CN218552268U - Water squeezing head, water squeezing frame and mop - Google Patents
Water squeezing head, water squeezing frame and mop Download PDFInfo
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- CN218552268U CN218552268U CN202122091889.7U CN202122091889U CN218552268U CN 218552268 U CN218552268 U CN 218552268U CN 202122091889 U CN202122091889 U CN 202122091889U CN 218552268 U CN218552268 U CN 218552268U
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- wringing
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Abstract
The utility model belongs to the technical field of cleaning device, especially, relate to a water-squeezing head, water-squeezing frame and mop. The water squeezing head is used for being arranged on the mop rod and squeezing water for the mop head, and comprises an installation seat, at least one water scraping piece and a closing cover; the at least one water scraping piece penetrates through the mounting seat, and the mounting seat and the at least one water scraping piece enclose a water squeezing channel for the mop head to penetrate through; the at least one water scraping piece is used for scraping and squeezing water in the mop head when the mop head passes through the water squeezing channel; close and cover detachable connection on the mount pad to close the both ends that the lid backstop lived at least one piece of scraping. By the technical scheme, the problem that when the existing flat mop is used for squeezing water, the flat mop and the mop bucket are matched for squeezing water, the mop bucket is large in occupied area and cannot move along with the mop, a user needs to lift the mop bucket to transfer the mop bucket, and the use is inconvenient is solved.
Description
Technical Field
The utility model belongs to the technical field of cleaning device, especially, relate to a water-squeezing head, water-squeezing frame and mop.
Background
In daily life, after the floor is cleaned by the broom, the floor is generally mopped by the mop, so that the floor is cleaner. Generally, the mop cloth of the mop is soaked in clean water, and is cleaned to absorb enough water, and the mop cloth needs to be squeezed to reduce the water absorbed in the mop cloth, and then the mop cloth is used for mopping the floor or is directly stored for drying.
In the prior art, a wringing structure is fitted with the mop, with which the mop is wrung during use. However, in the existing flat mop, the water squeezing structure provided with the flat mop is designed in the mop bucket, the flat mop and the mop bucket are required to be matched for use for squeezing water, the mop bucket is used as a part separated from the flat mop, the occupied area is large, the flat mop cannot be moved along with the mop, a user is required to lift the mop bucket for transferring, and the use is inconvenient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a crowded flood peak, crowded water frame and mop, when aiming at solving current dull and stereotyped mop and crowded water, need dull and stereotyped mop and mop bucket cooperation to use and crowd water, the mop bucket not only area occupied is big, can not follow the mop moreover and remove together, needs the user to carry and is carrying the mop bucket and shift, uses inconvenient problem.
In order to achieve the above object, the utility model adopts the following technical scheme: a wringing head is used for being installed on a mop rod to wring water for the mop head, and comprises an installation seat, at least one water scraping piece and a closing cover; the at least one water scraping piece penetrates through the mounting seat, and the mounting seat and the at least one water scraping piece enclose a water squeezing channel for the mop head to penetrate through; the at least one water scraping piece is used for scraping and squeezing water in the mop head when the mop head passes through the water squeezing channel; close and cover detachable connection on the mount pad to close the both ends that the lid backstop lived at least one piece of scraping.
Use this crowded flood peak to squeeze water to the mop head, this crowded flood peak is installed on the mop pole to make this crowded flood peak can remove along with the mop, and, the volume of installing the crowded flood peak on the mop pole is little for mop bucket occupation area, follows the mop moreover and puts together and accomodate, the user need not to carry again mop bucket and mop shift together and cooperate the mop bucket to squeeze water to the mop head, it is more convenient, practical to use this crowded flood peak to squeeze water to the mop head.
In addition, because this crowded flood peak has only adopted the mount pad, scrape water spare and close the lid and assemble, can assemble the major structure who accomplishes this crowded flood peak, in this embodiment, scrape water spare and run through the assembly on the mount pad, then connect on the mount pad through closing lid detachably, utilize and close the lid backstop and scrape the both ends of water spare in order to prevent to scrape the water spare and deviate from the mount pad, just so can will scrape the both ends of water spare simultaneously through closing the lid and fix on the mount pad, especially when crowded flood peak includes a plurality of water spares, close the lid and can fix the both ends of a plurality of water spares on the mount pad simultaneously, thereby the structural design of crowded flood peak has been simplified, the assembly process has been simplified, the assembly work efficiency is greatly improved, be suitable for mass assembly production more. Moreover, because the cover is detachably connected to the mounting seat, and the water scraping piece is assembled on the mounting seat in a penetrating manner, in this way, when dirt hidden in the water squeezing channel needs to be cleaned, the cover only needs to be detached from the mounting seat, the water scraping piece can be directly separated from the mounting seat, and then the hidden dirt is cleaned.
Optionally, the closing cover is clamped or buckled with the mounting seat; or the water squeezing head also comprises a detachable connecting piece, and the closing cover is fixed on the mounting seat through the detachable connecting piece.
Optionally, the mounting seat has a first vertical wall and a second vertical wall which are opposite to each other, two ends of the at least one wiper member respectively penetrate through the first vertical wall and the second vertical wall, and the close cover is connected to the outer sides of the first vertical wall and the second vertical wall far away from the wiper member.
Optionally, the closing cover is provided with a guide groove, the first vertical wall and the second vertical wall are provided with a convex rib, and the convex rib is inserted and embedded in the guide groove; or the closing cover is provided with a convex rib, the first vertical wall and the second vertical wall are both provided with guide grooves, and the convex rib is used for being inserted and embedded in the guide grooves.
Optionally, the mounting seat further has a base, and the first standing wall and the second standing wall are oppositely arranged on two sides of the base; the base part is provided with a through groove for the mop rod to pass through, and the through groove is communicated with the water squeezing channel.
Optionally, the squeezing head is further provided with a buckle hook and a buckle opening which are matched with each other, one of the buckle hook and the buckle opening is arranged on the closing cover, the other one of the buckle hook and the buckle opening is arranged on the base, and the buckle hook can be buckled and fixed in the buckle opening.
Optionally, the number of the water scraping members is multiple, and the multiple water scraping members are arranged at intervals along the extending direction of the water squeezing channel.
Optionally, the wringing head further comprises a comb tooth structure for combing the wiping surface of the mop head, the comb tooth structure being provided on the wiping member.
Optionally, the wiper member is a wiper blade or a wiper roll.
According to another aspect of the utility model, a crowded water frame is provided, include: the water squeezing head is arranged on the control part; the control part is connected to the mop rod in a sliding mode and can slide along the axial direction of the mop rod.
After the user utilizes the mop to clean the completion to the floor, the user utilizes cleaning solution sanitization with the mop after, the portion of cleaning of mop head has inhaled moisture, then the user operates control portion for crowded flood peak is followed control portion and is removed along the mop pole, removes through crowded water passageway when the mop head, then scrapes the wiping portion of water spare to the mop head and scrapes crowded moisture, makes the work of carrying out crowded water to the mop head more convenient, swift. And, the water squeezing frame of this embodiment is assembled on the mop, can follow the mop and shift together, can utilize the water squeezing frame to carry out the crowded water to the mop head anytime and anywhere, and is very convenient, has promoted user experience.
Optionally, the control part comprises a handle and at least one connecting rod, the handle is sleeved on the mop rod, one end of the connecting rod is connected to the handle, and the other end of the connecting rod is connected to the water squeezing head; the number of the connecting rods is at least three, the at least three connecting rods are arranged in parallel, and the central axes of the at least three connecting rods are not coplanar.
According to another aspect of the present invention, there is provided a mop, comprising: the mop rod, connect in mop head and the crowded water frame of one end of mop rod.
After having washd the mop head, use the crowded water frame to carry out the crowded water to the mop head, because crowded water frame is the assembly on the mop pole, crowded water frame can shift along with the mop, can be anytime and anywhere to carrying out the crowded water to the mop, need not to occupy moreover and place the space, directly put along with the mop accomodate can, it is very convenient to use.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the embodiments or the prior art descriptions will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without inventive labor.
FIG. 1 is an exploded view of a wringer head according to an embodiment of the present invention;
FIG. 2 is a schematic view of a closing cover in the squeezing head shown in FIG. 1;
FIG. 3 is a schematic view of the mounting seat in the wringing head of FIG. 1;
fig. 4 is an exploded view of another wringing head in accordance with an embodiment of the present invention;
FIG. 5 is an exploded view of another wringing head in accordance with an embodiment of the present invention;
fig. 6 is a front view of a wiper member in the wringing head shown in fig. 5;
fig. 7 is an assembly structure diagram of the wringing rack according to the embodiment of the present invention;
FIG. 8 is an exploded view of the wringing rack of an embodiment of the present invention;
FIG. 9 is a schematic view of an assembly structure of a mop according to an embodiment of the present invention;
FIG. 10 is a partial exploded view of a mop in accordance with an embodiment of the present invention;
FIG. 11 is a schematic view of a mop according to an embodiment of the present invention at the beginning of squeezing water;
FIG. 12 is an enlarged view taken at A in FIG. 11;
FIG. 13 is a front view of the mop according to the embodiment of the present invention, showing the wiping member at an initial high position during squeezing;
fig. 14 is a schematic back view of the mop according to the embodiment of the present invention, wherein the wiping member is at the initial high position during the squeezing process;
fig. 15 is a front view schematically illustrating the structure of the mop according to the embodiment of the present invention, wherein the wiping member is located at a lower end during the squeezing process;
fig. 16 is a back view showing a structure of a mop according to an embodiment of the present invention, in which the wiping member is located at a lower end during squeezing.
Wherein, in the figures, the respective reference numerals:
10. a mop head; 11. a wiping section; 12. a mop plate; 20. a mop rod; 30. a water squeezing frame; 31. a control unit; 311. a handle; 312. a connecting rod; 313. a guide member; 32. a mounting seat; 321. a first vertical wall; 322. a second vertical wall; 320. a card slot; 323. a base; 324. passing through the slot; 325. a rib is protruded; 33. closing the cover; 331. buckling; 332. a guide groove; 34. a wiper member; 34', a resilient component; 341. a comb structure; 342. a first through hole; 343. a second through hole; 35. a guide wheel; 100. a connection location; 101. a first screw; 102. a second screw.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are merely for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
As shown in fig. 1 to 3, the wringing head provided by the embodiment of the present invention is used for being mounted on a mop rod 20 and wringing a mop head 10. Specifically, the wringing head includes a mount 32, at least one wiper 34, and a closure 33. When the mop is assembled, the at least one water scraping piece 34 penetrates through the mounting seat 32, the close cover 33 is detachably connected to the mounting seat 32, the close cover 33 is used for stopping two ends of the water scraping piece 34, so that the water scraping piece 34 is fixedly mounted on the mounting seat 32, and after the water scraping piece 34 is assembled, the mounting seat 32 and the at least one water scraping piece 34 enclose a water squeezing channel for the mop head 10 to penetrate through. Thus, when the mop head 10 passes through the water squeezing channel, the water scraping element 34 is used for scraping and squeezing the water in the wiping part 11 of the mop head 10, so that the water absorbed in the wiping part 11 of the mop head 10 is squeezed out, and the wiping part 11 of the mop head 10 is dried or the floor is wiped after the water is scraped and squeezed.
Use the utility model provides a crowded water head carries out crowded water to mop head 10, after mop head 10 is in the cleaning solution (the cleaning solution can be the clear water or mix the cleaning water that has the detergent) sanitization, mop head 10's wiping portion 11 has absorbed sufficient moisture this moment, then let mop head 10 remove along crowded water passageway and pass through, at the in-process that mop head 10 removed, scrape the wiping portion 11 that water piece 34 supports top mop head 10, thereby extrude the moisture in the wiping portion 11 of mop head 10 and scrape, make the moisture in the wiping portion 11 of mop head 10 scraped crowded reduction, then accomodate the mop and dry wiping portion 11 or reuse mop and clean the floor.
Use this wringing head to wring mop head 10, this wringing head is installed on mop pole 20, thereby make this wringing head can remove along with the mop, and, the volume of the wringing head of installing on mop pole 20 is for the mop bucket occupation area little, and it puts together to follow the mop and accomodate, the user need not to carry again and shift together with the mop and cooperate the mop bucket to wring water to the mop head, use this wringing head to wring mop head 10, mop head 10 reciprocates in wringing the passageway and removes several times and scrape crowded moisture, thereby scrape the moisture that contains in wiping portion 11 of mop head 10 as much as possible and extrude, better wringing effect has, it is very convenient, practical to use.
In addition, the water squeezing head only adopts the installation seat 32, the water scraping piece 34 and the closing cover 33 for assembly, so that the main structure of the water squeezing head can be assembled, in the embodiment, the water scraping piece 34 penetrates through the installation seat 32 and is detachably connected to the installation seat 32 through the closing cover 33, and the closing cover 33 can stop two ends of the water scraping piece 34 to prevent the water scraping piece 34 from falling off the installation seat 32, so that two ends of the water scraping piece 34 can be simultaneously fixed on the installation seat 32 through the closing cover 33, and particularly, when the water squeezing head comprises a plurality of water scraping pieces 34, the closing cover 33 can simultaneously fix two ends of the plurality of water scraping pieces 34 on the installation seat 32, so that the structural design of the water squeezing head is simplified, the assembly process is simplified, the assembly work efficiency is greatly improved, and the water squeezing head is more suitable for mass assembly production.
Moreover, because close the lid 33 and be the detachably connection on mount pad 32, and scrape water piece 34 and run through the assembly on mount pad 32, like this, when the dirt that hides in crowded water passageway is cleared up to needs, only need to close lid 33 and dismantle from mount pad 32, just can directly separate from mount pad 32 scraping water piece 34, it is very convenient to dismantle the process, then clear up the dirt that hides, consequently, the wringing head of this embodiment can conveniently be dismantled, thereby conveniently clear up the dirt that hides in crowded water passageway, avoid hiding the peculiar smell that dirty production is received and influence environmental sanitation.
In one example, the number of wiper elements 34 is seven. When the water scraping pieces 34 are installed, firstly, the seven water scraping pieces 34 penetrate through the installation seat 32, then the closing cover 33 is detachably connected with the installation seat 32, at the moment, the closing cover 33 is connected to the outer side of the installation seat 32 and stops two ends of the seven water scraping pieces 34, the seven water scraping pieces 34 are prevented from falling off from the installation seat 32, and therefore the seven water scraping pieces 34 can be installed on the installation seat 32 at the same time.
In this embodiment, can the joint between closing lid 33 and the mount pad 32, that is, close and set up the protruding portion of tenon fourth of twelve earthly branches structure on one of lid 33 and mount pad 32 to another one of them then sets up the assembly groove of tenon fourth of twelve earthly branches structure, thereby will close lid 33 and mount pad 32 and fix through tenon fourth of twelve earthly branches structure joint, have better connection stability, convenient assembly moreover. Or, in this embodiment, the closing cover 33 and the mounting base 32 can be fastened, that is, one of the closing cover 33 and the mounting base 32 is provided with a hook 331, and the other side of the closing cover 33 and the mounting base 32 is provided with a fastening opening (not shown) which is matched with the hook 331 for installation, so that the closing cover 33 and the mounting base 32 are fixed by an assembling manner of fastening the hook 331 and the fastening opening, and thus, the closing cover 33 and the mounting base 32 not only have better connection stability, but also are convenient to assemble and disassemble, and convenient to maintain and replace. Still alternatively, the wringing head further includes a detachable connection (not shown) including, but not limited to, a combination of, for example, a screw, a bolt, and a nut; it is also possible to provide a locking structure having one end pivotally connected to one of the cover 33 and the mounting seat 32 and the other end locked to the other. Like this, close lid 33 alright with fix on mount pad 32 through the connecting piece of dismantling, not only convenient equipment, dismantlement have better connection stability moreover.
As shown in fig. 2 and 3, the mounting seat 32 has a first standing wall 321 and a second standing wall 322 opposite to each other, the first standing wall 321 and the second standing wall 322 are both provided with a rib 325, the closing cover 33 is provided with a guide groove 332, and the rib 325 is used for being inserted into the guide groove 332; alternatively, as shown in fig. 2, the cover 33 is provided with a rib 325, the first standing wall 321 and the second standing wall 322 are provided with a guide groove 332, and the rib 325 is used for being inserted into the guide groove 332. In this way, in the process of assembling the closing cover 33 to the mounting seat 32, the guiding is performed through the matching between the convex rib 325 and the guiding groove 332, so that the closing cover 33 and the mounting seat 32 can be aligned more accurately to complete the assembling more accurately and quickly.
After the interference fit between the rib 325 and the guide groove 332, the cover 33 and the mounting seat 32 can be assembled and fixed, and the assembling process is accurate, convenient and quick. Further, when the rib 325 and the guide groove 332 are in clearance fit or transition fit, as shown in fig. 2 and fig. 3, the water squeezing head further includes a hook 331 and a buckle opening (not shown) which are matched with each other, one of the hook 331 and the buckle opening is arranged on the cover 33, the other is arranged on the base 323, and the hook 331 is fastened and fixed in the buckle opening, so that in the process of assembling the cover 33 to the mounting seat 32, the assembling positioning and guiding between the rib 325 and the guide groove 332 are realized through the matching between the rib 325 and the guide groove 332, and the cover 33 and the mounting seat 32 are assembled and fixed through the hook 331 and the buckle opening, and the assembling process is accurate, convenient and fast.
As shown in fig. 3, the mounting seat 32 further has a base 323, the first standing wall 321 and the second standing wall 322 are oppositely disposed at two sides of the base 323, two ends of the wiper element 34 respectively penetrate through the first standing wall 321 and the second standing wall 322, the close cover 33 is connected to the outer sides of the first standing wall 321 and the second standing wall 322 far away from the wiper element 34, so as to stop the two ends of the wiper element 34, so that the wiper element 34 cannot be separated from the mounting seat 32, so that the wiper element 34 can be conveniently and quickly mounted and fixed on the mounting seat 32 through the close cover 33, and the wiper element 34 can be detached during the process of conveniently using the mop, so as to clean dirt hidden in the water squeezing channel, and keep the mop clean. And the base 323 is provided with a through groove 324 which is communicated with the water squeezing channel through the groove 324, and in the process that the mop head 10 passes through the water squeezing channel, the mop rod 20 passes through the through groove 324, so that the mop rod 20 is not interfered in movement, the mop head 10 can squeeze water through the water squeezing channel from head to tail at one time, the water in the wiping part 11 of the mop head 10 is scraped and squeezed more cleanly, the mop head 10 moves in the water squeezing channel for a plurality of times in a reciprocating manner, and the wiping and drying effects are better.
As shown in fig. 1, the wringer head also includes at least one idler 35, the idler 35 being mounted on a base 323. In the process that the mop head 10 moves through the wringing channel, the guide wheel 35 can be in contact with the back surface of the mop plate 12 of the mop head 10 so as to guide the movement of the mop plate 12, so that the mop head 10 can move more smoothly through the wringing channel to finish the wringing operation, and the wringing work efficiency is improved.
In the embodiment of the present invention, the number of the wiper members 34 is plural, and the plural wiper members 34 are arranged at intervals along the extending direction of the squeezing passage. Referring to fig. 13 to 16 in combination, in the process that the mop head 10 moves through the squeezing channel, each of the scraping members 34 successively scrapes and squeezes the wiping portion 11 of the mop head 10, that is, after the previous scraping member 34 finishes scraping and squeezing the wiping portion 11 of the mop head 10, the next scraping member 34 then scrapes and squeezes the wiping portion 11 again until the whole mop head 10 moves through the last scraping member 34, and the mop head 10 moves through the squeezing channel repeatedly for several times, so that the squeezing efficiency is greatly improved, and the wiping and drying effects are better.
After a user uses the mop to wipe a floor, sundries such as hair, debris and the like are always adhered to the surface of the wiping part 11 of the mop head 10, and the sundries are difficult to be completely cleaned in the cleaning liquid, that is, after the mop head 10 is cleaned in the cleaning liquid, sundries are also adhered to the surface of the wiping part 11 of the mop head 10, in order to clean the sundries, the wringing head further comprises a comb tooth structure 341 for combing the front surface of the mop head 10 (the front surface of the mop head 10 refers to the wiping part 11 of the mop head 10 for wiping the floor surface), and referring to fig. 12, the comb tooth structure 341 is arranged on the water scraping piece 34. In this way, when the mop head 10 moves through the wringing channel, the comb teeth 341 comb the surface of the wiping part 11, so as to clean the impurities from the surface of the wiping part 11, and make the cleaned mop head 10 cleaner.
Preferably, in the present embodiment, the wiper member 34 includes, but is not limited to, a wiper blade, or a wiper roller. When the wiper 34 is a wiper, a plurality of wiper strips are arranged at intervals along the moving direction of the mop on the side of the wiper facing the mop, each wiper strip scrapes the wiping part 11 of the mop head 10, the water scraped and extruded from the wiping part 11 flows out from the front of each wiper strip (the front along the moving direction of the mop head 10), the wiper is used as the wiper 34, and the wiper strips contact and scrape the wiping part 11 at the same time, so that the contact area between the wiper and the wiping part 11 can be increased at the same time, and the wiping efficiency is improved. When wiping piece 34 and for wiping the water roller, mop head 10 is at the in-process through crowded water passageway, and it can rotate in step under the drive of wiping portion 11 to wipe the water roller, also can play the effect of direction to the removal of mop head 10 when carrying out crowded water to wiping portion 11 for what mop head 10 can remove is more convenient, smooth and easy, not hard, thereby promotes user experience.
According to another squeezing head for squeezing water from the mop head 10 provided by the embodiment of the present invention, as shown in fig. 4, the squeezing head is installed on the mop rod 20. Specifically, the wringing head includes a mounting seat 32 and a wiping portion for wiping water in the wiping portion 11 of the mop head 10. More specifically, the wiper portion comprises a resilient member 34' and at least one wiper element 34. When the mop head 10 enters the water squeezing channel, the elastic component 34' abuts against the surface of the wiping part 11 of the mop head 10 and avoids the mop head 10 to the side far away from the mounting seat 32, so that the mop head 10 can enter the water squeezing channel more conveniently, meanwhile, the elastic component 34' also squeezes the wiping part 11 of the mop head 10, and then the mop head 10 continues to be pressed by the wiping part 34 through the water squeezing channel to squeeze water continuously, so that the surface of the wiping part 11 of the mop head 10 is scraped and squeezed by the elastic component 34' and the wiping part 34.
Use this head of squeezing water to mop head 10 and carry out the crowded water, this head of squeezing water is installed on mop pole 20, thereby make this head of squeezing water can remove along with the mop, and, the volume of installing the head of squeezing water on mop pole 20 is little for mop bucket, and it puts together and accomodates to follow the mop, the user need not to carry again and shifts together with the mop bucket and cooperate the mop bucket to carry out the crowded water to mop head 10, use this head of squeezing water to carry out the crowded water to mop head 10, mop head 10 reciprocates in crowded water passageway and scrapes crowded moisture several times, thereby scrape the extrusion of the moisture that contains in the wiping portion 11 with mop head 10 as much as possible, better crowded water effect has. Due to the fact that the elastic component 34' is installed on the installation seat 32, when the mop head 10 enters the water squeezing channel, the wiping part 11 firstly abuts against the elastic component 34', and at the moment, the elastic component 34' avoids the mop head 10 towards the side far away from the installation seat 32, so that the mop head 10 can enter the water squeezing channel more conveniently and smoothly. When the wiping part 11 of the mop head 10 absorbs enough moisture and then contacts with the elastic component 34' to abut against each other, at this time, the wiping part 11 has a strong pressure-bearing capacity, so that the wiping part 11 and the wiping part just abut against each other, which is equivalent to rigid collision, and the wiping part 11 is easily torn, and the wringing head is provided with the elastic component 34' on the mounting seat 32 to avoid the mop head 10, so that the wiping part 11 and the elastic component 34' are in flexible contact at the beginning of contact, and the wiping part 11 is well protected. Moreover, the elastic component 34' can flexibly protect the wiping part 11 and squeeze out a certain amount of water from the wiping part 11, then the mop head 10 continues to enter the water squeezing channel, and the wiping piece 34 continues to squeeze out water from the wiping part 11, so that the water in the wiping part 11 is fully squeezed out.
As shown in fig. 4, the resilient assembly 34' includes a resilient wringer that resiliently flexes to conform to the wiping surface of the mop head 10 as the mop head 10 enters the wringing channel. When the elastic wringing piece is used as the elastic component 34', the appearance shape of the elastic wringing piece is the same as that of the wiping piece 34, the design is convenient, only the elastic wringing piece is required to be manufactured and molded by adopting an elastic material, the installation process of the elastic wringing piece is the same as that of the wiping piece 34, namely, the elastic wringing piece and the wiping piece 34 are detachably connected on the installation seat 32, the installation process is simplified, and the installation efficiency is improved.
Alternatively, the elastic component 34' includes a water squeezing member and an elastic member, wherein the elastic member includes, but is not limited to, a coil spring or a spring plate, the water squeezing member is connected to the mounting seat 32 through the elastic member, when the mop head 10 enters the water squeezing channel, the surface of the wiping part 11 of the mop head 10 abuts against the water squeezing member, and the water squeezing member squeezes the elastic member to avoid the mop head 10, and the elastic member accumulates elastic potential energy, so that the wiping part 11 is in flexible contact with the water squeezing member as soon as the wiping part 11 is initially contacted, thereby better protecting the wiping part 11 and preventing the wiping part 11 from being torn by the water squeezing member. After the elastic member has accumulated the elastic potential energy, the elastic member provides the elastic force to the wringing member, so that the wringing member has a moving tendency to move towards the mop head 10, that is, the wringing member wrings the wiping part 11 under the elastic force of the elastic member. The wiper member 34 continues to squeeze the mop 11 as the mop head 10 continues to enter the squeezing channel after passing through the squeezing member, thereby squeezing the water from the mop 11 sufficiently. In this way, the wringer cooperates with the wiper 34 to wring the wiping portion 11, and the wringing efficiency is ensured while protecting the wiping portion 11 from tearing.
Further, the distance between the elastic member 34 'and the wall surface of the mounting seat 32 forming the squeezing channel is greater than the distance between the wiper member 34 and the wall surface of the mounting seat 32 forming the squeezing channel, that is, the squeezing channel is a cross-sectional channel with a gradually reduced cross-sectional area along the extending direction of the squeezing channel, specifically, the wall surface of the mounting seat 32 forming the squeezing channel extends linearly along the extending direction of the squeezing channel, the cross-sectional area of the squeezing channel at the position of the elastic member 34' is greater than the cross-sectional area of the squeezing channel at the position of the wiper member 34, so that the mop head 10 can more easily pass through the elastic member 34 'to enter the squeezing channel, and then the wiping part 11 is wiped by the elastic member 34' and the wiper member 34.
As shown in fig. 4, the squeezing head further comprises a closing cover 33, and the closing cover 33 is detachably connected to one side of the mounting seat 32 far away from the squeezing channel. When the wiper member 34 penetrates the mounting seat 32, the closing cover 33 stops both ends of the wiper member 34, thereby restricting the wiper member 34 from being fixed to the mounting seat 32. Because the cover 33 is detachably connected on the mounting seat 32, and the water scraping piece 34 penetrates through the mounting seat 32, in this way, when dirt hidden in the water squeezing channel needs to be cleaned, only the cover 33 needs to be detached from the mounting seat 32, the water scraping piece 34 can be directly detached from the mounting seat 32, and then the hidden dirt is cleaned.
Moreover, the closing cover 33 can stop the two ends of the water scraping piece 34 to prevent the water scraping piece 34 from falling off the mounting seat 32, so that the two ends of the water scraping piece 34 can be fixed on the mounting seat 32 through the closing cover 33, and particularly, when the water squeezing head comprises a plurality of water scraping pieces 34, the closing cover 33 can fix the two ends of the water scraping pieces 34 on the mounting seat 32, so that the structural design of the water squeezing head is simplified, the assembly process is simplified, the assembly work efficiency is greatly improved, and the water squeezing head is more suitable for mass assembly production.
Further, when the elastic member 34' includes the elastic wringing member, the elastic wringing member and the wiping member 34 both penetrate the mounting seat 32, and the cover 33 stops both ends of the elastic wringing member and the wiping member 34, so that the elastic wringing member and the wiping member 34 are simultaneously mounted and fixed on the mounting seat 32. Similarly, when the squeezing head needs to be disassembled, the water scraping piece 34 and the elastic squeezing piece can be separated from the mounting seat 32 respectively directly by only disassembling the close cover 33 from the mounting seat 32, the disassembling process is very convenient, and then the dirt hidden in the squeezing channel is cleaned.
In this embodiment, the cover 33 and the mounting seat 32 can be clamped or fastened, that is, one of the cover 33 and the mounting seat 32 is provided with a protrusion of a mortise and tenon structure, and the other of the cover 33 and the mounting seat 32 is provided with an assembling groove of a mortise and tenon structure, so that the cover 33 and the mounting seat 32 are clamped and fixed through the mortise and tenon structure, and the cover has good connection stability and is convenient to assemble. Or, in this embodiment, the closing cover 33 and the mounting base 32 can be fastened, that is, one of the closing cover 33 and the mounting base 32 is provided with a hook 331, and the other side of the closing cover 33 and the mounting base 32 is provided with a fastening opening (not shown) which is matched with the hook 331 for installation, so that the closing cover 33 and the mounting base 32 are fixed by an assembling manner of fastening the hook 331 and the fastening opening, and thus, the closing cover 33 and the mounting base 32 not only have better connection stability, but also are convenient to assemble and disassemble, and convenient to maintain and replace. Still alternatively, the wringing head further includes a detachable connection (not shown) including, but not limited to, a combination of, for example, a screw, a bolt, and a nut; it is also possible to provide a locking structure having one end pivotally connected to one of the cover 33 and the mounting seat 32 and the other end locked to the other. Like this, close lid 33 alright with fix on mount pad 32 through dismantling the connecting piece, not only convenient equipment, dismantlement have better connection stability moreover.
Thus, the elastic wringing piece and the wiping piece 34 are detachably connected on the mounting seat 32 through the closing cover 33, and the closing cover 33 is utilized to stop the two ends of the elastic wringing piece and the wiping piece 34 so as to prevent the elastic wringing piece and the wiping piece 34 from being separated from the mounting seat 32, so that the elastic wringing piece and the wiping piece 34 can be conveniently mounted and fixed on the mounting seat 32 through the closing cover 33, the structural design of a wringing head is simplified, the assembly process is simplified, and the assembly work efficiency is greatly improved. Moreover, because the cover 33 is detachably connected to the mounting seat 32, and the elastic wringing element and the wiping element 34 are all assembled on the mounting seat 32 in a penetrating manner, when dirt hidden in the wringing channel needs to be cleaned, the elastic wringing element and the wiping element 34 can be directly separated from the mounting seat 32 only by detaching the cover 33 from the mounting seat 32, and then the hidden dirt is cleaned.
In addition, when the elastic member 34' includes the wringing member and the elastic member, the wringing member penetrates through the mounting seat 32, the through hole of the mounting seat 32 corresponding to the wringing member is a kidney-shaped hole, the extension direction of the kidney-shaped hole is perpendicular to the extension direction of the wringing channel, and the cover 33 is closed to stop both ends of the wringing member and the wiping member 34.
In this embodiment, referring to fig. 12 in combination, the wringing head further comprises a comb-tooth structure 341 for combing the front face of the mop head 10 (i.e. the front face of the mop head 10, i.e. the wiping face of the wiping portion 11). The comb tooth structure 341 can be disposed on the wiper member 34, and the comb tooth structure 341 combs the front surface of the mop head 10, so as to clean up the impurities from the surface of the wiping part 11, and make the cleaned mop head 10 cleaner. Or, the comb structure 341 can be disposed on the elastic component 34', so that, when the mop head 10 moves through the squeezing channel, the comb structure 341 not only combs the front surface of the mop head 10 to clean the impurities from the surface of the wiping part 11, so that the cleaned mop head 10 is cleaner, and because the comb structure 341 is disposed on the elastic component 34', the comb structure 341 can follow the elastic component 34' to realize flexible contact with the wiping part 11, thereby well protecting the wiping part 11 and preventing the wiping part 11 from being scratched or torn by the comb structure 341. Still alternatively, a comb structure 341 may be provided on both the elastic member 34' and the wiper member 34 to more thoroughly comb the surface of the wiping part 11 from the impurities thereon.
As shown in fig. 4, the wringer head further includes at least one idler 35, the idler 35 being mounted on the mounting block 32. In the process that the mop head 10 moves through the wringing channel, the guide wheel 35 can be in contact with the back surface of the mop plate 12 of the mop head 10 so as to guide the movement of the mop plate 12, so that the mop head 10 can move more smoothly through the wringing channel to finish the wringing operation, and the wringing work efficiency is improved.
Preferably, in this embodiment, the wiper member 34 includes, but is not limited to, a wiper blade, or a wiper roller. When wiping piece 34 is the wiper blade, the wiper blade is provided with a plurality of wiping strips towards one side of mop along mop moving direction interval, every wiping strip all scrapes the portion 11 of scraping mop head 10, scrape the water that extrudes from wiping portion 11 and flow out from the front of every wiping strip (along mop head 10 moving direction in front), use the wiper blade as wiping piece 34, a plurality of wiping strips contact simultaneously and scrape crowded wiping portion 11, thereby can increase the area of contact of wiper blade and wiping portion 11 in the same time, thereby improve and scrape water efficiency. When wiping piece 34 and for wiping the water roller, mop head 10 is at the in-process through crowded water passageway, and it can rotate in step under the drive of wiping portion 11 to wipe the water roller, also can play the effect of direction to the removal of mop head 10 when carrying out crowded water to wiping portion 11 for what mop head 10 can remove is more convenient, smooth and easy, not hard, thereby promotes user experience.
According to another embodiment of the present invention, as shown in fig. 5, the squeezing head is used for squeezing water from the mop head 10, and the squeezing head is installed on the mop rod 20. Specifically, the wringing head comprises a mounting seat 32 and a wiping part, wherein the wiping part is mounted on the mounting seat 32, the mounting seat 32 and the wiping part enclose a wringing channel for the mop head 10 to pass through, and the wiping part is used for wiping water in the wiping part 11 of the mop head 10 when the mop head 10 passes through the wringing channel. More specifically, the wiping part of the water squeezing head comprises at least two wiping parts 34, the wiping parts 34 are arranged at intervals along the extending direction of the water squeezing channel, so that the gap between two adjacent wiping parts 34 is formed as a first through hole 342, the water squeezing channel is communicated with the outside through the first through hole 342, thus, in the process that the mop head 10 passes through the water squeezing channel, the water squeezed out from the wiping part 11 by the wiping parts 34 directly flows to the outside from the first through hole 342, and the dirt carried by the wiping part 11 can also flow to the outside from the first through hole 342 along with the squeezed water, so that the dirt can not be stored in the water squeezing channel, and the influence on the environmental sanitation due to the peculiar smell generated by the stored dirt can be avoided.
In addition, according to the wringing head provided by the embodiment, the mop head 10 moves back and forth in the wringing channel for wiping and wringing water, so that water contained in the wiping part 11 of the mop head 10 is wiped and squeezed out as much as possible, and a good wringing effect is achieved. The water squeezing head not only occupies a small area relative to the mop bucket, but also is arranged on the mop rod 20, can move together with the mop, and is convenient to use.
Compared with some existing water squeezing heads adopting closed type shields, after the mop is squeezed, too much water squeezing cannot be stored in the water squeezing heads, but a small amount of accumulated water still exists in the shields due to the adoption of the closed type shields, and sundries and dirt carried by the wiping parts 11 of the mop heads 10 cannot be discharged out of the closed type shields, so that the dirt is continuously stored in the closed type shields for a long time, and is mixed with the accumulated water, peculiar smell is easily generated, and the environmental sanitation is influenced. And adopt the crowded flood peak that this embodiment provided, crowded water in-process, the crowded water of extruding not only can follow first through-hole 342 and flow crowded water passageway, can not ponding, and the hydroenergy of extruding moreover can take the dirt to discharge crowded water passageway from first through-hole 342 together for can not store up the dirt in the crowded water passageway, avoid hiding the peculiar smell that dirty collection produced and influence sanitation.
In this embodiment, the wiper portion further comprises an elastic member 34', and when assembled, the elastic member 34' and the aforementioned at least two wiper members 34 are spaced apart in the extending direction of the wiping channel, such that the gap between the elastic member 34' and the adjacent wiper member 34 is formed as a second through hole 343, and the wiping channel is also in communication with the outside through this second through hole 343, such that the wiping channel is in communication with the outside through the first through hole 342 and the second through hole 343. Specifically, the resilient member 34' includes a resilient wringer that resiliently flexes to conform to the wiping surface of the mop head 10 as the mop head 10 enters the wringing channel. When the elastic wringing member is used as the elastic component 34', the appearance shape of the elastic wringing member is the same as that of the wiping member 34, so that the design is convenient, and the elastic wringing member can be manufactured and formed only by adopting an elastic material. Alternatively, the elastic component 34' includes a water squeezing member and an elastic member, wherein the elastic member includes, but is not limited to, a coil spring or a spring plate, the water squeezing member is connected to the mounting seat 32 through the elastic member, when the mop head 10 enters the water squeezing channel, the surface of the wiping part 11 of the mop head 10 abuts against the water squeezing member, and the water squeezing member squeezes the elastic member to avoid the mop head 10, and the elastic member accumulates elastic potential energy, so that the wiping part 11 is in flexible contact with the water squeezing member as soon as the wiping part 11 is initially contacted, thereby better protecting the wiping part 11 and preventing the wiping part 11 from being torn by the water squeezing member. After the elastic member has accumulated the elastic potential energy, the elastic member provides an elastic force to the wringing member, so that the wringing member has a movement tendency toward the mop head 10, that is, the wringing member wrings the wiping portion 11 under the elastic force of the elastic member. The wiper member 34 continues to squeeze the mop 11 as the mop head 10 continues to enter the squeezing channel after passing through the squeezing member, thereby squeezing the water from the mop 11 sufficiently. In this way, the wringing member cooperates with the wiper member 34 to wring the wiping portion 11, and the wringing efficiency is ensured while protecting the wiping portion 11 from tearing.
During the squeezing process, when the mop head 10 enters the squeezing channel, the elastic component 34' abuts against the surface of the wiping part 11 of the mop head 10 and avoids the mop head 10 to the side away from the mounting seat 32, so that the mop head 10 can enter the squeezing channel more conveniently, meanwhile, the elastic component 34' also squeezes the wiping part 11 of the mop head 10, and then the mop head 10 continues to be squeezed by the wiping part 34 through the squeezing channel, so that the surface of the wiping part 11 of the mop head 10 is scraped and squeezed by the elastic component 34' and the wiping part 34. In the process of squeezing water, part of water squeezed out of the wiping part 11 carries dirt to flow to the outside from the first through hole 342, and the other part of water carries the dirt to flow to the outside from the second through hole 343, so that the dirt can not be stored in the squeezing channel, and the influence of peculiar smell generated by storing the dirt on the environmental sanitation is avoided.
Moreover, due to the fact that the elastic component 34' is installed on the installation seat 32, when the mop head 10 enters the water squeezing channel, the wiping part 11 firstly abuts against the elastic component 34', and at the moment, the elastic component 34' avoids the mop head 10 to the side far away from the installation seat 32, so that the mop head 10 can enter the water squeezing channel more conveniently and smoothly.
Further, when the wiping part 11 of the mop head 10 is contacted with the elastic component 34 'after absorbing enough moisture and is abutted against each other, at this time, the wiping part 11 has strong pressure-bearing capacity, so that the wiping part 11 is equivalent to rigid collision when the wiping part 11 is abutted against the elastic component 34', and the wiping part 11 is easily torn, therefore, in order to prevent the wiping part 11 of the mop head 10 from being torn, the elastic component 34 'is assembled on the mounting seat 32 of the wringing head to avoid the mop head 10, so that the wiping part 11 is in flexible contact with the elastic component 34' at the beginning, and the wiping part 11 is well protected. Moreover, the elastic component 34' can flexibly protect the wiping part 11 and squeeze out a certain amount of water from the wiping part 11, then the mop head 10 continues to enter the water squeezing channel, and the wiping part 34 continues to squeeze out water from the wiping part 11, so that the water in the wiping part 11 is fully squeezed out.
In this embodiment, the mounting seat 32 has a first standing wall 321 and a second standing wall 322 opposite to each other, and both ends of the wiper portion are connected to the first standing wall 321 and the second standing wall 322, respectively.
The mounting seat 32 further has a base 323, and the first standing wall 321 and the second standing wall 322 are oppositely disposed on both sides of the base 323. The first standing wall 321, the second standing wall 322, the base 323 and the at least two wiper members 34 enclose a wringing channel.
The base 323 is provided with a through groove 324 for the mop rod 20 to pass through, and the through groove 324 is communicated with the wringing channel. Based on this, during the wringing process, the mop rod 20 can pass through the through groove 324 while the mop head 10 passes through the wringing channel, that is, the through groove 324 communicates with the wringing channel. Thus, when a user moves the mop head 10 into the wringing channel to wring water, the mop head 10 can be moved into the wringing channel completely, that is, the wiping part 11 of the mop head 10 can be pushed against the wiping part 34 to wipe water in one movement, and the reciprocating movement is carried out for several times, so that the water in the wiping part 11 can be wrung out more completely.
In an alternative manner, the at least two water scraping elements 34 are formed by bending a base material, the mounting seat 32 is made of an elastic material, the opposite side walls of the first standing wall 321 and the second standing wall 322 are respectively provided with a clamping groove 320, two ends of the at least two water scraping elements 34 are respectively inserted into the corresponding clamping grooves 320, and the first standing wall 321 and the second standing wall 322 clamp and fix the at least two water scraping elements 34. Both ends of the wiper 34 are respectively inserted into the locking groove 320 on the first standing wall 321 and the locking groove 320 on the second standing wall 322. Since the mounting seat 32 is made of an elastic material, that is, the first standing wall 321 and the second standing wall 322 are elastically deformable relative to the base 323, when the wiper 34 and the elastic component 34' are assembled, the first standing wall 321 and the second standing wall 322 are first separated away from each other, then the two ends of the wiper 34 are respectively inserted into the two side slots 320, and when the first standing wall 321 and the second standing wall 322 are released, the wiper 34 is clamped and fixed by the first standing wall 321 and the second standing wall 322 approaching each other under the action of the elastic stress of the first standing wall 321 and the second standing wall 322. So, when needs were maintained crowded flood peak, the user can conveniently, dismantle the piece 34 of scraping from mount pad 32 fast, then carry out more thorough cleanness to crowded water passageway inside, perhaps the new piece 34 of scraping of changing has greatly made things convenient for the user to maintain the work.
As shown in fig. 5 and fig. 6, the at least two water scraping members 34 are formed by bending a base material, the base material may be a PP material (polypropylene material) or an ABS material (Acrylonitrile Butadiene Styrene), and the base material has a certain hardness, so that the formed water scraping members 34 are not bent during the wringing process. The base material is in a serpentine shape after being molded, and two side ends of the plurality of the water scraping pieces 34 formed in the serpentine shape are flush, so that the base material is respectively inserted into the clamping grooves 320 on the first vertical wall 321 and the clamping grooves 320 on the second vertical wall 322. Thus, when the wiper member 34 is assembled, the wiper members 34 can be integrally and simultaneously mounted on the mounting seat 32, so that the assembly efficiency is improved, and when the wringing head needs to be maintained, the wiper members 34 can be integrally and simultaneously dismounted from the mounting seat 32, so that the wiper members 34 can be quickly dismounted.
In an alternative mode, the at least two wiper members 34 extend through the mounting base 32, and when the mounting base 32 includes the first standing wall 321, the second standing wall 322, and the base 323, two ends of the at least two wiper members 34 extend through the first standing wall 321 and the second standing wall 322. The water squeezing head further comprises a closing cover 33, the closing cover 33 is detachably connected to the mounting seat 32, and the closing cover 33 stops two ends of at least two water scraping pieces 34. Because the cover 33 is detachably connected to the mounting seat 32, and the water scraping part 34 is assembled on the mounting seat 32 in a penetrating manner, in this way, when dirt hidden in the water squeezing channel needs to be cleaned, the cover 33 only needs to be detached from the mounting seat 32, the water scraping part 34 can be directly detached from the mounting seat 32, and then the hidden dirt is cleaned.
Moreover, the closing cover 33 can stop the two ends of the water scraping piece 34 to prevent the water scraping piece 34 from falling off the mounting seat 32, so that the two ends of the water scraping piece 34 can be fixed on the mounting seat 32 through the closing cover 33, and particularly, when the water squeezing head comprises a plurality of water scraping pieces 34, the closing cover 33 can fix the two ends of the water scraping pieces 34 on the mounting seat 32, so that the structural design of the water squeezing head is simplified, the assembly process is simplified, the assembly work efficiency is greatly improved, and the water squeezing head is more suitable for mass assembly production.
In one example, the first standing wall 321 and the second standing wall 322 are both provided with a rib 325, the closing cover 33 is provided with a guide groove 332, and the rib 325 is used for being inserted and embedded in the guide groove 332; alternatively, as shown in fig. 5, the cover 33 is provided with a rib 325, the first standing wall 321 and the second standing wall 322 are provided with a guide groove 332, and the rib 325 is used for being inserted into the guide groove 332. In this way, in the process of assembling the cover 33 to the mounting seat 32, the rib 325 and the guide groove 332 cooperate to guide, so that the cover 33 and the mounting seat 32 can be aligned more accurately to complete the assembling more accurately and quickly. When the protruding rib 325 and the guiding groove 332 are in interference fit, after the protruding rib 325 and the guiding groove 332 are inserted and embedded, the cover 33 and the mounting seat 32 are assembled and fixed, and the assembling process is accurate, convenient and rapid. Further, when the rib 325 and the guide groove 332 are in clearance fit or transition fit, as shown in fig. 5, the wringing head further includes a hook 331 and a buckle opening (not shown) that are fitted with each other, one of the hook 331 and the buckle opening is disposed on the cover 33, the other is disposed on the base 323, and the hook 331 is fastened and fixed in the buckle opening, so that in the process of assembling the cover 33 to the mounting seat 32, the assembling, positioning and guiding between the rib 325 and the guide groove 332 are realized through the fit between the rib 325 and the guide groove 332, and the cover 33 and the mounting seat 32 are assembled and fixed through the hook 331 and the buckle opening, and the assembling process is accurate, convenient and fast.
As shown in fig. 5, the wringer head also includes at least one idler 35, the idler 35 being mounted on a base 323. In the process that the mop head 10 moves through the wringing channel, the guide wheel 35 can be in contact with the back surface of the mop plate 12 of the mop head 10 so as to guide the movement of the mop plate 12, so that the mop head 10 can move more smoothly through the wringing channel to finish the wringing operation, and the wringing work efficiency is improved.
Preferably, in the present embodiment, the wiper member 34 includes, but is not limited to, a wiper blade, or a wiper roller. When the wiper member 34 is a wiper blade, a plurality of wiper strips are arranged at intervals along the moving direction of the mop on one side of the wiper blade facing the mop, the wiper strips squeeze the wiping part 11 of the mop head 10, squeeze water into the interval between two adjacent wiper strips, then the water flows out of the wiper blade along the extending direction of the interval, the wiper blade is used as the wiper member 34, the contact area between the wiper blade and the wiping part 11 in the same time can be increased, and therefore the wiping efficiency is improved. When wiping piece 34 and for wiping the water roller, mop head 10 is at the in-process through crowded water passageway, and it can rotate in step under the drive of wiping portion 11 to wipe the water roller, also can play the effect of direction to the removal of mop head 10 when carrying out crowded water to wiping portion 11 for what mop head 10 can remove is more convenient, smooth and easy, not hard, thereby promotes user experience.
As shown in fig. 7 and 8, the embodiment of the present invention provides a wringing rack 30. Specifically, the wringing rack 30 comprises a control part 31 and the aforementioned wringing head, and the wringing rack 30 is matched to the mop, and the mop head 10 is directly scraped and wringed by the wringing rack 30. During the specific assembly, the squeezing head is arranged on the control part 31, and the control part 31 is slidably connected to the mop rod 20 and can slide along the axial direction of the mop rod 20, so that the squeezing head is driven to slide along the axial direction of the mop rod 20.
After the user utilizes the mop to clean the floor and accomplishes, the user utilizes the cleaning solution sanitization with the mop after, the portion 11 of cleaning of mop head 10 has inhaled moisture, then user operation control portion 31 for crowded head follows control portion 31 and removes along mop pole 20, when mop head 10 removes through crowded water passageway, then scrape water piece 34 and scrape crowded moisture to the portion 11 of cleaning of mop head 10, make the work of carrying out crowded water to mop head 10 more convenient, swift. Moreover, the water squeezing frame 30 of the embodiment is assembled on the mop and can be transferred together with the mop, and the mop head 10 can be squeezed by the water squeezing frame 30 at any time and any place, so that the mop is very convenient and the user experience is improved.
As shown in fig. 7 and 8, the operation part 31 includes a handle 311 and at least one connection rod 312, the handle 311 is sleeved on the mop rod 20, one end of the connection rod 312 is detachably connected to the handle 311 through a first screw 101, and the other end of the connection rod 312 is detachably connected to the wringing head through a second screw 102. In order to enhance the connection stability between the squeezing head and the manipulation part 31, the number of the connecting rods 312 of the squeezing frame 30 is at least three, the at least three connecting rods 312 are arranged in parallel, and the central axes of the at least three connecting rods 312 are not coplanar. The utility model discloses an in the embodiment, as shown in fig. 7 and 8, control portion 31 is including three connecting rods 312, three connecting rods 312 are isosceles triangle and arrange, thereby utilize the principle reinforcing crowded flood peak of triangle stability and the stability of being connected between control portion 31, operate the in-process that control portion 31 drove crowded flood peak and remove along mop pole 20 at the user, crowded flood peak moves under three connecting rods 312's drive, at this moment, three connecting rods 312 that are triangle-shaped and arrange can effectively prevent crowded flood peak and use the central axis of mop pole 20 to rotate as the pivot for control portion 31, thereby guarantee crowded flood peak and the stability of being connected between control portion 31.
As shown in fig. 9 to 16, an embodiment of the present invention provides a mop. Specifically, the mop comprises a mop rod 20, a mop head 10 connected to one end of the mop rod 20, and the aforementioned wringing rack 30, wherein the wringing rack 30 is used for wiping water on the mop head 10. Wherein, the mop head 10 comprises a mop plate 12 and a wiping part 11, the mop plate 12 is connected to one end of the mop rod 20, and the wiping part 11 is arranged on the mop plate 12, that is, the wiping part 11 of the mop head 10 is wiped by the wiping piece 34 of the wringing frame 30. In the process of assembling the water squeezing frame 30, as shown in fig. 7 to 11 and 13 to 16, a guide 313 is fixedly installed on the mop rod 20 at a position close to the connecting position 100 between the mop rod 20 and the mop plate 12, the operating part 31 is located at a side of the guide 313 far from the mop plate 12, and each connecting rod 312 passes through the guide 313 and then is locked with the mounting seat 32 through the second screw 102. In the process that the control part 31 slides along the mop rod 20, the guide part 313 guides each connecting rod 312, and the guide part 313 forms auxiliary support for each connecting rod 312, so that each connecting rod 312 cannot be bent, the stability is better, and the relative sliding between the water squeezing head and the mop head 10 is more stable and smooth.
In this mop, the wiping part 11 is a collodion or mop cloth, and the floor is wiped by the collodion or mop cloth.
The utility model provides an in the mop, use crowded water frame 30 to wringing mop head 10, after mop head 10 is in the cleaning solution (the cleaning solution can be the clear water or mix the cleaning water that has the detergent) sanitization, mop head 10's wiping portion 11 has absorbed sufficient moisture this moment, then let mop head 10 remove through along the crowded water passageway of crowded water head of crowded water frame 30, at the in-process that mop head 10 removed, scrape on water piece 34 supports the wiping portion 11 of top mop head 10, thereby scrape the moisture in wiping portion 11 with mop head 10 and extrude, make the moisture in wiping portion 11 of mop head 10 scraped and crowded the reduction, then accomodate the mop and dry wiping portion 11 or reuse mop and clean the floor. Because the water squeezing frame 30 is assembled on the mop rod 20, the water squeezing frame 30 can be transferred along with the mop, so that the mop can be squeezed at any time and any place, the occupied placing space is not needed, and the mop can be directly placed and stored along with the mop, so that the use is very convenient.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
Claims (12)
1. The wringing head is characterized by being arranged on a mop rod (20) and used for wringing a mop head (10), and the wringing head comprises an installation seat (32), at least one water scraping piece (34) and a closing cover (33);
the at least one water scraping piece (34) penetrates through the mounting seat (32), and the mounting seat (32) and the at least one water scraping piece (34) enclose a water squeezing channel for the mop head (10) to pass through; the at least one water scraping piece (34) is used for scraping water in the mop head (10) when the mop head (10) passes through the water squeezing channel;
the close cover (33) is detachably connected to the mounting seat (32), and the close cover (33) stops two ends of the at least one water scraping piece (34).
2. The wringing head of claim 1,
the closing cover (33) is clamped or buckled with the mounting seat (32); or,
the water squeezing head further comprises a detachable connecting piece, and the closing cover (33) is fixed on the mounting seat (32) through the detachable connecting piece.
3. The wringing head of claim 1,
the mounting seat (32) is provided with a first vertical wall (321) and a second vertical wall (322) which are opposite, two ends of the at least one water scraping piece (34) respectively penetrate through the first vertical wall (321) and the second vertical wall (322), and the close cover (33) is connected to the outer sides, far away from the water scraping piece (34), of the first vertical wall (321) and the second vertical wall (322).
4. The wringer head of claim 3,
the closing cover (33) is provided with a guide groove (332), the first vertical wall (321) and the second vertical wall (322) are both provided with a convex rib (325), and the convex rib (325) is inserted into the guide groove (332); or,
the cover closing (33) is provided with a convex rib (325), the first vertical wall (321) and the second vertical wall (322) are both provided with a guide groove (332), and the convex rib (325) is inserted into the guide groove (332).
5. The wringing head of claim 3,
the mounting seat (32) is also provided with a base part (323), and the first standing wall (321) and the second standing wall (322) are oppositely arranged on two sides of the base part (323);
the base part (323) is provided with a through groove (324) for the mop rod (20) to pass through, and the through groove (324) is communicated with the water squeezing channel.
6. The wringer head of claim 5,
the water squeezing head is further provided with a buckle hook (331) and a buckle opening which are matched with each other, one of the buckle hook (331) and the buckle opening is arranged on the close cover (33), the other one of the buckle hook (331) and the buckle opening is arranged on the base (323), and the buckle hook (331) can be fastened and fixed in the buckle opening.
7. The squeezing head of any one of claims 1 to 6,
the number of the water scraping pieces (34) is multiple, and the water scraping pieces (34) are arranged at intervals along the extending direction of the water squeezing channel.
8. The squeezing head of any one of claims 1 to 6,
the water squeezing head further comprises a comb tooth structure (341) used for combing the wiping surface of the mop head (10), and the comb tooth structure (341) is arranged on the water scraping piece (34).
9. The wringing head of claim 1,
the water scraping piece (34) is a water scraping plate or a water scraping roller.
10. A wringing rack, comprising:
a manipulation section (31) and a squeezing head as defined in any one of claims 1-9, the squeezing head being provided on the manipulation section (31); the control part (31) is connected to the mop rod (20) in a sliding mode and can slide along the axial direction of the mop rod (20).
11. The wringing rack of claim 10,
the control part (31) comprises a handle (311) and at least one connecting rod (312), the handle (311) is sleeved on the mop rod (20), one end of the connecting rod (312) is connected to the handle (311), and the other end of the connecting rod (312) is connected to the water squeezing head; wherein,
the number of the connecting rods (312) is at least three, the at least three connecting rods (312) are arranged in parallel, and the central axes of the at least three connecting rods (312) are not coplanar.
12. A mop, comprising:
a mop rod (20), a mop head (10) connected to one end of the mop rod (20), and a wringing rack (30) according to claim 10 or 11.
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122091889.7U CN218552268U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122150060.XU CN218528655U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122150065.2U CN218552270U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122091889.7U CN218552268U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
Related Child Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202122150065.2U Division CN218552270U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122150060.XU Division CN218528655U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
Publications (1)
Publication Number | Publication Date |
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CN218552268U true CN218552268U (en) | 2023-03-03 |
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Family Applications (3)
Application Number | Title | Priority Date | Filing Date |
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CN202122150060.XU Active CN218528655U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122150065.2U Active CN218552270U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122091889.7U Active CN218552268U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
Family Applications Before (2)
Application Number | Title | Priority Date | Filing Date |
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CN202122150060.XU Active CN218528655U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
CN202122150065.2U Active CN218552270U (en) | 2021-08-31 | 2021-08-31 | Water squeezing head, water squeezing frame and mop |
Country Status (1)
Country | Link |
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CN (3) | CN218528655U (en) |
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2021
- 2021-08-31 CN CN202122150060.XU patent/CN218528655U/en active Active
- 2021-08-31 CN CN202122150065.2U patent/CN218552270U/en active Active
- 2021-08-31 CN CN202122091889.7U patent/CN218552268U/en active Active
Also Published As
Publication number | Publication date |
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CN218528655U (en) | 2023-02-28 |
CN218552270U (en) | 2023-03-03 |
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