CN210582408U - Vertical dehydration tool for flat mop - Google Patents

Vertical dehydration tool for flat mop Download PDF

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Publication number
CN210582408U
CN210582408U CN201920173060.1U CN201920173060U CN210582408U CN 210582408 U CN210582408 U CN 210582408U CN 201920173060 U CN201920173060 U CN 201920173060U CN 210582408 U CN210582408 U CN 210582408U
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CN
China
Prior art keywords
mop
dehydration
flat mop
bucket
frame
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201920173060.1U
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Chinese (zh)
Inventor
赵利强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bazhou Xilaiju Plastic Products Co ltd
Original Assignee
Bazhou Xilaiju Plastic Products Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bazhou Xilaiju Plastic Products Co ltd filed Critical Bazhou Xilaiju Plastic Products Co ltd
Priority to CN201920173060.1U priority Critical patent/CN210582408U/en
Application granted granted Critical
Publication of CN210582408U publication Critical patent/CN210582408U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a vertical dehydration instrument of dull and stereotyped mop, dull and stereotyped mop (9) have rotatory mop pole, still include mop bucket (1), be equipped with in the mop bucket and dewater frame (2), it connects in to dewater the frame rotation the mop bucket, it is rotatory that the frame can wind its longitudinal axis to dewater, it can restrict its rotatory locking mechanism to dewater to put up, locking mechanism is including locating the hasp (311) of frame and the joint spare (312) of locating the mop bucket dewater. The utility model discloses a locking mechanism is erected in the dehydration, and locking mechanism opens when dull and stereotyped mop inserts, and dull and stereotyped mop drive dehydration frame dewaters through rotating, and the dehydration frame is extracted to dull and stereotyped mop, locking mechanism locking, and the dehydration frame is fixed to be so that dull and stereotyped mop inserts the dehydration once more.

Description

Vertical dehydration tool for flat mop
Technical Field
The utility model belongs to the technical field of daily cleaning products, especially, relate to a dewatering tool of dull and stereotyped mop.
Background
The flat mop is a cleaning tool for scrubbing the floor, which is very popular in recent years, and is widely used in households, small offices, commercial places and the like. Dull and stereotyped mop comprises mop pole, bottom plate and mop, and the bottom plate adopts dull and stereotyped design, and its advantage that has: (1) the stress area between the flat bottom plate and the ground is large, the stress is uniform, hairs and fine dust on the ground can be stuck, and the cleanliness of the mopping floor is improved; (2) compared with a circular bottom plate, the flat bottom plate can increase the mopping area and improve the mopping efficiency.
At present, the cleaning and dewatering modes of the flat mop mainly comprise: the rotary centrifugal cleaning and dewatering mode comprises a mode of vertically drying a mop head, for example, a Chinese utility model patent with the publication number of CN108606752A discloses a flat mop cleaning tool beneficial to drying operation, which comprises a mop barrel and a flat mop head rotationally connected to the lower end of a mop rod, and the flat mop head is provided with a wiping material; a spin-drying area is arranged in the mop barrel, and a first supporting part which is used for supporting the flat mop head and can rotate is arranged in the spin-drying area; the method is characterized in that: the first supporting part is arranged at the bottom of the drying area through a connecting structure, and the connecting structure can enable the rotating axis of the first supporting part to move in a plane and also enable the rotating axis to swing by taking the bottom of the rotating axis as a fulcrum;
the water squeezing mode is that the flat mop head and the opening smoothing squeezing mechanism are moved and squeezed to squeeze the wiping materials, so that the water on the wiping materials cannot be squeezed completely, and the wiping materials on the mop are easy to damage;
the centrifugal type dewatering device is rotated, a plugging port is formed in the opening of the mop barrel, the flat mop can be pulled out only by aligning the flat mop with the plugging port after being dewatered, and the flat mop can be inserted and dried only by aligning the dewatering frame of the mop barrel with the plugging port when being inserted and used again; in addition, the flat mop has a longer mop head, so that the flat mop can easily shake when being dried vertically, and the water squeezing effect is affected.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the main technical problem who solves provides a vertical dehydration instrument of dull and stereotyped mop, and its dehydration is erect and is equipped with locking mechanism, and locking mechanism opens when dull and stereotyped mop inserts, and dull and stereotyped mop drive dehydration frame dewaters through rotating, and the dehydration frame is extracted to dull and stereotyped mop, and locking mechanism locking is put up the rigid that dewaters to dull and stereotyped mop inserts the dehydration once more.
In order to solve the technical problem, the utility model discloses a technical scheme be: a flat mop vertical dehydration tool is provided with a rotary mop rod and comprises a mop barrel, wherein a dehydration frame is arranged in the mop barrel and is rotationally connected to the mop barrel, the dehydration frame can rotate around the longitudinal axis of the dehydration frame, the dehydration frame is provided with a locking mechanism capable of limiting the rotation of the dehydration frame, and the locking mechanism comprises a lock catch arranged on the dehydration frame and a clamping piece arranged on the mop barrel;
in a normal state, the lock catch is clamped with the clamping piece, so that the dehydration frame is locked; during the dehydration, when the flat mop inserts the dehydration frame and pushes down, it can support and push the hasp makes it break away from the joint spare to relieve the locking, the dehydration frame can rotate.
Furthermore, a plugging port for inserting the flat mop is arranged above the dewatering frame, and the plugging port is communicated with the mop bucket.
Further, the mop bucket is provided with a bucket cover, the plugging port is formed in the bucket cover, and the bucket cover is detachably connected to the mop bucket or integrally formed with the mop bucket.
Further, the dehydration frame comprises a rotary tray, the rotary tray is rotatably connected to the mop bucket, and the upper surface of the rotary tray is provided with a slot for inserting the flat mop.
Furthermore, a holder is arranged on the mop rod of the flat mop, the inserting and pulling opening is provided with a holding seat matched with the holder, and when the flat mop is inserted into the holder for dehydration, the holder falls into the holding seat, so that the radial movement of the mop rod of the flat mop is limited.
Further, the structure of the retainer and the retainer seat is one of the following structures:
(1) the holder is fixedly connected with the mop rod, and can rotate along with the flat mop after falling into the holder seat;
(2) the holder is rotatably connected with the mop rod, the holder is clamped with the holder to be relatively static after falling into the holder, and the mop rod rotates.
Further, when the holder is rotatably connected to the mop rod, the holder is engaged with the holder seat by one of the following structures:
(1) the retainer is a revolving body, and the retainer seat have mutually matched occlusion structures;
(2) the retainer is a non-rotating body, and the retaining seat is a retaining seat matched with the shape of the retainer.
Further, the dewatering frame comprises an upper end positioning disc, a limiting ring for limiting the radial movement of the upper end positioning disc is arranged in the mop bucket, the upper end positioning disc is provided with a through hole for the flat mop to pass through, the upper end positioning disc is positioned above the rotating tray, and the upper end positioning disc is fixedly connected with the rotating tray or integrally formed.
Further, the hasp has supporting part and block portion, the joint spare has can let the joint groove that block portion fell into, dull and stereotyped mop inserts can support when rotatory tray and push the supporting part, so that block portion with the joint groove block.
Further, the locking mechanism is provided with a reset piece, the reset piece is an elastic component, one end of the reset piece is connected with the rotating tray, the other end of the reset piece is connected with the lock catch, and the reset piece acts on the lock catch to enable the lock catch to be clamped with the clamping piece.
Further, the flat mop is a single-side flat mop or a double-side flat mop.
The utility model has the advantages that:
firstly, a locking mechanism is arranged on a dewatering frame, the locking mechanism is opened when the flat mop is inserted, the flat mop drives the dewatering frame to dewater through rotation, the flat mop is pulled out of the dewatering frame, the locking mechanism is locked, and the dewatering frame is fixed so as to facilitate the flat mop to be inserted again for dewatering;
when the mop bucket is provided with a plug opening (the plug opening is arranged for using the retainer), the locking dehydration frame is used for aligning and fixing the through opening or the slot of the dehydration frame with the plug opening (the bucket opening is overlooked), so that the flat mop can be conveniently inserted for dehydration operation next time;
thirdly, the mop bucket has an upper end positioning function, so that the transverse movement of the mop can be limited, the flat mop can be prevented from shaking during rotary dehydration, and the dehydration quality is improved;
the upper end positioning function can be realized by two mechanisms, one is that the mop comprises a retainer arranged on a mop rod and a retaining seat arranged on a mop bucket and matched with the retainer for use, and when the flat mop is inserted into a dehydration tank, the retainer falls into the retaining seat;
and the second one is that the upper end positioning disc is arranged on the dewatering frame, the limiting ring matched with the upper end positioning disc is arranged in the mop barrel, the transverse movement of the upper end of the dewatering frame is limited by the limiting ring, the slot for inserting the flat mop is arranged on the rotary tray at the lower end of the dewatering frame, and the two ends of the flat mop are respectively limited by the limiting ring and the slot, so that the flat mop can be prevented from shaking during dewatering.
Drawings
FIG. 1 is a schematic view of the overall structure of the dehydration tool of the present invention;
FIG. 2 is an exploded view of the dehydration tool of the present invention;
FIG. 3 is a cross-sectional view of the dehydration tool of the present invention;
FIG. 4 is a schematic structural view of the dewatering frame (rotating tray) of the present invention;
fig. 5 is a sectional view of the dehydration mechanism of the present invention (locking mechanism);
FIG. 6 is an enlarged view of portion A of FIG. 5;
fig. 7 is a schematic structural view of the lock catch of the present invention;
FIG. 8 is a view from the direction B of FIG. 5;
FIG. 9 is a schematic structural view of the dewatering frame of the present invention (with an upper positioning plate);
FIG. 10 is a schematic view of the structure of the mop rod (holder) of the present invention;
fig. 11 is a schematic structural view of the retainer and the retainer seat of the present invention;
fig. 12 is a schematic structural view (another structure) of the retainer and the retainer seat of the present invention;
the parts in the drawings are marked as follows:
the mop bucket comprises a mop bucket 1, a locking mechanism 3, a bucket cover 14, a plugging port 13, a limiting ring 15 and a rotating shaft 16;
the dewatering frame 2, the rotary tray 21, the slot 211, the upper end positioning disc 22, the through hole 221, the connecting column 222, the rotary hole 23 and the bearing 24; '
The locking mechanism 3, the lock catch 311, the support portion 3111, the engaging portion 3112, the engaging member 312, the engaging groove 3121, the reset member 313, and the engaging member 312;
flat mop 9, mop rod 91, holder 92 and snap teeth 921.
Detailed Description
The following detailed description of the preferred embodiments of the present invention will be provided in conjunction with the accompanying drawings, so as to enable those skilled in the art to more easily understand the advantages and features of the present invention, and thereby define the scope of the invention more clearly and clearly.
Example (b): a vertical dehydration tool of a flat mop, wherein the flat mop 9 is provided with a rotary mop rod, and the mop head of the flat mop can be driven to rotate by pressing down the mop rod, as shown in figures 1 to 3: the mop bucket comprises a mop bucket 1, wherein a dewatering frame 2 is arranged in a dewatering area, the dewatering frame is rotationally connected with the mop bucket, can rotate around the longitudinal axis of the dewatering frame, and is provided with a locking mechanism 3 capable of limiting the rotation of the dewatering frame;
when the flat mop is dehydrated, the flat mop is turned to be in a vertical state, is inserted into the dehydration rack and is pressed downwards, and the locking mechanism is opened by pressing the dehydration rack downwards, so that the flat mop and the dehydration rack are rotated together for dehydration; when the flat mop is pulled out or partially pulled out of the dewatering frame after dewatering, the locking mechanism is closed through the separation of the flat mop from the dewatering frame, and the dewatering frame is locked and cannot rotate.
In this embodiment, the mop bucket is provided with a bucket cover 14, and the bucket cover is detachably connected to the mop bucket or integrally formed with the mop bucket;
the top of dehydration frame is equipped with the confession the plug mouth 13 that the flat mop inserted, this embodiment the plug mouth locate the bung just with dehydration district intercommunication.
As shown in fig. 4: the dewatering frame comprises a rotating tray 21, the rotating tray is rotatably connected to the mop bucket, an inserting groove 211 for the flat mop to be inserted into is formed in the upper surface of the rotating tray, the flat mop is inserted into the inserting groove, and the rotating tray is driven to rotate through the rotation of the flat mop, so that the flat mop is dewatered;
as shown in fig. 5 and 6: in this embodiment, the structure that the dehydration frame is rotationally connected to the mop bucket is: the bottom of the mop bucket is provided with a rotating shaft 16, and the dewatering frame is provided with a rotating hole 23 matched with the rotating shaft; or the bottom of the dewatering frame is provided with a rotating shaft, and the bottom of the mop bucket is provided with a rotating hole.
The bearing 24 is arranged on the revolving shaft, and the dewatering frame is rotatably connected with the mop bucket through the bearing.
As shown in fig. 5 to 8: the locking mechanism comprises a lock catch 311 arranged on the rotary tray, the lock catch is positioned on the side wall or the bottom surface of the rotary tray, the lock catch can move axially along the rotary tray, the lock catch is provided with a supporting part 3111 and a clamping part 3112, the flat mop can be propped against the supporting part when being inserted into the rotary tray and pushes the supporting part along with the downward pressing (the mop is rotated and needs to be driven downward), the mop barrel is provided with a clamping piece 312, the clamping piece is provided with a clamping groove 3121 which the clamping part can fall into, the clamping piece is fixedly connected with the mop barrel or integrally formed with the mop barrel, the clamping part can fall into or separate from the clamping groove through the axial movement of the lock catch, the locking mechanism is further provided with a reset piece 313, and the reset piece is an elastic part (such as various springs: a compression spring, an extension spring, a compression spring and an extension spring), A leaf spring, a torsion spring and the like), one end of the reset piece is connected with the rotary tray, the other end of the reset piece is connected with the lock catch, and the reset piece acts on the lock catch to enable the lock catch to fall into the clamping groove (in an initial non-working state, the locking mechanism is locked);
the joint spare is fixed, the position in joint groove does: when the mop is in a locking state, the inserting slot of the rotating tray is aligned with the inserting and pulling of the mop bucket (when the mop is in a top view), and at the moment, the flat mop can be pulled out of the dewatering frame;
in this embodiment, the engaging member 312 and the rotating shaft 16 are integrally formed, and the integrally formed structure is fixedly installed in the mop bucket, but not limited thereto, for example, the engaging member and the rotating shaft are two parts, one or both of which are integrally formed with the mop bucket, etc.;
the working principle of the locking mechanism is as follows: in an initial state, the clamping part of the lock catch falls into the clamping groove, at the moment, the locking mechanism is in a locking state, the rotating tray cannot rotate, the flat mop is pushed against the supporting part when being inserted into the rotating tray and drives the supporting part along with the downward pressing, so that the lock catch is driven to slide, the clamping part on the lock catch is separated from the clamping groove, and at the moment, the rotating tray can rotate;
in this embodiment, locking and unlocking are realized by lock movement, and in fact, if locking is realized by the way that the rotating tray can move axially as a whole, the locking is also an equivalent embodiment of the mechanism described in this embodiment.
In this embodiment, as shown in fig. 9: the dewatering frame comprises an upper end positioning disc 22, a limiting ring 15 for limiting the radial movement of the upper end positioning disc is arranged in the mop bucket, the upper end positioning disc is provided with a through hole 221 for the flat mop to pass through, the upper end positioning disc is positioned above the rotating tray, the through hole is aligned with the slot 211 (in a plan view), and the upper end positioning disc and the rotating tray are fixedly connected or integrally formed;
in this embodiment, the limiting ring 15 is arranged on the barrel cover 14;
when the dehydration frame rotates, the lower part is supported by the rotating tray and is guaranteed to rotate, the upper part is kept to rotate by the upper end positioning disc and cannot shake, the rotation stability of the dehydration frame is guaranteed not to shake, and the dehydration effect can be effectively improved.
This embodiment is shown in fig. 10 to 12: the holder 92 is arranged on the mop rod 91 of the flat mop, the inserting and pulling port is provided with a holder 131 matched with the holder, and when the flat mop is inserted into the holder for dehydration, the holder falls into the holder, so that the radial movement of the mop rod of the flat mop is limited, and the flat mop cannot shake during rotary dehydration;
the structure of the retainer and the retainer seat is one of the following structures:
(1) the holder is fixedly connected with the mop rod, and can rotate along with the flat mop after falling into the holder seat;
(2) the holder is rotatably connected with the mop rod, the holder is clamped with the holder to be relatively static after falling into the holder, and the mop rod rotates.
When the retainer is rotationally connected with the mop rod, the clamping structure of the retainer and the retaining seat is one of the following structures:
(1) the retainer is a revolving body, the retainer and the retainer seat have mutually matched meshing structures, and the embodiment is shown in fig. 11: the binding surfaces of the retainer and the retaining base are provided with mutually matched occlusion teeth 921;
(2) the retainer is a non-rotating body, and the retainer seat is a retainer seat matched with the shape of the retainer, as shown in fig. 12: the retainer is a rectangular body.
In fact, it is also possible to use only one of the anti-shaking structures of the upper end positioning plate 22 and the limiting ring 15 and the anti-shaking structures of the retainer 92 and the retainer seat 131, and the embodiment is used as the preferable solution, so that the rotation stability of the dewatering frame is further improved.
The flat mop is a single-side flat mop or a double-side flat mop, the single-side flat mop is a flat mop with a mop head only provided with a wiping material on one side, and the double-side flat mop is a flat mop with a mop head provided with wiping materials on both sides.
The working principle of the utility model is as follows:
when the flat mop is dehydrated, the flat mop is turned to be in a vertical state, is inserted into the dehydration rack and is pressed downwards, and the locking mechanism is opened by pressing the dehydration rack downwards, so that the flat mop and the dehydration rack are rotated together for dehydration; when the flat mop is pulled out or partially pulled out of the dewatering frame after dewatering, the locking mechanism is closed through the separation of the flat mop from the dewatering frame, and the dewatering frame is locked and cannot rotate; when the mop bucket is provided with a plug-in opening (for using the retainer), the locking dehydration frame is used for aligning and fixing the through opening or the slot of the dehydration frame with the plug-in opening (overlooking the bucket opening), so that the flat mop can be conveniently inserted for dehydration next time;
under the initial state of the locking mechanism, the clamping part of the lock catch falls into the clamping groove, at the moment, the locking mechanism is in a locking state, the rotating tray cannot rotate, the flat mop is inserted into the rotating tray and abuts against the supporting part, the supporting part is driven along with the downward pressing, the lock catch is driven to slide, the clamping part on the lock catch is separated from the clamping groove, and at the moment, the rotating tray can rotate.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structure changes made in the specification and the attached drawings or directly or indirectly applied to other related technical fields are included in the same principle as the present invention.

Claims (11)

1. The utility model provides a vertical dehydration tool of dull and stereotyped mop, dull and stereotyped mop (9) have rotatory mop pole, its characterized in that: the mop bucket comprises a mop bucket (1), a dewatering frame (2) is arranged in the mop bucket, the dewatering frame is rotationally connected to the mop bucket and can rotate around the longitudinal axis of the dewatering frame, a locking mechanism capable of limiting the rotation of the dewatering frame is arranged on the dewatering tool, and the locking mechanism comprises a lock catch (311) arranged on the dewatering frame and a clamping piece (312) arranged on the mop bucket;
in a normal state, the lock catch is clamped with the clamping piece, so that the dehydration frame is locked; during the dehydration, when the flat mop inserts the dehydration frame and pushes down, it can support and push the hasp makes it break away from the joint spare to relieve the locking, the dehydration frame can rotate.
2. The vertical dehydration tool of flat mop of claim 1, wherein: a plug-in opening (13) for inserting the flat mop is arranged above the dewatering frame and is communicated with the mop bucket.
3. The vertical dehydration tool of flat mop of claim 2, wherein: the mop bucket is provided with a bucket cover (14), the plugging port is arranged on the bucket cover, and the bucket cover can be detachably connected with the mop bucket or integrally formed with the mop bucket.
4. The vertical dehydration tool of flat mop according to claim 2 or 3, characterized in that: the dehydration frame comprises a rotary tray (21), the rotary tray is rotatably connected to the mop bucket, and the upper surface of the rotary tray is provided with a slot (211) for inserting the flat mop.
5. The vertical dehydration tool of flat mop according to claim 2 or 3, characterized in that: the flat mop is characterized in that a holder (92) is arranged on a mop rod (91) of the flat mop, the inserting and extracting opening is provided with a holder (131) matched with the holder, and when the flat mop is inserted into the holder for dehydration, the holder falls into the holder, so that the radial movement of the mop rod of the flat mop is limited.
6. The vertical dehydration tool of flat mop of claim 5, wherein: the structure of the retainer and the retainer seat is one of the following structures:
the holder is fixedly connected with the mop rod, and can rotate along with the flat mop after falling into the holder;
and secondly, the retainer is rotationally connected with the mop rod, the retainer is clamped with the retaining seat to be relatively static after falling into the retaining seat, and the mop rod rotates.
7. The vertical dehydration tool of flat mop of claim 6, wherein: when the retainer is rotationally connected with the mop rod, the retainer is clamped with the retaining seat by one of the following structures:
the retainer is a revolving body, and the retainer seat have mutually matched occlusion structures;
the retainer is a non-rotating body, and the retaining seat is a retaining seat matched with the shape of the retainer.
8. The vertical dehydration tool of flat mop of claim 4, wherein: the dewatering frame comprises an upper end positioning disc (22), a limiting ring (15) for limiting the radial movement of the upper end positioning disc is arranged in the mop bucket, the upper end positioning disc is provided with a through hole (221) for the flat mop to pass through, the upper end positioning disc is positioned above the rotating tray, and the upper end positioning disc is fixedly connected with the rotating tray or integrally formed.
9. The vertical dehydration tool of flat mop of claim 4, wherein: the hasp has supporting part (3111) and block portion (3112), the joint spare has can let joint groove (3121) that block portion falls into, dull and stereotyped mop inserts can support during the rotatory tray and push the supporting part, so that block portion with joint groove block.
10. The vertical dehydration tool of flat mop of claim 4, wherein: locking mechanism is equipped with piece (313) that resets, the piece that resets is elastomeric element, the one end that resets is connected rotatory tray, and the other end is connected the hasp, the piece that resets acts on the hasp, make the hasp with joint spare block.
11. The vertical dehydration tool of flat mop of claim 1, wherein: the flat mop is a single-side flat mop or a double-side flat mop.
CN201920173060.1U 2019-01-31 2019-01-31 Vertical dehydration tool for flat mop Expired - Fee Related CN210582408U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920173060.1U CN210582408U (en) 2019-01-31 2019-01-31 Vertical dehydration tool for flat mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920173060.1U CN210582408U (en) 2019-01-31 2019-01-31 Vertical dehydration tool for flat mop

Publications (1)

Publication Number Publication Date
CN210582408U true CN210582408U (en) 2020-05-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920173060.1U Expired - Fee Related CN210582408U (en) 2019-01-31 2019-01-31 Vertical dehydration tool for flat mop

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109602361A (en) * 2019-01-31 2019-04-12 霸州市喜来居塑胶制品有限公司 The vertical dewatering tool of flat mop

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109602361A (en) * 2019-01-31 2019-04-12 霸州市喜来居塑胶制品有限公司 The vertical dewatering tool of flat mop
CN109602361B (en) * 2019-01-31 2024-05-17 河北洁仕宝日用塑料制品有限公司 Vertical dewatering tool for flat mop

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Granted publication date: 20200522