CN211582961U - Labor-saving water squeezing mop - Google Patents

Labor-saving water squeezing mop Download PDF

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Publication number
CN211582961U
CN211582961U CN201922398172.XU CN201922398172U CN211582961U CN 211582961 U CN211582961 U CN 211582961U CN 201922398172 U CN201922398172 U CN 201922398172U CN 211582961 U CN211582961 U CN 211582961U
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China
Prior art keywords
plate
mop
labor
movably connected
sliding rod
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Expired - Fee Related
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CN201922398172.XU
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Chinese (zh)
Inventor
林有根
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Individual
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Individual
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Priority to CN201922398172.XU priority Critical patent/CN211582961U/en
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Publication of CN211582961U publication Critical patent/CN211582961U/en
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a labor-saving wringing mop, which comprises a mop head, a mop rod and a bracket body, wherein the mop head comprises a clamping plate frame, a sponge body and a movable plate, the mop rod comprises a main rod, a sliding rod and an outer sleeve, the bracket body is formed by integral injection molding, one end of the bracket body is provided with a support plate which is symmetrically arranged, the other end of the bracket body is arc-shaped and provided with a channel, a roller shaft is arranged on the support plate, extrusion rollers which are positioned on the upper side surface and the lower side surface of the movable plate are arranged on the roller shaft at intervals, the sponge body is movably connected with the clamping plate frame, a labor-saving device is arranged on the sliding rod, the labor-saving device comprises a pulling plate and linkage plates which are arranged on the two sides of the sliding rod and can swing, one end of the pulling plate is respectively and movably connected with a convex body or one end of the linkage, and the mop head can be rotatably folded. The mop head can be quickly dewatered in a labor-saving manner, so that the cleaning work efficiency is improved.

Description

Labor-saving water squeezing mop
Technical Field
The utility model relates to a sanitary ware, in particular to a labor-saving water squeezing mop.
Background
As is well known, the mop is an indispensable cleaning tool in people's work and daily life, and has a plurality of types, namely a traditional common mop which is made of cotton cloth strips and wood poles and is twisted by hands for dehydration; a pedal type mop which uses cotton yarn as a handle head and is rotated and sprinkled through a matched dehydration barrel is provided; and a squeezing type mop which uses a sponge body as a water absorption body of a mop head and is dewatered by a water squeezer arranged on the mop. When the traditional mop is used, the dewatering efficiency is low, the manual labor intensity is high, and the traditional mop is more laboursome to old people; the pedal mop needs to be provided with a dehydration barrel, the structure is more complex, the floor area is occupied, and the pedal is labor-consuming; the extrusion type mop is convenient to use and good in cleaning effect, but water extrusion is labor-consuming.
SUMMERY OF THE UTILITY MODEL
Aiming at the problems of the mop in the prior art, the utility model provides a labor-saving wringing mop which has compact structure, flexible and convenient use, good cleaning effect and strong dewatering and dirt-removing capability.
The to-be-solved technical problem of the utility model is that: a labor-saving water squeezing mop comprises a mop head, a mop rod and a bracket body, wherein the mop head comprises a clamping plate frame, a sponge body and a moving plate, the mop rod comprises a main rod, a sliding rod and an outer sleeve, the bracket body is formed by integral injection molding, one end of the bracket body is provided with a supporting plate which is symmetrically arranged, the other end of the bracket body is arc-shaped and provided with a channel, a roller shaft is arranged on the supporting plate, squeezing rollers which are positioned on the upper side surface and the lower side surface of the moving plate are arranged on the roller shaft at intervals, the sponge body is movably connected with the clamping plate frame, an intermediate body is fixedly arranged on the clamping plate frame, an end cover plate is arranged between a backup plate and the bracket body, a clamping plate is arranged in the backup plate, one end of the clamping plate is provided with a sliding ring, the middle of the sliding ring is provided with a, the utility model discloses a water squeezing device, including the passageway, the passageway is equipped with the outer buckle body that the passageway is stretched into to the movable plate, the movable plate one end links to each other with the midbody activity, the other end has the outer buckle body that takes recess I and can movably stretch into in the passageway, the mobile jib is fixed with slide bar one end and links to each other, and the slide bar other end has the interior buckle body that takes recess II and can movably pass the outer tube, and interior buckle body outside is convex and slides with direction cambered surface contact, be provided with the laborsaving device who is used for crowded water on the slide bar, laborsaving device is including pulling the board and setting in the slide bar both sides and wobbling linkage board, be equipped with the convex body on the slide bar, pull board one end and convex body or with linkage board one end difference activity link to each other, pull between the board.
One end of the wrenching plate is movably connected with a convex body arranged on the lower plane of the sliding rod through a supporting pin 17, the two ends of the wrenching plate are movably connected with one end of the linkage plate through an end pin, and the other end of the linkage plate is movably arranged between the sliding rod and the outer sleeve.
One end of the pulling plate is movably connected with one end of the linkage plate through an end pin, the two ends of the pulling plate are movably connected with a convex body arranged on the upper plane of the sliding rod through a supporting pin, and the other end of the linkage plate is movably arranged between the sliding rod and the outer sleeve.
An open slot is formed in the sliding rod, a supporting pin is arranged in the open slot, and the supporting pin is movably connected with the linkage plate and the outer sleeve.
The linkage plates on the two sides of the sliding rod are movably connected with the two sides of the outer sleeve respectively through end pins.
The wrenching plate has two working modes:
1. the first one (as shown in fig. 4) has one end of the pulling plate located on the right side of the convex body, the pulling plate and the convex body on the sliding rod located on the right side of the end pin, the sponge body separated from the squeeze roller, at this time, the inner buckle body of the sliding rod and the outer buckle body on the movable plate are mutually overlapped, the mop is in a mopping state, when the pulling plate is pushed by force, the pulling plate rotates leftwards (reversely) around the end pin, when the pulling plate rotates to be upright (as shown in fig. 5), the sliding rod drives the movable plate to move leftwards, the squeeze roller starts to contact with the sponge body, the pulling plate continues to rotate leftwards, the pulling plate and the convex body are located on the left side of the end pin (as shown in a solid line in fig. 6), the sliding rod drives the movable plate to move leftwards, the sponge body at one end of the movable plate also moves leftwards along.
1. When the second pulling plate begins to incline leftwards (as shown in fig. 7), one end of the pulling plate begins to be positioned on the left side of the convex body, the sponge body is separated from the squeezing roller, at the moment, the inner buckle body of the sliding rod is in lap joint with the outer buckle body on the movable plate, the mop is in a mopping state, when the pulling plate is pushed by force, the pulling plate rotates rightwards (clockwise) around the end pin, when the pulling plate rotates to be vertical (as shown in fig. 5), the sliding rod drives the movable plate to move leftwards, the squeezing roller begins to be in contact with the sponge body, the pulling plate continues to rotate rightwards, the pulling plate is positioned on the right side of the convex body (as shown in fig. 8), the sliding rod drives the movable plate to move leftwards, the sponge body at one end of the movable plate also moves leftwards along with the movable.
The utility model discloses under the exogenic action, when slide bar and outer tube upwards begin to rotate around the direction cambered surface, interior knot body on the slide bar and the outer knot body that is located on the movable plate of stake body open slot begin to separate the unhook, continue to rotate until interior knot body and outer knot body unhook completely when slide bar and outer tube to realize that the mop head is rotatory folding, the mop head can be erected and is dragging the ground.
The utility model has the advantages of simple and compact structure, flexible and convenient lap joint and separation, and the rotatable folding of the mop head. The mop head can be vertically used for mopping the floor, and can also be transversely used for mopping the floor, and the mop head can be quickly dewatered in a labor-saving manner, so that the cleaning working efficiency is improved.
Drawings
Figure 1 is a main sectional structure diagram of the utility model,
figure 2 is a schematic cross-sectional view a-a of figure 1,
FIG. 3 is a schematic sectional view of the structure of FIG. 2B-B,
figure 4 is a schematic structural view of the first labor-saving device when mopping the floor,
FIG. 5 is a view showing the working state of the labor-saving device when the pulling plate is rotated to the upright position,
figure 6 is a schematic view of the first labor-saving device in the water squeezing process,
figure 7 is a schematic structural view of a second labor-saving device when mopping the floor,
figure 8 is a schematic view of the second labor-saving device in the water squeezing process,
in the figure, 1, a sponge body 2, a squeezing roller 3, a roller shaft 4, a support plate 5, an end cover plate 6, a sliding ring 7, an end hole 8, a locking screw shaft 9, a shaft hole 10, a bracket body 11, a pin 12, a clamping plate 13, an outer sleeve 14, an open slot 15, a linkage plate 16, a pulling plate 17, a support pin 18, a convex body 19, a circular truncated cone 20, a handle 21, a main rod 22, an end pin 23, a coupling pin 24, a sliding rod 25, an outer buckle body 26, an inner buckle body 27, a moving plate 28, an inner guide edge 29, a supporting edge 30, a circular ring edge 31, a kidney-shaped cavity 32, a connector 33, an intermediate body 34, a clamping plate frame 35, a fastening screw 36, a channel 37, a guide arc surface 38, a stop 39, a backup plate.
Detailed Description
In the first embodiment, in the figure, the labor-saving wringing mop comprises a mop head, a mop rod and a bracket body 10, the mop head comprises a clamping plate frame 34, a sponge body 1 and a moving plate 27, the mop rod comprises a main rod 21, a sliding rod 24 and an outer sleeve 13 which are connected with a handle 20, the bracket body is formed by integral injection molding, one end of the bracket body is provided with a support plate 4 which is symmetrically arranged, the other end of the bracket body is arc-shaped and is provided with a channel 36, a roller shaft 3 is arranged on the support plate, two rows of squeezing rollers 2 which are positioned on the upper side surface and the lower side surface of the moving plate are arranged on the roller shaft at intervals, the sponge body is movably connected with the clamping plate frame 34 in a dovetail groove manner, a middle body 33 is fixedly arranged on the clamping plate frame by a fastening screw 35, one end of the moving plate is provided with a dovetail, the outer buckle body is in a tongue shape, the moving plate can movably extend into a channel 36 of the support body, a guide arc surface 37 and a baffle 38 are respectively arranged at two sides of the channel, the baffle limits the sliding rod to rotate only in one direction to be unhooked with the moving plate, the main rod is fixedly connected with one end of the sliding rod, the other end of the sliding rod is provided with an inner buckle body 26 with a groove II and can movably penetrate through an outer sleeve, two ends of the inner buckle body are fixedly connected with the sliding rod through a frame plate, a groove II is formed between the frame plate and the inner buckle body, the frame plate and the inner buckle body are integrally manufactured, the groove II is movably matched with the outer buckle body, the groove I is movably matched with the inner buckle body, the middle part of the sliding rod is provided with an open slot 14, the length of the open slot is larger than the extrusion distance, one end of the outer sleeve is provided with a backup plate 39 arranged at intervals, an end cover plate, the clamping plate is characterized in that a sliding ring 6 is arranged at one end of the clamping plate, a base body 40 is arranged in the middle of the sliding ring, a screw mounting hole is formed in the base body, a locking screw shaft 8 is arranged in the screw mounting hole and can move in a waist-shaped cavity 31 on a movable plate, the sliding ring is waist-shaped and penetrates through a shaft hole 9 in the support body and an end hole 7 in an end cover plate, the width of two side faces of the sliding ring is slightly smaller than the distance between two inner guide edges (the sliding ring can move with a small gap in the inner guide edges), a U-shaped inner guide edge 28 is arranged on the movable plate, a long waist-shaped circular ring edge 30 is arranged in the inner guide edge, a bearing edge 29 is arranged on the outer side of the inner guide edge, the inner guide edge is. The sliding rod is provided with a labor-saving device for squeezing water, the labor-saving device comprises a pulling plate 16 and linkage plates 15 which are arranged at the two sides of the sliding rod and can swing, one end of the wrenching plate is an operating plate (not shown in the figure), the other end of the wrenching plate is provided with two rotating plates which are oppositely positioned at two sides of the sliding rod, the rotating plates are U-shaped, the two rotating plates are connected to form a wrenching plate (not shown in the figure), one end of the rotating plate positioned at two sides of the sliding rod is movably connected with one end of the linkage plate by two end pins 22 respectively, one end of the linkage plate is provided with a circular table 19, the wrenching plate is movably connected with the convex body 18 by a supporting pin 17, the other end of the linkage plate is movably connected with the outer sleeve through a connecting pin 23 in the open slot 14, the diameter of the connecting pin is smaller than the width of the open slot, to ensure that the slot is movable on the coupler pin and the end pin 22 is only long enough to pass through the trigger and linkage plates and not to interfere with the slide bar movement.
Example 2, the same as example one except that the following contents are different from the examples, the following contents are different: the labor-saving device comprises a pulling plate 16 and linkage plates 15 which are arranged on two sides of a sliding rod and can swing, wherein one end of the pulling plate is an operation plate (not marked in the figure), the other end of the pulling plate is provided with two rotating plates (not marked in the figure) which are oppositely arranged on two sides of the sliding rod, the rotating plates are U-shaped, the two rotating plates are connected to form the pulling plate, the pulling plate arranged on two sides of the sliding rod and one end of the linkage plate are movably connected through two end pins 22 respectively, one end of the pulling plate is movably connected with a convex body 18 through a supporting pin 17, the other end of the linkage plate is movably connected with an outer sleeve through a connecting pin 23 in an open slot 14, the diameter of the connecting pin is smaller than the opening width of the open slot, so that the open slot can movably move on the connecting pin, and the length of the end pin 22. The linkage plate is arranged on the outer side or the inner side of the wrenching plate, and the linkage plate is arranged on the outer side or the inner side of the outer sleeve. The sliding rod can be made into two end pins without an open slot, and the linkage plate is movably connected with the outer sleeve by the end pins.

Claims (6)

1. A labor-saving wringing mop comprises a mop head, a mop rod and a support body, wherein the mop head comprises a clamping plate frame (34), a sponge body (1) and a moving plate (27), the mop rod comprises a main rod (21), a sliding rod (24) and an outer sleeve (13), the support body (10) is integrally formed by injection molding, one end of the support body is provided with a support plate (39) which is symmetrically arranged, the other end of the support body is arc-shaped and is provided with a channel (36), a roller shaft (3) is arranged on the support plate, squeezing rollers (2) which are positioned on the upper side surface and the lower side surface of the moving plate are arranged on the roller shaft at intervals, the sponge body is movably connected with the clamping plate frame, a middle body (33) is fixedly arranged on the clamping plate frame, an end cover plate (5) is arranged between a backup plate and the support body, a clamping plate (12, a locking screw shaft (8) is arranged between the base bodies, the sliding ring penetrates through the support body and the end cover plate, a U-shaped inner guide edge (28) is arranged on the movable plate, the trigger plate is rotated to enable the sliding rod to move and to move the movable plate horizontally butted with the sliding rod, the movable plate moves to drive the sponge body to move, and the sponge body moves to be squeezed by the squeezing roller to drain water; the mobile jib is pulled hard, and the slide bar upwards rotates and unhook with the movable plate around direction cambered surface (37) on the stake body, movable plate one end links to each other with the midbody activity, the other end have take recess I and mobile external buckle body (25) of stretching into in the passageway, the mobile jib is fixed continuous with the slide bar one end, and the slide bar other end has take recess II and mobile interior buckle body (26) of passing the outer tube, and the external side of interior buckle is arc and slides with direction cambered surface (37) contact, characterized by: the water squeezing device is characterized in that the sliding rod is provided with a labor saving device for squeezing water, the labor saving device comprises a pulling plate (16) and linkage plates (15) which are arranged on two sides of the sliding rod (24) and can swing, the sliding rod is provided with a convex body (18), one end of the pulling plate is movably connected with the convex body or one end of the linkage plate respectively, one end of the pulling plate or one end of the linkage plate is movably connected with the convex body (18) between two ends of the pulling plate, and the other end of the linkage plate (15) is movably connected with the outer sleeve (13).
2. The labor-saving water squeezing mop as claimed in claim 1, wherein: one end of the pulling plate (16) is movably connected with one end of the linkage plate (15) through an end pin (22), a convex body (18) arranged on the upper plane of the sliding rod is movably connected between the two ends of the pulling plate through a supporting pin (17), and the other end of the linkage plate (15) is movably connected with the outer sleeve (13).
3. The labor-saving water squeezing mop as claimed in claim 1, wherein: one end of the pulling plate (16) is movably connected with a convex body (18) arranged on the lower plane of the sliding rod through a supporting pin (17), the two ends of the pulling plate (16) are movably connected with one end of a linkage plate (15) through an end pin (22), and the other end of the linkage plate (15) is movably connected with an outer sleeve (13).
4. The labor-saving water squeezing mop as claimed in claim 1, wherein: an open slot (14) is formed in the sliding rod, a connecting pin (23) is arranged in the open slot, and the connecting pin is movably connected with one end of the linkage plate (15) and the outer sleeve (13).
5. The labor-saving water squeezing mop as claimed in claim 1, wherein: the linkage plates at the two sides of the sliding rod are movably connected with the outer side or the inner side of the outer sleeve (13) by end pins respectively.
6. The labor-saving water squeezing mop as claimed in claim 1, wherein: the linkage plate (15) is arranged on the outer side or the inner side of the wrenching plate.
CN201922398172.XU 2019-12-27 2019-12-27 Labor-saving water squeezing mop Expired - Fee Related CN211582961U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922398172.XU CN211582961U (en) 2019-12-27 2019-12-27 Labor-saving water squeezing mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922398172.XU CN211582961U (en) 2019-12-27 2019-12-27 Labor-saving water squeezing mop

Publications (1)

Publication Number Publication Date
CN211582961U true CN211582961U (en) 2020-09-29

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ID=72596474

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922398172.XU Expired - Fee Related CN211582961U (en) 2019-12-27 2019-12-27 Labor-saving water squeezing mop

Country Status (1)

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CN (1) CN211582961U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110974100A (en) * 2019-12-27 2020-04-10 林有根 Labor-saving water squeezing mop

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110974100A (en) * 2019-12-27 2020-04-10 林有根 Labor-saving water squeezing mop

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200929

Termination date: 20211227

CF01 Termination of patent right due to non-payment of annual fee