An angled push-pull dual-purpose floor squeegee
By designing an angled push-pull dual-purpose floor squeegee, using angled rubber sponge and a quick-release structure, it achieves 180° rotation to switch between push-pull modes, solving the problem of frequent position adjustments required by existing squeegees, addressing the technical issues caused by the impact of falling rubber sponge, and eliminating the problem of strip-shaped water stains formed by the impact of falling rubber sponge, thus ensuring cleaning efficiency and rubber sponge lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 田跃东
- Filing Date
- 2025-08-20
- Publication Date
- 2026-07-17
AI Technical Summary
Existing linear squeegee wipers require frequent adjustments to their position during squeegee operation, making continuous propulsion impossible. Furthermore, the squeegee tends to form streaks of water when it falls, affecting efficiency and shortening its lifespan.
Design an angled push-pull dual-purpose floor squeegee, which adopts an angled PVC foam and a quick-release structure. The push-pull mode can be switched by rotating 180° to ensure that the PVC foam is in contact with the ground throughout the process, creating a directional water flow channel to achieve continuous water pushing.
By designing an angled, push-pull dual-purpose flooring system, this system completely avoids the problem of strip-shaped water stains caused by the impact of falling rubber sponges in traditional squeegees. Cleaning is completed in one pass, leaving no watermarks. At the same time, the angled rubber sponge can create a directional water flow channel, ensuring that the water flow is pushed straight into the drain outlet. This effectively solves the problem of strip-shaped water stains caused by the impact of falling rubber sponges in traditional squeegees, allowing for a clean-in-one process without leaving any watermarks.
Smart Images

Figure CN224505356U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a squeegee, and more particularly to an angled push-pull dual-purpose floor squeegee. Background Technology
[0002] As a core component of cleaning tools, floor squeegees are widely used for floor drainage operations in homes and commercial spaces. Currently, most squeegees use a linear design, which relies on a unidirectional squeegee pattern: the user always faces the area to be squeegeed and squeegees the water from the outside in.
[0003] In actual wiping, after each wiping action, the user needs to step back to adjust their position before starting the next wiping action. This process cannot achieve continuous progress, especially when the drain outlet is far away, the operator needs to move back and forth repeatedly, resulting in significant time consumption.
[0004] At the moment the squeegee starts to wipe the ground, the liquid absorbed on its surface will form a strip-shaped wetting band in the wiped area. This is because the amount of liquid released by the rebound of the squeegee is greater than its instantaneous water absorption capacity. As a result, the user has to wipe the same area repeatedly to remove the water marks. This not only affects the squeegee efficiency, but also accelerates the wear of the squeegee and shortens its service life. Summary of the Invention
[0005] The present invention aims to solve the existing technical problem by providing a corner-shaped push-pull dual-purpose floor squeegee that not only adapts to corners but also has the ability to continuously push water over a large area, while completely eliminating watermarks.
[0006] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows:
[0007] This utility model discloses an angled push-pull dual-purpose floor squeegee, including an operating rod, one end of which is provided with an angled scraper assembly; the angled scraper assembly is composed of a PVC foam fixing structure and angled PVC foam; the angled PVC foam is fixed to the PVC foam fixing structure by a quick-release structure; the PVC foam fixing structure is provided with a connector; the connector is fixed to the end of the operating rod by a connecting structure.
[0008] The adhesive cotton fixing structure includes a first clamping plate and a second clamping plate located inside the first clamping plate. Both the first clamping plate and the second clamping plate are angular. The angular adhesive cotton is located between the first clamping plate and the second clamping plate.
[0009] The quick-release structure includes several first through holes evenly distributed on the first clamping plate; several second through holes corresponding to the positions of the first through holes are provided on the second clamping plate; several third through holes corresponding to the positions of the second through holes are provided on the angular adhesive cotton; a positioning pin passes through the first through hole, the third through hole and into the second through hole in sequence; one end of the positioning pin is provided with a limiting head that fits against the outer wall of the first clamping plate, and the center of the other end face of the positioning pin is provided with a first screw hole; a first screw passes into the second through hole and is screwed into the first screw hole, and the head of the first screw fits against the inner wall of the second clamping plate.
[0010] The adhesive cotton fixing structure consists of two U-shaped clamping members, which are perpendicular to each other and welded together to form an angled structure; the quick-release structure includes a clamping groove formed by the clamping members themselves; the angled adhesive cotton consists of two plate-shaped adhesive cotton embedded in the clamping groove, with one end of the plate-shaped adhesive cotton protruding out of the clamping groove.
[0011] The inner wall of the clamping groove is provided with several evenly distributed rolled edges.
[0012] The operating lever has a fourth through hole that penetrates it radially at its end; the connector has a fifth through hole on each side that communicates with the fourth through hole; a matching screw sleeve is provided in one of the fifth through holes; the screw sleeve passes through both the fifth and fourth through holes and is screwed with a matching second screw, and the head of the screw sleeve and the head of the second screw are respectively attached to the outer walls of the connector on both sides.
[0013] The beneficial effects of this utility model are:
[0014] Compared with the existing technology, the structure of this utility model can switch between push and pull modes by rotating 180°, so that the angular cotton can be in contact with the ground without lifting. This completely avoids the problem of strip-shaped water stains caused by the falling impact of the cotton in traditional squeegees. The cleaning is completed in one go without water marks. At the same time, the angular cotton can create a water flow directional channel, ensuring that the water can be pushed straight into the drain outlet, effectively ensuring continuous water pushing efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the angular push-pull dual-purpose floor wiper of this utility model;
[0016] Figure 2 This is a partial cross-sectional view of a first embodiment of the angular push-pull dual-purpose floor wiper of this utility model;
[0017] Figure 3 This is another partial cross-sectional view of Embodiment 1 of the angular push-pull dual-purpose floor wiper of this utility model;
[0018] Figure 4This is a schematic diagram of the structure of Embodiment 2 of the angular push-pull dual-purpose floor wiper of this utility model;
[0019] Figure 5 This is a schematic diagram of the clamping component. Detailed Implementation
[0020] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments:
[0021] Example 1, please refer to Figures 1 to 3 This utility model provides an angled push-pull dual-purpose floor squeegee, including an operating lever 101, one end of which is provided with an angled scraper assembly; the angled scraper assembly consists of a rubber cotton fixing structure and an angled rubber cotton 102; the angled rubber cotton 102 is fixed to the rubber cotton fixing structure by a quick-release structure; the rubber cotton fixing structure is provided with a connector 103; the connector 103 is fixed to the end of the operating lever 101 by a connecting structure.
[0022] The adhesive cotton fixing structure includes a first clamping plate 201 and a second clamping plate 202 located inside the first clamping plate 201. Both the first clamping plate 201 and the second clamping plate 202 are angular. The angular adhesive cotton 102 is located between the first clamping plate 201 and the second clamping plate 202.
[0023] When the angular cotton 102 is clamped by the first clamping plate 201 and the second clamping plate 202, it can form a guide angle. When water is pushed at the end of the angular cotton 102, the water flow will converge towards the tip of the guide angle, thereby effectively ensuring the water absorption capacity of the angular cotton 102 and preventing the angular cotton 102 from rebounding and releasing water to form water stains.
[0024] The quick-release structure includes several first through holes 203 evenly distributed on the first clamping plate 201; several second through holes 204 corresponding to the positions of the first through holes 203 on the second clamping plate 202; several third through holes 205 corresponding to the positions of the second through holes 204 on the angular adhesive cotton 102; a positioning pin 206 passes through the first through holes 203 and the third through holes 205 in sequence and is inserted into the second through hole 204; one end of the positioning pin 206 is provided with a limiting head 207 that fits against the outer wall of the first clamping plate 201, and the center of the end face of the other end of the positioning pin 206 is provided with a first screw hole 208; a first screw 209 passes into the second through hole 204 and is screwed into the first screw hole 208, and the head of the first screw 209 fits against the inner wall of the second clamping plate 202. This fixing structure facilitates the assembly and disassembly of the first clamping plate 201, the second clamping plate 202 and the angular adhesive cotton 102, thereby facilitating the replacement of the angular adhesive cotton 102.
[0025] The operating rod 101 has a fourth through hole 305 that penetrates it radially at its end; the connector 103 has a fifth through hole 306 on each side that communicates with the fourth through hole 305; a matching screw sleeve 307 is provided in one of the fifth through holes 306; the screw sleeve 307 passes through both the fifth through hole 306 and the fourth through hole 305 and is screwed with a matching second screw 308. The head of the screw sleeve 307 and the head of the second screw 308 are respectively attached to the outer walls of the two sides of the connector 103. When the connection between the screw sleeve 307 and the second screw 308 is loose, the operating rod 101 and the connector 103 are in a hinged state. The angle between the operating rod 101 and the adhesive fixing structure can be adjusted at will to adapt to different water pushing states. After the angle is adjusted, the screw sleeve 307 and the second screw 308 are tightened again to fix the operating rod and the connector.
[0026] Example 2, please refer to Figure 4 , Figure 5 The adhesive cotton fixing structure consists of two U-shaped clamping members 501, which are perpendicular to each other and welded together to form an angled structure. The quick-release structure includes a clamping groove 502 formed by the clamping member 501 itself. The angled adhesive cotton 102 consists of two plate-shaped adhesive cotton 503 embedded in the clamping groove 502, with one end of the plate-shaped adhesive cotton 503 protruding out of the clamping groove 502.
[0027] When water is pushed from the end of the sheet-shaped PVC 503, the water flow can converge towards the part of the sheet-shaped PVC 503 located deep in the clamping groove 502, thereby effectively ensuring the water absorption capacity of the angular PVC 102 and preventing the angular PVC 102 from rebounding and releasing water to form water stains.
[0028] The inner wall of the clamping groove 502 is provided with several evenly distributed rolled edges 504. When the clamping member 501 is made of metal, the clamping member 501 can obtain a certain elasticity through its own material properties, firmly clamping the plate-shaped cotton 503 in the clamping groove. The presence of the rolled edges 504 can further play an anti-detachment role, preventing the plate-shaped cotton 503 from coming out of the clamping groove 502.
[0029] When scraping edges and corners, use the inward squeegee. After scraping a certain distance, stand on the scraped floor, turn around, rotate the squeegee 180 degrees, and push the water forward all the way to the drain. During the entire pushing process, you don't need to lift or lower the squeegee, so you won't create streaks of water, making the scraping fast and clean.
[0030] When both ends of the angular PVC foam 102 are on the ground to wipe water, one end pushes the water directly, and the other end follows closely behind. Therefore, even if water stains remain during the wiping process, they will be cleaned up by the other end of the angular PVC foam 102, truly achieving no water stains.
[0031] In summary, this utility model can switch between push-pull modes by rotating 180°, ensuring that the angular PVC foam adheres to the ground without lifting, completely avoiding the problem of strip-shaped water stains caused by the falling impact of the PVC foam in traditional squeegees. Cleaning is completed in one go, leaving no watermarks. At the same time, the angular PVC foam 102 can create a water flow directional channel, ensuring that the water flow can be pushed straight into the drain outlet, effectively ensuring continuous water pushing efficiency.
[0032] Meanwhile, this utility model relates to the field of wiper technology. Due to its simple structure, low technical difficulty, low manufacturing cost, and low threshold for technology transfer, the inventor can successfully transform the technical solution into practical results.
[0033] The technology transfer plan is as follows: find relevant manufacturers to process scrapers through forming processes such as punching and bending, and other parts can be purchased directly online. We only need to assemble, package and sell them.
[0034] In practical use, the angled PVC foam 102 can be clamped and fixed into an angled shape by the first angled clamp 201 and the second clamp 202, which avoids the trouble of directly producing angled PVC foam. Flat PVC foam is easier to obtain and effectively reduces costs.
[0035] Meanwhile, the connector 103 and the operating rod 101 can also be fixed by a threaded connection. The connector 103 can be hinged to the rubber cotton fixing structure to facilitate the angle adjustment of the operating rod 101. Alternatively, the connector 103 can be directly fixed to the rubber cotton fixing structure by integral molding or welding.
Claims
1. A angular push-pull dual-purpose floor squeegee, comprising an operating lever, characterized in that: One end of the operating lever is provided with an angular scraper assembly; the angular scraper assembly consists of a cotton fixing structure and angular cotton; the angular cotton is fixed to the cotton fixing structure by a quick-release structure; the cotton fixing structure is provided with a connector; the connector is fixed to the end of the operating lever by a connecting structure.
2. The angular push-pull dual-purpose floor wiper according to claim 1, characterized in that: The adhesive cotton fixing structure includes a first clamping plate and a second clamping plate located inside the first clamping plate. Both the first clamping plate and the second clamping plate are angular. The angular adhesive cotton is located between the first clamping plate and the second clamping plate.
3. A angular push-pull dual-purpose floor wiper according to claim 2, characterized in that: The quick-release structure includes several first through holes evenly distributed on the first clamping plate; several second through holes corresponding to the positions of the first through holes are provided on the second clamping plate; several third through holes corresponding to the positions of the second through holes are provided on the angular adhesive cotton; a positioning pin passes through the first through hole, the third through hole and into the second through hole in sequence; one end of the positioning pin is provided with a limiting head that fits against the outer wall of the first clamping plate, and the center of the other end face of the positioning pin is provided with a first screw hole; a first screw passes into the second through hole and is screwed into the first screw hole, and the head of the first screw fits against the inner wall of the second clamping plate.
4. The angular push-pull dual-purpose floor wiper according to claim 1, characterized in that: The adhesive cotton fixing structure consists of two U-shaped clamping members, which are perpendicular to each other and welded together to form an angled structure; the quick-release structure includes a clamping groove formed by the clamping members themselves; the angled adhesive cotton consists of two plate-shaped adhesive cotton embedded in the clamping groove, with one end of the plate-shaped adhesive cotton protruding out of the clamping groove.
5. A angular push-pull dual-purpose floor wiper according to claim 4, characterized in that: The inner wall of the clamping groove is provided with several evenly distributed rolled edges.
6. A angular push-pull dual-purpose floor wiper according to claim 1, characterized in that: The operating lever has a fourth through hole that penetrates it radially at its end; the connector has a fifth through hole on each side that communicates with the fourth through hole; a matching screw sleeve is provided in one of the fifth through holes; the screw sleeve passes through both the fifth and fourth through holes and is screwed with a matching second screw, and the head of the screw sleeve and the head of the second screw are respectively attached to the outer walls of the connector on both sides.