Water squeezing structure of flat mop

By introducing a design that connects the swing frame and the first squeezing scraper on different axes in the wringing structure of the flat mop, the contradiction in the width setting of the squeezing scraper is resolved, and efficient wringing and easy return to position are achieved under one-handed operation.

CN224387410UActive Publication Date: 2026-06-23谢佐龙 +1
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Patent Information

Application Number
CN202521537476.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-22
Publication Date
2026-06-23
Estimated Expiration
2035-07-22

AI Technical Summary

Technical Problem

The wringing mechanism of existing flat mops has a contradiction in the width setting of the swiping plate, making it impossible to achieve both easy return to the original position and effective wringing at the same time, requiring two-handed operation.

Method used

The water-squeezing mechanism includes a swing frame and a first water-squeezing scraper. The first water-squeezing scraper is connected to the swing frame via pivots on different axes, allowing the water-squeezing scraper to provide water-squeezing pressure when the tilt angle in the water-squeezing channel is small. The width is increased when returning to the original position through the cooperation of the swing frame, making it convenient for one-handed operation.

Benefits of technology

It provides sufficient pressure during squeezing and moves easily when returning to its original position, allowing the squeezing operation to be completed with one hand, thus improving squeezing efficiency and convenience.

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Abstract

The utility model discloses a water squeezing structure of a flat mop, which comprises a water squeezing frame, a water squeezing channel for a mop head of the flat mop to penetrate through is arranged on the water squeezing frame, a water stroking mechanism is arranged on one side of the water squeezing channel and comprises a swing frame and a first water stroking scraper, the swing frame is rotatably connected onto the water squeezing frame through a first pivot, and the first water stroking scraper is rotatably connected onto the swing frame through a second pivot. The first water stroking scraping plate is rotationally connected to the swing frame through a second pivot, the first pivot and the second pivot are parallel and not coaxial, a first water squeezing part located in the water squeezing channel is arranged on the first water stroking scraping plate, and the first water squeezing part is used for making contact with a mop head penetrating through the first water squeezing part to squeeze water; the swing frame rotates around the first pivot or the first water stroking scraper rotates around the second pivot, so that a first water squeezing part on the first water stroking scraper can be controlled to be far away from or close to the mop head, and according to the structure, when the water squeezing frame moves downwards to squeeze water, the first water stroking scraper can apply enough pressure to the mop head to squeeze water; and when the water squeezing frame moves upwards to return, a large abdicating distance is provided, so that the water squeezing frame can easily move upwards to return.
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