Cloth leftover dismounting device and cloth clamping mop comprising same

By incorporating a drive switch and a torsion spring assembly on the mop, the automatic clamping and detachment of the mop cloth is achieved, solving the problem of hand contamination in existing technologies and providing a quick and pollution-free disassembly and installation method.

CN223667898UActive Publication Date: 2025-12-16DELI GROUP CO LTD
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Patent Information

Application Number
CN202423166094.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-16
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

When disassembling and installing the mop head, the hands are likely to come into contact with the mop head, leading to hand contamination.

Method used

A mop head removal device is adopted, which includes a mop head, a clamping assembly and a drive assembly. The automatic clamping and separation of the mop head is achieved by the cooperation of a drive switch and a torsion spring assembly, avoiding hand contact.

Benefits of technology

When disassembling and installing the mop, hands do not need to directly touch the mop, avoiding contamination, and the operation is quick and convenient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cloth head dismounting device and a cloth clamping mop comprising the same, the device comprises a mop head, the mop head is provided with a clamping assembly used for clamping mop cloth and a driving assembly used for driving the clamping assembly to be separated from the mop cloth or clamping the mop cloth; the driving assembly comprises a driving switch located on the same side of the clamping assembly and a torsional spring assembly capable of abutting against the driving switch, the torsional spring assembly is connected with the clamping assembly, when the driving switch abuts against the torsional spring assembly, the clamping assembly and the mop cloth are clamped, and when the driving switch abuts against the torsional spring assembly, the clamping assembly and the mop cloth are clamped. When the driving switch is driven to be separated from the torsional spring assembly, the torsional spring assembly drives the clamping assembly to be separated from the mop; according to the technical scheme, the mop has the advantages that in the mop disassembling and assembling process, the hand cannot make contact with the mop, and the hand cannot be dirty.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of mops, in particular to a mop head dismounting device and a clamp cloth mop containing the same. BACKGROUND

[0002] The clamp cloth mop is a flat mop structure with detachable mop cloth for cleaning, which is widely used in the cleaning field. The mop cloth and the mop head are detachably connected. Currently, a magic tape that can be bonded to each other is arranged between the mop head and the mop cloth. The mop cloth and the mop head are bonded by the magic tape, or a clamping and flipping structure with pre-tightening force is arranged on the mop head to clamp the mop cloth. However, in the process of dismounting and assembling the mop cloth, the hand will inevitably contact the mop cloth, which will contaminate the hand. CONTENT OF THE UTILITY MODEL

[0003] In view of the above problems of the prior art, the present application provides a mop head dismounting device, which can dismount and assemble the mop cloth without contacting the mop cloth and contaminating the hand.

[0004] In order to solve the above technical problems, the technical scheme adopted by the present application is as follows: a mop head dismounting device, which comprises a mop head, a clamping assembly for clamping the mop cloth is arranged on the mop head, and a driving assembly for driving the clamping assembly to separate or clamp the mop cloth is arranged on the mop head. The driving assembly comprises a driving switch located on the same side of the clamping assembly and a torsional spring assembly capable of abutting against the driving switch, and the torsional spring assembly is connected with the clamping assembly. When the driving switch abuts against the torsional spring assembly and the clamping assembly clamps the mop cloth, the driving switch is driven to be separated from the torsional spring assembly, and the torsional spring assembly drives the clamping assembly to separate from the mop cloth.

[0005] With the above structure, the mop head dismounting device of the present application only needs to drive the driving switch to be separated from the torsional spring assembly in the process of dismounting the mop cloth. The torsional spring is deformed without the limiting of the driving switch, so as to drive the clamping assembly to be loose and separated from the mop cloth. At this time, the mop cloth and the mop head can be separated. The above separation action can be completed by manually contacting the driving switch, so the hand will not contact the mop cloth, thereby avoiding the hand being contaminated by the used mop cloth. When assembling, one hand can be used to move the driving switch, and the other hand can be used to press the clamping assembly or the torsional spring assembly. The torsional spring assembly is pressed into the abutting position of the driving switch to abut against the switch again. At this time, the clamping assembly is driven to follow the torsional spring to press down and clamp the mop cloth. The hand will not contact the mop cloth in this process.

[0006] Furthermore, the mop head is provided with a pair of first pressure blocks, which are respectively located at both ends of the mop head along the length direction of the mop head; each of the first pressure blocks is provided with a first groove for accommodating the drive switch, and the drive switch can extend and retract relative to the first groove to abut or separate from the torsion spring assembly; with this structure, the drive switch can be easily assembled onto the mop head through the pressure blocks and realize a back-and-forth sliding action along the first groove.

[0007] Furthermore, a tension spring is provided between the drive switch and the mop head. The tension spring is used to drive the drive switch to extend and abut against the torsion spring assembly. With this structure, the drive switch can be manually pried open to separate it from the torsion spring assembly. When abutment is required, the drive switch is always extended under the action of the tension spring to maintain the stability of the abutment state and prevent the torsion spring assembly from accidentally separating from the drive switch.

[0008] Furthermore, a first protrusion is provided on the surface of the first pressing block adjacent to the mop head, and a first insertion hole is provided on the corresponding mop head. The first protrusion and the first insertion hole are tightly fitted together. This structure connects the first pressing block and the mop head, preventing the drive switch from falling off.

[0009] Furthermore, the drive switch includes a pushing part and a pressing part connected to each other. The pushing part protrudes from the upper surface of the first pressing block, and the pressing part is slidably fitted into the second groove provided on the first pressing block. With this structure, after the first pressing block is fastened to the mop head, the pushing part protrudes from the upper surface of the first pressing block to facilitate the drive switch, while the pressing part extends and retracts along the second groove to abut and separate from the torsion spring assembly.

[0010] Furthermore, the torsion spring assembly includes a pair of torsion springs, one end of which is connected to the mop head and the other end of which is connected to the clamping assembly. The connection end of the clamping assembly can abut against the drive switch. With this structure, when the drive switch abuts against the torsion spring, the clamping assembly is in a clamping state on the mop. When the drive switch is driven away from the abutting spring, the torsion spring will deform and drive the clamping assembly to separate from the mop head, thereby releasing the mop.

[0011] Furthermore, the front end of the pressing part is provided with an arc-shaped extension surface, and the torsion spring is provided with a handle. With the above structure, when it is necessary to clamp the mop, the handle of the torsion spring is held and pressed down until the torsion arm of the torsion spring abuts against the arc-shaped extension surface. During this process, the arc-shaped extension surface is squeezed inward and the tension spring is compressed. Under the guidance of the arc-shaped extension surface, it continues to move downward until it is abutted by the pressing part below the pressing part. At this time, the clamping assembly clamps the mop.

[0012] Further, the clamping assembly includes two clamping rods arranged at the two ends of the mop head in the width direction, and a third groove is arranged on the mop head for accommodating the clamping rods. In this way, the mop cloth can be wrapped around the bottom of the mop head, and then the two ends of the mop cloth are inserted into the third groove, and then the clamping rods are clamped to achieve connection. When disassembling, the abutment between the driving switch and the torsional spring is only manually removed, the torsional spring is deformed to drive the clamping rods to run upward to disengage the clamping of the mop cloth, thereby achieving the effect of disassembling the mop cloth without contact.

[0013] Further, the clamping rods are arranged with a plurality of ribs on the side walls on the two sides of the mop head in the width direction. In this way, when the clamping rods clamp the mop cloth, the plurality of ribs can improve the clamping force of the clamping rods on the mop cloth, so that the mop cloth is not easily separated from the mop head during use.

[0014] Further, a second pressing block is arranged in the middle of the pair of first pressing blocks, a second protrusion is arranged on the surface adjacent to the mop head of the second pressing block, a second insertion hole is arranged on the mop head, and the second protrusion is tightly fitted with the second insertion hole. A connecting hole for connecting the mop rod is arranged on the upper surface of the second pressing block. In this way, the second pressing block is connected with the mop head, and then the mop rod is connected to the connecting hole, thereby achieving the assembly of the mop.

[0015] The application also provides a mop with a cloth disassembly device. The mop with the cloth disassembly device of the application can be disassembled without contacting the hand and dirtying the hand. Moreover, the disassembly is fast and convenient. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Structure diagram of the clamping state of the cloth disassembly device of the application.

[0017] Figure 2 Structure diagram of the first view of the exploded view of the cloth disassembly device of the application.

[0018] Figure 3 Structure diagram of the second view of the exploded view of the cloth disassembly device of the application.

[0019] Figure 4 Structure diagram of the loosening state of the cloth disassembly device of the application.

[0020] Figure 5 Structure diagram of the pressing block hidden state of the cloth disassembly device of the application.

[0021] Figure 6 Structure diagram of the pair of clamping rods of the application.

[0022] Figure 7 The structural schematic diagram of the first view of the first pressing block of the present application.

[0023] Figure 8 The structural schematic diagram of the second view of the first pressing block of the present application.

[0024] Figure 9 The structural schematic diagram of the first view of the second pressing block of the present application.

[0025] Figure 10 The structural schematic diagram of the second view of the second pressing block of the present application.

[0026] Figure 11 The structural schematic diagram of the torsion spring of the present application.

[0027] Figure 12 The structural schematic diagram of the driving switch of the present application.

[0028] As shown in the drawings: 1. Mop head, 101. First insertion hole, 102. Third groove, 103. Second insertion hole, 2. Clamping assembly, 201. Clamping rod, 202. Convex rib, 3. Driving assembly, 301. Driving switch, 3011. Pushing part, 3012. Pressing part, 3013. Arc-shaped extension surface, 302. Torsion spring assembly, 3021. Torsion spring, 3022. Gripping rod, 4. First pressing block, 401. First groove, 402. First protruding block, 403. Second groove, 5. Tension spring, 6. Second pressing block, 601. Second protruding block, 602. Connecting hole. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the embodiments and drawings. Obviously, the described embodiments are only the preferred embodiments, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work, belong to the protection scope of the present application;

[0030] Furthermore, it should be noted that when a component is described as being "fixed to" another component, it can be directly on the other component or it may be fixed by another intermediate component. When a component is described as being "connected to" another component, it can be directly connected to the other component or it may be fixed by another intermediate component. When a component is described as being "set on" another component, it can be set directly on the other component or it may be fixed by another intermediate component. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only; the front and rear ends of this application are defined with the end where the pen tip is extended in the use state as the front and the end where the pressing part is located as the rear. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] As attached Figures 1-12 As shown, this application discloses a mop head removal device. The device includes a mop head 1, on which a clamping assembly 2 for holding the mop cloth and a driving assembly 3 for driving the clamping assembly 2 to separate from or hold the mop cloth are provided. The driving assembly 3 includes a driving switch 301 located on the same side as the clamping assembly 2 and a torsion spring assembly 302 that abuts against the driving switch 301. The torsion spring assembly 302 is connected to the clamping assembly 2. When the driving switch 301 abuts against the torsion spring assembly 302, the clamping assembly 2 clamps the mop cloth. When the driving switch 301 is driven to disengage from the torsion spring assembly 302, the torsion spring assembly 302 drives the mop cloth to separate from or hold the mop cloth. The clamping component 2 is separated from the mop. Specifically, in the structure described above, the drive switch and the clamping component are on the same side, both located on the upper surface of the mop head. The mop (not shown in the figure, made of a material with water absorption function) is wrapped around the lower surface of the mop head to contact the surface to be cleaned. The two ends of the mop are folded onto the upper surface of the mop head and connected to the mop head by clamping with the clamping component. The drive switch abuts against the torsion spring assembly to limit the deformation state of the torsion spring. The deformation force of the torsion spring itself causes it to be in different states, thereby driving the clamping component to clamp or release the mop. This process can be completed by manually pushing the drive switch without touching the mop by hand.

[0032] With the above structure, the mop head disassembling device of the application only needs to separate the driving switch from the torsional spring assembly during the process of disassembling the mop, and the torsional spring is deformed without the limiting of the driving switch, so that the driving clamping assembly is loosened and separated from the mop, at this time, the mop and the mop head can be separated, and the above separation action can be completed by manually contacting the driving switch, so that the hand is not in contact with the mop, thereby avoiding the hand being dirty by contacting the used mop. When assembling, one hand can be used to move the driving switch, and the other hand can be used to press the clamping assembly or the torsional spring assembly, so that the torsional spring assembly is pressed into the abutting position of the driving switch and abuts with the switch again, at this time, the clamping assembly is driven to follow the torsional spring to press down and clamp the mop, and the hand is not in contact with the mop in the process.

[0033] As shown in the accompanying drawings, Figures 1-4 , Figures 7-8 The mop head 1 of the application is provided with a pair of first pressing blocks 4, which are arranged at the positions close to the ends of the mop head 1 along the length direction of the mop head 1, i.e. at the positions close to the ends of the upper surface of the mop head along the length direction. Each of the first pressing blocks 4 is provided with a first recess 401 for accommodating the driving switch 301, and the driving switch 301 can be extended or retracted relative to the first recess 401 to abut or separate from the torsional spring assembly 302. The first recess penetrates the thickness of the first pressing block, and the driving switch can be conveniently assembled to the mop head through the pressing block and realize the sliding action along the first recess.

[0034] As shown in the accompanying drawings, Figures 3-5 and Figure 12 The driving switch 301 and the mop head 1 of the application are provided with a tension spring 5, which is used to drive the driving switch 301 to extend and abut with the torsional spring assembly 302. Specifically, a hook is arranged on one side of the driving switch close to the abutting position of the torsional spring assembly, and the other end of the tension spring is hooked on the column arranged on the mop head, so that the tension spring is connected between the driving switch and the mop head, and the driving switch is always stretched in the direction of abutting with the torsional spring assembly. With the above structure, the driving switch is manually moved to separate from the torsional spring assembly, and the driving switch is always in the extended action under the action of the tension spring when abutting is needed, so as to maintain the stability of the abutting state and avoid the misseparation of the torsional spring assembly from the driving switch.

[0035] As shown in the accompanying drawings, Figures 2-3 and Figure 8As shown in the drawings, the first pressing block 4 described in the present application is provided with a first protrusion 402 on the surface adjacent to the mop head 1, and the mop head 1 is provided with a first insertion hole 101 corresponding to the first protrusion 402, and the first protrusion 402 is tightly fitted with the first insertion hole 101 (interference fit, not easy to disengage after insertion). Specifically, four first protrusions can be provided on the lower surface of the first pressing block at the four corner positions, and the four first insertion holes on the mop head are tightly fitted with each other. The structure connects the first pressing block and the mop head, avoiding the falling of the driving switch.

[0036] As shown in the drawings, Figures 2-3 , Figure 8 and Figure 12 As shown in the drawings, the driving switch 301 described in the present application includes a pushing part 3011 and a pressing part 3012 connected with each other, the pushing part 3011 protrudes from the upper surface of the first pressing block 4, and the pressing part 3012 is slidingly fitted into the second groove 403 provided on the first pressing block 4. Specifically, as an example, the pressing part described above can be two parallel pressing rods, and the pushing part is block-shaped, and the pressing rods are connected to the side wall of the block-shaped pushing part. A second groove is provided on the lower surface of the driving switch for the sliding fitting of the two pressing rods. When the first pressing block is connected with the mop head by buckling, the pushing part protrudes from the upper surface of the first pressing block to facilitate the driving of the driving switch, and the pressing part slides along the second groove to realize the abutment and separation of the torsional spring assembly.

[0037] As shown in the drawings, Figures 1-5 and Figure 11 As shown in the drawings, the torsional spring assembly 302 described in the present application includes a pair of torsional springs 3021, one end of the torsional spring 3021 is connected with the mop head 1, and the other end is connected with the clamping assembly 2, and the connection end of the clamping assembly 2 can abut with the driving switch 301. Specifically, the pair of torsional springs 3021 each includes two spring parts and a square-shaped torsional arm, wherein the two spring parts are clamped in the mop head (one spring part of one torsional spring is located below one first pressing block, and the other spring part of the other torsional spring is located below the second pressing block, and the upper surface of the pressing block and the upper surface of the mop head are provided with grooves for accommodating the spring parts, and the part of the torsional spring is fixed between the pressing block and the mop head through the clamping tight fitting therebetween), and the torsional arm is connected with the clamping assembly, and when the torsional arm deforms itself without the abutment of the driving switch, the clamping assembly can be popped up from the mop head. When the driving switch abuts the torsional spring, the clamping assembly is in a clamping state of the mop cloth. When the driving switch is driven to be away from the abutment of the torsional spring, the torsional spring will deform to drive the clamping assembly to separate from the mop head, thereby releasing the mop cloth.

[0038] As shown in the drawings, Figures 1-4As shown, the front end of the pressing part 3012 described in this application is provided with an arc-shaped extension surface 3013, and the torsion spring 3021 is provided with a handle 3022. Specifically, the arc-shaped extension surface gradually extends downwards at an angle, and the handle is disposed on the torsion arm of the torsion spring. With the above structure, when it is necessary to clamp the mop, the handle of the torsion spring is held down and pressed until the torsion arm of the torsion spring abuts against the arc-shaped extension surface. During this process, the arc-shaped extension surface is squeezed inwards, and the tension spring is compressed. Guided by the arc-shaped extension surface, it continues to descend until it is abutted by the pressing part below the pressing part. At this time, the clamping assembly clamps the mop. Figure 1 The state shown.

[0039] As attached Figures 1-5 and Figure 6 As shown, the clamping assembly 2 of this application includes clamping rods 201. Two clamping rods 201 are provided, located at approximately both ends of the mop head 1 in the width direction. The mop head 1 also has a third groove 102 for accommodating the clamping rods 201. Specifically, the two clamping rods are parallel to each other, and each rod has a sleeve shaft connected to the torsion arm of a torsion spring. Specifically, the torsion arm of the torsion spring has a square frame structure, which is connected to the sleeve shaft on the clamping assembly through a through-fitting mechanism. When the torsion spring is not abutted by the drive switch, it deforms, causing the two clamping rods to rise, forming as shown in the diagram. Figure 4 As shown in the loosened state, the mop can be separated from the mop head. With this structure, the mop can be wrapped around the bottom of the mop head, and then the two ends of the mop can be folded up to the upper surface of the mop head and inserted into the third groove respectively. Then, it is clamped by the clamping rod to achieve the connection. When disassembling, it is only necessary to manually remove the drive switch from the contact with the torsion spring. The deformation of the torsion spring will drive the clamping rod to move upward to disengage from the clamping of the mop, achieving the effect of disassembling the mop without contact.

[0040] like Figures 2-6 As shown, the clamping rod 201 of this application is provided with a plurality of protruding ribs 202 on the side walls on both sides of the mop head 1 in the width direction; the protruding ribs 202 are parallel to each other and extend vertically on the side walls of the clamping rod 201. With this structure, when the clamping rod clamps the mop, the clamping force of the clamping rod on the mop is increased by the plurality of protruding ribs, and the mop is less likely to detach from the mop head during the use of the mop.

[0041] As attached Figures 1-4 and Figure 10As shown, the second pressing block 6 is provided between the first pressing blocks 4, and the second protrusion 601 is provided on the surface of the mop head 1 adjacent to the second pressing block 6. Correspondingly, the second insertion hole 103 is provided on the mop head 1, and the second protrusion 601 is tightly fitted into the second insertion hole 103. The upper surface of the second pressing block 6 is provided with a connecting hole 602 for connecting the mop rod. Specifically, four second protrusions are provided at the four corner positions of the lower surface of the second pressing block, and the second insertion hole is correspondingly provided on the upper surface of the mop head. The second pressing block is fixed on the mop head by tightly fitting the second protrusions into the second insertion hole. The second pressing block is connected with the mop head by using the above structure, and then the mop rod is connected into the connecting hole, so that the mop is assembled.

[0042] The mop with cloth clamping function provided by the application comprises the mop head device for disassembling mop head as described above. The mop with cloth clamping function provided by the application can be used to disassemble the dirty mop without contacting the hand and dirtying the hand. The mop with cloth clamping function provided by the application is fast and convenient to disassemble.

[0043] The specific working principle and process of the mop head device for disassembling mop head as described above are as follows: first, the components are assembled to form the complete mop head device for disassembling mop head, and then the mop rod is assembled in the connecting hole. When the mop is used, the driving switch is manually bent towards the two ends of the length direction of the mop head. At this time, the abutting force of the pressing part of the driving switch against the torsion arm of the torsion spring is cancelled, and the torsion spring is lifted by the self-deformation force of the torsion spring. Then, the mop is wrapped around the mop head, and the two ends of the mop are placed in the third groove of the mop head. Then, the torsion spring is pressed downward by the handle on the torsion spring, and the clamping assembly is followed downward until the mop is clamped. At this time, the driving switch maintains the clamping state by abutting against the torsion spring. At this time, the mop can be used for cleaning. When the mop needs to be disassembled, the driving switch is manually bent, the driving switch is retracted to cancel the abutting pressure of the torsion spring, and the torsion spring is deformed by the self-abutting force to lift the clamping assembly. At this time, the mop can be separated from the mop head. The process does not contact the dirty mop with the hand, so that the hand is not dirty. Figures 1-4 As shown, the second pressing block 6 is provided between the first pressing blocks 4, and the second protrusion 601 is provided on the surface of the mop head 1 adjacent to the second pressing block 6. Correspondingly, the second insertion hole 103 is provided on the mop head 1, and the second protrusion 601 is tightly fitted into the second insertion hole 103. The upper surface of the second pressing block 6 is provided with a connecting hole 602 for connecting the mop rod. Specifically, four second protrusions are provided at the four corner positions of the lower surface of the second pressing block, and the second insertion hole is correspondingly provided on the upper surface of the mop head. The second pressing block is fixed on the mop head by tightly fitting the second protrusions into the second insertion hole. The second pressing block is connected with the mop head by using the above structure, and then the mop rod is connected into the connecting hole, so that the mop is assembled.

Claims

1. A mop disassembly device, the device comprising a mop head (1), characterised in that: The mop head (1) is provided with a clamping assembly (2) for clamping the mop cloth and a driving assembly (3) for driving the clamping assembly (2) to separate or clamp the mop cloth; the driving assembly (3) comprises a driving switch (301) located on the same side of the clamping assembly (2) and a torsion spring assembly (302) capable of abutting against the driving switch (301), the torsion spring assembly (302) is connected with the clamping assembly (2); when the driving switch (301) abuts against the torsion spring assembly (302) and the clamping assembly (2) clamps the mop cloth, the driving switch (301) is driven to be separated from the torsion spring assembly (302), and the torsion spring assembly (302) drives the clamping assembly (2) to separate from the mop cloth.

2. The doffing head apparatus of claim 1, wherein: The mop head (1) is provided with a pair of first pressing blocks (4), which are arranged at the positions close to the two ends of the mop head (1) along the length direction of the mop head (1); each first pressing block (4) is provided with a first groove (401) for accommodating the driving switch (301), and the driving switch (301) can be extended or retracted relative to the first groove (401) to abut against or separate from the torsion spring assembly (302).

3. The doffing head apparatus of claim 2, wherein: The driving switch (301) and the mop head (1) are provided with a tension spring (5), which is used for driving the driving switch (301) to extend and abut against the torsion spring assembly (302).

4. The doffing head apparatus of claim 2, wherein: The surface adjacent to the first pressing block (4) and the mop head (1) is provided with a first protrusion (402), and the mop head (1) is correspondingly provided with a first insertion hole (101), and the first protrusion (402) is tightly matched with the first insertion hole (101).

5. The doffing head apparatus of claim 2, wherein: The driving switch (301) comprises a pushing part (3011) and a pressing part (3012) connected with each other, the pushing part (3011) protrudes from the upper surface of the first pressing block (4), and the pressing part (3012) is slidably sleeved in the second groove (403) provided on the first pressing block (4).

6. The doffing head apparatus of claim 5, wherein: The torsion spring assembly (302) comprises a pair of torsion springs (3021), one end of the torsion spring (3021) is connected with the mop head (1), the other end is connected with the clamping assembly (2), and the connecting end of the clamping assembly (2) can abut against the driving switch (301).

7. The doffing head apparatus of claim 6, wherein: The front end of the pressing part (3012) is provided with an arc-shaped extension surface (3013), and the torsion spring (3021) is provided with a handle (3022).

8. The doffing head apparatus of claim 1, wherein: The clamping assembly (2) comprises a clamping rod (201), and the clamping rod (201) is provided with two clamping rods arranged at the positions close to the two ends of the mop head (1) in the width direction of the mop head (1), and the mop head (1) is further provided with a third groove (102) for accommodating the clamping rod (201).

9. The doffing head apparatus of claim 8, wherein: The clamping rod (201) is provided with a plurality of ribs (202) on the side walls located on the two sides of the mop head (1) in the width direction.

10. The doffing head apparatus of claim 2, wherein: The second pressing block (6) is provided with a second protrusion (601) on the surface adjacent to the mop head (1), and the mop head (1) is provided with a second insertion hole (103) corresponding to the second protrusion (601), and the second protrusion (601) is tightly fitted with the second insertion hole (103); the upper surface of the second pressing block (6) is provided with a connecting hole (602) for connecting the mop rod.

11. A mop for mopping floors, characterized in that: The cloth-removable mop comprises the cloth-removable device according to any one of claims 1-10.