Cloth wringing mop
The installation process of the mop cleaning cloth is simplified by using a clamping mechanism and a gear transmission system, which solves the problem of complicated operation in the existing technology and enables convenient replacement of the cleaning cloth.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG LIVINGHUE HOUSEWARE PROD CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-06-02
Smart Images

Figure CN224307286U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mop technology, and in particular relates to a cloth-clamping mop. Background Technology
[0002] In daily life, mopping devices are core tools in modern cleaning scenarios, and their detachable cleaning cloth design effectively solves the problem of deep cleaning. While current mainstream products perform well in the cleaning process, there are significant pain points in the cloth installation process: users need to manually pry open the mop head clamping mechanism, precisely align the cloth edges, and then perform a secondary fixation. This installation process, involving multiple delicate operations, not only increases the barrier to entry and makes operation more cumbersome, but also directly affects user satisfaction with the product experience. Utility Model Content
[0003] To address the shortcomings of existing technologies, a cloth-clamping mop is provided that allows users to easily clamp or release the cleaning cloth.
[0004] This utility model is achieved by the following technical solution: a cloth-clamping mop, comprising:
[0005] substrate;
[0006] Two sets of clamping mechanisms are symmetrically arranged on both sides of the substrate. Each clamping mechanism includes a plate body that is slidably disposed inside the substrate. One end of the plate body extends to the outside of the substrate and is provided with a clamping part for clamping a cleaning cloth. The plate body is also provided with a first toothed rack that extends along the sliding direction of the plate body.
[0007] The gear is rotatably disposed within the base plate and meshes between two first racks, and can drive the first racks to slide, so that the clamping part can perform clamping or releasing movements.
[0008] A driving component includes a driving part located inside a substrate and a pressing part located outside the substrate. The driving part is provided with a second rack that meshes with a gear. The pressing part is used to be pressed by a force in the horizontal direction to drive the driving part to slide, thereby driving the gear to rotate.
[0009] An elastic element applies a force to the drive element and / or the clamping mechanism, causing the clamping part to perform a clamping motion.
[0010] In use, the user presses the pressing part horizontally, causing the second rack to move and rotate the gear. The rotation of the gear causes the two first racks to rotate, causing the clamping plates of the two clamping mechanisms to move outward from the base plate, thus releasing the clamping part. The user then places the mop base plate on the cleaning cloth and releases the pressing part. At this point, under the action of the elastic element, the two clamping mechanisms will move closer to each other, i.e., move inward from the base plate, causing the clamping part to grip the cleaning cloth. The floor can then be wiped clean with the cleaning cloth. To replace the cleaning part, simply repeat the above steps; there is no complicated installation process, making it convenient for users to replace the cleaning cloth.
[0011] Preferably, the upper end of the substrate is provided with two hinge seats for hinged connection with the mop handle. The hinge seats are hollow, and one of the hinge seats is laterally opened in the horizontal direction to form a cavity between itself and the upper side wall of the substrate, which allows the pressing part to move. The pressing part slides in the cavity and is provided with a clearance hole for making way for the hinge shaft.
[0012] The structure is more compact by placing the pressing part on the hinge seat of the handle used for hinged mops.
[0013] Preferably, the hinge seat is provided with an elastic element that applies force to the pressing part.
[0014] The elastic element is set in the hinge seat to apply a force to the pressing part, so that the pressing part can move in the opposite direction of the pressing direction, thereby allowing the driving part to slide in the opposite direction, causing the gear to rotate in the opposite direction, thereby enabling the first rack to slide in the opposite direction, thus indirectly applying a force to the clamping mechanism, causing the clamping part to perform a clamping movement.
[0015] Preferably, the elastic element can be sleeved on the hinge shaft of the mop handle, and a portion of the elastic element extends into the clearance hole.
[0016] The handle of a mop is usually hinged by a hinge shaft and a hinge seat. Therefore, by fitting the elastic element onto the hinge shaft and extending part of it into the clearance hole, the extension and retraction direction of the elastic element can be positioned, making the elastic element more stable. This design is also more compact in structure.
[0017] Preferably, the plate is provided with hooks, and the two ends of the elastic element are connected to the hooks of the two plates to apply a force that brings the plates closer together; or
[0018] The plate body is provided with a mating groove extending along the sliding direction of the plate body. The elastic element is provided in the mating groove. One end of the elastic element abuts against the inner wall of the substrate, and the other end abuts against the groove wall of the mating groove, so as to apply a force to bring the plates closer together.
[0019] The above two methods enable the elastic element to directly apply force to the plate of the clamping mechanism in order to achieve the purpose of clamping movement of the clamping part.
[0020] Preferably, the substrate has a first groove extending along the sliding direction of the plate, and the plate slides in conjunction with the first groove.
[0021] Increase the stability of the plate when it moves.
[0022] Preferably, the first rack is provided with a guide groove extending along the sliding direction of the plate, and both plates are provided with guide strips that extend into the guide grooves of the first rack of the other plate, and the guide grooves and guide strips are slidably engaged.
[0023] The cooperation of guide grooves and guide bars allows the two plates to be mutually constrained during sliding, ensuring the accuracy of the two clamping mechanisms when clamping or releasing.
[0024] Preferably, the lower end of the upper sidewall of the substrate is provided with a second sliding groove, the second sliding groove extends along the pressing direction of the pressing part, and the driving part is slidably fitted in the second sliding groove.
[0025] The second slide can guide the sliding of the drive unit.
[0026] Preferably, the upper sidewall has an upwardly raised portion, which causes the upper sidewall to form a groove. The groove wall is provided with a plurality of evenly spaced limiting protrusions, which can limit the driving part vertically, so that the limiting protrusions and the groove form the second sliding groove.
[0027] The above configuration allows for the creation of a second groove on a relatively thin upper sidewall, thereby making the entire substrate thinner and enabling the mop to be inserted into narrower gaps for cleaning.
[0028] Preferably, the clamping part has a first clamping tooth extending along the sidewall of the substrate, and the sidewall of the substrate is provided with a second clamping tooth that meshes with the first clamping tooth, and the lower end of the first clamping tooth protrudes from the lower surface of the substrate.
[0029] The first and second clamping teeth can better hold the cleaning cloth, and the lower end of the first clamping tooth protrudes from the lower surface of the substrate, which can better grip the cleaning cloth.
[0030] Compared with the existing technology, the beneficial effects of this utility model are: the cleaning cloth can be clamped by only two steps, pressing and releasing the pressing part, which is convenient for users to operate and improves users' product experience satisfaction. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the substrate structure;
[0032] Figure 2 A schematic diagram of the connector for connecting the base plate to the mop handle;
[0033] Figure 3 for Figure 1 A schematic diagram of the abutment structure after the upper sidewall of the substrate is removed;
[0034] Figure 4 This is a schematic diagram of a structure that simultaneously has two types of elastic elements;
[0035] Figure 5 This is a structural diagram showing the structure when it has an elastic element;
[0036] Figure 6 for Figure 4 A schematic diagram of another type of elastic element;
[0037] Figure 7 A schematic diagram of the structure after removing the driving component and a set of clamping mechanisms;
[0038] Figure 8 This is a schematic diagram of the clamping mechanism;
[0039] Figure 9 A bottom view of the substrate after the lower sidewall has been removed;
[0040] Figure 10 This is an enlarged view of the bottom of the substrate;
[0041] Figure 11 This is a schematic diagram of the structure of the lower end of the upper sidewall of the substrate;
[0042] Figure 12 for Figure 1 A sectional view.
[0043] Reference numerals: 1. Base plate; 11. Upper sidewall; 111. Raised portion; 12. First sliding groove; 13. Second clamping tooth; 2. Hinge seat; 21. Chamber; 3. Driving component; 31. Pressing portion; 311. Clearance hole; 32. Driving component; 321. Second rack; 33. First elastic element; 4. Plate body; 41. First clamping tooth; 42. Hook; 43. Second elastic element; 44. Mating groove; 45. First rack; 451. Guide groove; 46. Guide bar; 5. Gear; 6. Groove; 61. Limiting protrusion; 100. Connector. Detailed Implementation
[0044] The present invention will now be further described with reference to the accompanying drawings and specific embodiments.
[0045] like Figure 1 and Figure 2As shown, this embodiment discloses a cloth-clamped mop, which includes a base plate 1. The base plate 1 is rectangular. The upper side of the base plate 1 is an upper side wall 11. The wall at the center of the upper side wall 11 is raised upward to form a raised portion 111. Two hinge seats 2 are provided on the raised portion 111 at intervals. The two hinge seats 2 can be hinged to the joint 100 of the mop handle through the hinge shaft.
[0046] like Figures 3 to 5 , Figures 7 to 10 As shown, two sets of clamping mechanisms are provided on the two symmetrical long sides of the substrate 1. The clamping mechanism includes a plate 4 slidably disposed inside the substrate 1. The plate 4 extends along the width direction of the substrate 1 and slides along the width direction. One end of the plate 4 extends to the outside of the substrate 1 and is provided with a clamping part for clamping a cleaning cloth. The clamping part is a first clamping tooth 41 extending along the long side wall of the substrate 1. A second clamping tooth 13 is provided on the long side wall of the substrate 1 to engage with the first clamping tooth 41. The lower end of the first clamping tooth 41 protrudes from the lower surface of the substrate 1.
[0047] The plate 4 is also provided with a first rack 45 extending along its sliding direction. A gear 5 is also rotatably connected at the center of the substrate 1. The gear 5 is located between the two first racks 45 and meshes with the two first racks 45 for transmission. When the gear 5 rotates, it can drive the first racks 45 to slide along the width direction of the substrate 1, so as to realize the movement of the first clamping teeth 41 moving away from or closer to each other, thereby achieving the effect of loosening or clamping.
[0048] A driving member 3 is also provided on the substrate 1. The driving member 3 includes a driving part 32 located inside the substrate 1 and a pressing part 31 located outside the substrate 1. The driving part 32 has a rectangular sheet-like frame structure. A second rack 321 that meshes with the gear 5 is provided on one side wall inside the frame. The second rack 321 is located above the first rack 45. The gear 5 has an axial thickness, so it can mesh with the first rack 45 and the second rack 321 at different height positions. The pressing part 31 is used to be pressed by a horizontal force to drive the driving part 32 to slide, thereby driving the gear 5 to rotate, so that the plate 4 moves outward from the substrate 1 to realize the release movement of the first clamping tooth 41. The pressing and sliding trajectory of the pressing part 31 is along the length direction of the substrate 1.
[0049] An elastic element is also provided within the substrate 1. This elastic element can directly or indirectly apply force to the clamping mechanism, causing the first clamping tooth 41 to perform a clamping movement. The elastic element includes a first elastic element 33 and a second elastic element 43. The second elastic element 43 is disposed between the two plates 4, each plate 4 having two sets of mutually cooperating hooks 42. The two ends of the second elastic element 43 are hooked onto the hooks 42. The second elastic element 43 is a tension spring, which can pull the plates 4 on both sides inward, thereby causing the plates 4 to move closer together, thus causing the first clamping tooth 41 to perform a clamping movement.
[0050] like Figure 6 As shown, or two sets of mating grooves 44 extending along the sliding direction are provided on the plate 4. A second elastic element 43 is provided in the mating groove 44. The second elastic element 43 is a compression spring. One end of the second elastic element 43 abuts against the groove wall at one end of the mating groove 44, and the other end of the second elastic element 43 abuts against the inner wall of the substrate 1, so that an elastic force is applied to the plate 4 to move inward toward the substrate 1, so that the plates 4 on both sides can be brought inward, thereby realizing that the plates 4 move closer to each other, thereby making the first clamping tooth 41 perform a clamping movement.
[0051] like Figure 6 and Figure 12 As shown, the hinge seat 2 is hollow, with one of the hinge seats 2 having a lateral opening in the horizontal direction, forming a chamber 21 between it and the upper side wall 11 of the substrate, allowing the pressing part 31 to move. The pressing part 31 slides into the chamber 21, and the pressing part 31 is provided with a clearance hole 311 for making way for the hinge shaft. The hinge seat 2 is provided with a first elastic member 33 that applies force to the pressing part 31. The first elastic member 33 can be sleeved on the hinge shaft of the mop handle, and a part of the first elastic member 33 extends into the clearance hole 311.
[0052] In actual production, the first elastic element 33 or the second elastic element 43 can be set separately, or both the first elastic element 33 and the second elastic element 43 can be set simultaneously. All three design methods can achieve the clamping movement of the first clamping tooth 41.
[0053] like Figure 4 , Figure 7 , Figure 8 As shown, the substrate 1 has a first groove 12 extending along the sliding direction of the plate 4 on both sides. The side wall of the plate 4 contacts and engages with the groove wall of the first groove 12, so that the plate 4 and the first groove 12 are slidably engaged.
[0054] The first rack 45 is provided with a guide groove 451 extending along the sliding direction of the plate 4. Both plates 4 are provided with guide bars 46 extending into the guide groove 451 of the first rack 45 of the other plate 4. The guide groove 451 and the guide bar 46 are slidably engaged.
[0055] like Figure 1 and Figure 9 As shown, the raised portion 111 causes the upper side wall 11 to form a groove 6. The groove wall of the groove 6 is provided with a plurality of evenly spaced limiting protrusions 61. The limiting protrusions 61 can limit the up and down position of the drive portion 32, so that the limiting protrusions 61 and the groove 6 form a second sliding groove. The second sliding groove extends along the pressing direction of the pressing portion 31, and the drive portion 32 slides in the second sliding groove.
[0056] In use, the user presses the pressing part 31 horizontally, causing the second rack 321 to move and drive the gear 5 to rotate. The rotation of the gear 5 causes the two first racks 45 to rotate, causing the clamping plates 4 of the two clamping mechanisms to move outward from the base plate 1, thus releasing the first clamping teeth 41. The user then places the base plate 1 of the mop on the cleaning cloth and releases the pressing part 31. At this time, under the action of the elastic element, the two clamping mechanisms will move closer to each other, that is, move inward from the base plate 1, causing the first clamping teeth 41 to clamp the cleaning cloth. The floor can then be wiped with the cleaning cloth. When the cleaning part needs to be replaced, the above operation is repeated. There is no complicated installation process, making it convenient for the user to replace the cleaning cloth.
Claims
1. A cloth-clamping mop, comprising: substrate; Two sets of clamping mechanisms are symmetrically arranged on both sides of the substrate. Each clamping mechanism includes a plate body that is slidably disposed inside the substrate. One end of the plate body extends to the outside of the substrate and is provided with a clamping part for clamping a cleaning cloth. The plate body is also provided with a first toothed rack that extends along the sliding direction of the plate body. The gear is rotatably disposed within the base plate and meshes between two first racks, and can drive the first racks to slide, so that the clamping part can perform clamping or releasing movements. A driving component includes a driving part located inside a substrate and a pressing part located outside the substrate. The driving part is provided with a second rack that meshes with a gear. The pressing part is used to be pressed by a force in the horizontal direction to drive the driving part to slide, thereby driving the gear to rotate. An elastic element applies a force to the drive element and / or the clamping mechanism, causing the clamping part to perform a clamping motion.
2. The cloth-clamping mop according to claim 1, characterized in that: The upper end of the substrate is provided with two hinge seats for hinged connection with the mop handle. The hinge seats are hollow, and one of the hinge seats is laterally opened in the horizontal direction to form a cavity between itself and the upper side wall of the substrate, which allows the pressing part to move. The pressing part slides in the cavity and is provided with a clearance hole for the hinge shaft to make way.
3. The cloth-clamping mop according to claim 2, characterized in that: The hinge seat is provided with an elastic element that applies force to the pressing part.
4. The cloth-clamping mop according to claim 3, characterized in that: The elastic element can be sleeved on the hinge shaft of the mop handle, and a portion of the elastic element extends into the clearance hole.
5. The cloth-clamping mop according to any one of claims 1 to 4, characterized in that: The plate is provided with hooks, and the two ends of the elastic element are connected to the hooks of the two plates to apply a force that brings the plates closer together; or The plate body is provided with a mating groove extending along the sliding direction of the plate body. The elastic element is provided in the mating groove. One end of the elastic element abuts against the inner wall of the substrate, and the other end abuts against the groove wall of the mating groove, so as to apply a force to bring the plates closer together.
6. The cloth-clamping mop according to claim 1, characterized in that: The substrate has a first sliding groove extending along the sliding direction of the plate, and the plate slides in conjunction with the first sliding groove.
7. The cloth-clamping mop according to claim 1, characterized in that: The first rack is provided with a guide groove extending along the sliding direction of the plate. Both plates are provided with guide strips that extend into the guide grooves of the first rack of the other plate. The guide grooves and guide strips are slidably engaged.
8. The cloth-clamping mop according to claim 1, characterized in that: The lower end of the upper sidewall of the substrate is provided with a second sliding groove, which extends along the pressing direction of the pressing part, and the driving part is slidably fitted into the second sliding groove.
9. The cloth-clamping mop according to claim 8, characterized in that: The upper sidewall has an upwardly raised portion, which causes the upper sidewall to form a groove. The groove wall is provided with a plurality of evenly spaced limiting protrusions, which can limit the drive part to move up and down, so that the limiting protrusions and the groove form the second sliding groove.
10. The cloth-clamping mop according to claim 1, characterized in that: The clamping part has a first clamping tooth extending along the side wall of the substrate, and the side wall of the substrate is provided with a second clamping tooth that meshes with the first clamping tooth. The lower end of the first clamping tooth protrudes from the lower surface of the substrate.