Spring magic mop

CN224747997UActive Publication Date: 2026-09-15SHANDONG ZHENGMIAO HOME FURNISHING CO LTD
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Patent Information

Application Number
CN202522276442.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-09-15
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0003]传统的魔术拖把关节处一般过盈配合,但随着使用会逐步磨损,进而变松,而且魔术拖把上胶条一般难装难拆,生产及组装成本较高,同时胶条长期使用后,一般容易变形,不再呈直线,为此,我们提供出一种弹簧魔术拖把

Benefits of technology

本实用新型通过U型叉、刮板和弹簧连接组件形成了可活动的关节结构,两侧加弹性件,使U型叉可与刮板表面分离,减小磨损甚至无磨损,由于作用力由常见的过盈配合加持力变为弹性件弹力,因此长期使用后力度仍然保持如初,通过设置限位组件,使得胶条与刮板可以快速的进行拆装操作,同时保证了胶条安装到刮板上的稳定性,胶条采用仿形结构,借助燕尾夹卷边增强胶条外边缘防变形能力,提高了其使用寿命。

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Abstract

The utility model discloses a spring magic mop, including the connecting head, the connecting head below is provided with the scraper, the bottom of connecting head is installed with the U type fork, the scraper and U type fork are connected through spring connecting component, spring connecting component is used for the non -contact connection of scraper and U type fork, the inner wall of scraper is pressed with the adhesive tape. The utility model discloses through U type fork, scraper and spring connecting component formed the movable joint structure, both sides add elastic part, make U type fork can with the scraper surface separation, reduce the attrition even no attrition, because the force becomes elastic piece elasticity from the common interference fit and holds the force, therefore, the strength still maintains as the original after long -term use, through setting the limiting component, make the adhesive tape with the scraper can quick operation of dismouting, guarantee the stability of adhesive tape installation to the scraper simultaneously, the adhesive tape adopts the profiling structure, with the aid of dovetail presss from both sides and enhances the adhesive tape outer edge deformation prevention ability, has improved its life.
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Description

Technical Field

[0001] This utility model relates to the field of mop technology, specifically a spring-loaded magic mop. Background Technology

[0002] Magic mops are widely used in homes, offices, and other settings. Their core structure typically includes a U-shaped fork for connecting the mop handle, a scraper for mounting cleaning components, and a rubber strip for scraping away stains on the floor. These components are assembled through a joint structure to form a complete cleaning unit, meeting users' cleaning needs for different types of floors such as tiles and wood floors. The joint refers to the movable connection structure between the mop handle and the cleaning end.

[0003] Traditional magic mops typically have an interference fit at the joints, but these joints wear down and loosen with use. Furthermore, the rubber strips on magic mops are generally difficult to install and remove, resulting in higher production and assembly costs. Additionally, the rubber strips tend to deform and lose their straightness after prolonged use. Therefore, we offer a spring-loaded magic mop. Utility Model Content

[0004] The purpose of this invention is to provide a spring-loaded magic mop to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a spring magic mop, including a connector, a scraper is provided below the connector, a U-shaped fork is installed at the bottom of the connector, the scraper and the U-shaped fork are connected by a spring connecting assembly, the spring connecting assembly is used for non-contact connection between the scraper and the U-shaped fork, and an adhesive strip is sandwiched on the inner wall of the scraper.

[0006] Optionally, the spring connection assembly includes a through groove, an elastic element, and a fastener. The through groove is opened on the front of the scraper and corresponds to the position of the U-shaped fork opening. The elastic element is disposed on the inner wall of the through groove.

[0007] Optionally, the fastener is disposed at the opening on the front of the U-shaped fork, and the rear end of the fastener passes through the U-shaped fork, the through groove, and the elastic element from front to back and extends to the outside of the U-shaped fork opening.

[0008] Optionally, the scraper and the rubber strip are connected by a limiting component. The limiting component is used to assemble and disassemble the rubber strip and the scraper. The limiting component includes a locking block, which is installed on the inner wall of the scraper. The front and back of the rubber strip, and the corresponding positions of the locking block, are provided with locking grooves that are adapted to the locking block. The side of the locking block near the locking groove passes through the locking groove and extends into it, contacting the inner wall of the locking groove.

[0009] Optionally, dovetail clips are installed on both the front and back of the scraper, and rotatable geometric steel wires are provided on the inner wall of the dovetail clips. The rubber strip adopts a contour-following structure.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: This invention forms a movable joint structure through a U-shaped fork, scraper, and spring connecting assembly. Elastic elements are added to both sides, allowing the U-shaped fork to separate from the scraper surface, reducing or even eliminating wear. Since the force is changed from the common interference fit holding force to the elastic force of the elastic element, the strength remains the same after long-term use. By setting a limiting component, the rubber strip and scraper can be quickly disassembled and assembled, while ensuring the stability of the rubber strip installed on the scraper. The rubber strip adopts a contoured structure, and the dovetail clips enhance the anti-deformation ability of the outer edge of the rubber strip, improving its service life. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the disassembled adhesive strip of this utility model; Figure 3 This is a three-dimensional structural diagram of the connector, scraper, and adhesive strip of this utility model, separated out. Figure 4 This is an exploded view of the three-dimensional structure of this utility model.

[0012] In the diagram: 1. Connector; 100. Scraper; 101. U-shaped fork; 102. Rubber strip; 2. Spring connecting assembly; 21. Through groove; 22. Elastic element; 23. Fastener; 3. Limiting assembly; 31. Locking block; 32. Locking groove; 33. Dovetail clip; 34. Rhomboid steel wire. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0014] Please see Figure 1-4A spring-loaded magic mop includes a connector 1, which serves as an intermediate connector between the mop handle and a lower functional component. The connector 1 secures the mop handle, allowing it to be inserted into the connector 1. It also transmits the cleaning force applied by the user when holding the mop handle to the scraper 100 and the rubber strip 102. The scraper 100 is located below the connector 1, and a U-shaped fork 101 is mounted on the bottom of the connector 1. The U-shaped fork 101 acts as a force transmission medium between the connector 1 and the scraper 100, with one end fixed to the connector. The head 1 has its bottom end connected to the scraper 100 via a spring connecting assembly 2. This assembly guides the force transmitted from the head 1 to the scraper 100 and works with the scraper 100 to achieve joint movement during cleaning. The U-shaped structure can be adapted to the shape of the scraper 100, ensuring flexibility during joint movement and allowing the scraper 100 to conform to different floor curvatures. The inner wall of the scraper 100 has a rubber strip 102. The rubber strip 102 directly cleans the parts and removes water stains, dust, hair, and other dirt from the floor through close contact with the ground.

[0015] The scraper 100 and the U-shaped fork 101 are connected by a spring connecting assembly 2. The spring connecting assembly 2 includes a through groove 21, an elastic element 22, and a fastener 23. The through groove 21 is opened on the front of the scraper 100 and corresponds to the position of the opening of the U-shaped fork 101. The through groove 21 provides a precise mounting slot for the elastic element 22, restricting the radial offset of the elastic element 22, and provides a through channel for the fastener 23, guiding the fastener 23 to pass through the U-shaped fork 101 and the elastic element 22 in sequence to achieve axial fixation of the assembly. The elastic element 22 is set on the inner wall of the through groove 21, and both ends of the elastic element 22 are respectively connected to the inner wall of the through groove 21 and the U-shaped fork 101. The inner walls of 01 are in contact with each other. The elastic element 22 is made of compression spring. The elastic element 22 separates the U-shaped fork 101 from the surface of the scraper 100 through its own elastic force, replacing the traditional interference fit bearing force, and realizing the non-contact elastic connection of the joint. The fastener 23 is set at the through-hole on the front of the U-shaped fork 101. The rear end of the fastener 23 passes through the U-shaped fork 101, through-hole 21, elastic element 22 from front to back and extends to the outside of the through-hole of the U-shaped fork 101. The fastener 23 realizes the axial limit of the U-shaped fork 101, elastic element 22 and scraper 100, preventing the three from axially falling off during use, while retaining radial movement space.

[0016] The scraper 100 and the adhesive strip 102 are connected by a limiting component 3. The limiting component 3 includes a locking block 31, which is installed on the inner wall of the scraper 100. The front and back of the adhesive strip 102, corresponding to the position of the locking block 31, each have a slot 32 adapted to the locking block 31. The side of the locking block 31 closest to the slot 32 penetrates the slot 32 and extends into it, contacting the inner wall of the slot 32. The locking block 31 is used to embed into the slot 32 of the adhesive strip 102, achieving positioning and fixing of the adhesive strip 102 and the scraper 100, limiting the lateral or vertical movement of the adhesive strip 102 during cleaning. The locking block 31 and the slot 32 are cylindrical, ensuring that the adhesive strip 102 cannot axially wobble when the locking block 31 is inserted into the slot 32, providing a basis for the subsequent secondary clamping of the dovetail clamp 33, forming a double fixation. To further reduce the risk of the adhesive strip 102 falling off, dovetail clips 33 are installed on both the front and back of the scraper 100. The dovetail clips 33 use their own elastic clamping force to further fix the adhesive strip 102 to the scraper 100. The rolled edge design of the dovetail clips 33 can conform to the contour structure of the adhesive strip 102, enhancing the deformation resistance of the outer edge of the adhesive strip 102. The rolled edge structure provides support and constraint to the outer edge of the adhesive strip 102. Combined with the contour design of the adhesive strip 102, it prevents the edge of the adhesive strip 102 from curling up after long-term scraping, thus extending the service life of the adhesive strip 102. The inner wall of the dovetail clips 33 is provided with rotatable geometric wires 34. The geometric wires 34 enhance the elastic clamping force of the dovetail clips 33, and at the same time, the rotatable characteristic reduces the resistance when the dovetail clips 33 open and close. The adhesive strip 102 adopts a contour structure and is made of silicone strip.

[0017] When the rubber strip 102 needs to be replaced, pinch the two sides of the shaped steel wire 34 with both hands to pry open the dovetail clip 33 and the bottom of the scraper 100, causing the bottom of the scraper 100 to separate from the rubber strip 102. Then pull the rubber strip 102 forward, and the locking block 31 will separate from the locking groove 32, allowing the rubber strip 102 to be pulled out from the scraper 100. The old rubber strip 102 can then be removed and a new rubber strip 102 can be installed. Align the locking groove 32 with the locking block 31 and insert it into the scraper 100 from front to back. Then release the shaped steel wire 34, and the dovetail clip 33 will return to its original position through elasticity, allowing the dovetail clip 33 and the scraper 100 to clamp the rubber strip 102 again.

[0018] When using the mop, hold the mop handle with both hands, press the rubber strip 102 against the ground, and push the mop forward or backward. During this process, the U-shaped fork 101 transmits the pushing force of the mop handle through the spring connecting assembly 2. The elastic force of the elastic element 22 will adaptively adjust the relative position of the U-shaped fork 101 and the scraper 100 to ensure that the rubber strip 102 is always in close contact with the ground.

[0019] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A spring-loaded magic mop, characterized in that: Includes a connector (1), a scraper (100) is provided below the connector (1), a U-shaped fork (101) is installed at the bottom of the connector (1), the scraper (100) and the U-shaped fork (101) are connected by a spring connecting assembly (2), the spring connecting assembly (2) is used for non-contact connection between the scraper (100) and the U-shaped fork (101), and a rubber strip (102) is sandwiched in the inner wall of the scraper (100).

2. The spring-loaded magic mop according to claim 1, characterized in that: The spring connection assembly (2) includes a through groove (21), an elastic element (22) and a fastener (23). The through groove (21) is opened on the front of the scraper (100) and corresponds to the position of the U-shaped fork (101) opening. The elastic element (22) is disposed on the inner wall of the through groove (21).

3. The spring magic mop according to claim 2, wherein: The fastener (23) is located at the opening on the front of the U-shaped fork (101). The rear end of the fastener (23) passes through the U-shaped fork (101), the through groove (21), and the elastic element (22) from front to back and extends to the outside of the opening of the U-shaped fork (101).

4. The spring magic mop according to claim 3, wherein: The scraper (100) and the rubber strip (102) are connected by a limiting component (3). The limiting component (3) is used to assemble and disassemble the rubber strip (102) and the scraper (100). The limiting component (3) includes a locking block (31). The locking block (31) is installed on the inner wall of the scraper (100). The front and back of the rubber strip (102) and the position corresponding to the locking block (31) are provided with a slot (32) that is compatible with the locking block (31). The side of the locking block (31) near the slot (32) passes through the slot (32) and extends into its interior to contact the inner wall of the slot (32).

5. The spring-loaded magic mop according to claim 4, characterized in that: The scraper (100) is equipped with dovetail clips (33) on both the front and back sides. The inner wall of the dovetail clips (33) is provided with rotatable geometric steel wires (34). The rubber strip (102) adopts a contoured structure.