CN108272411B - Foam mop - Google Patents
Foam mop Download PDFInfo
- Publication number
- CN108272411B CN108272411B CN201810216136.4A CN201810216136A CN108272411B CN 108272411 B CN108272411 B CN 108272411B CN 201810216136 A CN201810216136 A CN 201810216136A CN 108272411 B CN108272411 B CN 108272411B
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- Prior art keywords
- connecting plate
- head
- mounting plate
- mop
- foam
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/20—Mops
- A47L13/24—Frames for mops; Mop heads
- A47L13/254—Plate frames
- A47L13/257—Plate frames for mops made of sponge material
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- Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
Abstract
The utility model relates to a foam cotton mop, which comprises a mop rod (18) and a foam cotton assembly and is characterized in that: the foaming cotton assembly comprises a mounting plate (1) and foaming cotton (2) fixed below the connecting plate (3), wherein the mounting plate (1) is movably connected to the lower end of a mop rod (18), the connecting plate (3) is detachably connected to the mounting plate (1), the head of the connecting plate (3) is connected with the head of the mounting plate (1) through an inserting structure, the connecting plate (3) slides towards the head direction of the connecting plate to be detached from the mounting plate (1), and when water is squeezed, the head of the connecting plate (3) is adjacent to the head of the mounting plate (1) and faces the water squeezing device. The foam cotton mop has the advantages that the squeezing operation is novel, the head of the connecting plate is tightly attached to the head of the mounting plate, the head of the foam cotton assembly is easier to enter the squeezing device during the squeezing operation, and the squeezing operation is labor-saving.
Description
Technical Field
The utility model relates to a foam mop, wherein the foam can be collodion cotton head, sponge head or the like.
Background
The collodion mop in the current market is approximately the same in structure and comprises a mop rod, a mop head and a squeezing mechanism, wherein a squeezing device in the collodion mop is a transmission structure and comprises a handle, a pull rod, a caliper seat (squeezing frame), a collodion clamp and a squeezing rod, the caliper seat is approximately U-shaped, the collodion head is clamped by the collodion clamp, the collodion clamp is fixed at the bottom end of the pull rod, the top end of the pull rod is movably pinned with the middle part of the handle, the rear end of the handle is pinned on the mop rod, the squeezing rod is oblate, and the two ends of the squeezing rod are pinned at the lower end of the caliper seat. When the squeezing operation is performed, the handle is pulled to drive the collodion cotton head to horizontally move upwards through the pull rod, and the collodion cotton head passes through the squeezing rods of the squeezing frame, so that the collodion cotton head passing through the squeezing rods can be clamped by the squeezing rods to realize squeezing due to the elasticity of the squeezing rods for keeping the clamping trend. Such as "collodion mop", a chinese patent No. ZL 0326027. X (publication No. CN 2626415Y), a chinese patent No. ZL200920121093.8 (publication No. CN 201409887Y), a chinese patent No. ZL200920075021.4 (publication No. CN 201453183U), a chinese patent No. ZL201110102067.2 (publication No. CN102138771 a), a chinese patent No. movable multifunctional collodion mop, all disclose such a squeezing device for collodion mop.
Because of the special water squeezing property of the collodion mop, the collodion mop head of the existing collodion mop generally comprises a collodion head and a metal cotton clamp for fastening the collodion head, and is generally drilled on the metal cotton clamp, and then the metal cotton clamp is directly fixed on a collodion mop rod by utilizing a screw so as to fasten the collodion head. Such as the Chinese patent with patent number ZL 20052067956. X (bulletin number CN 2875307Y) of spring buckle collodion mop head, such as the Chinese patent with patent number ZL201320019406.5 (bulletin number CN 203074616U) of collodion mop head capable of quickly replacing collodion head, such as the Chinese patent with patent number ZL200920121093.8 (bulletin number CN 201409887Y) of plug-in collodion mop. All of them disclose collodion mop heads of different sizes.
When the existing collodion mop is used for squeezing water, the handle is pulled to drive the collodion head to horizontally move upwards through the pull rod, and the collodion head passes between squeezing rods of the squeezing frame, so that the squeezing rods have elasticity for keeping clamping trend due to certain elasticity, and the collodion head passing through the squeezing rods can be squeezed by the squeezing rods to realize squeezing water. This squeezing mode of collodion mop has become an inertial thinking of designers, and this squeezing mode has the following drawbacks:
1. the squeezing mode is that the squeezing frame moves along the height direction of the collodion head to squeeze the collodion head, so that the whole collodion head can be squeezed by the squeezing rod, the transverse length of the squeezing rod is close to that of the collodion head, the whole transverse length of the squeezing part is long, the squeezing rod is heavy, in addition, the squeezing rods at the front side or the rear side are generally multiple in rows, the consumption is high, the contact area between the squeezing rod and the collodion head in the squeezing process is large, the friction force during squeezing is greatly increased, and the squeezing frame cost is high. 2. Because of the specificity of the squeezing frame structure, the collodion head and the mop rod must be fixedly connected, and the collodion head cannot be completely separated from the squeezing frame, namely, the collodion head cannot rotate relative to the mop rod, when the mop is used for mopping, the mop is inconvenient to mop when meeting specific occasions such as corners, and the adaptability of mopping is poor. 3. When the collodion mop is stored, the length direction of the collodion head is perpendicular to the axial direction of the mop rod, so that the space for storing the collodion mop is required to be large, the storage is inconvenient, the size of the packing box of the traditional collodion mop is large, the same space is used for storing the collodion mop, and the transportation cost is increased.
For example, chinese patent No. ZL201720107065.5 (bulletin No. CN 206979452U) discloses a foam mop with a brand new squeezing mode, and because of the special nature of the collodion material, the thickness of the mop is thicker than that of the conventional mop cloth, so that an important problem to be solved by the mop with the squeezing structure is how to ensure that the foam mop head smoothly enters the squeezing opening of the squeezing frame.
In view of the above, the existing collodion mop can be further improved.
Disclosure of Invention
The utility model aims to solve the technical problems of providing a foam cotton mop which is novel in water squeezing operation and tightly attached between the head of a connecting plate and the head of a mounting plate, wherein the head of a foam cotton assembly is easier to enter a water squeezing device during water squeezing operation, and the water squeezing operation is labor-saving.
The technical scheme adopted for solving the technical problems is as follows: the foam cotton mop comprises a mop rod and a foam cotton assembly, wherein the foam cotton assembly is movably connected to the lower end of the mop rod, the foam cotton assembly can be rotated to the length direction of the foam cotton assembly to be basically parallel to the mop rod so as to be aligned with a water squeezing device, when water is squeezed, the water squeezing device and the foam cotton assembly relatively slide along the length direction of the foam cotton assembly so as to squeeze the foam cotton assembly to realize water squeezing, and the foam cotton assembly is completely separated from the water squeezing device when the mop is used for mopping; the method is characterized in that: the foaming cotton assembly comprises a mounting plate and foaming cotton fixed below the mounting plate, the mounting plate is movably connected to the lower end of the mop rod, the connecting plate is detachably connected to the mounting plate, the head of the connecting plate is connected with the head of the mounting plate through a plug-in structure, the connecting plate slides towards the head direction of the connecting plate to complete detachment from the mounting plate, and when water is squeezed, the head of the connecting plate is adjacent to the head of the mounting plate and faces the water squeezing device.
Preferably, the above-mentioned insertion structure includes a slot and an insert which can be inserted into each other, the slot is provided in one of the head of the connection board and the head of the mounting board, the insert is provided in the other of the head of the connection board and the head of the mounting board, and the insert is inserted into the slot in a state where the connection board is connected to the mounting board.
The slots are formed in the head of the connecting plate, and the cutting is formed in the head of the mounting plate. Of course the positions of the slots and slips may be interchanged.
Preferably, a rib-groove matching hanging structure and an unlocking locking structure are arranged between the connecting plate and the mounting plate; in the state that the connecting plate is hung on the mounting plate through the rib and groove matched hanging structure, the connecting plate is locked on the mounting plate through the locking structure, so that the connecting plate cannot move forwards in the length direction; in the state that the locking structure is unlocked, the connecting plate can move forwards in the length direction until the inserting structure is separated from the mounting plate, and finally the connecting plate and the mounting plate are separated. The rib groove cooperation is hung and is established the structure and is favorable to the installation guiding effect of connecting plate, the rib groove cooperation is hung and is established the structure and make the connecting plate hang and establish in the mounting panel bottom surface and spacing in upper and lower direction, but the connecting plate can also be in the upward motion of length direction, it is spacing before combining the kayser structure to the connecting plate in length direction, both mutually support and realize the connecting plate on the mounting panel, alright make the connecting plate can move forward after the kayser structure unblock, break away from the rib groove cooperation and hang and establish the structure, the cutting breaks away from the slot simultaneously, this connection structure accomplishes the locking in the backward direction, after the unblock, only forward direction and can realize the breaking away from of connecting plate and mounting panel, convenient operation and humanization.
Preferably, the rib-groove matching hanging structure comprises a plurality of L-shaped clamping ribs which are arranged on the top surface of the connecting plate and extend upwards, and a plurality of L-shaped clamping grooves which are arranged on the bottom surface of the mounting plate, wherein the clamping ribs are arranged in one-to-one correspondence with the clamping grooves.
Preferably, the ribs and the grooves are divided into two rows spaced apart from each other in the width direction, and each row of ribs and grooves is provided in plural and spaced apart from each other in the longitudinal direction. The arrangement mode of the clamping ribs and the clamping grooves enables the connection points between the connection plates and the mounting plates to be distributed evenly.
Preferably, the locking structure comprises an elastic buckle, a bayonet and an unlocking button, wherein the elastic buckle is arranged on the connecting plate and keeps the upward bouncing trend, the bayonet is arranged on the bottom surface of the mounting plate, the unlocking button is arranged in the mounting plate and keeps the upward bouncing trend to expose the top surface of the mounting plate, in a locking state, the elastic buckle is clamped into the bayonet so that the connecting plate cannot move forwards in the length direction, the lower end of the unlocking button is matched with the elastic buckle clamped into the bayonet, and the lower pressure of the unlocking button can push the elastic buckle to be separated from the bayonet downwards. The locking structure has few design parts, is favorable for assembly, and exposes the top surface of the mounting plate to the operation part of the unlocking button to facilitate unlocking operation. Of course, the simplest latch and socket fit mode can be adopted to realize locking.
Further improved, the bottom surface of the mounting plate is provided with a mounting cavity, an elastic piece is arranged in the mounting cavity, the top surface of the connecting plate is provided with a pushing part which is upwards used for extending into the mounting cavity and can slide forwards and backwards, the pushing part is matched with the elastic piece, and the elastic piece is compressed by the pushing part in the state that the connecting plate is locked on the mounting plate, so that the connecting plate has a forward moving trend. The design makes the detachment of the mounting plate realize automation, after the unlocking button is pressed, the elastic buckle is pushed to be separated from the bayonet downwards, the connecting plate can automatically move forwards under the action of the elastic piece until the clamping rib is separated from the constraint of the clamping groove, and meanwhile, the cutting is separated from the slot, so that the operation is more humanized.
The water squeezing device can be arranged on the mop rod and can slide along the mop rod, or can be fixed on the mop bucket. The squeezing device comprises a squeezing frame which is arranged on the mop rod and can slide along the length direction of the mop rod, the squeezing frame is provided with a squeezing opening through which the end face of the foam cotton passes, and a squeezing part which can squeeze the foam cotton passing through the squeezing opening is arranged in the squeezing opening. The water squeezing device is a specific structure for realizing the water squeezing mode.
Further improved, a space is formed above the top surface of the foam cotton, the space is close to the head of the connecting plate, and the space is used for the top surface of the corresponding position of the foam cotton to sink inwards when the head of the foam cotton is extruded. The setting through space of stepping down provides the deformation of stepping down for the foam cotton part after receiving the extrusion and gives down, more does benefit to foam cotton part and takes place to warp in thickness direction, and foam cotton's head is the part that gets into the extrusion mouth first for the just beginning stage of squeezing water, foam cotton's deformation is lighter, and then directs whole foam cotton head to easily and smoothly pass through the extrusion mouth in length direction, and the wringing operation is more laborsaving, and foam cotton part's terminal surface is difficult for damaging more.
The relief space comprises a through hole formed in the connecting plate and a concave cavity formed in the bottom surface of the mounting plate, and the through hole is exposed out of the concave cavity. If the connecting plate fully covers the top surface of the foam, the pad needs to be provided with perforations for exposing the concave cavities.
Compared with the prior art, the utility model has the advantages that: the squeezing mode of the traditional foam cotton head is changed, the foam cotton head can be rotated to the state that the length direction of the foam cotton head is basically parallel to the mop rod and is aligned with the squeezing device, when squeezing water, the squeezing device slides up and down along the length direction of the foam cotton head and squeezes the left side and the right side of the foam cotton head to realize squeezing water, the squeezing device only contacts the foam cotton head in the height direction, the contact distance is short, the force blocked by squeezing water is small, the squeezing operation is more labor-saving, the squeezing device slides along the length direction of the foam cotton head to gradually squeeze water, the squeezing stroke is longer, and the squeezing effect is better; the foam cotton head is completely separated from the water squeezing device when mopping, so the foam cotton head is movably connected to the lower end of the mop rod, and can deflect randomly in the mopping process, so that the operation is more comfortable and reasonable; under the state that the connecting plate is installed on the mounting panel, the head of connecting plate and mounting panel passes through slot structure and inserts the joining in marriage, ensures that the laminating is inseparable between the head of connecting plate and the head of mounting panel, and foam cotton can not open, ensures that foam cotton mop foam cotton subassembly's head more easily gets into the wringing device when the wringing operation, and the wringing operation labour saving.
Drawings
FIG. 1 is a schematic perspective view of an embodiment of the present utility model (a wringing device is provided on a mop rod);
FIG. 2 is a schematic perspective view of a foam module according to an embodiment of the present utility model;
FIG. 3 is a cross-sectional view of a foam assembly in accordance with an embodiment of the present utility model;
FIG. 4 is an exploded perspective view of a foam assembly according to an embodiment of the present utility model;
FIG. 5 is a schematic perspective view of a mounting plate according to an embodiment of the present utility model;
FIG. 6 is a schematic perspective view of an embodiment of the present utility model (the wringer device is fixed to the mop bucket);
Detailed Description
The utility model is described in further detail below with reference to the embodiments of the drawings.
As shown in fig. 1-6, is a preferred embodiment of the present utility model.
The utility model provides a foam cotton mop, including mop pole 18, foam cotton subassembly swing joint is equipped with the ability at the lower extreme of mop pole 18, and foam cotton subassembly can be rotated to its length direction L and the mop pole 18 basically parallel one can and aim at the wringing device, and wringing device in this embodiment locates on mop pole 18 and slides along the length direction of mop pole 18, and during the wringing, the wringing device slides along the length direction L of foam cotton subassembly and extrudes foam cotton subassembly in order to realize the wringing, and foam cotton subassembly breaks away from the wringing device completely during mopping.
As shown in fig. 6, the wringer device can of course be fixed to the mop bucket 21. When squeezing water, the length direction L of the foam cotton assembly slides along the squeezing device and extrudes the foam cotton assembly to realize squeezing water,
the squeezing device in the foam cotton mop comprises a squeezing frame 19 which is arranged on a mop rod 18 and can slide along the length direction of the mop rod 18, wherein the squeezing frame 19 is provided with a squeezing opening X through which the end face M of foam cotton 2 passes, a squeezing part 20 which can squeeze the bottom face S1 of the foam cotton 2 passing through the squeezing opening X is arranged in the squeezing opening X, and the squeezing part 20 can be a scraping strip formed on the side wall of one side of the squeezing opening X or can be a rotatable squeezing roller and the like.
The up-down direction in this embodiment refers to the direction along the length of the mop rod 18; the bottom surface S1 of the foam 2 is a surface that contacts the bottom surface in a mopping state, the top surface S2 of the foam 2 is a surface that contacts the pad 33, and the head of the foam 2 is an end that first enters the extrusion port X.
The foaming cotton assembly comprises a mounting plate 1 and foaming cotton 2 fixed below the mounting plate 3, the mounting plate 1 is movably connected to the lower end of a mop rod 18, the mounting plate 3 is detachably connected to the mounting plate 1, the head of the mounting plate 3 is connected with the head of the mounting plate 1 through an inserting structure, the connection plate 3 can only slide towards the head direction of the connection plate to complete detachment from the mounting plate, and when water is squeezed, the head of the connection plate 3 is close to the head of the mounting plate 1 and faces the water squeezing device.
The plug-in structure comprises a slot 4 and a cutting 5 which can be mutually plugged, the slot 4 is arranged at the head of the connecting plate 3, the cutting 5 is arranged at the head of the mounting plate 1, and the cutting 5 is inserted into the slot 4 in the state that the connecting plate 3 is detachably connected to the mounting plate 1.
A rib-groove matching hanging structure is arranged between the connecting plate 3 and the mounting plate 1, and an unlocking locking structure is arranged between the connecting plate 3 and the mounting plate 1; in a state that the connecting plate 3 is hung on the mounting plate 1 through a rib and groove matching hanging structure, the connecting plate 3 is locked on the mounting plate 1 through a locking structure, so that the connecting plate 3 cannot move forwards in the length direction; in the unlocked state of the locking mechanism, the connecting plate 3 can be moved in the longitudinal direction (forward) in the direction of its head until the cutting 5 is disengaged from the slot 4, which ultimately results in the connecting plate 3 being separated from the mounting plate 1.
The rib and groove cooperation hanging structure comprises a plurality of L-shaped clamping ribs 6 which are arranged on the top surface of the connecting plate 3 and extend upwards, and a plurality of L-shaped clamping grooves 7 which are arranged on the bottom surface of the mounting plate 1, wherein the clamping ribs 6 are arranged in one-to-one correspondence with the clamping grooves 7. The clamping ribs 6 and the clamping grooves 7 are divided into two rows which are spaced left and right along the width direction, and each row of the clamping ribs 6 and the clamping grooves 7 is four and arranged at intervals front and back along the length direction.
The locking structure comprises an elastic buckle 8, a bayonet 9 and an unlocking button 10, wherein the elastic buckle 8 is arranged on the connecting plate 3 and keeps the upward bouncing trend, the bayonet 9 is arranged on the bottom surface of the mounting plate 1, the unlocking button 10 is arranged in the mounting plate 1 and keeps the upward bouncing trend to expose the top surface of the mounting plate 1, under the locking state, the elastic buckle 8 is clamped into the bayonet 9 so that the connecting plate 3 cannot move forwards in the length direction, and the lower end of the unlocking button 10 is matched with the elastic buckle 8 clamped into the bayonet 9 so that the lower pressure of the unlocking button 10 can push the elastic buckle 8 to be separated from the bayonet 9 downwards.
The bottom surface of mounting panel 1 is equipped with installation cavity 11, is equipped with elastic component 12 in the installation cavity 11, the top surface of connecting plate 3 is equipped with upwards in order to stretch into installation cavity 11 and the promotion portion 13 that can slide back and forth, and this promotion portion 13 cooperates with elastic component 12, under the state that connecting plate 3 is locked on mounting panel 1, elastic component 12 is compressed by promotion portion 13 to make connecting plate 3 have the trend of keeping the antedisplacement.
A relief space P is formed above the top surface S2 of the foam cotton 2, the relief space P is close to the head of the connecting plate 3, and the relief space P is used for the top surface S2 of the corresponding position of the foam cotton 2 to sink into under the state that the head of the foam cotton 2 is extruded. The relief space P comprises a through hole 16 arranged on the connecting plate 3 and a concave cavity 17 arranged on the bottom surface of the mounting plate 1, wherein the through hole 16 is exposed by the concave cavity 17.
During the equipment, laminating mounting panel 1's bottom surface with connecting plate 3, the joint bar 6 that is L shape is arranged in the wide position in the draw-in groove 7 that is L shape, slot 4 is arranged in the place ahead of the cutting 5 of connecting plate 3, move back connecting plate 3 relative mounting panel 1, joint bar 6 gradually gets into the narrower position in the draw-in groove 7, joint bar 6 hangs and establishes on draw-in groove 7, simultaneously, the cutting 5 of connecting plate 3 inserts in slot 4, elasticity buckle 8 card is gone into in bayonet socket 9 so that connecting plate 3 can not move forward in the length direction, the fixing on mounting panel 1 is accomplished to connecting plate 3 that is fixed with foam cotton 2.
When the foam cotton machine is replaced, the unlocking button 10 is pressed downwards to push the elastic buckle 8 to separate from the bayonet 9 downwards, the connecting plate 3 automatically moves forwards under the action of the elastic piece 12 until the clamping rib 6 is separated from the constraint of the clamping groove 7, and meanwhile, the inserting strip 5 is separated from the slot 4, so that the connecting plate 3 for fixing the foam cotton 2 can be taken down
Under the state that connecting plate 3 can be dismantled and install on mounting panel 1, connecting plate 3 and the head of mounting panel 1 pass through slot structure and insert and join in marriage, guarantee to laminate closely between connecting plate 3's head and the head of mounting panel 1, foam cotton 2 can not open, ensures that foam cotton mop foam cotton subassembly's head more easily gets into the wringing device when the wringing operation, and the wringing operation is laborsaving.
While the preferred embodiments of the present utility model have been described in detail, it is to be clearly understood that the same may be varied in many ways by those skilled in the art. The following driving block can also be a mode of driving the caliper seat to move back and forth to realize water squeezing, and any modification, equivalent replacement, improvement and the like which are within the spirit and principle of the utility model are included in the protection scope of the utility model.
Claims (9)
1. The foam cotton mop comprises a mop rod (18) and a foam cotton assembly, wherein the foam cotton assembly is movably connected to the lower end of the mop rod (18), the foam cotton assembly can be rotated to the length direction (L) of the foam cotton assembly to be basically parallel to the mop rod (18) so as to be aligned with a water squeezing device, when water is squeezed, the water squeezing device and the foam cotton assembly relatively slide along the length direction (L) of the foam cotton assembly so as to squeeze the foam cotton assembly to realize water squeezing, and the foam cotton assembly is completely separated from the water squeezing device when the mop is used for mopping; the method is characterized in that: the foaming cotton assembly comprises a mounting plate (1) and foaming cotton (2) fixed below the connecting plate (3), the mounting plate (1) is movably connected to the lower end of a mop rod (18), the connecting plate (3) is detachably connected to the mounting plate (1), the head of the connecting plate (3) is connected with the head of the mounting plate (1) through an inserting structure, the connecting plate (3) slides towards the head direction of the connecting plate to be detached from the mounting plate (1), and when water is squeezed, the head of the connecting plate (3) is close to the head of the mounting plate (1) and faces the water squeezing device;
a rib-groove matched hanging structure and an unlocking locking structure are arranged between the connecting plate (3) and the mounting plate (1); in the state that the connecting plate (3) is hung on the mounting plate (1) through the rib and groove matched hanging structure, the connecting plate (3) is locked on the mounting plate (1) through the locking structure, so that the connecting plate (3) cannot move forwards in the length direction; in the state that the locking structure is unlocked, the connecting plate (3) can move forwards in the length direction until the inserting structure is separated from the inserting structure, and finally, the connecting plate (3) and the mounting plate (1) are separated;
the plug-in structure comprises a slot (4) and a cutting (5) which can be mutually plugged.
2. The foam mop as set forth in claim 1, wherein: the slot (4) is arranged at one of the head of the connecting plate (3) or the head of the mounting plate (1), the cutting (5) is arranged at the other of the head of the connecting plate (3) or the head of the mounting plate (1), and the cutting (5) is inserted into the slot (4) in the state that the connecting plate (3) is connected to the mounting plate (1).
3. The foam mop as set forth in claim 2, wherein: the slot (4) is arranged at the head of the connecting plate (3), and the cutting (5) is arranged at the head of the mounting plate (1).
4. The foam mop as set forth in claim 1, wherein: the rib and groove cooperation hanging structure comprises a plurality of L-shaped clamping ribs (6) which are arranged on the top surface of the connecting plate (3) and extend upwards, and a plurality of L-shaped clamping grooves (7) which are arranged on the bottom surface of the mounting plate (1), wherein the clamping ribs (6) are in one-to-one correspondence with the clamping grooves (7).
5. The foam mop as set forth in claim 4, wherein: the clamping ribs (6) and the clamping grooves (7) are divided into two rows which are spaced left and right along the width direction, and each row of the clamping ribs (6) and the clamping grooves (7) are respectively provided with a plurality of clamping ribs and are arranged at intervals front and back along the length direction.
6. The foam mop as set forth in claim 1, wherein: the locking structure comprises an elastic buckle (8), a bayonet (9) and an unlocking button (10), wherein the elastic buckle (8) is arranged on the connecting plate (3) and keeps the upward bouncing trend, the bayonet (9) is arranged on the bottom surface of the mounting plate (1), the unlocking button (10) is arranged in the mounting plate (1) and keeps the upward bouncing trend to expose the top surface of the mounting plate (1), the elastic buckle (8) is clamped into the bayonet (9) to enable the connecting plate (3) not to move forwards in the length direction under the locking state, and the lower end of the unlocking button (10) is matched with the elastic buckle (8) clamped into the bayonet (9) so that the lower pressure energy of the unlocking button (10) pushes the elastic buckle (8) to be separated from the bayonet (9) downwards.
7. The foam mop as set forth in claim 1, wherein: the bottom surface of mounting panel (1) is equipped with installation cavity (11), is equipped with elastic component (12) in installation cavity (11), the top surface of connecting plate (3) is equipped with upwards is used for stretching into in installation cavity (11) and pushing portion (13) that can slide back and forth, and this pushing portion (13) cooperates with elastic component (12), under the state that connecting plate (3) were locked on mounting panel (1), elastic component (12) are compressed by pushing portion (13) to make connecting plate (3) have and keep the forward trend.
8. The foam mop as set forth in claim 1, wherein: the wringing device is arranged on the mop rod (18) and can slide along the mop rod (18).
9. The foam mop as set forth in claim 1, wherein: the wringing device is fixed on the mop bucket (21).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201810216136.4A CN108272411B (en) | 2018-03-16 | 2018-03-16 | Foam mop |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201810216136.4A CN108272411B (en) | 2018-03-16 | 2018-03-16 | Foam mop |
Publications (2)
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CN108272411A CN108272411A (en) | 2018-07-13 |
CN108272411B true CN108272411B (en) | 2023-09-29 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201810216136.4A Active CN108272411B (en) | 2018-03-16 | 2018-03-16 | Foam mop |
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Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108670141A (en) * | 2018-07-04 | 2018-10-19 | 宁波蓝小鱼家居科技有限公司 | Foamed cotton head assembly and foaming cotton mop |
CN108814485B (en) * | 2018-08-06 | 2023-11-10 | 浙江美添乐家居用品股份有限公司 | Dehydration and cleaning integrated mop bucket |
CN117122248A (en) * | 2018-12-06 | 2023-11-28 | 西安佳品创意设计有限公司 | Collodion mop |
CN211633152U (en) * | 2019-07-28 | 2020-10-09 | 夏陈攀 | Mop head, mop and mopping assembly |
US11324379B2 (en) | 2019-12-19 | 2022-05-10 | Tylor Christian ROSS | Mop with interchangeable head mechanisms |
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