CN215777871U - Water spray cleaning device - Google Patents

Water spray cleaning device Download PDF

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Publication number
CN215777871U
CN215777871U CN202120807631.XU CN202120807631U CN215777871U CN 215777871 U CN215777871 U CN 215777871U CN 202120807631 U CN202120807631 U CN 202120807631U CN 215777871 U CN215777871 U CN 215777871U
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China
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water
mop
pump
squeezing
pumping
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CN202120807631.XU
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Chinese (zh)
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任永旺
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Hebei Jieshibao Daily Plastic Products Co ltd
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Hebei Jieshibao Daily Plastic Products Co ltd
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Abstract

The utility model provides a water spray cleaning device, and belongs to the field of cleaning tools. The problem of the water in the current mop bucket rinse the mop repeatedly, can't control the water spray volume is solved. This water spray cleaning device includes mop and mop bucket, the mop bucket includes water storage district and crowded water district, the water storage district is equipped with pumping device, states pumping device connection control mechanism and shower head, control mechanism control pumping device draws water in order to realize the mop is in the switching between washing state and the crowded dry state, under the washing state, control mechanism control pumping device draws water and by the shower head is slow spray to in order to wash on the wiper, under the crowded dry state, pumping device no longer draws water, the mop arrange stop device in go up through crowded water device makes a round trip the pull realize crowded dry. The utility model has the advantages that the water for cleaning the mop is clean water, and the water spraying amount can be controlled.

Description

Water spray cleaning device
Technical Field
The utility model relates to the technical field of cleaning tools, in particular to a water spraying cleaning device.
Background
The mop is used as a common cleaning tool in daily life, a large amount of demands are met in the market, a cleaning area and a water squeezing area are arranged on a common flat mop barrel, a mouth smoothing squeezing device is respectively arranged on the two areas, when the flat mop barrel is used, a mop rod can be held by two hands to clean and dewater the mop, the mop head and the mouth smoothing squeezing device can be squeezed and cleaned relatively, the operation is more labor-saving and convenient, a wiping object can be squeezed to be dry during water squeezing, the flat mop barrel matched with the flat mop is provided, and water squeezing and cleaning can be conveniently carried out anytime and anywhere; however, most of flat mop buckets in the market are repeatedly cleaned by using the same bucket of water, and after repeated cleaning, the water in the bucket is dirty, so that the cleaning effect is poor.
SUMMERY OF THE UTILITY MODEL
It is an object of the present invention to provide a water jet cleaning device which solves the above problems.
In order to achieve the above object of the present invention, the present invention is realized by the following technical solutions:
a water spray cleaning device comprises a mop and a mop bucket, wherein the mop comprises a mop rod and a mop head connected with the mop rod, the mop head is detachably provided with a wiping material, the mop bucket comprises a water storage area and a water squeezing area, the water squeezing area is provided with a water squeezing device for squeezing the wiping object, the water storage area is provided with a water pumping device, the water pumping device is connected with the control mechanism and the spray head, the control mechanism controls the water pumping device to pump water so as to realize the switching between the cleaning state and the wringing state of the mop, under the cleaning state, the control mechanism controls the water pumping device to pump water and the water is slowly sprayed onto the wiping object by the spray head for cleaning, and under the squeezing state, the water pumping device does not pump water any more, the mop is arranged on the limiting device and is squeezed by the water squeezing device in a back-and-forth pulling mode, and water for cleaning the mop each time is purified water.
Preferably, the control mechanism steplessly adjusts the water pumping amount of the water pumping device or the water spraying time of the spray header, and freely controls the water spraying amount or the water spraying time.
Preferably, the water pumping device comprises a pump shell and a pump core, a water spray opening is arranged on a first surface of the pump shell, the pump core is provided with a water inlet channel and a second surface, a water pumping chamber with changeable volume is formed between the first surface and the second surface, and the pump core reciprocates in the water pumping chamber to enable water in the water storage area to enter the water pumping chamber from the water inlet channel and then to be slowly sprayed out from the water spray opening;
preferably, the water pumping device comprises a water bag, the water bag is made of a flexible material or a structure capable of changing volume through folding, the control mechanism enables the volume of the water bag to be reduced to realize water spraying, and the volume of the water bag is increased under the action of self elasticity or elasticity of an elastic piece to realize water pumping;
preferably, the water pumping device comprises a water truck, and the water truck moves to drive the low-level water in the water storage area to the spray header and then sprays the water to the wiping object;
preferably, the water pumping device comprises a water pump, a water inlet pipe and a water outlet pipe of the water pump are respectively communicated with the water storage area and the spray header so as to spray water in the water storage area onto the wiper, and the water pumping device is simple in structure and convenient to pump water.
The inhalant canal is equipped with movable stopper, works as when the pump core removed along the first direction, movable stopper opened inhalant canal, water in the water storage district gets into in the pumping chamber, works as when the pump core removed along the second direction, movable stopper will intake the shutoff of water passageway, water in the pumping chamber is in from the water jet blowout under bulldozing of pump core, draw water or spray water through pump core control.
Preferably, the pump core and the pump shell are vertically arranged in the water storage area, the bottom of the pump shell is provided with a water inlet part, when the pump core moves along a first direction, the movable plug opens a water inlet channel under the action of water pressure, when the pump core stops moving, the movable plug plugs the water inlet under the action of gravity,
preferably, the pump core automatically moves along the second direction under the action of water pressure or an elastic part, the water inlet is sealed by the pushing force of the pump core or the self gravity of the movable plug, and water in the pumping chamber can only be sprayed out from the water spray opening, so that the pump core can circularly and reciprocally move to pump water conveniently.
Preferably, the movable plug is spherical as a whole, a funnel-shaped first transition section is arranged at the first end of the water inlet channel, and an opening of the first transition section is gradually reduced from top to bottom and is finally smaller than the diameter of the movable plug;
preferably, the water jet is equipped with vertical section, be equipped with the ball sealer in the vertical section, the bottom of vertical section is equipped with the second changeover portion that leaks hopper-shaped, the second changeover portion from top to bottom opening diminishes gradually and finally is less than the diameter of ball sealer is convenient for the ball sealer receives its action of gravity automatic movement to shutoff position.
Preferably, the low level in the water storage area is installed through a baffle wall between the pump core and the pump shell, the baffle wall is provided with a water inlet hole for communicating the water storage area and the pumping chamber, the baffle wall comprises a first wall and a second wall, the pump core is supported above the first wall when moving to the low level, the second wall is tightly attached to the side wall of the pump shell so as to realize the supporting and positioning effect, and the displacement of the pumping device after the pump core is moved for many times is prevented.
Preferably, a barrel cover is arranged on the mop barrel, a first through hole communicated with the water storage area is formed in the barrel cover, a first extending portion extending downwards is formed in the first through hole, the first extending portion is installed on the control mechanism, the lower end of the control mechanism is connected with a pull rod, the pull rod is connected with the water pumping device, the water pumping amount of the water pumping device is controlled by the moving distance of the control mechanism on the first extending portion, and the operation and control of the water pumping device are facilitated.
Preferably, the length of the first extension part is greater than the maximum moving distance of the pump core, and the control mechanism can be prevented from falling into the water storage area after moving due to the long length.
Preferably, the control mechanism or the first extension part is provided with a first notch, so that the button can exhaust air when moving, and water on the barrel cover can flow into the water storage area.
Preferably, the barrel cover is further provided with a second through hole communicated with the water squeezing port, the second through hole is provided with a second extending portion extending towards the water squeezing port, a water squeezing device is arranged on the second extending portion, the water squeezing device comprises a water squeezing device and a supporting portion, the water squeezing device and the supporting portion are integrally formed or fixedly installed with the second extending portion, the water squeezing device and the supporting portion clamp the mop together to achieve cleaning or squeezing, and cleaning and squeezing of the mop are facilitated.
Preferably, a water passing channel is arranged above the water squeezing device, the mop moves downwards, squeezed water flows into the bottom of the mop bucket through the water passing channel,
preferably, the mop moves upwards to squeeze and wash or dry, and squeezed water flows downwards to the bottom of the mop bucket, so that sewage can be stored conveniently.
Preferably, a spray head is arranged above or below the water squeezing device and is connected with a water spraying port, water pumped by the water pumping device is sprayed onto the mop, and the mop is convenient to clean.
The beneficial effects of the utility model include: compared with the prior art, the water for cleaning the mop is all clear water by pumping and spraying water by the water pumping device, so that the cleaning effect is improved; no longer set up alone and wash district and crowded water district, reduce the product volume, conveniently accomodate and transport.
Drawings
FIG. 1 is an overall schematic view of a mop bucket of the present invention.
Fig. 2 is an exploded schematic view of a mop bucket of the present invention.
FIG. 3 is a schematic cross-sectional view of a water storage area of the present invention.
Fig. 4 is an exploded view of the water pumping device of the present invention.
Fig. 5 is a first cross-sectional view of the water pumping device of the present invention.
Fig. 6 is a schematic second sectional view of the water pumping device of the present invention.
Fig. 7 is a first cross-sectional schematic view of a mop bucket of the present invention.
Fig. 8 is a second cross-sectional schematic view of a mop bucket of the present invention.
Fig. 9 is a schematic view of a second control mechanism of the present invention.
Fig. 10 is a schematic view of a third control mechanism of the present invention.
Detailed Description
In order to make those skilled in the art better understand the solution of the present invention, the technical solution in the embodiment of the present invention will be clearly and completely described below with reference to the drawings in the embodiment of the present invention, and it is obvious that the described embodiment is only a part of the embodiment of the present invention, and not all of it. All other embodiments that can be obtained by a person skilled in the art based on the embodiments of the present invention without any inventive step shall fall within the scope of the present invention.
The terms "comprises" and "comprising," and any variations thereof, in the description and claims of this specification and the above-described drawings, are intended to cover a non-exclusive inclusion, such that a list of elements, processes, systems, articles, or devices is not necessarily limited to the particular list of elements, systems, articles, or devices, but may include other elements, processes, products, or devices not expressly listed or inherent to such elements, processes, articles, or devices.
The terms "mounted," "disposed," "provided," "connected," and "nested" in the description and claims of the utility model and the above-described drawings are to be construed broadly. For example, it may be a fixed connection, a removable connection, or a unitary construction; can be a mechanical connection, or an electrical connection; may be directly connected, or indirectly connected through intervening media, or may be in internal communication between two devices, elements or components. The specific meanings of the above terms in the present invention can be understood by those of ordinary skill in the art according to specific situations. When an installation is described as being "connected" or "connected," it can be directly connected or indirectly connected through intervening components. If not indicated otherwise, a component "disposed on," "disposed on," or "connected to" another component does not exclude the two components from being integrally formed.
Furthermore, spatially relative terms, such as bottom, top, and the like, may be used to describe one element and/or feature's relationship to another element(s) and/or feature(s), such as is illustrated in the figures. It will be understood that the spatially relative terms are intended to encompass different orientations of the device in use and/or operation in addition to the orientation depicted in the figures. For example, if the device in the figures is turned over, elements described as "front" may be oriented "back" to other elements or features. The device may be otherwise oriented (e.g., rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
Example 1
Referring to fig. 1-8, a water spray cleaning device comprises a mop 2 and a mop bucket 1, wherein the mop 2 comprises a mop rod 22 and a mop head 21 connected to the mop rod 22, the mop head 21 comprises a top plate, a bottom plate and a wiping material arranged on the bottom surface of the bottom plate, the wiping material is detachable from the bottom plate, preferably, in the embodiment, the wiping material is made of deerskin towel, collodion, sponge, scouring pad, fiber cloth, cotton cloth and other materials, the cleaning capability is strong, and the cleaning and water squeezing are convenient.
In the above embodiment, the mop bucket 1 includes the water storage area 11 and the water squeezing area 12, the water storage area 11 and the water squeezing area 12 are located at different positions, the water storage area 11 is configured to provide purified water for cleaning the mop head 21, the cleaning and the water squeezing of the mop head 21 are both performed in the water squeezing area 12, preferably, the internal cavity of the mop bucket 1 is the water squeezing area 12, the water storage area 11 is disposed at the bucket opening of the mop bucket 1, the center of the water storage area 11 is provided with the water squeezing opening 121 which penetrates up and down for cleaning or squeezing the mop 2, the inner side wall 110 on the water squeezing opening 121 is used for preventing the mop 2 from directly contacting with the water in the water storage area 11, and when cleaning or squeezing, the whole of the water storage area 11 surrounds the mop 2.
Preferably, the water storage area 11 is provided with a plurality of side walls and a bottom wall, the top is provided with a barrel cover 13, the barrel cover 13 is used for shielding the top surface of the water storage area 11 to prevent sewage from splashing, a second through hole 32 for the mop head 21 to pass through is also arranged at a position above the water squeezing port 121, a flow guide part 321 inclined towards the interior of the mop bucket 1 is arranged at the edge position of the second through hole 32, water splashed by the mop head 21 flows back into the mop bucket 1 through the flow guide part 321, the flow guide part 321 extends downwards to form a second extension part 33, a gap exists between the second extension part 33 and the side wall of the water storage area 11, a water squeezing device is arranged on the second extension part 33, the water squeezing device comprises a water squeezing device 34 and a support part 35 which are integrally formed with or fixedly installed on the second extension part 322, the water squeezing device 34 and the support part 35 clamp the mop head 21 together to realize up-down drawing cleaning or squeezing, the water squeezing device 34 is arranged between the top surface and the bottom surface of the water storage area 11, at least part of the mop head 21 is located above the bottom surface of the water storage area 11 to reduce the overall volume of the mop bucket 1, in other embodiments, a first concave portion 322 is provided on the bucket cover 13, a second through hole 32 is provided at the center of the first concave portion 322, and water squeezed out of the bucket cover 13 flows back into the mop bucket 1 along the first concave portion 322.
In this embodiment, the squeezer 34 is a scraping bar, the supporting portion 34 is a supporting rib, the scraping bar and the supporting rib are integrally formed with the second extending portion 33, in other embodiments, the squeezer 34 can be further configured as one or more combinations of a squeezing roller, a scraping plate rotationally configured, a brushing tooth and other devices having a cleaning effect, the supporting portion 35 can be further configured as a roller or a rocker arm, and only the mop head 21 needs to be supported and clamped.
Preferably, a water passage 36 is arranged above the water squeezer 34, when the mop head 21 moves downwards for cleaning and squeezing, water squeezed by the water squeezer 34 flows into the bottom of the mop bucket 1 through the water passage 36, or the mop head 21 can move upwards for squeezing, and the squeezed water flows into the bottom of the mop bucket 1 under the action of gravity.
In the above embodiment, the water pumping device 4 and the control mechanism 5 are arranged on the water storage area 11, the control mechanism 5 controls the water pumping device 4 to switch the mop 2 to the cleaning state and the squeezing state, in the cleaning state, the control mechanism 5 controls the water pumping device 4 to pump water and slowly spray the water onto the wiping object by the spray head 47 for cleaning, in the squeezing state, the water pumping device 4 does not pump water, and the mop 2 is placed on the limiting device 14 and is pushed and pulled back and forth by the squeezing device to achieve squeezing.
Specifically, the pumping device 4 includes a pump case 41 and a pump core 42, the pump case 41 is hollow and is provided with the pump core 42, preferably, the pump core 42 and the pump case 41 are vertically installed at a low position of the water storage area 11, the vertical installation is that the pump core 42 is installed along a direction in which the vertical direction moves up and down, the bottom of the pump case 41 is provided with a water inlet portion 412, the top of the pump case is provided with a first surface 413, the first surface 413 is provided with a water spray opening 44, a pumping chamber 411 is formed between the first surface 413 and a second surface 425 of the pump core 42, the volume of the pumping chamber 411 is changed by moving up and down the pump core 42, so as to realize pumping or spraying water in the pumping chamber 411, specifically, the pumping chamber 411 starts pumping water when the volume is increased, and stops pumping water and starts spraying water when the volume is decreased.
Preferably, the outer contour of the pump core 42 is provided with a sealing element 43 to enable the pump core 42 and the pump shell 41 to be in sealed sliding connection, the pump core 42 reciprocates in the pumping chamber 411 to enable water in the water storage area 11 to be sprayed out from the water spraying opening 44, the pump core 42 is provided with a water inlet channel 421, the water inlet channel 421 is provided with a movable plug 45, when the pump core 42 moves along the first direction a, the movable plug 45 opens the water inlet channel 421, the water in the water storage area 11 enters the pumping chamber 411, when the pump core 42 moves along the second direction B, the movable plug 45 moves under the action of gravity to close the water inlet channel 421, the water in the pumping chamber 411 is sprayed out from the water spraying opening 44 under the pushing and pressing of the movable plug 45, under the reciprocating movement of the pump core 42, the mop 2 is switched to a cleaning state, the mop 21 is contacted with the sprayed water to realize cleaning through the back and forth drawing of the mop head squeezing device, and forth drawing of the water spraying opening 44 stops spraying when the pump core 42 is stationary, the mop 2 is switched to a wringing state, and the mop head 21 is arranged on the limiting device 14 and is drawn back and forth through the wringing device to realize wringing.
In other embodiments, the water pumping device 4 may be installed in the water storage region 11 in a tilted or horizontal manner, and the pump core 42 pumps water when moving in the second direction B and sprays water when moving in the first direction a.
Preferably, the pump core 42 is provided with a plurality of water inlet channels 421 uniformly distributed at intervals, the water inlet channels 421 are vertically communicated and respectively connected with the water pumping chamber 411 and the water storage area 11, the water inlet channels 421 are internally provided with spherical movable plugs 45, a first end part 422 of the water inlet channels 421 is provided with a funnel-shaped first transition section 423, an opening of the first transition section 423 is gradually reduced from top to bottom and is finally smaller than the diameter of the movable plug 45, the movable plug 45 opens or blocks the first end part 422 through up and down movement to realize water pumping or water spraying of the water pumping device 4, a second end part 424 of the water inlet channels 421 is provided with a third transition section symmetrical to the first end part 422, the movable plug 45 can be prevented from moving into the water pumping chamber 411, the second end 424 of the water inlet channel 421 can also be provided with other limiting structures for preventing the movable plug 45 from moving upwards and being separated from the water inlet channel 421, and the structure of the second end 424 is not further limited in this embodiment. In other embodiments, the movable plug 45 may have other shapes, such as any one of a sphere, a cone, a truncated cone, an ellipsoid, a cylinder, and a cuboid.
Preferably, the water jet 44 is provided with a vertical section, a sealing ball 441 is arranged in the vertical section, the bottom of the vertical section is provided with a funnel-shaped second transition section 422, the opening of the second transition section 422 is gradually reduced from top to bottom and is finally smaller than the diameter of the sealing ball 441, the top of the vertical section is connected with a spray head 47 through a conduit 46 so as to spray water pumped by the water pumping device 4 onto the mop head 21, the spray head 47 is arranged above or below the water squeezer 34, and the surface is provided with a plurality of spray holes 471 distributed at intervals horizontally.
In the above embodiment, the water inlet speed of the water inlet channel 421 is greater than the water outlet speed of the water outlets 44, so that the water pumped in one time in the water pumping chamber 411 can be sprayed for a long time, and the water is slowly sprayed to facilitate the up-and-down pulling and cleaning of the mop head 21 for many times, specifically, the water inlet speed of the water inlet channel 421 and the water outlet speed of the water outlets 44 are controlled by the number or the aperture size, for example, the number of the water inlet channels 421 is greater than the number of the water outlets 44, or the aperture of the water inlet channel 421 is greater than the aperture of the water outlets 44. In this embodiment, the number of the water inlet 421 is 4, and the number of the water outlet 44 is 1.
In the above embodiment, the cavity 111 is disposed at the bottom of the water storage area 11, the blocking wall 112 is disposed in the cavity 111, the pump casing 41 is mounted on the blocking wall 112, the blocking wall 112 is provided with the water inlet hole 115, the water inlet hole 115 is used for communicating the water storage area 11 with the water inlet portion 412, the blocking wall 112 includes the first wall 113 and the second wall 114, and the first wall 113 is disposed below the pump casing 41 and the pump core 42. The second wall 114 is provided at the outer periphery of the side wall of the pump case 41 to support and clamp the pump case 41.
In the above embodiment, the barrel cover 13 is further provided with a first through hole 31 communicated with the water storage region 11, the first through hole 31 is provided with a first extending portion 311 extending downward, the first extending portion 311 is provided with the control mechanism 5, the lower end of the control mechanism 5 is connected with the pull rod 51, the lower end of the pull rod 51 penetrates through the pump shell 41 and then is connected with the center of the pump core 42, and the pump core 42 is driven to move downward when the control mechanism 5 is pressed. Preferably, the length of the first extending portion 311 is greater than the maximum moving distance of the pump core 42, the length of the first extending portion 311 is the depth extending downward from the barrel cover 13, so as to prevent the control mechanism 5 from separating from the limit of the first extending portion 311 and falling into the water storage area 11 when moving to the low position, the control mechanism 5 or the first extending portion 311 is provided with a first notch 52, so as to facilitate air exhaust when the button 5 moves, and further enable water on the barrel cover 13 to flow into the water storage area 11, specifically, the first notch 52 is provided with a channel through which air or water flows, such as a through hole or a groove, in this embodiment, the specific form of the first notch 52 is not further limited, and a spring 53 is provided between the pump core 42 and the water storage area 11, so as to enhance the self-restoring force of the pump core 42 when the water pressure is insufficient.
Preferably, the control mechanism 5 is configured to steplessly adjust the pumping amount of the pumping device 4 or the water spraying time of the spray header 47, and specifically, the single pumping amount of the pumping device 4 is controlled by controlling the moving distance of the control mechanism 5 on the first extension 311, and the water spraying time of the spray header 47 is indirectly controlled.
Preferably, when the mop 2 is cleaned, the mop needs to be pulled up and down for multiple times for cleaning, in this embodiment, the maximum volume of the water pumping chamber 411 is 0.1L to 1L, when the water pumping chamber 411 pumps water to the maximum volume, the water volume required by the up-and-down pulling cleaning of the mop 2 for more than 10 times can be met, and when the mop 2 only needs to be soaked or is relatively clean, the water pumping volume in the water pumping chamber 411 is controlled by controlling the distance of the pressing control mechanism 5, so as to prevent waste caused by excessive water spraying. Meanwhile, the water pumping chamber 411 has a volume that allows the water injection port 44 to continuously inject water for a period of 1S to 60S.
In the above embodiment, the tub cover 13 is further provided with a water filling port 131 for filling water into the water storage region 11, the bottom of the mop tub 1 is provided with a water draining port 122 for draining water, and a suction cup 123 for increasing the suction force between the mop tub 1 and the ground so as to prevent the mop tub 1 from being lifted up when the mop 2 is pulled up and down.
The principle and use process of the mop bucket 1 are as follows:
during cleaning, a proper amount of clean water is filled in the water storage area 11, the mop head 21 is rotated to a cleaning state parallel to the mop rod 22, one hand or the mop 2 presses the control mechanism 5 downwards, the control mechanism 5 drives the pump core 42 to move downwards along the first direction A, the movable plug 45 is far away from the first end part 422 of the water inlet channel 421 under the action of inertia and water pressure, water in the water storage area 11 flows into the pumping chamber 411 from the water inlet channel 421, the pump core 42 stops moving and then moves upwards along the second direction B under the action of the water pressure of the water storage area 11 and the action of the spring 53, the movable plug 45 moves along the first transition section 423 under the action of gravity and inertia to plug the first end part 422, the pump core 42 continuously moves, the water pressure in the pumping chamber 411 is reduced and increased, the water pushes up the sealing ball 441 to flow onto the spraying head 47 from the water outlet 44 and is sprayed out 471 from the spraying hole, the other hand inserts the mop 2 into the mop barrel 1 along the second through hole 32, water is sprayed on the mop head 21, the mop 2 is pulled up and down, the mop 2 is cleaned under the action of the water squeezing device, and the cleaned water flows out of the water passage 36 to the bottom of the mop barrel 1.
When water is squeezed, the pump core 42 is static, the spray head 47 does not spray water any more, the mop 2 is pulled up and down, the mop head 21 begins to squeeze water under the clamping action of the water squeezing device 34 and the supporting part 35, and when the water is squeezed, the mop head 21 cannot contact with sewage at the bottom of the mop barrel 1 under the action of the limiting device 14, and the mop head 21 can squeeze water.
Example 2
As shown in fig. 9 and 10, the structure and principle of the present embodiment are substantially the same as those of embodiment 1, and the substantially same points are not described redundantly, but only different points are described, where: the water pumping device 4 is arranged as a water bag 61, the water bag 61 is provided with a water inlet and a water outlet which are respectively communicated with the water storage area 11 and the spray head 47, the water bag 61 can change the volume thereof to pump water and spray water, specifically, the water bag 61 is made of flexible materials such as rubber and silica gel or made of a foldable structure, the control mechanism 5 is connected with the water bag 61 and controls the volume of the water bag 61, when the volume of the water bag 61 is reduced, water in the water bag 61 is extruded to be sprayed out from the spray head 47, after the control mechanism 5 is loosened by hands, the volume of the water bag 61 is increased under the elastic force of the hands or the elastic force of the elastic part, and water is pumped from the water storage area 11.
In other embodiments, the water pumping device 4 may also be configured as a water pump 62, a water inlet pipe and a water outlet pipe of the water pump 62 are respectively communicated with the water storage area 11 and the shower head 47, and water in the water storage area 11 is sprayed onto the wiper through the water pump 62 for cleaning; the water pumping device 4 can be set as a waterwheel, and the low-level water in the water storage area 11 is driven to the spray header 47 by the movement of the waterwheel and then sprayed on the wiping articles.
The above description of the present invention is intended to be illustrative. Various modifications, additions and substitutions for the specific embodiments described may be made by those skilled in the art without departing from the scope of the utility model as defined in the accompanying claims.

Claims (13)

1. A water spray cleaning device comprises a mop and a mop bucket, wherein the mop comprises a mop rod and a mop head connected with the mop rod, the mop head is detachably provided with a wiping material, the mop bucket comprises a water storage area and a water squeezing area, the water squeezing area is provided with a water squeezing device for squeezing the wiping object, the water storage area is provided with a water pumping device, it is characterized in that the water pumping device is connected with a control mechanism and a spray head, the control mechanism controls the water pumping device to pump water so as to realize the switching between a cleaning state and a wringing state of the mop, under the cleaning state, the control mechanism controls the water pumping device to pump water and the water is slowly sprayed onto the wiping object by the spray head for cleaning, and under the squeezing state, the water pumping device does not pump water any more, and the mop is arranged on the limiting device and is squeezed by the water squeezing device in a back-and-forth drawing mode.
2. The water jet cleaning device of claim 1, wherein the control mechanism steplessly adjusts the pumping amount of the pumping device or the water jet time of the shower head.
3. The water jet cleaning apparatus of any one of claims 1 or 2, wherein the water pumping means is provided in any one of the following configurations:
the water pumping device comprises a pump shell and a pump core, wherein a water spraying opening is formed in a first surface of the pump shell, a water inlet channel and a second surface are formed in the pump core, a water pumping chamber with changeable volume is formed between the first surface and the second surface, and the pump core moves in the water pumping chamber in a reciprocating mode to enable water in the water storage area to enter the water pumping chamber from the water inlet channel and then be slowly sprayed out from the water spraying opening;
the water pumping device comprises a water bag, the water bag is made of flexible materials or a structure with a folding volume, the control mechanism enables the volume of the water bag to be reduced to realize water spraying, and the volume of the water bag is increased under the action of self elasticity or elasticity of an elastic piece to realize water pumping;
the water pumping device comprises a water truck, and the water truck moves to drive low-level water in the water storage area to the spray header and then sprays the water to the wiping object;
the water pumping device comprises a water pump, and a water inlet pipe and a water outlet pipe of the water pump are respectively communicated with the water storage area and the spray header so as to spray water in the water storage area onto the wiper.
4. The water jet cleaning device of claim 3, wherein the water inlet passage is provided with a movable plug, when the pump core moves along a first direction, the movable plug opens the water inlet passage, water in the water storage area enters the pumping chamber, when the pump core moves along a second direction, the movable plug closes the water inlet passage, and water in the pumping chamber is ejected from the water jet under the pushing of the pump core.
5. The water spraying cleaning device according to claim 4, wherein the pump core and the pump shell are vertically installed in the water storage area, the bottom of the pump shell is provided with a water inlet part, when the pump core moves along a first direction, the movable plug opens a water inlet channel under the action of water pressure, when the pump core stops moving, the movable plug blocks the water inlet under the action of gravity,
and/or the pump core automatically moves along the second direction under the action of water pressure or an elastic part, the water inlet is sealed by the pushing force of the pump core or the self gravity of the movable plug, and water in the pumping chamber can only be sprayed out from the water spraying port.
6. The water spray cleaning device according to claim 5, wherein the movable plug is spherical as a whole, the first end of the water inlet channel is provided with a funnel-shaped first transition section, and the opening of the first transition section is gradually reduced from top to bottom and is finally smaller than the diameter of the movable plug;
and/or, the water jet is equipped with vertical section, be equipped with the ball sealer in the vertical section, the bottom of vertical section is equipped with the second changeover portion that leaks hopper-shaped, the second changeover portion from top to bottom opening diminishes gradually and finally is less than the diameter of ball sealer.
7. The water jet cleaning device according to claim 5, wherein the pump core and the pump housing are mounted at a low position of the water storage region through a baffle wall, the baffle wall is provided with a water inlet hole for communicating the water storage region and the water pumping chamber, the baffle wall comprises a first wall and a second wall, the pump core is supported above the first wall when moving to the low position, and the second wall is tightly attached to the side wall of the pump housing to realize the supporting and positioning effects.
8. The water spray cleaning device according to claim 1, wherein a barrel cover is provided on the mop barrel, a first through hole communicated with the water storage region is provided on the barrel cover, the first through hole is provided with a first extending portion extending downwards, the control mechanism is installed on the first extending portion, a pull rod is connected to the lower end of the control mechanism, the pull rod is connected with the water pumping device, and the water pumping amount of the water pumping device is controlled by pressing the moving distance of the control mechanism on the first extending portion.
9. The water jet cleaning device of claim 8 wherein the length of the first extension is greater than the maximum travel distance of the pump cartridge.
10. The water jet cleaning device of claim 9, wherein the control mechanism or the first extension is provided with a first notch.
11. The water spraying cleaning device according to claim 8, wherein the bucket cover is further provided with a second through hole communicated with the water squeezing port, the second through hole is provided with a second extending portion extending towards the water squeezing port, the second extending portion is provided with a water squeezing device, the water squeezing device comprises a water squeezing device and a supporting portion, the water squeezing device and the supporting portion are integrally formed or fixedly installed with the second extending portion, and the water squeezing device and the supporting portion clamp the mop together to achieve cleaning or squeezing.
12. The water jet cleaning device of claim 11, wherein the water squeezing device is provided with a water passage above the water squeezing device, the mop moves the squeezed water downwards to flow into the bottom of the mop bucket through the water passage, or the mop moves upwards to squeeze and clean or squeeze the water, and the squeezed water flows downwards to the bottom of the mop bucket.
13. The water jet cleaning device of claim 12, wherein a spray header is provided above or below the water jet, the spray header being connected to the water jet.
CN202120807631.XU 2021-04-19 2021-04-19 Water spray cleaning device Active CN215777871U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120807631.XU CN215777871U (en) 2021-04-19 2021-04-19 Water spray cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120807631.XU CN215777871U (en) 2021-04-19 2021-04-19 Water spray cleaning device

Publications (1)

Publication Number Publication Date
CN215777871U true CN215777871U (en) 2022-02-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120807631.XU Active CN215777871U (en) 2021-04-19 2021-04-19 Water spray cleaning device

Country Status (1)

Country Link
CN (1) CN215777871U (en)

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