A bucketless two-sided wiping mop

CN224776792UActive Publication Date: 2026-09-22SHANGHAI DOUBLE HERO PLASTIC PROD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522423911.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-14
Publication Date
2026-09-22
Estimated Expiration
2035-11-14

AI Technical Summary

Technical Problem

这导致平板拖把头插入挤水器时,其下部总会有一段区域与挤水器结构重合而无法受到有效挤压,形成“挤水盲区”

Benefits of technology

[0009]本实用新型与现有技术相比具有的有益效果是:本实用新型针对因挤水器厚度导致的拖布下部挤水盲区问题,通过独特的翻转、再挤操作流程,利用两个对称挤水器,实现了对单面拖布的全覆盖、无盲区挤水。完全摆脱了对传统水桶的依赖,仅通过拖把自身结构即可完成高效、彻底的挤水操作,节省空间,使用场景更灵活。本实用新型首次挤水处理上部,翻转后再次挤水处理前次的下部(即翻转后的上部),操作步骤清晰,逻辑简单,用户易于掌握。而且本实用新型一体成型的支撑导向架确保了挤水过程的稳定性,对称的挤水器设计专为实现翻转挤水功能,结构不冗余,目的明确。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224776792U_ABST
    Figure CN224776792U_ABST
Patent Text Reader

Abstract

The utility model discloses a barrel -less formula two -sided scrape mop belongs to household cleaning appliance technical field, the mop includes mop stick, the flat mop head of single -sided setting mop cloth and the water squeezing frame, and two water squeezers are symmetrically arranged on the water squeezing frame, and the upper side middle part is integrally provided with the support guide frame, and the mop stick moves through the support guide frame and is movably connected with the flat mop head. Due to the thickness limitation of the water squeezer, when the flat mop head is inserted into the water squeezer, the lower part of the water squeezer cannot be squeezed, after the first water squeezing is completed by moving down the water squeezing frame relative to the mop stick, the flat mop head is turned over 180 DEG and inserted into another water squeezer, and the water squeezing frame is moved down again, the lower part area that was not squeezed before is moved to the upper part and is squeezed, so that the whole area of the single -sided mop cloth is squeezed in turns, the utility model discloses clever structure, and the single -sided mop cloth can be completely squeezed out through the turning operation without the water bucket, and the local water squeezing blind area problem is effectively solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to a bucketless double-sided scraper mop, belonging to the technical field of household cleaning tools. Background Technology

[0002] Traditional flat mops typically require a bucket for washing and wringing, a cumbersome and space-consuming process. While some existing bucketless mops attempt to eliminate the need for a bucket by using a squeegee to wring water, they generally suffer from incomplete wringing. Especially when the wringing device is integrated with the mop handle guide structure, the wringer usually has a certain thickness for structural strength. This results in a section of the flat mop head overlapping with the wringer structure when inserted, creating a "wringing blind spot." If only one wringing operation is performed, the residual water in this blind spot will flow out during subsequent mopping, affecting cleaning performance. Therefore, a mop is needed that can effectively solve the problem of localized wringing blind spots and achieve complete wringing of one side of the mop head even without a bucket. Utility Model Content

[0003] This invention overcomes the shortcomings of the existing technology and provides a bucketless double-sided mop that can wring water from the entire area of ​​a single-sided mop by flipping it over, effectively eliminating blind spots in the wringing process.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a bucketless double-sided scraping mop, including a mop handle, a flat mop head and a wringer frame. The flat mop head is provided with a mop handle through a movable connection structure. The flat mop head can be matched and inserted into the wringer frame to wring out water. Two wringers are symmetrically arranged on the wringer frame. A support guide frame is integrally provided in the middle of the upper side of the wringer frame. The mop handle is movably connected to the flat mop head after passing through the support guide frame. The wringer slides downward relative to the mop handle, squeezing out the water from the upper area of ​​the flat mop head inserted in one of the wringers. The flat mop head is then flipped into the other wringer, and the wringer, after being reset, continues to slide downward relative to the mop handle, squeezing out the water from the upper area of ​​the flipped flat mop head.

[0005] Furthermore, the flat mop head can be rotated 180° relative to the mop handle.

[0006] Furthermore, the structure of the flat mop head includes a flat plate, a mop cloth, and a folding locking plate. Two folding locking plates are symmetrically arranged at both ends of the upper side of the flat plate. The two ends of the folding locking plates are laterally movably inserted into the insertion holes on the upper side of the flat plate, so that the folding locking plates can be flipped around the insertion holes. A locking plate is provided on the upper side of the flat plate on the other side away from the insertion holes. The locking plate locks and fixes the folding locking plates that have been flipped to the plane of the flat plate. The two ends of the mop cloth extend upward from the two ends of the lower side of the flat plate and lock and fix them on the folding locking plates.

[0007] Furthermore, the card plate located at one end of the flat plate is a fixed card plate integrally formed with the flat plate. The fixed card plate is a one-way card plate. After the folding snap plate slides down the inclined surface of the fixed card plate, it is pressed down by the fixed card plate on the lower side.

[0008] Furthermore, the card plate located at the other end of the flat plate is a movable card plate, and a manual push plate is fixedly installed on the movable card plate. By manually operating the manual push plate to push it out or push it back, the folding card plate can be locked or released.

[0009] Compared with existing technologies, this invention offers the following advantages: Addressing the issue of blind spots in mop wringing caused by the thickness of the wringer, this invention utilizes a unique flipping and re-squeezing process with two symmetrical wringers to achieve full coverage and no blind spots on the single-sided mop. It completely eliminates reliance on traditional buckets, achieving efficient and thorough wringing solely through the mop's own structure, saving space and offering greater flexibility in usage scenarios. This invention first wrings out the upper part, then flips and wrings out the previously wringed lower part (i.e., the flipped upper part), making the operation steps clear, the logic simple, and easy for users to master. Furthermore, the integrated support guide frame ensures stability during the wringing process, and the symmetrical wringer design is specifically designed for the flipping and wringing function, resulting in a non-redundant structure with a clear purpose. Attached Figure Description

[0010] The present invention will be further described below with reference to the accompanying drawings.

[0011] Figure 1 This is a schematic diagram of the initial water squeezing process in this utility model.

[0012] Figure 2 This is a schematic diagram showing the state of the flat mop head after the flipping operation in this utility model.

[0013] Figure 3 This is a schematic diagram of the state of squeezing water again in this utility model (the mop handle is not shown).

[0014] Figure 4 This is a schematic diagram of the wringing action of the flat mop head and wringer in this utility model.

[0015] Figure 5This is a top view of the flat mop head in this utility model.

[0016] Figure 6 for Figure 5 A top-down view of the flat mop head after it has been rotated 180°.

[0017] In the diagram: 1 is the mop handle, 2 is the flat mop head, 21 is the flat plate, 22 is the mop cloth, 23 is the folding clip plate, 24 is the fixed clip plate, 25 is the movable clip plate, 26 is the manual push plate, 3 is the wringer, 4 is the wringer, and 5 is the support guide frame. Detailed Implementation

[0018] The present invention will be further described below with reference to specific embodiments.

[0019] like Figures 1-6 As shown, this utility model is a bucketless double-sided scraper mop, which mainly consists of a mop handle 1, a flat mop head 2, and a wringer 3.

[0020] The wringer frame 3 adopts a symmetrical structure, with an identical wringer 4 on each of its left and right sides. The wringer 4 has a specific structural thickness, and its inner contour matches the total thickness of the flat mop head 2 with the attached mop cloth 22 to ensure effective wringing. At the upper center of the wringer frame 3, an integrally formed upward-extending support guide frame 5 has a through hole in its center for the mop handle 1 to pass through. This structure guides and limits the vertical movement of the mop handle 1.

[0021] The lower end of the mop handle 1 is connected to the flat mop head 2 via a conventional movable connecting component such as a universal joint, so that the flat mop head 2 can rotate at multiple angles relative to the mop handle 1 and can stably achieve a 180° flip.

[0022] The flat mop head 2 includes a rectangular flat plate 21 and a mop cloth 22 fixedly mounted on a single surface of the flat plate 21. Two symmetrically arranged folding and locking plates 23 are located at both ends of the upper side of the flat plate 21 where the mop cloth 22 is not mounted. The two ends of the folding and locking plates 23 are inserted into corresponding holes on the upper side of the flat plate 21 via a pivot or pin, allowing them to fold outwards or snap inwards until they are coplanar with the upper surface of the flat plate 21. On the upper side of the flat plate 21, corresponding to the end of each folding and locking plate 23 furthest from the pivot, a locking plate is provided. Specifically, at one end is a fixed locking plate 24 integrally formed with the flat plate 21, which has a guide slope to form a one-way locking structure. When the folding and locking plate 23 folds down to be coplanar with the flat plate 21, it slides down this slope and is automatically locked and pressed by the fixed locking plate 24. At the other end, a movable locking plate 25 is provided, on which a manual push plate 26 is connected. By pushing the manual push plate 26, the movable locking plate 25 can be extended to lock the folding locking plate 23, or retracted to release the folding locking plate 23. The mop 22 has hooks or similar structures at both ends, which are fitted onto the folding locking plate 23 during installation. The mop 22 is fixed and tensioned by the fastening and locking of the folding locking plate 23.

[0023] The working principle and dewatering process of this utility model: When a flat mop head 2 with a single-sided mop cloth 22 is inserted into a wringer 4, due to the thickness T of the wringer 4 itself, a section of the lower part of the flat mop head 2 with a height of approximately T overlaps with the structure of the wringer 4. During the initial wringing action when the wringer frame 3 is lowered, the squeezing force mainly acts on area A, while area B becomes a wringing blind zone and cannot be effectively squeezed. Here, A is the area squeezed during the initial wringing, and B is the blind zone (the area overlapping with the thickness of the wringer) that is not squeezed during the initial wringing.

[0024] First wringing: Insert the wet flat mop head 2 into any one of the wringers 4 in the wringer 3. Hold the mop handle 1 and push the wringer 3 downwards, allowing it to slide down the mop handle 1. The wringer 4 squeezes the mop area A on the upper part of the flat mop head 2, squeezing out most of the water.

[0025] Flipping Operation: After the first wringing, lift the wringer 3 upwards to return it to its original position. Then, precisely flip the flat mop head 2 180° using the movable connecting part. At this time, the previously un-squeezed blind spot B moves to the top as the head is flipped.

[0026] Squeeze water again: Insert the flipped flat mop head 2 into another unused wringer 4. Push the wringer 3 downwards again. In this squeezing operation, the squeezing force mainly acts on the previously unused blind spot B, which is now located above, to completely squeeze out the remaining water in that area.

[0027] This invention achieves complete drying of a single-sided mop by performing two opposite squeezing operations, ensuring that all areas of the mop undergo an effective squeeze in sequence, thus solving the problem of water retention in local blind spots.

[0028] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A bucketless double-sided mop, comprising a mop handle (1), a flat mop head (2), and a wringer (3), wherein the flat mop head (2) is provided with a mop cloth (22) on one side and is connected to the lower end of the mop handle (1) via a movable connecting structure, and the flat mop head (2) can be inserted into the wringer (4) of the wringer (3) for wringing water, characterized in that: Two wringers (4) are symmetrically arranged on the wringer (3). A support guide frame (5) is integrally arranged on the upper middle part of the wringer (3). The mop handle (1) is movably passed through the support guide frame (5) and connected to the flat mop head (2). When the mop head (2) with a single-sided mop cloth (22) is inserted into one of the wringers (4), there is an overlapping area at the bottom that corresponds to the thickness of the wringer (4) and cannot be effectively squeezed. By sliding the wringer (3) relative to the mop handle (1) from top to bottom, the upper area of ​​the flat mop head (2) is squeezed for the first time. Then, the flat mop head (2) is rotated 180° and inserted into another wringer (4). The wringer (3) is slid relative to the mop handle (1) from top to bottom again, so that the overlapping area at the bottom that was not squeezed in the previous time is moved to the top and squeezed, thereby completing the full area of ​​the single-sided mop cloth (22) to be squeezed in stages.

2. The bucketless double-sided scraping mop according to claim 1, characterized in that: The flat mop head (2) can be rotated 180° relative to the mop handle (1).

3. A bucketless double-sided scraping mop according to claim 1, characterized in that: The structure of the flat mop head (2) is as follows: it includes a flat plate (21), a mop (22) and a folding snap plate (23). The mop (22) is fixedly set on a single surface of the flat plate (21). The two folding snap plates (23) are symmetrically set at the upper ends of the flat plate (21). The two ends of the folding snap plates (23) are laterally inserted into the sockets on the upper side of the flat plate (21), so that the folding snap plates (23) can be flipped around the sockets. A snap plate is set on the upper side of the flat plate (21) on the other side away from the sockets. The snap plate snaps and fixes the folding snap plate (23) that has been flipped to the plane of the flat plate (21). The two ends of the mop (22) extend upward from the lower ends of the flat plate (21) to the folding snap plate (23) and snap it and fix it.

4. A bucketless double-sided scraping mop according to claim 3, characterized in that: The card plate located at one end of the plate (21) is a fixed card plate (24) integrally formed with the plate (21). The fixed card plate (24) is a one-way card plate. The folding snap plate (23) slides down along the inclined surface of the fixed card plate (24) and is pressed on the lower side by the fixed card plate (24).

5. A bucketless double-sided scraping mop according to claim 4, characterized in that: The card plate located at the other end of the flat plate (21) is a movable card plate (25). A manual push plate (26) is fixedly installed on the movable card plate (25). By manually operating the manual push plate (26) to push out or push back, the card plate (23) can be fixed or released.