Mop pressing type wringer

CN113208526BActive Publication Date: 2026-09-22YONGKANG HESHENG JIAYE IND & TRADE CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202110448142.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-04-25
Publication Date
2026-09-22
Estimated Expiration
2041-04-25

AI Technical Summary

Technical Problem

[0003]目前,拖把已经成为日常生活必不可少的清洁用品,市场上的拖把有平板式、胶棉拖把等,而针对胶棉拖把的结构特殊性,在其使用过程中,如何进行有效的挤水和清洗是需要解决的技术问题,另外对于平板拖把也存在很多挤水器和挤水桶,但仍然无法做到高效清洗脱水效果,而目前,市场上缺乏针对胶棉拖把以及平板拖把的挤水装置,从而导致其在使用过程中不能达到有效的挤水效果,而且针对胶棉拭擦头的清洗也是需要解决的技术问题,往往由于清洗不干净,导致存在残留污渍,不利于后续的拖把使用

Benefits of technology

[0013]本发明一种拖把按压式挤水桶相对于现有技术的优点在于:整体的结构简单,能够实现对胶棉拖把或平板拖把的清洗和挤水,用户操作使用更加方便,通过设置有挤压架和支撑架,在挤压架上设置的卡钩块能够使用户通过按压握柄即可实现对拖把头的挤水,形成的杠杆结构能够使用户在挤水操作上使用更加方便,同时设置的挤压部在转动时能够对拖把进行挤压脱水,整体结构设置更加合理,能够满足用户的不同需求。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN113208526B_ABST
    Figure CN113208526B_ABST
Patent Text Reader

Abstract

The present application provides a kind of mop press type squeeze bucket, including: bucket, be formed with the water storage cavity for mop cleaning or squeezing water in bucket, water storage cavity is provided with the squeezing mechanism for squeezing mop head dehydration, the hook block is arranged on the squeezing mechanism, the hook block cooperates with handle and is limited to the fixed effect of mop, mop is pressed to the side of bucket, the squeezing mechanism is realized to the squeezing of mop head by hook block driven, the squeezing mechanism includes: squeezing frame and support frame, support frame is set on the inner bottom surface of bucket, and squeezing frame is rotatably arranged on the side of support frame;The side of support frame is provided with connecting block, and one end of squeezing frame is rotatably arranged on connecting block, squeezing part is arranged on squeezing frame, and squeezing part is located above support frame.The present application can realize the cleaning and dehydration of rubber cotton or flat mop, the overall structure is simple and stable, user operation is easy to use, and the cleaning and squeezing effect is good.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of cleaning tools, and in particular to a mop push-type wringer. Background Technology

[0002] A mop wrench completes the washing and rinsing process in a bucket, quickly and easily squeezing out excess water from the mop for ideal cleaning results. It's extremely easy and effortless to use, making it a popular tool among floor cleaners. The market is vast; besides residential use, it's even more convenient for large-area cleaning in public places such as shopping malls, supermarkets, hotels, theaters, office buildings, and train carriages. Its advanced features and ease of use are unparalleled.

[0003] Currently, mops have become an indispensable cleaning product in daily life. Mops on the market include flat mops and sponge mops. Due to the special structure of sponge mops, how to effectively wring out water and clean them during use is a technical problem that needs to be solved. In addition, there are many wringers and wringing buckets for flat mops, but they still cannot achieve efficient cleaning and dehydration. At present, there is a lack of wringing devices for sponge mops and flat mops on the market, which results in ineffective water wringing during use. Moreover, cleaning the sponge mop head is also a technical problem that needs to be solved. Often, due to incomplete cleaning, residual stains remain, which is not conducive to the subsequent use of the mop. Summary of the Invention

[0004] (a) Technical problems to be solved

[0005] The technical problem to be solved by the present invention is to provide a wringer that can be used in plywood mops or flat mops, has a good wringing effect, is easy and quick to install, and has a simple overall structure.

[0006] (II) Technical Solution

[0007] To solve the above-mentioned technical problems, the present invention discloses a mop-pressing wringer bucket, comprising: a bucket body, wherein a water storage cavity for washing or wringing water from the mop is formed within the bucket body, and a squeezing mechanism for squeezing the mop head to remove water is provided on the water storage cavity. A hook block is provided on the squeezing mechanism, and the hook block cooperates with the handle to fix and limit the mop. When the mop is pressed towards one side of the bucket body, the squeezing mechanism is driven by the hook block to squeeze the mop head. This structure utilizes the squeezing mechanism to wring water from the mop, and the hook block allows the user to squeeze the mop head using the handle. The overall structure is simple, making it more convenient for users to operate, and it also provides positioning and limiting for the mop, ensuring the wringer bucket's water-squeezing effect.

[0008] Furthermore, the squeezing mechanism includes a squeezing frame and a support frame. The support frame is disposed on the inner bottom surface of the bucket body, and the squeezing frame is rotatably disposed on one side of the support frame. A connecting block is disposed on one side of the support frame, and one end of the squeezing frame is rotatably disposed on the connecting block. A squeezing part is disposed on the squeezing frame, and the squeezing part is located above the support frame. When the squeezing frame rotates, one end of the squeezing part cooperates with the mop head to squeeze out water. This structure utilizes the support frame to support and place the mop, allowing the mop to be squeezed out of water on the support frame. The squeezing frame, driven by the rotation of the handle, squeezes the mop through the squeezing part to achieve water squeezing. The water squeezing effect is good, ensuring dehydration and usability. The overall structure is simple, and the internal structure is more rationally designed. A water-absorbing block is disposed on the support frame. The water-absorbing block is made of foam. The water-absorbing block and the mop head squeeze together, making the mop head squeeze more thoroughly. When the squeezing frame is released, the water-absorbing block can quickly absorb the water flowing down from the mop head, making the squeezing more thorough.

[0009] Furthermore, the hook block is located on the side of the squeezing frame near the support frame. One side of the hook block has an opening for inserting the handle, and the hook block contains an arc-shaped portion that mates with the handle. The support frame has several water passage holes. This structure utilizes the hook block to position and limit the mop handle. The opening facilitates the insertion of the handle into the hook block, and the arc-shaped portion mates with the handle, allowing the user to perform a pressing and squeezing operation. This eliminates the need for manual pressing of the squeezing frame, which was previously more cumbersome. The overall structure is rationally designed, making it more convenient for users to operate.

[0010] Furthermore, the lower end of the support frame has limiting grooves on both sides, and the barrel is provided with limiting posts that cooperate with the limiting grooves. The squeezing mechanism is installed in the barrel through the cooperation of the limiting posts and the limiting grooves. The support frame is horizontally installed in the barrel. The squeezing part includes a protruding post on one side of the squeezing frame, and an arc-shaped protrusion is provided on the outer side of the protruding post. The arc-shaped protrusion squeezes and cooperates with the upper end face of the mop head when squeezing water. A cleaning component is provided in the barrel, and the cleaning component is conical. The structure, located on one side within the water storage chamber, utilizes the limiting groove and the limiting post to limit the support frame, ensuring greater stability during mop wringing. Furthermore, the arc-shaped protrusion, in conjunction with the PVA mop, effectively wrings out water from the mop, providing a better wringing effect while protecting the integrity of the wiped items, thus extending the mop's lifespan. The cleaning component facilitates cleaning the PVA mop, and the wringing bucket provides better washing and dewatering results.

[0011] Furthermore, the bucket body is provided with an installation platform, and installation columns are formed outward on both sides of the installation platform. The lower end of the support frame is provided with a locking groove corresponding to the installation column. The support frame is obliquely limited and positioned on the installation column through the locking groove. The squeezing part includes a squeezing plate rotatably disposed on one side of the squeezing frame. The lower end face of the squeezing plate cooperates with the mop. A cleaning rack is provided on the bottom surface of the bucket body. The connecting block is rotatably connected to the installation groove in the bucket body. With this structure, the installation columns and the locking groove facilitate the limited installation of the support frame and the bucket body. At the same time, the obliquely disposed support frame can better squeeze water out of the flat mop. The lever structure formed by the mop, the squeezing frame and the support platform can squeeze water out of the flat mop. The squeezing plate can squeeze water out by squeezing with the upper end face of the flat mop. The cleaning rack can facilitate the cleaning of the flat mop, making the operation and use more convenient for users.

[0012] (III) Beneficial Effects

[0013] The advantages of this invention, a mop-pressing wringer bucket, compared to existing technologies are: its overall structure is simple, enabling the cleaning and wringing of both sponge mops and flat mops, making it more convenient for users to operate. By incorporating a squeezing frame and a support frame, and with hooks on the squeezing frame allowing users to wring water from the mop head simply by pressing the handle, the resulting lever structure makes wringing operation more convenient. Furthermore, the rotating squeezing section further squeezes and dehydrates the mop. The overall structure is more rationally designed and can meet diverse user needs. Attached Figure Description

[0014] Figure 1 This is a perspective view of a first embodiment of a mop-pressing wringer bucket according to the present invention;

[0015] Figure 2 This is an exploded view of a first embodiment of a mop-type push-to-squeeze bucket according to the present invention;

[0016] Figure 3 This is a cross-sectional view of a first embodiment of a mop push-type wringer bucket according to the present invention;

[0017] Figure 4 This is a schematic diagram of the squeezing mechanism in one embodiment of a mop-type wringer bucket according to the present invention;

[0018] Figure 5 This is a schematic diagram of the structure of a mop press-type wringer bucket according to an embodiment of the present invention;

[0019] Figure 6 This is a perspective view of a second embodiment of the push-button wringer bucket of the present invention;

[0020] Figure 7 This is an exploded view of a second embodiment of a mop-type push-to-squeeze bucket according to the present invention;

[0021] Figure 8 This is a cross-sectional view of a second embodiment of the push-button wringer bucket of the present invention;

[0022] Figure 9 This is a schematic diagram of the squeezing mechanism in Embodiment 2 of the present invention, which is a push-to-squeeze bucket for a mop.

[0023] Figure 10 This is a schematic diagram of the structure of the bucket body in Embodiment 2 of the present invention, which is a push-to-squeeze bucket for a mop.

[0024] Wherein: 1 is the bucket body, 101 is the water storage cavity, 102 is the limiting post, 2 is the squeezing mechanism, 201 is the squeezing frame, 202 is the support frame, 203 is the water absorption block, 3 is the mop, 301 is the mop head, 302 is the mop, 4 is the hook block, 401 is the opening, 402 is the arc-shaped part, 5 is the squeezing part, 6 is the connecting block, 7 is the limiting groove, 8 is the protruding post, 9 is the arc-shaped protrusion, 10 is the cleaning component, 11 is the mounting platform, 12 is the mounting post, 13 is the locking groove, 14 is the squeezing plate, 15 is the mounting groove, 16 is the water passage hole, 17 is the cleaning frame, and 18 is the elastic component. Detailed Implementation

[0025] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.

[0026] Example 1

[0027] See Figures 1-5 A mop-type wringer includes: a barrel body 1, with a water storage cavity 101 formed inside the barrel body 1 for washing or wringing water from a mop head 3. A squeezing mechanism 2 for squeezing the mop head 301 to remove water is provided on the water storage cavity 101. A hook block 4 is provided on the squeezing mechanism 2. The hook block 4 cooperates with the handle 302 to fix and limit the mop head 3. When the mop head 3 is pressed towards one side of the barrel body 1, the squeezing mechanism 2 is driven by the hook block 4 to squeeze the mop head 301. Specifically, the handle 302 is aligned with the hook block 4, and the mop head 301 is placed on a support frame 202. Rotating the handle 302 to one side causes the handle 302 to drive the squeezing frame 301 to rotate via the hook block 4, so that the squeezing part 5 squeezes and dehydrates the mop. The lever structure formed by the mop 3, the squeezing frame 201 and the support frame 202 makes it easier for users to use and has a better squeezing effect. In addition, the squeezing mechanism 2 can squeeze water out of the mop 3. The hook block 4 allows the user to squeeze the mop through the handle 302. The overall structure is relatively simple and more convenient for users to operate. At the same time, it can also position and limit the mop 3 to ensure the squeezing effect of the squeezing bucket.

[0028] See Figure 3 and Figure 4 The squeezing mechanism 2 includes a squeezing frame 201 and a support frame 202. The support frame 202 is disposed on the inner bottom surface of the barrel 1. The squeezing frame 201 is rotatably disposed on one side of the support frame 202. An elastic element 18 is disposed between the squeezing frame 201 and the support frame 202 for resetting the squeezing frame 201. A connecting block 6 is disposed on one side of the support frame 202. One end of the squeezing frame 201 is rotatably disposed on the connecting block 6. A squeezing part 5 is disposed on the squeezing frame 201. The squeezing part 5 is located above the support frame 202. When the squeezing frame 201 rotates, one end of the squeezing part 5 cooperates with the mop head 301 to squeeze out water. The support frame 202 can be used to support and place the mop 3. The mop 3 is placed on the support frame 202 to achieve the water-squeezing effect. The squeezing frame 201, driven by the rotation of the handle 301, squeezes the mop 3 through the squeezing part 5 to achieve water-squeezing. The water-squeezing effect is good, ensuring that it can be used for dehydration. The overall structure is simple and the internal structure is more reasonable. The support frame is equipped with a water-absorbing block 203. In this embodiment, the water-absorbing block 203 is foam cotton. In addition, the water-absorbing block 203 can be a sponge, etc. Anything that can absorb water is within the scope of protection of this utility model. The water-absorbing block 203 and the mop head 301 squeeze together to make the mop head 301 squeeze more fully. When the squeezing frame 201 is released, the water-absorbing block 203 can quickly absorb the water flowing down from the mop head 301, making the wringing more thorough.

[0029] See Figure 2 , Figure 3 and Figure 4 The hook block 4 is located on the side of the squeezing frame 201 near the support frame 202. An opening 401 for inserting the handle 302 is formed on one side of the hook block 4. An arc-shaped part 402 that cooperates with the handle 302 is formed inside the hook block 4. Several water holes 16 are provided on the support frame 202. The hook block 4 can be used to position and limit the handle 302 of the mop 3. The opening 401 makes it easy for the handle 302 to be inserted into the hook block 4. The arc-shaped part 402 cooperates with the handle 302 to facilitate the user to perform the pressing and squeezing operation. This eliminates the past problem of the user manually pressing the squeezing frame 201, which made the overall operation more cumbersome. The overall structure is reasonably designed and the user operation is more convenient.

[0030] See Figure 3 , Figure 4 and Figure 5The support frame 202 has limiting grooves 7 on both sides of its lower end. A limiting post 102 that mates with the limiting groove 7 is provided inside the barrel 1. The squeezing mechanism 2 is installed inside the barrel 1 through the engagement of the limiting post 102 and the limiting groove 7. The support frame 202 is horizontally installed inside the barrel 1. The squeezing part 5 includes a protruding post 8 on one side of the squeezing frame 201. An arc-shaped protrusion 9 is provided on the outer side of the protruding post 8. The arc-shaped protrusion 9 engages with the upper end face of the mop head 301 during squeezing. A cleaning component 10 is provided inside the barrel 1. The cleaning component 10 is shaped as follows: The cone-shaped part is set on one side of the water storage chamber 101. The setting of the limiting groove 7 and the limiting post 102 can limit the support frame 202, ensuring that the support frame 202 is more stable when the mop 3 is squeezed. In addition, the arc-shaped protrusion 9 works with the PVA mop to squeeze the water out of the PVA mop. It can achieve a better water squeezing effect on the wiped items of the PVA mop while effectively protecting the integrity of the wiped items and improving the service life of the PVA mop. The setting of the washing part 10 makes it convenient to clean the PVA mop, and the washing and dewatering effect of the squeezing bucket is better.

[0031] In this embodiment, the mop-press wringer bucket is equipped with a squeezing frame and a support frame. The hook block on the squeezing frame allows the user to squeeze water from the mop head by pressing the handle. The resulting lever structure makes the wringing operation more convenient for the user. In addition, the arc-shaped protrusion can squeeze and dehydrate the PVA mop. The conical cleaning part facilitates the cleaning of the PVA mop. The overall structure is simple and has a good cleaning and dehydration effect on PVA mops.

[0032] Example 2

[0033] See Figures 6-10 The difference between this embodiment and Embodiment 1 is that: a mounting platform 11 is provided inside the bucket body 1, and mounting posts 12 are formed outward on both sides of the mounting platform 11. The lower end of the support frame 202 is provided with a locking groove 13 corresponding to the mounting post 12. The support frame 202 is obliquely limited and positioned on the mounting post 12 through the locking groove 13. The squeezing part 5 includes a squeezing plate 14 rotatably disposed on one side of the squeezing frame 201. The lower end face of the squeezing plate 14 cooperates with the mop 3. A cleaning rack 17 is provided on the bottom surface inside the bucket body 1. The connecting block 6 is connected to the mounting groove inside the bucket body 1. The 15-rotatable connection, the mounting column 12 and the locking groove 13 facilitate the limiting installation of the support frame 202 and the bucket 1. At the same time, the obliquely set support frame 202 can better squeeze water out of the flat mop. The lever structure formed by the mop 3, the squeezing frame 201 and the support platform 202 can squeeze water out of the flat mop. The squeezing plate 14 can squeeze water out by squeezing with the upper end of the flat mop. The washing rack 17 can facilitate the washing of the flat mop, making the operation and use of the user more convenient.

[0034] In this embodiment, the mop press-type wringer bucket facilitates the installation of the support frame by means of a locking groove and mounting post. The angled support frame, together with the squeezing plate, ensures more thorough wringing and dehydration of the flat mop, making it more convenient for users. In addition, the rotatable connection between the connecting block and the mounting groove inside the bucket improves the overall stability of the squeezing mechanism and enhances the cleaning and wringing effect.

[0035] The above are merely preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A mop-type push-to-squeeze bucket, characterized in that, include: The bucket (1) has a water storage cavity (101) for washing or wringing water from the mop (3). The water storage cavity (101) is provided with a squeezing mechanism (2) for squeezing the mop head (301) to remove water. The squeezing mechanism (2) is provided with a hook block (4). The hook block (4) cooperates with the handle (302) to fix and limit the mop (3). The mop (3) is pressed towards one side of the bucket (1). The hook block (4) drives the squeezing mechanism (2) to squeeze the mop head (301). The extrusion mechanism (2) includes an extrusion frame (201) and a support frame (202). The support frame (202) is disposed on the inner bottom surface of the barrel (1), and the extrusion frame (201) is rotatably disposed on one side of the support frame (202). A connecting block (6) is disposed on one side of the support frame (202), and one end of the extrusion frame (201) is rotatably disposed on the connecting block (6). The hook block (4) is disposed on the extrusion frame (201) near the support frame (202). On one side of 02), the hook block (4) has an opening (401) for inserting the handle (302), and the hook block (4) has an arc-shaped part (402) that cooperates with the handle (302); the squeezing frame (201) is provided with a squeezing part (5), the squeezing part (5) is located above the support frame (202), and when the squeezing frame (201) rotates, one end of the squeezing part (5) cooperates with the mop head (301) to squeeze out water.

2. The mop push-type wringer as described in claim 1, characterized in that, The support frame (202) has a limiting groove (7) formed on both sides of its lower end. The barrel (1) is provided with a limiting post (102) that cooperates with the limiting groove (7). The extrusion mechanism (2) is set in the barrel (1) through the cooperation of the limiting post (102) and the limiting groove (7). The support frame (202) is horizontally set in the barrel (1).

3. The mop push-type wringer as described in claim 1, characterized in that, The squeezing part (5) includes a protruding post (8) disposed on one side of the squeezing frame (201). An arc-shaped protrusion (9) is provided on the outer side of the protruding post (8). The arc-shaped protrusion (9) is squeezed and engaged with the upper end face of the mop head (301) when squeezing water.

4. The mop push-type wringer bucket as described in claim 2 or 3, characterized in that, The barrel (1) is provided with a cleaning component (10), which is cone-shaped and located on one side of the water storage cavity (101).

5. The mop push-type wringer as described in claim 1, characterized in that, An installation platform (11) is provided inside the barrel (1). Installation columns (12) are formed on both sides of the installation platform (11) and the lower end of the support frame (202) is provided with a locking groove (13) corresponding to the installation column (12). The support frame (202) is obliquely limited on the installation column (12) by the locking groove (13).

6. The mop push-type wringer as described in claim 1, characterized in that, The extrusion section (5) includes an extrusion plate (14) rotatably disposed on one side of the extrusion frame (201), and the lower end face of the extrusion plate (14) engages with the mop (3).

7. The mop push-type wringer as described in claim 1, characterized in that, The support frame (202) has several water holes (16), and a cleaning rack (17) is provided on the bottom surface of the inner barrel (1). The connecting block (6) is rotatably connected to the mounting groove (15) inside the barrel (1).

8. The mop push-type wringer as described in claim 1, characterized in that, The support frame (202) is provided with a water-absorbing block (203).

9. The mop push-type wringer bucket as described in claim 8, characterized in that, The absorbent block (203) is made of foam.

Citation Information

Patent Citations

  • Mop bucket externally connected with water flow

    CN111990937A

  • Squeezing and water-absorbing type mop water squeezing device

    CN209421868U

  • Pressing type water squeezing bucket for mop

    CN216602777U