CN213721792U - Portable horizontal water-squeezing mop - Google Patents

Portable horizontal water-squeezing mop Download PDF

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Publication number
CN213721792U
CN213721792U CN202022234427.1U CN202022234427U CN213721792U CN 213721792 U CN213721792 U CN 213721792U CN 202022234427 U CN202022234427 U CN 202022234427U CN 213721792 U CN213721792 U CN 213721792U
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rod
mop
pull handle
handle
mop head
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CN202022234427.1U
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蔡恩康
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Abstract

The utility model provides a portable horizontal water-squeezing mop, belonging to the technical field of mops. It solves the problems of the prior mop that the water squeezing is labor-consuming, the water squeezing speed is slow and the water squeezing effect is poor. This horizontal crowded water mop of portable, including mop head, mop pole and pull handle, the mop overhead install the glued membrane, be connected through the connecting rod between mop head and the mop pole, be equipped with the trace in the mop pole, be equipped with interior pole in the connecting rod, be equipped with in the pull handle and drive the trace, interior pole and mop head synchronous movement just are used for carrying out the lifting handle of crowded water to installing the glued membrane on the mop head in connecting, the inside cavity design that is of pull handle, thereby it is equipped with in the pull handle that is the cavity design by lifting handle control and is used for driving the trace, thereby pole and mop head synchronous movement carry out the crowded water mechanism of crowded water to the glued membrane in connecting. The utility model has the advantages of simple operation, labor saving and convenient water squeezing, good water squeezing effect and long service life of the mop.

Description

Portable horizontal water-squeezing mop
Technical Field
The utility model belongs to the technical field of the mop, a mop is related to, in particular to portable horizontal water-squeezing mop.
Background
Along with the progress and development of the times, the mop is closer to the life of people. The conventional mop comprises a mop rod and a mop head, wherein a sponge body is mounted on the mop head, the mop rod is provided with a hand lever, the mop head is enabled to clamp the sponge body by breaking the hand lever, and therefore sewage in the sponge body is discharged by squeezing the sponge body. However, in the process of squeezing water from the mop, an operator needs to spend a large amount of force on the hand lever, and moreover, the hand lever is stressed to a certain extent, if too much force is exerted, the hand lever is easy to break, and if the force is not exerted in place, a small amount of residual sewage in the sponge body can be generated, which affects the use of the mop.
Disclosure of Invention
The utility model aims at providing a convenient transverse wringing mop which is labor-saving and convenient in wringing, high in wringing speed and good in wringing effect aiming at the problems in the prior art.
The purpose of the utility model can be realized by the following technical proposal: a portable transverse water squeezing mop comprises a mop head, a mop rod and a pull handle, wherein the mop head is provided with collodion cotton, the mop head is connected with the mop rod through a connecting rod, a linkage rod is arranged in the mop rod, a connecting inner rod is arranged in the connecting rod, one end of the connecting inner rod extends into the interlocking rod and is fixedly matched and connected with the interlocking rod, the other end of the connecting inner rod extends into the mop head and is fixedly matched and connected with the mop head, it is characterized in that a lifting handle which can drive the linkage rod, the inner connecting rod and the mop head to move synchronously and is used for squeezing collodion cotton arranged on the mop head is arranged in the pulling handle, the interior of the pull handle is designed to be a cavity, and a wringing mechanism which is controlled by the lifting handle and is used for driving the linkage rod, the connecting inner rod and the mop head to synchronously move so as to wring the collodion is arranged in the pull handle with the interior designed to be the cavity;
the water squeezing mechanism consists of a moving rod, a locking block and an active push block, one end of the moving rod is positioned in the pull handle, the other end of the moving rod penetrates through the pull handle and extends into the linkage rod, a plurality of teeth are distributed on the end wall of one end of the moving rod extending into the pull handle, the locking block and the active push block are obliquely clamped and sleeved on the moving rod, the active push block is positioned below the locking block, a reverse boosting rod which is controlled by the lifting handle to move and is used for the moving rod to pass through is also arranged in the pull handle, one end of the reverse boosting rod is movably connected at the position close to the moving rod in the pull handle, the other end of the reverse boosting rod extends towards the direction of the lifting handle and is connected with the lifting handle through a connecting block, sleeve holes are respectively formed in the locking block and the active push block, the sleeve holes are respectively obliquely clamped and sleeved on the moving rod through the sleeve holes, one end of the active push block which is obliquely upwards tilted is abutted to the reverse boosting rod through abutting against a roller, and a first reset spring is sleeved on the moving rod and between the locking block and the driving push block.
In the portable transverse water squeezing mop, the two sides of one end of the reverse boosting rod are respectively provided with the protruding shaft protruding outwards, the position of the inner wall of the pull handle corresponding to the protruding shaft is provided with the inner boss, and the inner boss is provided with the concave circular groove for the corresponding protruding shaft to extend into.
In foretell horizontal wringing mop of portable, the interior position department that is close to the carriage release lever of handle draw be equipped with a locating part, and the bottom extension of this locating part has the spacing support portion that supplies the initiative ejector pad to support to lean on, the handle draw in have the one end that supplies the latch segment slope to upwarp stretch into support by the seat of supporting, support and lean on the seat on have the top that supplies the laminating of latch segment diapire to support to lean on the portion, support and still be equipped with reset spring two between seat and the latch segment by.
In foretell horizontal wringing mop of portable, draw the handle top and be equipped with a reset button, and the bottom of this reset button extends towards drawing the handle and has the contact lever that offsets with the latch segment that resets, thereby drive through pressing the button and reset and offset the contact lever and push down and make and be located spacing latch segment adjustment that leans on the seat inner slope to set up for the horizontality.
In foretell horizontal wringing mop of portable, the mop head by fixed cover, connector and a plurality of be used for carrying out the wringing gyro wheel of wringing to the glued membrane and constitute, connector top and interior pole fixed connection of connecting, the glued membrane install in the bottom of connector, fixed cover outside the connector and with the lower tip of connector hide in inside, a plurality of wringing gyro wheel distributes in connector bottom outside and installs on fixed cover.
Compared with the prior art, the portable transverse wringing mop has the following advantages:
the mop realizes friction water squeezing of the collodion in the mop head by a reverse power-assisted principle and a lever principle, optimizes the structure of components, enhances the friction size and improves the water squeezing efficiency, particularly, the collodion is squeezed by lifting a handle for three times or more, the full water squeezing effect can be realized by lifting the handle for three times, if the collodion water amount is too much, the water squeezing action command can be carried out for many times, then the reset of the movable rod is realized by the reset button, the sensitivity is high, meanwhile, the movable rod is locked by the arrangement of the locking block in the movable rod, the design is ingenious, the locking block can be unlocked by pressing the reset button, the use process is flexible and convenient, the water squeezing process not only enables the use of a user to be more labor-saving, but also reduces the force application lift of the user, the user does not need to bend to pull the handle in the existing mop, time and labor are saved, the mop has the advantages of simple operation, convenient water squeezing, good water squeezing effect and long service life, and can squeeze water no matter in the using state of wiping a window or the using state of mopping the floor (namely, no matter whether the connecting rod is wrapped in the mop rod or not), so that the limitation is avoided.
Drawings
Fig. 1 is a schematic perspective view of the portable transverse wringing mop.
Fig. 2 is a partial perspective view of the portable transverse wringing mop.
Fig. 3 is a schematic perspective view of the portable transverse wringing mop with the mop rod and the connecting rod removed.
Fig. 4 is a partial structural schematic view of the portable transverse wringing mop.
Fig. 5 is a partial structural schematic view of the portable transverse squeezing mop.
Fig. 6 is a schematic view showing the internal structure of the handle in the handy transverse wringing mop.
Fig. 7 is a schematic structural view of the moving rod, the locking block and the active push block in the portable transverse wringing mop.
In the figure, 1, a mop head; 2. a mop rod; 3. pulling the handle; 4. collodion cotton; 5. a connecting rod; 6. a linkage rod; 7. connecting the inner rod; 8. lifting a handle; 9. a travel bar; 10. a locking block; 11. an active push block; 12. teeth; 13. a reverse booster lever; 14. connecting blocks; 15. against the drum; 16. a first return spring; 17. a protruding shaft; 18. an inner boss; 19. a concave circular groove; 20. a limiting member; 21. a limiting abutting part; 22. a leaning seat; 23. a butting part; 24. a second return spring; 25. a reset button; 26. resetting the abutting rod; 27. a fixed cover; 28. a connector; 29. and (5) squeezing rollers.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in the figures 1, 2, 3, 4, 5, 6 and 7, the portable transverse wringing mop comprises a mop head 1, a mop rod 2 and a pulling handle 3, wherein the mop head 1 is provided with collodion 4, the mop head 1 is connected with the mop rod 2 through a connecting rod 5, the mop rod 2 is internally provided with a linkage rod 6, the connecting rod 5 is internally provided with a connecting inner rod 7, one end of the connecting inner rod 7 extends into the linkage rod 6 and is fixedly matched and connected with the linkage rod 6, the other end of the connecting inner rod 7 extends into the mop head 1 and is fixedly matched and connected with the mop head 1, the pulling handle 3 is internally provided with a lifting handle 8 which can drive the linkage rod 6, the connecting inner rod 7 and the mop head 1 to synchronously move and is used for wringing the collodion 4 arranged on the mop head 1, the inside of the pulling handle 3 is designed into a cavity, and the pulling handle 3 which is controlled by the lifting handle 8 and is used for driving the linkage rod 6, The connecting inner rod 7 and the mop head 1 synchronously move so as to squeeze the collodion 4.
The water squeezing mechanism consists of a movable rod 9, a locking block 10 and an active push block 11, one end of the movable rod 9 is positioned in the pull handle 3, the other end penetrates through the pull handle 3 and extends into the linkage rod 6, the movable rod 9 and the linkage rod 6 are fixedly connected through a fixing piece, a plurality of teeth 12 are distributed on the end wall of one end of the movable rod 9 extending into the pull handle 3, the locking block 10 and the active push block 11 are obliquely clamped and sleeved on the movable rod 9, the active push block 11 is positioned below the locking block 10, a reverse boosting rod 13 which is controlled by the pull handle 8 to move and is used for the movable rod 9 to pass through is also arranged in the pull handle 3, one end of the reverse boosting rod 13 is movably connected with the position close to the movable rod 9 in the pull handle 3, the other end extends towards the direction of the pull handle 8 and is connected with the pull handle 8 through a connecting block 14, one end of the connecting block 14 is fixedly connected with the reverse boosting rod 13 through a connecting piece, the other end passes through connecting piece two and carries handle 8 fixed connection, it has the hole of cup jointing all to set up on latch segment 10 and the initiative ejector pad 11, and locate the carriage release lever 9 through the joint hole of should cup jointing respectively slope joint cover, the one end that the initiative ejector pad 11 slopes to stick up leans on reverse helping hand pole 13 through leaning on cylinder 15, the cover is equipped with reset spring 16 on the carriage release lever 9 and is located between latch segment 10 and the initiative ejector pad 11, the one end of reset spring 16 is supported and is leaned on in latch segment 10 diapire, the other end supports and leans on in the roof of initiative ejector pad 11.
Further, both sides of one end of the reverse boosting rod 13 are provided with outward protruding shafts 17, the position of the inner wall of the pull handle 3 corresponding to the protruding shaft 17 is provided with an inner boss 18, the inner boss 18 is provided with a concave circular groove 19 for the corresponding protruding shaft 17 to extend into, the reverse boosting rod 13 uses the protruding shaft 17 as a hinge point to swing radially (can be raised or declined) relative to the concave circular groove 19, therefore, when the pull handle 8 is pulled and the connecting block 14 is driven to swing upwards, due to the movable fit (namely the hinged fit) of the protruding shaft 17 and the concave circular groove 19, the reverse boosting rod 13 fixedly connected with the connecting block 14 can also swing upwards to drive the active push block 11 abutted against the reverse boosting rod 13 to move upwards, and the movable rod 9 is pushed upwards through the friction between the active push block 11 and the teeth 12 to drive the movement of the linkage rod 6, the connecting inner rod 7 and the mop head 1 in sequence.
When a user pulls the lifting handle 8, the reverse boosting rod 13 is driven to swing upwards through the connecting block 14, so as to drive the active push block 11 abutted against the reverse boosting rod 13 to move upwards, because the active push block 11 is obliquely clamped and sleeved on the moving rod 9, the hole wall of the sleeved hole in the active push block 11 is abutted against the bottom wall of one of the teeth 12, when the active push block 11 moves upwards, under the action of friction force, one end of the active push block 11 which is obliquely upwards tilted continues to move upwards so as to upwards push the teeth 12, namely, the moving rod 9 is upwards pushed, and because of the arrangement of the return spring I16, the active push block 11 cannot be simultaneously upwards pulled due to the intensity of the friction force, after the teeth 12 are upwards pushed for a certain distance, under the action of the return spring I16, the active push block 11 is firstly reset, one end which is originally upwards tilted is reset (but the active push block 11 is also obliquely clamped on the moving rod 9 at the moment), the hole wall of the sleeving hole falls on the bottom wall of the next tooth 12, the moving rod 9 rises in the process that the tooth 12 is lifted once, the linkage rod 6, the connecting inner rod 7 and the mop head 1 also rise immediately, the effect of squeezing the collodion 4 is achieved, and thus a complete squeezing action command can be formed, the lifting handle 8 is pulled again, the actions are circulated until the collodion 4 is squeezed to dry sewage, and in addition, in the process of implementing the complete squeezing action command, the active push block 11 does not necessarily only push one tooth 12, which is determined according to the force of pulling the lifting handle 8 by a user.
Under normal conditions, we need to pull the lifting handle 8 three times, namely to finish the three times of complete wringing action commands to finish the dehydration effect of the collodion 4, but if the sewage is too much, the lifting handle can be pulled for many times to realize the rapid dehydration of the collodion 4.
Since three or more squeezing commands are required, the top end of the moving rod 9 may be too far inserted into the pull handle 3, which may cause the collodion 4 not to return to the original state and to deform, and therefore, we can move the moving rod 9 to perform press-down reset through the reset button 25.
To put it in detail, a position close to the moving rod 9 in the pull handle 3 is provided with a limiting member 20, the bottom of the limiting member 20 extends to have a limiting abutting portion 21 for the active push block 11 to abut against, the pull handle 3 is provided with an abutting seat 22 for the locking block 10 to tilt and tilt, the abutting seat 22 is provided with an abutting portion 23 for the locking block 10 to abut against, a return spring two 24 is further arranged between the abutting seat 22 and the locking block 10, the top of the pull handle 3 is provided with a return button 25, the bottom of the return button 25 extends into the pull handle 3 to be provided with a return abutting rod 26 abutting against the locking block 10, the return abutting rod 26 is driven to be pressed down by the push button to enable the locking block 10 obliquely arranged in the limiting abutting seat 22 to be adjusted to be in a horizontal state, the abutting seat 22 is provided with an inlet hole for the locking block 10 to extend into, and the height in the vertical direction of the inlet hole is designed to ensure that the locking block 10 cannot be clamped when the locking block 10 is adjusted to be in a horizontal state Namely, no matter the locking block 10 is in the inclined state or the horizontal state, the locking block is not disturbed by the height of the inlet hole, in addition, when the locking block 10 inclines, the leaning part 23 is completely attached to the corresponding bottom wall of the locking block 10, when the locking block 10 is horizontal, that is, when the reset button 25 is used for pressing down the moving rod 9 for resetting, the edge of the abutting part 23 is abutted against the bottom wall of the locking block 10, the second reset spring 24 is driven by the upward warped end of the locking block 10 to be pressed down to be in a compressed state, then the sleeving hole in the locking block 10 cannot clamp and sleeve the locking block 10 on the moving rod 9, so that the moving rod 9 is loosened and not restrained, the moving rod 9 is reset to the original position, after the reset button 25 is released, the second return spring 24 clamps the locking block 10 on the moving rod 9 in an inclined manner to lock the moving rod 9, so that the mop can be normally used; in the use process of the mop, the locking block 10 is always in a locking state, namely, the locking block is always obliquely clamped and sleeved on the moving rod 9, so that the locking block cannot be loosened when mopping the floor.
Further, the mop head 1 is by the fixed cover 27, connector 28 and a plurality of are used for carrying out the crowded water gyro wheel 29 of crowded water to glued membrane 4 and constitute, connector 28 top and interior pole 7 fixed connection of being connected, glued membrane 4 is installed in the bottom of connector 28, fixed cover 27 covers outside connector 28 and hides the lower tip of connector 28 in inside, a plurality of crowded water gyro wheel 29 distributes in connector 28 bottom outside and installs on fixed cover 27, during crowded water, the carriage release lever 9 drives the trace 6 and rises, trace 6 drives interior pole 7 of being connected and rises, interior pole 7 of being connected drives connector 28 and rises, connector 28 drives glued membrane 4 and rises, thereby the sewage that contains in the glued membrane 4 is extruded by crowded water gyro wheel 29 in glued membrane 4 gets into crowded water gyro wheel 29.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (5)

1. A portable transverse wringing mop comprises a mop head (1), a mop rod (2) and a pull handle (3), wherein collodion (4) is arranged on the mop head (1), the mop head (1) and the mop rod (2) are connected through a connecting rod (5), a linkage rod (6) is arranged in the mop rod (2), a connecting inner rod (7) is arranged in the connecting rod (5), one end of the connecting inner rod (7) extends into the linkage rod (6) and is fixedly matched and connected with the linkage rod (6), the other end of the connecting inner rod extends into the mop head (1) and is fixedly matched and connected with the mop head (1), and the mop is characterized in that the pull handle (3) is internally provided with a lifting handle (8) which can drive the linkage rod (6), the connecting inner rod (7) and the mop head (1) to synchronously move and is used for wringing the collodion (4) arranged on the mop head (1), the interior of the pull handle (3) is designed to be a cavity, and a wringing mechanism which is controlled by a lifting handle (8) and is used for driving the linkage rod (6), the inner connecting rod (7) and the mop head (1) to synchronously move so as to wring the collodion (4) is arranged in the pull handle (3) with the interior designed to be the cavity;
the water squeezing mechanism consists of a movable rod (9), a locking block (10) and a driving push block (11), one end of the movable rod (9) is positioned in a pull handle (3), the other end of the movable rod penetrates out of the pull handle (3) and extends into a linkage rod (6), a plurality of teeth (12) are distributed on the end wall of one end of the movable rod (9) extending into the pull handle (3), the locking block (10) and the driving push block (11) are obliquely clamped and sleeved on the movable rod (9), the driving push block (11) is positioned below the locking block (10), a reverse boosting rod (13) which is controlled to move by a lifting handle (8) and is used for the movable rod (9) to pass through is further arranged in the pull handle (3), one end of the reverse boosting rod (13) is movably connected to the position close to the movable rod (9) in the pull handle (3), the other end of the reverse boosting rod extends towards the direction of the lifting handle (8) and is connected with the lifting handle (8) through a connecting block (14), latch segment (10) and initiative ejector pad (11) on all set up and have cup jointed the hole, and through should cup joint the hole and incline the joint cover respectively and locate carriage release lever (9), the one end that initiative ejector pad (11) slope upwarping supports through leaning on cylinder (15) and leans on reverse helping hand pole (13), carriage release lever (9) on and be located latch segment (10) and initiative ejector pad (11) between the cover be equipped with reset spring (16).
2. The portable transverse water squeezing mop according to claim 1, wherein both sides of one end of the reverse boosting rod (13) are provided with outward protruding shafts (17), an inner boss (18) is arranged on the inner wall of the pull handle (3) at a position corresponding to the protruding shafts (17), and the inner boss (18) is provided with a concave circular groove (19) for the corresponding protruding shaft (17) to extend into.
3. The portable transverse wringing mop according to claim 1, wherein a position in the handle (3) near the travel bar (9) is provided with a limiting member (20), and the bottom of the limiting member (20) extends to have a limiting abutting portion (21) for the driving push block (11) to abut against, the handle (3) is provided therein with an abutting seat (22) for the locking block (10) to tilt up, one end of the abutting seat (22) extends into the abutting seat for abutting against, the abutting seat (22) is provided thereon with an abutting portion (23) for the locking block (10) to abut against, and a second return spring (24) is further provided between the abutting seat (22) and the locking block (10).
4. The portable mop with the function of lateral wringing according to claim 1, wherein a reset button (25) is mounted at the top of the pull handle (3), a reset contact rod (26) which is in contact with the locking block (10) extends from the bottom of the reset button (25) towards the inside of the pull handle (3), and the reset contact rod (26) is driven to be pressed down by pressing the button, so that the locking block (10) which is obliquely arranged in the limit contact seat (22) is adjusted to be in a horizontal state.
5. The portable transverse water squeezing mop according to claim 1, wherein the mop head (1) is composed of a fixing cover (27), a connector (28) and a plurality of water squeezing rollers (29) for squeezing the collodion (4), the top end of the connector (28) is fixedly connected with the connecting inner rod (7), the collodion (4) is installed at the bottom of the connector (28), the fixing cover (27) is sleeved outside the connector (28) and hides the lower end of the connector (28), and the plurality of water squeezing rollers (29) are distributed outside the bottom end of the connector (28) and are installed on the fixing cover (27).
CN202022234427.1U 2020-10-09 2020-10-09 Portable horizontal water-squeezing mop Active CN213721792U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022234427.1U CN213721792U (en) 2020-10-09 2020-10-09 Portable horizontal water-squeezing mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022234427.1U CN213721792U (en) 2020-10-09 2020-10-09 Portable horizontal water-squeezing mop

Publications (1)

Publication Number Publication Date
CN213721792U true CN213721792U (en) 2021-07-20

Family

ID=76848053

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022234427.1U Active CN213721792U (en) 2020-10-09 2020-10-09 Portable horizontal water-squeezing mop

Country Status (1)

Country Link
CN (1) CN213721792U (en)

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