Rotary dewatering mop
By designing the tube base, fixing structure, and support structure of the spin-drying mop, the problem of needing a support bucket for the spin-drying mop was solved, achieving independent and stable spin-drying effects.
Patent Information
- Application Number
- CN202423250471.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing spin mops require the use of a supporting mop bucket to spin and wring water, which limits their use, especially when the mop bucket is damaged or lost and cannot spin and wring water independently.
A rotating wringer mop is designed, comprising a rotating rod, mop head, tube base, fixed structure, and support structure. The fixed structure slides to the bottom of the tube base and is fixed, which drives the support structure to extend and support the ground. The rotating rod is pressed to achieve independent rotation and wringing, and the combination of disc, support column, and base structure ensures stability.
It achieves independent spin-drying effect of the spin-drying mop, avoiding slippage due to the tilt of the support structure, and ensuring the stability and independence of spin-drying.
Smart Images

Figure CN223640659U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rotary mop technology, and more specifically, to a rotary wringer mop. Background Technology
[0002] A spin mop, also known as a spin mop, is a new type of mop that differs from traditional mops in that it can rotate. By using the centrifugal force generated by rotation, the mop can be spun dry in a washing machine with just a little manual effort. It mainly consists of a rotating rod and a mop head.
[0003] Existing spin mops require a supporting mop bucket to function, otherwise they cannot spin and wring water, which limits their use. If the mop bucket is damaged or lost, the spin mop cannot spin and wring water on its own. Therefore, we propose a new spin mop. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a rotating wringer to solve the technical problem that current rotating wringers are not convenient to perform rotating wringing on their own.
[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a rotating wringer, comprising a rotating rod and a mop head, wherein the rotating rod is rotatably arranged at the bottom end of the rotating rod, and the mop head includes a cleaning structure, wherein a tube seat is arranged at the top center of the cleaning structure, a support structure is arranged inside the tube seat, and a fixing structure is arranged on the tube seat, and the fixing structure is connected to the support structure.
[0006] The support structure includes a disc, a column, and a base structure. The column is centrally symmetrically arranged at the bottom of the disc, and the base structure is rotatably arranged at the bottom of the column.
[0007] This invention, through its designed tube base, fixing structure, and support structure, allows the rotating wok to spin independently when needed. The fixing structure slides to the bottom of the tube base and secures itself, causing the support structure to extend from the tube base and be fixed. The bottom of the support structure rests on the ground. By pressing the rotating rod, the mop head can be rotated for independent spin-drying. The support structure is composed of a disc, a pillar, and a base. When the base is on the ground, the rectangular rod retracts into the cross opening under pressure. During this process, the connecting rods on all four sides of the rectangular rod expand outwards, extending the four sets of triangular expansion blocks in the cross opening at the bottom of the T-shaped support. These four sets of triangular expansion blocks form a cross support frame, working in conjunction with the T-shaped support to simultaneously support the rotating wok. This ensures the stability of the support structure horizontally on the ground and prevents the mop from tilting or sliding during spin-drying, further guaranteeing the independent spin-drying effect.
[0008] Preferably, the cleaning structure includes a mounting plate with a through hole in the center, cleaning bristles arranged around the circumference of the mounting plate, and several sets of equidistant fastening structures arranged around the top circumference of the mounting plate.
[0009] Preferably, a mating plate is arranged at the bottom of the tube seat, and a second rectangular hole corresponding to the fastening structure is arranged around the top of the mating plate. Symmetrical limiting grooves are arranged on both sides of the second rectangular hole at the top of the mating plate.
[0010] Preferably, the fastening structure includes a round rod, a rectangular screw block is rotatably arranged at the top of the round rod, the size of the rectangular screw block is the same as the size of the second rectangular hole, and rubber clips corresponding to the limiting groove are arranged at both ends of the bottom of the rectangular screw block.
[0011] Preferably, the tube base has several sets of equidistant first rectangular holes arranged around its circumference, and several sets of equidistant fixing holes are arranged around the top and bottom of the tube base surface, with the fixing holes being staggered from the first rectangular holes. The fixing structure includes a ring, which is fitted onto the tube base. A connecting block corresponding to the first rectangular hole is arranged around the inner wall of the ring, and the connecting block is connected to the disc. A fixing knob corresponding to the fixing hole is arranged around the ring.
[0012] Preferably, the base structure includes a T-shaped support, the top of which is rotatably connected to the bottom of the support column. The bottom of the T-shaped support has a cross-shaped opening, and a third rectangular hole is arranged in the center of the bottom of the cross-shaped opening. Four sets of equidistant triangular extension blocks are slidably arranged inside the cross-shaped opening. A rectangular rod is inserted into the center of the cross-shaped opening, and the top of the rectangular rod is located in the third rectangular hole. The bottom of the rectangular rod extends out of the cross-shaped opening. Connecting rods are rotatably arranged on the bottom of all four sides of the rectangular rod, and the tops of the connecting rods are rotatably connected to the corresponding triangular extension blocks.
[0013] Preferably, a groove is provided inside the cross opening, and sliders are arranged on both sides of the triangular extension block, with the sliders located inside the groove.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] 1. This utility model, through its designed tube base, fixing structure, and supporting structure, allows the rotating wringer to achieve independent rotation and wringing by sliding the fixing structure to the bottom of the tube base and fixing it when needed. The fixing structure then drives the supporting structure to extend from the tube base and be fixed, with the bottom of the supporting structure resting on the ground. Users can then press the rotating rod to rotate the mop head and wring water, thus achieving independent rotation and wringing. This solves the technical problem that current rotating wringer mops are not convenient for independent rotation and wringing. Therefore, this utility model possesses the advantage of independent rotation and wringing.
[0016] 2. The support structure of this utility model is composed of a disc, a column, and a base. When the base structure is supported on the ground, the rectangular rod will retract into the cross opening under pressure. During this process, the connecting rods on the four sides of the rectangular rod will expand outward, thereby expanding the four sets of triangular expansion blocks in the cross opening at the bottom of the T-shaped support outward. Then, the four sets of triangular expansion blocks form a cross support frame to support the rotating wok in sync with the T-shaped support. This can ensure the stability of the support structure horizontally supported on the ground and prevent the rotating wok from tilting and sliding during rotation. This further ensures the independent rotation and woking effect of the rotating wok. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the mop head structure of this utility model;
[0019] Figure 3 This is a schematic diagram of the tube seat structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the fastening structure of this utility model;
[0021] Figure 5 This is a schematic diagram of the support structure of this utility model;
[0022] Figure 6 This is a partial cross-sectional schematic diagram of the support structure of this utility model.
[0023] Explanation of the labels in the diagram:
[0024] 1. Rotating rod; 2. Mop head; 3. Cleaning structure; 301. Mounting plate; 302. Cleaning bristles; 4. Tube base; 401. First rectangular hole; 402. Fixing hole; 403. Connecting plate; 404. Second rectangular hole; 405. Limiting groove; 5. Fixing structure; 501. Ring; 502. Connecting block; 503. Fixing knob; 6. Support structure; 7. Fastening structure; 701. Round rod; 702. Rectangular screw block; 703. Rubber clip; 8. Disc; 9. Support column; 10. Base structure; 1001. T-shaped support; 1002. Cross opening; 1003. Third rectangular hole; 1004. Triangular extension block; 1005. Rectangular rod; 1006. Connecting rod; 1007. Slide groove; 1008. Slider. Detailed Implementation
[0025] like Figures 1 to 6 As shown, the present invention relates to a rotating wringer mop, which includes a rotating rod 1 and a mop head 2. The rotating rod 1 of the rotating wringer can be rotated by pressing, which is the prior art and will not be described in detail here. The rotating rod 1 is rotatably arranged at the bottom end of the rotating rod 1. The mop head 2 includes a cleaning structure 3. A tube seat 4 is arranged at the top center of the cleaning structure 3. A support structure 6 is arranged inside the tube seat 4. A fixing structure 5 is arranged on the tube seat 4, and the fixing structure 5 is connected to the support structure 6.
[0026] When the rotating wok needs to be dehydrated, the fixing structure 5 can be slid to the bottom of the tube seat 4 and fixed. At this time, the fixing structure 5 drives the support structure 6 to extend out of the tube seat 4 and be fixed. The bottom end of the support structure 6 is supported on the ground. Then, by pressing the rotating rod 1, the mop head 2 can be rotated to dehydrate, thus achieving the independent rotation and dehydration effect of the rotating wok.
[0027] Specifically, the cleaning structure 3 includes a mounting plate 301 with a through hole in its center, cleaning bristles 302 arranged around its circumference, and several sets of equidistant fastening structures 7 arranged around its top circumference. The bottom of the pipe seat 4 has a connecting plate 403, and the top circumference of the connecting plate 403 has a second rectangular hole 404 corresponding to the fastening structure 7. Symmetrical limiting grooves 405 are arranged on both sides of the second rectangular hole 404 at the top of the connecting plate 403. The fastening structure 7 includes a round rod 701, with a rectangular screw block 702 rotatably arranged at the top of the round rod 701. The dimensions of the rectangular screw block 702 are the same as the dimensions of the second rectangular hole 404. Similarly, the bottom ends of the rectangular screw block 702 are provided with rubber clips 703 corresponding to the limiting grooves 405. When the cleaning structure 3 is installed, the mounting plate 301 can be attached to the bottom of the docking plate 403. At this time, the round rod 701 passes through the second rectangular hole 404, and then the rectangular screw block 702 is turned 90 degrees. At this time, the rectangular screw block 702 is perpendicular to the second rectangular hole 404, thereby realizing the fastening and fixing of the mounting plate 301 and the docking plate 403. The rubber clips 703 on the rectangular screw block 702 are inserted into the limiting grooves 405 of the docking plate 403, thereby ensuring the stability of the rectangular screw block 702 fastened to the top of the docking plate 403.
[0028] Furthermore, the tube base 4 has several sets of equidistant first rectangular holes 401 arranged around its circumference, and several sets of equidistant fixing holes 402 arranged around its top and bottom surfaces, with the fixing holes 402 staggered from the first rectangular holes 401. The fixing structure 5 includes a ring 501, which is fitted onto the tube base 4. Connecting blocks 502 corresponding to the first rectangular holes 401 are arranged around the inner wall of the ring 501, and these connecting blocks 502 are connected to the disc 8. The ring 501 also has connecting blocks 502 corresponding to the fixing holes 402 arranged around its circumference. The corresponding fixing knob 503; the ring 501 can drive the disc 8 to slide up and down through the connecting block 502, that is, to realize the sliding of the support structure 6 in the tube seat 4, and the fixing knob 503 can be screwed into the corresponding fixing hole 402 to fix the ring 501, that is, to fix the support structure 6. When the ring 501 is at the top of the tube seat 4, the support structure 6 is located inside the tube seat 4. When the ring 501 is at the bottom of the tube seat 4, the support structure 6 extends out of the tube seat 4.
[0029] In an embodiment of this utility model, the support structure 6 includes a disc 8, a column 9, and a base structure 10. The column 9 is symmetrically arranged at the bottom of the disc 8, and the base structure 10 is rotatably arranged at the bottom of the column 9. The base structure 10 includes a T-shaped support 1001. The top of the T-shaped support 1001 is rotatably connected to the bottom of the column 9. A cross opening 1002 is arranged at the bottom of the T-shaped support 1001. A third rectangular hole 1003 is arranged in the center of the bottom of the cross opening 1002. Four sets of equidistant triangular extension blocks 1004 are slidably arranged inside the cross opening 1002. A rectangular rod 1005 is inserted into the center of the cross opening 1002, and the top of the rectangular rod 1005 is located in the third rectangular hole 1003. The bottom of the rectangular rod 1005 extends out of the cross opening 1002. Connecting rods 1006 are rotatably arranged on the bottom of all four sides of the rectangular rod 1005, and the top of the connecting rod 1006 is rotatably connected to the corresponding triangular extension block 1004.
[0030] When the base structure 10 is supported on the ground, the rectangular rod 1005 will retract into the cross opening 1002 under pressure. During this process, the connecting rods 1006 on the four sides of the rectangular rod 1005 will expand outward, thereby expanding the four sets of triangular expansion blocks 1004 in the cross opening 1002 at the bottom of the T-shaped support 1001 outward. Then, the four sets of triangular expansion blocks 1004 form a cross support frame to support the rotating wok in sync with the T-shaped support 1001. This can ensure the stability of the support structure 6 horizontally supported on the ground and prevent the rotating wok from tilting and sliding during rotation. This further ensures the independent rotation and woking effect of the rotating wok.
[0031] Specifically, a groove 1007 is provided inside the cross opening 1002, and sliders 1008 are arranged on both sides of the triangular extension block 1004. The sliders 1008 are located inside the groove 1007. With the cooperation of the groove 1007 and the sliders 1008, the triangular extension block 1004 can be slidably installed in the cross opening 1002.
[0032] Working principle: This embodiment provides a rotary wringer. First, when the rotary wringer needs to be wrung out, the fixing structure 5 can be slid to the bottom of the tube seat 4 and fixed. At this time, the fixing structure 5 drives the support structure 6 to extend out of the tube seat 4 and be fixed. At this time, the bottom end of the support structure 6 is supported on the ground. Then, by pressing the rotating rod 1, the mop head 2 can be rotated to wring out water, thereby achieving the independent rotation wringer effect.
[0033] Secondly, when the base structure 10 is supported on the ground, the rectangular rod 1005 will retract into the cross opening 1002 under pressure. During this process, the connecting rods 1006 on the four sides of the rectangular rod 1005 will expand outward, thereby expanding the four sets of triangular expansion blocks 1004 in the cross opening 1002 at the bottom of the T-shaped support 1001 outward. Then, the four sets of triangular expansion blocks 1004 form a cross support frame to support the rotating wok in sync with the T-shaped support 1001. This can ensure the stability of the support structure 6 horizontally supported on the ground and prevent the rotating wok from tilting and sliding during rotation. This further ensures the independent rotation and woking effect of the rotating wok.
[0034] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.
Claims
1. A rotary wringer, characterized in that, It includes a rotating rod (1) and a mop head (2). The rotating rod (1) is rotatably arranged at the bottom end of the rotating rod (1). The mop head (2) includes a cleaning structure (3). A tube seat (4) is arranged at the center of the top of the cleaning structure (3). A support structure (6) is arranged inside the tube seat (4). A fixing structure (5) is arranged on the tube seat (4), and the fixing structure (5) is connected to the support structure (6). The support structure (6) includes a disk (8), a column (9) and a base structure (10). The column (9) is centrally symmetrically arranged at the bottom of the disk (8), and the base structure (10) is rotatably arranged at the bottom of the column (9).
2. The rotary wringer according to claim 1, characterized in that, The cleaning structure (3) includes a mounting plate (301), with a through hole pre-drilled in the center of the mounting plate (301), cleaning bristles (302) arranged around the perimeter of the mounting plate (301), and several sets of equidistant fastening structures (7) arranged around the top perimeter of the mounting plate (301).
3. A rotary wringer according to claim 2, characterized in that, The bottom of the tube seat (4) is provided with a docking plate (403), and the top of the docking plate (403) is provided with a second rectangular hole (404) corresponding to the fastening structure (7). Symmetrical limiting grooves (405) are provided on both sides of the second rectangular hole (404) on the top of the docking plate (403).
4. A rotary wringer according to claim 3, characterized in that, The fastening structure (7) includes a round rod (701), a rectangular screw block (702) is rotatably arranged at the top of the round rod (701), the size of the rectangular screw block (702) is the same as the size of the second rectangular hole (404), and rubber clips (703) corresponding to the limiting groove (405) are arranged at both ends of the bottom of the rectangular screw block (702).
5. A rotary wringer according to claim 1, characterized in that, The tube base (4) has several sets of equidistant first rectangular holes (401) arranged around its circumference. The top and bottom surfaces of the tube base (4) have several sets of equidistant fixing holes (402) arranged around its circumference, and the fixing holes (402) are staggered from the first rectangular holes (401). The fixing structure (5) includes a ring (501) which is fitted onto the tube base (4). The inner wall of the ring (501) has connecting blocks (502) corresponding to the first rectangular holes (401) arranged around its circumference. The connecting blocks (502) are connected to the disc (8). The ring (501) has fixing knobs (503) corresponding to the fixing holes (402) arranged around its circumference.
6. A rotary wringer according to claim 1, characterized in that, The base structure (10) includes a T-shaped support (1001), the top of which is rotatably connected to the bottom of the support column (9). A cross opening (1002) is arranged at the bottom of the T-shaped support (1001). A third rectangular hole (1003) is arranged in the center of the bottom of the cross opening (1002). Four sets of equidistant triangular extension blocks (1004) are slidably arranged inside the cross opening (1002). A rectangular rod (1005) is inserted into the center of the cross opening (1002), and the top of the rectangular rod (1005) is located in the third rectangular hole (1003). The bottom of the rectangular rod (1005) extends out of the cross opening (1002). Connecting rods (1006) are rotatably arranged on the bottom of all four sides of the rectangular rod (1005), and the top of the connecting rod (1006) is rotatably connected to the corresponding triangular extension block (1004).
7. A rotary wringer according to claim 6, characterized in that, The cross opening (1002) has a groove (1007) inside, and sliders (1008) are arranged on both sides of the triangular extension block (1004), with the sliders (1008) located inside the groove (1007).