CN216090358U - Collodion mop kit - Google Patents

Collodion mop kit Download PDF

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Publication number
CN216090358U
CN216090358U CN202121029900.0U CN202121029900U CN216090358U CN 216090358 U CN216090358 U CN 216090358U CN 202121029900 U CN202121029900 U CN 202121029900U CN 216090358 U CN216090358 U CN 216090358U
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mop
extrusion
plate
side plates
supporting plate
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CN202121029900.0U
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Chinese (zh)
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曲淑华
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Hangzhou Yunfeng Industrial Design Co Ltd
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Individual
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Abstract

The utility model discloses a collodion mop kit, which comprises a barrel body and a mop, wherein the barrel body is provided with a plurality of grooves; the mop comprises a mop rod, a mop connecting plate and a wiping part; the mop plate comprises two side plates capable of rotating relatively and a connecting part; an extruder is arranged in the barrel body; the squeezer is provided with a squeezing channel for the mop to pass through; step parts are symmetrically arranged on the left side and the right side of the side wall of the extrusion channel; the side plate is rotatably connected with an extrusion supporting plate which can be abutted against the step part; when the mop moves upwards along the squeezing channel, the two side plates rotate oppositely by a preset angle; after the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the extrusion supporting plate rotates relative to the side plates to drive the two side plates to rotate in opposite directions. The scheme has the advantages of simple structure, few parts and convenience in processing and manufacturing, and the squeezer is not easy to damage due to the fact that no moving part exists on the squeezer.

Description

Collodion mop kit
Technical Field
The utility model belongs to the technical field of mops, and particularly relates to a collodion mop kit.
Background
Chinese patent document No. CN209252736U discloses a cleaning tool, which comprises a mop, wherein the mop comprises a mop rod, a squeezing device and a collodion head component for cleaning, and the collodion head component can move relative to the squeezing device to perform dewatering; the collodion cotton head component is provided with a driven part, and the driven part is used for the collodion cotton head component to move relative to the extrusion device; the cleaning tool also comprises a water storage barrel, wherein the water storage barrel is provided with a supporting part, and the supporting part is used for being supported by the driving part so that the collodion cotton head component can be supported; the collodion head component of the mop extends into the water storage barrel and is supported by the supporting part, the mop rod is held and pushed to press downwards, the pressed mop rod drives the extrusion device to move relative to the supported collodion head component, and therefore the extrusion device can extrude the collodion head component. The water storage barrel with the supporting part can be matched with the collodion mop with the squeezing device for use, so that the cleaning efficiency is high when the product is matched for use, and the operation is simple and convenient; the product has simple structure, is not easy to damage and is convenient to combine and store for transportation.
In the patent, the mop needs to be provided with the driven part, so that the width of the whole mop is increased, and the mop is inconvenient to clean areas with narrow width.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: aiming at the defects existing in the prior art, the collodion mop kit which is simple in structure and can clean a narrow area is provided.
In order to realize the purpose of the utility model, the following technical scheme is adopted for realizing the purpose: a collodion mop kit comprises a barrel body and a mop; the mop comprises a mop rod, a mop plate connected to the lower end of the mop rod and a wiping part arranged at the lower end of the mop plate; the mop plate comprises two side plates capable of rotating relatively and connecting parts respectively rotatably connected with the two side plates; when the two side plates rotate to be in the same plane, the mop plate is in a floor mopping state; when the two side plates rotate downwards relatively, the wiping part is squeezed, and the mop plate is in a water squeezing state.
An extruder is arranged in the barrel body; the squeezer is provided with a squeezing channel for the mop to pass through; the side wall of the extrusion channel is symmetrically provided with step parts.
The side plate is rotatably connected with an extrusion supporting plate which can be abutted against the step part; when the mop moves upwards along the squeezing channel, the two side plates rotate oppositely by a preset angle; after the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the extrusion supporting plate rotates relative to the side plates to drive the two side plates to rotate in opposite directions.
When the mop is in a mopping state, the extrusion supporting plate is attached to the side plate; the step part position is equipped with the portion of strutting that is used for the drive extrusion backup pad outer end to keep away from the curb plate.
The portion that the extrusion passageway is located step portion below is for extrudeing the guide part in advance, curb plate outer end or extrusion backup pad outer end can be followed and extrudes the guide part in advance and upwards slide to step portion on.
As a preferable scheme: the shape of the pre-extrusion guide part enables the outer end of the side plate or the part of the side plate close to the outer end to be in sliding contact with the pre-extrusion guide part when the side plate slides upwards relative to the pre-extrusion guide part.
As a preferable scheme: the pre-extrusion guide part is in a horn mouth shape with a narrow upper part and a wide lower part.
As a preferable scheme: and an elastic element for driving the extrusion supporting plate to reset is connected between the extrusion supporting plate and the side plate at the same side.
As a preferable scheme: and an elastic piece is connected between each side plate and the connecting part, and the elastic pieces enable the side plates on the two sides to be kept in a coplanar state when being in a mopping state.
As a preferable scheme: the opening part inclines towards the central plane of the extrusion channel from bottom to top.
After the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the strutting part is inserted between the extrusion supporting plate and the side plate, and the extrusion supporting plate is forced to be separated from the side plate.
Compared with the prior art, the utility model has the beneficial effects that: when the mop cleaning device is used, clear water is added into the barrel body, then the mop is placed into the barrel body from the cleaning area, and the mop moves up and down in a reciprocating mode, so that dirt on a wiping object drops into water.
When carrying out crowded water, with the mop from the interior bottom lateral shifting in washing district to squeezer below, upwards pull up the mop after that, two curb plates will be along extrusion guide part relative motion, after curb plate upward movement to step portion top, promote the mop downwards after that, prop the portion of opening and insert between extrusion backup pad and the curb plate, make and rotate to take place between extrusion backup pad and the curb plate, extrusion backup pad offsets with step portion, the curb plate is along extrusion passageway downstream, and then the extrusion backup pad forces two curb plates further relative motion, extrude the wiper, extrude the water in the wiper.
When the mop is moved down to the extreme position, the wipe is already squeezed and the mop cannot continue its downward movement, while the wipe is still above the water.
Then the mop is moved upwards, so that the mop leaves the barrel body, and the two side plates are mutually away under the action of the elastic force of the wiping object, so that the mop moves to a floor mopping state, and a user can conveniently mop the floor.
The scheme has the advantages of simple structure, few parts and convenience in processing and manufacturing, and the squeezer is not easy to damage due to the fact that no moving part exists on the squeezer.
Drawings
Fig. 1 is a schematic structural view of the present invention.
FIG. 2 is a schematic exploded view of the mop of the present invention.
Fig. 3 is a schematic view of the extruder of the present invention.
Fig. 4 is a schematic structural view of the side plate of the present invention when it is rotated by a predetermined angle.
Fig. 5 is a schematic view showing the structure of the expanding part of the present invention inserted between the side plate and the pressing support plate.
FIG. 6 is a schematic view of the structure of the present invention during water squeezing.
FIG. 7 is a schematic sectional view of the mop of the present invention.
Fig. 8 is a schematic sectional structure view of the connecting portion of the present invention.
1. A barrel body; 2. a mop; 21. a side plate; 211. a side plate positioning groove; 22. a connecting portion; 221. a positioning head sliding groove; 23. extruding the support plate; 24. a wipe; 25. a mop rod; 26. positioning the head; 27 a spring; 3. an extruder; 31. an extrusion channel; 32. a step portion; 33. pre-extruding a guide part; 34. a spreader portion.
Detailed Description
Example 1
Referring to fig. 1 to 8, the collodion mop kit of the present embodiment includes a barrel 1 and a mop 2; the mop comprises a mop rod 25, a mop plate connected to the lower end of the mop rod, and a wiping part 24 arranged at the lower end of the mop plate; the mop plate comprises two side plates 21 which can rotate relatively and connecting parts 22 which are respectively connected with the two side plates in a rotating way; when the two side plates rotate to be in the same plane, the mop plate is in a floor mopping state; when the two side plates rotate downwards relatively, the wiping part is squeezed, and the mop plate is in a water squeezing state.
An extruder 3 is fixedly connected to one side in the barrel body; a squeezing channel 31 for a mop to pass through is formed on the squeezer; step parts 32 are symmetrically formed on the side wall of the extrusion channel from left to right; one side of the barrel body, which is far away from the squeezer, is a cleaning area for cleaning the mop.
The side plate is rotatably connected with an extrusion support plate 23 which can be abutted against the step part; when the mop moves upwards along the squeezing channel, the two side plates rotate oppositely by a preset angle; after the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the extrusion supporting plate rotates relative to the side plates to drive the two side plates to rotate in opposite directions.
When the mop is in a mopping state, the extrusion supporting plate is attached to the side plate; and a spreading part 34 for driving the outer end of the extrusion support plate to be far away from the side plate is formed at the step part position.
The opening part inclines towards the central plane of the extrusion channel from bottom to top.
After the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the opening part is inserted between the extrusion supporting plate and the side plate, so that a user can push the mop downwards by using smaller force, the extrusion supporting plate can be separated from the side plate, and the user can use the mop more labor-saving during use.
After the extrusion support plate slides to the upper part of the step part, when the mop moves downwards to the limit position, the distance between the two side plates is minimum, the wiping object is squeezed, and the included angle between the extrusion support plate and the side plates is smaller than or equal to 90 degrees.
The portion of extrusion passageway below step portion is for extrudeing guide part 33 in advance, the curb plate outer end or extrusion backup pad outer end can be followed and extrudeed the guide part upwards to the step portion in advance on.
The shape of the pre-extrusion guide part enables the outer end of the side plate or the part of the side plate close to the outer end to be in sliding contact with the pre-extrusion guide part when the side plate slides upwards relative to the pre-extrusion guide part.
The pre-extrusion guide part is in a horn mouth shape with a narrow upper part and a wide lower part.
When the curb plate was along extrudeing the guide part upward movement in advance, because the curb plate was far away relatively apart from the pivot of curb plate with the contact point of extrudeing the guide part in advance, the arm of force is great this moment promptly, and then only needs less power can drive two curb plates and rotate in opposite directions this moment, that is to say that the user only needs less power upwards to stimulate the mop, just can make curb plate move in opposite directions, rotates predetermined angle for it is more laborsaving when the user uses.
And an elastic element for driving the extrusion supporting plate to reset is connected between the extrusion supporting plate and the side plate at the same side. The elastic element is a torsion spring arranged between the extrusion supporting plate and the side plate.
And an elastic piece is connected between each side plate and the connecting part, and the elastic pieces enable the side plates on the two sides to be kept in a coplanar state when being in a mopping state.
A positioning head sliding groove 221 which is horizontally arranged is formed in the connecting part; the elastic part comprises two positioning heads 26 which are connected in a sliding groove of the positioning head in a sliding way and a spring 27 which is arranged between the two positioning heads; the curb plate is close to one side shaping of connecting portion has the curb plate constant head tank 211 that can with the first joint of location.
When the mop is in a floor mopping state, the spring enables the positioning head to be clamped in the side plate positioning groove, so that the two side plates can be kept in a relatively parallel state, and the two side plates can not rotate when a user mops the floor, so that the normal use of the mop is influenced.
When the mop cleaning device is used, clear water is added into the barrel body, then the mop is placed into the barrel body from the cleaning area, and the mop moves up and down in a reciprocating mode, so that dirt on a wiping object drops into water.
When carrying out crowded water, with the mop from the interior bottom lateral shifting in washing district to squeezer below, upwards pull up the mop after that, two curb plates will be along extrusion guide part relative motion, after curb plate upward movement to step portion top, promote the mop downwards after that, prop the portion of opening and insert between extrusion backup pad and the curb plate, make and rotate to take place between extrusion backup pad and the curb plate, extrusion backup pad offsets with step portion, the curb plate is along extrusion passageway downstream, and then the extrusion backup pad forces two curb plates further relative motion, extrude the wiper, extrude the water in the wiper.
When the mop is moved down to the extreme position, the wipe is already squeezed and the mop cannot continue its downward movement, while the wipe is still above the water.
Then the mop is moved upwards, so that the mop leaves the barrel body, and the two side plates are mutually away under the action of the elastic force of the wiping object, so that the mop moves to a floor mopping state, and a user can conveniently mop the floor.
The scheme has the advantages of simple structure, few parts and convenience in processing and manufacturing, and the squeezer is not easy to damage due to the fact that no moving part exists on the squeezer.

Claims (8)

1. A collodion mop kit comprises a barrel body and a mop; the mop comprises a mop rod, a mop plate connected to the lower end of the mop rod and a wiping part arranged at the lower end of the mop plate; the mop plate comprises two side plates capable of rotating relatively and connecting parts respectively rotatably connected with the two side plates; when the two side plates rotate to be in the same plane, the mop plate is in a floor mopping state; when the two side plates rotate downwards relatively, the wiping part is squeezed, and the mop plate is in a water squeezing state; the method is characterized in that: an extruder is arranged in the barrel body; the squeezer is provided with a squeezing channel for the mop to pass through; step parts are symmetrically arranged on the left side and the right side of the side wall of the extrusion channel; the side plate is rotatably connected with an extrusion supporting plate which can be abutted against the step part; when the mop moves upwards along the squeezing channel, the two side plates rotate oppositely by a preset angle; after the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the extrusion supporting plate rotates relative to the side plates to drive the two side plates to rotate in opposite directions.
2. The collodion mop kit of claim 1, wherein: when the mop is in a mopping state, the extrusion supporting plate is attached to the side plate; the step part position is equipped with the portion of strutting that is used for the drive extrusion backup pad outer end to keep away from the curb plate.
3. A collodion mop kit as recited in claim 1 or 2, wherein: the portion that the extrusion passageway is located step portion below is for extrudeing the guide part in advance, curb plate outer end or extrusion backup pad outer end can be followed and extrudes the guide part in advance and upwards slide to step portion on.
4. A collodion mop kit as recited in claim 3, wherein: the shape of the pre-extrusion guide part enables the outer end of the side plate or the part of the side plate close to the outer end to be in sliding contact with the pre-extrusion guide part when the side plate slides upwards relative to the pre-extrusion guide part.
5. The collodion mop kit of claim 4, wherein: the pre-extrusion guide part is in a horn mouth shape with a narrow upper part and a wide lower part.
6. A collodion mop kit as recited in claim 1 or 2, wherein: and an elastic element for driving the extrusion supporting plate to reset is connected between the extrusion supporting plate and the side plate at the same side.
7. A collodion mop kit as recited in claim 1 or 2, wherein: and an elastic piece is connected between each side plate and the connecting part, and the elastic pieces enable the side plates on the two sides to be kept in a coplanar state when being in a mopping state.
8. The collodion mop kit of claim 2, wherein: the opening part is inclined towards the central plane of the extrusion channel from bottom to top; after the extrusion supporting plate slides to the upper part of the step part, when the mop moves downwards, the strutting part is inserted between the extrusion supporting plate and the side plate, and the extrusion supporting plate is forced to be separated from the side plate.
CN202121029900.0U 2020-05-18 2021-05-14 Collodion mop kit Active CN216090358U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202020832114 2020-05-18
CN2020208321143 2020-05-18

Publications (1)

Publication Number Publication Date
CN216090358U true CN216090358U (en) 2022-03-22

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ID=80687430

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121029900.0U Active CN216090358U (en) 2020-05-18 2021-05-14 Collodion mop kit

Country Status (1)

Country Link
CN (1) CN216090358U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20230111

Address after: 310051 2 / f-54, building 5, No. 11, Jugong Road, Xixing street, Binjiang District, Hangzhou City, Zhejiang Province

Patentee after: HANGZHOU YUNFENG INDUSTRIAL DESIGN Co.,Ltd.

Address before: East Campus of China University of metrology, 168 Xueyuan street, Qiantang New District, Hangzhou City, Zhejiang Province, 310018

Patentee before: Qu Shuhua

TR01 Transfer of patent right