrusion, and a clamping frame notch is provided between the two clamping frames. The clamping frame notch allows the base of the first connecting member and the sloping protrusion to pass through. The extension lines of the limiting plate slide near the center of the bottom cover can intersect. When the first connecting member is pressed down, the lower part of the first connecting member contacts the sloping protrusion, causing the limiting plate to be squeezed by a sloping force, which causes the limiting plate to move away from the first connecting member. At this time, the limiting plate slide exerts an inward squeeze on the convex shaft, thereby driving the two clamping frames to move closer to the center of the bottom cover to clamp the wiping object.

[0021] Preferably, a first elastic element is provided between the two clamping frames, and a clamping frame mounting groove is provided at the corresponding position of the two clamping frames. A cross-shaped protrusion is fixedly provided in the clamping frame mounting groove, and the first elastic element is a first spring with its two ends respectively sleeved on the periphery of the two cross-shaped protrusions.

[0022] Preferably, there are two limiting plates symmetrically arranged at both ends of the first connecting member. The limiting plates are arranged between the clamping frame and the bottom cover, and the inclined protrusions of the two limiting plates pass through the notch of the clamping frame and abut against the end of the first connecting member.

[0023] Preferably, a first connector mounting groove is provided at the bottom center of the first connector, and a second elastic member is inserted into the first connector mounting groove with the other end of the second elastic member abutting against the bottom cover. The second elastic member is used to restore the first connector to the unpressed state, thereby canceling the oblique force of the bottom of the first connector on the limiting plate. At this time, the elastic force of the first elastic member moves the two clamps away from the center of the bottom cover, thereby causing the clamps to release the wiping material.

[0024] Preferably, the second top cover mounting groove is provided with a first support plate and a second support plate, which divide the second top cover mounting groove into top cover receiving grooves on both sides and a top cover retaining groove in the middle. The top cover retaining groove communicates with the first through hole. Slotted holes are provided on opposite sides of the top cover receiving groove. A slider is provided in the top cover receiving groove, and strip-shaped blocks are provided on both sides of the slider. The strip-shaped blocks are inserted into the strip-shaped holes to realize the slider sliding connection in the top cover receiving groove, and a gap is provided between the slider and the top cover receiving groove. A third elastic element is provided between the slider and the first support plate or the second support plate. A first connecting member receiving groove is provided on the first connecting member for the slider to move. A vertical groove for the strip-shaped blocks to move and a horizontal groove connected to the top of the vertical groove are provided on the side wall of the first connecting member receiving groove. When the first connecting member is pressed down, the horizontal groove corresponds to the strip-shaped hole. When the first connecting member is driven by the second elastic element to return to its original state, the strip-shaped blocks can move in the vertical groove.

[0025] Preferably, the slider is provided with a second protrusion on the side facing the top cover retaining groove, and the third elastic element is a third spring, with the second protrusion inserted into one end of the third spring.

[0026] Preferably, a slider actuating part is provided at the top of the slider, and a corresponding top cover through hole is provided on the top cover. The slider actuating part passes through and protrudes from the top cover through hole. When the first connector is pressed down, the elastic force of the third spring pushes the slider to move away from the center of the top cover, so that the strip block slides in the transverse groove and is fixed at the end of the transverse groove away from the vertical groove. At this time, the strip block limits the receiving groove side wall of the first connector, that is, the first connector is fixed after being pressed down. When the slider actuating part is moved towards the center of the top cover, the third spring tightens and the strip block is located directly above the vertical groove. At this time, the second spring drives the first connector to return to the unpressed state.

[0027] Preferably, the clamping frame is provided with an elongated hole, the bottom cover is provided with a bottom cover connecting post or a bottom cover connecting groove, and the top cover is provided with a corresponding top cover connecting groove or a top cover connecting post. The top cover connecting post passes through the elongated hole and connects to the bottom cover connecting groove, or the bottom cover connecting post passes through the elongated hole and connects to the top cover connecting groove.

[0028] Preferably, a clamping extension plate is formed by extending downward from the side wall of the clamping frame away from the center of the bottom cover. The lower end of the clamping extension plate is evenly distributed with a plurality of first clamping teeth facing the center of the bottom cover. The edges of both ends of the bottom cover are evenly distributed with a plurality of second clamping teeth that are staggered with the first clamping teeth. The lower end of the clamping extension plate is also provided with a third clamping tooth that is parallel to the first clamping teeth. The third clamping tooth is located above the first clamping teeth and is staggered from the first clamping teeth.

[0029] Preferably, the mop handle includes a receiving rod, an extension rod, and a clamping assembly. The extension rod is connected between the receiving rod and the clamping assembly. The receiving rod is engaged with a second connector. The side wall of the second connector has a second connector through hole. The lower part of the receiving rod has a receiving rod mounting groove. The receiving rod mounting groove is connected to a locking block via a spring. The locking block matches the second connector through hole and can be engaged in the second connector through hole.

[0030] Preferably, the clamping assembly includes a clamping link and a jaw member, the clamping link and the jaw member are threadedly connected, the other end of the extension rod is inserted into the interior of the clamping link, and one end of the jaw member extends into the extension rod; the jaw member includes an integrally formed jaw connecting part and two clamps, the two clamps can extend into the interior of the extension rod, and a fourth spring is connected to the middle of the inner side of the two clamps.

[0031] Preferably, the clamping assembly further includes a hanging rope, and the end of the clamping claw connecting part away from the clamping claw is provided with a connecting part groove, a cover is snapped into the connecting part groove, the cover can seal the connecting part groove, the two ends of the hanging rope are respectively provided with hanging rope protrusions, the middle of the hanging rope protrusions is provided with hanging rope holes, and the two sides of the cover groove are provided with cover protrusions, the cover protrusions can be inserted into the hanging rope holes.

[0032] In the above technical solution, by placing the atomizing element on the side wall of the receiving cavity, a dynamic wetting mode of "spraying and wiping simultaneously" is achieved, completing wetting and cleaning simultaneously. This avoids the need for repeated soaking and wringing of traditional mops, and also avoids the slippery floor caused by pre-spraying water. The spray from the two atomizing discs evenly wets a small area of ​​the floor to be wiped, which can quickly penetrate the stain layer without forming water accumulation. It is especially suitable for moisture-sensitive materials such as wood floors and tiles. During the cleaning process, since the spray is sprayed first and then the wiping material is used, the movement of the wiping material will not obstruct the spray, allowing the spray to evenly cover the floor. The wiping material will not cause uneven local moisture when wiping.

[0033] An opening is provided on the sidewall of the receiving cavity. This opening is a two-stage stepped hole with two sections of different diameters. The diameter of the larger end section is larger than that of the smaller end section to form a stepped transition. The smaller end section communicates with the receiving cavity, while the larger end section provides sufficient installation depth. The atomizing element and the plug are tightly embedded in the inner wall of the larger end section through an interference fit. The axial limiting effect of the stepped surface prevents the atomizing element from axially displacing and falling into the receiving cavity. The interference fit between the soft rubber ring and the inner wall of the larger end of the stepped hole forms the first seal, and the interference fit between the plug and the inner wall of the larger end of the stepped hole forms the second seal. This double-sealing structure blocks the liquid leakage path.

[0034] A limiting groove is provided on the side wall of the larger end section of the opening, and a limiting part is provided on the plug. The limiting part cooperates with the limiting groove. When the plug is inserted into the larger end section of the opening, the limiting part is inserted into the limiting groove, preventing the plug from moving within the opening. A strip-shaped protrusion is also provided on the side wall of the larger end of the opening along the length direction of the opening. A corresponding slide is provided on the plug, with the length direction of the slide aligned with the extension direction of the strip-shaped protrusion. When the plug is inserted into the larger end section of the opening, the slide and the strip-shaped protrusion form an insertion relationship. Because the protrusion extends along the axis of the opening, the plug moves linearly in a single direction during insertion, preventing the plug from deflecting or tilting during installation or use, and ensuring accurate cooperation between the limiting part and the limiting groove.

[0035] Installing and replacing wipes on the wiper requires no manual operation. To install a wipe, simply press down on the first connector. The lower part of the first connector contacts the inclined protrusion of the limiting plate. The downward pressure of the first connector generates an oblique force that pushes the limiting plate laterally. The inclined design of the limiting plate's slide rail causes the convex shaft to move towards the center of the bottom cover along the slide rail, simultaneously causing the clamping frames on both sides to retract. At this time, the first clamping teeth on the clamping extension plate interlock with the second clamping teeth on the bottom cover, clamping the wipe. Simultaneously, the third spring pushes the slider outward, and the strip block slides along the transverse groove to its end, forming a self-locking mechanism to prevent the first connector from accidentally resetting.

[0036] To unlock, move the slider towards the center of the top cover. The third spring compresses, and the strip block retracts to the top of the vertical slot. At this time, the second spring drives the first connector to return to its unpressed state. Simultaneously, the oblique force exerted by the first connector on the limiting plate is released. The first spring pushes the two clamping frames to move away from each other, thus allowing the clamping frames to unfold outward and release the grip on the item being wiped. When removing the item, simply move the slider by hand, avoiding contact between your hands and dirt or germs on the item. Attached Figure Description

[0037] Figure 1 This is a three-dimensional structural diagram of the atomizing switch of this utility model installed on the mop board;

[0038] Figure 2 This is a three-dimensional structural diagram of the atomizing switch of this utility model mounted on the mop handle.

[0039] Figure 3 This is a schematic diagram of the disassembled structure of this utility model;

[0040] Figure 4 This is a schematic diagram showing the disassembled structure of the U-shaped component and the top cover of this utility model;

[0041] Figure 5 This is a three-dimensional structural diagram showing the connection between the U-shaped component and the atomizing device of this utility model;

[0042] Figure 6 This is a three-dimensional structural diagram of the U-shaped component of this utility model;

[0043] Figure 7 This is a three-dimensional structural diagram of the sealing device of this utility model;

[0044] Figure 8 This is a schematic diagram of the structure of the atomizing component of this utility model;

[0045] Figure 9 This is a schematic diagram showing the connection relationship between the top cover and the connecting component of this utility model;

[0046] Figure 10 This is a three-dimensional structural diagram of the connecting component of this utility model;

[0047] Figure 11 This is a schematic diagram of the disassembled structure of the connecting component of this utility model;

[0048] Figure 12 This is a three-dimensional structural diagram of the first connecting member of this utility model;

[0049] Figure 13 This is a three-dimensional structural diagram of the steering block of this utility model;

[0050] Figure 14This is a three-dimensional structural diagram of the clamping frame of this utility model;

[0051] Figure 15 This is a three-dimensional structural diagram of the opening of this utility model;

[0052] Figure 16 This is a schematic diagram showing the disassembled structure of the cover plate and the receiving part of this utility model;

[0053] Figure 17 This is a three-dimensional structural diagram of the limiting plate of this utility model;

[0054] Figure 18 This is a schematic diagram showing the connection relationship between the top cover and the slider of this utility model;

[0055] Figure 19 This is a three-dimensional structural diagram of the top cover of this utility model;

[0056] Figure 20 This is a schematic diagram showing the disassembled structure of the mop board and bottom cover of this utility model;

[0057] Figure 21 This is a schematic diagram showing the positional relationship between the bottom cover and the limiting plate of this utility model;

[0058] Figure 22 This is a three-dimensional structural diagram of the slider of this utility model;

[0059] Figure 23 This is a schematic diagram of the connection structure of the receiving rod of this utility model;

[0060] Figure 24 This is an exploded view of the clamping assembly of this utility model;

[0061] Figure 25 This is an exploded view of the clamping assembly of this utility model from another angle;

[0062] In the diagram, 1 is the mop handle; 2 is the top cover; 201 is the top cover connecting groove; 202 is the top cover through hole; 203 is the first through hole; 204 is the first top cover mounting groove; 206 is the first support plate; 207 is the second support plate; 208 is the top cover receiving groove; 209 is the strip hole; 210 is the top cover retaining groove; 211 is the bolt mounting hole; 3 is the U-shaped part; 301 is the receiving cavity; 302 is the receiving part; 303 is the cover plate; 304 is the liquid filling part; 305 is the opening; 306 is the small end section; 307 is the large end section; 308 is the limiting groove; 309 is the strip protrusion; 310 is the notch; 311 is the cover part; 312 is the bolt mounting sleeve; 313 is the slot; 4 is the slider; 401 is the slider lever. Moving part; 402 Second protruding post; 403 Strip block; 404 Gap; 405 Third elastic element; 5 Seal; 501 Limiting part; 502 Slide rail; 503 Through hole; 601 Atomizing element; 6011 Atomizing plate; 6012 Soft rubber ring; 602 Circuit board; 603 Battery; 6031 Charging port; 604 Atomizing switch; 7 Bottom cover; 701 Bottom cover connecting post; 702 Second clamping tooth; 703 Herringbone protrusion; 704 Limiting plate limiting groove; 8 Clamping frame; 801 Protruding nail; 802 Clamping extension plate; 803 First clamping tooth; 804 Third clamping tooth; 805 Long strip hole; 806 Protruding shaft; 807 Clamping frame 808 First elastic element; 809 Clamping bracket mounting slot; 810 Cross-shaped protrusion; 811 Limiting plate; 812 Limiting plate slide; 813 Sloping protrusion; 9 Connecting assembly; 901 First connector; 902 Base; 903 First connector mounting slot; 9031 Second elastic element; 904 First connector receiving slot; 905 Vertical slot; 906 Horizontal slot; 907 Mounting post; 908 First ear seat; 909 Steering block; 910 First protruding post; 911 Second through hole; 912 Arc-shaped groove; 913 Second connector; 914 Second connector through hole; 915 Second ear seat; 916 Protrusion ; 917 Rotating shaft; 10 Mop handle; 1001 Receiving rod; 1002 Receiving rod mounting groove; 1003 Spring piece; 1004 Clamping block; 1005 First extension rod; 1006 Second extension rod; 1007 Third extension rod; 1008 First sleeve; 1009 Second sleeve; 11 Clamping assembly; 1101 Clamping connecting rod; 1102 Clamping claw, 1103 Clamping claw connecting part; 1104 Clamp; 1105 Fourth spring; 1106 Connecting part groove; 1107 Cover; 1108 Cover groove; 1109 Hanging rope; 1110 Hanging rope protrusion; 1111 Hanging rope hole; 1112 Cover protrusion. Detailed Implementation

[0063] The present invention will be further described below with reference to the accompanying drawings:

[0064] like Figures 1 to 25As shown, a misting mop includes a mop plate 1, a mop handle 10, a U-shaped component 3, and a misting device. The mop plate 1 is rectangular, and the mop handle 10 is movably connected to the back side of the mop plate 1, allowing the mop handle 10 to rotate to a suitable angle for wiping operations as needed. The mop plate 1 includes a top cover 2 and a bottom cover 7. A first top cover mounting groove 204 is provided on the top cover 2. The bottom of the U-shaped component 3 mates with and is inserted into the first top cover mounting groove 204, thus securing the U-shaped component 3. A receiving cavity 301 is provided on the U-shaped part 3. The receiving cavity 301 is used to hold liquids such as cleaning fluid or clean water. The receiving cavity 301 includes a receiving part 302 provided on the U-shaped part 3 and a cover plate 303 covering the top of the receiving part 302. The cover plate 303 is fixed to the top of the receiving part 302 by high-frequency welding, so that water in the receiving cavity 301 will not seep out through the gap between the cover plate 303 and the receiving part 302. A liquid filling part 304 is provided on the cover plate 303 to facilitate the addition of liquid into the receiving cavity.

[0065] The atomizing device includes an atomizing element 601, a circuit board 602, a battery 603, and an atomizing switch 604. The battery 603 is a rechargeable battery and has a charging port 6031 on the mop plate 1. The battery 603 is electrically connected to the power input terminal of the circuit board 602 via a wire. The atomizing switch 604 is connected to the control signal input terminal of the circuit board 602. Two atomizing elements 601 are provided and are respectively connected to the power output terminal of the circuit board 602. In this embodiment, there are two ways to turn on the atomizing device: one is to directly press the atomizing switch 604, triggering a signal transmitted to the circuit board 602. The internal control module of the circuit board 602 initiates power transmission, converting the electrical energy from the battery 603 and delivering it to the atomizing element 601, thus activating the atomizing function. Pressing the atomizing switch 604 again turns off the atomizing function. Another method involves pressing and holding the atomizer switch 604 for three seconds to receive a signal and power on the atomizer. Pressing and holding the switch again for three seconds powers on the switch and powers off the atomizer. With the atomizer powered on, a short press of the switch activates the atomizer, and another short press deactivates it. If no operation signal is received within ten minutes of the atomizer being powered on and deactivated, the circuit board automatically powers off the atomizer. Circuit board 602 is existing technology and will not be described further.

[0066] In a preferred embodiment, the atomizing switch 604 is positioned above the mop handle 10, eliminating the need for the user to bend over during operation. In this case, the atomizing switch 604 can take the form of a power button or a sensor screen, connected via a wire to the power input terminal of the circuit board 602. Alternatively, the atomizing switch 604 can be connected to a wireless transmitting module, with a corresponding wireless receiving module installed on the circuit board, enabling the atomizing device to be turned on and off via the wireless transceiver module.

[0067] An opening 305 is provided on the side wall of the receiving cavity 301. Two openings 305 are symmetrically arranged in front of the mop blade. The opening 305 is a two-stage stepped hole with two different diameter sections. The diameter of the larger end section 307 is larger than that of the smaller end section 306, forming a stepped transition. The smaller end section 306 is connected to the receiving cavity 301, serving as a liquid flow channel; the larger end section 307 is the installation section for installing the atomizing element 601. By placing the atomizing element 601 on the front side wall of the receiving cavity 301, a dynamic wetting mode of "wiping and spraying simultaneously" is achieved, completing wetting and cleaning simultaneously. This avoids the inefficient operation of repeatedly wetting and wringing out traditional mops and eliminates the risk of slippery floors caused by pre-spraying water. The spray from the two atomizing elements 601 evenly wets the floor to be wiped, quickly penetrating the stain layer without forming water accumulation, making it especially suitable for moisture-sensitive materials such as wood floors and tiles. The atomizing component 601 includes an atomizing plate 6011 and a soft rubber ring 6012 circumferentially disposed along the edge of the atomizing plate 6011. The atomizing plate 6011 may be a piezoelectric ceramic element that breaks the liquid into tiny particles through high-frequency vibration, and its diameter matches the size of the small end section of the opening 305 to form the atomization area. The soft rubber ring 6012 is an annular elastic sealing component surrounding the edge of the atomizing plate 6011, made of silicone or rubber material and injection molded to the edge of the atomizing plate 6011. Its outer diameter is slightly larger than the inner diameter of the large end section 307 of the opening 305 to achieve an interference fit. When installing the atomizing component 601, it is inserted into the large end section 307 of the opening 305. The soft rubber ring 6012 is compressed and deformed during installation, and its elastic restoring force creates radial pressure between the atomizing plate 6011 and the inner wall of the opening 305, eliminating assembly gaps. A circumferentially continuous soft rubber ring 6012 forms an annular sealing band on the inner wall of the opening 305, preventing liquid from seeping out from the contact surface between the atomizing plate 6011 and the inner wall of the opening 305. After the atomizing component 601 is installed, the axial limiting effect of the stepped surface prevents the atomizing component 601 from falling into the receiving cavity 301 if axial displacement occurs.

[0068] A plug 5 is also provided in the large end section 307 with the opening. The plug 5 can be made of an annular washer made of elastic material or a rigid plastic part injection molded. The outer diameter of the plug 5 matches the inner diameter of the large end section 307, and it is also fixed in the large end section 307 by interference fit, which plays a secondary sealing role. A through hole 503 is provided in the middle of the plug 5 to allow the atomized liquid to drain.

[0069] Two limiting grooves 308 are provided on the side wall of the large end section 307 of the opening 305, and the two limiting grooves 308 are arranged opposite to each other. A limiting part 501 is provided on the sealing block 5, and the limiting part 501 cooperates with the limiting groove 308. When the sealing block 5 is inserted into the large end section 307, the limiting part 501 is inserted into the limiting groove 308. A strip-shaped protrusion 309 is also provided on the side wall of the large end section 305 along the length direction of the opening 305. A corresponding slide 502 is provided on the sealing block 5. The slide 502 is a groove or guide groove that matches the shape of the strip-shaped protrusion 309, and its length direction is consistent with the extension direction of the protrusion. When the plug 5 is inserted into the large end of the opening 305, the slide 502 and the strip-shaped protrusion 309 form an insertion relationship. Since the strip-shaped protrusion 309 extends along the axial direction of the opening 305, the plug 5 moves linearly in one direction during insertion, preventing the plug 5 from deflecting or tilting during installation or use, and ensuring accurate engagement between the limiting part 501 and the limiting groove 308. A notch 310 is also provided inside the opening 305, located below the atomizing element 601, for the atomizing element 601's insertion port to pass through and connect to the circuit board 602. By placing the notch 310 below the atomizing element 601, direct connection between the circuit board 602 and the atomizing element 601 is achieved, avoiding intersections between the connection path and the liquid flow area.

[0070] The U-shaped component 3 includes a cover portion 311, which is used to cover the atomizing device and form a closed space surrounding the atomizing device between the cover portion 303 and the cover plate 303. A slot 313 for installing the atomizing device is provided below the cover portion 311, so that the atomizing device can be snapped into the slot 313, which facilitates maintaining the connection of the circuit during disassembly and assembly.

[0071] In this embodiment, the first top cover mounting groove 204 is provided with a plurality of bolt mounting holes 211, and a corresponding bolt mounting sleeve 312 is provided on the U-shaped part 3. The bolt end passes through the bolt mounting hole 211 and is screwed into the bolt mounting sleeve 312 to fix the U-shaped part 3 in the first top cover mounting groove 204. In addition, the bolt mounting sleeve 312 is a hollow cylinder with an upward protrusion so that the liquid in the receiving cavity 301 will not flow out from the gap of the bolt mounting sleeve 312.

[0072] In a preferred embodiment, the mop plate 1 and the mop handle 10 are connected by a connecting assembly 9, which includes a first connector 901, a steering block 909, and a second connector 913. The first connector 901 is connected to the top cover 2, and the second connector 913 is connected to the mop handle 10. The first connector 901 and the second connector 913 are connected by the steering block 909. During installation, the first connector 901 is first connected to the top cover 2. The first connector 901 includes a base 902, and a protruding mounting post 907 is fixedly connected to the middle part of the base 902. The middle part of the top cover 2 is provided with a first through hole 203. The mounting post 907 passes through the first through hole 203 from below the top cover 2. After the mounting post 907 passes through the first through hole 203, the base 902 just abuts against the bottom of the top cover 2, thereby realizing the connection between the first connector 901 and the top cover 2.

[0073] A first auricle seat 908 is provided at the top of the mounting post 907. Two first auricle seats 908 are provided, and these two first auricle seats 908 are symmetrically distributed along the length of the mop handle 1. A first protrusion 910 is provided on the side of the steering block 909. The first protrusion 910 is a cylindrical structure extending from both sides of the steering block 909. When the first protrusion 910 is inserted into the first auricle seat 908, the first protrusion 910 and the first auricle seat 908 form a rotating joint. This rotating joint realizes the lateral rotation function of the mop handle 10, so that the mop handle 10 can be adjusted back and forth. In actual use, the user can adjust the back and forth angle of the mop handle 10 as needed to meet the cleaning needs of different scenarios. A second through hole 911 is provided at the center of the steering block 909, and the second through hole 911 is perpendicular to the first protrusion 910. A second auricle seat 915 is provided at one end of the second connector 913. Two second auricle seats 915 are provided. During installation, the second through hole 911 is clamped between the two second auricle seats 915, and the connection is made by a rotating shaft 917 passing sequentially through the second auricle seats 915, the second through hole 911, and the second auricle seat 915 at the other end. In this way, the second through hole 911, the second auricle seats 915, and the rotating shaft 917 cooperate to form a longitudinal rotating joint, allowing the mop handle 10 to swing left and right. When the user needs to adjust the left and right direction of the mop handle 10, a certain external force is applied, and the mop handle 10 can swing around this longitudinal rotating joint to achieve left and right adjustment.

[0074] Furthermore, the cross-section of the steering block 909 is circular. Several arc-shaped grooves 912 are circumferentially provided on both the front and rear sides of the steering block 909. These arc-shaped grooves 912 are arranged along the circumference of the steering block 909, and the circular surface formed by the end-to-end connection of the arc-shaped grooves 912 is concentrically arranged with the second through hole 911. A protrusion 916 corresponding to the arc-shaped groove 912 is provided on the inner wall of the second ear seat 915. When the mop handle 10 swings left and right, as the swing angle changes, the protrusion 916 on the inner wall of the second ear seat 915 gradually engages with the arc-shaped groove 912 of the steering block 909, thereby achieving left and right steering and fixation of the second connecting member 913. This design of the arc-shaped groove 912 and the protrusion 916 creates a mechanical locking mechanism when swinging left and right to a specific angle, thus limiting the rotation angle. Meanwhile, since the steering block 909 has a circular cross-section, it is subjected to uniform force during rotation. The cooperation between the arc groove 912 and the protrusion 916 provides a limiting function, and when the user applies sufficient external force, it can also break through the jamming state and continue to adjust the angle.

[0075] In a preferred embodiment, a clamping frame 8 is movably connected between the bottom cover 7 and the top cover 2 on both sides. A second top cover mounting groove is provided below the top cover 2. A first connector 901 is vertically inserted into the second top cover mounting groove from below the top cover 2. A mounting post 907 extends from below the top cover 2 through the first through hole 203 and then to the top of the top cover 2. The two clamping frames 8 are symmetrically arranged and have elongated holes 805. The bottom cover 7 is provided with a bottom cover connecting post 701 or a bottom cover connecting groove (not shown in the figure). The top cover 2 is correspondingly provided with a top rod connecting groove 201 or a top cover connecting post (not shown in the figure). The top cover connecting post passes through the elongated hole 805 and connects to the bottom cover connecting groove, or the bottom cover connecting post 701 passes through the elongated hole 805 and connects to the top cover connecting groove 201 to achieve the connection between the bottom cover 7, the clamping frame 8, and the top cover 2. The elongated hole 805 forms a sliding pair with the bottom cover connecting post 701 or the top cover connecting post, allowing the clamping frame 8 to slide along the length of the elongated hole 805 to adjust the clamping distance. A limiting plate 811 is provided between the two clamping frames 8 and the bottom cover 7. The limiting plate 811 has a limiting plate slide 812, which is an oblique slide, and there are two such slides. The extended lines of the two limiting plate slides 812 near the center of the bottom cover 7 can intersect. A cylindrical convex shaft 806 correspondingly provided on the clamping frame 8 is inserted into the limiting plate slide 812 to form a sliding pair. Two limiting plates 811 are provided and symmetrically distributed on both sides of the longitudinal axis of the first connecting member 901. An oblique protrusion 813 is provided on the surface of the limiting plate 811. A clamping frame notch 807 is reserved between the two clamping frames 8, providing movement space for the base 902 and the oblique protrusion 813. When the first connector 901 is pressed down, its bottom contacts the inclined protrusion 813. The inclined surface of the protrusion 813 decomposes the vertical downward pressure into a lateral component, pushing the limiting plate 811 to slide away from the first connector 901. Since the extension lines of the limiting plate slide 812 near the center of the bottom cover 7 can intersect, the wall of the limiting plate slide 812 forces the convex shaft 806 to move towards the center of the bottom cover 7, thereby driving the two clamping frames 8 to simultaneously retract towards the center to clamp the wiping object. In this embodiment, the two clamping frames 8 and the bottom cover 7 limit the vertical direction of the limiting plate 811, and a limiting plate limiting groove 704 is provided on the side of the bottom cover 7 near the limiting plate 811. The limiting plate limiting groove 704 is used to limit the two sides of the limiting plate 811 and limit the sliding space of the limiting plate 811.

[0076] A first elastic element 808 is provided between the two clamping frames 8. A clamping frame mounting groove 809 is provided at the corresponding position of the two clamping frames 8. A cross-shaped protrusion 810 is fixedly provided in the clamping frame mounting groove 809. The first elastic element 808 is a first spring and its two ends are sleeved around the two cross-shaped protrusions 810. The cross-shaped protrusions 810 limit the radial displacement of the first spring. When an external force drives the two clamping frames 8 to move towards the center of the bottom cover 7, the first spring is compressed and stores energy. After the external force is removed, the first spring releases its elastic force to push the clamping frames 8 to reset and release the wiping object. A first connector mounting groove 903 is provided at the middle position of the bottom of the first connector 901. One end of the second elastic element 9031 is inserted into the first connector mounting groove 903 and the other end abuts against the bottom cover 7. The second elastic element 9031 is used for the automatic reset of the first connector 901. The second elastic element 9031 is a second spring. When the first connecting member 901 is pressed down, the second spring is compressed. After being released, it pushes the first connecting member 901 to move upward, relieving the pressure on the limiting plate 811. At this time, the clamping frame 8 moves away from the center of the bottom cover 7 under the action of the first spring, so that the clamping frame 8 releases the wiping object.

[0077] The second top cover mounting groove is divided into a top cover receiving groove 208 and a top cover retaining groove 210 by a first support plate 206 and a second support plate 207. The top cover retaining groove 210 communicates with the first through hole 203, and the mounting post 907 passes through the top cover retaining groove 210 and protrudes from it. Horizontal strip holes 209 are provided on opposite sides of the top cover receiving groove 208. A slider 4 is provided in the top cover receiving groove 208, and strip blocks 403 are provided on both sides of the slider 4. The slider 4 slides laterally in the top cover receiving groove 208 by inserting the strip blocks 403 into the strip holes 209. A third elastic element 405, which is a third spring, is provided between the slider 4 and the first support plate 206 or the second support plate 207. A second protrusion 402 is provided on the side of the slider 4 facing the top cover retaining groove 210. One end of the third spring is sleeved on the second protrusion 402 to limit the radial displacement of the third spring, and the other end of the third spring directly abuts against the first support plate 206 or the second support plate 207. A first connecting member receiving groove 904 is provided on the first connecting member 901 for the slider 4 to move, and a gap 404 is reserved between the slider 4 and the top cover receiving groove 208 so that the side wall of the first connecting member receiving groove 904 can be inserted into the gap 404. An L-shaped slide is provided on the side wall of the first connecting member receiving groove 904. The L-shaped slide includes a vertical groove 905 and a horizontal groove 906 connected to the top of the vertical groove 905. When the first connector 901 is pressed down, the third spring pushes the slider 4 outward, and the strip block 403 slides along the transverse groove 906 to the end to form a self-locking mechanism, preventing the first connector 901 from accidentally resetting. A slider actuating part 401 is provided on the top of the slider 4, and a corresponding top cover through hole 202 is provided on the top cover 2. The slider actuating part 401 passes through and protrudes from the top cover through hole 202. When unlocking, the slider actuating part 401 is moved towards the center of the top cover 2, the third spring is compressed, and the strip block 403 returns to the top of the vertical groove 905. At this time, the second spring drives the first connector 901 to return to the unpressed state.

[0078] The clamping frame 8 extends downward from the center of the bottom cover 7 to form a clamping extension plate 802. Several first clamping teeth 803 are evenly distributed at the lower end of the clamping extension plate 802, facing the center of the bottom cover 7. Several second clamping teeth 702, interleaved with the first clamping teeth 803, are evenly distributed along the edges of both ends of the bottom cover 7. When the clamping frame 8 moves towards the center of the bottom cover 7, the first clamping teeth 803 move closer to the second clamping teeth 702, allowing them to clamp the object being wiped. When the clamping frame 8 moves away from the center of the bottom cover 7, the first clamping teeth 803 move away from the second clamping teeth 702, releasing the object being wiped.

[0079] In this embodiment, a third clamping tooth 804 parallel to the first clamping tooth 803 is provided at the lower end of the clamping extension plate 802. The third clamping tooth 804 is located above the first clamping tooth 803 and is offset from the first clamping tooth 803 to form a double-layer clamping interface, which can accommodate wiping materials of different thicknesses. A herringbone-shaped protrusion 703 is provided below the bottom cover 7 to increase frictional resistance, and a protruding nail 801 is provided at the bottom of the clamping frame 8, which penetrates the fibers of the wiping material to form a three-dimensional fixation during clamping.

[0080] In a preferred embodiment, the mop handle 10 includes a receiving rod 1001 and an extension rod. The receiving rod 1001 is engaged with a second connector 913. The side wall of the second connector 913 is provided with a second connector through hole 914. The lower part of the receiving rod 1001 is provided with a receiving rod mounting groove 1002. The receiving rod mounting groove 1002 is connected to a locking block 1004 through a spring piece 1003. The locking block 1004 matches the second connector through hole 914 and can be engaged in the second connector through hole 914, thereby realizing the connection between the receiving rod 1001 and the second connector 913, and thus realizing the connection between the connecting component 9 and the mop handle 10. Assembly can be completed without tools, significantly improving operating efficiency. The extension rod includes a first extension rod 1005, a second extension rod 1006, a third extension rod 1007, a first sleeve 1008, and a second sleeve 1009. One end of the first extension rod 1005 is inserted into the receiving rod 1001, and the other end of the first extension rod 1005 is inserted into one end of the first sleeve 1008. One end of the second extension rod 1006 is inserted into the other end of the first sleeve 1008, and the other end of the second extension rod 1006 is inserted into one end of the second sleeve 1009. One end of the third extension rod 1007 is inserted into the other end of the second sleeve 1009. This allows for stepless adjustment of the mop handle 10 length, adapting to the needs of operators of different heights or usage scenarios.

[0081] The mop handle 10 also includes a clamping assembly 11, which is used to clamp up dirt wiped off, avoiding the need to pick it up by hand and making it more hygienic. The clamping assembly 11 includes a clamping link 1101 and a gripper 1102. The clamping link 1101 and the gripper 1102 are threadedly connected. The other end of the third extension rod 1007 is inserted into the clamping link 1101, thus connecting the third extension rod 1007 to the clamping assembly 11. The gripper 1002 includes an integrally formed gripper connecting part 1103 and two clamps 1104, making the overall structure more stable. The two clamps 1104 can extend into the interior of the third extension rod 1007, so that when the clamping assembly is not used to clamp dirt, it can be housed in the third extension rod 1007 for easier access. A fourth spring 1105 is connected to the middle of the inner side of the two clamps 1104 to ensure the elasticity between the two clamps 1104. Because the two clamps 1104 are inserted into the third extension rod 1007, the internal space of the third extension rod 1007 is relatively small, so the two clamps 1104 are always in a clamped state. After a period of use, the elasticity between the two clamps 1104 will fail, so the two clamps 1104 cannot open, and the user needs to deliberately open the two clamps 1104 to achieve the gripping of dirt.

[0082] The end of the gripper connecting part 1103 away from the gripper head 1104 is provided with a connecting part groove 1106. A cover 1107 is engaged in the connecting part groove 1106, so that the cover 1107 seals the connecting part groove 1106 and prevents dust and other particles from falling into the connecting part groove 1106. The bottom of the cover 1107 is provided with a cover groove 1108. A hanging rope 1109 is connected to the cover groove 1108. Both ends of the hanging rope 1109 can be inserted into the cover groove 1108 at the same time. The hanging rope 1109 is flexible. By providing the hanging rope 1109, it is more convenient to hang the wiper on the outside wall, reducing the use of space and making it easier to take out. The hanging rope 1109 has hanging rope protrusions 1110 at both ends, and a hanging rope hole 1111 in the middle of the hanging rope protrusions 1110. The sealing groove 1108 has sealing protrusions 1112 on both sides, which can be inserted into the hanging rope hole 1111 to connect the hanging rope 1109 and the sealing cover 1107. In use, the hanging rope 1109 is folded in half, and both folded ends are simultaneously inserted into the sealing groove 1108 on the sealing cover 1107, so that the two hanging rope holes 1111 on the hanging rope protrusions 1110 are fitted onto the corresponding sealing protrusions 1112. This simple operation ensures a secure connection between the hanging rope 1109 and the sealing cover 1107, preventing the hanging rope 1109 from easily coming loose.

[0083] In this embodiment, the atomizing mop is first used by adding water or cleaning solution to the receiving cavity 301 via the liquid filling part 304 as needed. Then, the object to be wiped is placed under the mop plate 1, and the mop handle 10 is pressed down, causing the third spring to push the slider 4 outward. The strip block 403 slides along the transverse groove 906 to its end, forming a self-locking mechanism to prevent the first connecting member 901 from accidentally resetting. Simultaneously, the lower part of the first connecting member 901 contacts the inclined protrusion 813 of the limiting plate 811, and the oblique component force generated by the downward pressure of the first connecting member 901 pushes the limiting plate 811 to slide laterally. The inclined design of the limiting plate slide 812 causes the convex shaft 806 to move towards the center of the bottom cover 7 along the limiting plate slide 812, simultaneously causing the clamping frames 8 on both sides to retract. At this time, the first clamping teeth 803 on the clamping extension plate 802 and the second clamping teeth 702 of the bottom cover 7 interlock and engage, thereby clamping the object to be wiped. Afterwards, turn on the atomizing switch 604, and the atomizing device will start working. At this point, you can mop the floor. After cleaning, when you need to remove the cleaning material, move the slider 401 towards the center of the top cover 2. The third spring will compress, and the strip block 403 will retract to the top of the vertical slot 905. At this time, the second spring will drive the first connecting piece 901 back to its unpressed state, and the oblique force generated by the first connecting piece 901 on the limiting plate 811 will be released. The first spring will push the two clamping frames 8 to move away from each other, thereby allowing the clamping frames 8 to unfold outwards and release the gripping of the cleaning material. When there is dirt on the cleaning surface, the gripper 1102 can be unscrewed from the clamping link 1101 to remove the dirt. After use, the hanging rope 1109 can be hung on an external wall for storage of the cleaning material. The battery 603 can be charged as needed.

[0084] This embodiment is merely an illustration of the concept and implementation of this utility model, and is not intended to limit it. Under the concept of this utility model, the technical solution without substantial changes is still within the protection scope.

Claims

1. A misting mop, comprising a mop board, with a mop handle connected to the back side of the mop board, characterized in that, The mop board is provided with an atomizing device and a receiving cavity for containing liquid. The atomizing device includes an atomizing element. The front side wall of the receiving cavity is provided with an opening. The atomizing element is located in the opening and causes the liquid in the receiving cavity to be atomized and discharged by the atomizing element when it passes through the opening.

2. The atomizing mop as described in claim 1, characterized in that, The atomizing element includes an atomizing plate and a soft rubber ring arranged circumferentially along the edge of the atomizing plate, the soft rubber ring being interference-fitted with the inner wall of the opening.

3. The atomizing mop as described in claim 2, characterized in that, A plug is also provided inside the opening, and the plug is interference-fitted with the opening. A through hole is provided in the middle of the plug, and the liquid in the receiving cavity is atomized by the atomizing element and discharged through the through hole.

4. The atomizing mop as described in claim 3, characterized in that, The opening is a two-stage stepped opening with two different diameter sections. The diameter of the larger end section of the opening is larger than that of the smaller end section to form a stepped transition. The smaller end section of the opening is connected to the receiving cavity. The atomizing element and the plug are both inserted into the larger end section of the opening.

5. The atomizing mop as described in claim 4, characterized in that, A limiting groove is provided on the side wall of the large end section of the opening. There are two limiting grooves arranged opposite each other. A corresponding limiting part is provided on the plug, and the limiting part is inserted into the limiting groove.

6. The atomizing mop as described in claim 4, characterized in that, A strip-shaped protrusion is provided on the side wall of the large end section of the opening along the length of the opening, and a corresponding slide is provided on the plug. The strip-shaped protrusion is inserted in the slide and the slide slides along the strip-shaped protrusion.

7. The atomizing mop as described in claim 6, characterized in that, Two openings, two atomizing elements, and two plugs are provided. The openings are symmetrically arranged in front of the mop plate. A notch is provided inside the opening. The notch is located below the atomizing element and is used for the atomizing element's insertion port to pass through and connect to the power supply. A liquid filling part is provided at the top of the receiving cavity.

8. The atomizing mop as described in any one of claims 1 to 7, characterized in that, The mop board includes a top cover and a U-shaped component. The receiving cavity is disposed on the U-shaped component. A closing part is provided on the U-shaped component. A first top cover mounting groove is provided on the top cover. The U-shaped component mates with the first top cover mounting groove and is inserted into the first top cover mounting groove. The atomizing device is disposed between the top cover and the closing part.

9. The atomizing mop as described in claim 8, characterized in that, The atomizing device also includes a circuit board, a battery, and an atomizing switch. The battery is electrically connected to the circuit board, and the circuit board is electrically connected to the atomizing switch and the atomizing element. The atomizing switch is located on the mop head or mop handle, and the atomizing device is turned on or off by the atomizing switch.

10. The atomizing mop according to any one of claims 1 to 7, characterized in that, The mop board includes a top cover, and the mop board and mop handle are connected by a connecting assembly, which includes a first connector, a steering block, and a second connector. A first through hole is provided in the middle of the top cover. The first connector includes a base and a mounting post connected to the middle of the base. The mounting post passes through the first through hole from below the top cover, and the base engages with the bottom of the top cover to connect the first connector to the top cover. Two first auricle seats are provided at the top of the mounting post, and the two auricle seats are arranged along the length of the mop board. First protrusions are provided on both sides of the steering block, and the first protrusions are inserted into and can rotate within the first auricle seats. A second through hole is provided at the center of the steering block, and the second through hole is perpendicular to the line containing the two first protrusions. One end of the second connector has a second auricle seat, and two second auricle seats are provided. The second through hole is sandwiched between the two second auricle seats and connected by a rotating shaft.

11. The atomizing mop as described in claim 10, characterized in that, The cross-section of the steering block is circular, and there are arc-shaped grooves on both the front and rear sides of the steering block. The circular surface formed by the arc-shaped grooves is concentric with the second through hole. There is a protrusion on the inner wall of the second auricle seat that corresponds to the arc-shaped groove. The protrusion is engaged in the arc-shaped groove to realize the left and right turning and fixing of the second connector.

12. The atomizing mop as described in claim 11, characterized in that, The mop board includes a top cover and a bottom cover. Clamping frames are movably connected between the two sides of the top and bottom covers. Limiting plates are provided between the two clamping frames and the bottom cover. Two limiting plates are provided and symmetrically arranged at both ends of the first connecting member. Each limiting plate is provided with two limiting plate slides. The extension lines of the two limiting plate slides on the side closer to the center of the bottom cover can intersect. Corresponding convex shafts are provided on the two clamping frames. The convex shafts are inserted into the limiting plate slides on the same side and slide to achieve the following: when the clamping part moves closer to the center of the bottom cover, it clamps the wiping object; when the clamping part moves away from the center of the bottom cover, it releases the wiping object.

13. The atomizing mop as described in claim 12, characterized in that, The limiting plate has a sloping protrusion, and a clamping frame notch is provided between the two clamping frames. The clamping frame notch allows the base and the sloping protrusion to pass through. After the sloping protrusion passes through the clamping frame notch, it abuts against the end of the base. When the first connecting piece is pressed down, the bottom of the base contacts the sloping protrusion, causing the limiting plate to be squeezed by a sloping force, which causes the limiting plate to move away from the first connecting piece. At this time, the limiting plate slide exerts an inward squeeze on the convex shaft, thereby driving the two clamping frames to move closer to the center of the bottom cover to clamp the wiping object.

14. The atomizing mop as described in claim 13, characterized in that, A first elastic element is provided between the two clamping frames, and a clamping frame mounting groove is provided at the corresponding position of the two clamping frames. A cross-shaped protrusion is fixed in the clamping frame mounting groove. The first elastic element is a first spring and its two ends are respectively sleeved on the periphery of the two cross-shaped protrusions.

15. The atomizing mop as described in claim 14, characterized in that, A first connector mounting groove is provided at the bottom center of the first connector. A second elastic member is inserted into the first connector mounting groove and the other end of the second elastic member abuts against the bottom cover. The second elastic member is used to restore the first connector to the unpressed state, thereby canceling the oblique force of the bottom of the first connector on the limiting plate. At this time, the elastic force of the first elastic member moves the two clamps away from the center of the bottom cover, thereby causing the clamps to release the wiping material.

16. The atomizing mop as described in claim 15, characterized in that, A second top cover mounting groove is provided below the top cover. A first connector is inserted into the second top cover mounting groove. A first support plate and a second support plate are provided in the second top cover mounting groove, dividing the second top cover mounting groove into top cover receiving grooves on both sides and a top cover retaining groove in the middle. The top cover retaining groove communicates with a first through hole. Slotted holes are provided on opposite sides of the top cover receiving groove. A slider is provided in the top cover receiving groove. Slotted blocks are provided on both sides of the slider. The slotted blocks are inserted into the slotted holes to achieve sliding connection of the slider in the top cover receiving groove. A gap is provided between the slider and the top cover receiving groove. The slide block has a gap; a third elastic element is provided between the slider and the first or second support plate; a first connecting member receiving groove is provided on the first connecting member for the slider to move, and a vertical groove for the strip block to move and a horizontal groove connected to the top of the vertical groove are provided on the side wall of the first connecting member receiving groove. When the first connecting member is pressed down, the horizontal groove corresponds to the strip hole; when the first connecting member is driven by the second elastic element to return to its original state, the strip block can move in the vertical groove; a second protrusion is provided on the side of the slider facing the top cover fixing groove, and the third elastic element is a third spring, with the second protrusion inserted into one end of the third spring.

17. The atomizing mop as described in claim 16, characterized in that, A slider actuating part is provided at the top of the slider, and a corresponding top cover through hole is provided on the top cover. The slider actuating part passes through and protrudes from the top cover through hole. When the first connector is pressed down, the elastic force of the third spring pushes the slider to move away from the center of the top cover, so that the strip block slides in the transverse groove and is fixed at the end of the transverse groove away from the vertical groove. At this time, the strip block limits the first connector receiving groove side wall, that is, the first connector is fixed after being pressed down. When the slider actuating part is moved towards the center of the top cover, the third spring tightens and the strip block is located directly above the vertical groove. At this time, the second spring drives the first connector to return to the unpressed state.

18. The atomizing mop as described in any one of claims 12 to 17, characterized in that, The clamping frame is provided with an elongated hole, the bottom cover is provided with a bottom cover connecting post or a bottom cover connecting groove, and the top cover is provided with a corresponding top cover connecting groove or a top cover connecting post. The top cover connecting post passes through the elongated hole and connects to the bottom cover connecting groove, or the bottom cover connecting post passes through the elongated hole and connects to the top cover connecting groove.

19. The atomizing mop as described in claim 18, characterized in that, A clamping extension plate extends downward from the side wall of the clamping frame away from the center of the bottom cover. The lower end of the clamping extension plate is evenly distributed with a number of first clamping teeth facing the center of the bottom cover. The edges of both ends of the bottom cover are evenly distributed with a number of second clamping teeth that are staggered with the first clamping teeth. The lower end of the clamping extension plate is also provided with a third clamping tooth that is parallel to the first clamping teeth. The third clamping tooth is located above the first clamping teeth and is staggered from the first clamping teeth.

20. The atomizing mop according to any one of claims 1 to 7, characterized in that, The mop handle includes a receiving rod, an extension rod, and a clamping assembly. The extension rod is connected between the receiving rod and the clamping assembly. The receiving rod is engaged with a second connector. The side wall of the second connector has a second connector through hole. The lower part of the receiving rod has a receiving rod mounting groove. The receiving rod mounting groove is connected to a locking block through a spring piece. The locking block matches the second connector through hole and can be engaged in the second connector through hole.